1 //===-- ProcessGDBRemote.cpp ------------------------------------*- C++ -*-===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 
10 #include "lldb/Host/Config.h"
11 
12 // C Includes
13 #include <errno.h>
14 #include <stdlib.h>
15 #ifndef LLDB_DISABLE_POSIX
16 #include <netinet/in.h>
17 #include <sys/mman.h>       // for mmap
18 #endif
19 #include <sys/stat.h>
20 #include <sys/types.h>
21 #include <time.h>
22 
23 // C++ Includes
24 #include <algorithm>
25 #include <map>
26 #include <mutex>
27 
28 #include "lldb/Breakpoint/Watchpoint.h"
29 #include "lldb/Interpreter/Args.h"
30 #include "lldb/Core/ArchSpec.h"
31 #include "lldb/Core/Debugger.h"
32 #include "lldb/Host/ConnectionFileDescriptor.h"
33 #include "lldb/Host/FileSpec.h"
34 #include "lldb/Core/Module.h"
35 #include "lldb/Core/ModuleSpec.h"
36 #include "lldb/Core/PluginManager.h"
37 #include "lldb/Core/State.h"
38 #include "lldb/Core/StreamFile.h"
39 #include "lldb/Core/StreamString.h"
40 #include "lldb/Core/Timer.h"
41 #include "lldb/Core/Value.h"
42 #include "lldb/DataFormatters/FormatManager.h"
43 #include "lldb/Host/FileSystem.h"
44 #include "lldb/Host/HostThread.h"
45 #include "lldb/Host/StringConvert.h"
46 #include "lldb/Host/Symbols.h"
47 #include "lldb/Host/ThreadLauncher.h"
48 #include "lldb/Host/TimeValue.h"
49 #include "lldb/Host/XML.h"
50 #include "lldb/Interpreter/CommandInterpreter.h"
51 #include "lldb/Interpreter/CommandObject.h"
52 #include "lldb/Interpreter/CommandObjectMultiword.h"
53 #include "lldb/Interpreter/CommandReturnObject.h"
54 #include "lldb/Interpreter/OptionValueProperties.h"
55 #include "lldb/Interpreter/Options.h"
56 #include "lldb/Interpreter/OptionGroupBoolean.h"
57 #include "lldb/Interpreter/OptionGroupUInt64.h"
58 #include "lldb/Interpreter/Property.h"
59 #include "lldb/Symbol/ObjectFile.h"
60 #include "lldb/Target/ABI.h"
61 #include "lldb/Target/DynamicLoader.h"
62 #include "lldb/Target/Target.h"
63 #include "lldb/Target/TargetList.h"
64 #include "lldb/Target/ThreadPlanCallFunction.h"
65 #include "lldb/Target/SystemRuntime.h"
66 #include "lldb/Utility/PseudoTerminal.h"
67 
68 // Project includes
69 #include "lldb/Host/Host.h"
70 #include "Plugins/Process/Utility/GDBRemoteSignals.h"
71 #include "Plugins/Process/Utility/InferiorCallPOSIX.h"
72 #include "Plugins/Process/Utility/StopInfoMachException.h"
73 #include "Plugins/Platform/MacOSX/PlatformRemoteiOS.h"
74 #include "Utility/StringExtractorGDBRemote.h"
75 #include "GDBRemoteRegisterContext.h"
76 #include "ProcessGDBRemote.h"
77 #include "ProcessGDBRemoteLog.h"
78 #include "ThreadGDBRemote.h"
79 
80 #define DEBUGSERVER_BASENAME    "debugserver"
81 using namespace lldb;
82 using namespace lldb_private;
83 using namespace lldb_private::process_gdb_remote;
84 
85 namespace lldb
86 {
87     // Provide a function that can easily dump the packet history if we know a
88     // ProcessGDBRemote * value (which we can get from logs or from debugging).
89     // We need the function in the lldb namespace so it makes it into the final
90     // executable since the LLDB shared library only exports stuff in the lldb
91     // namespace. This allows you to attach with a debugger and call this
92     // function and get the packet history dumped to a file.
93     void
94     DumpProcessGDBRemotePacketHistory (void *p, const char *path)
95     {
96         StreamFile strm;
97         Error error (strm.GetFile().Open(path, File::eOpenOptionWrite | File::eOpenOptionCanCreate));
98         if (error.Success())
99             ((ProcessGDBRemote *)p)->GetGDBRemote().DumpHistory (strm);
100     }
101 }
102 
103 namespace {
104 
105     static PropertyDefinition
106     g_properties[] =
107     {
108         { "packet-timeout" , OptionValue::eTypeUInt64 , true , 1, NULL, NULL, "Specify the default packet timeout in seconds." },
109         { "target-definition-file" , OptionValue::eTypeFileSpec , true, 0 , NULL, NULL, "The file that provides the description for remote target registers." },
110         {  NULL            , OptionValue::eTypeInvalid, false, 0, NULL, NULL, NULL  }
111     };
112 
113     enum
114     {
115         ePropertyPacketTimeout,
116         ePropertyTargetDefinitionFile
117     };
118 
119     class PluginProperties : public Properties
120     {
121     public:
122 
123         static ConstString
124         GetSettingName ()
125         {
126             return ProcessGDBRemote::GetPluginNameStatic();
127         }
128 
129         PluginProperties() :
130         Properties ()
131         {
132             m_collection_sp.reset (new OptionValueProperties(GetSettingName()));
133             m_collection_sp->Initialize(g_properties);
134         }
135 
136         virtual
137         ~PluginProperties()
138         {
139         }
140 
141         uint64_t
142         GetPacketTimeout()
143         {
144             const uint32_t idx = ePropertyPacketTimeout;
145             return m_collection_sp->GetPropertyAtIndexAsUInt64(NULL, idx, g_properties[idx].default_uint_value);
146         }
147 
148         bool
149         SetPacketTimeout(uint64_t timeout)
150         {
151             const uint32_t idx = ePropertyPacketTimeout;
152             return m_collection_sp->SetPropertyAtIndexAsUInt64(NULL, idx, timeout);
153         }
154 
155         FileSpec
156         GetTargetDefinitionFile () const
157         {
158             const uint32_t idx = ePropertyTargetDefinitionFile;
159             return m_collection_sp->GetPropertyAtIndexAsFileSpec (NULL, idx);
160         }
161     };
162 
163     typedef std::shared_ptr<PluginProperties> ProcessKDPPropertiesSP;
164 
165     static const ProcessKDPPropertiesSP &
166     GetGlobalPluginProperties()
167     {
168         static ProcessKDPPropertiesSP g_settings_sp;
169         if (!g_settings_sp)
170             g_settings_sp.reset (new PluginProperties ());
171         return g_settings_sp;
172     }
173 
174 } // anonymous namespace end
175 
176 // TODO Randomly assigning a port is unsafe.  We should get an unused
177 // ephemeral port from the kernel and make sure we reserve it before passing
178 // it to debugserver.
179 
180 #if defined (__APPLE__)
181 #define LOW_PORT    (IPPORT_RESERVED)
182 #define HIGH_PORT   (IPPORT_HIFIRSTAUTO)
183 #else
184 #define LOW_PORT    (1024u)
185 #define HIGH_PORT   (49151u)
186 #endif
187 
188 #if defined(__APPLE__) && (defined(__arm__) || defined(__arm64__) || defined(__aarch64__))
189 static bool rand_initialized = false;
190 
191 static inline uint16_t
192 get_random_port ()
193 {
194     if (!rand_initialized)
195     {
196         time_t seed = time(NULL);
197 
198         rand_initialized = true;
199         srand(seed);
200     }
201     return (rand() % (HIGH_PORT - LOW_PORT)) + LOW_PORT;
202 }
203 #endif
204 
205 ConstString
206 ProcessGDBRemote::GetPluginNameStatic()
207 {
208     static ConstString g_name("gdb-remote");
209     return g_name;
210 }
211 
212 const char *
213 ProcessGDBRemote::GetPluginDescriptionStatic()
214 {
215     return "GDB Remote protocol based debugging plug-in.";
216 }
217 
218 void
219 ProcessGDBRemote::Terminate()
220 {
221     PluginManager::UnregisterPlugin (ProcessGDBRemote::CreateInstance);
222 }
223 
224 
225 lldb::ProcessSP
226 ProcessGDBRemote::CreateInstance (lldb::TargetSP target_sp, ListenerSP listener_sp, const FileSpec *crash_file_path)
227 {
228     lldb::ProcessSP process_sp;
229     if (crash_file_path == NULL)
230         process_sp.reset (new ProcessGDBRemote (target_sp, listener_sp));
231     return process_sp;
232 }
233 
234 bool
235 ProcessGDBRemote::CanDebug (lldb::TargetSP target_sp, bool plugin_specified_by_name)
236 {
237     if (plugin_specified_by_name)
238         return true;
239 
240     // For now we are just making sure the file exists for a given module
241     Module *exe_module = target_sp->GetExecutableModulePointer();
242     if (exe_module)
243     {
244         ObjectFile *exe_objfile = exe_module->GetObjectFile();
245         // We can't debug core files...
246         switch (exe_objfile->GetType())
247         {
248             case ObjectFile::eTypeInvalid:
249             case ObjectFile::eTypeCoreFile:
250             case ObjectFile::eTypeDebugInfo:
251             case ObjectFile::eTypeObjectFile:
252             case ObjectFile::eTypeSharedLibrary:
253             case ObjectFile::eTypeStubLibrary:
254             case ObjectFile::eTypeJIT:
255                 return false;
256             case ObjectFile::eTypeExecutable:
257             case ObjectFile::eTypeDynamicLinker:
258             case ObjectFile::eTypeUnknown:
259                 break;
260         }
261         return exe_module->GetFileSpec().Exists();
262     }
263     // However, if there is no executable module, we return true since we might be preparing to attach.
264     return true;
265 }
266 
267 //----------------------------------------------------------------------
268 // ProcessGDBRemote constructor
269 //----------------------------------------------------------------------
270 ProcessGDBRemote::ProcessGDBRemote(lldb::TargetSP target_sp, ListenerSP listener_sp) :
271     Process (target_sp, listener_sp),
272     m_flags (0),
273     m_gdb_comm (),
274     m_debugserver_pid (LLDB_INVALID_PROCESS_ID),
275     m_last_stop_packet_mutex (Mutex::eMutexTypeRecursive),
276     m_register_info (),
277     m_async_broadcaster (NULL, "lldb.process.gdb-remote.async-broadcaster"),
278     m_async_listener_sp(Listener::MakeListener("lldb.process.gdb-remote.async-listener")),
279     m_async_thread_state_mutex(Mutex::eMutexTypeRecursive),
280     m_thread_ids (),
281     m_thread_pcs (),
282     m_jstopinfo_sp (),
283     m_jthreadsinfo_sp (),
284     m_continue_c_tids (),
285     m_continue_C_tids (),
286     m_continue_s_tids (),
287     m_continue_S_tids (),
288     m_max_memory_size (0),
289     m_remote_stub_max_memory_size (0),
290     m_addr_to_mmap_size (),
291     m_thread_create_bp_sp (),
292     m_waiting_for_attach (false),
293     m_destroy_tried_resuming (false),
294     m_command_sp (),
295     m_breakpoint_pc_offset (0),
296     m_initial_tid (LLDB_INVALID_THREAD_ID)
297 {
298     m_async_broadcaster.SetEventName (eBroadcastBitAsyncThreadShouldExit,   "async thread should exit");
299     m_async_broadcaster.SetEventName (eBroadcastBitAsyncContinue,           "async thread continue");
300     m_async_broadcaster.SetEventName (eBroadcastBitAsyncThreadDidExit,      "async thread did exit");
301 
302     Log *log (ProcessGDBRemoteLog::GetLogIfAllCategoriesSet (GDBR_LOG_ASYNC));
303 
304     const uint32_t async_event_mask = eBroadcastBitAsyncContinue | eBroadcastBitAsyncThreadShouldExit;
305 
306     if (m_async_listener_sp->StartListeningForEvents(&m_async_broadcaster, async_event_mask) != async_event_mask)
307     {
308         if (log)
309             log->Printf("ProcessGDBRemote::%s failed to listen for m_async_broadcaster events", __FUNCTION__);
310     }
311 
312     const uint32_t gdb_event_mask = Communication::eBroadcastBitReadThreadDidExit |
313                                     GDBRemoteCommunication::eBroadcastBitGdbReadThreadGotNotify;
314     if (m_async_listener_sp->StartListeningForEvents(&m_gdb_comm, gdb_event_mask) != gdb_event_mask)
315     {
316         if (log)
317             log->Printf("ProcessGDBRemote::%s failed to listen for m_gdb_comm events", __FUNCTION__);
318     }
319 
320     const uint64_t timeout_seconds = GetGlobalPluginProperties()->GetPacketTimeout();
321     if (timeout_seconds > 0)
322         m_gdb_comm.SetPacketTimeout(timeout_seconds);
323 }
324 
325 //----------------------------------------------------------------------
326 // Destructor
327 //----------------------------------------------------------------------
328 ProcessGDBRemote::~ProcessGDBRemote()
329 {
330     //  m_mach_process.UnregisterNotificationCallbacks (this);
331     Clear();
332     // We need to call finalize on the process before destroying ourselves
333     // to make sure all of the broadcaster cleanup goes as planned. If we
334     // destruct this class, then Process::~Process() might have problems
335     // trying to fully destroy the broadcaster.
336     Finalize();
337 
338     // The general Finalize is going to try to destroy the process and that SHOULD
339     // shut down the async thread.  However, if we don't kill it it will get stranded and
340     // its connection will go away so when it wakes up it will crash.  So kill it for sure here.
341     StopAsyncThread();
342     KillDebugserverProcess();
343 }
344 
345 //----------------------------------------------------------------------
346 // PluginInterface
347 //----------------------------------------------------------------------
348 ConstString
349 ProcessGDBRemote::GetPluginName()
350 {
351     return GetPluginNameStatic();
352 }
353 
354 uint32_t
355 ProcessGDBRemote::GetPluginVersion()
356 {
357     return 1;
358 }
359 
360 bool
361 ProcessGDBRemote::ParsePythonTargetDefinition(const FileSpec &target_definition_fspec)
362 {
363     ScriptInterpreter *interpreter = GetTarget().GetDebugger().GetCommandInterpreter().GetScriptInterpreter();
364     Error error;
365     StructuredData::ObjectSP module_object_sp(interpreter->LoadPluginModule(target_definition_fspec, error));
366     if (module_object_sp)
367     {
368         StructuredData::DictionarySP target_definition_sp(
369             interpreter->GetDynamicSettings(module_object_sp, &GetTarget(), "gdb-server-target-definition", error));
370 
371         if (target_definition_sp)
372         {
373             StructuredData::ObjectSP target_object(target_definition_sp->GetValueForKey("host-info"));
374             if (target_object)
375             {
376                 if (auto host_info_dict = target_object->GetAsDictionary())
377                 {
378                     StructuredData::ObjectSP triple_value = host_info_dict->GetValueForKey("triple");
379                     if (auto triple_string_value = triple_value->GetAsString())
380                     {
381                         std::string triple_string = triple_string_value->GetValue();
382                         ArchSpec host_arch(triple_string.c_str());
383                         if (!host_arch.IsCompatibleMatch(GetTarget().GetArchitecture()))
384                         {
385                             GetTarget().SetArchitecture(host_arch);
386                         }
387                     }
388                 }
389             }
390             m_breakpoint_pc_offset = 0;
391             StructuredData::ObjectSP breakpoint_pc_offset_value = target_definition_sp->GetValueForKey("breakpoint-pc-offset");
392             if (breakpoint_pc_offset_value)
393             {
394                 if (auto breakpoint_pc_int_value = breakpoint_pc_offset_value->GetAsInteger())
395                     m_breakpoint_pc_offset = breakpoint_pc_int_value->GetValue();
396             }
397 
398             if (m_register_info.SetRegisterInfo(*target_definition_sp, GetTarget().GetArchitecture()) > 0)
399             {
400                 return true;
401             }
402         }
403     }
404     return false;
405 }
406 
407 // If the remote stub didn't give us eh_frame or DWARF register numbers for a register,
408 // see if the ABI can provide them.
409 // DWARF and eh_frame register numbers are defined as a part of the ABI.
410 static void
411 AugmentRegisterInfoViaABI (RegisterInfo &reg_info, ConstString reg_name, ABISP abi_sp)
412 {
413     if (reg_info.kinds[eRegisterKindEHFrame] == LLDB_INVALID_REGNUM
414         || reg_info.kinds[eRegisterKindDWARF] == LLDB_INVALID_REGNUM)
415     {
416         if (abi_sp)
417         {
418             RegisterInfo abi_reg_info;
419             if (abi_sp->GetRegisterInfoByName (reg_name, abi_reg_info))
420             {
421                 if (reg_info.kinds[eRegisterKindEHFrame] == LLDB_INVALID_REGNUM &&
422                     abi_reg_info.kinds[eRegisterKindEHFrame] != LLDB_INVALID_REGNUM)
423                 {
424                     reg_info.kinds[eRegisterKindEHFrame] = abi_reg_info.kinds[eRegisterKindEHFrame];
425                 }
426                 if (reg_info.kinds[eRegisterKindDWARF] == LLDB_INVALID_REGNUM &&
427                     abi_reg_info.kinds[eRegisterKindDWARF] != LLDB_INVALID_REGNUM)
428                 {
429                     reg_info.kinds[eRegisterKindDWARF] = abi_reg_info.kinds[eRegisterKindDWARF];
430                 }
431                 if (reg_info.kinds[eRegisterKindGeneric] == LLDB_INVALID_REGNUM &&
432                     abi_reg_info.kinds[eRegisterKindGeneric] != LLDB_INVALID_REGNUM)
433                 {
434                     reg_info.kinds[eRegisterKindGeneric] = abi_reg_info.kinds[eRegisterKindGeneric];
435                 }
436             }
437         }
438     }
439 }
440 
441 static size_t
442 SplitCommaSeparatedRegisterNumberString(const llvm::StringRef &comma_separated_regiter_numbers, std::vector<uint32_t> &regnums, int base)
443 {
444     regnums.clear();
445     std::pair<llvm::StringRef, llvm::StringRef> value_pair;
446     value_pair.second = comma_separated_regiter_numbers;
447     do
448     {
449         value_pair = value_pair.second.split(',');
450         if (!value_pair.first.empty())
451         {
452             uint32_t reg = StringConvert::ToUInt32 (value_pair.first.str().c_str(), LLDB_INVALID_REGNUM, base);
453             if (reg != LLDB_INVALID_REGNUM)
454                 regnums.push_back (reg);
455         }
456     } while (!value_pair.second.empty());
457     return regnums.size();
458 }
459 
460 
461 void
462 ProcessGDBRemote::BuildDynamicRegisterInfo (bool force)
463 {
464     if (!force && m_register_info.GetNumRegisters() > 0)
465         return;
466 
467     m_register_info.Clear();
468 
469     // Check if qHostInfo specified a specific packet timeout for this connection.
470     // If so then lets update our setting so the user knows what the timeout is
471     // and can see it.
472     const uint32_t host_packet_timeout = m_gdb_comm.GetHostDefaultPacketTimeout();
473     if (host_packet_timeout)
474     {
475         GetGlobalPluginProperties()->SetPacketTimeout(host_packet_timeout);
476     }
477 
478     // Register info search order:
479     //     1 - Use the target definition python file if one is specified.
480     //     2 - If the target definition doesn't have any of the info from the target.xml (registers) then proceed to read the target.xml.
481     //     3 - Fall back on the qRegisterInfo packets.
482 
483     FileSpec target_definition_fspec = GetGlobalPluginProperties()->GetTargetDefinitionFile ();
484     if (!target_definition_fspec.Exists())
485     {
486         // If the filename doesn't exist, it may be a ~ not having been expanded - try to resolve it.
487         target_definition_fspec.ResolvePath();
488     }
489     if (target_definition_fspec)
490     {
491         // See if we can get register definitions from a python file
492         if (ParsePythonTargetDefinition (target_definition_fspec))
493         {
494             return;
495         }
496         else
497         {
498             StreamSP stream_sp = GetTarget().GetDebugger().GetAsyncOutputStream();
499             stream_sp->Printf ("ERROR: target description file %s failed to parse.\n", target_definition_fspec.GetPath().c_str());
500         }
501     }
502 
503     const ArchSpec &target_arch = GetTarget().GetArchitecture();
504     const ArchSpec &remote_host_arch = m_gdb_comm.GetHostArchitecture();
505     const ArchSpec &remote_process_arch = m_gdb_comm.GetProcessArchitecture();
506 
507     // Use the process' architecture instead of the host arch, if available
508     ArchSpec arch_to_use;
509     if (remote_process_arch.IsValid ())
510         arch_to_use = remote_process_arch;
511     else
512         arch_to_use = remote_host_arch;
513 
514     if (!arch_to_use.IsValid())
515         arch_to_use = target_arch;
516 
517     if (GetGDBServerRegisterInfo (arch_to_use))
518         return;
519 
520     char packet[128];
521     uint32_t reg_offset = 0;
522     uint32_t reg_num = 0;
523     for (StringExtractorGDBRemote::ResponseType response_type = StringExtractorGDBRemote::eResponse;
524          response_type == StringExtractorGDBRemote::eResponse;
525          ++reg_num)
526     {
527         const int packet_len = ::snprintf (packet, sizeof(packet), "qRegisterInfo%x", reg_num);
528         assert (packet_len < (int)sizeof(packet));
529         StringExtractorGDBRemote response;
530         if (m_gdb_comm.SendPacketAndWaitForResponse(packet, packet_len, response, false) == GDBRemoteCommunication::PacketResult::Success)
531         {
532             response_type = response.GetResponseType();
533             if (response_type == StringExtractorGDBRemote::eResponse)
534             {
535                 std::string name;
536                 std::string value;
537                 ConstString reg_name;
538                 ConstString alt_name;
539                 ConstString set_name;
540                 std::vector<uint32_t> value_regs;
541                 std::vector<uint32_t> invalidate_regs;
542                 RegisterInfo reg_info = { NULL,                 // Name
543                     NULL,                 // Alt name
544                     0,                    // byte size
545                     reg_offset,           // offset
546                     eEncodingUint,        // encoding
547                     eFormatHex,           // format
548                     {
549                         LLDB_INVALID_REGNUM, // eh_frame reg num
550                         LLDB_INVALID_REGNUM, // DWARF reg num
551                         LLDB_INVALID_REGNUM, // generic reg num
552                         reg_num,             // process plugin reg num
553                         reg_num           // native register number
554                     },
555                     NULL,
556                     NULL
557                 };
558 
559                 while (response.GetNameColonValue(name, value))
560                 {
561                     if (name.compare("name") == 0)
562                     {
563                         reg_name.SetCString(value.c_str());
564                     }
565                     else if (name.compare("alt-name") == 0)
566                     {
567                         alt_name.SetCString(value.c_str());
568                     }
569                     else if (name.compare("bitsize") == 0)
570                     {
571                         reg_info.byte_size = StringConvert::ToUInt32(value.c_str(), 0, 0) / CHAR_BIT;
572                     }
573                     else if (name.compare("offset") == 0)
574                     {
575                         uint32_t offset = StringConvert::ToUInt32(value.c_str(), UINT32_MAX, 0);
576                         if (reg_offset != offset)
577                         {
578                             reg_offset = offset;
579                         }
580                     }
581                     else if (name.compare("encoding") == 0)
582                     {
583                         const Encoding encoding = Args::StringToEncoding (value.c_str());
584                         if (encoding != eEncodingInvalid)
585                             reg_info.encoding = encoding;
586                     }
587                     else if (name.compare("format") == 0)
588                     {
589                         Format format = eFormatInvalid;
590                         if (Args::StringToFormat (value.c_str(), format, NULL).Success())
591                             reg_info.format = format;
592                         else if (value.compare("binary") == 0)
593                             reg_info.format = eFormatBinary;
594                         else if (value.compare("decimal") == 0)
595                             reg_info.format = eFormatDecimal;
596                         else if (value.compare("hex") == 0)
597                             reg_info.format = eFormatHex;
598                         else if (value.compare("float") == 0)
599                             reg_info.format = eFormatFloat;
600                         else if (value.compare("vector-sint8") == 0)
601                             reg_info.format = eFormatVectorOfSInt8;
602                         else if (value.compare("vector-uint8") == 0)
603                             reg_info.format = eFormatVectorOfUInt8;
604                         else if (value.compare("vector-sint16") == 0)
605                             reg_info.format = eFormatVectorOfSInt16;
606                         else if (value.compare("vector-uint16") == 0)
607                             reg_info.format = eFormatVectorOfUInt16;
608                         else if (value.compare("vector-sint32") == 0)
609                             reg_info.format = eFormatVectorOfSInt32;
610                         else if (value.compare("vector-uint32") == 0)
611                             reg_info.format = eFormatVectorOfUInt32;
612                         else if (value.compare("vector-float32") == 0)
613                             reg_info.format = eFormatVectorOfFloat32;
614                         else if (value.compare("vector-uint128") == 0)
615                             reg_info.format = eFormatVectorOfUInt128;
616                     }
617                     else if (name.compare("set") == 0)
618                     {
619                         set_name.SetCString(value.c_str());
620                     }
621                     else if (name.compare("gcc") == 0 || name.compare("ehframe") == 0)
622                     {
623                         reg_info.kinds[eRegisterKindEHFrame] = StringConvert::ToUInt32(value.c_str(), LLDB_INVALID_REGNUM, 0);
624                     }
625                     else if (name.compare("dwarf") == 0)
626                     {
627                         reg_info.kinds[eRegisterKindDWARF] = StringConvert::ToUInt32(value.c_str(), LLDB_INVALID_REGNUM, 0);
628                     }
629                     else if (name.compare("generic") == 0)
630                     {
631                         reg_info.kinds[eRegisterKindGeneric] = Args::StringToGenericRegister (value.c_str());
632                     }
633                     else if (name.compare("container-regs") == 0)
634                     {
635                         SplitCommaSeparatedRegisterNumberString(value, value_regs, 16);
636                     }
637                     else if (name.compare("invalidate-regs") == 0)
638                     {
639                         SplitCommaSeparatedRegisterNumberString(value, invalidate_regs, 16);
640                     }
641                 }
642 
643                 reg_info.byte_offset = reg_offset;
644                 assert (reg_info.byte_size != 0);
645                 reg_offset += reg_info.byte_size;
646                 if (!value_regs.empty())
647                 {
648                     value_regs.push_back(LLDB_INVALID_REGNUM);
649                     reg_info.value_regs = value_regs.data();
650                 }
651                 if (!invalidate_regs.empty())
652                 {
653                     invalidate_regs.push_back(LLDB_INVALID_REGNUM);
654                     reg_info.invalidate_regs = invalidate_regs.data();
655                 }
656 
657                 // We have to make a temporary ABI here, and not use the GetABI because this code
658                 // gets called in DidAttach, when the target architecture (and consequently the ABI we'll get from
659                 // the process) may be wrong.
660                 ABISP abi_to_use = ABI::FindPlugin(arch_to_use);
661 
662                 AugmentRegisterInfoViaABI (reg_info, reg_name, abi_to_use);
663 
664                 m_register_info.AddRegister(reg_info, reg_name, alt_name, set_name);
665             }
666             else
667             {
668                 break;  // ensure exit before reg_num is incremented
669             }
670         }
671         else
672         {
673             break;
674         }
675     }
676 
677     if (m_register_info.GetNumRegisters() > 0)
678     {
679         m_register_info.Finalize(GetTarget().GetArchitecture());
680         return;
681     }
682 
683     // We didn't get anything if the accumulated reg_num is zero.  See if we are
684     // debugging ARM and fill with a hard coded register set until we can get an
685     // updated debugserver down on the devices.
686     // On the other hand, if the accumulated reg_num is positive, see if we can
687     // add composite registers to the existing primordial ones.
688     bool from_scratch = (m_register_info.GetNumRegisters() == 0);
689 
690     if (!target_arch.IsValid())
691     {
692         if (arch_to_use.IsValid()
693               && (arch_to_use.GetMachine() == llvm::Triple::arm || arch_to_use.GetMachine() == llvm::Triple::thumb)
694               && arch_to_use.GetTriple().getVendor() == llvm::Triple::Apple)
695             m_register_info.HardcodeARMRegisters(from_scratch);
696     }
697     else if (target_arch.GetMachine() == llvm::Triple::arm
698             || target_arch.GetMachine() == llvm::Triple::thumb)
699     {
700         m_register_info.HardcodeARMRegisters(from_scratch);
701     }
702 
703     // At this point, we can finalize our register info.
704     m_register_info.Finalize (GetTarget().GetArchitecture());
705 }
706 
707 Error
708 ProcessGDBRemote::WillLaunch (Module* module)
709 {
710     return WillLaunchOrAttach ();
711 }
712 
713 Error
714 ProcessGDBRemote::WillAttachToProcessWithID (lldb::pid_t pid)
715 {
716     return WillLaunchOrAttach ();
717 }
718 
719 Error
720 ProcessGDBRemote::WillAttachToProcessWithName (const char *process_name, bool wait_for_launch)
721 {
722     return WillLaunchOrAttach ();
723 }
724 
725 Error
726 ProcessGDBRemote::DoConnectRemote (Stream *strm, const char *remote_url)
727 {
728     Log *log (ProcessGDBRemoteLog::GetLogIfAllCategoriesSet (GDBR_LOG_PROCESS));
729     Error error (WillLaunchOrAttach ());
730 
731     if (error.Fail())
732         return error;
733 
734     error = ConnectToDebugserver (remote_url);
735 
736     if (error.Fail())
737         return error;
738     StartAsyncThread ();
739 
740     lldb::pid_t pid = m_gdb_comm.GetCurrentProcessID ();
741     if (pid == LLDB_INVALID_PROCESS_ID)
742     {
743         // We don't have a valid process ID, so note that we are connected
744         // and could now request to launch or attach, or get remote process
745         // listings...
746         SetPrivateState (eStateConnected);
747     }
748     else
749     {
750         // We have a valid process
751         SetID (pid);
752         GetThreadList();
753         StringExtractorGDBRemote response;
754         if (m_gdb_comm.GetStopReply(response))
755         {
756             SetLastStopPacket(response);
757 
758             // '?' Packets must be handled differently in non-stop mode
759             if (GetTarget().GetNonStopModeEnabled())
760                 HandleStopReplySequence();
761 
762             Target &target = GetTarget();
763             if (!target.GetArchitecture().IsValid())
764             {
765                 if (m_gdb_comm.GetProcessArchitecture().IsValid())
766                 {
767                     target.SetArchitecture(m_gdb_comm.GetProcessArchitecture());
768                 }
769                 else
770                 {
771                     target.SetArchitecture(m_gdb_comm.GetHostArchitecture());
772                 }
773             }
774 
775             const StateType state = SetThreadStopInfo (response);
776             if (state != eStateInvalid)
777             {
778                 SetPrivateState (state);
779             }
780             else
781                 error.SetErrorStringWithFormat ("Process %" PRIu64 " was reported after connecting to '%s', but state was not stopped: %s", pid, remote_url, StateAsCString (state));
782         }
783         else
784             error.SetErrorStringWithFormat ("Process %" PRIu64 " was reported after connecting to '%s', but no stop reply packet was received", pid, remote_url);
785     }
786 
787     if (log)
788         log->Printf ("ProcessGDBRemote::%s pid %" PRIu64 ": normalizing target architecture initial triple: %s (GetTarget().GetArchitecture().IsValid() %s, m_gdb_comm.GetHostArchitecture().IsValid(): %s)", __FUNCTION__, GetID (), GetTarget ().GetArchitecture ().GetTriple ().getTriple ().c_str (), GetTarget ().GetArchitecture ().IsValid () ? "true" : "false", m_gdb_comm.GetHostArchitecture ().IsValid () ? "true" : "false");
789 
790 
791     if (error.Success()
792         && !GetTarget().GetArchitecture().IsValid()
793         && m_gdb_comm.GetHostArchitecture().IsValid())
794     {
795         // Prefer the *process'* architecture over that of the *host*, if available.
796         if (m_gdb_comm.GetProcessArchitecture().IsValid())
797             GetTarget().SetArchitecture(m_gdb_comm.GetProcessArchitecture());
798         else
799             GetTarget().SetArchitecture(m_gdb_comm.GetHostArchitecture());
800     }
801 
802     if (log)
803         log->Printf ("ProcessGDBRemote::%s pid %" PRIu64 ": normalized target architecture triple: %s", __FUNCTION__, GetID (), GetTarget ().GetArchitecture ().GetTriple ().getTriple ().c_str ());
804 
805     if (error.Success())
806     {
807         PlatformSP platform_sp = GetTarget().GetPlatform();
808         if (platform_sp && platform_sp->IsConnected())
809             SetUnixSignals(platform_sp->GetUnixSignals());
810         else
811             SetUnixSignals(UnixSignals::Create(GetTarget().GetArchitecture()));
812     }
813 
814     return error;
815 }
816 
817 Error
818 ProcessGDBRemote::WillLaunchOrAttach ()
819 {
820     Error error;
821     m_stdio_communication.Clear ();
822     return error;
823 }
824 
825 //----------------------------------------------------------------------
826 // Process Control
827 //----------------------------------------------------------------------
828 Error
829 ProcessGDBRemote::DoLaunch (Module *exe_module, ProcessLaunchInfo &launch_info)
830 {
831     Log *log (ProcessGDBRemoteLog::GetLogIfAllCategoriesSet (GDBR_LOG_PROCESS));
832     Error error;
833 
834     if (log)
835         log->Printf ("ProcessGDBRemote::%s() entered", __FUNCTION__);
836 
837     uint32_t launch_flags = launch_info.GetFlags().Get();
838     FileSpec stdin_file_spec{};
839     FileSpec stdout_file_spec{};
840     FileSpec stderr_file_spec{};
841     FileSpec working_dir = launch_info.GetWorkingDirectory();
842 
843     const FileAction *file_action;
844     file_action = launch_info.GetFileActionForFD (STDIN_FILENO);
845     if (file_action)
846     {
847         if (file_action->GetAction() == FileAction::eFileActionOpen)
848             stdin_file_spec = file_action->GetFileSpec();
849     }
850     file_action = launch_info.GetFileActionForFD (STDOUT_FILENO);
851     if (file_action)
852     {
853         if (file_action->GetAction() == FileAction::eFileActionOpen)
854             stdout_file_spec = file_action->GetFileSpec();
855     }
856     file_action = launch_info.GetFileActionForFD (STDERR_FILENO);
857     if (file_action)
858     {
859         if (file_action->GetAction() == FileAction::eFileActionOpen)
860             stderr_file_spec = file_action->GetFileSpec();
861     }
862 
863     if (log)
864     {
865         if (stdin_file_spec || stdout_file_spec || stderr_file_spec)
866             log->Printf ("ProcessGDBRemote::%s provided with STDIO paths via launch_info: stdin=%s, stdout=%s, stderr=%s",
867                          __FUNCTION__,
868                           stdin_file_spec ?  stdin_file_spec.GetCString() : "<null>",
869                          stdout_file_spec ? stdout_file_spec.GetCString() : "<null>",
870                          stderr_file_spec ? stderr_file_spec.GetCString() : "<null>");
871         else
872             log->Printf ("ProcessGDBRemote::%s no STDIO paths given via launch_info", __FUNCTION__);
873     }
874 
875     const bool disable_stdio = (launch_flags & eLaunchFlagDisableSTDIO) != 0;
876     if (stdin_file_spec || disable_stdio)
877     {
878         // the inferior will be reading stdin from the specified file
879         // or stdio is completely disabled
880         m_stdin_forward = false;
881     }
882     else
883     {
884         m_stdin_forward = true;
885     }
886 
887     //  ::LogSetBitMask (GDBR_LOG_DEFAULT);
888     //  ::LogSetOptions (LLDB_LOG_OPTION_THREADSAFE | LLDB_LOG_OPTION_PREPEND_TIMESTAMP | LLDB_LOG_OPTION_PREPEND_PROC_AND_THREAD);
889     //  ::LogSetLogFile ("/dev/stdout");
890 
891     ObjectFile * object_file = exe_module->GetObjectFile();
892     if (object_file)
893     {
894         error = EstablishConnectionIfNeeded (launch_info);
895         if (error.Success())
896         {
897             lldb_utility::PseudoTerminal pty;
898             const bool disable_stdio = (launch_flags & eLaunchFlagDisableSTDIO) != 0;
899 
900             PlatformSP platform_sp (GetTarget().GetPlatform());
901             if (disable_stdio)
902             {
903                 // set to /dev/null unless redirected to a file above
904                 if (!stdin_file_spec)
905                     stdin_file_spec.SetFile(FileSystem::DEV_NULL, false);
906                 if (!stdout_file_spec)
907                     stdout_file_spec.SetFile(FileSystem::DEV_NULL, false);
908                 if (!stderr_file_spec)
909                     stderr_file_spec.SetFile(FileSystem::DEV_NULL, false);
910             }
911             else if (platform_sp && platform_sp->IsHost())
912             {
913                 // If the debugserver is local and we aren't disabling STDIO, lets use
914                 // a pseudo terminal to instead of relying on the 'O' packets for stdio
915                 // since 'O' packets can really slow down debugging if the inferior
916                 // does a lot of output.
917                 if ((!stdin_file_spec || !stdout_file_spec || !stderr_file_spec) &&
918                         pty.OpenFirstAvailableMaster(O_RDWR|O_NOCTTY, NULL, 0))
919                 {
920                     FileSpec slave_name{pty.GetSlaveName(NULL, 0), false};
921 
922                     if (!stdin_file_spec)
923                         stdin_file_spec = slave_name;
924 
925                     if (!stdout_file_spec)
926                         stdout_file_spec = slave_name;
927 
928                     if (!stderr_file_spec)
929                         stderr_file_spec = slave_name;
930                 }
931                 if (log)
932                     log->Printf ("ProcessGDBRemote::%s adjusted STDIO paths for local platform (IsHost() is true) using slave: stdin=%s, stdout=%s, stderr=%s",
933                                  __FUNCTION__,
934                                   stdin_file_spec ?  stdin_file_spec.GetCString() : "<null>",
935                                  stdout_file_spec ? stdout_file_spec.GetCString() : "<null>",
936                                  stderr_file_spec ? stderr_file_spec.GetCString() : "<null>");
937             }
938 
939             if (log)
940                 log->Printf ("ProcessGDBRemote::%s final STDIO paths after all adjustments: stdin=%s, stdout=%s, stderr=%s",
941                              __FUNCTION__,
942                               stdin_file_spec ?  stdin_file_spec.GetCString() : "<null>",
943                              stdout_file_spec ? stdout_file_spec.GetCString() : "<null>",
944                              stderr_file_spec ? stderr_file_spec.GetCString() : "<null>");
945 
946             if (stdin_file_spec)
947                 m_gdb_comm.SetSTDIN(stdin_file_spec);
948             if (stdout_file_spec)
949                 m_gdb_comm.SetSTDOUT(stdout_file_spec);
950             if (stderr_file_spec)
951                 m_gdb_comm.SetSTDERR(stderr_file_spec);
952 
953             m_gdb_comm.SetDisableASLR (launch_flags & eLaunchFlagDisableASLR);
954             m_gdb_comm.SetDetachOnError (launch_flags & eLaunchFlagDetachOnError);
955 
956             m_gdb_comm.SendLaunchArchPacket (GetTarget().GetArchitecture().GetArchitectureName());
957 
958             const char * launch_event_data = launch_info.GetLaunchEventData();
959             if (launch_event_data != NULL && *launch_event_data != '\0')
960                 m_gdb_comm.SendLaunchEventDataPacket (launch_event_data);
961 
962             if (working_dir)
963             {
964                 m_gdb_comm.SetWorkingDir (working_dir);
965             }
966 
967             // Send the environment and the program + arguments after we connect
968             const Args &environment = launch_info.GetEnvironmentEntries();
969             if (environment.GetArgumentCount())
970             {
971                 size_t num_environment_entries = environment.GetArgumentCount();
972                 for (size_t i=0; i<num_environment_entries; ++i)
973                 {
974                     const char *env_entry = environment.GetArgumentAtIndex(i);
975                     if (env_entry == NULL || m_gdb_comm.SendEnvironmentPacket(env_entry) != 0)
976                         break;
977                 }
978             }
979 
980             {
981                 // Scope for the scoped timeout object
982                 GDBRemoteCommunication::ScopedTimeout timeout (m_gdb_comm, 10);
983 
984                 int arg_packet_err = m_gdb_comm.SendArgumentsPacket (launch_info);
985                 if (arg_packet_err == 0)
986                 {
987                     std::string error_str;
988                     if (m_gdb_comm.GetLaunchSuccess (error_str))
989                     {
990                         SetID (m_gdb_comm.GetCurrentProcessID ());
991                     }
992                     else
993                     {
994                         error.SetErrorString (error_str.c_str());
995                     }
996                 }
997                 else
998                 {
999                     error.SetErrorStringWithFormat("'A' packet returned an error: %i", arg_packet_err);
1000                 }
1001             }
1002 
1003             if (GetID() == LLDB_INVALID_PROCESS_ID)
1004             {
1005                 if (log)
1006                     log->Printf("failed to connect to debugserver: %s", error.AsCString());
1007                 KillDebugserverProcess ();
1008                 return error;
1009             }
1010 
1011             StringExtractorGDBRemote response;
1012             if (m_gdb_comm.GetStopReply(response))
1013             {
1014                 SetLastStopPacket(response);
1015                 // '?' Packets must be handled differently in non-stop mode
1016                 if (GetTarget().GetNonStopModeEnabled())
1017                     HandleStopReplySequence();
1018 
1019                 const ArchSpec &process_arch = m_gdb_comm.GetProcessArchitecture();
1020 
1021                 if (process_arch.IsValid())
1022                 {
1023                     GetTarget().MergeArchitecture(process_arch);
1024                 }
1025                 else
1026                 {
1027                     const ArchSpec &host_arch = m_gdb_comm.GetHostArchitecture();
1028                     if (host_arch.IsValid())
1029                         GetTarget().MergeArchitecture(host_arch);
1030                 }
1031 
1032                 SetPrivateState (SetThreadStopInfo (response));
1033 
1034                 if (!disable_stdio)
1035                 {
1036                     if (pty.GetMasterFileDescriptor() != lldb_utility::PseudoTerminal::invalid_fd)
1037                         SetSTDIOFileDescriptor (pty.ReleaseMasterFileDescriptor());
1038                 }
1039             }
1040         }
1041         else
1042         {
1043             if (log)
1044                 log->Printf("failed to connect to debugserver: %s", error.AsCString());
1045         }
1046     }
1047     else
1048     {
1049         // Set our user ID to an invalid process ID.
1050         SetID(LLDB_INVALID_PROCESS_ID);
1051         error.SetErrorStringWithFormat ("failed to get object file from '%s' for arch %s",
1052                                         exe_module->GetFileSpec().GetFilename().AsCString(),
1053                                         exe_module->GetArchitecture().GetArchitectureName());
1054     }
1055     return error;
1056 
1057 }
1058 
1059 
1060 Error
1061 ProcessGDBRemote::ConnectToDebugserver (const char *connect_url)
1062 {
1063     Error error;
1064     // Only connect if we have a valid connect URL
1065     Log *log(ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PROCESS));
1066 
1067     if (connect_url && connect_url[0])
1068     {
1069         if (log)
1070             log->Printf("ProcessGDBRemote::%s Connecting to %s", __FUNCTION__, connect_url);
1071         std::unique_ptr<ConnectionFileDescriptor> conn_ap(new ConnectionFileDescriptor());
1072         if (conn_ap.get())
1073         {
1074             const uint32_t max_retry_count = 50;
1075             uint32_t retry_count = 0;
1076             while (!m_gdb_comm.IsConnected())
1077             {
1078                 if (conn_ap->Connect(connect_url, &error) == eConnectionStatusSuccess)
1079                 {
1080                     m_gdb_comm.SetConnection (conn_ap.release());
1081                     break;
1082                 }
1083                 else if (error.WasInterrupted())
1084                 {
1085                     // If we were interrupted, don't keep retrying.
1086                     break;
1087                 }
1088 
1089                 retry_count++;
1090 
1091                 if (retry_count >= max_retry_count)
1092                     break;
1093 
1094                 usleep (100000);
1095             }
1096         }
1097     }
1098 
1099     if (!m_gdb_comm.IsConnected())
1100     {
1101         if (error.Success())
1102             error.SetErrorString("not connected to remote gdb server");
1103         return error;
1104     }
1105 
1106 
1107     // Start the communications read thread so all incoming data can be
1108     // parsed into packets and queued as they arrive.
1109     if (GetTarget().GetNonStopModeEnabled())
1110         m_gdb_comm.StartReadThread();
1111 
1112     // We always seem to be able to open a connection to a local port
1113     // so we need to make sure we can then send data to it. If we can't
1114     // then we aren't actually connected to anything, so try and do the
1115     // handshake with the remote GDB server and make sure that goes
1116     // alright.
1117     if (!m_gdb_comm.HandshakeWithServer (&error))
1118     {
1119         m_gdb_comm.Disconnect();
1120         if (error.Success())
1121             error.SetErrorString("not connected to remote gdb server");
1122         return error;
1123     }
1124 
1125     // Send $QNonStop:1 packet on startup if required
1126     if (GetTarget().GetNonStopModeEnabled())
1127         GetTarget().SetNonStopModeEnabled (m_gdb_comm.SetNonStopMode(true));
1128 
1129     m_gdb_comm.GetEchoSupported ();
1130     m_gdb_comm.GetThreadSuffixSupported ();
1131     m_gdb_comm.GetListThreadsInStopReplySupported ();
1132     m_gdb_comm.GetHostInfo ();
1133     m_gdb_comm.GetVContSupported ('c');
1134     m_gdb_comm.GetVAttachOrWaitSupported();
1135 
1136     // Ask the remote server for the default thread id
1137     if (GetTarget().GetNonStopModeEnabled())
1138         m_gdb_comm.GetDefaultThreadId(m_initial_tid);
1139 
1140 
1141     size_t num_cmds = GetExtraStartupCommands().GetArgumentCount();
1142     for (size_t idx = 0; idx < num_cmds; idx++)
1143     {
1144         StringExtractorGDBRemote response;
1145         m_gdb_comm.SendPacketAndWaitForResponse (GetExtraStartupCommands().GetArgumentAtIndex(idx), response, false);
1146     }
1147     return error;
1148 }
1149 
1150 void
1151 ProcessGDBRemote::DidLaunchOrAttach (ArchSpec& process_arch)
1152 {
1153     Log *log (ProcessGDBRemoteLog::GetLogIfAllCategoriesSet (GDBR_LOG_PROCESS));
1154     if (log)
1155         log->Printf ("ProcessGDBRemote::DidLaunch()");
1156     if (GetID() != LLDB_INVALID_PROCESS_ID)
1157     {
1158         BuildDynamicRegisterInfo (false);
1159 
1160         // See if the GDB server supports the qHostInfo information
1161 
1162 
1163         // See if the GDB server supports the qProcessInfo packet, if so
1164         // prefer that over the Host information as it will be more specific
1165         // to our process.
1166 
1167         const ArchSpec &remote_process_arch = m_gdb_comm.GetProcessArchitecture();
1168         if (remote_process_arch.IsValid())
1169         {
1170             process_arch = remote_process_arch;
1171             if (log)
1172                 log->Printf ("ProcessGDBRemote::%s gdb-remote had process architecture, using %s %s",
1173                              __FUNCTION__,
1174                              process_arch.GetArchitectureName () ? process_arch.GetArchitectureName () : "<null>",
1175                              process_arch.GetTriple().getTriple ().c_str() ? process_arch.GetTriple().getTriple ().c_str() : "<null>");
1176         }
1177         else
1178         {
1179             process_arch = m_gdb_comm.GetHostArchitecture();
1180             if (log)
1181                 log->Printf ("ProcessGDBRemote::%s gdb-remote did not have process architecture, using gdb-remote host architecture %s %s",
1182                              __FUNCTION__,
1183                              process_arch.GetArchitectureName () ? process_arch.GetArchitectureName () : "<null>",
1184                              process_arch.GetTriple().getTriple ().c_str() ? process_arch.GetTriple().getTriple ().c_str() : "<null>");
1185         }
1186 
1187         if (process_arch.IsValid())
1188         {
1189             const ArchSpec &target_arch = GetTarget().GetArchitecture();
1190             if (target_arch.IsValid())
1191             {
1192                 if (log)
1193                     log->Printf ("ProcessGDBRemote::%s analyzing target arch, currently %s %s",
1194                                  __FUNCTION__,
1195                                  target_arch.GetArchitectureName () ? target_arch.GetArchitectureName () : "<null>",
1196                                  target_arch.GetTriple().getTriple ().c_str() ? target_arch.GetTriple().getTriple ().c_str() : "<null>");
1197 
1198                 // If the remote host is ARM and we have apple as the vendor, then
1199                 // ARM executables and shared libraries can have mixed ARM architectures.
1200                 // You can have an armv6 executable, and if the host is armv7, then the
1201                 // system will load the best possible architecture for all shared libraries
1202                 // it has, so we really need to take the remote host architecture as our
1203                 // defacto architecture in this case.
1204 
1205                 if ((process_arch.GetMachine() == llvm::Triple::arm || process_arch.GetMachine() == llvm::Triple::thumb)
1206                     && process_arch.GetTriple().getVendor() == llvm::Triple::Apple)
1207                 {
1208                     GetTarget().SetArchitecture (process_arch);
1209                     if (log)
1210                         log->Printf ("ProcessGDBRemote::%s remote process is ARM/Apple, setting target arch to %s %s",
1211                                      __FUNCTION__,
1212                                      process_arch.GetArchitectureName () ? process_arch.GetArchitectureName () : "<null>",
1213                                      process_arch.GetTriple().getTriple ().c_str() ? process_arch.GetTriple().getTriple ().c_str() : "<null>");
1214                 }
1215                 else
1216                 {
1217                     // Fill in what is missing in the triple
1218                     const llvm::Triple &remote_triple = process_arch.GetTriple();
1219                     llvm::Triple new_target_triple = target_arch.GetTriple();
1220                     if (new_target_triple.getVendorName().size() == 0)
1221                     {
1222                         new_target_triple.setVendor (remote_triple.getVendor());
1223 
1224                         if (new_target_triple.getOSName().size() == 0)
1225                         {
1226                             new_target_triple.setOS (remote_triple.getOS());
1227 
1228                             if (new_target_triple.getEnvironmentName().size() == 0)
1229                                 new_target_triple.setEnvironment (remote_triple.getEnvironment());
1230                         }
1231 
1232                         ArchSpec new_target_arch = target_arch;
1233                         new_target_arch.SetTriple(new_target_triple);
1234                         GetTarget().SetArchitecture(new_target_arch);
1235                     }
1236                 }
1237 
1238                 if (log)
1239                     log->Printf ("ProcessGDBRemote::%s final target arch after adjustments for remote architecture: %s %s",
1240                                  __FUNCTION__,
1241                                  target_arch.GetArchitectureName () ? target_arch.GetArchitectureName () : "<null>",
1242                                  target_arch.GetTriple().getTriple ().c_str() ? target_arch.GetTriple().getTriple ().c_str() : "<null>");
1243             }
1244             else
1245             {
1246                 // The target doesn't have a valid architecture yet, set it from
1247                 // the architecture we got from the remote GDB server
1248                 GetTarget().SetArchitecture (process_arch);
1249             }
1250         }
1251     }
1252 }
1253 
1254 void
1255 ProcessGDBRemote::DidLaunch ()
1256 {
1257     ArchSpec process_arch;
1258     DidLaunchOrAttach (process_arch);
1259 }
1260 
1261 Error
1262 ProcessGDBRemote::DoAttachToProcessWithID (lldb::pid_t attach_pid, const ProcessAttachInfo &attach_info)
1263 {
1264     Log *log (ProcessGDBRemoteLog::GetLogIfAllCategoriesSet (GDBR_LOG_PROCESS));
1265     Error error;
1266 
1267     if (log)
1268         log->Printf ("ProcessGDBRemote::%s()", __FUNCTION__);
1269 
1270     // Clear out and clean up from any current state
1271     Clear();
1272     if (attach_pid != LLDB_INVALID_PROCESS_ID)
1273     {
1274         error = EstablishConnectionIfNeeded (attach_info);
1275         if (error.Success())
1276         {
1277             m_gdb_comm.SetDetachOnError(attach_info.GetDetachOnError());
1278 
1279             char packet[64];
1280             const int packet_len = ::snprintf (packet, sizeof(packet), "vAttach;%" PRIx64, attach_pid);
1281             SetID (attach_pid);
1282             m_async_broadcaster.BroadcastEvent (eBroadcastBitAsyncContinue, new EventDataBytes (packet, packet_len));
1283         }
1284         else
1285             SetExitStatus (-1, error.AsCString());
1286     }
1287 
1288     return error;
1289 }
1290 
1291 Error
1292 ProcessGDBRemote::DoAttachToProcessWithName (const char *process_name, const ProcessAttachInfo &attach_info)
1293 {
1294     Error error;
1295     // Clear out and clean up from any current state
1296     Clear();
1297 
1298     if (process_name && process_name[0])
1299     {
1300         error = EstablishConnectionIfNeeded (attach_info);
1301         if (error.Success())
1302         {
1303             StreamString packet;
1304 
1305             m_gdb_comm.SetDetachOnError(attach_info.GetDetachOnError());
1306 
1307             if (attach_info.GetWaitForLaunch())
1308             {
1309                 if (!m_gdb_comm.GetVAttachOrWaitSupported())
1310                 {
1311                     packet.PutCString ("vAttachWait");
1312                 }
1313                 else
1314                 {
1315                     if (attach_info.GetIgnoreExisting())
1316                         packet.PutCString("vAttachWait");
1317                     else
1318                         packet.PutCString ("vAttachOrWait");
1319                 }
1320             }
1321             else
1322                 packet.PutCString("vAttachName");
1323             packet.PutChar(';');
1324             packet.PutBytesAsRawHex8(process_name, strlen(process_name), endian::InlHostByteOrder(), endian::InlHostByteOrder());
1325 
1326             m_async_broadcaster.BroadcastEvent (eBroadcastBitAsyncContinue, new EventDataBytes (packet.GetData(), packet.GetSize()));
1327 
1328         }
1329         else
1330             SetExitStatus (-1, error.AsCString());
1331     }
1332     return error;
1333 }
1334 
1335 void
1336 ProcessGDBRemote::DidExit ()
1337 {
1338     // When we exit, disconnect from the GDB server communications
1339     m_gdb_comm.Disconnect();
1340 }
1341 
1342 void
1343 ProcessGDBRemote::DidAttach (ArchSpec &process_arch)
1344 {
1345     // If you can figure out what the architecture is, fill it in here.
1346     process_arch.Clear();
1347     DidLaunchOrAttach (process_arch);
1348 }
1349 
1350 
1351 Error
1352 ProcessGDBRemote::WillResume ()
1353 {
1354     m_continue_c_tids.clear();
1355     m_continue_C_tids.clear();
1356     m_continue_s_tids.clear();
1357     m_continue_S_tids.clear();
1358     m_jstopinfo_sp.reset();
1359     m_jthreadsinfo_sp.reset();
1360     return Error();
1361 }
1362 
1363 Error
1364 ProcessGDBRemote::DoResume ()
1365 {
1366     Error error;
1367     Log *log (ProcessGDBRemoteLog::GetLogIfAllCategoriesSet (GDBR_LOG_PROCESS));
1368     if (log)
1369         log->Printf ("ProcessGDBRemote::Resume()");
1370 
1371     ListenerSP listener_sp (Listener::MakeListener("gdb-remote.resume-packet-sent"));
1372     if (listener_sp->StartListeningForEvents (&m_gdb_comm, GDBRemoteCommunication::eBroadcastBitRunPacketSent))
1373     {
1374         listener_sp->StartListeningForEvents (&m_async_broadcaster, ProcessGDBRemote::eBroadcastBitAsyncThreadDidExit);
1375 
1376         const size_t num_threads = GetThreadList().GetSize();
1377 
1378         StreamString continue_packet;
1379         bool continue_packet_error = false;
1380         if (m_gdb_comm.HasAnyVContSupport ())
1381         {
1382             if (!GetTarget().GetNonStopModeEnabled() &&
1383                 (m_continue_c_tids.size() == num_threads ||
1384                 (m_continue_c_tids.empty() &&
1385                  m_continue_C_tids.empty() &&
1386                  m_continue_s_tids.empty() &&
1387                  m_continue_S_tids.empty())))
1388             {
1389                 // All threads are continuing, just send a "c" packet
1390                 continue_packet.PutCString ("c");
1391             }
1392             else
1393             {
1394                 continue_packet.PutCString ("vCont");
1395 
1396                 if (!m_continue_c_tids.empty())
1397                 {
1398                     if (m_gdb_comm.GetVContSupported ('c'))
1399                     {
1400                         for (tid_collection::const_iterator t_pos = m_continue_c_tids.begin(), t_end = m_continue_c_tids.end(); t_pos != t_end; ++t_pos)
1401                             continue_packet.Printf(";c:%4.4" PRIx64, *t_pos);
1402                     }
1403                     else
1404                         continue_packet_error = true;
1405                 }
1406 
1407                 if (!continue_packet_error && !m_continue_C_tids.empty())
1408                 {
1409                     if (m_gdb_comm.GetVContSupported ('C'))
1410                     {
1411                         for (tid_sig_collection::const_iterator s_pos = m_continue_C_tids.begin(), s_end = m_continue_C_tids.end(); s_pos != s_end; ++s_pos)
1412                             continue_packet.Printf(";C%2.2x:%4.4" PRIx64, s_pos->second, s_pos->first);
1413                     }
1414                     else
1415                         continue_packet_error = true;
1416                 }
1417 
1418                 if (!continue_packet_error && !m_continue_s_tids.empty())
1419                 {
1420                     if (m_gdb_comm.GetVContSupported ('s'))
1421                     {
1422                         for (tid_collection::const_iterator t_pos = m_continue_s_tids.begin(), t_end = m_continue_s_tids.end(); t_pos != t_end; ++t_pos)
1423                             continue_packet.Printf(";s:%4.4" PRIx64, *t_pos);
1424                     }
1425                     else
1426                         continue_packet_error = true;
1427                 }
1428 
1429                 if (!continue_packet_error && !m_continue_S_tids.empty())
1430                 {
1431                     if (m_gdb_comm.GetVContSupported ('S'))
1432                     {
1433                         for (tid_sig_collection::const_iterator s_pos = m_continue_S_tids.begin(), s_end = m_continue_S_tids.end(); s_pos != s_end; ++s_pos)
1434                             continue_packet.Printf(";S%2.2x:%4.4" PRIx64, s_pos->second, s_pos->first);
1435                     }
1436                     else
1437                         continue_packet_error = true;
1438                 }
1439 
1440                 if (continue_packet_error)
1441                     continue_packet.GetString().clear();
1442             }
1443         }
1444         else
1445             continue_packet_error = true;
1446 
1447         if (continue_packet_error)
1448         {
1449             // Either no vCont support, or we tried to use part of the vCont
1450             // packet that wasn't supported by the remote GDB server.
1451             // We need to try and make a simple packet that can do our continue
1452             const size_t num_continue_c_tids = m_continue_c_tids.size();
1453             const size_t num_continue_C_tids = m_continue_C_tids.size();
1454             const size_t num_continue_s_tids = m_continue_s_tids.size();
1455             const size_t num_continue_S_tids = m_continue_S_tids.size();
1456             if (num_continue_c_tids > 0)
1457             {
1458                 if (num_continue_c_tids == num_threads)
1459                 {
1460                     // All threads are resuming...
1461                     m_gdb_comm.SetCurrentThreadForRun (-1);
1462                     continue_packet.PutChar ('c');
1463                     continue_packet_error = false;
1464                 }
1465                 else if (num_continue_c_tids == 1 &&
1466                          num_continue_C_tids == 0 &&
1467                          num_continue_s_tids == 0 &&
1468                          num_continue_S_tids == 0 )
1469                 {
1470                     // Only one thread is continuing
1471                     m_gdb_comm.SetCurrentThreadForRun (m_continue_c_tids.front());
1472                     continue_packet.PutChar ('c');
1473                     continue_packet_error = false;
1474                 }
1475             }
1476 
1477             if (continue_packet_error && num_continue_C_tids > 0)
1478             {
1479                 if ((num_continue_C_tids + num_continue_c_tids) == num_threads &&
1480                     num_continue_C_tids > 0 &&
1481                     num_continue_s_tids == 0 &&
1482                     num_continue_S_tids == 0 )
1483                 {
1484                     const int continue_signo = m_continue_C_tids.front().second;
1485                     // Only one thread is continuing
1486                     if (num_continue_C_tids > 1)
1487                     {
1488                         // More that one thread with a signal, yet we don't have
1489                         // vCont support and we are being asked to resume each
1490                         // thread with a signal, we need to make sure they are
1491                         // all the same signal, or we can't issue the continue
1492                         // accurately with the current support...
1493                         if (num_continue_C_tids > 1)
1494                         {
1495                             continue_packet_error = false;
1496                             for (size_t i=1; i<m_continue_C_tids.size(); ++i)
1497                             {
1498                                 if (m_continue_C_tids[i].second != continue_signo)
1499                                     continue_packet_error = true;
1500                             }
1501                         }
1502                         if (!continue_packet_error)
1503                             m_gdb_comm.SetCurrentThreadForRun (-1);
1504                     }
1505                     else
1506                     {
1507                         // Set the continue thread ID
1508                         continue_packet_error = false;
1509                         m_gdb_comm.SetCurrentThreadForRun (m_continue_C_tids.front().first);
1510                     }
1511                     if (!continue_packet_error)
1512                     {
1513                         // Add threads continuing with the same signo...
1514                         continue_packet.Printf("C%2.2x", continue_signo);
1515                     }
1516                 }
1517             }
1518 
1519             if (continue_packet_error && num_continue_s_tids > 0)
1520             {
1521                 if (num_continue_s_tids == num_threads)
1522                 {
1523                     // All threads are resuming...
1524                     m_gdb_comm.SetCurrentThreadForRun (-1);
1525 
1526                     // If in Non-Stop-Mode use vCont when stepping
1527                     if (GetTarget().GetNonStopModeEnabled())
1528                     {
1529                         if (m_gdb_comm.GetVContSupported('s'))
1530                             continue_packet.PutCString("vCont;s");
1531                         else
1532                             continue_packet.PutChar('s');
1533                     }
1534                     else
1535                         continue_packet.PutChar('s');
1536 
1537                     continue_packet_error = false;
1538                 }
1539                 else if (num_continue_c_tids == 0 &&
1540                          num_continue_C_tids == 0 &&
1541                          num_continue_s_tids == 1 &&
1542                          num_continue_S_tids == 0 )
1543                 {
1544                     // Only one thread is stepping
1545                     m_gdb_comm.SetCurrentThreadForRun (m_continue_s_tids.front());
1546                     continue_packet.PutChar ('s');
1547                     continue_packet_error = false;
1548                 }
1549             }
1550 
1551             if (!continue_packet_error && num_continue_S_tids > 0)
1552             {
1553                 if (num_continue_S_tids == num_threads)
1554                 {
1555                     const int step_signo = m_continue_S_tids.front().second;
1556                     // Are all threads trying to step with the same signal?
1557                     continue_packet_error = false;
1558                     if (num_continue_S_tids > 1)
1559                     {
1560                         for (size_t i=1; i<num_threads; ++i)
1561                         {
1562                             if (m_continue_S_tids[i].second != step_signo)
1563                                 continue_packet_error = true;
1564                         }
1565                     }
1566                     if (!continue_packet_error)
1567                     {
1568                         // Add threads stepping with the same signo...
1569                         m_gdb_comm.SetCurrentThreadForRun (-1);
1570                         continue_packet.Printf("S%2.2x", step_signo);
1571                     }
1572                 }
1573                 else if (num_continue_c_tids == 0 &&
1574                          num_continue_C_tids == 0 &&
1575                          num_continue_s_tids == 0 &&
1576                          num_continue_S_tids == 1 )
1577                 {
1578                     // Only one thread is stepping with signal
1579                     m_gdb_comm.SetCurrentThreadForRun (m_continue_S_tids.front().first);
1580                     continue_packet.Printf("S%2.2x", m_continue_S_tids.front().second);
1581                     continue_packet_error = false;
1582                 }
1583             }
1584         }
1585 
1586         if (continue_packet_error)
1587         {
1588             error.SetErrorString ("can't make continue packet for this resume");
1589         }
1590         else
1591         {
1592             EventSP event_sp;
1593             TimeValue timeout;
1594             timeout = TimeValue::Now();
1595             timeout.OffsetWithSeconds (5);
1596             if (!m_async_thread.IsJoinable())
1597             {
1598                 error.SetErrorString ("Trying to resume but the async thread is dead.");
1599                 if (log)
1600                     log->Printf ("ProcessGDBRemote::DoResume: Trying to resume but the async thread is dead.");
1601                 return error;
1602             }
1603 
1604             m_async_broadcaster.BroadcastEvent (eBroadcastBitAsyncContinue, new EventDataBytes (continue_packet.GetData(), continue_packet.GetSize()));
1605 
1606             if (listener_sp->WaitForEvent (&timeout, event_sp) == false)
1607             {
1608                 error.SetErrorString("Resume timed out.");
1609                 if (log)
1610                     log->Printf ("ProcessGDBRemote::DoResume: Resume timed out.");
1611             }
1612             else if (event_sp->BroadcasterIs (&m_async_broadcaster))
1613             {
1614                 error.SetErrorString ("Broadcast continue, but the async thread was killed before we got an ack back.");
1615                 if (log)
1616                     log->Printf ("ProcessGDBRemote::DoResume: Broadcast continue, but the async thread was killed before we got an ack back.");
1617                 return error;
1618             }
1619         }
1620     }
1621 
1622     return error;
1623 }
1624 
1625 void
1626 ProcessGDBRemote::HandleStopReplySequence ()
1627 {
1628     while(true)
1629     {
1630         // Send vStopped
1631         StringExtractorGDBRemote response;
1632         m_gdb_comm.SendPacketAndWaitForResponse("vStopped", response, false);
1633 
1634         // OK represents end of signal list
1635         if (response.IsOKResponse())
1636             break;
1637 
1638         // If not OK or a normal packet we have a problem
1639         if (!response.IsNormalResponse())
1640             break;
1641 
1642         SetLastStopPacket(response);
1643     }
1644 }
1645 
1646 void
1647 ProcessGDBRemote::ClearThreadIDList ()
1648 {
1649     Mutex::Locker locker(m_thread_list_real.GetMutex());
1650     m_thread_ids.clear();
1651     m_thread_pcs.clear();
1652 }
1653 
1654 size_t
1655 ProcessGDBRemote::UpdateThreadIDsFromStopReplyThreadsValue (std::string &value)
1656 {
1657     m_thread_ids.clear();
1658     m_thread_pcs.clear();
1659     size_t comma_pos;
1660     lldb::tid_t tid;
1661     while ((comma_pos = value.find(',')) != std::string::npos)
1662     {
1663         value[comma_pos] = '\0';
1664         // thread in big endian hex
1665         tid = StringConvert::ToUInt64 (value.c_str(), LLDB_INVALID_THREAD_ID, 16);
1666         if (tid != LLDB_INVALID_THREAD_ID)
1667             m_thread_ids.push_back (tid);
1668         value.erase(0, comma_pos + 1);
1669     }
1670     tid = StringConvert::ToUInt64 (value.c_str(), LLDB_INVALID_THREAD_ID, 16);
1671     if (tid != LLDB_INVALID_THREAD_ID)
1672         m_thread_ids.push_back (tid);
1673     return m_thread_ids.size();
1674 }
1675 
1676 size_t
1677 ProcessGDBRemote::UpdateThreadPCsFromStopReplyThreadsValue (std::string &value)
1678 {
1679     m_thread_pcs.clear();
1680     size_t comma_pos;
1681     lldb::addr_t pc;
1682     while ((comma_pos = value.find(',')) != std::string::npos)
1683     {
1684         value[comma_pos] = '\0';
1685         pc = StringConvert::ToUInt64 (value.c_str(), LLDB_INVALID_ADDRESS, 16);
1686         if (pc != LLDB_INVALID_ADDRESS)
1687             m_thread_pcs.push_back (pc);
1688         value.erase(0, comma_pos + 1);
1689     }
1690     pc = StringConvert::ToUInt64 (value.c_str(), LLDB_INVALID_ADDRESS, 16);
1691     if (pc != LLDB_INVALID_THREAD_ID)
1692         m_thread_pcs.push_back (pc);
1693     return m_thread_pcs.size();
1694 }
1695 
1696 bool
1697 ProcessGDBRemote::UpdateThreadIDList ()
1698 {
1699     Mutex::Locker locker(m_thread_list_real.GetMutex());
1700 
1701     if (m_jthreadsinfo_sp)
1702     {
1703         // If we have the JSON threads info, we can get the thread list from that
1704         StructuredData::Array *thread_infos = m_jthreadsinfo_sp->GetAsArray();
1705         if (thread_infos && thread_infos->GetSize() > 0)
1706         {
1707             m_thread_ids.clear();
1708             m_thread_pcs.clear();
1709             thread_infos->ForEach([this](StructuredData::Object* object) -> bool {
1710                 StructuredData::Dictionary *thread_dict = object->GetAsDictionary();
1711                 if (thread_dict)
1712                 {
1713                     // Set the thread stop info from the JSON dictionary
1714                     SetThreadStopInfo (thread_dict);
1715                     lldb::tid_t tid = LLDB_INVALID_THREAD_ID;
1716                     if (thread_dict->GetValueForKeyAsInteger<lldb::tid_t>("tid", tid))
1717                         m_thread_ids.push_back(tid);
1718                 }
1719                 return true; // Keep iterating through all thread_info objects
1720             });
1721         }
1722         if (!m_thread_ids.empty())
1723             return true;
1724     }
1725     else
1726     {
1727         // See if we can get the thread IDs from the current stop reply packets
1728         // that might contain a "threads" key/value pair
1729 
1730         // Lock the thread stack while we access it
1731         //Mutex::Locker stop_stack_lock(m_last_stop_packet_mutex);
1732         Mutex::Locker stop_stack_lock;
1733         if (stop_stack_lock.TryLock(m_last_stop_packet_mutex))
1734         {
1735             // Get the number of stop packets on the stack
1736             int nItems = m_stop_packet_stack.size();
1737             // Iterate over them
1738             for (int i = 0; i < nItems; i++)
1739             {
1740                 // Get the thread stop info
1741                 StringExtractorGDBRemote &stop_info = m_stop_packet_stack[i];
1742                 const std::string &stop_info_str = stop_info.GetStringRef();
1743 
1744                 m_thread_pcs.clear();
1745                 const size_t thread_pcs_pos = stop_info_str.find(";thread-pcs:");
1746                 if (thread_pcs_pos != std::string::npos)
1747                 {
1748                     const size_t start = thread_pcs_pos + strlen(";thread-pcs:");
1749                     const size_t end = stop_info_str.find(';', start);
1750                     if (end != std::string::npos)
1751                     {
1752                         std::string value = stop_info_str.substr(start, end - start);
1753                         UpdateThreadPCsFromStopReplyThreadsValue(value);
1754                     }
1755                 }
1756 
1757                 const size_t threads_pos = stop_info_str.find(";threads:");
1758                 if (threads_pos != std::string::npos)
1759                 {
1760                     const size_t start = threads_pos + strlen(";threads:");
1761                     const size_t end = stop_info_str.find(';', start);
1762                     if (end != std::string::npos)
1763                     {
1764                         std::string value = stop_info_str.substr(start, end - start);
1765                         if (UpdateThreadIDsFromStopReplyThreadsValue(value))
1766                             return true;
1767                     }
1768                 }
1769             }
1770         }
1771     }
1772 
1773     bool sequence_mutex_unavailable = false;
1774     m_gdb_comm.GetCurrentThreadIDs (m_thread_ids, sequence_mutex_unavailable);
1775     if (sequence_mutex_unavailable)
1776     {
1777         return false; // We just didn't get the list
1778     }
1779     return true;
1780 }
1781 
1782 bool
1783 ProcessGDBRemote::UpdateThreadList (ThreadList &old_thread_list, ThreadList &new_thread_list)
1784 {
1785     // locker will keep a mutex locked until it goes out of scope
1786     Log *log (ProcessGDBRemoteLog::GetLogIfAllCategoriesSet (GDBR_LOG_THREAD));
1787     if (log && log->GetMask().Test(GDBR_LOG_VERBOSE))
1788         log->Printf ("ProcessGDBRemote::%s (pid = %" PRIu64 ")", __FUNCTION__, GetID());
1789 
1790     size_t num_thread_ids = m_thread_ids.size();
1791     // The "m_thread_ids" thread ID list should always be updated after each stop
1792     // reply packet, but in case it isn't, update it here.
1793     if (num_thread_ids == 0)
1794     {
1795         if (!UpdateThreadIDList ())
1796             return false;
1797         num_thread_ids = m_thread_ids.size();
1798     }
1799 
1800     ThreadList old_thread_list_copy(old_thread_list);
1801     if (num_thread_ids > 0)
1802     {
1803         for (size_t i=0; i<num_thread_ids; ++i)
1804         {
1805             tid_t tid = m_thread_ids[i];
1806             ThreadSP thread_sp (old_thread_list_copy.RemoveThreadByProtocolID(tid, false));
1807             if (!thread_sp)
1808             {
1809                 thread_sp.reset (new ThreadGDBRemote (*this, tid));
1810                 if (log && log->GetMask().Test(GDBR_LOG_VERBOSE))
1811                     log->Printf(
1812                             "ProcessGDBRemote::%s Making new thread: %p for thread ID: 0x%" PRIx64 ".\n",
1813                             __FUNCTION__, static_cast<void*>(thread_sp.get()),
1814                             thread_sp->GetID());
1815             }
1816             else
1817             {
1818                 if (log && log->GetMask().Test(GDBR_LOG_VERBOSE))
1819                     log->Printf(
1820                            "ProcessGDBRemote::%s Found old thread: %p for thread ID: 0x%" PRIx64 ".\n",
1821                            __FUNCTION__, static_cast<void*>(thread_sp.get()),
1822                            thread_sp->GetID());
1823             }
1824             // The m_thread_pcs vector has pc values in big-endian order, not target-endian, unlike most
1825             // of the register read/write packets in gdb-remote protocol.
1826             // Early in the process startup, we may not yet have set the process ByteOrder so we ignore these;
1827             // they are a performance improvement over fetching thread register values individually, the
1828             // method we will fall back to if needed.
1829             if (m_thread_ids.size() == m_thread_pcs.size() && thread_sp.get() && GetByteOrder() != eByteOrderInvalid)
1830             {
1831                 ThreadGDBRemote *gdb_thread = static_cast<ThreadGDBRemote *> (thread_sp.get());
1832                 RegisterContextSP reg_ctx_sp (thread_sp->GetRegisterContext());
1833                 if (reg_ctx_sp)
1834                 {
1835                     uint32_t pc_regnum = reg_ctx_sp->ConvertRegisterKindToRegisterNumber
1836                                                                    (eRegisterKindGeneric, LLDB_REGNUM_GENERIC_PC);
1837                     if (pc_regnum != LLDB_INVALID_REGNUM)
1838                     {
1839                         gdb_thread->PrivateSetRegisterValue (pc_regnum, m_thread_pcs[i]);
1840                     }
1841                 }
1842             }
1843             new_thread_list.AddThread(thread_sp);
1844         }
1845     }
1846 
1847     // Whatever that is left in old_thread_list_copy are not
1848     // present in new_thread_list. Remove non-existent threads from internal id table.
1849     size_t old_num_thread_ids = old_thread_list_copy.GetSize(false);
1850     for (size_t i=0; i<old_num_thread_ids; i++)
1851     {
1852         ThreadSP old_thread_sp(old_thread_list_copy.GetThreadAtIndex (i, false));
1853         if (old_thread_sp)
1854         {
1855             lldb::tid_t old_thread_id = old_thread_sp->GetProtocolID();
1856             m_thread_id_to_index_id_map.erase(old_thread_id);
1857         }
1858     }
1859 
1860     return true;
1861 }
1862 
1863 
1864 bool
1865 ProcessGDBRemote::GetThreadStopInfoFromJSON (ThreadGDBRemote *thread, const StructuredData::ObjectSP &thread_infos_sp)
1866 {
1867     // See if we got thread stop infos for all threads via the "jThreadsInfo" packet
1868     if (thread_infos_sp)
1869     {
1870         StructuredData::Array *thread_infos = thread_infos_sp->GetAsArray();
1871         if (thread_infos)
1872         {
1873             lldb::tid_t tid;
1874             const size_t n = thread_infos->GetSize();
1875             for (size_t i=0; i<n; ++i)
1876             {
1877                 StructuredData::Dictionary *thread_dict = thread_infos->GetItemAtIndex(i)->GetAsDictionary();
1878                 if (thread_dict)
1879                 {
1880                     if (thread_dict->GetValueForKeyAsInteger<lldb::tid_t>("tid", tid, LLDB_INVALID_THREAD_ID))
1881                     {
1882                         if (tid == thread->GetID())
1883                             return (bool)SetThreadStopInfo(thread_dict);
1884                     }
1885                 }
1886             }
1887         }
1888     }
1889     return false;
1890 }
1891 
1892 bool
1893 ProcessGDBRemote::CalculateThreadStopInfo (ThreadGDBRemote *thread)
1894 {
1895     // See if we got thread stop infos for all threads via the "jThreadsInfo" packet
1896     if (GetThreadStopInfoFromJSON (thread, m_jthreadsinfo_sp))
1897         return true;
1898 
1899     // See if we got thread stop info for any threads valid stop info reasons threads
1900     // via the "jstopinfo" packet stop reply packet key/value pair?
1901     if (m_jstopinfo_sp)
1902     {
1903         // If we have "jstopinfo" then we have stop descriptions for all threads
1904         // that have stop reasons, and if there is no entry for a thread, then
1905         // it has no stop reason.
1906         thread->GetRegisterContext()->InvalidateIfNeeded(true);
1907         if (!GetThreadStopInfoFromJSON (thread, m_jstopinfo_sp))
1908         {
1909             thread->SetStopInfo (StopInfoSP());
1910         }
1911         return true;
1912     }
1913 
1914     // Fall back to using the qThreadStopInfo packet
1915     StringExtractorGDBRemote stop_packet;
1916     if (GetGDBRemote().GetThreadStopInfo(thread->GetProtocolID(), stop_packet))
1917         return SetThreadStopInfo (stop_packet) == eStateStopped;
1918     return false;
1919 }
1920 
1921 
1922 ThreadSP
1923 ProcessGDBRemote::SetThreadStopInfo (lldb::tid_t tid,
1924                                      ExpeditedRegisterMap &expedited_register_map,
1925                                      uint8_t signo,
1926                                      const std::string &thread_name,
1927                                      const std::string &reason,
1928                                      const std::string &description,
1929                                      uint32_t exc_type,
1930                                      const std::vector<addr_t> &exc_data,
1931                                      addr_t thread_dispatch_qaddr,
1932                                      bool queue_vars_valid, // Set to true if queue_name, queue_kind and queue_serial are valid
1933                                      LazyBool associated_with_dispatch_queue,
1934                                      addr_t dispatch_queue_t,
1935                                      std::string &queue_name,
1936                                      QueueKind queue_kind,
1937                                      uint64_t queue_serial)
1938 {
1939     ThreadSP thread_sp;
1940     if (tid != LLDB_INVALID_THREAD_ID)
1941     {
1942         // Scope for "locker" below
1943         {
1944             // m_thread_list_real does have its own mutex, but we need to
1945             // hold onto the mutex between the call to m_thread_list_real.FindThreadByID(...)
1946             // and the m_thread_list_real.AddThread(...) so it doesn't change on us
1947             Mutex::Locker locker (m_thread_list_real.GetMutex ());
1948             thread_sp = m_thread_list_real.FindThreadByProtocolID(tid, false);
1949 
1950             if (!thread_sp)
1951             {
1952                 // Create the thread if we need to
1953                 thread_sp.reset (new ThreadGDBRemote (*this, tid));
1954                 m_thread_list_real.AddThread(thread_sp);
1955             }
1956         }
1957 
1958         if (thread_sp)
1959         {
1960             ThreadGDBRemote *gdb_thread = static_cast<ThreadGDBRemote *> (thread_sp.get());
1961             gdb_thread->GetRegisterContext()->InvalidateIfNeeded(true);
1962 
1963             for (const auto &pair : expedited_register_map)
1964             {
1965                 StringExtractor reg_value_extractor;
1966                 reg_value_extractor.GetStringRef() = pair.second;
1967                 gdb_thread->PrivateSetRegisterValue (pair.first, reg_value_extractor);
1968             }
1969 
1970             thread_sp->SetName (thread_name.empty() ? NULL : thread_name.c_str());
1971 
1972             gdb_thread->SetThreadDispatchQAddr (thread_dispatch_qaddr);
1973             // Check if the GDB server was able to provide the queue name, kind and serial number
1974             if (queue_vars_valid)
1975                 gdb_thread->SetQueueInfo(std::move(queue_name), queue_kind, queue_serial, dispatch_queue_t, associated_with_dispatch_queue);
1976             else
1977                 gdb_thread->ClearQueueInfo();
1978 
1979             gdb_thread->SetAssociatedWithLibdispatchQueue (associated_with_dispatch_queue);
1980 
1981             if (dispatch_queue_t != LLDB_INVALID_ADDRESS)
1982                 gdb_thread->SetQueueLibdispatchQueueAddress (dispatch_queue_t);
1983 
1984             // Make sure we update our thread stop reason just once
1985             if (!thread_sp->StopInfoIsUpToDate())
1986             {
1987                 thread_sp->SetStopInfo (StopInfoSP());
1988                 // If there's a memory thread backed by this thread, we need to use it to calcualte StopInfo.
1989                 ThreadSP memory_thread_sp = m_thread_list.FindThreadByProtocolID(thread_sp->GetProtocolID());
1990                 if (memory_thread_sp)
1991                     thread_sp = memory_thread_sp;
1992 
1993                 if (exc_type != 0)
1994                 {
1995                     const size_t exc_data_size = exc_data.size();
1996 
1997                     thread_sp->SetStopInfo (StopInfoMachException::CreateStopReasonWithMachException (*thread_sp,
1998                                                                                                       exc_type,
1999                                                                                                       exc_data_size,
2000                                                                                                       exc_data_size >= 1 ? exc_data[0] : 0,
2001                                                                                                       exc_data_size >= 2 ? exc_data[1] : 0,
2002                                                                                                       exc_data_size >= 3 ? exc_data[2] : 0));
2003                 }
2004                 else
2005                 {
2006                     bool handled = false;
2007                     bool did_exec = false;
2008                     if (!reason.empty())
2009                     {
2010                         if (reason.compare("trace") == 0)
2011                         {
2012                             addr_t pc = thread_sp->GetRegisterContext()->GetPC();
2013                             lldb::BreakpointSiteSP bp_site_sp = thread_sp->GetProcess()->GetBreakpointSiteList().FindByAddress(pc);
2014 
2015                             // If the current pc is a breakpoint site then the StopInfo should be set to Breakpoint
2016                             // Otherwise, it will be set to Trace.
2017                             if (bp_site_sp && bp_site_sp->ValidForThisThread(thread_sp.get()))
2018                             {
2019                                 thread_sp->SetStopInfo(
2020                                     StopInfo::CreateStopReasonWithBreakpointSiteID(*thread_sp, bp_site_sp->GetID()));
2021                             }
2022                             else
2023                               thread_sp->SetStopInfo (StopInfo::CreateStopReasonToTrace (*thread_sp));
2024                             handled = true;
2025                         }
2026                         else if (reason.compare("breakpoint") == 0)
2027                         {
2028                             addr_t pc = thread_sp->GetRegisterContext()->GetPC();
2029                             lldb::BreakpointSiteSP bp_site_sp = thread_sp->GetProcess()->GetBreakpointSiteList().FindByAddress(pc);
2030                             if (bp_site_sp)
2031                             {
2032                                 // If the breakpoint is for this thread, then we'll report the hit, but if it is for another thread,
2033                                 // we can just report no reason.  We don't need to worry about stepping over the breakpoint here, that
2034                                 // will be taken care of when the thread resumes and notices that there's a breakpoint under the pc.
2035                                 handled = true;
2036                                 if (bp_site_sp->ValidForThisThread (thread_sp.get()))
2037                                 {
2038                                     thread_sp->SetStopInfo (StopInfo::CreateStopReasonWithBreakpointSiteID (*thread_sp, bp_site_sp->GetID()));
2039                                 }
2040                                 else
2041                                 {
2042                                     StopInfoSP invalid_stop_info_sp;
2043                                     thread_sp->SetStopInfo (invalid_stop_info_sp);
2044                                 }
2045                             }
2046                         }
2047                         else if (reason.compare("trap") == 0)
2048                         {
2049                             // Let the trap just use the standard signal stop reason below...
2050                         }
2051                         else if (reason.compare("watchpoint") == 0)
2052                         {
2053                             StringExtractor desc_extractor(description.c_str());
2054                             addr_t wp_addr = desc_extractor.GetU64(LLDB_INVALID_ADDRESS);
2055                             uint32_t wp_index = desc_extractor.GetU32(LLDB_INVALID_INDEX32);
2056                             addr_t wp_hit_addr = desc_extractor.GetU64(LLDB_INVALID_ADDRESS);
2057                             watch_id_t watch_id = LLDB_INVALID_WATCH_ID;
2058                             if (wp_addr != LLDB_INVALID_ADDRESS)
2059                             {
2060                                 WatchpointSP wp_sp;
2061                                 ArchSpec::Core core = GetTarget().GetArchitecture().GetCore();
2062                                 if (core >= ArchSpec::kCore_mips_first && core <= ArchSpec::kCore_mips_last)
2063                                     wp_sp = GetTarget().GetWatchpointList().FindByAddress(wp_hit_addr);
2064                                 if (!wp_sp)
2065                                     wp_sp = GetTarget().GetWatchpointList().FindByAddress(wp_addr);
2066                                 if (wp_sp)
2067                                 {
2068                                     wp_sp->SetHardwareIndex(wp_index);
2069                                     watch_id = wp_sp->GetID();
2070                                 }
2071                             }
2072                             if (watch_id == LLDB_INVALID_WATCH_ID)
2073                             {
2074                                 Log *log (ProcessGDBRemoteLog::GetLogIfAllCategoriesSet (GDBR_LOG_WATCHPOINTS));
2075                                 if (log) log->Printf ("failed to find watchpoint");
2076                             }
2077                             thread_sp->SetStopInfo (StopInfo::CreateStopReasonWithWatchpointID (*thread_sp, watch_id, wp_hit_addr));
2078                             handled = true;
2079                         }
2080                         else if (reason.compare("exception") == 0)
2081                         {
2082                             thread_sp->SetStopInfo (StopInfo::CreateStopReasonWithException(*thread_sp, description.c_str()));
2083                             handled = true;
2084                         }
2085                         else if (reason.compare("exec") == 0)
2086                         {
2087                             did_exec = true;
2088                             thread_sp->SetStopInfo (StopInfo::CreateStopReasonWithExec(*thread_sp));
2089                             handled = true;
2090                         }
2091                     }
2092                     else if (!signo)
2093                     {
2094                         addr_t pc = thread_sp->GetRegisterContext()->GetPC();
2095                         lldb::BreakpointSiteSP bp_site_sp =
2096                             thread_sp->GetProcess()->GetBreakpointSiteList().FindByAddress(pc);
2097 
2098                         // If the current pc is a breakpoint site then the StopInfo should be set to Breakpoint
2099                         // even though the remote stub did not set it as such. This can happen when
2100                         // the thread is involuntarily interrupted (e.g. due to stops on other
2101                         // threads) just as it is about to execute the breakpoint instruction.
2102                         if (bp_site_sp && bp_site_sp->ValidForThisThread(thread_sp.get()))
2103                         {
2104                             thread_sp->SetStopInfo(
2105                                 StopInfo::CreateStopReasonWithBreakpointSiteID(*thread_sp, bp_site_sp->GetID()));
2106                             handled = true;
2107                         }
2108                     }
2109 
2110                     if (!handled && signo && did_exec == false)
2111                     {
2112                         if (signo == SIGTRAP)
2113                         {
2114                             // Currently we are going to assume SIGTRAP means we are either
2115                             // hitting a breakpoint or hardware single stepping.
2116                             handled = true;
2117                             addr_t pc = thread_sp->GetRegisterContext()->GetPC() + m_breakpoint_pc_offset;
2118                             lldb::BreakpointSiteSP bp_site_sp = thread_sp->GetProcess()->GetBreakpointSiteList().FindByAddress(pc);
2119 
2120                             if (bp_site_sp)
2121                             {
2122                                 // If the breakpoint is for this thread, then we'll report the hit, but if it is for another thread,
2123                                 // we can just report no reason.  We don't need to worry about stepping over the breakpoint here, that
2124                                 // will be taken care of when the thread resumes and notices that there's a breakpoint under the pc.
2125                                 if (bp_site_sp->ValidForThisThread (thread_sp.get()))
2126                                 {
2127                                     if(m_breakpoint_pc_offset != 0)
2128                                         thread_sp->GetRegisterContext()->SetPC(pc);
2129                                     thread_sp->SetStopInfo (StopInfo::CreateStopReasonWithBreakpointSiteID (*thread_sp, bp_site_sp->GetID()));
2130                                 }
2131                                 else
2132                                 {
2133                                     StopInfoSP invalid_stop_info_sp;
2134                                     thread_sp->SetStopInfo (invalid_stop_info_sp);
2135                                 }
2136                             }
2137                             else
2138                             {
2139                                 // If we were stepping then assume the stop was the result of the trace.  If we were
2140                                 // not stepping then report the SIGTRAP.
2141                                 // FIXME: We are still missing the case where we single step over a trap instruction.
2142                                 if (thread_sp->GetTemporaryResumeState() == eStateStepping)
2143                                     thread_sp->SetStopInfo (StopInfo::CreateStopReasonToTrace (*thread_sp));
2144                                 else
2145                                     thread_sp->SetStopInfo (StopInfo::CreateStopReasonWithSignal(*thread_sp, signo, description.c_str()));
2146                             }
2147                         }
2148                         if (!handled)
2149                             thread_sp->SetStopInfo (StopInfo::CreateStopReasonWithSignal (*thread_sp, signo, description.c_str()));
2150                     }
2151 
2152                     if (!description.empty())
2153                     {
2154                         lldb::StopInfoSP stop_info_sp (thread_sp->GetStopInfo ());
2155                         if (stop_info_sp)
2156                         {
2157                             const char *stop_info_desc = stop_info_sp->GetDescription();
2158                             if (!stop_info_desc || !stop_info_desc[0])
2159                                 stop_info_sp->SetDescription (description.c_str());
2160                         }
2161                         else
2162                         {
2163                             thread_sp->SetStopInfo (StopInfo::CreateStopReasonWithException (*thread_sp, description.c_str()));
2164                         }
2165                     }
2166                 }
2167             }
2168         }
2169     }
2170     return thread_sp;
2171 }
2172 
2173 lldb::ThreadSP
2174 ProcessGDBRemote::SetThreadStopInfo (StructuredData::Dictionary *thread_dict)
2175 {
2176     static ConstString g_key_tid("tid");
2177     static ConstString g_key_name("name");
2178     static ConstString g_key_reason("reason");
2179     static ConstString g_key_metype("metype");
2180     static ConstString g_key_medata("medata");
2181     static ConstString g_key_qaddr("qaddr");
2182     static ConstString g_key_dispatch_queue_t("dispatch_queue_t");
2183     static ConstString g_key_associated_with_dispatch_queue("associated_with_dispatch_queue");
2184     static ConstString g_key_queue_name("qname");
2185     static ConstString g_key_queue_kind("qkind");
2186     static ConstString g_key_queue_serial_number("qserialnum");
2187     static ConstString g_key_registers("registers");
2188     static ConstString g_key_memory("memory");
2189     static ConstString g_key_address("address");
2190     static ConstString g_key_bytes("bytes");
2191     static ConstString g_key_description("description");
2192     static ConstString g_key_signal("signal");
2193 
2194     // Stop with signal and thread info
2195     lldb::tid_t tid = LLDB_INVALID_THREAD_ID;
2196     uint8_t signo = 0;
2197     std::string value;
2198     std::string thread_name;
2199     std::string reason;
2200     std::string description;
2201     uint32_t exc_type = 0;
2202     std::vector<addr_t> exc_data;
2203     addr_t thread_dispatch_qaddr = LLDB_INVALID_ADDRESS;
2204     ExpeditedRegisterMap expedited_register_map;
2205     bool queue_vars_valid = false;
2206     addr_t dispatch_queue_t = LLDB_INVALID_ADDRESS;
2207     LazyBool associated_with_dispatch_queue = eLazyBoolCalculate;
2208     std::string queue_name;
2209     QueueKind queue_kind = eQueueKindUnknown;
2210     uint64_t queue_serial_number = 0;
2211     // Iterate through all of the thread dictionary key/value pairs from the structured data dictionary
2212 
2213     thread_dict->ForEach([this,
2214                           &tid,
2215                           &expedited_register_map,
2216                           &thread_name,
2217                           &signo,
2218                           &reason,
2219                           &description,
2220                           &exc_type,
2221                           &exc_data,
2222                           &thread_dispatch_qaddr,
2223                           &queue_vars_valid,
2224                           &associated_with_dispatch_queue,
2225                           &dispatch_queue_t,
2226                           &queue_name,
2227                           &queue_kind,
2228                           &queue_serial_number]
2229                           (ConstString key, StructuredData::Object* object) -> bool
2230     {
2231         if (key == g_key_tid)
2232         {
2233             // thread in big endian hex
2234             tid = object->GetIntegerValue(LLDB_INVALID_THREAD_ID);
2235         }
2236         else if (key == g_key_metype)
2237         {
2238             // exception type in big endian hex
2239             exc_type = object->GetIntegerValue(0);
2240         }
2241         else if (key == g_key_medata)
2242         {
2243             // exception data in big endian hex
2244             StructuredData::Array *array = object->GetAsArray();
2245             if (array)
2246             {
2247                 array->ForEach([&exc_data](StructuredData::Object* object) -> bool {
2248                     exc_data.push_back(object->GetIntegerValue());
2249                     return true; // Keep iterating through all array items
2250                 });
2251             }
2252         }
2253         else if (key == g_key_name)
2254         {
2255             thread_name = object->GetStringValue();
2256         }
2257         else if (key == g_key_qaddr)
2258         {
2259             thread_dispatch_qaddr = object->GetIntegerValue(LLDB_INVALID_ADDRESS);
2260         }
2261         else if (key == g_key_queue_name)
2262         {
2263             queue_vars_valid = true;
2264             queue_name = object->GetStringValue();
2265         }
2266         else if (key == g_key_queue_kind)
2267         {
2268             std::string queue_kind_str = object->GetStringValue();
2269             if (queue_kind_str == "serial")
2270             {
2271                 queue_vars_valid = true;
2272                 queue_kind = eQueueKindSerial;
2273             }
2274             else if (queue_kind_str == "concurrent")
2275             {
2276                 queue_vars_valid = true;
2277                 queue_kind = eQueueKindConcurrent;
2278             }
2279         }
2280         else if (key == g_key_queue_serial_number)
2281         {
2282             queue_serial_number = object->GetIntegerValue(0);
2283             if (queue_serial_number != 0)
2284                 queue_vars_valid = true;
2285         }
2286         else if (key == g_key_dispatch_queue_t)
2287         {
2288             dispatch_queue_t = object->GetIntegerValue(0);
2289             if (dispatch_queue_t != 0 && dispatch_queue_t != LLDB_INVALID_ADDRESS)
2290                 queue_vars_valid = true;
2291         }
2292         else if (key == g_key_associated_with_dispatch_queue)
2293         {
2294             queue_vars_valid = true;
2295             bool associated = object->GetBooleanValue ();
2296             if (associated)
2297                 associated_with_dispatch_queue = eLazyBoolYes;
2298             else
2299                 associated_with_dispatch_queue = eLazyBoolNo;
2300         }
2301         else if (key == g_key_reason)
2302         {
2303             reason = object->GetStringValue();
2304         }
2305         else if (key == g_key_description)
2306         {
2307             description = object->GetStringValue();
2308         }
2309         else if (key == g_key_registers)
2310         {
2311             StructuredData::Dictionary *registers_dict = object->GetAsDictionary();
2312 
2313             if (registers_dict)
2314             {
2315                 registers_dict->ForEach([&expedited_register_map](ConstString key, StructuredData::Object* object) -> bool {
2316                     const uint32_t reg = StringConvert::ToUInt32 (key.GetCString(), UINT32_MAX, 10);
2317                     if (reg != UINT32_MAX)
2318                         expedited_register_map[reg] = object->GetStringValue();
2319                     return true; // Keep iterating through all array items
2320                 });
2321             }
2322         }
2323         else if (key == g_key_memory)
2324         {
2325             StructuredData::Array *array = object->GetAsArray();
2326             if (array)
2327             {
2328                 array->ForEach([this](StructuredData::Object* object) -> bool {
2329                     StructuredData::Dictionary *mem_cache_dict = object->GetAsDictionary();
2330                     if (mem_cache_dict)
2331                     {
2332                         lldb::addr_t mem_cache_addr = LLDB_INVALID_ADDRESS;
2333                         if (mem_cache_dict->GetValueForKeyAsInteger<lldb::addr_t>("address", mem_cache_addr))
2334                         {
2335                             if (mem_cache_addr != LLDB_INVALID_ADDRESS)
2336                             {
2337                                 StringExtractor bytes;
2338                                 if (mem_cache_dict->GetValueForKeyAsString("bytes", bytes.GetStringRef()))
2339                                 {
2340                                     bytes.SetFilePos(0);
2341 
2342                                     const size_t byte_size = bytes.GetStringRef().size()/2;
2343                                     DataBufferSP data_buffer_sp(new DataBufferHeap(byte_size, 0));
2344                                     const size_t bytes_copied = bytes.GetHexBytes (data_buffer_sp->GetBytes(), byte_size, 0);
2345                                     if (bytes_copied == byte_size)
2346                                         m_memory_cache.AddL1CacheData(mem_cache_addr, data_buffer_sp);
2347                                 }
2348                             }
2349                         }
2350                     }
2351                     return true; // Keep iterating through all array items
2352                 });
2353             }
2354 
2355         }
2356         else if (key == g_key_signal)
2357             signo = object->GetIntegerValue(LLDB_INVALID_SIGNAL_NUMBER);
2358         return true; // Keep iterating through all dictionary key/value pairs
2359     });
2360 
2361     return SetThreadStopInfo (tid,
2362                               expedited_register_map,
2363                               signo,
2364                               thread_name,
2365                               reason,
2366                               description,
2367                               exc_type,
2368                               exc_data,
2369                               thread_dispatch_qaddr,
2370                               queue_vars_valid,
2371                               associated_with_dispatch_queue,
2372                               dispatch_queue_t,
2373                               queue_name,
2374                               queue_kind,
2375                               queue_serial_number);
2376 }
2377 
2378 StateType
2379 ProcessGDBRemote::SetThreadStopInfo (StringExtractor& stop_packet)
2380 {
2381     stop_packet.SetFilePos (0);
2382     const char stop_type = stop_packet.GetChar();
2383     switch (stop_type)
2384     {
2385     case 'T':
2386     case 'S':
2387         {
2388             // This is a bit of a hack, but is is required. If we did exec, we
2389             // need to clear our thread lists and also know to rebuild our dynamic
2390             // register info before we lookup and threads and populate the expedited
2391             // register values so we need to know this right away so we can cleanup
2392             // and update our registers.
2393             const uint32_t stop_id = GetStopID();
2394             if (stop_id == 0)
2395             {
2396                 // Our first stop, make sure we have a process ID, and also make
2397                 // sure we know about our registers
2398                 if (GetID() == LLDB_INVALID_PROCESS_ID)
2399                 {
2400                     lldb::pid_t pid = m_gdb_comm.GetCurrentProcessID ();
2401                     if (pid != LLDB_INVALID_PROCESS_ID)
2402                         SetID (pid);
2403                 }
2404                 BuildDynamicRegisterInfo (true);
2405             }
2406             // Stop with signal and thread info
2407             lldb::tid_t tid = LLDB_INVALID_THREAD_ID;
2408             const uint8_t signo = stop_packet.GetHexU8();
2409             std::string key;
2410             std::string value;
2411             std::string thread_name;
2412             std::string reason;
2413             std::string description;
2414             uint32_t exc_type = 0;
2415             std::vector<addr_t> exc_data;
2416             addr_t thread_dispatch_qaddr = LLDB_INVALID_ADDRESS;
2417             bool queue_vars_valid = false; // says if locals below that start with "queue_" are valid
2418             addr_t dispatch_queue_t = LLDB_INVALID_ADDRESS;
2419             LazyBool associated_with_dispatch_queue = eLazyBoolCalculate;
2420             std::string queue_name;
2421             QueueKind queue_kind = eQueueKindUnknown;
2422             uint64_t queue_serial_number = 0;
2423             ExpeditedRegisterMap expedited_register_map;
2424             while (stop_packet.GetNameColonValue(key, value))
2425             {
2426                 if (key.compare("metype") == 0)
2427                 {
2428                     // exception type in big endian hex
2429                     exc_type = StringConvert::ToUInt32 (value.c_str(), 0, 16);
2430                 }
2431                 else if (key.compare("medata") == 0)
2432                 {
2433                     // exception data in big endian hex
2434                     exc_data.push_back(StringConvert::ToUInt64 (value.c_str(), 0, 16));
2435                 }
2436                 else if (key.compare("thread") == 0)
2437                 {
2438                     // thread in big endian hex
2439                     tid = StringConvert::ToUInt64 (value.c_str(), LLDB_INVALID_THREAD_ID, 16);
2440                 }
2441                 else if (key.compare("threads") == 0)
2442                 {
2443                     Mutex::Locker locker(m_thread_list_real.GetMutex());
2444                     m_thread_ids.clear();
2445                     // A comma separated list of all threads in the current
2446                     // process that includes the thread for this stop reply
2447                     // packet
2448                     size_t comma_pos;
2449                     lldb::tid_t tid;
2450                     while ((comma_pos = value.find(',')) != std::string::npos)
2451                     {
2452                         value[comma_pos] = '\0';
2453                         // thread in big endian hex
2454                         tid = StringConvert::ToUInt64 (value.c_str(), LLDB_INVALID_THREAD_ID, 16);
2455                         if (tid != LLDB_INVALID_THREAD_ID)
2456                             m_thread_ids.push_back (tid);
2457                         value.erase(0, comma_pos + 1);
2458                     }
2459                     tid = StringConvert::ToUInt64 (value.c_str(), LLDB_INVALID_THREAD_ID, 16);
2460                     if (tid != LLDB_INVALID_THREAD_ID)
2461                         m_thread_ids.push_back (tid);
2462                 }
2463                 else if (key.compare("thread-pcs") == 0)
2464                 {
2465                     m_thread_pcs.clear();
2466                     // A comma separated list of all threads in the current
2467                     // process that includes the thread for this stop reply
2468                     // packet
2469                     size_t comma_pos;
2470                     lldb::addr_t pc;
2471                     while ((comma_pos = value.find(',')) != std::string::npos)
2472                     {
2473                         value[comma_pos] = '\0';
2474                         // thread in big endian hex
2475                         pc = StringConvert::ToUInt64 (value.c_str(), LLDB_INVALID_ADDRESS, 16);
2476                         if (pc != LLDB_INVALID_ADDRESS)
2477                             m_thread_pcs.push_back (pc);
2478                         value.erase(0, comma_pos + 1);
2479                     }
2480                     pc = StringConvert::ToUInt64 (value.c_str(), LLDB_INVALID_ADDRESS, 16);
2481                     if (pc != LLDB_INVALID_ADDRESS)
2482                         m_thread_pcs.push_back (pc);
2483                 }
2484                 else if (key.compare("jstopinfo") == 0)
2485                 {
2486                     StringExtractor json_extractor;
2487                     // Swap "value" over into "name_extractor"
2488                     json_extractor.GetStringRef().swap(value);
2489                     // Now convert the HEX bytes into a string value
2490                     json_extractor.GetHexByteString (value);
2491 
2492                     // This JSON contains thread IDs and thread stop info for all threads.
2493                     // It doesn't contain expedited registers, memory or queue info.
2494                     m_jstopinfo_sp = StructuredData::ParseJSON (value);
2495                 }
2496                 else if (key.compare("hexname") == 0)
2497                 {
2498                     StringExtractor name_extractor;
2499                     // Swap "value" over into "name_extractor"
2500                     name_extractor.GetStringRef().swap(value);
2501                     // Now convert the HEX bytes into a string value
2502                     name_extractor.GetHexByteString (value);
2503                     thread_name.swap (value);
2504                 }
2505                 else if (key.compare("name") == 0)
2506                 {
2507                     thread_name.swap (value);
2508                 }
2509                 else if (key.compare("qaddr") == 0)
2510                 {
2511                     thread_dispatch_qaddr = StringConvert::ToUInt64 (value.c_str(), 0, 16);
2512                 }
2513                 else if (key.compare("dispatch_queue_t") == 0)
2514                 {
2515                     queue_vars_valid = true;
2516                     dispatch_queue_t = StringConvert::ToUInt64 (value.c_str(), 0, 16);
2517                 }
2518                 else if (key.compare("qname") == 0)
2519                 {
2520                     queue_vars_valid = true;
2521                     StringExtractor name_extractor;
2522                     // Swap "value" over into "name_extractor"
2523                     name_extractor.GetStringRef().swap(value);
2524                     // Now convert the HEX bytes into a string value
2525                     name_extractor.GetHexByteString (value);
2526                     queue_name.swap (value);
2527                 }
2528                 else if (key.compare("qkind") == 0)
2529                 {
2530                     if (value == "serial")
2531                     {
2532                         queue_vars_valid = true;
2533                         queue_kind = eQueueKindSerial;
2534                     }
2535                     else if (value == "concurrent")
2536                     {
2537                         queue_vars_valid = true;
2538                         queue_kind = eQueueKindConcurrent;
2539                     }
2540                 }
2541                 else if (key.compare("qserialnum") == 0)
2542                 {
2543                     queue_serial_number = StringConvert::ToUInt64 (value.c_str(), 0, 0);
2544                     if (queue_serial_number != 0)
2545                         queue_vars_valid = true;
2546                 }
2547                 else if (key.compare("reason") == 0)
2548                 {
2549                     reason.swap(value);
2550                 }
2551                 else if (key.compare("description") == 0)
2552                 {
2553                     StringExtractor desc_extractor;
2554                     // Swap "value" over into "name_extractor"
2555                     desc_extractor.GetStringRef().swap(value);
2556                     // Now convert the HEX bytes into a string value
2557                     desc_extractor.GetHexByteString (value);
2558                     description.swap(value);
2559                 }
2560                 else if (key.compare("memory") == 0)
2561                 {
2562                     // Expedited memory. GDB servers can choose to send back expedited memory
2563                     // that can populate the L1 memory cache in the process so that things like
2564                     // the frame pointer backchain can be expedited. This will help stack
2565                     // backtracing be more efficient by not having to send as many memory read
2566                     // requests down the remote GDB server.
2567 
2568                     // Key/value pair format: memory:<addr>=<bytes>;
2569                     // <addr> is a number whose base will be interpreted by the prefix:
2570                     //      "0x[0-9a-fA-F]+" for hex
2571                     //      "0[0-7]+" for octal
2572                     //      "[1-9]+" for decimal
2573                     // <bytes> is native endian ASCII hex bytes just like the register values
2574                     llvm::StringRef value_ref(value);
2575                     std::pair<llvm::StringRef, llvm::StringRef> pair;
2576                     pair = value_ref.split('=');
2577                     if (!pair.first.empty() && !pair.second.empty())
2578                     {
2579                         std::string addr_str(pair.first.str());
2580                         const lldb::addr_t mem_cache_addr = StringConvert::ToUInt64(addr_str.c_str(), LLDB_INVALID_ADDRESS, 0);
2581                         if (mem_cache_addr != LLDB_INVALID_ADDRESS)
2582                         {
2583                             StringExtractor bytes;
2584                             bytes.GetStringRef() = pair.second.str();
2585                             const size_t byte_size = bytes.GetStringRef().size()/2;
2586                             DataBufferSP data_buffer_sp(new DataBufferHeap(byte_size, 0));
2587                             const size_t bytes_copied = bytes.GetHexBytes (data_buffer_sp->GetBytes(), byte_size, 0);
2588                             if (bytes_copied == byte_size)
2589                                 m_memory_cache.AddL1CacheData(mem_cache_addr, data_buffer_sp);
2590                         }
2591                     }
2592                 }
2593                 else if (key.compare("watch") == 0 || key.compare("rwatch") == 0 || key.compare("awatch") == 0)
2594                 {
2595                     // Support standard GDB remote stop reply packet 'TAAwatch:addr'
2596                     lldb::addr_t wp_addr = StringConvert::ToUInt64 (value.c_str(), LLDB_INVALID_ADDRESS, 16);
2597                     WatchpointSP wp_sp = GetTarget().GetWatchpointList().FindByAddress(wp_addr);
2598                     uint32_t wp_index = LLDB_INVALID_INDEX32;
2599 
2600                     if (wp_sp)
2601                         wp_index = wp_sp->GetHardwareIndex();
2602 
2603                     reason = "watchpoint";
2604                     StreamString ostr;
2605                     ostr.Printf("%" PRIu64 " %" PRIu32, wp_addr, wp_index);
2606                     description = ostr.GetString().c_str();
2607                 }
2608                 else if (key.compare("library") == 0)
2609                 {
2610                     LoadModules();
2611                 }
2612                 else if (key.size() == 2 && ::isxdigit(key[0]) && ::isxdigit(key[1]))
2613                 {
2614                     uint32_t reg = StringConvert::ToUInt32 (key.c_str(), UINT32_MAX, 16);
2615                     if (reg != UINT32_MAX)
2616                         expedited_register_map[reg] = std::move(value);
2617                 }
2618             }
2619 
2620             if (tid == LLDB_INVALID_THREAD_ID)
2621             {
2622                 // A thread id may be invalid if the response is old style 'S' packet which does not provide the
2623                 // thread information. So update the thread list and choose the first one.
2624                 UpdateThreadIDList ();
2625 
2626                 if (!m_thread_ids.empty ())
2627                 {
2628                     tid = m_thread_ids.front ();
2629                 }
2630             }
2631 
2632             ThreadSP thread_sp = SetThreadStopInfo (tid,
2633                                                     expedited_register_map,
2634                                                     signo,
2635                                                     thread_name,
2636                                                     reason,
2637                                                     description,
2638                                                     exc_type,
2639                                                     exc_data,
2640                                                     thread_dispatch_qaddr,
2641                                                     queue_vars_valid,
2642                                                     associated_with_dispatch_queue,
2643                                                     dispatch_queue_t,
2644                                                     queue_name,
2645                                                     queue_kind,
2646                                                     queue_serial_number);
2647 
2648             return eStateStopped;
2649         }
2650         break;
2651 
2652     case 'W':
2653     case 'X':
2654         // process exited
2655         return eStateExited;
2656 
2657     default:
2658         break;
2659     }
2660     return eStateInvalid;
2661 }
2662 
2663 void
2664 ProcessGDBRemote::RefreshStateAfterStop ()
2665 {
2666     Mutex::Locker locker(m_thread_list_real.GetMutex());
2667     m_thread_ids.clear();
2668     m_thread_pcs.clear();
2669     // Set the thread stop info. It might have a "threads" key whose value is
2670     // a list of all thread IDs in the current process, so m_thread_ids might
2671     // get set.
2672 
2673     // Scope for the lock
2674     {
2675         // Lock the thread stack while we access it
2676         Mutex::Locker stop_stack_lock(m_last_stop_packet_mutex);
2677         // Get the number of stop packets on the stack
2678         int nItems = m_stop_packet_stack.size();
2679         // Iterate over them
2680         for (int i = 0; i < nItems; i++)
2681         {
2682             // Get the thread stop info
2683             StringExtractorGDBRemote stop_info = m_stop_packet_stack[i];
2684             // Process thread stop info
2685             SetThreadStopInfo(stop_info);
2686         }
2687         // Clear the thread stop stack
2688         m_stop_packet_stack.clear();
2689     }
2690 
2691     // Check to see if SetThreadStopInfo() filled in m_thread_ids?
2692     if (m_thread_ids.empty())
2693     {
2694         // No, we need to fetch the thread list manually
2695         UpdateThreadIDList();
2696     }
2697 
2698     // If we have queried for a default thread id
2699     if (m_initial_tid != LLDB_INVALID_THREAD_ID)
2700     {
2701         m_thread_list.SetSelectedThreadByID(m_initial_tid);
2702         m_initial_tid = LLDB_INVALID_THREAD_ID;
2703     }
2704 
2705     // Let all threads recover from stopping and do any clean up based
2706     // on the previous thread state (if any).
2707     m_thread_list_real.RefreshStateAfterStop();
2708 
2709 }
2710 
2711 Error
2712 ProcessGDBRemote::DoHalt (bool &caused_stop)
2713 {
2714     Error error;
2715 
2716     bool timed_out = false;
2717     Mutex::Locker locker;
2718 
2719     if (m_public_state.GetValue() == eStateAttaching)
2720     {
2721         // We are being asked to halt during an attach. We need to just close
2722         // our file handle and debugserver will go away, and we can be done...
2723         m_gdb_comm.Disconnect();
2724     }
2725     else
2726     {
2727         if (!m_gdb_comm.SendInterrupt (locker, 2, timed_out))
2728         {
2729             if (timed_out)
2730                 error.SetErrorString("timed out sending interrupt packet");
2731             else
2732                 error.SetErrorString("unknown error sending interrupt packet");
2733         }
2734 
2735         caused_stop = m_gdb_comm.GetInterruptWasSent ();
2736     }
2737     return error;
2738 }
2739 
2740 Error
2741 ProcessGDBRemote::DoDetach(bool keep_stopped)
2742 {
2743     Error error;
2744     Log *log (ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PROCESS));
2745     if (log)
2746         log->Printf ("ProcessGDBRemote::DoDetach(keep_stopped: %i)", keep_stopped);
2747 
2748     error = m_gdb_comm.Detach (keep_stopped);
2749     if (log)
2750     {
2751         if (error.Success())
2752             log->PutCString ("ProcessGDBRemote::DoDetach() detach packet sent successfully");
2753         else
2754             log->Printf ("ProcessGDBRemote::DoDetach() detach packet send failed: %s", error.AsCString() ? error.AsCString() : "<unknown error>");
2755     }
2756 
2757     if (!error.Success())
2758         return error;
2759 
2760     // Sleep for one second to let the process get all detached...
2761     StopAsyncThread ();
2762 
2763     SetPrivateState (eStateDetached);
2764     ResumePrivateStateThread();
2765 
2766     //KillDebugserverProcess ();
2767     return error;
2768 }
2769 
2770 
2771 Error
2772 ProcessGDBRemote::DoDestroy ()
2773 {
2774     Error error;
2775     Log *log (ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PROCESS));
2776     if (log)
2777         log->Printf ("ProcessGDBRemote::DoDestroy()");
2778 
2779     // There is a bug in older iOS debugservers where they don't shut down the process
2780     // they are debugging properly.  If the process is sitting at a breakpoint or an exception,
2781     // this can cause problems with restarting.  So we check to see if any of our threads are stopped
2782     // at a breakpoint, and if so we remove all the breakpoints, resume the process, and THEN
2783     // destroy it again.
2784     //
2785     // Note, we don't have a good way to test the version of debugserver, but I happen to know that
2786     // the set of all the iOS debugservers which don't support GetThreadSuffixSupported() and that of
2787     // the debugservers with this bug are equal.  There really should be a better way to test this!
2788     //
2789     // We also use m_destroy_tried_resuming to make sure we only do this once, if we resume and then halt and
2790     // get called here to destroy again and we're still at a breakpoint or exception, then we should
2791     // just do the straight-forward kill.
2792     //
2793     // And of course, if we weren't able to stop the process by the time we get here, it isn't
2794     // necessary (or helpful) to do any of this.
2795 
2796     if (!m_gdb_comm.GetThreadSuffixSupported() && m_public_state.GetValue() != eStateRunning)
2797     {
2798         PlatformSP platform_sp = GetTarget().GetPlatform();
2799 
2800         // FIXME: These should be ConstStrings so we aren't doing strcmp'ing.
2801         if (platform_sp
2802             && platform_sp->GetName()
2803             && platform_sp->GetName() == PlatformRemoteiOS::GetPluginNameStatic())
2804         {
2805             if (m_destroy_tried_resuming)
2806             {
2807                 if (log)
2808                     log->PutCString ("ProcessGDBRemote::DoDestroy() - Tried resuming to destroy once already, not doing it again.");
2809             }
2810             else
2811             {
2812                 // At present, the plans are discarded and the breakpoints disabled Process::Destroy,
2813                 // but we really need it to happen here and it doesn't matter if we do it twice.
2814                 m_thread_list.DiscardThreadPlans();
2815                 DisableAllBreakpointSites();
2816 
2817                 bool stop_looks_like_crash = false;
2818                 ThreadList &threads = GetThreadList();
2819 
2820                 {
2821                     Mutex::Locker locker(threads.GetMutex());
2822 
2823                     size_t num_threads = threads.GetSize();
2824                     for (size_t i = 0; i < num_threads; i++)
2825                     {
2826                         ThreadSP thread_sp = threads.GetThreadAtIndex(i);
2827                         StopInfoSP stop_info_sp = thread_sp->GetPrivateStopInfo();
2828                         StopReason reason = eStopReasonInvalid;
2829                         if (stop_info_sp)
2830                             reason = stop_info_sp->GetStopReason();
2831                         if (reason == eStopReasonBreakpoint
2832                             || reason == eStopReasonException)
2833                         {
2834                             if (log)
2835                                 log->Printf ("ProcessGDBRemote::DoDestroy() - thread: 0x%4.4" PRIx64 " stopped with reason: %s.",
2836                                              thread_sp->GetProtocolID(),
2837                                              stop_info_sp->GetDescription());
2838                             stop_looks_like_crash = true;
2839                             break;
2840                         }
2841                     }
2842                 }
2843 
2844                 if (stop_looks_like_crash)
2845                 {
2846                     if (log)
2847                         log->PutCString ("ProcessGDBRemote::DoDestroy() - Stopped at a breakpoint, continue and then kill.");
2848                     m_destroy_tried_resuming = true;
2849 
2850                     // If we are going to run again before killing, it would be good to suspend all the threads
2851                     // before resuming so they won't get into more trouble.  Sadly, for the threads stopped with
2852                     // the breakpoint or exception, the exception doesn't get cleared if it is suspended, so we do
2853                     // have to run the risk of letting those threads proceed a bit.
2854 
2855                     {
2856                         Mutex::Locker locker(threads.GetMutex());
2857 
2858                         size_t num_threads = threads.GetSize();
2859                         for (size_t i = 0; i < num_threads; i++)
2860                         {
2861                             ThreadSP thread_sp = threads.GetThreadAtIndex(i);
2862                             StopInfoSP stop_info_sp = thread_sp->GetPrivateStopInfo();
2863                             StopReason reason = eStopReasonInvalid;
2864                             if (stop_info_sp)
2865                                 reason = stop_info_sp->GetStopReason();
2866                             if (reason != eStopReasonBreakpoint
2867                                 && reason != eStopReasonException)
2868                             {
2869                                 if (log)
2870                                     log->Printf ("ProcessGDBRemote::DoDestroy() - Suspending thread: 0x%4.4" PRIx64 " before running.",
2871                                                  thread_sp->GetProtocolID());
2872                                 thread_sp->SetResumeState(eStateSuspended);
2873                             }
2874                         }
2875                     }
2876                     Resume ();
2877                     return Destroy(false);
2878                 }
2879             }
2880         }
2881     }
2882 
2883     // Interrupt if our inferior is running...
2884     int exit_status = SIGABRT;
2885     std::string exit_string;
2886 
2887     if (m_gdb_comm.IsConnected())
2888     {
2889         if (m_public_state.GetValue() != eStateAttaching)
2890         {
2891             StringExtractorGDBRemote response;
2892             bool send_async = true;
2893             GDBRemoteCommunication::ScopedTimeout (m_gdb_comm, 3);
2894 
2895             if (m_gdb_comm.SendPacketAndWaitForResponse("k", 1, response, send_async) == GDBRemoteCommunication::PacketResult::Success)
2896             {
2897                 char packet_cmd = response.GetChar(0);
2898 
2899                 if (packet_cmd == 'W' || packet_cmd == 'X')
2900                 {
2901 #if defined(__APPLE__)
2902                     // For Native processes on Mac OS X, we launch through the Host Platform, then hand the process off
2903                     // to debugserver, which becomes the parent process through "PT_ATTACH".  Then when we go to kill
2904                     // the process on Mac OS X we call ptrace(PT_KILL) to kill it, then we call waitpid which returns
2905                     // with no error and the correct status.  But amusingly enough that doesn't seem to actually reap
2906                     // the process, but instead it is left around as a Zombie.  Probably the kernel is in the process of
2907                     // switching ownership back to lldb which was the original parent, and gets confused in the handoff.
2908                     // Anyway, so call waitpid here to finally reap it.
2909                     PlatformSP platform_sp(GetTarget().GetPlatform());
2910                     if (platform_sp && platform_sp->IsHost())
2911                     {
2912                         int status;
2913                         ::pid_t reap_pid;
2914                         reap_pid = waitpid (GetID(), &status, WNOHANG);
2915                         if (log)
2916                             log->Printf ("Reaped pid: %d, status: %d.\n", reap_pid, status);
2917                     }
2918 #endif
2919                     SetLastStopPacket (response);
2920                     ClearThreadIDList ();
2921                     exit_status = response.GetHexU8();
2922                 }
2923                 else
2924                 {
2925                     if (log)
2926                         log->Printf ("ProcessGDBRemote::DoDestroy - got unexpected response to k packet: %s", response.GetStringRef().c_str());
2927                     exit_string.assign("got unexpected response to k packet: ");
2928                     exit_string.append(response.GetStringRef());
2929                 }
2930             }
2931             else
2932             {
2933                 if (log)
2934                     log->Printf ("ProcessGDBRemote::DoDestroy - failed to send k packet");
2935                 exit_string.assign("failed to send the k packet");
2936             }
2937         }
2938         else
2939         {
2940             if (log)
2941                 log->Printf ("ProcessGDBRemote::DoDestroy - killed or interrupted while attaching");
2942             exit_string.assign ("killed or interrupted while attaching.");
2943         }
2944     }
2945     else
2946     {
2947         // If we missed setting the exit status on the way out, do it here.
2948         // NB set exit status can be called multiple times, the first one sets the status.
2949         exit_string.assign("destroying when not connected to debugserver");
2950     }
2951 
2952     SetExitStatus(exit_status, exit_string.c_str());
2953 
2954     StopAsyncThread ();
2955     KillDebugserverProcess ();
2956     return error;
2957 }
2958 
2959 void
2960 ProcessGDBRemote::SetLastStopPacket (const StringExtractorGDBRemote &response)
2961 {
2962     const bool did_exec = response.GetStringRef().find(";reason:exec;") != std::string::npos;
2963     if (did_exec)
2964     {
2965         Log *log (ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PROCESS));
2966         if (log)
2967             log->Printf ("ProcessGDBRemote::SetLastStopPacket () - detected exec");
2968 
2969         m_thread_list_real.Clear();
2970         m_thread_list.Clear();
2971         BuildDynamicRegisterInfo (true);
2972         m_gdb_comm.ResetDiscoverableSettings (did_exec);
2973     }
2974 
2975     // Scope the lock
2976     {
2977         // Lock the thread stack while we access it
2978         Mutex::Locker stop_stack_lock(m_last_stop_packet_mutex);
2979 
2980         // We are are not using non-stop mode, there can only be one last stop
2981         // reply packet, so clear the list.
2982         if (GetTarget().GetNonStopModeEnabled() == false)
2983             m_stop_packet_stack.clear();
2984 
2985         // Add this stop packet to the stop packet stack
2986         // This stack will get popped and examined when we switch to the
2987         // Stopped state
2988         m_stop_packet_stack.push_back(response);
2989     }
2990 }
2991 
2992 void
2993 ProcessGDBRemote::SetUnixSignals(const UnixSignalsSP &signals_sp)
2994 {
2995     Process::SetUnixSignals(std::make_shared<GDBRemoteSignals>(signals_sp));
2996 }
2997 
2998 //------------------------------------------------------------------
2999 // Process Queries
3000 //------------------------------------------------------------------
3001 
3002 bool
3003 ProcessGDBRemote::IsAlive ()
3004 {
3005     return m_gdb_comm.IsConnected() && Process::IsAlive();
3006 }
3007 
3008 addr_t
3009 ProcessGDBRemote::GetImageInfoAddress()
3010 {
3011     // request the link map address via the $qShlibInfoAddr packet
3012     lldb::addr_t addr = m_gdb_comm.GetShlibInfoAddr();
3013 
3014     // the loaded module list can also provides a link map address
3015     if (addr == LLDB_INVALID_ADDRESS)
3016     {
3017         LoadedModuleInfoList list;
3018         if (GetLoadedModuleList (list).Success())
3019             addr = list.m_link_map;
3020     }
3021 
3022     return addr;
3023 }
3024 
3025 void
3026 ProcessGDBRemote::WillPublicStop ()
3027 {
3028     // See if the GDB remote client supports the JSON threads info.
3029     // If so, we gather stop info for all threads, expedited registers,
3030     // expedited memory, runtime queue information (iOS and MacOSX only),
3031     // and more. Expediting memory will help stack backtracing be much
3032     // faster. Expediting registers will make sure we don't have to read
3033     // the thread registers for GPRs.
3034     m_jthreadsinfo_sp = m_gdb_comm.GetThreadsInfo();
3035 
3036     if (m_jthreadsinfo_sp)
3037     {
3038         // Now set the stop info for each thread and also expedite any registers
3039         // and memory that was in the jThreadsInfo response.
3040         StructuredData::Array *thread_infos = m_jthreadsinfo_sp->GetAsArray();
3041         if (thread_infos)
3042         {
3043             const size_t n = thread_infos->GetSize();
3044             for (size_t i=0; i<n; ++i)
3045             {
3046                 StructuredData::Dictionary *thread_dict = thread_infos->GetItemAtIndex(i)->GetAsDictionary();
3047                 if (thread_dict)
3048                     SetThreadStopInfo(thread_dict);
3049             }
3050         }
3051     }
3052 }
3053 
3054 //------------------------------------------------------------------
3055 // Process Memory
3056 //------------------------------------------------------------------
3057 size_t
3058 ProcessGDBRemote::DoReadMemory (addr_t addr, void *buf, size_t size, Error &error)
3059 {
3060     GetMaxMemorySize ();
3061     if (size > m_max_memory_size)
3062     {
3063         // Keep memory read sizes down to a sane limit. This function will be
3064         // called multiple times in order to complete the task by
3065         // lldb_private::Process so it is ok to do this.
3066         size = m_max_memory_size;
3067     }
3068 
3069     char packet[64];
3070     int packet_len;
3071     bool binary_memory_read = m_gdb_comm.GetxPacketSupported();
3072     packet_len = ::snprintf(packet, sizeof(packet), "%c%" PRIx64 ",%" PRIx64,
3073                             binary_memory_read ? 'x' : 'm', (uint64_t)addr, (uint64_t)size);
3074     assert (packet_len + 1 < (int)sizeof(packet));
3075     StringExtractorGDBRemote response;
3076     if (m_gdb_comm.SendPacketAndWaitForResponse(packet, packet_len, response, true) == GDBRemoteCommunication::PacketResult::Success)
3077     {
3078         if (response.IsNormalResponse())
3079         {
3080             error.Clear();
3081             if (binary_memory_read)
3082             {
3083                 // The lower level GDBRemoteCommunication packet receive layer has already de-quoted any
3084                 // 0x7d character escaping that was present in the packet
3085 
3086                 size_t data_received_size = response.GetBytesLeft();
3087                 if (data_received_size > size)
3088                 {
3089                     // Don't write past the end of BUF if the remote debug server gave us too
3090                     // much data for some reason.
3091                     data_received_size = size;
3092                 }
3093                 memcpy (buf, response.GetStringRef().data(), data_received_size);
3094                 return data_received_size;
3095             }
3096             else
3097             {
3098                 return response.GetHexBytes(buf, size, '\xdd');
3099             }
3100         }
3101         else if (response.IsErrorResponse())
3102             error.SetErrorStringWithFormat("memory read failed for 0x%" PRIx64, addr);
3103         else if (response.IsUnsupportedResponse())
3104             error.SetErrorStringWithFormat("GDB server does not support reading memory");
3105         else
3106             error.SetErrorStringWithFormat("unexpected response to GDB server memory read packet '%s': '%s'", packet, response.GetStringRef().c_str());
3107     }
3108     else
3109     {
3110         error.SetErrorStringWithFormat("failed to send packet: '%s'", packet);
3111     }
3112     return 0;
3113 }
3114 
3115 size_t
3116 ProcessGDBRemote::DoWriteMemory (addr_t addr, const void *buf, size_t size, Error &error)
3117 {
3118     GetMaxMemorySize ();
3119     if (size > m_max_memory_size)
3120     {
3121         // Keep memory read sizes down to a sane limit. This function will be
3122         // called multiple times in order to complete the task by
3123         // lldb_private::Process so it is ok to do this.
3124         size = m_max_memory_size;
3125     }
3126 
3127     StreamString packet;
3128     packet.Printf("M%" PRIx64 ",%" PRIx64 ":", addr, (uint64_t)size);
3129     packet.PutBytesAsRawHex8(buf, size, endian::InlHostByteOrder(), endian::InlHostByteOrder());
3130     StringExtractorGDBRemote response;
3131     if (m_gdb_comm.SendPacketAndWaitForResponse(packet.GetData(), packet.GetSize(), response, true) == GDBRemoteCommunication::PacketResult::Success)
3132     {
3133         if (response.IsOKResponse())
3134         {
3135             error.Clear();
3136             return size;
3137         }
3138         else if (response.IsErrorResponse())
3139             error.SetErrorStringWithFormat("memory write failed for 0x%" PRIx64, addr);
3140         else if (response.IsUnsupportedResponse())
3141             error.SetErrorStringWithFormat("GDB server does not support writing memory");
3142         else
3143             error.SetErrorStringWithFormat("unexpected response to GDB server memory write packet '%s': '%s'", packet.GetString().c_str(), response.GetStringRef().c_str());
3144     }
3145     else
3146     {
3147         error.SetErrorStringWithFormat("failed to send packet: '%s'", packet.GetString().c_str());
3148     }
3149     return 0;
3150 }
3151 
3152 lldb::addr_t
3153 ProcessGDBRemote::DoAllocateMemory (size_t size, uint32_t permissions, Error &error)
3154 {
3155     Log *log (GetLogIfAnyCategoriesSet (LIBLLDB_LOG_PROCESS|LIBLLDB_LOG_EXPRESSIONS));
3156     addr_t allocated_addr = LLDB_INVALID_ADDRESS;
3157 
3158     if (m_gdb_comm.SupportsAllocDeallocMemory() != eLazyBoolNo)
3159     {
3160         allocated_addr = m_gdb_comm.AllocateMemory (size, permissions);
3161         if (allocated_addr != LLDB_INVALID_ADDRESS || m_gdb_comm.SupportsAllocDeallocMemory() == eLazyBoolYes)
3162             return allocated_addr;
3163     }
3164 
3165     if (m_gdb_comm.SupportsAllocDeallocMemory() == eLazyBoolNo)
3166     {
3167         // Call mmap() to create memory in the inferior..
3168         unsigned prot = 0;
3169         if (permissions & lldb::ePermissionsReadable)
3170             prot |= eMmapProtRead;
3171         if (permissions & lldb::ePermissionsWritable)
3172             prot |= eMmapProtWrite;
3173         if (permissions & lldb::ePermissionsExecutable)
3174             prot |= eMmapProtExec;
3175 
3176         if (InferiorCallMmap(this, allocated_addr, 0, size, prot,
3177                              eMmapFlagsAnon | eMmapFlagsPrivate, -1, 0))
3178             m_addr_to_mmap_size[allocated_addr] = size;
3179         else
3180         {
3181             allocated_addr = LLDB_INVALID_ADDRESS;
3182             if (log)
3183                 log->Printf ("ProcessGDBRemote::%s no direct stub support for memory allocation, and InferiorCallMmap also failed - is stub missing register context save/restore capability?", __FUNCTION__);
3184         }
3185     }
3186 
3187     if (allocated_addr == LLDB_INVALID_ADDRESS)
3188         error.SetErrorStringWithFormat("unable to allocate %" PRIu64 " bytes of memory with permissions %s", (uint64_t)size, GetPermissionsAsCString (permissions));
3189     else
3190         error.Clear();
3191     return allocated_addr;
3192 }
3193 
3194 Error
3195 ProcessGDBRemote::GetMemoryRegionInfo (addr_t load_addr,
3196                                        MemoryRegionInfo &region_info)
3197 {
3198 
3199     Error error (m_gdb_comm.GetMemoryRegionInfo (load_addr, region_info));
3200     return error;
3201 }
3202 
3203 Error
3204 ProcessGDBRemote::GetWatchpointSupportInfo (uint32_t &num)
3205 {
3206 
3207     Error error (m_gdb_comm.GetWatchpointSupportInfo (num));
3208     return error;
3209 }
3210 
3211 Error
3212 ProcessGDBRemote::GetWatchpointSupportInfo (uint32_t &num, bool& after)
3213 {
3214     Error error (m_gdb_comm.GetWatchpointSupportInfo (num, after, GetTarget().GetArchitecture()));
3215     return error;
3216 }
3217 
3218 Error
3219 ProcessGDBRemote::DoDeallocateMemory (lldb::addr_t addr)
3220 {
3221     Error error;
3222     LazyBool supported = m_gdb_comm.SupportsAllocDeallocMemory();
3223 
3224     switch (supported)
3225     {
3226         case eLazyBoolCalculate:
3227             // We should never be deallocating memory without allocating memory
3228             // first so we should never get eLazyBoolCalculate
3229             error.SetErrorString ("tried to deallocate memory without ever allocating memory");
3230             break;
3231 
3232         case eLazyBoolYes:
3233             if (!m_gdb_comm.DeallocateMemory (addr))
3234                 error.SetErrorStringWithFormat("unable to deallocate memory at 0x%" PRIx64, addr);
3235             break;
3236 
3237         case eLazyBoolNo:
3238             // Call munmap() to deallocate memory in the inferior..
3239             {
3240                 MMapMap::iterator pos = m_addr_to_mmap_size.find(addr);
3241                 if (pos != m_addr_to_mmap_size.end() &&
3242                     InferiorCallMunmap(this, addr, pos->second))
3243                     m_addr_to_mmap_size.erase (pos);
3244                 else
3245                     error.SetErrorStringWithFormat("unable to deallocate memory at 0x%" PRIx64, addr);
3246             }
3247             break;
3248     }
3249 
3250     return error;
3251 }
3252 
3253 
3254 //------------------------------------------------------------------
3255 // Process STDIO
3256 //------------------------------------------------------------------
3257 size_t
3258 ProcessGDBRemote::PutSTDIN (const char *src, size_t src_len, Error &error)
3259 {
3260     if (m_stdio_communication.IsConnected())
3261     {
3262         ConnectionStatus status;
3263         m_stdio_communication.Write(src, src_len, status, NULL);
3264     }
3265     else if (m_stdin_forward)
3266     {
3267         m_gdb_comm.SendStdinNotification(src, src_len);
3268     }
3269     return 0;
3270 }
3271 
3272 Error
3273 ProcessGDBRemote::EnableBreakpointSite (BreakpointSite *bp_site)
3274 {
3275     Error error;
3276     assert(bp_site != NULL);
3277 
3278     // Get logging info
3279     Log *log(ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_BREAKPOINTS));
3280     user_id_t site_id = bp_site->GetID();
3281 
3282     // Get the breakpoint address
3283     const addr_t addr = bp_site->GetLoadAddress();
3284 
3285     // Log that a breakpoint was requested
3286     if (log)
3287         log->Printf("ProcessGDBRemote::EnableBreakpointSite (size_id = %" PRIu64 ") address = 0x%" PRIx64, site_id, (uint64_t)addr);
3288 
3289     // Breakpoint already exists and is enabled
3290     if (bp_site->IsEnabled())
3291     {
3292         if (log)
3293             log->Printf("ProcessGDBRemote::EnableBreakpointSite (size_id = %" PRIu64 ") address = 0x%" PRIx64 " -- SUCCESS (already enabled)", site_id, (uint64_t)addr);
3294         return error;
3295     }
3296 
3297     // Get the software breakpoint trap opcode size
3298     const size_t bp_op_size = GetSoftwareBreakpointTrapOpcode(bp_site);
3299 
3300     // SupportsGDBStoppointPacket() simply checks a boolean, indicating if this breakpoint type
3301     // is supported by the remote stub. These are set to true by default, and later set to false
3302     // only after we receive an unimplemented response when sending a breakpoint packet. This means
3303     // initially that unless we were specifically instructed to use a hardware breakpoint, LLDB will
3304     // attempt to set a software breakpoint. HardwareRequired() also queries a boolean variable which
3305     // indicates if the user specifically asked for hardware breakpoints.  If true then we will
3306     // skip over software breakpoints.
3307     if (m_gdb_comm.SupportsGDBStoppointPacket(eBreakpointSoftware) && (!bp_site->HardwareRequired()))
3308     {
3309         // Try to send off a software breakpoint packet ($Z0)
3310         if (m_gdb_comm.SendGDBStoppointTypePacket(eBreakpointSoftware, true, addr, bp_op_size) == 0)
3311         {
3312             // The breakpoint was placed successfully
3313             bp_site->SetEnabled(true);
3314             bp_site->SetType(BreakpointSite::eExternal);
3315             return error;
3316         }
3317 
3318         // SendGDBStoppointTypePacket() will return an error if it was unable to set this
3319         // breakpoint. We need to differentiate between a error specific to placing this breakpoint
3320         // or if we have learned that this breakpoint type is unsupported. To do this, we
3321         // must test the support boolean for this breakpoint type to see if it now indicates that
3322         // this breakpoint type is unsupported.  If they are still supported then we should return
3323         // with the error code.  If they are now unsupported, then we would like to fall through
3324         // and try another form of breakpoint.
3325         if (m_gdb_comm.SupportsGDBStoppointPacket(eBreakpointSoftware))
3326             return error;
3327 
3328         // We reach here when software breakpoints have been found to be unsupported. For future
3329         // calls to set a breakpoint, we will not attempt to set a breakpoint with a type that is
3330         // known not to be supported.
3331         if (log)
3332             log->Printf("Software breakpoints are unsupported");
3333 
3334         // So we will fall through and try a hardware breakpoint
3335     }
3336 
3337     // The process of setting a hardware breakpoint is much the same as above.  We check the
3338     // supported boolean for this breakpoint type, and if it is thought to be supported then we
3339     // will try to set this breakpoint with a hardware breakpoint.
3340     if (m_gdb_comm.SupportsGDBStoppointPacket(eBreakpointHardware))
3341     {
3342         // Try to send off a hardware breakpoint packet ($Z1)
3343         if (m_gdb_comm.SendGDBStoppointTypePacket(eBreakpointHardware, true, addr, bp_op_size) == 0)
3344         {
3345             // The breakpoint was placed successfully
3346             bp_site->SetEnabled(true);
3347             bp_site->SetType(BreakpointSite::eHardware);
3348             return error;
3349         }
3350 
3351         // Check if the error was something other then an unsupported breakpoint type
3352         if (m_gdb_comm.SupportsGDBStoppointPacket(eBreakpointHardware))
3353         {
3354             // Unable to set this hardware breakpoint
3355             error.SetErrorString("failed to set hardware breakpoint (hardware breakpoint resources might be exhausted or unavailable)");
3356             return error;
3357         }
3358 
3359         // We will reach here when the stub gives an unsupported response to a hardware breakpoint
3360         if (log)
3361             log->Printf("Hardware breakpoints are unsupported");
3362 
3363         // Finally we will falling through to a #trap style breakpoint
3364     }
3365 
3366     // Don't fall through when hardware breakpoints were specifically requested
3367     if (bp_site->HardwareRequired())
3368     {
3369         error.SetErrorString("hardware breakpoints are not supported");
3370         return error;
3371     }
3372 
3373     // As a last resort we want to place a manual breakpoint. An instruction
3374     // is placed into the process memory using memory write packets.
3375     return EnableSoftwareBreakpoint(bp_site);
3376 }
3377 
3378 Error
3379 ProcessGDBRemote::DisableBreakpointSite (BreakpointSite *bp_site)
3380 {
3381     Error error;
3382     assert (bp_site != NULL);
3383     addr_t addr = bp_site->GetLoadAddress();
3384     user_id_t site_id = bp_site->GetID();
3385     Log *log (ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_BREAKPOINTS));
3386     if (log)
3387         log->Printf ("ProcessGDBRemote::DisableBreakpointSite (site_id = %" PRIu64 ") addr = 0x%8.8" PRIx64, site_id, (uint64_t)addr);
3388 
3389     if (bp_site->IsEnabled())
3390     {
3391         const size_t bp_op_size = GetSoftwareBreakpointTrapOpcode (bp_site);
3392 
3393         BreakpointSite::Type bp_type = bp_site->GetType();
3394         switch (bp_type)
3395         {
3396         case BreakpointSite::eSoftware:
3397             error = DisableSoftwareBreakpoint (bp_site);
3398             break;
3399 
3400         case BreakpointSite::eHardware:
3401             if (m_gdb_comm.SendGDBStoppointTypePacket(eBreakpointHardware, false, addr, bp_op_size))
3402                 error.SetErrorToGenericError();
3403             break;
3404 
3405         case BreakpointSite::eExternal:
3406             {
3407                 GDBStoppointType stoppoint_type;
3408                 if (bp_site->IsHardware())
3409                     stoppoint_type = eBreakpointHardware;
3410                 else
3411                     stoppoint_type = eBreakpointSoftware;
3412 
3413                 if (m_gdb_comm.SendGDBStoppointTypePacket(stoppoint_type, false, addr, bp_op_size))
3414                 error.SetErrorToGenericError();
3415             }
3416             break;
3417         }
3418         if (error.Success())
3419             bp_site->SetEnabled(false);
3420     }
3421     else
3422     {
3423         if (log)
3424             log->Printf ("ProcessGDBRemote::DisableBreakpointSite (site_id = %" PRIu64 ") addr = 0x%8.8" PRIx64 " -- SUCCESS (already disabled)", site_id, (uint64_t)addr);
3425         return error;
3426     }
3427 
3428     if (error.Success())
3429         error.SetErrorToGenericError();
3430     return error;
3431 }
3432 
3433 // Pre-requisite: wp != NULL.
3434 static GDBStoppointType
3435 GetGDBStoppointType (Watchpoint *wp)
3436 {
3437     assert(wp);
3438     bool watch_read = wp->WatchpointRead();
3439     bool watch_write = wp->WatchpointWrite();
3440 
3441     // watch_read and watch_write cannot both be false.
3442     assert(watch_read || watch_write);
3443     if (watch_read && watch_write)
3444         return eWatchpointReadWrite;
3445     else if (watch_read)
3446         return eWatchpointRead;
3447     else // Must be watch_write, then.
3448         return eWatchpointWrite;
3449 }
3450 
3451 Error
3452 ProcessGDBRemote::EnableWatchpoint (Watchpoint *wp, bool notify)
3453 {
3454     Error error;
3455     if (wp)
3456     {
3457         user_id_t watchID = wp->GetID();
3458         addr_t addr = wp->GetLoadAddress();
3459         Log *log (ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_WATCHPOINTS));
3460         if (log)
3461             log->Printf ("ProcessGDBRemote::EnableWatchpoint(watchID = %" PRIu64 ")", watchID);
3462         if (wp->IsEnabled())
3463         {
3464             if (log)
3465                 log->Printf("ProcessGDBRemote::EnableWatchpoint(watchID = %" PRIu64 ") addr = 0x%8.8" PRIx64 ": watchpoint already enabled.", watchID, (uint64_t)addr);
3466             return error;
3467         }
3468 
3469         GDBStoppointType type = GetGDBStoppointType(wp);
3470         // Pass down an appropriate z/Z packet...
3471         if (m_gdb_comm.SupportsGDBStoppointPacket (type))
3472         {
3473             if (m_gdb_comm.SendGDBStoppointTypePacket(type, true, addr, wp->GetByteSize()) == 0)
3474             {
3475                 wp->SetEnabled(true, notify);
3476                 return error;
3477             }
3478             else
3479                 error.SetErrorString("sending gdb watchpoint packet failed");
3480         }
3481         else
3482             error.SetErrorString("watchpoints not supported");
3483     }
3484     else
3485     {
3486         error.SetErrorString("Watchpoint argument was NULL.");
3487     }
3488     if (error.Success())
3489         error.SetErrorToGenericError();
3490     return error;
3491 }
3492 
3493 Error
3494 ProcessGDBRemote::DisableWatchpoint (Watchpoint *wp, bool notify)
3495 {
3496     Error error;
3497     if (wp)
3498     {
3499         user_id_t watchID = wp->GetID();
3500 
3501         Log *log (ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_WATCHPOINTS));
3502 
3503         addr_t addr = wp->GetLoadAddress();
3504 
3505         if (log)
3506             log->Printf ("ProcessGDBRemote::DisableWatchpoint (watchID = %" PRIu64 ") addr = 0x%8.8" PRIx64, watchID, (uint64_t)addr);
3507 
3508         if (!wp->IsEnabled())
3509         {
3510             if (log)
3511                 log->Printf ("ProcessGDBRemote::DisableWatchpoint (watchID = %" PRIu64 ") addr = 0x%8.8" PRIx64 " -- SUCCESS (already disabled)", watchID, (uint64_t)addr);
3512             // See also 'class WatchpointSentry' within StopInfo.cpp.
3513             // This disabling attempt might come from the user-supplied actions, we'll route it in order for
3514             // the watchpoint object to intelligently process this action.
3515             wp->SetEnabled(false, notify);
3516             return error;
3517         }
3518 
3519         if (wp->IsHardware())
3520         {
3521             GDBStoppointType type = GetGDBStoppointType(wp);
3522             // Pass down an appropriate z/Z packet...
3523             if (m_gdb_comm.SendGDBStoppointTypePacket(type, false, addr, wp->GetByteSize()) == 0)
3524             {
3525                 wp->SetEnabled(false, notify);
3526                 return error;
3527             }
3528             else
3529                 error.SetErrorString("sending gdb watchpoint packet failed");
3530         }
3531         // TODO: clear software watchpoints if we implement them
3532     }
3533     else
3534     {
3535         error.SetErrorString("Watchpoint argument was NULL.");
3536     }
3537     if (error.Success())
3538         error.SetErrorToGenericError();
3539     return error;
3540 }
3541 
3542 void
3543 ProcessGDBRemote::Clear()
3544 {
3545     m_flags = 0;
3546     m_thread_list_real.Clear();
3547     m_thread_list.Clear();
3548 }
3549 
3550 Error
3551 ProcessGDBRemote::DoSignal (int signo)
3552 {
3553     Error error;
3554     Log *log (ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PROCESS));
3555     if (log)
3556         log->Printf ("ProcessGDBRemote::DoSignal (signal = %d)", signo);
3557 
3558     if (!m_gdb_comm.SendAsyncSignal (signo))
3559         error.SetErrorStringWithFormat("failed to send signal %i", signo);
3560     return error;
3561 }
3562 
3563 Error
3564 ProcessGDBRemote::EstablishConnectionIfNeeded (const ProcessInfo &process_info)
3565 {
3566     // Make sure we aren't already connected?
3567     if (m_gdb_comm.IsConnected())
3568         return Error();
3569 
3570     PlatformSP platform_sp (GetTarget ().GetPlatform ());
3571     if (platform_sp && !platform_sp->IsHost ())
3572         return Error("Lost debug server connection");
3573 
3574     auto error = LaunchAndConnectToDebugserver (process_info);
3575     if (error.Fail())
3576     {
3577         const char *error_string = error.AsCString();
3578         if (error_string == nullptr)
3579             error_string = "unable to launch " DEBUGSERVER_BASENAME;
3580     }
3581     return error;
3582 }
3583 
3584 Error
3585 ProcessGDBRemote::LaunchAndConnectToDebugserver (const ProcessInfo &process_info)
3586 {
3587     Error error;
3588     if (m_debugserver_pid == LLDB_INVALID_PROCESS_ID)
3589     {
3590         // If we locate debugserver, keep that located version around
3591         static FileSpec g_debugserver_file_spec;
3592 
3593         ProcessLaunchInfo debugserver_launch_info;
3594         // Make debugserver run in its own session so signals generated by
3595         // special terminal key sequences (^C) don't affect debugserver.
3596         debugserver_launch_info.SetLaunchInSeparateProcessGroup(true);
3597 
3598         debugserver_launch_info.SetMonitorProcessCallback (MonitorDebugserverProcess, this, false);
3599         debugserver_launch_info.SetUserID(process_info.GetUserID());
3600 
3601 #if defined (__APPLE__) && (defined (__arm__) || defined (__arm64__) || defined (__aarch64__))
3602         // On iOS, still do a local connection using a random port
3603         const char *hostname = "127.0.0.1";
3604         uint16_t port = get_random_port ();
3605 #else
3606         // Set hostname being NULL to do the reverse connect where debugserver
3607         // will bind to port zero and it will communicate back to us the port
3608         // that we will connect to
3609         const char *hostname = nullptr;
3610         uint16_t port = 0;
3611 #endif
3612 
3613         StreamString url_str;
3614         const char* url = nullptr;
3615         if (hostname != nullptr)
3616         {
3617             url_str.Printf("%s:%u", hostname, port);
3618             url = url_str.GetData();
3619         }
3620 
3621         error = m_gdb_comm.StartDebugserverProcess (url,
3622                                                     GetTarget().GetPlatform().get(),
3623                                                     debugserver_launch_info,
3624                                                     &port);
3625 
3626         if (error.Success ())
3627             m_debugserver_pid = debugserver_launch_info.GetProcessID();
3628         else
3629             m_debugserver_pid = LLDB_INVALID_PROCESS_ID;
3630 
3631         if (m_debugserver_pid != LLDB_INVALID_PROCESS_ID)
3632             StartAsyncThread ();
3633 
3634         if (error.Fail())
3635         {
3636             Log *log (ProcessGDBRemoteLog::GetLogIfAllCategoriesSet (GDBR_LOG_PROCESS));
3637 
3638             if (log)
3639                 log->Printf("failed to start debugserver process: %s", error.AsCString());
3640             return error;
3641         }
3642 
3643         if (m_gdb_comm.IsConnected())
3644         {
3645             // Finish the connection process by doing the handshake without connecting (send NULL URL)
3646             ConnectToDebugserver (NULL);
3647         }
3648         else
3649         {
3650             StreamString connect_url;
3651             connect_url.Printf("connect://%s:%u", hostname, port);
3652             error = ConnectToDebugserver (connect_url.GetString().c_str());
3653         }
3654 
3655     }
3656     return error;
3657 }
3658 
3659 bool
3660 ProcessGDBRemote::MonitorDebugserverProcess
3661 (
3662     void *callback_baton,
3663     lldb::pid_t debugserver_pid,
3664     bool exited,        // True if the process did exit
3665     int signo,          // Zero for no signal
3666     int exit_status     // Exit value of process if signal is zero
3667 )
3668 {
3669     // The baton is a "ProcessGDBRemote *". Now this class might be gone
3670     // and might not exist anymore, so we need to carefully try to get the
3671     // target for this process first since we have a race condition when
3672     // we are done running between getting the notice that the inferior
3673     // process has died and the debugserver that was debugging this process.
3674     // In our test suite, we are also continually running process after
3675     // process, so we must be very careful to make sure:
3676     // 1 - process object hasn't been deleted already
3677     // 2 - that a new process object hasn't been recreated in its place
3678 
3679     // "debugserver_pid" argument passed in is the process ID for
3680     // debugserver that we are tracking...
3681     Log *log (ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PROCESS));
3682 
3683     ProcessGDBRemote *process = (ProcessGDBRemote *)callback_baton;
3684 
3685     // Get a shared pointer to the target that has a matching process pointer.
3686     // This target could be gone, or the target could already have a new process
3687     // object inside of it
3688     TargetSP target_sp (Debugger::FindTargetWithProcess(process));
3689 
3690     if (log)
3691         log->Printf ("ProcessGDBRemote::MonitorDebugserverProcess (baton=%p, pid=%" PRIu64 ", signo=%i (0x%x), exit_status=%i)", callback_baton, debugserver_pid, signo, signo, exit_status);
3692 
3693     if (target_sp)
3694     {
3695         // We found a process in a target that matches, but another thread
3696         // might be in the process of launching a new process that will
3697         // soon replace it, so get a shared pointer to the process so we
3698         // can keep it alive.
3699         ProcessSP process_sp (target_sp->GetProcessSP());
3700         // Now we have a shared pointer to the process that can't go away on us
3701         // so we now make sure it was the same as the one passed in, and also make
3702         // sure that our previous "process *" didn't get deleted and have a new
3703         // "process *" created in its place with the same pointer. To verify this
3704         // we make sure the process has our debugserver process ID. If we pass all
3705         // of these tests, then we are sure that this process is the one we were
3706         // looking for.
3707         if (process_sp && process == process_sp.get() && process->m_debugserver_pid == debugserver_pid)
3708         {
3709             // Sleep for a half a second to make sure our inferior process has
3710             // time to set its exit status before we set it incorrectly when
3711             // both the debugserver and the inferior process shut down.
3712             usleep (500000);
3713             // If our process hasn't yet exited, debugserver might have died.
3714             // If the process did exit, the we are reaping it.
3715             const StateType state = process->GetState();
3716 
3717             if (process->m_debugserver_pid != LLDB_INVALID_PROCESS_ID &&
3718                 state != eStateInvalid &&
3719                 state != eStateUnloaded &&
3720                 state != eStateExited &&
3721                 state != eStateDetached)
3722             {
3723                 char error_str[1024];
3724                 if (signo)
3725                 {
3726                     const char *signal_cstr = process->GetUnixSignals()->GetSignalAsCString(signo);
3727                     if (signal_cstr)
3728                         ::snprintf (error_str, sizeof (error_str), DEBUGSERVER_BASENAME " died with signal %s", signal_cstr);
3729                     else
3730                         ::snprintf (error_str, sizeof (error_str), DEBUGSERVER_BASENAME " died with signal %i", signo);
3731                 }
3732                 else
3733                 {
3734                     ::snprintf (error_str, sizeof (error_str), DEBUGSERVER_BASENAME " died with an exit status of 0x%8.8x", exit_status);
3735                 }
3736 
3737                 process->SetExitStatus (-1, error_str);
3738             }
3739             // Debugserver has exited we need to let our ProcessGDBRemote
3740             // know that it no longer has a debugserver instance
3741             process->m_debugserver_pid = LLDB_INVALID_PROCESS_ID;
3742         }
3743     }
3744     return true;
3745 }
3746 
3747 void
3748 ProcessGDBRemote::KillDebugserverProcess ()
3749 {
3750     m_gdb_comm.Disconnect();
3751     if (m_debugserver_pid != LLDB_INVALID_PROCESS_ID)
3752     {
3753         Host::Kill (m_debugserver_pid, SIGINT);
3754         m_debugserver_pid = LLDB_INVALID_PROCESS_ID;
3755     }
3756 }
3757 
3758 void
3759 ProcessGDBRemote::Initialize()
3760 {
3761     static std::once_flag g_once_flag;
3762 
3763     std::call_once(g_once_flag, []()
3764     {
3765         PluginManager::RegisterPlugin (GetPluginNameStatic(),
3766                                        GetPluginDescriptionStatic(),
3767                                        CreateInstance,
3768                                        DebuggerInitialize);
3769     });
3770 }
3771 
3772 void
3773 ProcessGDBRemote::DebuggerInitialize (Debugger &debugger)
3774 {
3775     if (!PluginManager::GetSettingForProcessPlugin(debugger, PluginProperties::GetSettingName()))
3776     {
3777         const bool is_global_setting = true;
3778         PluginManager::CreateSettingForProcessPlugin (debugger,
3779                                                       GetGlobalPluginProperties()->GetValueProperties(),
3780                                                       ConstString ("Properties for the gdb-remote process plug-in."),
3781                                                       is_global_setting);
3782     }
3783 }
3784 
3785 bool
3786 ProcessGDBRemote::StartAsyncThread ()
3787 {
3788     Log *log (ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PROCESS));
3789 
3790     if (log)
3791         log->Printf ("ProcessGDBRemote::%s ()", __FUNCTION__);
3792 
3793     Mutex::Locker start_locker(m_async_thread_state_mutex);
3794     if (!m_async_thread.IsJoinable())
3795     {
3796         // Create a thread that watches our internal state and controls which
3797         // events make it to clients (into the DCProcess event queue).
3798 
3799         m_async_thread = ThreadLauncher::LaunchThread("<lldb.process.gdb-remote.async>", ProcessGDBRemote::AsyncThread, this, NULL);
3800     }
3801     else if (log)
3802         log->Printf("ProcessGDBRemote::%s () - Called when Async thread was already running.", __FUNCTION__);
3803 
3804     return m_async_thread.IsJoinable();
3805 }
3806 
3807 void
3808 ProcessGDBRemote::StopAsyncThread ()
3809 {
3810     Log *log (ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PROCESS));
3811 
3812     if (log)
3813         log->Printf ("ProcessGDBRemote::%s ()", __FUNCTION__);
3814 
3815     Mutex::Locker start_locker(m_async_thread_state_mutex);
3816     if (m_async_thread.IsJoinable())
3817     {
3818         m_async_broadcaster.BroadcastEvent (eBroadcastBitAsyncThreadShouldExit);
3819 
3820         //  This will shut down the async thread.
3821         m_gdb_comm.Disconnect();    // Disconnect from the debug server.
3822 
3823         // Stop the stdio thread
3824         m_async_thread.Join(nullptr);
3825         m_async_thread.Reset();
3826     }
3827     else if (log)
3828         log->Printf("ProcessGDBRemote::%s () - Called when Async thread was not running.", __FUNCTION__);
3829 }
3830 
3831 bool
3832 ProcessGDBRemote::HandleNotifyPacket (StringExtractorGDBRemote &packet)
3833 {
3834     // get the packet at a string
3835     const std::string &pkt = packet.GetStringRef();
3836     // skip %stop:
3837     StringExtractorGDBRemote stop_info(pkt.c_str() + 5);
3838 
3839     // pass as a thread stop info packet
3840     SetLastStopPacket(stop_info);
3841 
3842     // check for more stop reasons
3843     HandleStopReplySequence();
3844 
3845     // if the process is stopped then we need to fake a resume
3846     // so that we can stop properly with the new break. This
3847     // is possible due to SetPrivateState() broadcasting the
3848     // state change as a side effect.
3849     if (GetPrivateState() == lldb::StateType::eStateStopped)
3850     {
3851         SetPrivateState(lldb::StateType::eStateRunning);
3852     }
3853 
3854     // since we have some stopped packets we can halt the process
3855     SetPrivateState(lldb::StateType::eStateStopped);
3856 
3857     return true;
3858 }
3859 
3860 thread_result_t
3861 ProcessGDBRemote::AsyncThread (void *arg)
3862 {
3863     ProcessGDBRemote *process = (ProcessGDBRemote*) arg;
3864 
3865     Log *log (ProcessGDBRemoteLog::GetLogIfAllCategoriesSet (GDBR_LOG_PROCESS));
3866     if (log)
3867         log->Printf ("ProcessGDBRemote::%s (arg = %p, pid = %" PRIu64 ") thread starting...", __FUNCTION__, arg, process->GetID());
3868 
3869     EventSP event_sp;
3870     bool done = false;
3871     while (!done)
3872     {
3873         if (log)
3874             log->Printf ("ProcessGDBRemote::%s (arg = %p, pid = %" PRIu64 ") listener.WaitForEvent (NULL, event_sp)...", __FUNCTION__, arg, process->GetID());
3875         if (process->m_async_listener_sp->WaitForEvent (NULL, event_sp))
3876         {
3877             const uint32_t event_type = event_sp->GetType();
3878             if (event_sp->BroadcasterIs (&process->m_async_broadcaster))
3879             {
3880                 if (log)
3881                     log->Printf ("ProcessGDBRemote::%s (arg = %p, pid = %" PRIu64 ") Got an event of type: %d...", __FUNCTION__, arg, process->GetID(), event_type);
3882 
3883                 switch (event_type)
3884                 {
3885                     case eBroadcastBitAsyncContinue:
3886                         {
3887                             const EventDataBytes *continue_packet = EventDataBytes::GetEventDataFromEvent(event_sp.get());
3888 
3889                             if (continue_packet)
3890                             {
3891                                 const char *continue_cstr = (const char *)continue_packet->GetBytes ();
3892                                 const size_t continue_cstr_len = continue_packet->GetByteSize ();
3893                                 if (log)
3894                                     log->Printf ("ProcessGDBRemote::%s (arg = %p, pid = %" PRIu64 ") got eBroadcastBitAsyncContinue: %s", __FUNCTION__, arg, process->GetID(), continue_cstr);
3895 
3896                                 if (::strstr (continue_cstr, "vAttach") == NULL)
3897                                     process->SetPrivateState(eStateRunning);
3898                                 StringExtractorGDBRemote response;
3899 
3900                                 // If in Non-Stop-Mode
3901                                 if (process->GetTarget().GetNonStopModeEnabled())
3902                                 {
3903                                     // send the vCont packet
3904                                     if (!process->GetGDBRemote().SendvContPacket(process, continue_cstr, continue_cstr_len, response))
3905                                     {
3906                                         // Something went wrong
3907                                         done = true;
3908                                         break;
3909                                     }
3910                                 }
3911                                 // If in All-Stop-Mode
3912                                 else
3913                                 {
3914                                     StateType stop_state = process->GetGDBRemote().SendContinuePacketAndWaitForResponse (process, continue_cstr, continue_cstr_len, response);
3915 
3916                                     // We need to immediately clear the thread ID list so we are sure to get a valid list of threads.
3917                                     // The thread ID list might be contained within the "response", or the stop reply packet that
3918                                     // caused the stop. So clear it now before we give the stop reply packet to the process
3919                                     // using the process->SetLastStopPacket()...
3920                                     process->ClearThreadIDList ();
3921 
3922                                     switch (stop_state)
3923                                     {
3924                                     case eStateStopped:
3925                                     case eStateCrashed:
3926                                     case eStateSuspended:
3927                                         process->SetLastStopPacket (response);
3928                                         process->SetPrivateState (stop_state);
3929                                         break;
3930 
3931                                     case eStateExited:
3932                                     {
3933                                         process->SetLastStopPacket (response);
3934                                         process->ClearThreadIDList();
3935                                         response.SetFilePos(1);
3936 
3937                                         int exit_status = response.GetHexU8();
3938                                         const char *desc_cstr = NULL;
3939                                         StringExtractor extractor;
3940                                         std::string desc_string;
3941                                         if (response.GetBytesLeft() > 0 && response.GetChar('-') == ';')
3942                                         {
3943                                             std::string desc_token;
3944                                             while (response.GetNameColonValue (desc_token, desc_string))
3945                                             {
3946                                                 if (desc_token == "description")
3947                                                 {
3948                                                     extractor.GetStringRef().swap(desc_string);
3949                                                     extractor.SetFilePos(0);
3950                                                     extractor.GetHexByteString (desc_string);
3951                                                     desc_cstr = desc_string.c_str();
3952                                                 }
3953                                             }
3954                                         }
3955                                         process->SetExitStatus(exit_status, desc_cstr);
3956                                         done = true;
3957                                         break;
3958                                     }
3959                                     case eStateInvalid:
3960                                     {
3961                                         // Check to see if we were trying to attach and if we got back
3962                                         // the "E87" error code from debugserver -- this indicates that
3963                                         // the process is not debuggable.  Return a slightly more helpful
3964                                         // error message about why the attach failed.
3965                                         if (::strstr (continue_cstr, "vAttach") != NULL
3966                                             && response.GetError() == 0x87)
3967                                         {
3968                                             process->SetExitStatus(-1, "cannot attach to process due to System Integrity Protection");
3969                                         }
3970                                         // E01 code from vAttach means that the attach failed
3971                                         if (::strstr (continue_cstr, "vAttach") != NULL
3972                                             && response.GetError() == 0x1)
3973                                         {
3974                                             process->SetExitStatus(-1, "unable to attach");
3975                                         }
3976                                         else
3977                                         {
3978                                             process->SetExitStatus(-1, "lost connection");
3979                                         }
3980                                             break;
3981                                     }
3982 
3983                                     default:
3984                                         process->SetPrivateState (stop_state);
3985                                         break;
3986                                     } // switch(stop_state)
3987                                 } // else // if in All-stop-mode
3988                             } // if (continue_packet)
3989                         } // case eBroadcastBitAysncContinue
3990                         break;
3991 
3992                     case eBroadcastBitAsyncThreadShouldExit:
3993                         if (log)
3994                             log->Printf ("ProcessGDBRemote::%s (arg = %p, pid = %" PRIu64 ") got eBroadcastBitAsyncThreadShouldExit...", __FUNCTION__, arg, process->GetID());
3995                         done = true;
3996                         break;
3997 
3998                     default:
3999                         if (log)
4000                             log->Printf ("ProcessGDBRemote::%s (arg = %p, pid = %" PRIu64 ") got unknown event 0x%8.8x", __FUNCTION__, arg, process->GetID(), event_type);
4001                         done = true;
4002                         break;
4003                 }
4004             }
4005             else if (event_sp->BroadcasterIs (&process->m_gdb_comm))
4006             {
4007                 switch (event_type)
4008                 {
4009                     case Communication::eBroadcastBitReadThreadDidExit:
4010                         process->SetExitStatus (-1, "lost connection");
4011                         done = true;
4012                         break;
4013 
4014                     case GDBRemoteCommunication::eBroadcastBitGdbReadThreadGotNotify:
4015                     {
4016                         lldb_private::Event *event = event_sp.get();
4017                         const EventDataBytes *continue_packet = EventDataBytes::GetEventDataFromEvent(event);
4018                         StringExtractorGDBRemote notify((const char*)continue_packet->GetBytes());
4019                         // Hand this over to the process to handle
4020                         process->HandleNotifyPacket(notify);
4021                         break;
4022                     }
4023 
4024                     default:
4025                         if (log)
4026                             log->Printf ("ProcessGDBRemote::%s (arg = %p, pid = %" PRIu64 ") got unknown event 0x%8.8x", __FUNCTION__, arg, process->GetID(), event_type);
4027                         done = true;
4028                         break;
4029                 }
4030             }
4031         }
4032         else
4033         {
4034             if (log)
4035                 log->Printf ("ProcessGDBRemote::%s (arg = %p, pid = %" PRIu64 ") listener.WaitForEvent (NULL, event_sp) => false", __FUNCTION__, arg, process->GetID());
4036             done = true;
4037         }
4038     }
4039 
4040     if (log)
4041         log->Printf ("ProcessGDBRemote::%s (arg = %p, pid = %" PRIu64 ") thread exiting...", __FUNCTION__, arg, process->GetID());
4042 
4043     return NULL;
4044 }
4045 
4046 //uint32_t
4047 //ProcessGDBRemote::ListProcessesMatchingName (const char *name, StringList &matches, std::vector<lldb::pid_t> &pids)
4048 //{
4049 //    // If we are planning to launch the debugserver remotely, then we need to fire up a debugserver
4050 //    // process and ask it for the list of processes. But if we are local, we can let the Host do it.
4051 //    if (m_local_debugserver)
4052 //    {
4053 //        return Host::ListProcessesMatchingName (name, matches, pids);
4054 //    }
4055 //    else
4056 //    {
4057 //        // FIXME: Implement talking to the remote debugserver.
4058 //        return 0;
4059 //    }
4060 //
4061 //}
4062 //
4063 bool
4064 ProcessGDBRemote::NewThreadNotifyBreakpointHit (void *baton,
4065                              StoppointCallbackContext *context,
4066                              lldb::user_id_t break_id,
4067                              lldb::user_id_t break_loc_id)
4068 {
4069     // I don't think I have to do anything here, just make sure I notice the new thread when it starts to
4070     // run so I can stop it if that's what I want to do.
4071     Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_STEP));
4072     if (log)
4073         log->Printf("Hit New Thread Notification breakpoint.");
4074     return false;
4075 }
4076 
4077 
4078 bool
4079 ProcessGDBRemote::StartNoticingNewThreads()
4080 {
4081     Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_STEP));
4082     if (m_thread_create_bp_sp)
4083     {
4084         if (log && log->GetVerbose())
4085             log->Printf("Enabled noticing new thread breakpoint.");
4086         m_thread_create_bp_sp->SetEnabled(true);
4087     }
4088     else
4089     {
4090         PlatformSP platform_sp (GetTarget().GetPlatform());
4091         if (platform_sp)
4092         {
4093             m_thread_create_bp_sp = platform_sp->SetThreadCreationBreakpoint(GetTarget());
4094             if (m_thread_create_bp_sp)
4095             {
4096                 if (log && log->GetVerbose())
4097                     log->Printf("Successfully created new thread notification breakpoint %i", m_thread_create_bp_sp->GetID());
4098                 m_thread_create_bp_sp->SetCallback (ProcessGDBRemote::NewThreadNotifyBreakpointHit, this, true);
4099             }
4100             else
4101             {
4102                 if (log)
4103                     log->Printf("Failed to create new thread notification breakpoint.");
4104             }
4105         }
4106     }
4107     return m_thread_create_bp_sp.get() != NULL;
4108 }
4109 
4110 bool
4111 ProcessGDBRemote::StopNoticingNewThreads()
4112 {
4113     Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_STEP));
4114     if (log && log->GetVerbose())
4115         log->Printf ("Disabling new thread notification breakpoint.");
4116 
4117     if (m_thread_create_bp_sp)
4118         m_thread_create_bp_sp->SetEnabled(false);
4119 
4120     return true;
4121 }
4122 
4123 DynamicLoader *
4124 ProcessGDBRemote::GetDynamicLoader ()
4125 {
4126     if (m_dyld_ap.get() == NULL)
4127         m_dyld_ap.reset (DynamicLoader::FindPlugin(this, NULL));
4128     return m_dyld_ap.get();
4129 }
4130 
4131 Error
4132 ProcessGDBRemote::SendEventData(const char *data)
4133 {
4134     int return_value;
4135     bool was_supported;
4136 
4137     Error error;
4138 
4139     return_value = m_gdb_comm.SendLaunchEventDataPacket (data, &was_supported);
4140     if (return_value != 0)
4141     {
4142         if (!was_supported)
4143             error.SetErrorString("Sending events is not supported for this process.");
4144         else
4145             error.SetErrorStringWithFormat("Error sending event data: %d.", return_value);
4146     }
4147     return error;
4148 }
4149 
4150 const DataBufferSP
4151 ProcessGDBRemote::GetAuxvData()
4152 {
4153     DataBufferSP buf;
4154     if (m_gdb_comm.GetQXferAuxvReadSupported())
4155     {
4156         std::string response_string;
4157         if (m_gdb_comm.SendPacketsAndConcatenateResponses("qXfer:auxv:read::", response_string) == GDBRemoteCommunication::PacketResult::Success)
4158             buf.reset(new DataBufferHeap(response_string.c_str(), response_string.length()));
4159     }
4160     return buf;
4161 }
4162 
4163 StructuredData::ObjectSP
4164 ProcessGDBRemote::GetExtendedInfoForThread (lldb::tid_t tid)
4165 {
4166     StructuredData::ObjectSP object_sp;
4167 
4168     if (m_gdb_comm.GetThreadExtendedInfoSupported())
4169     {
4170         StructuredData::ObjectSP args_dict(new StructuredData::Dictionary());
4171         SystemRuntime *runtime = GetSystemRuntime();
4172         if (runtime)
4173         {
4174             runtime->AddThreadExtendedInfoPacketHints (args_dict);
4175         }
4176         args_dict->GetAsDictionary()->AddIntegerItem ("thread", tid);
4177 
4178         StreamString packet;
4179         packet << "jThreadExtendedInfo:";
4180         args_dict->Dump (packet);
4181 
4182         // FIXME the final character of a JSON dictionary, '}', is the escape
4183         // character in gdb-remote binary mode.  lldb currently doesn't escape
4184         // these characters in its packet output -- so we add the quoted version
4185         // of the } character here manually in case we talk to a debugserver which
4186         // un-escapes the characters at packet read time.
4187         packet << (char) (0x7d ^ 0x20);
4188 
4189         StringExtractorGDBRemote response;
4190         response.SetResponseValidatorToJSON();
4191         if (m_gdb_comm.SendPacketAndWaitForResponse(packet.GetData(), packet.GetSize(), response, false) == GDBRemoteCommunication::PacketResult::Success)
4192         {
4193             StringExtractorGDBRemote::ResponseType response_type = response.GetResponseType();
4194             if (response_type == StringExtractorGDBRemote::eResponse)
4195             {
4196                 if (!response.Empty())
4197                 {
4198                     object_sp = StructuredData::ParseJSON (response.GetStringRef());
4199                 }
4200             }
4201         }
4202     }
4203     return object_sp;
4204 }
4205 
4206 StructuredData::ObjectSP
4207 ProcessGDBRemote::GetLoadedDynamicLibrariesInfos (lldb::addr_t image_list_address, lldb::addr_t image_count)
4208 {
4209     StructuredData::ObjectSP object_sp;
4210 
4211     if (m_gdb_comm.GetLoadedDynamicLibrariesInfosSupported())
4212     {
4213         // Scope for the scoped timeout object
4214         GDBRemoteCommunication::ScopedTimeout timeout (m_gdb_comm, 10);
4215 
4216         StructuredData::ObjectSP args_dict(new StructuredData::Dictionary());
4217         args_dict->GetAsDictionary()->AddIntegerItem ("image_list_address", image_list_address);
4218         args_dict->GetAsDictionary()->AddIntegerItem ("image_count", image_count);
4219 
4220         StreamString packet;
4221         packet << "jGetLoadedDynamicLibrariesInfos:";
4222         args_dict->Dump (packet);
4223 
4224         // FIXME the final character of a JSON dictionary, '}', is the escape
4225         // character in gdb-remote binary mode.  lldb currently doesn't escape
4226         // these characters in its packet output -- so we add the quoted version
4227         // of the } character here manually in case we talk to a debugserver which
4228         // un-escapes the characters at packet read time.
4229         packet << (char) (0x7d ^ 0x20);
4230 
4231         StringExtractorGDBRemote response;
4232         response.SetResponseValidatorToJSON();
4233         if (m_gdb_comm.SendPacketAndWaitForResponse(packet.GetData(), packet.GetSize(), response, false) == GDBRemoteCommunication::PacketResult::Success)
4234         {
4235             StringExtractorGDBRemote::ResponseType response_type = response.GetResponseType();
4236             if (response_type == StringExtractorGDBRemote::eResponse)
4237             {
4238                 if (!response.Empty())
4239                 {
4240                     object_sp = StructuredData::ParseJSON (response.GetStringRef());
4241                 }
4242             }
4243         }
4244     }
4245     return object_sp;
4246 }
4247 
4248 // Establish the largest memory read/write payloads we should use.
4249 // If the remote stub has a max packet size, stay under that size.
4250 //
4251 // If the remote stub's max packet size is crazy large, use a
4252 // reasonable largeish default.
4253 //
4254 // If the remote stub doesn't advertise a max packet size, use a
4255 // conservative default.
4256 
4257 void
4258 ProcessGDBRemote::GetMaxMemorySize()
4259 {
4260     const uint64_t reasonable_largeish_default = 128 * 1024;
4261     const uint64_t conservative_default = 512;
4262 
4263     if (m_max_memory_size == 0)
4264     {
4265         uint64_t stub_max_size = m_gdb_comm.GetRemoteMaxPacketSize();
4266         if (stub_max_size != UINT64_MAX && stub_max_size != 0)
4267         {
4268             // Save the stub's claimed maximum packet size
4269             m_remote_stub_max_memory_size = stub_max_size;
4270 
4271             // Even if the stub says it can support ginormous packets,
4272             // don't exceed our reasonable largeish default packet size.
4273             if (stub_max_size > reasonable_largeish_default)
4274             {
4275                 stub_max_size = reasonable_largeish_default;
4276             }
4277 
4278             m_max_memory_size = stub_max_size;
4279         }
4280         else
4281         {
4282             m_max_memory_size = conservative_default;
4283         }
4284     }
4285 }
4286 
4287 void
4288 ProcessGDBRemote::SetUserSpecifiedMaxMemoryTransferSize (uint64_t user_specified_max)
4289 {
4290     if (user_specified_max != 0)
4291     {
4292         GetMaxMemorySize ();
4293 
4294         if (m_remote_stub_max_memory_size != 0)
4295         {
4296             if (m_remote_stub_max_memory_size < user_specified_max)
4297             {
4298                 m_max_memory_size = m_remote_stub_max_memory_size;   // user specified a packet size too big, go as big
4299                                                                      // as the remote stub says we can go.
4300             }
4301             else
4302             {
4303                 m_max_memory_size = user_specified_max;             // user's packet size is good
4304             }
4305         }
4306         else
4307         {
4308             m_max_memory_size = user_specified_max;                 // user's packet size is probably fine
4309         }
4310     }
4311 }
4312 
4313 bool
4314 ProcessGDBRemote::GetModuleSpec(const FileSpec& module_file_spec,
4315                                 const ArchSpec& arch,
4316                                 ModuleSpec &module_spec)
4317 {
4318     Log *log = GetLogIfAnyCategoriesSet (LIBLLDB_LOG_PLATFORM);
4319 
4320     if (!m_gdb_comm.GetModuleInfo (module_file_spec, arch, module_spec))
4321     {
4322         if (log)
4323             log->Printf ("ProcessGDBRemote::%s - failed to get module info for %s:%s",
4324                          __FUNCTION__, module_file_spec.GetPath ().c_str (),
4325                          arch.GetTriple ().getTriple ().c_str ());
4326         return false;
4327     }
4328 
4329     if (log)
4330     {
4331         StreamString stream;
4332         module_spec.Dump (stream);
4333         log->Printf ("ProcessGDBRemote::%s - got module info for (%s:%s) : %s",
4334                      __FUNCTION__, module_file_spec.GetPath ().c_str (),
4335                      arch.GetTriple ().getTriple ().c_str (), stream.GetString ().c_str ());
4336     }
4337 
4338     return true;
4339 }
4340 
4341 bool
4342 ProcessGDBRemote::GetHostOSVersion(uint32_t &major,
4343                                    uint32_t &minor,
4344                                    uint32_t &update)
4345 {
4346     if (m_gdb_comm.GetOSVersion(major, minor, update))
4347         return true;
4348     // We failed to get the host OS version, defer to the base
4349     // implementation to correctly invalidate the arguments.
4350     return Process::GetHostOSVersion(major, minor, update);
4351 }
4352 
4353 namespace {
4354 
4355 typedef std::vector<std::string> stringVec;
4356 
4357 typedef std::vector<struct GdbServerRegisterInfo> GDBServerRegisterVec;
4358 struct RegisterSetInfo
4359 {
4360     ConstString name;
4361 };
4362 
4363 typedef std::map<uint32_t, RegisterSetInfo> RegisterSetMap;
4364 
4365 struct GdbServerTargetInfo
4366 {
4367     std::string arch;
4368     std::string osabi;
4369     stringVec includes;
4370     RegisterSetMap reg_set_map;
4371     XMLNode feature_node;
4372 };
4373 
4374 bool
4375 ParseRegisters (XMLNode feature_node, GdbServerTargetInfo &target_info, GDBRemoteDynamicRegisterInfo &dyn_reg_info, ABISP abi_sp)
4376 {
4377     if (!feature_node)
4378         return false;
4379 
4380     uint32_t cur_reg_num = 0;
4381     uint32_t reg_offset = 0;
4382 
4383     feature_node.ForEachChildElementWithName("reg", [&target_info, &dyn_reg_info, &cur_reg_num, &reg_offset, &abi_sp](const XMLNode &reg_node) -> bool {
4384         std::string gdb_group;
4385         std::string gdb_type;
4386         ConstString reg_name;
4387         ConstString alt_name;
4388         ConstString set_name;
4389         std::vector<uint32_t> value_regs;
4390         std::vector<uint32_t> invalidate_regs;
4391         bool encoding_set = false;
4392         bool format_set = false;
4393         RegisterInfo reg_info = { NULL,                 // Name
4394             NULL,                 // Alt name
4395             0,                    // byte size
4396             reg_offset,           // offset
4397             eEncodingUint,        // encoding
4398             eFormatHex,           // format
4399             {
4400                 LLDB_INVALID_REGNUM, // eh_frame reg num
4401                 LLDB_INVALID_REGNUM, // DWARF reg num
4402                 LLDB_INVALID_REGNUM, // generic reg num
4403                 cur_reg_num,        // process plugin reg num
4404                 cur_reg_num         // native register number
4405             },
4406             NULL,
4407             NULL
4408         };
4409 
4410         reg_node.ForEachAttribute([&target_info, &gdb_group, &gdb_type, &reg_name, &alt_name, &set_name, &value_regs, &invalidate_regs, &encoding_set, &format_set, &reg_info, &cur_reg_num, &reg_offset](const llvm::StringRef &name, const llvm::StringRef &value) -> bool {
4411             if (name == "name")
4412             {
4413                 reg_name.SetString(value);
4414             }
4415             else if (name == "bitsize")
4416             {
4417                 reg_info.byte_size = StringConvert::ToUInt32(value.data(), 0, 0) / CHAR_BIT;
4418             }
4419             else if (name == "type")
4420             {
4421                 gdb_type = value.str();
4422             }
4423             else if (name == "group")
4424             {
4425                 gdb_group = value.str();
4426             }
4427             else if (name == "regnum")
4428             {
4429                 const uint32_t regnum = StringConvert::ToUInt32(value.data(), LLDB_INVALID_REGNUM, 0);
4430                 if (regnum != LLDB_INVALID_REGNUM)
4431                 {
4432                     reg_info.kinds[eRegisterKindProcessPlugin] = regnum;
4433                 }
4434             }
4435             else if (name == "offset")
4436             {
4437                 reg_offset = StringConvert::ToUInt32(value.data(), UINT32_MAX, 0);
4438             }
4439             else if (name == "altname")
4440             {
4441                 alt_name.SetString(value);
4442             }
4443             else if (name == "encoding")
4444             {
4445                 encoding_set = true;
4446                 reg_info.encoding = Args::StringToEncoding (value.data(), eEncodingUint);
4447             }
4448             else if (name == "format")
4449             {
4450                 format_set = true;
4451                 Format format = eFormatInvalid;
4452                 if (Args::StringToFormat (value.data(), format, NULL).Success())
4453                     reg_info.format = format;
4454                 else if (value == "vector-sint8")
4455                     reg_info.format = eFormatVectorOfSInt8;
4456                 else if (value == "vector-uint8")
4457                     reg_info.format = eFormatVectorOfUInt8;
4458                 else if (value == "vector-sint16")
4459                     reg_info.format = eFormatVectorOfSInt16;
4460                 else if (value == "vector-uint16")
4461                     reg_info.format = eFormatVectorOfUInt16;
4462                 else if (value == "vector-sint32")
4463                     reg_info.format = eFormatVectorOfSInt32;
4464                 else if (value == "vector-uint32")
4465                     reg_info.format = eFormatVectorOfUInt32;
4466                 else if (value == "vector-float32")
4467                     reg_info.format = eFormatVectorOfFloat32;
4468                 else if (value == "vector-uint128")
4469                     reg_info.format = eFormatVectorOfUInt128;
4470             }
4471             else if (name == "group_id")
4472             {
4473                 const uint32_t set_id = StringConvert::ToUInt32(value.data(), UINT32_MAX, 0);
4474                 RegisterSetMap::const_iterator pos = target_info.reg_set_map.find(set_id);
4475                 if (pos != target_info.reg_set_map.end())
4476                     set_name = pos->second.name;
4477             }
4478             else if (name == "gcc_regnum" || name == "ehframe_regnum")
4479             {
4480                 reg_info.kinds[eRegisterKindEHFrame] = StringConvert::ToUInt32(value.data(), LLDB_INVALID_REGNUM, 0);
4481             }
4482             else if (name == "dwarf_regnum")
4483             {
4484                 reg_info.kinds[eRegisterKindDWARF] = StringConvert::ToUInt32(value.data(), LLDB_INVALID_REGNUM, 0);
4485             }
4486             else if (name == "generic")
4487             {
4488                 reg_info.kinds[eRegisterKindGeneric] = Args::StringToGenericRegister(value.data());
4489             }
4490             else if (name == "value_regnums")
4491             {
4492                 SplitCommaSeparatedRegisterNumberString(value, value_regs, 0);
4493             }
4494             else if (name == "invalidate_regnums")
4495             {
4496                 SplitCommaSeparatedRegisterNumberString(value, invalidate_regs, 0);
4497             }
4498             else
4499             {
4500                 printf("unhandled attribute %s = %s\n", name.data(), value.data());
4501             }
4502             return true; // Keep iterating through all attributes
4503         });
4504 
4505         if (!gdb_type.empty() && !(encoding_set || format_set))
4506         {
4507             if (gdb_type.find("int") == 0)
4508             {
4509                 reg_info.format = eFormatHex;
4510                 reg_info.encoding = eEncodingUint;
4511             }
4512             else if (gdb_type == "data_ptr" || gdb_type == "code_ptr")
4513             {
4514                 reg_info.format = eFormatAddressInfo;
4515                 reg_info.encoding = eEncodingUint;
4516             }
4517             else if (gdb_type == "i387_ext" || gdb_type == "float")
4518             {
4519                 reg_info.format = eFormatFloat;
4520                 reg_info.encoding = eEncodingIEEE754;
4521             }
4522         }
4523 
4524         // Only update the register set name if we didn't get a "reg_set" attribute.
4525         // "set_name" will be empty if we didn't have a "reg_set" attribute.
4526         if (!set_name && !gdb_group.empty())
4527             set_name.SetCString(gdb_group.c_str());
4528 
4529         reg_info.byte_offset = reg_offset;
4530         assert (reg_info.byte_size != 0);
4531         reg_offset += reg_info.byte_size;
4532         if (!value_regs.empty())
4533         {
4534             value_regs.push_back(LLDB_INVALID_REGNUM);
4535             reg_info.value_regs = value_regs.data();
4536         }
4537         if (!invalidate_regs.empty())
4538         {
4539             invalidate_regs.push_back(LLDB_INVALID_REGNUM);
4540             reg_info.invalidate_regs = invalidate_regs.data();
4541         }
4542 
4543         ++cur_reg_num;
4544         AugmentRegisterInfoViaABI (reg_info, reg_name, abi_sp);
4545         dyn_reg_info.AddRegister(reg_info, reg_name, alt_name, set_name);
4546 
4547         return true; // Keep iterating through all "reg" elements
4548     });
4549     return true;
4550 }
4551 
4552 } // namespace {}
4553 
4554 
4555 // query the target of gdb-remote for extended target information
4556 // return:  'true'  on success
4557 //          'false' on failure
4558 bool
4559 ProcessGDBRemote::GetGDBServerRegisterInfo (ArchSpec &arch_to_use)
4560 {
4561     // Make sure LLDB has an XML parser it can use first
4562     if (!XMLDocument::XMLEnabled())
4563         return false;
4564 
4565     // redirect libxml2's error handler since the default prints to stdout
4566 
4567     GDBRemoteCommunicationClient & comm = m_gdb_comm;
4568 
4569     // check that we have extended feature read support
4570     if ( !comm.GetQXferFeaturesReadSupported( ) )
4571         return false;
4572 
4573     // request the target xml file
4574     std::string raw;
4575     lldb_private::Error lldberr;
4576     if (!comm.ReadExtFeature(ConstString("features"),
4577                              ConstString("target.xml"),
4578                              raw,
4579                              lldberr))
4580     {
4581         return false;
4582     }
4583 
4584 
4585     XMLDocument xml_document;
4586 
4587     if (xml_document.ParseMemory(raw.c_str(), raw.size(), "target.xml"))
4588     {
4589         GdbServerTargetInfo target_info;
4590 
4591         XMLNode target_node = xml_document.GetRootElement("target");
4592         if (target_node)
4593         {
4594             XMLNode feature_node;
4595             target_node.ForEachChildElement([&target_info, this, &feature_node](const XMLNode &node) -> bool
4596             {
4597                 llvm::StringRef name = node.GetName();
4598                 if (name == "architecture")
4599                 {
4600                     node.GetElementText(target_info.arch);
4601                 }
4602                 else if (name == "osabi")
4603                 {
4604                     node.GetElementText(target_info.osabi);
4605                 }
4606                 else if (name == "xi:include" || name == "include")
4607                 {
4608                     llvm::StringRef href = node.GetAttributeValue("href");
4609                     if (!href.empty())
4610                         target_info.includes.push_back(href.str());
4611                 }
4612                 else if (name == "feature")
4613                 {
4614                     feature_node = node;
4615                 }
4616                 else if (name == "groups")
4617                 {
4618                     node.ForEachChildElementWithName("group", [&target_info](const XMLNode &node) -> bool {
4619                         uint32_t set_id = UINT32_MAX;
4620                         RegisterSetInfo set_info;
4621 
4622                         node.ForEachAttribute([&set_id, &set_info](const llvm::StringRef &name, const llvm::StringRef &value) -> bool {
4623                             if (name == "id")
4624                                 set_id = StringConvert::ToUInt32(value.data(), UINT32_MAX, 0);
4625                             if (name == "name")
4626                                 set_info.name = ConstString(value);
4627                             return true; // Keep iterating through all attributes
4628                         });
4629 
4630                         if (set_id != UINT32_MAX)
4631                             target_info.reg_set_map[set_id] = set_info;
4632                         return true; // Keep iterating through all "group" elements
4633                     });
4634                 }
4635                 return true; // Keep iterating through all children of the target_node
4636             });
4637 
4638             // Don't use Process::GetABI, this code gets called from DidAttach, and in that context we haven't
4639             // set the Target's architecture yet, so the ABI is also potentially incorrect.
4640             ABISP abi_to_use_sp = ABI::FindPlugin(arch_to_use);
4641             if (feature_node)
4642             {
4643                 ParseRegisters(feature_node, target_info, this->m_register_info, abi_to_use_sp);
4644             }
4645 
4646             for (const auto &include : target_info.includes)
4647             {
4648                 // request register file
4649                 std::string xml_data;
4650                 if (!comm.ReadExtFeature(ConstString("features"),
4651                                          ConstString(include),
4652                                          xml_data,
4653                                          lldberr))
4654                     continue;
4655 
4656                 XMLDocument include_xml_document;
4657                 include_xml_document.ParseMemory(xml_data.data(), xml_data.size(), include.c_str());
4658                 XMLNode include_feature_node = include_xml_document.GetRootElement("feature");
4659                 if (include_feature_node)
4660                 {
4661                     ParseRegisters(include_feature_node, target_info, this->m_register_info, abi_to_use_sp);
4662                 }
4663             }
4664             this->m_register_info.Finalize(arch_to_use);
4665         }
4666     }
4667 
4668     return m_register_info.GetNumRegisters() > 0;
4669 }
4670 
4671 Error
4672 ProcessGDBRemote::GetLoadedModuleList (LoadedModuleInfoList & list)
4673 {
4674     // Make sure LLDB has an XML parser it can use first
4675     if (!XMLDocument::XMLEnabled())
4676         return Error (0, ErrorType::eErrorTypeGeneric);
4677 
4678     Log *log = GetLogIfAnyCategoriesSet (LIBLLDB_LOG_PROCESS);
4679     if (log)
4680         log->Printf ("ProcessGDBRemote::%s", __FUNCTION__);
4681 
4682     GDBRemoteCommunicationClient & comm = m_gdb_comm;
4683 
4684     // check that we have extended feature read support
4685     if (comm.GetQXferLibrariesSVR4ReadSupported ()) {
4686         list.clear ();
4687 
4688         // request the loaded library list
4689         std::string raw;
4690         lldb_private::Error lldberr;
4691 
4692         if (!comm.ReadExtFeature (ConstString ("libraries-svr4"), ConstString (""), raw, lldberr))
4693           return Error (0, ErrorType::eErrorTypeGeneric);
4694 
4695         // parse the xml file in memory
4696         if (log)
4697             log->Printf ("parsing: %s", raw.c_str());
4698         XMLDocument doc;
4699 
4700         if (!doc.ParseMemory(raw.c_str(), raw.size(), "noname.xml"))
4701             return Error (0, ErrorType::eErrorTypeGeneric);
4702 
4703         XMLNode root_element = doc.GetRootElement("library-list-svr4");
4704         if (!root_element)
4705             return Error();
4706 
4707         // main link map structure
4708         llvm::StringRef main_lm = root_element.GetAttributeValue("main-lm");
4709         if (!main_lm.empty())
4710         {
4711             list.m_link_map = StringConvert::ToUInt64(main_lm.data(), LLDB_INVALID_ADDRESS, 0);
4712         }
4713 
4714         root_element.ForEachChildElementWithName("library", [log, &list](const XMLNode &library) -> bool {
4715 
4716             LoadedModuleInfoList::LoadedModuleInfo module;
4717 
4718             library.ForEachAttribute([log, &module](const llvm::StringRef &name, const llvm::StringRef &value) -> bool {
4719 
4720                 if (name == "name")
4721                     module.set_name (value.str());
4722                 else if (name == "lm")
4723                 {
4724                     // the address of the link_map struct.
4725                     module.set_link_map(StringConvert::ToUInt64(value.data(), LLDB_INVALID_ADDRESS, 0));
4726                 }
4727                 else if (name == "l_addr")
4728                 {
4729                     // the displacement as read from the field 'l_addr' of the link_map struct.
4730                     module.set_base(StringConvert::ToUInt64(value.data(), LLDB_INVALID_ADDRESS, 0));
4731                     // base address is always a displacement, not an absolute value.
4732                     module.set_base_is_offset(true);
4733                 }
4734                 else if (name == "l_ld")
4735                 {
4736                     // the memory address of the libraries PT_DYAMIC section.
4737                     module.set_dynamic(StringConvert::ToUInt64(value.data(), LLDB_INVALID_ADDRESS, 0));
4738                 }
4739 
4740                 return true; // Keep iterating over all properties of "library"
4741             });
4742 
4743             if (log)
4744             {
4745                 std::string name;
4746                 lldb::addr_t lm=0, base=0, ld=0;
4747                 bool base_is_offset;
4748 
4749                 module.get_name (name);
4750                 module.get_link_map (lm);
4751                 module.get_base (base);
4752                 module.get_base_is_offset (base_is_offset);
4753                 module.get_dynamic (ld);
4754 
4755                 log->Printf ("found (link_map:0x%08" PRIx64 ", base:0x%08" PRIx64 "[%s], ld:0x%08" PRIx64 ", name:'%s')", lm, base, (base_is_offset ? "offset" : "absolute"), ld, name.c_str());
4756             }
4757 
4758             list.add (module);
4759             return true; // Keep iterating over all "library" elements in the root node
4760         });
4761 
4762         if (log)
4763             log->Printf ("found %" PRId32 " modules in total", (int) list.m_list.size());
4764     } else if (comm.GetQXferLibrariesReadSupported ()) {
4765         list.clear ();
4766 
4767         // request the loaded library list
4768         std::string raw;
4769         lldb_private::Error lldberr;
4770 
4771         if (!comm.ReadExtFeature (ConstString ("libraries"), ConstString (""), raw, lldberr))
4772           return Error (0, ErrorType::eErrorTypeGeneric);
4773 
4774         if (log)
4775             log->Printf ("parsing: %s", raw.c_str());
4776         XMLDocument doc;
4777 
4778         if (!doc.ParseMemory(raw.c_str(), raw.size(), "noname.xml"))
4779             return Error (0, ErrorType::eErrorTypeGeneric);
4780 
4781         XMLNode root_element = doc.GetRootElement("library-list");
4782         if (!root_element)
4783             return Error();
4784 
4785         root_element.ForEachChildElementWithName("library", [log, &list](const XMLNode &library) -> bool {
4786             LoadedModuleInfoList::LoadedModuleInfo module;
4787 
4788             llvm::StringRef name = library.GetAttributeValue("name");
4789             module.set_name(name.str());
4790 
4791             // The base address of a given library will be the address of its
4792             // first section. Most remotes send only one section for Windows
4793             // targets for example.
4794             const XMLNode &section = library.FindFirstChildElementWithName("section");
4795             llvm::StringRef address = section.GetAttributeValue("address");
4796             module.set_base(StringConvert::ToUInt64(address.data(), LLDB_INVALID_ADDRESS, 0));
4797             // These addresses are absolute values.
4798             module.set_base_is_offset(false);
4799 
4800             if (log)
4801             {
4802                 std::string name;
4803                 lldb::addr_t base = 0;
4804                 bool base_is_offset;
4805                 module.get_name (name);
4806                 module.get_base (base);
4807                 module.get_base_is_offset (base_is_offset);
4808 
4809                 log->Printf ("found (base:0x%08" PRIx64 "[%s], name:'%s')", base, (base_is_offset ? "offset" : "absolute"), name.c_str());
4810             }
4811 
4812             list.add (module);
4813             return true; // Keep iterating over all "library" elements in the root node
4814         });
4815 
4816         if (log)
4817             log->Printf ("found %" PRId32 " modules in total", (int) list.m_list.size());
4818     } else {
4819         return Error (0, ErrorType::eErrorTypeGeneric);
4820     }
4821 
4822     return Error();
4823 }
4824 
4825 lldb::ModuleSP
4826 ProcessGDBRemote::LoadModuleAtAddress (const FileSpec &file, lldb::addr_t link_map,
4827                                        lldb::addr_t base_addr, bool value_is_offset)
4828 {
4829     DynamicLoader *loader = GetDynamicLoader();
4830     if (!loader)
4831         return nullptr;
4832 
4833     return loader->LoadModuleAtAddress(file, link_map, base_addr, value_is_offset);
4834 }
4835 
4836 size_t
4837 ProcessGDBRemote::LoadModules (LoadedModuleInfoList &module_list)
4838 {
4839     using lldb_private::process_gdb_remote::ProcessGDBRemote;
4840 
4841     // request a list of loaded libraries from GDBServer
4842     if (GetLoadedModuleList (module_list).Fail())
4843         return 0;
4844 
4845     // get a list of all the modules
4846     ModuleList new_modules;
4847 
4848     for (LoadedModuleInfoList::LoadedModuleInfo & modInfo : module_list.m_list)
4849     {
4850         std::string  mod_name;
4851         lldb::addr_t mod_base;
4852         lldb::addr_t link_map;
4853         bool         mod_base_is_offset;
4854 
4855         bool valid = true;
4856         valid &= modInfo.get_name (mod_name);
4857         valid &= modInfo.get_base (mod_base);
4858         valid &= modInfo.get_base_is_offset (mod_base_is_offset);
4859         if (!valid)
4860             continue;
4861 
4862         if (!modInfo.get_link_map (link_map))
4863             link_map = LLDB_INVALID_ADDRESS;
4864 
4865         // hack (cleaner way to get file name only?) (win/unix compat?)
4866         size_t marker = mod_name.rfind ('/');
4867         if (marker == std::string::npos)
4868             marker = 0;
4869         else
4870             marker += 1;
4871 
4872         FileSpec file (mod_name.c_str()+marker, true);
4873         lldb::ModuleSP module_sp = LoadModuleAtAddress (file, link_map, mod_base,
4874                                                         mod_base_is_offset);
4875 
4876         if (module_sp.get())
4877             new_modules.Append (module_sp);
4878     }
4879 
4880     if (new_modules.GetSize() > 0)
4881     {
4882         Target &target = GetTarget();
4883 
4884         new_modules.ForEach ([&target](const lldb::ModuleSP module_sp) -> bool
4885         {
4886             lldb_private::ObjectFile * obj = module_sp->GetObjectFile ();
4887             if (!obj)
4888                 return true;
4889 
4890             if (obj->GetType () != ObjectFile::Type::eTypeExecutable)
4891                 return true;
4892 
4893             lldb::ModuleSP module_copy_sp = module_sp;
4894             target.SetExecutableModule (module_copy_sp, false);
4895             return false;
4896         });
4897 
4898         ModuleList &loaded_modules = m_process->GetTarget().GetImages();
4899         loaded_modules.AppendIfNeeded (new_modules);
4900         m_process->GetTarget().ModulesDidLoad (new_modules);
4901     }
4902 
4903     return new_modules.GetSize();
4904 
4905 }
4906 
4907 size_t
4908 ProcessGDBRemote::LoadModules ()
4909 {
4910     LoadedModuleInfoList module_list;
4911     return LoadModules (module_list);
4912 }
4913 
4914 Error
4915 ProcessGDBRemote::GetFileLoadAddress(const FileSpec& file, bool& is_loaded, lldb::addr_t& load_addr)
4916 {
4917     is_loaded = false;
4918     load_addr = LLDB_INVALID_ADDRESS;
4919 
4920     std::string file_path = file.GetPath(false);
4921     if (file_path.empty ())
4922         return Error("Empty file name specified");
4923 
4924     StreamString packet;
4925     packet.PutCString("qFileLoadAddress:");
4926     packet.PutCStringAsRawHex8(file_path.c_str());
4927 
4928     StringExtractorGDBRemote response;
4929     if (m_gdb_comm.SendPacketAndWaitForResponse(packet.GetString().c_str(), response, false) != GDBRemoteCommunication::PacketResult::Success)
4930         return Error("Sending qFileLoadAddress packet failed");
4931 
4932     if (response.IsErrorResponse())
4933     {
4934         if (response.GetError() == 1)
4935         {
4936             // The file is not loaded into the inferior
4937             is_loaded = false;
4938             load_addr = LLDB_INVALID_ADDRESS;
4939             return Error();
4940         }
4941 
4942         return Error("Fetching file load address from remote server returned an error");
4943     }
4944 
4945     if (response.IsNormalResponse())
4946     {
4947         is_loaded = true;
4948         load_addr = response.GetHexMaxU64(false, LLDB_INVALID_ADDRESS);
4949         return Error();
4950     }
4951 
4952     return Error("Unknown error happened during sending the load address packet");
4953 }
4954 
4955 
4956 void
4957 ProcessGDBRemote::ModulesDidLoad (ModuleList &module_list)
4958 {
4959     // We must call the lldb_private::Process::ModulesDidLoad () first before we do anything
4960     Process::ModulesDidLoad (module_list);
4961 
4962     // After loading shared libraries, we can ask our remote GDB server if
4963     // it needs any symbols.
4964     m_gdb_comm.ServeSymbolLookups(this);
4965 }
4966 
4967 
4968 class CommandObjectProcessGDBRemoteSpeedTest: public CommandObjectParsed
4969 {
4970 public:
4971     CommandObjectProcessGDBRemoteSpeedTest(CommandInterpreter &interpreter) :
4972         CommandObjectParsed (interpreter,
4973                              "process plugin packet speed-test",
4974                              "Tests packet speeds of various sizes to determine the performance characteristics of the GDB remote connection. ",
4975                              NULL),
4976         m_option_group (interpreter),
4977         m_num_packets (LLDB_OPT_SET_1, false, "count",       'c', 0, eArgTypeCount, "The number of packets to send of each varying size (default is 1000).", 1000),
4978         m_max_send    (LLDB_OPT_SET_1, false, "max-send",    's', 0, eArgTypeCount, "The maximum number of bytes to send in a packet. Sizes increase in powers of 2 while the size is less than or equal to this option value. (default 1024).", 1024),
4979         m_max_recv    (LLDB_OPT_SET_1, false, "max-receive", 'r', 0, eArgTypeCount, "The maximum number of bytes to receive in a packet. Sizes increase in powers of 2 while the size is less than or equal to this option value. (default 1024).", 1024),
4980         m_json        (LLDB_OPT_SET_1, false, "json",        'j', "Print the output as JSON data for easy parsing.", false, true)
4981     {
4982         m_option_group.Append (&m_num_packets, LLDB_OPT_SET_ALL, LLDB_OPT_SET_1);
4983         m_option_group.Append (&m_max_send, LLDB_OPT_SET_ALL, LLDB_OPT_SET_1);
4984         m_option_group.Append (&m_max_recv, LLDB_OPT_SET_ALL, LLDB_OPT_SET_1);
4985         m_option_group.Append (&m_json, LLDB_OPT_SET_ALL, LLDB_OPT_SET_1);
4986         m_option_group.Finalize();
4987     }
4988 
4989     ~CommandObjectProcessGDBRemoteSpeedTest ()
4990     {
4991     }
4992 
4993 
4994     Options *
4995     GetOptions () override
4996     {
4997         return &m_option_group;
4998     }
4999 
5000     bool
5001     DoExecute (Args& command, CommandReturnObject &result) override
5002     {
5003         const size_t argc = command.GetArgumentCount();
5004         if (argc == 0)
5005         {
5006             ProcessGDBRemote *process = (ProcessGDBRemote *)m_interpreter.GetExecutionContext().GetProcessPtr();
5007             if (process)
5008             {
5009                 StreamSP output_stream_sp (m_interpreter.GetDebugger().GetAsyncOutputStream());
5010                 result.SetImmediateOutputStream (output_stream_sp);
5011 
5012                 const uint32_t num_packets = (uint32_t)m_num_packets.GetOptionValue().GetCurrentValue();
5013                 const uint64_t max_send = m_max_send.GetOptionValue().GetCurrentValue();
5014                 const uint64_t max_recv = m_max_recv.GetOptionValue().GetCurrentValue();
5015                 const bool json = m_json.GetOptionValue().GetCurrentValue();
5016                 if (output_stream_sp)
5017                     process->GetGDBRemote().TestPacketSpeed (num_packets, max_send, max_recv, json, *output_stream_sp);
5018                 else
5019                 {
5020                     process->GetGDBRemote().TestPacketSpeed (num_packets, max_send, max_recv, json, result.GetOutputStream());
5021                 }
5022                 result.SetStatus (eReturnStatusSuccessFinishResult);
5023                 return true;
5024             }
5025         }
5026         else
5027         {
5028             result.AppendErrorWithFormat ("'%s' takes no arguments", m_cmd_name.c_str());
5029         }
5030         result.SetStatus (eReturnStatusFailed);
5031         return false;
5032     }
5033 protected:
5034     OptionGroupOptions m_option_group;
5035     OptionGroupUInt64 m_num_packets;
5036     OptionGroupUInt64 m_max_send;
5037     OptionGroupUInt64 m_max_recv;
5038     OptionGroupBoolean m_json;
5039 
5040 };
5041 
5042 class CommandObjectProcessGDBRemotePacketHistory : public CommandObjectParsed
5043 {
5044 private:
5045 
5046 public:
5047     CommandObjectProcessGDBRemotePacketHistory(CommandInterpreter &interpreter) :
5048     CommandObjectParsed (interpreter,
5049                          "process plugin packet history",
5050                          "Dumps the packet history buffer. ",
5051                          NULL)
5052     {
5053     }
5054 
5055     ~CommandObjectProcessGDBRemotePacketHistory ()
5056     {
5057     }
5058 
5059     bool
5060     DoExecute (Args& command, CommandReturnObject &result) override
5061     {
5062         const size_t argc = command.GetArgumentCount();
5063         if (argc == 0)
5064         {
5065             ProcessGDBRemote *process = (ProcessGDBRemote *)m_interpreter.GetExecutionContext().GetProcessPtr();
5066             if (process)
5067             {
5068                 process->GetGDBRemote().DumpHistory(result.GetOutputStream());
5069                 result.SetStatus (eReturnStatusSuccessFinishResult);
5070                 return true;
5071             }
5072         }
5073         else
5074         {
5075             result.AppendErrorWithFormat ("'%s' takes no arguments", m_cmd_name.c_str());
5076         }
5077         result.SetStatus (eReturnStatusFailed);
5078         return false;
5079     }
5080 };
5081 
5082 class CommandObjectProcessGDBRemotePacketXferSize : public CommandObjectParsed
5083 {
5084 private:
5085 
5086 public:
5087     CommandObjectProcessGDBRemotePacketXferSize(CommandInterpreter &interpreter) :
5088     CommandObjectParsed (interpreter,
5089                          "process plugin packet xfer-size",
5090                          "Maximum size that lldb will try to read/write one one chunk.",
5091                          NULL)
5092     {
5093     }
5094 
5095     ~CommandObjectProcessGDBRemotePacketXferSize ()
5096     {
5097     }
5098 
5099     bool
5100     DoExecute (Args& command, CommandReturnObject &result) override
5101     {
5102         const size_t argc = command.GetArgumentCount();
5103         if (argc == 0)
5104         {
5105             result.AppendErrorWithFormat ("'%s' takes an argument to specify the max amount to be transferred when reading/writing", m_cmd_name.c_str());
5106             result.SetStatus (eReturnStatusFailed);
5107             return false;
5108         }
5109 
5110         ProcessGDBRemote *process = (ProcessGDBRemote *)m_interpreter.GetExecutionContext().GetProcessPtr();
5111         if (process)
5112         {
5113             const char *packet_size = command.GetArgumentAtIndex(0);
5114             errno = 0;
5115             uint64_t user_specified_max = strtoul (packet_size, NULL, 10);
5116             if (errno == 0 && user_specified_max != 0)
5117             {
5118                 process->SetUserSpecifiedMaxMemoryTransferSize (user_specified_max);
5119                 result.SetStatus (eReturnStatusSuccessFinishResult);
5120                 return true;
5121             }
5122         }
5123         result.SetStatus (eReturnStatusFailed);
5124         return false;
5125     }
5126 };
5127 
5128 
5129 class CommandObjectProcessGDBRemotePacketSend : public CommandObjectParsed
5130 {
5131 private:
5132 
5133 public:
5134     CommandObjectProcessGDBRemotePacketSend(CommandInterpreter &interpreter) :
5135         CommandObjectParsed (interpreter,
5136                              "process plugin packet send",
5137                              "Send a custom packet through the GDB remote protocol and print the answer. "
5138                              "The packet header and footer will automatically be added to the packet prior to sending and stripped from the result.",
5139                              NULL)
5140     {
5141     }
5142 
5143     ~CommandObjectProcessGDBRemotePacketSend ()
5144     {
5145     }
5146 
5147     bool
5148     DoExecute (Args& command, CommandReturnObject &result) override
5149     {
5150         const size_t argc = command.GetArgumentCount();
5151         if (argc == 0)
5152         {
5153             result.AppendErrorWithFormat ("'%s' takes a one or more packet content arguments", m_cmd_name.c_str());
5154             result.SetStatus (eReturnStatusFailed);
5155             return false;
5156         }
5157 
5158         ProcessGDBRemote *process = (ProcessGDBRemote *)m_interpreter.GetExecutionContext().GetProcessPtr();
5159         if (process)
5160         {
5161             for (size_t i=0; i<argc; ++ i)
5162             {
5163                 const char *packet_cstr = command.GetArgumentAtIndex(0);
5164                 bool send_async = true;
5165                 StringExtractorGDBRemote response;
5166                 process->GetGDBRemote().SendPacketAndWaitForResponse(packet_cstr, response, send_async);
5167                 result.SetStatus (eReturnStatusSuccessFinishResult);
5168                 Stream &output_strm = result.GetOutputStream();
5169                 output_strm.Printf ("  packet: %s\n", packet_cstr);
5170                 std::string &response_str = response.GetStringRef();
5171 
5172                 if (strstr(packet_cstr, "qGetProfileData") != NULL)
5173                 {
5174                     response_str = process->GetGDBRemote().HarmonizeThreadIdsForProfileData(process, response);
5175                 }
5176 
5177                 if (response_str.empty())
5178                     output_strm.PutCString ("response: \nerror: UNIMPLEMENTED\n");
5179                 else
5180                     output_strm.Printf ("response: %s\n", response.GetStringRef().c_str());
5181             }
5182         }
5183         return true;
5184     }
5185 };
5186 
5187 class CommandObjectProcessGDBRemotePacketMonitor : public CommandObjectRaw
5188 {
5189 private:
5190 
5191 public:
5192     CommandObjectProcessGDBRemotePacketMonitor(CommandInterpreter &interpreter) :
5193         CommandObjectRaw (interpreter,
5194                          "process plugin packet monitor",
5195                          "Send a qRcmd packet through the GDB remote protocol and print the response."
5196                          "The argument passed to this command will be hex encoded into a valid 'qRcmd' packet, sent and the response will be printed.",
5197                          NULL)
5198     {
5199     }
5200 
5201     ~CommandObjectProcessGDBRemotePacketMonitor ()
5202     {
5203     }
5204 
5205     bool
5206     DoExecute (const char *command, CommandReturnObject &result) override
5207     {
5208         if (command == NULL || command[0] == '\0')
5209         {
5210             result.AppendErrorWithFormat ("'%s' takes a command string argument", m_cmd_name.c_str());
5211             result.SetStatus (eReturnStatusFailed);
5212             return false;
5213         }
5214 
5215         ProcessGDBRemote *process = (ProcessGDBRemote *)m_interpreter.GetExecutionContext().GetProcessPtr();
5216         if (process)
5217         {
5218             StreamString packet;
5219             packet.PutCString("qRcmd,");
5220             packet.PutBytesAsRawHex8(command, strlen(command));
5221             const char *packet_cstr = packet.GetString().c_str();
5222 
5223             bool send_async = true;
5224             StringExtractorGDBRemote response;
5225             process->GetGDBRemote().SendPacketAndWaitForResponse(packet_cstr, response, send_async);
5226             result.SetStatus (eReturnStatusSuccessFinishResult);
5227             Stream &output_strm = result.GetOutputStream();
5228             output_strm.Printf ("  packet: %s\n", packet_cstr);
5229             const std::string &response_str = response.GetStringRef();
5230 
5231             if (response_str.empty())
5232                 output_strm.PutCString ("response: \nerror: UNIMPLEMENTED\n");
5233             else
5234                 output_strm.Printf ("response: %s\n", response.GetStringRef().c_str());
5235         }
5236         return true;
5237     }
5238 };
5239 
5240 class CommandObjectProcessGDBRemotePacket : public CommandObjectMultiword
5241 {
5242 private:
5243 
5244 public:
5245     CommandObjectProcessGDBRemotePacket(CommandInterpreter &interpreter) :
5246         CommandObjectMultiword (interpreter,
5247                                 "process plugin packet",
5248                                 "Commands that deal with GDB remote packets.",
5249                                 NULL)
5250     {
5251         LoadSubCommand ("history", CommandObjectSP (new CommandObjectProcessGDBRemotePacketHistory (interpreter)));
5252         LoadSubCommand ("send", CommandObjectSP (new CommandObjectProcessGDBRemotePacketSend (interpreter)));
5253         LoadSubCommand ("monitor", CommandObjectSP (new CommandObjectProcessGDBRemotePacketMonitor (interpreter)));
5254         LoadSubCommand ("xfer-size", CommandObjectSP (new CommandObjectProcessGDBRemotePacketXferSize (interpreter)));
5255         LoadSubCommand ("speed-test", CommandObjectSP (new CommandObjectProcessGDBRemoteSpeedTest (interpreter)));
5256     }
5257 
5258     ~CommandObjectProcessGDBRemotePacket ()
5259     {
5260     }
5261 };
5262 
5263 class CommandObjectMultiwordProcessGDBRemote : public CommandObjectMultiword
5264 {
5265 public:
5266     CommandObjectMultiwordProcessGDBRemote (CommandInterpreter &interpreter) :
5267         CommandObjectMultiword (interpreter,
5268                                 "process plugin",
5269                                 "A set of commands for operating on a ProcessGDBRemote process.",
5270                                 "process plugin <subcommand> [<subcommand-options>]")
5271     {
5272         LoadSubCommand ("packet", CommandObjectSP (new CommandObjectProcessGDBRemotePacket    (interpreter)));
5273     }
5274 
5275     ~CommandObjectMultiwordProcessGDBRemote ()
5276     {
5277     }
5278 };
5279 
5280 CommandObject *
5281 ProcessGDBRemote::GetPluginCommandObject()
5282 {
5283     if (!m_command_sp)
5284         m_command_sp.reset (new CommandObjectMultiwordProcessGDBRemote (GetTarget().GetDebugger().GetCommandInterpreter()));
5285     return m_command_sp.get();
5286 }
5287