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Chris Lattner30fdc8d2010-06-08 16:52:24 +00001//===-- Process.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
Eugene Zelenko8f30a652015-10-23 18:39:37 +000010// C Includes
11// C++ Includes
Greg Clayton5cc45e02016-02-26 19:41:49 +000012#include <atomic>
Greg Clayton04df8ee2016-02-26 19:38:18 +000013#include <mutex>
Eugene Zelenkoda8cf8a2016-03-01 00:55:51 +000014
Eugene Zelenko8f30a652015-10-23 18:39:37 +000015// Other libraries and framework includes
Pavel Labath2ce22162016-12-01 10:57:30 +000016#include "llvm/Support/ScopedPrinter.h"
Eugene Zelenko8f30a652015-10-23 18:39:37 +000017// Project includes
Sean Callanan579e70c2016-03-19 00:03:59 +000018#include "Plugins/Process/Utility/InferiorCallPOSIX.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000019#include "lldb/Breakpoint/BreakpointLocation.h"
Sean Callanan579e70c2016-03-19 00:03:59 +000020#include "lldb/Breakpoint/StoppointCallbackContext.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000021#include "lldb/Core/Debugger.h"
Sean Callanan579e70c2016-03-19 00:03:59 +000022#include "lldb/Core/Event.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000023#include "lldb/Core/Log.h"
Greg Clayton1f746072012-08-29 21:13:06 +000024#include "lldb/Core/Module.h"
Tamas Berghammer7cb18bf2015-03-24 11:15:23 +000025#include "lldb/Core/ModuleSpec.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000026#include "lldb/Core/PluginManager.h"
27#include "lldb/Core/State.h"
Greg Clayton44d93782014-01-27 23:43:24 +000028#include "lldb/Core/StreamFile.h"
Sean Callanan579e70c2016-03-19 00:03:59 +000029#include "lldb/Expression/DiagnosticManager.h"
Zachary Turner93749ab2015-03-03 21:51:25 +000030#include "lldb/Expression/IRDynamicChecks.h"
Sean Callanan579e70c2016-03-19 00:03:59 +000031#include "lldb/Expression/UserExpression.h"
Zachary Turner93a66fc2014-10-06 21:22:36 +000032#include "lldb/Host/ConnectionFileDescriptor.h"
Zachary Turner4eff2d32015-10-14 21:37:36 +000033#include "lldb/Host/FileSystem.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000034#include "lldb/Host/Host.h"
Zachary Turner39de3112014-09-09 20:54:56 +000035#include "lldb/Host/HostInfo.h"
Greg Clayton100eb932014-07-02 21:10:39 +000036#include "lldb/Host/Pipe.h"
Greg Clayton44d93782014-01-27 23:43:24 +000037#include "lldb/Host/Terminal.h"
Zachary Turner39de3112014-09-09 20:54:56 +000038#include "lldb/Host/ThreadLauncher.h"
Zachary Turner93a66fc2014-10-06 21:22:36 +000039#include "lldb/Interpreter/CommandInterpreter.h"
Zachary Turner633a29c2015-03-04 01:58:01 +000040#include "lldb/Interpreter/OptionValueProperties.h"
Jason Molenda484900b2015-08-10 07:55:25 +000041#include "lldb/Symbol/Function.h"
Zachary Turner93a66fc2014-10-06 21:22:36 +000042#include "lldb/Symbol/Symbol.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000043#include "lldb/Target/ABI.h"
Sean Callanan579e70c2016-03-19 00:03:59 +000044#include "lldb/Target/CPPLanguageRuntime.h"
Greg Clayton8f343b02010-11-04 01:54:29 +000045#include "lldb/Target/DynamicLoader.h"
Zachary Turner93749ab2015-03-03 21:51:25 +000046#include "lldb/Target/InstrumentationRuntime.h"
Andrew MacPherson17220c12014-03-05 10:12:43 +000047#include "lldb/Target/JITLoader.h"
Zachary Turner93749ab2015-03-03 21:51:25 +000048#include "lldb/Target/JITLoaderList.h"
Sean Callanan579e70c2016-03-19 00:03:59 +000049#include "lldb/Target/LanguageRuntime.h"
Kuba Breckaa51ea382014-09-06 01:33:13 +000050#include "lldb/Target/MemoryHistory.h"
Zachary Turner93749ab2015-03-03 21:51:25 +000051#include "lldb/Target/MemoryRegionInfo.h"
Jim Ingham22777012010-09-23 02:01:19 +000052#include "lldb/Target/ObjCLanguageRuntime.h"
Sean Callanan579e70c2016-03-19 00:03:59 +000053#include "lldb/Target/OperatingSystem.h"
Greg Claytone996fd32011-03-08 22:40:15 +000054#include "lldb/Target/Platform.h"
Sean Callanan579e70c2016-03-19 00:03:59 +000055#include "lldb/Target/Process.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000056#include "lldb/Target/RegisterContext.h"
Greg Claytonf4b47e12010-08-04 01:40:35 +000057#include "lldb/Target/StopInfo.h"
Todd Fiala75930012016-08-19 04:21:48 +000058#include "lldb/Target/StructuredDataPlugin.h"
Jason Molendaeef51062013-11-05 03:57:19 +000059#include "lldb/Target/SystemRuntime.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000060#include "lldb/Target/Target.h"
61#include "lldb/Target/TargetList.h"
62#include "lldb/Target/Thread.h"
63#include "lldb/Target/ThreadPlan.h"
Jim Ingham076b3042012-04-10 01:21:57 +000064#include "lldb/Target/ThreadPlanBase.h"
Zachary Turner93749ab2015-03-03 21:51:25 +000065#include "lldb/Target/UnixSignals.h"
Zachary Turner50232572015-03-18 21:31:45 +000066#include "lldb/Utility/NameMatches.h"
Greg Claytonee1f5782016-08-10 22:43:48 +000067#include "lldb/Utility/SelectHelper.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000068
69using namespace lldb;
70using namespace lldb_private;
Pavel Labathe3e21cf2016-11-30 11:56:32 +000071using namespace std::chrono;
Chris Lattner30fdc8d2010-06-08 16:52:24 +000072
Kate Stoneb9c1b512016-09-06 20:57:50 +000073// Comment out line below to disable memory caching, overriding the process
Pavel Labath43d35412016-12-06 11:24:51 +000074// setting target.process.disable-memory-cache
Greg Clayton67cc0632012-08-22 17:17:09 +000075#define ENABLE_MEMORY_CACHING
76
77#ifdef ENABLE_MEMORY_CACHING
78#define DISABLE_MEM_CACHE_DEFAULT false
79#else
80#define DISABLE_MEM_CACHE_DEFAULT true
81#endif
82
Kate Stoneb9c1b512016-09-06 20:57:50 +000083class ProcessOptionValueProperties : public OptionValueProperties {
Greg Clayton67cc0632012-08-22 17:17:09 +000084public:
Kate Stoneb9c1b512016-09-06 20:57:50 +000085 ProcessOptionValueProperties(const ConstString &name)
86 : OptionValueProperties(name) {}
87
88 // This constructor is used when creating ProcessOptionValueProperties when it
89 // is part of a new lldb_private::Process instance. It will copy all current
90 // global property values as needed
91 ProcessOptionValueProperties(ProcessProperties *global_properties)
92 : OptionValueProperties(*global_properties->GetValueProperties()) {}
93
94 const Property *GetPropertyAtIndex(const ExecutionContext *exe_ctx,
95 bool will_modify,
96 uint32_t idx) const override {
97 // When getting the value for a key from the process options, we will always
98 // try and grab the setting from the current process if there is one. Else
99 // we just
100 // use the one from this instance.
101 if (exe_ctx) {
102 Process *process = exe_ctx->GetProcessPtr();
103 if (process) {
104 ProcessOptionValueProperties *instance_properties =
105 static_cast<ProcessOptionValueProperties *>(
106 process->GetValueProperties().get());
107 if (this != instance_properties)
108 return instance_properties->ProtectedGetPropertyAtIndex(idx);
109 }
Greg Clayton67cc0632012-08-22 17:17:09 +0000110 }
Kate Stoneb9c1b512016-09-06 20:57:50 +0000111 return ProtectedGetPropertyAtIndex(idx);
112 }
Greg Clayton67cc0632012-08-22 17:17:09 +0000113};
114
Kate Stoneb9c1b512016-09-06 20:57:50 +0000115static PropertyDefinition g_properties[] = {
116 {"disable-memory-cache", OptionValue::eTypeBoolean, false,
117 DISABLE_MEM_CACHE_DEFAULT, nullptr, nullptr,
118 "Disable reading and caching of memory in fixed-size units."},
119 {"extra-startup-command", OptionValue::eTypeArray, false,
120 OptionValue::eTypeString, nullptr, nullptr,
121 "A list containing extra commands understood by the particular process "
122 "plugin used. "
123 "For instance, to turn on debugserver logging set this to "
124 "\"QSetLogging:bitmask=LOG_DEFAULT;\""},
125 {"ignore-breakpoints-in-expressions", OptionValue::eTypeBoolean, true, true,
126 nullptr, nullptr,
127 "If true, breakpoints will be ignored during expression evaluation."},
128 {"unwind-on-error-in-expressions", OptionValue::eTypeBoolean, true, true,
129 nullptr, nullptr, "If true, errors in expression evaluation will unwind "
130 "the stack back to the state before the call."},
131 {"python-os-plugin-path", OptionValue::eTypeFileSpec, false, true, nullptr,
132 nullptr, "A path to a python OS plug-in module file that contains a "
133 "OperatingSystemPlugIn class."},
134 {"stop-on-sharedlibrary-events", OptionValue::eTypeBoolean, true, false,
135 nullptr, nullptr,
136 "If true, stop when a shared library is loaded or unloaded."},
137 {"detach-keeps-stopped", OptionValue::eTypeBoolean, true, false, nullptr,
138 nullptr, "If true, detach will attempt to keep the process stopped."},
139 {"memory-cache-line-size", OptionValue::eTypeUInt64, false, 512, nullptr,
140 nullptr, "The memory cache line size"},
141 {"optimization-warnings", OptionValue::eTypeBoolean, false, true, nullptr,
142 nullptr, "If true, warn when stopped in code that is optimized where "
143 "stepping and variable availability may not behave as expected."},
144 {nullptr, OptionValue::eTypeInvalid, false, 0, nullptr, nullptr, nullptr}};
Greg Clayton67cc0632012-08-22 17:17:09 +0000145
146enum {
Kate Stoneb9c1b512016-09-06 20:57:50 +0000147 ePropertyDisableMemCache,
148 ePropertyExtraStartCommand,
149 ePropertyIgnoreBreakpointsInExpressions,
150 ePropertyUnwindOnErrorInExpressions,
151 ePropertyPythonOSPluginPath,
152 ePropertyStopOnSharedLibraryEvents,
153 ePropertyDetachKeepsStopped,
154 ePropertyMemCacheLineSize,
155 ePropertyWarningOptimization
Greg Clayton67cc0632012-08-22 17:17:09 +0000156};
157
Kate Stoneb9c1b512016-09-06 20:57:50 +0000158ProcessProperties::ProcessProperties(lldb_private::Process *process)
159 : Properties(),
160 m_process(process) // Can be nullptr for global ProcessProperties
Greg Clayton67cc0632012-08-22 17:17:09 +0000161{
Kate Stoneb9c1b512016-09-06 20:57:50 +0000162 if (process == nullptr) {
163 // Global process properties, set them up one time
164 m_collection_sp.reset(
165 new ProcessOptionValueProperties(ConstString("process")));
166 m_collection_sp->Initialize(g_properties);
167 m_collection_sp->AppendProperty(
168 ConstString("thread"), ConstString("Settings specific to threads."),
169 true, Thread::GetGlobalProperties()->GetValueProperties());
170 } else {
171 m_collection_sp.reset(
172 new ProcessOptionValueProperties(Process::GetGlobalProperties().get()));
173 m_collection_sp->SetValueChangedCallback(
174 ePropertyPythonOSPluginPath,
175 ProcessProperties::OptionValueChangedCallback, this);
176 }
Greg Clayton67cc0632012-08-22 17:17:09 +0000177}
178
Eugene Zelenko8f30a652015-10-23 18:39:37 +0000179ProcessProperties::~ProcessProperties() = default;
Greg Clayton67cc0632012-08-22 17:17:09 +0000180
Kate Stoneb9c1b512016-09-06 20:57:50 +0000181void ProcessProperties::OptionValueChangedCallback(void *baton,
182 OptionValue *option_value) {
183 ProcessProperties *properties = (ProcessProperties *)baton;
184 if (properties->m_process)
185 properties->m_process->LoadOperatingSystemPlugin(true);
Greg Clayton332e8b12015-01-13 21:13:08 +0000186}
187
Kate Stoneb9c1b512016-09-06 20:57:50 +0000188bool ProcessProperties::GetDisableMemoryCache() const {
189 const uint32_t idx = ePropertyDisableMemCache;
190 return m_collection_sp->GetPropertyAtIndexAsBoolean(
191 nullptr, idx, g_properties[idx].default_uint_value != 0);
Greg Clayton67cc0632012-08-22 17:17:09 +0000192}
193
Kate Stoneb9c1b512016-09-06 20:57:50 +0000194uint64_t ProcessProperties::GetMemoryCacheLineSize() const {
195 const uint32_t idx = ePropertyMemCacheLineSize;
196 return m_collection_sp->GetPropertyAtIndexAsUInt64(
197 nullptr, idx, g_properties[idx].default_uint_value);
Jason Molendaf0340c92014-09-03 22:30:54 +0000198}
199
Kate Stoneb9c1b512016-09-06 20:57:50 +0000200Args ProcessProperties::GetExtraStartupCommands() const {
201 Args args;
202 const uint32_t idx = ePropertyExtraStartCommand;
203 m_collection_sp->GetPropertyAtIndexAsArgs(nullptr, idx, args);
204 return args;
Greg Clayton67cc0632012-08-22 17:17:09 +0000205}
206
Kate Stoneb9c1b512016-09-06 20:57:50 +0000207void ProcessProperties::SetExtraStartupCommands(const Args &args) {
208 const uint32_t idx = ePropertyExtraStartCommand;
209 m_collection_sp->SetPropertyAtIndexFromArgs(nullptr, idx, args);
Greg Clayton67cc0632012-08-22 17:17:09 +0000210}
211
Kate Stoneb9c1b512016-09-06 20:57:50 +0000212FileSpec ProcessProperties::GetPythonOSPluginPath() const {
213 const uint32_t idx = ePropertyPythonOSPluginPath;
214 return m_collection_sp->GetPropertyAtIndexAsFileSpec(nullptr, idx);
Greg Claytonc9d645d2012-10-18 22:40:37 +0000215}
216
Kate Stoneb9c1b512016-09-06 20:57:50 +0000217void ProcessProperties::SetPythonOSPluginPath(const FileSpec &file) {
218 const uint32_t idx = ePropertyPythonOSPluginPath;
219 m_collection_sp->SetPropertyAtIndexAsFileSpec(nullptr, idx, file);
Greg Claytonc9d645d2012-10-18 22:40:37 +0000220}
221
Kate Stoneb9c1b512016-09-06 20:57:50 +0000222bool ProcessProperties::GetIgnoreBreakpointsInExpressions() const {
223 const uint32_t idx = ePropertyIgnoreBreakpointsInExpressions;
224 return m_collection_sp->GetPropertyAtIndexAsBoolean(
225 nullptr, idx, g_properties[idx].default_uint_value != 0);
Jim Ingham184e9812013-01-15 02:47:48 +0000226}
227
Kate Stoneb9c1b512016-09-06 20:57:50 +0000228void ProcessProperties::SetIgnoreBreakpointsInExpressions(bool ignore) {
229 const uint32_t idx = ePropertyIgnoreBreakpointsInExpressions;
230 m_collection_sp->SetPropertyAtIndexAsBoolean(nullptr, idx, ignore);
Jim Ingham184e9812013-01-15 02:47:48 +0000231}
232
Kate Stoneb9c1b512016-09-06 20:57:50 +0000233bool ProcessProperties::GetUnwindOnErrorInExpressions() const {
234 const uint32_t idx = ePropertyUnwindOnErrorInExpressions;
235 return m_collection_sp->GetPropertyAtIndexAsBoolean(
236 nullptr, idx, g_properties[idx].default_uint_value != 0);
Jim Ingham29950772013-01-26 02:19:28 +0000237}
238
Kate Stoneb9c1b512016-09-06 20:57:50 +0000239void ProcessProperties::SetUnwindOnErrorInExpressions(bool ignore) {
240 const uint32_t idx = ePropertyUnwindOnErrorInExpressions;
241 m_collection_sp->SetPropertyAtIndexAsBoolean(nullptr, idx, ignore);
Jim Inghamacff8952013-05-02 00:27:30 +0000242}
243
Kate Stoneb9c1b512016-09-06 20:57:50 +0000244bool ProcessProperties::GetStopOnSharedLibraryEvents() const {
245 const uint32_t idx = ePropertyStopOnSharedLibraryEvents;
246 return m_collection_sp->GetPropertyAtIndexAsBoolean(
247 nullptr, idx, g_properties[idx].default_uint_value != 0);
Jason Molendaef7d6412015-08-06 03:27:10 +0000248}
249
Kate Stoneb9c1b512016-09-06 20:57:50 +0000250void ProcessProperties::SetStopOnSharedLibraryEvents(bool stop) {
251 const uint32_t idx = ePropertyStopOnSharedLibraryEvents;
252 m_collection_sp->SetPropertyAtIndexAsBoolean(nullptr, idx, stop);
253}
254
255bool ProcessProperties::GetDetachKeepsStopped() const {
256 const uint32_t idx = ePropertyDetachKeepsStopped;
257 return m_collection_sp->GetPropertyAtIndexAsBoolean(
258 nullptr, idx, g_properties[idx].default_uint_value != 0);
259}
260
261void ProcessProperties::SetDetachKeepsStopped(bool stop) {
262 const uint32_t idx = ePropertyDetachKeepsStopped;
263 m_collection_sp->SetPropertyAtIndexAsBoolean(nullptr, idx, stop);
264}
265
266bool ProcessProperties::GetWarningsOptimization() const {
267 const uint32_t idx = ePropertyWarningOptimization;
268 return m_collection_sp->GetPropertyAtIndexAsBoolean(
269 nullptr, idx, g_properties[idx].default_uint_value != 0);
270}
271
272void ProcessInstanceInfo::Dump(Stream &s, Platform *platform) const {
273 const char *cstr;
274 if (m_pid != LLDB_INVALID_PROCESS_ID)
275 s.Printf(" pid = %" PRIu64 "\n", m_pid);
276
277 if (m_parent_pid != LLDB_INVALID_PROCESS_ID)
278 s.Printf(" parent = %" PRIu64 "\n", m_parent_pid);
279
280 if (m_executable) {
281 s.Printf(" name = %s\n", m_executable.GetFilename().GetCString());
282 s.PutCString(" file = ");
283 m_executable.Dump(&s);
284 s.EOL();
285 }
286 const uint32_t argc = m_arguments.GetArgumentCount();
287 if (argc > 0) {
288 for (uint32_t i = 0; i < argc; i++) {
289 const char *arg = m_arguments.GetArgumentAtIndex(i);
290 if (i < 10)
291 s.Printf(" arg[%u] = %s\n", i, arg);
292 else
293 s.Printf("arg[%u] = %s\n", i, arg);
294 }
295 }
296
297 const uint32_t envc = m_environment.GetArgumentCount();
298 if (envc > 0) {
299 for (uint32_t i = 0; i < envc; i++) {
300 const char *env = m_environment.GetArgumentAtIndex(i);
301 if (i < 10)
302 s.Printf(" env[%u] = %s\n", i, env);
303 else
304 s.Printf("env[%u] = %s\n", i, env);
305 }
306 }
307
308 if (m_arch.IsValid()) {
309 s.Printf(" arch = ");
310 m_arch.DumpTriple(s);
311 s.EOL();
312 }
313
314 if (m_uid != UINT32_MAX) {
315 cstr = platform->GetUserName(m_uid);
316 s.Printf(" uid = %-5u (%s)\n", m_uid, cstr ? cstr : "");
317 }
318 if (m_gid != UINT32_MAX) {
319 cstr = platform->GetGroupName(m_gid);
320 s.Printf(" gid = %-5u (%s)\n", m_gid, cstr ? cstr : "");
321 }
322 if (m_euid != UINT32_MAX) {
323 cstr = platform->GetUserName(m_euid);
324 s.Printf(" euid = %-5u (%s)\n", m_euid, cstr ? cstr : "");
325 }
326 if (m_egid != UINT32_MAX) {
327 cstr = platform->GetGroupName(m_egid);
328 s.Printf(" egid = %-5u (%s)\n", m_egid, cstr ? cstr : "");
329 }
330}
331
332void ProcessInstanceInfo::DumpTableHeader(Stream &s, Platform *platform,
333 bool show_args, bool verbose) {
334 const char *label;
335 if (show_args || verbose)
336 label = "ARGUMENTS";
337 else
338 label = "NAME";
339
340 if (verbose) {
341 s.Printf("PID PARENT USER GROUP EFF USER EFF GROUP TRIPLE "
342 " %s\n",
343 label);
344 s.PutCString("====== ====== ========== ========== ========== ========== "
345 "======================== ============================\n");
346 } else {
347 s.Printf("PID PARENT USER TRIPLE %s\n", label);
348 s.PutCString("====== ====== ========== ======================== "
349 "============================\n");
350 }
351}
352
353void ProcessInstanceInfo::DumpAsTableRow(Stream &s, Platform *platform,
354 bool show_args, bool verbose) const {
355 if (m_pid != LLDB_INVALID_PROCESS_ID) {
Greg Clayton32e0a752011-03-30 18:16:51 +0000356 const char *cstr;
Kate Stoneb9c1b512016-09-06 20:57:50 +0000357 s.Printf("%-6" PRIu64 " %-6" PRIu64 " ", m_pid, m_parent_pid);
Greg Clayton95bf0fd2011-04-01 00:29:43 +0000358
Kate Stoneb9c1b512016-09-06 20:57:50 +0000359 StreamString arch_strm;
Todd Fiala7df337f2015-10-13 23:41:19 +0000360 if (m_arch.IsValid())
Kate Stoneb9c1b512016-09-06 20:57:50 +0000361 m_arch.DumpTriple(arch_strm);
362
363 if (verbose) {
364 cstr = platform->GetUserName(m_uid);
365 if (cstr &&
366 cstr[0]) // Watch for empty string that indicates lookup failed
367 s.Printf("%-10s ", cstr);
368 else
369 s.Printf("%-10u ", m_uid);
370
371 cstr = platform->GetGroupName(m_gid);
372 if (cstr &&
373 cstr[0]) // Watch for empty string that indicates lookup failed
374 s.Printf("%-10s ", cstr);
375 else
376 s.Printf("%-10u ", m_gid);
377
378 cstr = platform->GetUserName(m_euid);
379 if (cstr &&
380 cstr[0]) // Watch for empty string that indicates lookup failed
381 s.Printf("%-10s ", cstr);
382 else
383 s.Printf("%-10u ", m_euid);
384
385 cstr = platform->GetGroupName(m_egid);
386 if (cstr &&
387 cstr[0]) // Watch for empty string that indicates lookup failed
388 s.Printf("%-10s ", cstr);
389 else
390 s.Printf("%-10u ", m_egid);
391
Zachary Turnerc1564272016-11-16 21:15:24 +0000392 s.Printf("%-24s ", arch_strm.GetData());
Kate Stoneb9c1b512016-09-06 20:57:50 +0000393 } else {
394 s.Printf("%-10s %-24s ", platform->GetUserName(m_euid),
Zachary Turnerc1564272016-11-16 21:15:24 +0000395 arch_strm.GetData());
Todd Fiala7df337f2015-10-13 23:41:19 +0000396 }
Greg Clayton95bf0fd2011-04-01 00:29:43 +0000397
Kate Stoneb9c1b512016-09-06 20:57:50 +0000398 if (verbose || show_args) {
399 const uint32_t argc = m_arguments.GetArgumentCount();
400 if (argc > 0) {
401 for (uint32_t i = 0; i < argc; i++) {
402 if (i > 0)
403 s.PutChar(' ');
404 s.PutCString(m_arguments.GetArgumentAtIndex(i));
405 }
406 }
407 } else {
408 s.PutCString(GetName());
Greg Clayton32e0a752011-03-30 18:16:51 +0000409 }
Kate Stoneb9c1b512016-09-06 20:57:50 +0000410
411 s.EOL();
412 }
Greg Clayton32e0a752011-03-30 18:16:51 +0000413}
414
Kate Stoneb9c1b512016-09-06 20:57:50 +0000415Error ProcessLaunchCommandOptions::SetOptionValue(
Zachary Turnerfe114832016-11-12 16:56:47 +0000416 uint32_t option_idx, llvm::StringRef option_arg,
Kate Stoneb9c1b512016-09-06 20:57:50 +0000417 ExecutionContext *execution_context) {
418 Error error;
419 const int short_option = m_getopt_table[option_idx].val;
420
421 switch (short_option) {
422 case 's': // Stop at program entry point
423 launch_info.GetFlags().Set(eLaunchFlagStopAtEntry);
424 break;
425
426 case 'i': // STDIN for read only
427 {
428 FileAction action;
429 if (action.Open(STDIN_FILENO, FileSpec{option_arg, false}, true, false))
430 launch_info.AppendFileAction(action);
431 break;
432 }
433
434 case 'o': // Open STDOUT for write only
435 {
436 FileAction action;
437 if (action.Open(STDOUT_FILENO, FileSpec{option_arg, false}, false, true))
438 launch_info.AppendFileAction(action);
439 break;
440 }
441
442 case 'e': // STDERR for write only
443 {
444 FileAction action;
445 if (action.Open(STDERR_FILENO, FileSpec{option_arg, false}, false, true))
446 launch_info.AppendFileAction(action);
447 break;
448 }
449
450 case 'p': // Process plug-in name
451 launch_info.SetProcessPluginName(option_arg);
452 break;
453
454 case 'n': // Disable STDIO
455 {
456 FileAction action;
457 const FileSpec dev_null{FileSystem::DEV_NULL, false};
458 if (action.Open(STDIN_FILENO, dev_null, true, false))
459 launch_info.AppendFileAction(action);
460 if (action.Open(STDOUT_FILENO, dev_null, false, true))
461 launch_info.AppendFileAction(action);
462 if (action.Open(STDERR_FILENO, dev_null, false, true))
463 launch_info.AppendFileAction(action);
464 break;
465 }
466
467 case 'w':
468 launch_info.SetWorkingDirectory(FileSpec{option_arg, false});
469 break;
470
471 case 't': // Open process in new terminal window
472 launch_info.GetFlags().Set(eLaunchFlagLaunchInTTY);
473 break;
474
475 case 'a': {
476 TargetSP target_sp =
477 execution_context ? execution_context->GetTargetSP() : TargetSP();
478 PlatformSP platform_sp =
479 target_sp ? target_sp->GetPlatform() : PlatformSP();
480 if (!launch_info.GetArchitecture().SetTriple(option_arg, platform_sp.get()))
481 launch_info.GetArchitecture().SetTriple(option_arg);
482 } break;
483
484 case 'A': // Disable ASLR.
485 {
486 bool success;
487 const bool disable_aslr_arg =
Zachary Turnerfe114832016-11-12 16:56:47 +0000488 Args::StringToBoolean(option_arg, true, &success);
Kate Stoneb9c1b512016-09-06 20:57:50 +0000489 if (success)
490 disable_aslr = disable_aslr_arg ? eLazyBoolYes : eLazyBoolNo;
Greg Clayton8b82f082011-04-12 05:54:46 +0000491 else
Kate Stoneb9c1b512016-09-06 20:57:50 +0000492 error.SetErrorStringWithFormat(
493 "Invalid boolean value for disable-aslr option: '%s'",
Zachary Turnerfe114832016-11-12 16:56:47 +0000494 option_arg.empty() ? "<null>" : option_arg.str().c_str());
Kate Stoneb9c1b512016-09-06 20:57:50 +0000495 break;
496 }
Greg Clayton8b82f082011-04-12 05:54:46 +0000497
Kate Stoneb9c1b512016-09-06 20:57:50 +0000498 case 'X': // shell expand args.
499 {
500 bool success;
Zachary Turnerfe114832016-11-12 16:56:47 +0000501 const bool expand_args = Args::StringToBoolean(option_arg, true, &success);
Kate Stoneb9c1b512016-09-06 20:57:50 +0000502 if (success)
503 launch_info.SetShellExpandArguments(expand_args);
Greg Clayton95bf0fd2011-04-01 00:29:43 +0000504 else
Kate Stoneb9c1b512016-09-06 20:57:50 +0000505 error.SetErrorStringWithFormat(
506 "Invalid boolean value for shell-expand-args option: '%s'",
Zachary Turnerfe114832016-11-12 16:56:47 +0000507 option_arg.empty() ? "<null>" : option_arg.str().c_str());
Kate Stoneb9c1b512016-09-06 20:57:50 +0000508 break;
509 }
510
511 case 'c':
Zachary Turnerfe114832016-11-12 16:56:47 +0000512 if (!option_arg.empty())
Kate Stoneb9c1b512016-09-06 20:57:50 +0000513 launch_info.SetShell(FileSpec(option_arg, false));
514 else
515 launch_info.SetShell(HostInfo::GetDefaultShell());
516 break;
517
518 case 'v':
Zachary Turnerfe114832016-11-12 16:56:47 +0000519 launch_info.GetEnvironmentEntries().AppendArgument(option_arg);
Kate Stoneb9c1b512016-09-06 20:57:50 +0000520 break;
521
522 default:
523 error.SetErrorStringWithFormat("unrecognized short option character '%c'",
524 short_option);
525 break;
526 }
527 return error;
Greg Clayton32e0a752011-03-30 18:16:51 +0000528}
529
Zachary Turner1f0f5b52016-09-22 20:22:55 +0000530static OptionDefinition g_process_launch_options[] = {
Kate Stoneb9c1b512016-09-06 20:57:50 +0000531 {LLDB_OPT_SET_ALL, false, "stop-at-entry", 's', OptionParser::eNoArgument,
532 nullptr, nullptr, 0, eArgTypeNone,
533 "Stop at the entry point of the program when launching a process."},
534 {LLDB_OPT_SET_ALL, false, "disable-aslr", 'A',
535 OptionParser::eRequiredArgument, nullptr, nullptr, 0, eArgTypeBoolean,
536 "Set whether to disable address space layout randomization when launching "
537 "a process."},
538 {LLDB_OPT_SET_ALL, false, "plugin", 'p', OptionParser::eRequiredArgument,
539 nullptr, nullptr, 0, eArgTypePlugin,
540 "Name of the process plugin you want to use."},
541 {LLDB_OPT_SET_ALL, false, "working-dir", 'w',
542 OptionParser::eRequiredArgument, nullptr, nullptr, 0,
543 eArgTypeDirectoryName,
544 "Set the current working directory to <path> when running the inferior."},
545 {LLDB_OPT_SET_ALL, false, "arch", 'a', OptionParser::eRequiredArgument,
546 nullptr, nullptr, 0, eArgTypeArchitecture,
547 "Set the architecture for the process to launch when ambiguous."},
548 {LLDB_OPT_SET_ALL, false, "environment", 'v',
549 OptionParser::eRequiredArgument, nullptr, nullptr, 0, eArgTypeNone,
550 "Specify an environment variable name/value string (--environment "
551 "NAME=VALUE). Can be specified multiple times for subsequent environment "
552 "entries."},
553 {LLDB_OPT_SET_1 | LLDB_OPT_SET_2 | LLDB_OPT_SET_3, false, "shell", 'c',
554 OptionParser::eOptionalArgument, nullptr, nullptr, 0, eArgTypeFilename,
555 "Run the process in a shell (not supported on all platforms)."},
Greg Clayton32e0a752011-03-30 18:16:51 +0000556
Kate Stoneb9c1b512016-09-06 20:57:50 +0000557 {LLDB_OPT_SET_1, false, "stdin", 'i', OptionParser::eRequiredArgument,
558 nullptr, nullptr, 0, eArgTypeFilename,
559 "Redirect stdin for the process to <filename>."},
560 {LLDB_OPT_SET_1, false, "stdout", 'o', OptionParser::eRequiredArgument,
561 nullptr, nullptr, 0, eArgTypeFilename,
562 "Redirect stdout for the process to <filename>."},
563 {LLDB_OPT_SET_1, false, "stderr", 'e', OptionParser::eRequiredArgument,
564 nullptr, nullptr, 0, eArgTypeFilename,
565 "Redirect stderr for the process to <filename>."},
Todd Fiala7df337f2015-10-13 23:41:19 +0000566
Kate Stoneb9c1b512016-09-06 20:57:50 +0000567 {LLDB_OPT_SET_2, false, "tty", 't', OptionParser::eNoArgument, nullptr,
568 nullptr, 0, eArgTypeNone,
569 "Start the process in a terminal (not supported on all platforms)."},
Greg Clayton32e0a752011-03-30 18:16:51 +0000570
Kate Stoneb9c1b512016-09-06 20:57:50 +0000571 {LLDB_OPT_SET_3, false, "no-stdio", 'n', OptionParser::eNoArgument, nullptr,
572 nullptr, 0, eArgTypeNone,
573 "Do not set up for terminal I/O to go to running process."},
574 {LLDB_OPT_SET_4, false, "shell-expand-args", 'X',
575 OptionParser::eRequiredArgument, nullptr, nullptr, 0, eArgTypeBoolean,
576 "Set whether to shell expand arguments to the process when launching."},
Zachary Turner1f0f5b52016-09-22 20:22:55 +0000577};
578
579llvm::ArrayRef<OptionDefinition> ProcessLaunchCommandOptions::GetDefinitions() {
Zachary Turner70602432016-09-22 21:06:13 +0000580 return llvm::makeArrayRef(g_process_launch_options);
Zachary Turner1f0f5b52016-09-22 20:22:55 +0000581}
Greg Clayton32e0a752011-03-30 18:16:51 +0000582
Kate Stoneb9c1b512016-09-06 20:57:50 +0000583bool ProcessInstanceInfoMatch::NameMatches(const char *process_name) const {
584 if (m_name_match_type == eNameMatchIgnore || process_name == nullptr)
Greg Clayton32e0a752011-03-30 18:16:51 +0000585 return true;
Kate Stoneb9c1b512016-09-06 20:57:50 +0000586 const char *match_name = m_match_info.GetName();
587 if (!match_name)
Greg Clayton32e0a752011-03-30 18:16:51 +0000588 return true;
Kate Stoneb9c1b512016-09-06 20:57:50 +0000589
590 return lldb_private::NameMatches(process_name, m_name_match_type, match_name);
Greg Clayton32e0a752011-03-30 18:16:51 +0000591}
592
Kate Stoneb9c1b512016-09-06 20:57:50 +0000593bool ProcessInstanceInfoMatch::Matches(
594 const ProcessInstanceInfo &proc_info) const {
595 if (!NameMatches(proc_info.GetName()))
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000596 return false;
Kate Stoneb9c1b512016-09-06 20:57:50 +0000597
598 if (m_match_info.ProcessIDIsValid() &&
599 m_match_info.GetProcessID() != proc_info.GetProcessID())
600 return false;
601
602 if (m_match_info.ParentProcessIDIsValid() &&
603 m_match_info.GetParentProcessID() != proc_info.GetParentProcessID())
604 return false;
605
606 if (m_match_info.UserIDIsValid() &&
607 m_match_info.GetUserID() != proc_info.GetUserID())
608 return false;
609
610 if (m_match_info.GroupIDIsValid() &&
611 m_match_info.GetGroupID() != proc_info.GetGroupID())
612 return false;
613
614 if (m_match_info.EffectiveUserIDIsValid() &&
615 m_match_info.GetEffectiveUserID() != proc_info.GetEffectiveUserID())
616 return false;
617
618 if (m_match_info.EffectiveGroupIDIsValid() &&
619 m_match_info.GetEffectiveGroupID() != proc_info.GetEffectiveGroupID())
620 return false;
621
622 if (m_match_info.GetArchitecture().IsValid() &&
623 !m_match_info.GetArchitecture().IsCompatibleMatch(
624 proc_info.GetArchitecture()))
625 return false;
626 return true;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000627}
628
Kate Stoneb9c1b512016-09-06 20:57:50 +0000629bool ProcessInstanceInfoMatch::MatchAllProcesses() const {
630 if (m_name_match_type != eNameMatchIgnore)
631 return false;
632
633 if (m_match_info.ProcessIDIsValid())
634 return false;
635
636 if (m_match_info.ParentProcessIDIsValid())
637 return false;
638
639 if (m_match_info.UserIDIsValid())
640 return false;
641
642 if (m_match_info.GroupIDIsValid())
643 return false;
644
645 if (m_match_info.EffectiveUserIDIsValid())
646 return false;
647
648 if (m_match_info.EffectiveGroupIDIsValid())
649 return false;
650
651 if (m_match_info.GetArchitecture().IsValid())
652 return false;
653
654 if (m_match_all_users)
655 return false;
656
657 return true;
658}
659
660void ProcessInstanceInfoMatch::Clear() {
661 m_match_info.Clear();
662 m_name_match_type = eNameMatchIgnore;
663 m_match_all_users = false;
664}
665
Zachary Turner31659452016-11-17 21:15:14 +0000666ProcessSP Process::FindPlugin(lldb::TargetSP target_sp,
667 llvm::StringRef plugin_name,
Kate Stoneb9c1b512016-09-06 20:57:50 +0000668 ListenerSP listener_sp,
669 const FileSpec *crash_file_path) {
670 static uint32_t g_process_unique_id = 0;
671
672 ProcessSP process_sp;
673 ProcessCreateInstance create_callback = nullptr;
Zachary Turner31659452016-11-17 21:15:14 +0000674 if (!plugin_name.empty()) {
Kate Stoneb9c1b512016-09-06 20:57:50 +0000675 ConstString const_plugin_name(plugin_name);
676 create_callback =
677 PluginManager::GetProcessCreateCallbackForPluginName(const_plugin_name);
678 if (create_callback) {
679 process_sp = create_callback(target_sp, listener_sp, crash_file_path);
680 if (process_sp) {
681 if (process_sp->CanDebug(target_sp, true)) {
682 process_sp->m_process_unique_id = ++g_process_unique_id;
683 } else
684 process_sp.reset();
685 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000686 }
Kate Stoneb9c1b512016-09-06 20:57:50 +0000687 } else {
688 for (uint32_t idx = 0;
689 (create_callback =
690 PluginManager::GetProcessCreateCallbackAtIndex(idx)) != nullptr;
691 ++idx) {
692 process_sp = create_callback(target_sp, listener_sp, crash_file_path);
693 if (process_sp) {
694 if (process_sp->CanDebug(target_sp, false)) {
695 process_sp->m_process_unique_id = ++g_process_unique_id;
696 break;
697 } else
698 process_sp.reset();
699 }
700 }
701 }
702 return process_sp;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000703}
704
Kate Stoneb9c1b512016-09-06 20:57:50 +0000705ConstString &Process::GetStaticBroadcasterClass() {
706 static ConstString class_name("lldb.process");
707 return class_name;
708}
709
710Process::Process(lldb::TargetSP target_sp, ListenerSP listener_sp)
711 : Process(target_sp, listener_sp,
712 UnixSignals::Create(HostInfo::GetArchitecture())) {
713 // This constructor just delegates to the full Process constructor,
714 // defaulting to using the Host's UnixSignals.
715}
716
717Process::Process(lldb::TargetSP target_sp, ListenerSP listener_sp,
718 const UnixSignalsSP &unix_signals_sp)
719 : ProcessProperties(this), UserID(LLDB_INVALID_PROCESS_ID),
720 Broadcaster((target_sp->GetDebugger().GetBroadcasterManager()),
721 Process::GetStaticBroadcasterClass().AsCString()),
722 m_target_sp(target_sp), m_public_state(eStateUnloaded),
723 m_private_state(eStateUnloaded),
724 m_private_state_broadcaster(nullptr,
725 "lldb.process.internal_state_broadcaster"),
726 m_private_state_control_broadcaster(
727 nullptr, "lldb.process.internal_state_control_broadcaster"),
728 m_private_state_listener_sp(
729 Listener::MakeListener("lldb.process.internal_state_listener")),
730 m_mod_id(), m_process_unique_id(0), m_thread_index_id(0),
731 m_thread_id_to_index_id_map(), m_exit_status(-1), m_exit_string(),
732 m_exit_status_mutex(), m_thread_mutex(), m_thread_list_real(this),
733 m_thread_list(this), m_extended_thread_list(this),
734 m_extended_thread_stop_id(0), m_queue_list(this), m_queue_list_stop_id(0),
735 m_notifications(), m_image_tokens(), m_listener_sp(listener_sp),
736 m_breakpoint_site_list(), m_dynamic_checkers_ap(),
737 m_unix_signals_sp(unix_signals_sp), m_abi_sp(), m_process_input_reader(),
738 m_stdio_communication("process.stdio"), m_stdio_communication_mutex(),
739 m_stdin_forward(false), m_stdout_data(), m_stderr_data(),
740 m_profile_data_comm_mutex(), m_profile_data(), m_iohandler_sync(0),
741 m_memory_cache(*this), m_allocated_memory_cache(*this),
742 m_should_detach(false), m_next_event_action_ap(), m_public_run_lock(),
743 m_private_run_lock(), m_stop_info_override_callback(nullptr),
744 m_finalizing(false), m_finalize_called(false),
745 m_clear_thread_plans_on_stop(false), m_force_next_event_delivery(false),
746 m_last_broadcast_state(eStateInvalid), m_destroy_in_process(false),
747 m_can_interpret_function_calls(false), m_warnings_issued(),
748 m_run_thread_plan_lock(), m_can_jit(eCanJITDontKnow) {
749 CheckInWithManager();
750
751 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_OBJECT));
752 if (log)
753 log->Printf("%p Process::Process()", static_cast<void *>(this));
754
755 if (!m_unix_signals_sp)
756 m_unix_signals_sp = std::make_shared<UnixSignals>();
757
758 SetEventName(eBroadcastBitStateChanged, "state-changed");
759 SetEventName(eBroadcastBitInterrupt, "interrupt");
760 SetEventName(eBroadcastBitSTDOUT, "stdout-available");
761 SetEventName(eBroadcastBitSTDERR, "stderr-available");
762 SetEventName(eBroadcastBitProfileData, "profile-data-available");
763 SetEventName(eBroadcastBitStructuredData, "structured-data-available");
764
765 m_private_state_control_broadcaster.SetEventName(
766 eBroadcastInternalStateControlStop, "control-stop");
767 m_private_state_control_broadcaster.SetEventName(
768 eBroadcastInternalStateControlPause, "control-pause");
769 m_private_state_control_broadcaster.SetEventName(
770 eBroadcastInternalStateControlResume, "control-resume");
771
772 m_listener_sp->StartListeningForEvents(
773 this, eBroadcastBitStateChanged | eBroadcastBitInterrupt |
774 eBroadcastBitSTDOUT | eBroadcastBitSTDERR |
775 eBroadcastBitProfileData | eBroadcastBitStructuredData);
776
777 m_private_state_listener_sp->StartListeningForEvents(
778 &m_private_state_broadcaster,
779 eBroadcastBitStateChanged | eBroadcastBitInterrupt);
780
781 m_private_state_listener_sp->StartListeningForEvents(
782 &m_private_state_control_broadcaster,
783 eBroadcastInternalStateControlStop | eBroadcastInternalStateControlPause |
784 eBroadcastInternalStateControlResume);
785 // We need something valid here, even if just the default UnixSignalsSP.
786 assert(m_unix_signals_sp && "null m_unix_signals_sp after initialization");
787
788 // Allow the platform to override the default cache line size
789 OptionValueSP value_sp =
790 m_collection_sp
791 ->GetPropertyAtIndex(nullptr, true, ePropertyMemCacheLineSize)
792 ->GetValue();
793 uint32_t platform_cache_line_size =
794 target_sp->GetPlatform()->GetDefaultMemoryCacheLineSize();
795 if (!value_sp->OptionWasSet() && platform_cache_line_size != 0)
796 value_sp->SetUInt64Value(platform_cache_line_size);
797}
798
799Process::~Process() {
800 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_OBJECT));
801 if (log)
802 log->Printf("%p Process::~Process()", static_cast<void *>(this));
803 StopPrivateStateThread();
804
805 // ThreadList::Clear() will try to acquire this process's mutex, so
806 // explicitly clear the thread list here to ensure that the mutex
807 // is not destroyed before the thread list.
808 m_thread_list.Clear();
809}
810
811const ProcessPropertiesSP &Process::GetGlobalProperties() {
812 // NOTE: intentional leak so we don't crash if global destructor chain gets
813 // called as other threads still use the result of this function
Pavel Labath5f05ea82016-10-19 15:12:45 +0000814 static ProcessPropertiesSP *g_settings_sp_ptr =
815 new ProcessPropertiesSP(new ProcessProperties(nullptr));
Kate Stoneb9c1b512016-09-06 20:57:50 +0000816 return *g_settings_sp_ptr;
817}
818
819void Process::Finalize() {
820 m_finalizing = true;
821
822 // Destroy this process if needed
823 switch (GetPrivateState()) {
824 case eStateConnected:
825 case eStateAttaching:
826 case eStateLaunching:
827 case eStateStopped:
828 case eStateRunning:
829 case eStateStepping:
830 case eStateCrashed:
831 case eStateSuspended:
832 Destroy(false);
833 break;
834
835 case eStateInvalid:
836 case eStateUnloaded:
837 case eStateDetached:
838 case eStateExited:
839 break;
840 }
841
842 // Clear our broadcaster before we proceed with destroying
843 Broadcaster::Clear();
844
845 // Do any cleanup needed prior to being destructed... Subclasses
846 // that override this method should call this superclass method as well.
847
848 // We need to destroy the loader before the derived Process class gets
849 // destroyed
850 // since it is very likely that undoing the loader will require access to the
851 // real process.
852 m_dynamic_checkers_ap.reset();
853 m_abi_sp.reset();
854 m_os_ap.reset();
855 m_system_runtime_ap.reset();
856 m_dyld_ap.reset();
857 m_jit_loaders_ap.reset();
858 m_thread_list_real.Destroy();
859 m_thread_list.Destroy();
860 m_extended_thread_list.Destroy();
861 m_queue_list.Clear();
862 m_queue_list_stop_id = 0;
863 std::vector<Notifications> empty_notifications;
864 m_notifications.swap(empty_notifications);
865 m_image_tokens.clear();
866 m_memory_cache.Clear();
867 m_allocated_memory_cache.Clear();
868 m_language_runtimes.clear();
869 m_instrumentation_runtimes.clear();
870 m_next_event_action_ap.reset();
871 m_stop_info_override_callback = nullptr;
872 // Clear the last natural stop ID since it has a strong
873 // reference to this process
874 m_mod_id.SetStopEventForLastNaturalStopID(EventSP());
875 //#ifdef LLDB_CONFIGURATION_DEBUG
876 // StreamFile s(stdout, false);
877 // EventSP event_sp;
878 // while (m_private_state_listener_sp->GetNextEvent(event_sp))
879 // {
880 // event_sp->Dump (&s);
881 // s.EOL();
882 // }
883 //#endif
884 // We have to be very careful here as the m_private_state_listener might
885 // contain events that have ProcessSP values in them which can keep this
886 // process around forever. These events need to be cleared out.
887 m_private_state_listener_sp->Clear();
888 m_public_run_lock.TrySetRunning(); // This will do nothing if already locked
889 m_public_run_lock.SetStopped();
890 m_private_run_lock.TrySetRunning(); // This will do nothing if already locked
891 m_private_run_lock.SetStopped();
892 m_finalize_called = true;
893}
894
895void Process::RegisterNotificationCallbacks(const Notifications &callbacks) {
896 m_notifications.push_back(callbacks);
897 if (callbacks.initialize != nullptr)
898 callbacks.initialize(callbacks.baton, this);
899}
900
901bool Process::UnregisterNotificationCallbacks(const Notifications &callbacks) {
902 std::vector<Notifications>::iterator pos, end = m_notifications.end();
903 for (pos = m_notifications.begin(); pos != end; ++pos) {
904 if (pos->baton == callbacks.baton &&
905 pos->initialize == callbacks.initialize &&
906 pos->process_state_changed == callbacks.process_state_changed) {
907 m_notifications.erase(pos);
908 return true;
909 }
910 }
911 return false;
912}
913
914void Process::SynchronouslyNotifyStateChanged(StateType state) {
915 std::vector<Notifications>::iterator notification_pos,
916 notification_end = m_notifications.end();
917 for (notification_pos = m_notifications.begin();
918 notification_pos != notification_end; ++notification_pos) {
919 if (notification_pos->process_state_changed)
920 notification_pos->process_state_changed(notification_pos->baton, this,
921 state);
922 }
923}
924
925// FIXME: We need to do some work on events before the general Listener sees
926// them.
927// For instance if we are continuing from a breakpoint, we need to ensure that
928// we do
929// the little "insert real insn, step & stop" trick. But we can't do that when
930// the
931// event is delivered by the broadcaster - since that is done on the thread that
932// is
933// waiting for new events, so if we needed more than one event for our handling,
934// we would
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000935// stall. So instead we do it when we fetch the event off of the queue.
936//
937
Kate Stoneb9c1b512016-09-06 20:57:50 +0000938StateType Process::GetNextEvent(EventSP &event_sp) {
939 StateType state = eStateInvalid;
940
Pavel Labathd35031e12016-11-30 10:41:42 +0000941 if (m_listener_sp->GetEventForBroadcaster(this, event_sp,
942 std::chrono::seconds(0)) &&
943 event_sp)
Kate Stoneb9c1b512016-09-06 20:57:50 +0000944 state = Process::ProcessEventData::GetStateFromEvent(event_sp.get());
945
946 return state;
947}
948
949void Process::SyncIOHandler(uint32_t iohandler_id, uint64_t timeout_msec) {
950 // don't sync (potentially context switch) in case where there is no process
951 // IO
952 if (!m_process_input_reader)
953 return;
954
955 uint32_t new_iohandler_id = 0;
956 m_iohandler_sync.WaitForValueNotEqualTo(
957 iohandler_id, new_iohandler_id, std::chrono::milliseconds(timeout_msec));
958
959 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
960 if (log)
961 log->Printf("Process::%s waited for m_iohandler_sync to change from %u, "
962 "new value is %u",
963 __FUNCTION__, iohandler_id, new_iohandler_id);
964}
965
Pavel Labathe3e21cf2016-11-30 11:56:32 +0000966StateType Process::WaitForProcessToStop(const Timeout<std::micro> &timeout,
967 EventSP *event_sp_ptr, bool wait_always,
968 ListenerSP hijack_listener_sp,
969 Stream *stream, bool use_run_lock) {
Kate Stoneb9c1b512016-09-06 20:57:50 +0000970 // We can't just wait for a "stopped" event, because the stopped event may
971 // have restarted the target.
972 // We have to actually check each event, and in the case of a stopped event
973 // check the restarted flag
974 // on the event.
975 if (event_sp_ptr)
976 event_sp_ptr->reset();
977 StateType state = GetState();
978 // If we are exited or detached, we won't ever get back to any
979 // other valid state...
980 if (state == eStateDetached || state == eStateExited)
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000981 return state;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000982
Kate Stoneb9c1b512016-09-06 20:57:50 +0000983 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
984 if (log)
Pavel Labathe3e21cf2016-11-30 11:56:32 +0000985 log->Printf(
986 "Process::%s (timeout = %llu)", __FUNCTION__,
987 static_cast<unsigned long long>(timeout ? timeout->count() : -1));
Todd Fialaa3b89e22014-08-12 14:33:19 +0000988
Kate Stoneb9c1b512016-09-06 20:57:50 +0000989 if (!wait_always && StateIsStoppedState(state, true) &&
990 StateIsStoppedState(GetPrivateState(), true)) {
Pavel Labath44464872015-05-27 12:40:32 +0000991 if (log)
Kate Stoneb9c1b512016-09-06 20:57:50 +0000992 log->Printf("Process::%s returning without waiting for events; process "
993 "private and public states are already 'stopped'.",
994 __FUNCTION__);
995 // We need to toggle the run lock as this won't get done in
996 // SetPublicState() if the process is hijacked.
997 if (hijack_listener_sp && use_run_lock)
998 m_public_run_lock.SetStopped();
999 return state;
1000 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001001
Kate Stoneb9c1b512016-09-06 20:57:50 +00001002 while (state != eStateInvalid) {
1003 EventSP event_sp;
Pavel Labathe3e21cf2016-11-30 11:56:32 +00001004 state = GetStateChangedEvents(event_sp, timeout, hijack_listener_sp);
Kate Stoneb9c1b512016-09-06 20:57:50 +00001005 if (event_sp_ptr && event_sp)
1006 *event_sp_ptr = event_sp;
Jim Ingham4b536182011-08-09 02:12:22 +00001007
Kate Stoneb9c1b512016-09-06 20:57:50 +00001008 bool pop_process_io_handler = (hijack_listener_sp.get() != nullptr);
1009 Process::HandleProcessStateChangedEvent(event_sp, stream,
1010 pop_process_io_handler);
Daniel Malea9e9919f2013-10-09 16:56:28 +00001011
Kate Stoneb9c1b512016-09-06 20:57:50 +00001012 switch (state) {
1013 case eStateCrashed:
1014 case eStateDetached:
1015 case eStateExited:
1016 case eStateUnloaded:
1017 // We need to toggle the run lock as this won't get done in
1018 // SetPublicState() if the process is hijacked.
1019 if (hijack_listener_sp && use_run_lock)
1020 m_public_run_lock.SetStopped();
1021 return state;
1022 case eStateStopped:
1023 if (Process::ProcessEventData::GetRestartedFromEvent(event_sp.get()))
1024 continue;
1025 else {
Pavel Labath78521ef2015-03-06 10:52:47 +00001026 // We need to toggle the run lock as this won't get done in
1027 // SetPublicState() if the process is hijacked.
Jim Ingham583bbb12016-03-07 21:50:25 +00001028 if (hijack_listener_sp && use_run_lock)
Kate Stoneb9c1b512016-09-06 20:57:50 +00001029 m_public_run_lock.SetStopped();
1030 return state;
1031 }
1032 default:
1033 continue;
1034 }
1035 }
1036 return state;
1037}
1038
1039bool Process::HandleProcessStateChangedEvent(const EventSP &event_sp,
1040 Stream *stream,
1041 bool &pop_process_io_handler) {
1042 const bool handle_pop = pop_process_io_handler;
1043
1044 pop_process_io_handler = false;
1045 ProcessSP process_sp =
1046 Process::ProcessEventData::GetProcessFromEvent(event_sp.get());
1047
1048 if (!process_sp)
1049 return false;
1050
1051 StateType event_state =
1052 Process::ProcessEventData::GetStateFromEvent(event_sp.get());
1053 if (event_state == eStateInvalid)
1054 return false;
1055
1056 switch (event_state) {
1057 case eStateInvalid:
1058 case eStateUnloaded:
1059 case eStateAttaching:
1060 case eStateLaunching:
1061 case eStateStepping:
1062 case eStateDetached:
1063 if (stream)
1064 stream->Printf("Process %" PRIu64 " %s\n", process_sp->GetID(),
1065 StateAsCString(event_state));
1066 if (event_state == eStateDetached)
1067 pop_process_io_handler = true;
1068 break;
1069
1070 case eStateConnected:
1071 case eStateRunning:
1072 // Don't be chatty when we run...
1073 break;
1074
1075 case eStateExited:
1076 if (stream)
1077 process_sp->GetStatus(*stream);
1078 pop_process_io_handler = true;
1079 break;
1080
1081 case eStateStopped:
1082 case eStateCrashed:
1083 case eStateSuspended:
1084 // Make sure the program hasn't been auto-restarted:
1085 if (Process::ProcessEventData::GetRestartedFromEvent(event_sp.get())) {
1086 if (stream) {
1087 size_t num_reasons =
1088 Process::ProcessEventData::GetNumRestartedReasons(event_sp.get());
1089 if (num_reasons > 0) {
1090 // FIXME: Do we want to report this, or would that just be annoyingly
1091 // chatty?
1092 if (num_reasons == 1) {
1093 const char *reason =
1094 Process::ProcessEventData::GetRestartedReasonAtIndex(
1095 event_sp.get(), 0);
1096 stream->Printf("Process %" PRIu64 " stopped and restarted: %s\n",
1097 process_sp->GetID(),
1098 reason ? reason : "<UNKNOWN REASON>");
1099 } else {
1100 stream->Printf("Process %" PRIu64
1101 " stopped and restarted, reasons:\n",
1102 process_sp->GetID());
1103
1104 for (size_t i = 0; i < num_reasons; i++) {
1105 const char *reason =
1106 Process::ProcessEventData::GetRestartedReasonAtIndex(
1107 event_sp.get(), i);
1108 stream->Printf("\t%s\n", reason ? reason : "<UNKNOWN REASON>");
1109 }
1110 }
1111 }
1112 }
1113 } else {
1114 StopInfoSP curr_thread_stop_info_sp;
1115 // Lock the thread list so it doesn't change on us, this is the scope for
1116 // the locker:
1117 {
1118 ThreadList &thread_list = process_sp->GetThreadList();
1119 std::lock_guard<std::recursive_mutex> guard(thread_list.GetMutex());
1120
1121 ThreadSP curr_thread(thread_list.GetSelectedThread());
1122 ThreadSP thread;
1123 StopReason curr_thread_stop_reason = eStopReasonInvalid;
1124 if (curr_thread) {
1125 curr_thread_stop_reason = curr_thread->GetStopReason();
1126 curr_thread_stop_info_sp = curr_thread->GetStopInfo();
1127 }
1128 if (!curr_thread || !curr_thread->IsValid() ||
1129 curr_thread_stop_reason == eStopReasonInvalid ||
1130 curr_thread_stop_reason == eStopReasonNone) {
1131 // Prefer a thread that has just completed its plan over another
1132 // thread as current thread.
1133 ThreadSP plan_thread;
1134 ThreadSP other_thread;
1135
1136 const size_t num_threads = thread_list.GetSize();
1137 size_t i;
1138 for (i = 0; i < num_threads; ++i) {
1139 thread = thread_list.GetThreadAtIndex(i);
1140 StopReason thread_stop_reason = thread->GetStopReason();
1141 switch (thread_stop_reason) {
1142 case eStopReasonInvalid:
1143 case eStopReasonNone:
1144 break;
1145
1146 case eStopReasonSignal: {
1147 // Don't select a signal thread if we weren't going to stop at
1148 // that
1149 // signal. We have to have had another reason for stopping here,
1150 // and
1151 // the user doesn't want to see this thread.
1152 uint64_t signo = thread->GetStopInfo()->GetValue();
1153 if (process_sp->GetUnixSignals()->GetShouldStop(signo)) {
1154 if (!other_thread)
1155 other_thread = thread;
1156 }
1157 break;
1158 }
1159 case eStopReasonTrace:
1160 case eStopReasonBreakpoint:
1161 case eStopReasonWatchpoint:
1162 case eStopReasonException:
1163 case eStopReasonExec:
1164 case eStopReasonThreadExiting:
1165 case eStopReasonInstrumentation:
1166 if (!other_thread)
1167 other_thread = thread;
1168 break;
1169 case eStopReasonPlanComplete:
1170 if (!plan_thread)
1171 plan_thread = thread;
1172 break;
1173 }
1174 }
1175 if (plan_thread)
1176 thread_list.SetSelectedThreadByID(plan_thread->GetID());
1177 else if (other_thread)
1178 thread_list.SetSelectedThreadByID(other_thread->GetID());
1179 else {
1180 if (curr_thread && curr_thread->IsValid())
1181 thread = curr_thread;
1182 else
1183 thread = thread_list.GetThreadAtIndex(0);
1184
1185 if (thread)
1186 thread_list.SetSelectedThreadByID(thread->GetID());
1187 }
1188 }
1189 }
1190 // Drop the ThreadList mutex by here, since GetThreadStatus below might
1191 // have to run code,
1192 // e.g. for Data formatters, and if we hold the ThreadList mutex, then the
1193 // process is going to
1194 // have a hard time restarting the process.
1195 if (stream) {
1196 Debugger &debugger = process_sp->GetTarget().GetDebugger();
1197 if (debugger.GetTargetList().GetSelectedTarget().get() ==
1198 &process_sp->GetTarget()) {
1199 const bool only_threads_with_stop_reason = true;
1200 const uint32_t start_frame = 0;
1201 const uint32_t num_frames = 1;
1202 const uint32_t num_frames_with_source = 1;
Jim Ingham6a9767c2016-11-08 20:36:40 +00001203 const bool stop_format = true;
Kate Stoneb9c1b512016-09-06 20:57:50 +00001204 process_sp->GetStatus(*stream);
1205 process_sp->GetThreadStatus(*stream, only_threads_with_stop_reason,
1206 start_frame, num_frames,
Jim Ingham6a9767c2016-11-08 20:36:40 +00001207 num_frames_with_source,
1208 stop_format);
Kate Stoneb9c1b512016-09-06 20:57:50 +00001209 if (curr_thread_stop_info_sp) {
1210 lldb::addr_t crashing_address;
1211 ValueObjectSP valobj_sp = StopInfo::GetCrashingDereference(
1212 curr_thread_stop_info_sp, &crashing_address);
1213 if (valobj_sp) {
1214 const bool qualify_cxx_base_classes = false;
1215
1216 const ValueObject::GetExpressionPathFormat format =
1217 ValueObject::GetExpressionPathFormat::
1218 eGetExpressionPathFormatHonorPointers;
1219 stream->PutCString("Likely cause: ");
1220 valobj_sp->GetExpressionPath(*stream, qualify_cxx_base_classes,
1221 format);
1222 stream->Printf(" accessed 0x%" PRIx64 "\n", crashing_address);
1223 }
1224 }
1225 } else {
1226 uint32_t target_idx = debugger.GetTargetList().GetIndexOfTarget(
1227 process_sp->GetTarget().shared_from_this());
1228 if (target_idx != UINT32_MAX)
1229 stream->Printf("Target %d: (", target_idx);
1230 else
1231 stream->Printf("Target <unknown index>: (");
1232 process_sp->GetTarget().Dump(stream, eDescriptionLevelBrief);
1233 stream->Printf(") stopped.\n");
1234 }
1235 }
1236
1237 // Pop the process IO handler
1238 pop_process_io_handler = true;
1239 }
1240 break;
1241 }
1242
1243 if (handle_pop && pop_process_io_handler)
1244 process_sp->PopProcessIOHandler();
1245
1246 return true;
1247}
1248
Kate Stoneb9c1b512016-09-06 20:57:50 +00001249bool Process::HijackProcessEvents(ListenerSP listener_sp) {
1250 if (listener_sp) {
1251 return HijackBroadcaster(listener_sp, eBroadcastBitStateChanged |
1252 eBroadcastBitInterrupt);
1253 } else
1254 return false;
1255}
Greg Claytondc6224e2014-10-21 01:00:42 +00001256
Kate Stoneb9c1b512016-09-06 20:57:50 +00001257void Process::RestoreProcessEvents() { RestoreBroadcaster(); }
Greg Claytondc6224e2014-10-21 01:00:42 +00001258
Pavel Labathe3e21cf2016-11-30 11:56:32 +00001259StateType Process::GetStateChangedEvents(EventSP &event_sp,
1260 const Timeout<std::micro> &timeout,
1261 ListenerSP hijack_listener_sp) {
Kate Stoneb9c1b512016-09-06 20:57:50 +00001262 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
Greg Claytondc6224e2014-10-21 01:00:42 +00001263
Kate Stoneb9c1b512016-09-06 20:57:50 +00001264 if (log)
Pavel Labathe3e21cf2016-11-30 11:56:32 +00001265 log->Printf(
1266 "Process::%s (timeout = %llu, event_sp)...", __FUNCTION__,
1267 static_cast<unsigned long long>(timeout ? timeout->count() : -1));
Greg Claytondc6224e2014-10-21 01:00:42 +00001268
Kate Stoneb9c1b512016-09-06 20:57:50 +00001269 ListenerSP listener_sp = hijack_listener_sp;
1270 if (!listener_sp)
1271 listener_sp = m_listener_sp;
Greg Claytondc6224e2014-10-21 01:00:42 +00001272
Kate Stoneb9c1b512016-09-06 20:57:50 +00001273 StateType state = eStateInvalid;
Pavel Labathd35031e12016-11-30 10:41:42 +00001274 if (listener_sp->GetEventForBroadcasterWithType(
1275 this, eBroadcastBitStateChanged | eBroadcastBitInterrupt, event_sp,
Pavel Labathe3e21cf2016-11-30 11:56:32 +00001276 timeout)) {
Kate Stoneb9c1b512016-09-06 20:57:50 +00001277 if (event_sp && event_sp->GetType() == eBroadcastBitStateChanged)
1278 state = Process::ProcessEventData::GetStateFromEvent(event_sp.get());
1279 else if (log)
1280 log->Printf("Process::%s got no event or was interrupted.", __FUNCTION__);
1281 }
Greg Claytondc6224e2014-10-21 01:00:42 +00001282
Kate Stoneb9c1b512016-09-06 20:57:50 +00001283 if (log)
Pavel Labathe3e21cf2016-11-30 11:56:32 +00001284 log->Printf(
1285 "Process::%s (timeout = %llu, event_sp) => %s", __FUNCTION__,
1286 static_cast<unsigned long long>(timeout ? timeout->count() : -1),
1287 StateAsCString(state));
Kate Stoneb9c1b512016-09-06 20:57:50 +00001288 return state;
1289}
Greg Claytondc6224e2014-10-21 01:00:42 +00001290
Kate Stoneb9c1b512016-09-06 20:57:50 +00001291Event *Process::PeekAtStateChangedEvents() {
1292 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
Greg Claytondc6224e2014-10-21 01:00:42 +00001293
Kate Stoneb9c1b512016-09-06 20:57:50 +00001294 if (log)
1295 log->Printf("Process::%s...", __FUNCTION__);
Greg Claytondc6224e2014-10-21 01:00:42 +00001296
Kate Stoneb9c1b512016-09-06 20:57:50 +00001297 Event *event_ptr;
1298 event_ptr = m_listener_sp->PeekAtNextEventForBroadcasterWithType(
1299 this, eBroadcastBitStateChanged);
1300 if (log) {
1301 if (event_ptr) {
1302 log->Printf(
1303 "Process::%s (event_ptr) => %s", __FUNCTION__,
1304 StateAsCString(ProcessEventData::GetStateFromEvent(event_ptr)));
1305 } else {
1306 log->Printf("Process::%s no events found", __FUNCTION__);
Greg Claytondc6224e2014-10-21 01:00:42 +00001307 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00001308 }
1309 return event_ptr;
1310}
Greg Claytondc6224e2014-10-21 01:00:42 +00001311
Pavel Labathe3e21cf2016-11-30 11:56:32 +00001312StateType
1313Process::GetStateChangedEventsPrivate(EventSP &event_sp,
1314 const Timeout<std::micro> &timeout) {
Kate Stoneb9c1b512016-09-06 20:57:50 +00001315 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
Greg Claytondc6224e2014-10-21 01:00:42 +00001316
Kate Stoneb9c1b512016-09-06 20:57:50 +00001317 if (log)
Pavel Labathe3e21cf2016-11-30 11:56:32 +00001318 log->Printf(
1319 "Process::%s (timeout = %llu, event_sp)...", __FUNCTION__,
1320 static_cast<unsigned long long>(timeout ? timeout->count() : -1));
Kate Stoneb9c1b512016-09-06 20:57:50 +00001321
1322 StateType state = eStateInvalid;
Pavel Labathd35031e12016-11-30 10:41:42 +00001323 if (m_private_state_listener_sp->GetEventForBroadcasterWithType(
1324 &m_private_state_broadcaster,
1325 eBroadcastBitStateChanged | eBroadcastBitInterrupt, event_sp,
Pavel Labathe3e21cf2016-11-30 11:56:32 +00001326 timeout))
Kate Stoneb9c1b512016-09-06 20:57:50 +00001327 if (event_sp && event_sp->GetType() == eBroadcastBitStateChanged)
1328 state = Process::ProcessEventData::GetStateFromEvent(event_sp.get());
1329
1330 // This is a bit of a hack, but when we wait here we could very well return
1331 // to the command-line, and that could disable the log, which would render the
1332 // log we got above invalid.
1333 if (log)
Pavel Labathe3e21cf2016-11-30 11:56:32 +00001334 log->Printf(
1335 "Process::%s (timeout = %llu, event_sp) => %s", __FUNCTION__,
1336 static_cast<unsigned long long>(timeout ? timeout->count() : -1),
1337 state == eStateInvalid ? "TIMEOUT" : StateAsCString(state));
Kate Stoneb9c1b512016-09-06 20:57:50 +00001338 return state;
1339}
1340
Pavel Labathe3e21cf2016-11-30 11:56:32 +00001341bool Process::GetEventsPrivate(EventSP &event_sp,
1342 const Timeout<std::micro> &timeout,
1343 bool control_only) {
Kate Stoneb9c1b512016-09-06 20:57:50 +00001344 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
1345
1346 if (log)
Pavel Labathe3e21cf2016-11-30 11:56:32 +00001347 log->Printf(
1348 "Process::%s (timeout = %llu, event_sp)...", __FUNCTION__,
1349 static_cast<unsigned long long>(timeout ? timeout->count() : -1));
Kate Stoneb9c1b512016-09-06 20:57:50 +00001350
1351 if (control_only)
Pavel Labathd35031e12016-11-30 10:41:42 +00001352 return m_private_state_listener_sp->GetEventForBroadcaster(
Pavel Labathe3e21cf2016-11-30 11:56:32 +00001353 &m_private_state_control_broadcaster, event_sp, timeout);
Kate Stoneb9c1b512016-09-06 20:57:50 +00001354 else
Pavel Labathe3e21cf2016-11-30 11:56:32 +00001355 return m_private_state_listener_sp->GetEvent(event_sp, timeout);
Kate Stoneb9c1b512016-09-06 20:57:50 +00001356}
1357
1358bool Process::IsRunning() const {
1359 return StateIsRunningState(m_public_state.GetValue());
1360}
1361
1362int Process::GetExitStatus() {
1363 std::lock_guard<std::mutex> guard(m_exit_status_mutex);
1364
1365 if (m_public_state.GetValue() == eStateExited)
1366 return m_exit_status;
1367 return -1;
1368}
1369
1370const char *Process::GetExitDescription() {
1371 std::lock_guard<std::mutex> guard(m_exit_status_mutex);
1372
1373 if (m_public_state.GetValue() == eStateExited && !m_exit_string.empty())
1374 return m_exit_string.c_str();
1375 return nullptr;
1376}
1377
1378bool Process::SetExitStatus(int status, const char *cstr) {
1379 // Use a mutex to protect setting the exit status.
1380 std::lock_guard<std::mutex> guard(m_exit_status_mutex);
1381
1382 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_STATE |
1383 LIBLLDB_LOG_PROCESS));
1384 if (log)
1385 log->Printf(
1386 "Process::SetExitStatus (status=%i (0x%8.8x), description=%s%s%s)",
1387 status, status, cstr ? "\"" : "", cstr ? cstr : "NULL",
1388 cstr ? "\"" : "");
1389
1390 // We were already in the exited state
1391 if (m_private_state.GetValue() == eStateExited) {
1392 if (log)
1393 log->Printf("Process::SetExitStatus () ignoring exit status because "
1394 "state was already set to eStateExited");
1395 return false;
1396 }
1397
1398 m_exit_status = status;
1399 if (cstr)
1400 m_exit_string = cstr;
1401 else
1402 m_exit_string.clear();
1403
1404 // Clear the last natural stop ID since it has a strong
1405 // reference to this process
1406 m_mod_id.SetStopEventForLastNaturalStopID(EventSP());
1407
1408 SetPrivateState(eStateExited);
1409
1410 // Allow subclasses to do some cleanup
1411 DidExit();
1412
1413 return true;
1414}
1415
1416bool Process::IsAlive() {
1417 switch (m_private_state.GetValue()) {
1418 case eStateConnected:
1419 case eStateAttaching:
1420 case eStateLaunching:
1421 case eStateStopped:
1422 case eStateRunning:
1423 case eStateStepping:
1424 case eStateCrashed:
1425 case eStateSuspended:
Greg Claytondc6224e2014-10-21 01:00:42 +00001426 return true;
Kate Stoneb9c1b512016-09-06 20:57:50 +00001427 default:
1428 return false;
1429 }
Jason Molendaa814f702015-11-05 23:03:44 +00001430}
1431
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001432// This static callback can be used to watch for local child processes on
Bruce Mitchenerd93c4a32014-07-01 21:22:11 +00001433// the current host. The child process exits, the process will be
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001434// found in the global target list (we want to be completely sure that the
1435// lldb_private::Process doesn't go away before we can deliver the signal.
Kate Stoneb9c1b512016-09-06 20:57:50 +00001436bool Process::SetProcessExitStatus(
1437 lldb::pid_t pid, bool exited,
1438 int signo, // Zero for no signal
1439 int exit_status // Exit value of process if signal is zero
1440 ) {
1441 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS));
1442 if (log)
1443 log->Printf("Process::SetProcessExitStatus (pid=%" PRIu64
1444 ", exited=%i, signal=%i, exit_status=%i)\n",
1445 pid, exited, signo, exit_status);
1446
1447 if (exited) {
1448 TargetSP target_sp(Debugger::FindTargetWithProcessID(pid));
1449 if (target_sp) {
1450 ProcessSP process_sp(target_sp->GetProcessSP());
1451 if (process_sp) {
1452 const char *signal_cstr = nullptr;
1453 if (signo)
1454 signal_cstr = process_sp->GetUnixSignals()->GetSignalAsCString(signo);
1455
1456 process_sp->SetExitStatus(exit_status, signal_cstr);
1457 }
1458 }
1459 return true;
1460 }
1461 return false;
1462}
1463
1464void Process::UpdateThreadListIfNeeded() {
1465 const uint32_t stop_id = GetStopID();
1466 if (m_thread_list.GetSize(false) == 0 ||
1467 stop_id != m_thread_list.GetStopID()) {
1468 const StateType state = GetPrivateState();
1469 if (StateIsStoppedState(state, true)) {
1470 std::lock_guard<std::recursive_mutex> guard(m_thread_list.GetMutex());
1471 // m_thread_list does have its own mutex, but we need to
1472 // hold onto the mutex between the call to UpdateThreadList(...)
1473 // and the os->UpdateThreadList(...) so it doesn't change on us
1474 ThreadList &old_thread_list = m_thread_list;
1475 ThreadList real_thread_list(this);
1476 ThreadList new_thread_list(this);
1477 // Always update the thread list with the protocol specific
1478 // thread list, but only update if "true" is returned
1479 if (UpdateThreadList(m_thread_list_real, real_thread_list)) {
1480 // Don't call into the OperatingSystem to update the thread list if we
1481 // are shutting down, since
1482 // that may call back into the SBAPI's, requiring the API lock which is
1483 // already held by whoever is
1484 // shutting us down, causing a deadlock.
1485 OperatingSystem *os = GetOperatingSystem();
1486 if (os && !m_destroy_in_process) {
1487 // Clear any old backing threads where memory threads might have been
1488 // backed by actual threads from the lldb_private::Process subclass
1489 size_t num_old_threads = old_thread_list.GetSize(false);
1490 for (size_t i = 0; i < num_old_threads; ++i)
1491 old_thread_list.GetThreadAtIndex(i, false)->ClearBackingThread();
1492
1493 // Turn off dynamic types to ensure we don't run any expressions.
1494 // Objective C
1495 // can run an expression to determine if a SBValue is a dynamic type
1496 // or not
1497 // and we need to avoid this. OperatingSystem plug-ins can't run
1498 // expressions
1499 // that require running code...
1500
1501 Target &target = GetTarget();
1502 const lldb::DynamicValueType saved_prefer_dynamic =
1503 target.GetPreferDynamicValue();
1504 if (saved_prefer_dynamic != lldb::eNoDynamicValues)
1505 target.SetPreferDynamicValue(lldb::eNoDynamicValues);
1506
1507 // Now let the OperatingSystem plug-in update the thread list
1508
1509 os->UpdateThreadList(
1510 old_thread_list, // Old list full of threads created by OS plug-in
1511 real_thread_list, // The actual thread list full of threads
1512 // created by each lldb_private::Process
1513 // subclass
1514 new_thread_list); // The new thread list that we will show to the
1515 // user that gets filled in
1516
1517 if (saved_prefer_dynamic != lldb::eNoDynamicValues)
1518 target.SetPreferDynamicValue(saved_prefer_dynamic);
1519 } else {
1520 // No OS plug-in, the new thread list is the same as the real thread
1521 // list
1522 new_thread_list = real_thread_list;
1523 }
1524
1525 m_thread_list_real.Update(real_thread_list);
1526 m_thread_list.Update(new_thread_list);
1527 m_thread_list.SetStopID(stop_id);
1528
1529 if (GetLastNaturalStopID() != m_extended_thread_stop_id) {
1530 // Clear any extended threads that we may have accumulated previously
1531 m_extended_thread_list.Clear();
1532 m_extended_thread_stop_id = GetLastNaturalStopID();
1533
1534 m_queue_list.Clear();
1535 m_queue_list_stop_id = GetLastNaturalStopID();
1536 }
1537 }
1538 }
1539 }
1540}
1541
1542void Process::UpdateQueueListIfNeeded() {
1543 if (m_system_runtime_ap) {
1544 if (m_queue_list.GetSize() == 0 ||
1545 m_queue_list_stop_id != GetLastNaturalStopID()) {
1546 const StateType state = GetPrivateState();
1547 if (StateIsStoppedState(state, true)) {
1548 m_system_runtime_ap->PopulateQueueList(m_queue_list);
1549 m_queue_list_stop_id = GetLastNaturalStopID();
1550 }
1551 }
1552 }
1553}
1554
1555ThreadSP Process::CreateOSPluginThread(lldb::tid_t tid, lldb::addr_t context) {
1556 OperatingSystem *os = GetOperatingSystem();
1557 if (os)
1558 return os->CreateThread(tid, context);
1559 return ThreadSP();
1560}
1561
1562uint32_t Process::GetNextThreadIndexID(uint64_t thread_id) {
1563 return AssignIndexIDToThread(thread_id);
1564}
1565
1566bool Process::HasAssignedIndexIDToThread(uint64_t thread_id) {
1567 return (m_thread_id_to_index_id_map.find(thread_id) !=
1568 m_thread_id_to_index_id_map.end());
1569}
1570
1571uint32_t Process::AssignIndexIDToThread(uint64_t thread_id) {
1572 uint32_t result = 0;
1573 std::map<uint64_t, uint32_t>::iterator iterator =
1574 m_thread_id_to_index_id_map.find(thread_id);
1575 if (iterator == m_thread_id_to_index_id_map.end()) {
1576 result = ++m_thread_index_id;
1577 m_thread_id_to_index_id_map[thread_id] = result;
1578 } else {
1579 result = iterator->second;
1580 }
1581
1582 return result;
1583}
1584
1585StateType Process::GetState() {
1586 // If any other threads access this we will need a mutex for it
1587 return m_public_state.GetValue();
1588}
1589
1590bool Process::StateChangedIsExternallyHijacked() {
1591 if (IsHijackedForEvent(eBroadcastBitStateChanged)) {
1592 const char *hijacking_name = GetHijackingListenerName();
1593 if (hijacking_name &&
1594 strcmp(hijacking_name, "lldb.Process.ResumeSynchronous.hijack"))
1595 return true;
1596 }
1597 return false;
1598}
1599
1600void Process::SetPublicState(StateType new_state, bool restarted) {
1601 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_STATE |
1602 LIBLLDB_LOG_PROCESS));
1603 if (log)
1604 log->Printf("Process::SetPublicState (state = %s, restarted = %i)",
1605 StateAsCString(new_state), restarted);
1606 const StateType old_state = m_public_state.GetValue();
1607 m_public_state.SetValue(new_state);
1608
1609 // On the transition from Run to Stopped, we unlock the writer end of the
1610 // run lock. The lock gets locked in Resume, which is the public API
1611 // to tell the program to run.
1612 if (!StateChangedIsExternallyHijacked()) {
1613 if (new_state == eStateDetached) {
1614 if (log)
1615 log->Printf(
1616 "Process::SetPublicState (%s) -- unlocking run lock for detach",
1617 StateAsCString(new_state));
1618 m_public_run_lock.SetStopped();
1619 } else {
1620 const bool old_state_is_stopped = StateIsStoppedState(old_state, false);
1621 const bool new_state_is_stopped = StateIsStoppedState(new_state, false);
1622 if ((old_state_is_stopped != new_state_is_stopped)) {
1623 if (new_state_is_stopped && !restarted) {
1624 if (log)
1625 log->Printf("Process::SetPublicState (%s) -- unlocking run lock",
1626 StateAsCString(new_state));
1627 m_public_run_lock.SetStopped();
1628 }
1629 }
1630 }
1631 }
1632}
1633
1634Error Process::Resume() {
1635 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_STATE |
1636 LIBLLDB_LOG_PROCESS));
1637 if (log)
1638 log->Printf("Process::Resume -- locking run lock");
1639 if (!m_public_run_lock.TrySetRunning()) {
1640 Error error("Resume request failed - process still running.");
Greg Claytone4e45922011-11-16 05:37:56 +00001641 if (log)
Kate Stoneb9c1b512016-09-06 20:57:50 +00001642 log->Printf("Process::Resume: -- TrySetRunning failed, not resuming.");
Greg Claytondc6224e2014-10-21 01:00:42 +00001643 return error;
Kate Stoneb9c1b512016-09-06 20:57:50 +00001644 }
1645 return PrivateResume();
Greg Claytondc6224e2014-10-21 01:00:42 +00001646}
1647
Kate Stoneb9c1b512016-09-06 20:57:50 +00001648Error Process::ResumeSynchronous(Stream *stream) {
1649 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_STATE |
1650 LIBLLDB_LOG_PROCESS));
1651 if (log)
1652 log->Printf("Process::ResumeSynchronous -- locking run lock");
1653 if (!m_public_run_lock.TrySetRunning()) {
1654 Error error("Resume request failed - process still running.");
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001655 if (log)
Kate Stoneb9c1b512016-09-06 20:57:50 +00001656 log->Printf("Process::Resume: -- TrySetRunning failed, not resuming.");
1657 return error;
1658 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001659
Kate Stoneb9c1b512016-09-06 20:57:50 +00001660 ListenerSP listener_sp(
1661 Listener::MakeListener("lldb.Process.ResumeSynchronous.hijack"));
1662 HijackProcessEvents(listener_sp);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001663
Kate Stoneb9c1b512016-09-06 20:57:50 +00001664 Error error = PrivateResume();
1665 if (error.Success()) {
Pavel Labathe3e21cf2016-11-30 11:56:32 +00001666 StateType state =
1667 WaitForProcessToStop(llvm::None, NULL, true, listener_sp, stream);
Kate Stoneb9c1b512016-09-06 20:57:50 +00001668 const bool must_be_alive =
1669 false; // eStateExited is ok, so this must be false
1670 if (!StateIsStoppedState(state, must_be_alive))
1671 error.SetErrorStringWithFormat(
1672 "process not in stopped state after synchronous resume: %s",
1673 StateAsCString(state));
1674 }
Ed Mastec29693f2013-07-02 16:35:47 +00001675
Kate Stoneb9c1b512016-09-06 20:57:50 +00001676 // Undo the hijacking of process events...
1677 RestoreProcessEvents();
Andrew Kaylor93132f52013-05-28 23:04:25 +00001678
Kate Stoneb9c1b512016-09-06 20:57:50 +00001679 return error;
1680}
Andrew Kaylor29d65742013-05-10 17:19:04 +00001681
Kate Stoneb9c1b512016-09-06 20:57:50 +00001682StateType Process::GetPrivateState() { return m_private_state.GetValue(); }
Ilia K38810f42015-05-20 10:15:47 +00001683
Kate Stoneb9c1b512016-09-06 20:57:50 +00001684void Process::SetPrivateState(StateType new_state) {
1685 if (m_finalize_called)
1686 return;
1687
1688 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_STATE |
1689 LIBLLDB_LOG_PROCESS));
1690 bool state_changed = false;
1691
1692 if (log)
1693 log->Printf("Process::SetPrivateState (%s)", StateAsCString(new_state));
1694
1695 std::lock_guard<std::recursive_mutex> thread_guard(m_thread_list.GetMutex());
1696 std::lock_guard<std::recursive_mutex> guard(m_private_state.GetMutex());
1697
1698 const StateType old_state = m_private_state.GetValueNoLock();
1699 state_changed = old_state != new_state;
1700
1701 const bool old_state_is_stopped = StateIsStoppedState(old_state, false);
1702 const bool new_state_is_stopped = StateIsStoppedState(new_state, false);
1703 if (old_state_is_stopped != new_state_is_stopped) {
1704 if (new_state_is_stopped)
1705 m_private_run_lock.SetStopped();
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001706 else
Kate Stoneb9c1b512016-09-06 20:57:50 +00001707 m_private_run_lock.SetRunning();
1708 }
1709
1710 if (state_changed) {
1711 m_private_state.SetValueNoLock(new_state);
1712 EventSP event_sp(
1713 new Event(eBroadcastBitStateChanged,
1714 new ProcessEventData(shared_from_this(), new_state)));
1715 if (StateIsStoppedState(new_state, false)) {
1716 // Note, this currently assumes that all threads in the list
1717 // stop when the process stops. In the future we will want to
1718 // support a debugging model where some threads continue to run
1719 // while others are stopped. When that happens we will either need
1720 // a way for the thread list to identify which threads are stopping
1721 // or create a special thread list containing only threads which
1722 // actually stopped.
1723 //
1724 // The process plugin is responsible for managing the actual
1725 // behavior of the threads and should have stopped any threads
1726 // that are going to stop before we get here.
1727 m_thread_list.DidStop();
1728
1729 m_mod_id.BumpStopID();
1730 if (!m_mod_id.IsLastResumeForUserExpression())
1731 m_mod_id.SetStopEventForLastNaturalStopID(event_sp);
1732 m_memory_cache.Clear();
1733 if (log)
1734 log->Printf("Process::SetPrivateState (%s) stop_id = %u",
1735 StateAsCString(new_state), m_mod_id.GetStopID());
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001736 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001737
Kate Stoneb9c1b512016-09-06 20:57:50 +00001738 // Use our target to get a shared pointer to ourselves...
1739 if (m_finalize_called && !PrivateStateThreadIsValid())
1740 BroadcastEvent(event_sp);
Jim Ingham22777012010-09-23 02:01:19 +00001741 else
Kate Stoneb9c1b512016-09-06 20:57:50 +00001742 m_private_state_broadcaster.BroadcastEvent(event_sp);
1743 } else {
1744 if (log)
1745 log->Printf(
1746 "Process::SetPrivateState (%s) state didn't change. Ignoring...",
1747 StateAsCString(new_state));
1748 }
Jim Ingham22777012010-09-23 02:01:19 +00001749}
1750
Kate Stoneb9c1b512016-09-06 20:57:50 +00001751void Process::SetRunningUserExpression(bool on) {
1752 m_mod_id.SetRunningUserExpression(on);
1753}
1754
1755addr_t Process::GetImageInfoAddress() { return LLDB_INVALID_ADDRESS; }
1756
1757const lldb::ABISP &Process::GetABI() {
1758 if (!m_abi_sp)
1759 m_abi_sp = ABI::FindPlugin(GetTarget().GetArchitecture());
1760 return m_abi_sp;
1761}
1762
1763LanguageRuntime *Process::GetLanguageRuntime(lldb::LanguageType language,
1764 bool retry_if_null) {
1765 if (m_finalizing)
Eugene Zelenkoda8cf8a2016-03-01 00:55:51 +00001766 return nullptr;
Kate Stoneb9c1b512016-09-06 20:57:50 +00001767
1768 LanguageRuntimeCollection::iterator pos;
1769 pos = m_language_runtimes.find(language);
1770 if (pos == m_language_runtimes.end() || (retry_if_null && !(*pos).second)) {
1771 lldb::LanguageRuntimeSP runtime_sp(
1772 LanguageRuntime::FindPlugin(this, language));
1773
1774 m_language_runtimes[language] = runtime_sp;
1775 return runtime_sp.get();
1776 } else
1777 return (*pos).second.get();
Jim Ingham22777012010-09-23 02:01:19 +00001778}
1779
Kate Stoneb9c1b512016-09-06 20:57:50 +00001780CPPLanguageRuntime *Process::GetCPPLanguageRuntime(bool retry_if_null) {
1781 LanguageRuntime *runtime =
1782 GetLanguageRuntime(eLanguageTypeC_plus_plus, retry_if_null);
1783 if (runtime != nullptr &&
1784 runtime->GetLanguageType() == eLanguageTypeC_plus_plus)
1785 return static_cast<CPPLanguageRuntime *>(runtime);
1786 return nullptr;
Jim Ingham22777012010-09-23 02:01:19 +00001787}
1788
Kate Stoneb9c1b512016-09-06 20:57:50 +00001789ObjCLanguageRuntime *Process::GetObjCLanguageRuntime(bool retry_if_null) {
1790 LanguageRuntime *runtime =
1791 GetLanguageRuntime(eLanguageTypeObjC, retry_if_null);
1792 if (runtime != nullptr && runtime->GetLanguageType() == eLanguageTypeObjC)
1793 return static_cast<ObjCLanguageRuntime *>(runtime);
1794 return nullptr;
Enrico Granatafd4c84e2012-05-21 16:51:35 +00001795}
1796
Kate Stoneb9c1b512016-09-06 20:57:50 +00001797bool Process::IsPossibleDynamicValue(ValueObject &in_value) {
1798 if (m_finalizing)
1799 return false;
1800
1801 if (in_value.IsDynamic())
1802 return false;
1803 LanguageType known_type = in_value.GetObjectRuntimeLanguage();
1804
1805 if (known_type != eLanguageTypeUnknown && known_type != eLanguageTypeC) {
1806 LanguageRuntime *runtime = GetLanguageRuntime(known_type);
1807 return runtime ? runtime->CouldHaveDynamicValue(in_value) : false;
1808 }
1809
1810 LanguageRuntime *cpp_runtime = GetLanguageRuntime(eLanguageTypeC_plus_plus);
1811 if (cpp_runtime && cpp_runtime->CouldHaveDynamicValue(in_value))
1812 return true;
1813
1814 LanguageRuntime *objc_runtime = GetLanguageRuntime(eLanguageTypeObjC);
1815 return objc_runtime ? objc_runtime->CouldHaveDynamicValue(in_value) : false;
Zachary Turner93749ab2015-03-03 21:51:25 +00001816}
1817
Kate Stoneb9c1b512016-09-06 20:57:50 +00001818void Process::SetDynamicCheckers(DynamicCheckerFunctions *dynamic_checkers) {
1819 m_dynamic_checkers_ap.reset(dynamic_checkers);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001820}
1821
Kate Stoneb9c1b512016-09-06 20:57:50 +00001822BreakpointSiteList &Process::GetBreakpointSiteList() {
1823 return m_breakpoint_site_list;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001824}
1825
Kate Stoneb9c1b512016-09-06 20:57:50 +00001826const BreakpointSiteList &Process::GetBreakpointSiteList() const {
1827 return m_breakpoint_site_list;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001828}
1829
Kate Stoneb9c1b512016-09-06 20:57:50 +00001830void Process::DisableAllBreakpointSites() {
1831 m_breakpoint_site_list.ForEach([this](BreakpointSite *bp_site) -> void {
1832 // bp_site->SetEnabled(true);
1833 DisableBreakpointSite(bp_site);
1834 });
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001835}
1836
Kate Stoneb9c1b512016-09-06 20:57:50 +00001837Error Process::ClearBreakpointSiteByID(lldb::user_id_t break_id) {
1838 Error error(DisableBreakpointSiteByID(break_id));
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001839
Kate Stoneb9c1b512016-09-06 20:57:50 +00001840 if (error.Success())
1841 m_breakpoint_site_list.Remove(break_id);
1842
1843 return error;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001844}
1845
Kate Stoneb9c1b512016-09-06 20:57:50 +00001846Error Process::DisableBreakpointSiteByID(lldb::user_id_t break_id) {
1847 Error error;
1848 BreakpointSiteSP bp_site_sp = m_breakpoint_site_list.FindByID(break_id);
1849 if (bp_site_sp) {
1850 if (bp_site_sp->IsEnabled())
1851 error = DisableBreakpointSite(bp_site_sp.get());
1852 } else {
1853 error.SetErrorStringWithFormat("invalid breakpoint site ID: %" PRIu64,
1854 break_id);
1855 }
1856
1857 return error;
1858}
1859
1860Error Process::EnableBreakpointSiteByID(lldb::user_id_t break_id) {
1861 Error error;
1862 BreakpointSiteSP bp_site_sp = m_breakpoint_site_list.FindByID(break_id);
1863 if (bp_site_sp) {
1864 if (!bp_site_sp->IsEnabled())
1865 error = EnableBreakpointSite(bp_site_sp.get());
1866 } else {
1867 error.SetErrorStringWithFormat("invalid breakpoint site ID: %" PRIu64,
1868 break_id);
1869 }
1870 return error;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001871}
1872
Stephen Wilson50bd94f2010-07-17 00:56:13 +00001873lldb::break_id_t
Kate Stoneb9c1b512016-09-06 20:57:50 +00001874Process::CreateBreakpointSite(const BreakpointLocationSP &owner,
1875 bool use_hardware) {
1876 addr_t load_addr = LLDB_INVALID_ADDRESS;
Jim Ingham1460e4b2014-01-10 23:46:59 +00001877
Kate Stoneb9c1b512016-09-06 20:57:50 +00001878 bool show_error = true;
1879 switch (GetState()) {
1880 case eStateInvalid:
1881 case eStateUnloaded:
1882 case eStateConnected:
1883 case eStateAttaching:
1884 case eStateLaunching:
1885 case eStateDetached:
1886 case eStateExited:
1887 show_error = false;
1888 break;
1889
1890 case eStateStopped:
1891 case eStateRunning:
1892 case eStateStepping:
1893 case eStateCrashed:
1894 case eStateSuspended:
1895 show_error = IsAlive();
1896 break;
1897 }
1898
1899 // Reset the IsIndirect flag here, in case the location changes from
1900 // pointing to a indirect symbol to a regular symbol.
1901 owner->SetIsIndirect(false);
1902
1903 if (owner->ShouldResolveIndirectFunctions()) {
1904 Symbol *symbol = owner->GetAddress().CalculateSymbolContextSymbol();
1905 if (symbol && symbol->IsIndirect()) {
1906 Error error;
1907 Address symbol_address = symbol->GetAddress();
1908 load_addr = ResolveIndirectFunction(&symbol_address, error);
1909 if (!error.Success() && show_error) {
1910 GetTarget().GetDebugger().GetErrorFile()->Printf(
1911 "warning: failed to resolve indirect function at 0x%" PRIx64
1912 " for breakpoint %i.%i: %s\n",
1913 symbol->GetLoadAddress(&GetTarget()),
1914 owner->GetBreakpoint().GetID(), owner->GetID(),
1915 error.AsCString() ? error.AsCString() : "unknown error");
1916 return LLDB_INVALID_BREAK_ID;
1917 }
1918 Address resolved_address(load_addr);
1919 load_addr = resolved_address.GetOpcodeLoadAddress(&GetTarget());
1920 owner->SetIsIndirect(true);
1921 } else
1922 load_addr = owner->GetAddress().GetOpcodeLoadAddress(&GetTarget());
1923 } else
1924 load_addr = owner->GetAddress().GetOpcodeLoadAddress(&GetTarget());
1925
1926 if (load_addr != LLDB_INVALID_ADDRESS) {
1927 BreakpointSiteSP bp_site_sp;
1928
1929 // Look up this breakpoint site. If it exists, then add this new owner,
1930 // otherwise
1931 // create a new breakpoint site and add it.
1932
1933 bp_site_sp = m_breakpoint_site_list.FindByAddress(load_addr);
1934
1935 if (bp_site_sp) {
1936 bp_site_sp->AddOwner(owner);
1937 owner->SetBreakpointSite(bp_site_sp);
1938 return bp_site_sp->GetID();
1939 } else {
1940 bp_site_sp.reset(new BreakpointSite(&m_breakpoint_site_list, owner,
1941 load_addr, use_hardware));
1942 if (bp_site_sp) {
1943 Error error = EnableBreakpointSite(bp_site_sp.get());
1944 if (error.Success()) {
1945 owner->SetBreakpointSite(bp_site_sp);
1946 return m_breakpoint_site_list.Add(bp_site_sp);
1947 } else {
1948 if (show_error) {
1949 // Report error for setting breakpoint...
1950 GetTarget().GetDebugger().GetErrorFile()->Printf(
1951 "warning: failed to set breakpoint site at 0x%" PRIx64
1952 " for breakpoint %i.%i: %s\n",
1953 load_addr, owner->GetBreakpoint().GetID(), owner->GetID(),
1954 error.AsCString() ? error.AsCString() : "unknown error");
1955 }
Jim Ingham1460e4b2014-01-10 23:46:59 +00001956 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00001957 }
Jim Ingham1460e4b2014-01-10 23:46:59 +00001958 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00001959 }
1960 // We failed to enable the breakpoint
1961 return LLDB_INVALID_BREAK_ID;
1962}
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001963
Kate Stoneb9c1b512016-09-06 20:57:50 +00001964void Process::RemoveOwnerFromBreakpointSite(lldb::user_id_t owner_id,
1965 lldb::user_id_t owner_loc_id,
1966 BreakpointSiteSP &bp_site_sp) {
1967 uint32_t num_owners = bp_site_sp->RemoveOwner(owner_id, owner_loc_id);
1968 if (num_owners == 0) {
1969 // Don't try to disable the site if we don't have a live process anymore.
1970 if (IsAlive())
1971 DisableBreakpointSite(bp_site_sp.get());
1972 m_breakpoint_site_list.RemoveByAddress(bp_site_sp->GetLoadAddress());
1973 }
1974}
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001975
Kate Stoneb9c1b512016-09-06 20:57:50 +00001976size_t Process::RemoveBreakpointOpcodesFromBuffer(addr_t bp_addr, size_t size,
1977 uint8_t *buf) const {
1978 size_t bytes_removed = 0;
1979 BreakpointSiteList bp_sites_in_range;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001980
Kate Stoneb9c1b512016-09-06 20:57:50 +00001981 if (m_breakpoint_site_list.FindInRange(bp_addr, bp_addr + size,
1982 bp_sites_in_range)) {
1983 bp_sites_in_range.ForEach([bp_addr, size, buf, &bytes_removed](
1984 BreakpointSite *bp_site) -> void {
1985 if (bp_site->GetType() == BreakpointSite::eSoftware) {
1986 addr_t intersect_addr;
1987 size_t intersect_size;
1988 size_t opcode_offset;
1989 if (bp_site->IntersectsRange(bp_addr, size, &intersect_addr,
1990 &intersect_size, &opcode_offset)) {
1991 assert(bp_addr <= intersect_addr && intersect_addr < bp_addr + size);
1992 assert(bp_addr < intersect_addr + intersect_size &&
1993 intersect_addr + intersect_size <= bp_addr + size);
1994 assert(opcode_offset + intersect_size <= bp_site->GetByteSize());
1995 size_t buf_offset = intersect_addr - bp_addr;
1996 ::memcpy(buf + buf_offset,
1997 bp_site->GetSavedOpcodeBytes() + opcode_offset,
1998 intersect_size);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001999 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00002000 }
2001 });
2002 }
2003 return bytes_removed;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002004}
2005
Kate Stoneb9c1b512016-09-06 20:57:50 +00002006size_t Process::GetSoftwareBreakpointTrapOpcode(BreakpointSite *bp_site) {
2007 PlatformSP platform_sp(GetTarget().GetPlatform());
2008 if (platform_sp)
2009 return platform_sp->GetSoftwareBreakpointTrapOpcode(GetTarget(), bp_site);
2010 return 0;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002011}
2012
Kate Stoneb9c1b512016-09-06 20:57:50 +00002013Error Process::EnableSoftwareBreakpoint(BreakpointSite *bp_site) {
2014 Error error;
2015 assert(bp_site != nullptr);
2016 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_BREAKPOINTS));
2017 const addr_t bp_addr = bp_site->GetLoadAddress();
2018 if (log)
2019 log->Printf(
2020 "Process::EnableSoftwareBreakpoint (site_id = %d) addr = 0x%" PRIx64,
2021 bp_site->GetID(), (uint64_t)bp_addr);
2022 if (bp_site->IsEnabled()) {
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002023 if (log)
Kate Stoneb9c1b512016-09-06 20:57:50 +00002024 log->Printf(
2025 "Process::EnableSoftwareBreakpoint (site_id = %d) addr = 0x%" PRIx64
2026 " -- already enabled",
2027 bp_site->GetID(), (uint64_t)bp_addr);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002028 return error;
Kate Stoneb9c1b512016-09-06 20:57:50 +00002029 }
2030
2031 if (bp_addr == LLDB_INVALID_ADDRESS) {
2032 error.SetErrorString("BreakpointSite contains an invalid load address.");
2033 return error;
2034 }
2035 // Ask the lldb::Process subclass to fill in the correct software breakpoint
2036 // trap for the breakpoint site
2037 const size_t bp_opcode_size = GetSoftwareBreakpointTrapOpcode(bp_site);
2038
2039 if (bp_opcode_size == 0) {
2040 error.SetErrorStringWithFormat("Process::GetSoftwareBreakpointTrapOpcode() "
2041 "returned zero, unable to get breakpoint "
2042 "trap for address 0x%" PRIx64,
2043 bp_addr);
2044 } else {
2045 const uint8_t *const bp_opcode_bytes = bp_site->GetTrapOpcodeBytes();
2046
2047 if (bp_opcode_bytes == nullptr) {
2048 error.SetErrorString(
2049 "BreakpointSite doesn't contain a valid breakpoint trap opcode.");
2050 return error;
2051 }
2052
2053 // Save the original opcode by reading it
2054 if (DoReadMemory(bp_addr, bp_site->GetSavedOpcodeBytes(), bp_opcode_size,
2055 error) == bp_opcode_size) {
2056 // Write a software breakpoint in place of the original opcode
2057 if (DoWriteMemory(bp_addr, bp_opcode_bytes, bp_opcode_size, error) ==
2058 bp_opcode_size) {
2059 uint8_t verify_bp_opcode_bytes[64];
2060 if (DoReadMemory(bp_addr, verify_bp_opcode_bytes, bp_opcode_size,
2061 error) == bp_opcode_size) {
2062 if (::memcmp(bp_opcode_bytes, verify_bp_opcode_bytes,
2063 bp_opcode_size) == 0) {
2064 bp_site->SetEnabled(true);
2065 bp_site->SetType(BreakpointSite::eSoftware);
2066 if (log)
2067 log->Printf("Process::EnableSoftwareBreakpoint (site_id = %d) "
2068 "addr = 0x%" PRIx64 " -- SUCCESS",
2069 bp_site->GetID(), (uint64_t)bp_addr);
2070 } else
2071 error.SetErrorString(
2072 "failed to verify the breakpoint trap in memory.");
2073 } else
2074 error.SetErrorString(
2075 "Unable to read memory to verify breakpoint trap.");
2076 } else
2077 error.SetErrorString("Unable to write breakpoint trap to memory.");
2078 } else
2079 error.SetErrorString("Unable to read memory at breakpoint address.");
2080 }
2081 if (log && error.Fail())
2082 log->Printf(
2083 "Process::EnableSoftwareBreakpoint (site_id = %d) addr = 0x%" PRIx64
2084 " -- FAILED: %s",
2085 bp_site->GetID(), (uint64_t)bp_addr, error.AsCString());
2086 return error;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002087}
2088
Kate Stoneb9c1b512016-09-06 20:57:50 +00002089Error Process::DisableSoftwareBreakpoint(BreakpointSite *bp_site) {
2090 Error error;
2091 assert(bp_site != nullptr);
2092 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_BREAKPOINTS));
2093 addr_t bp_addr = bp_site->GetLoadAddress();
2094 lldb::user_id_t breakID = bp_site->GetID();
2095 if (log)
2096 log->Printf("Process::DisableSoftwareBreakpoint (breakID = %" PRIu64
2097 ") addr = 0x%" PRIx64,
2098 breakID, (uint64_t)bp_addr);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002099
Kate Stoneb9c1b512016-09-06 20:57:50 +00002100 if (bp_site->IsHardware()) {
2101 error.SetErrorString("Breakpoint site is a hardware breakpoint.");
2102 } else if (bp_site->IsEnabled()) {
2103 const size_t break_op_size = bp_site->GetByteSize();
2104 const uint8_t *const break_op = bp_site->GetTrapOpcodeBytes();
2105 if (break_op_size > 0) {
2106 // Clear a software breakpoint instruction
2107 uint8_t curr_break_op[8];
2108 assert(break_op_size <= sizeof(curr_break_op));
2109 bool break_op_found = false;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002110
Kate Stoneb9c1b512016-09-06 20:57:50 +00002111 // Read the breakpoint opcode
2112 if (DoReadMemory(bp_addr, curr_break_op, break_op_size, error) ==
2113 break_op_size) {
2114 bool verify = false;
2115 // Make sure the breakpoint opcode exists at this address
2116 if (::memcmp(curr_break_op, break_op, break_op_size) == 0) {
2117 break_op_found = true;
2118 // We found a valid breakpoint opcode at this address, now restore
2119 // the saved opcode.
2120 if (DoWriteMemory(bp_addr, bp_site->GetSavedOpcodeBytes(),
2121 break_op_size, error) == break_op_size) {
2122 verify = true;
2123 } else
2124 error.SetErrorString(
2125 "Memory write failed when restoring original opcode.");
2126 } else {
2127 error.SetErrorString(
2128 "Original breakpoint trap is no longer in memory.");
2129 // Set verify to true and so we can check if the original opcode has
2130 // already been restored
2131 verify = true;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002132 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002133
Kate Stoneb9c1b512016-09-06 20:57:50 +00002134 if (verify) {
2135 uint8_t verify_opcode[8];
2136 assert(break_op_size < sizeof(verify_opcode));
2137 // Verify that our original opcode made it back to the inferior
2138 if (DoReadMemory(bp_addr, verify_opcode, break_op_size, error) ==
2139 break_op_size) {
2140 // compare the memory we just read with the original opcode
2141 if (::memcmp(bp_site->GetSavedOpcodeBytes(), verify_opcode,
2142 break_op_size) == 0) {
2143 // SUCCESS
2144 bp_site->SetEnabled(false);
2145 if (log)
2146 log->Printf("Process::DisableSoftwareBreakpoint (site_id = %d) "
2147 "addr = 0x%" PRIx64 " -- SUCCESS",
2148 bp_site->GetID(), (uint64_t)bp_addr);
2149 return error;
2150 } else {
2151 if (break_op_found)
2152 error.SetErrorString("Failed to restore original opcode.");
2153 }
2154 } else
2155 error.SetErrorString("Failed to read memory to verify that "
2156 "breakpoint trap was restored.");
2157 }
2158 } else
2159 error.SetErrorString(
2160 "Unable to read memory that should contain the breakpoint trap.");
2161 }
2162 } else {
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002163 if (log)
Kate Stoneb9c1b512016-09-06 20:57:50 +00002164 log->Printf(
2165 "Process::DisableSoftwareBreakpoint (site_id = %d) addr = 0x%" PRIx64
2166 " -- already disabled",
2167 bp_site->GetID(), (uint64_t)bp_addr);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002168 return error;
Kate Stoneb9c1b512016-09-06 20:57:50 +00002169 }
2170
2171 if (log)
2172 log->Printf(
2173 "Process::DisableSoftwareBreakpoint (site_id = %d) addr = 0x%" PRIx64
2174 " -- FAILED: %s",
2175 bp_site->GetID(), (uint64_t)bp_addr, error.AsCString());
2176 return error;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002177}
2178
Greg Clayton58be07b2011-01-07 06:08:19 +00002179// Uncomment to verify memory caching works after making changes to caching code
2180//#define VERIFY_MEMORY_READS
2181
Kate Stoneb9c1b512016-09-06 20:57:50 +00002182size_t Process::ReadMemory(addr_t addr, void *buf, size_t size, Error &error) {
2183 error.Clear();
2184 if (!GetDisableMemoryCache()) {
2185#if defined(VERIFY_MEMORY_READS)
2186 // Memory caching is enabled, with debug verification
2187
2188 if (buf && size) {
2189 // Uncomment the line below to make sure memory caching is working.
2190 // I ran this through the test suite and got no assertions, so I am
2191 // pretty confident this is working well. If any changes are made to
2192 // memory caching, uncomment the line below and test your changes!
2193
2194 // Verify all memory reads by using the cache first, then redundantly
2195 // reading the same memory from the inferior and comparing to make sure
2196 // everything is exactly the same.
2197 std::string verify_buf(size, '\0');
2198 assert(verify_buf.size() == size);
2199 const size_t cache_bytes_read =
2200 m_memory_cache.Read(this, addr, buf, size, error);
2201 Error verify_error;
2202 const size_t verify_bytes_read =
2203 ReadMemoryFromInferior(addr, const_cast<char *>(verify_buf.data()),
2204 verify_buf.size(), verify_error);
2205 assert(cache_bytes_read == verify_bytes_read);
2206 assert(memcmp(buf, verify_buf.data(), verify_buf.size()) == 0);
2207 assert(verify_error.Success() == error.Success());
2208 return cache_bytes_read;
2209 }
2210 return 0;
2211#else // !defined(VERIFY_MEMORY_READS)
2212 // Memory caching is enabled, without debug verification
2213
2214 return m_memory_cache.Read(addr, buf, size, error);
Sean Callanan64c0cf22012-06-07 22:26:42 +00002215#endif // defined (VERIFY_MEMORY_READS)
Kate Stoneb9c1b512016-09-06 20:57:50 +00002216 } else {
2217 // Memory caching is disabled
2218
2219 return ReadMemoryFromInferior(addr, buf, size, error);
2220 }
Greg Clayton58be07b2011-01-07 06:08:19 +00002221}
Kate Stoneb9c1b512016-09-06 20:57:50 +00002222
2223size_t Process::ReadCStringFromMemory(addr_t addr, std::string &out_str,
2224 Error &error) {
2225 char buf[256];
2226 out_str.clear();
2227 addr_t curr_addr = addr;
2228 while (true) {
2229 size_t length = ReadCStringFromMemory(curr_addr, buf, sizeof(buf), error);
2230 if (length == 0)
2231 break;
2232 out_str.append(buf, length);
2233 // If we got "length - 1" bytes, we didn't get the whole C string, we
2234 // need to read some more characters
2235 if (length == sizeof(buf) - 1)
2236 curr_addr += length;
2237 else
2238 break;
2239 }
2240 return out_str.size();
2241}
2242
2243size_t Process::ReadStringFromMemory(addr_t addr, char *dst, size_t max_bytes,
2244 Error &error, size_t type_width) {
2245 size_t total_bytes_read = 0;
2246 if (dst && max_bytes && type_width && max_bytes >= type_width) {
2247 // Ensure a null terminator independent of the number of bytes that is read.
2248 memset(dst, 0, max_bytes);
2249 size_t bytes_left = max_bytes - type_width;
2250
2251 const char terminator[4] = {'\0', '\0', '\0', '\0'};
2252 assert(sizeof(terminator) >= type_width && "Attempting to validate a "
2253 "string with more than 4 bytes "
2254 "per character!");
2255
Greg Clayton4c82d422012-05-18 23:20:01 +00002256 addr_t curr_addr = addr;
Kate Stoneb9c1b512016-09-06 20:57:50 +00002257 const size_t cache_line_size = m_memory_cache.GetMemoryCacheLineSize();
2258 char *curr_dst = dst;
Greg Clayton4c82d422012-05-18 23:20:01 +00002259
Kate Stoneb9c1b512016-09-06 20:57:50 +00002260 error.Clear();
2261 while (bytes_left > 0 && error.Success()) {
2262 addr_t cache_line_bytes_left =
2263 cache_line_size - (curr_addr % cache_line_size);
2264 addr_t bytes_to_read =
2265 std::min<addr_t>(bytes_left, cache_line_bytes_left);
2266 size_t bytes_read = ReadMemory(curr_addr, curr_dst, bytes_to_read, error);
Ashok Thirumurthi6ac9d132013-04-19 15:58:38 +00002267
Kate Stoneb9c1b512016-09-06 20:57:50 +00002268 if (bytes_read == 0)
2269 break;
Ashok Thirumurthi6ac9d132013-04-19 15:58:38 +00002270
Kate Stoneb9c1b512016-09-06 20:57:50 +00002271 // Search for a null terminator of correct size and alignment in
2272 // bytes_read
2273 size_t aligned_start = total_bytes_read - total_bytes_read % type_width;
2274 for (size_t i = aligned_start;
2275 i + type_width <= total_bytes_read + bytes_read; i += type_width)
2276 if (::memcmp(&dst[i], terminator, type_width) == 0) {
2277 error.Clear();
2278 return i;
Ashok Thirumurthi6ac9d132013-04-19 15:58:38 +00002279 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00002280
2281 total_bytes_read += bytes_read;
2282 curr_dst += bytes_read;
2283 curr_addr += bytes_read;
2284 bytes_left -= bytes_read;
Ashok Thirumurthi6ac9d132013-04-19 15:58:38 +00002285 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00002286 } else {
2287 if (max_bytes)
2288 error.SetErrorString("invalid arguments");
2289 }
2290 return total_bytes_read;
Ashok Thirumurthi6ac9d132013-04-19 15:58:38 +00002291}
2292
Kate Stoneb9c1b512016-09-06 20:57:50 +00002293// Deprecated in favor of ReadStringFromMemory which has wchar support and
2294// correct code to find
Ashok Thirumurthi6ac9d132013-04-19 15:58:38 +00002295// null terminators.
Kate Stoneb9c1b512016-09-06 20:57:50 +00002296size_t Process::ReadCStringFromMemory(addr_t addr, char *dst,
2297 size_t dst_max_len, Error &result_error) {
2298 size_t total_cstr_len = 0;
2299 if (dst && dst_max_len) {
2300 result_error.Clear();
2301 // NULL out everything just to be safe
2302 memset(dst, 0, dst_max_len);
2303 Error error;
2304 addr_t curr_addr = addr;
2305 const size_t cache_line_size = m_memory_cache.GetMemoryCacheLineSize();
2306 size_t bytes_left = dst_max_len - 1;
2307 char *curr_dst = dst;
Greg Clayton8b82f082011-04-12 05:54:46 +00002308
Kate Stoneb9c1b512016-09-06 20:57:50 +00002309 while (bytes_left > 0) {
2310 addr_t cache_line_bytes_left =
2311 cache_line_size - (curr_addr % cache_line_size);
2312 addr_t bytes_to_read =
2313 std::min<addr_t>(bytes_left, cache_line_bytes_left);
2314 size_t bytes_read = ReadMemory(curr_addr, curr_dst, bytes_to_read, error);
Greg Clayton8b82f082011-04-12 05:54:46 +00002315
Kate Stoneb9c1b512016-09-06 20:57:50 +00002316 if (bytes_read == 0) {
2317 result_error = error;
2318 dst[total_cstr_len] = '\0';
2319 break;
2320 }
2321 const size_t len = strlen(curr_dst);
Greg Clayton8b82f082011-04-12 05:54:46 +00002322
Kate Stoneb9c1b512016-09-06 20:57:50 +00002323 total_cstr_len += len;
2324
2325 if (len < bytes_to_read)
2326 break;
2327
2328 curr_dst += bytes_read;
2329 curr_addr += bytes_read;
2330 bytes_left -= bytes_read;
Greg Clayton8b82f082011-04-12 05:54:46 +00002331 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00002332 } else {
2333 if (dst == nullptr)
2334 result_error.SetErrorString("invalid arguments");
Greg Claytone91b7952011-12-15 03:14:23 +00002335 else
Kate Stoneb9c1b512016-09-06 20:57:50 +00002336 result_error.Clear();
2337 }
2338 return total_cstr_len;
Greg Clayton8b82f082011-04-12 05:54:46 +00002339}
2340
Kate Stoneb9c1b512016-09-06 20:57:50 +00002341size_t Process::ReadMemoryFromInferior(addr_t addr, void *buf, size_t size,
2342 Error &error) {
2343 if (buf == nullptr || size == 0)
2344 return 0;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002345
Kate Stoneb9c1b512016-09-06 20:57:50 +00002346 size_t bytes_read = 0;
2347 uint8_t *bytes = (uint8_t *)buf;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002348
Kate Stoneb9c1b512016-09-06 20:57:50 +00002349 while (bytes_read < size) {
2350 const size_t curr_size = size - bytes_read;
2351 const size_t curr_bytes_read =
2352 DoReadMemory(addr + bytes_read, bytes + bytes_read, curr_size, error);
2353 bytes_read += curr_bytes_read;
2354 if (curr_bytes_read == curr_size || curr_bytes_read == 0)
2355 break;
2356 }
2357
2358 // Replace any software breakpoint opcodes that fall into this range back
2359 // into "buf" before we return
2360 if (bytes_read > 0)
2361 RemoveBreakpointOpcodesFromBuffer(addr, bytes_read, (uint8_t *)buf);
2362 return bytes_read;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002363}
2364
Kate Stoneb9c1b512016-09-06 20:57:50 +00002365uint64_t Process::ReadUnsignedIntegerFromMemory(lldb::addr_t vm_addr,
2366 size_t integer_byte_size,
2367 uint64_t fail_value,
2368 Error &error) {
2369 Scalar scalar;
2370 if (ReadScalarIntegerFromMemory(vm_addr, integer_byte_size, false, scalar,
2371 error))
2372 return scalar.ULongLong(fail_value);
2373 return fail_value;
Greg Claytonf3ef3d22011-05-22 22:46:53 +00002374}
2375
Kate Stoneb9c1b512016-09-06 20:57:50 +00002376int64_t Process::ReadSignedIntegerFromMemory(lldb::addr_t vm_addr,
2377 size_t integer_byte_size,
2378 int64_t fail_value, Error &error) {
2379 Scalar scalar;
2380 if (ReadScalarIntegerFromMemory(vm_addr, integer_byte_size, true, scalar,
2381 error))
2382 return scalar.SLongLong(fail_value);
2383 return fail_value;
Greg Claytonc2267782016-05-23 20:37:24 +00002384}
2385
Kate Stoneb9c1b512016-09-06 20:57:50 +00002386addr_t Process::ReadPointerFromMemory(lldb::addr_t vm_addr, Error &error) {
2387 Scalar scalar;
2388 if (ReadScalarIntegerFromMemory(vm_addr, GetAddressByteSize(), false, scalar,
2389 error))
2390 return scalar.ULongLong(LLDB_INVALID_ADDRESS);
2391 return LLDB_INVALID_ADDRESS;
Greg Claytonf3ef3d22011-05-22 22:46:53 +00002392}
2393
Kate Stoneb9c1b512016-09-06 20:57:50 +00002394bool Process::WritePointerToMemory(lldb::addr_t vm_addr, lldb::addr_t ptr_value,
2395 Error &error) {
2396 Scalar scalar;
2397 const uint32_t addr_byte_size = GetAddressByteSize();
2398 if (addr_byte_size <= 4)
2399 scalar = (uint32_t)ptr_value;
2400 else
2401 scalar = ptr_value;
2402 return WriteScalarToMemory(vm_addr, scalar, addr_byte_size, error) ==
2403 addr_byte_size;
Greg Clayton58a4c462010-12-16 20:01:20 +00002404}
2405
Kate Stoneb9c1b512016-09-06 20:57:50 +00002406size_t Process::WriteMemoryPrivate(addr_t addr, const void *buf, size_t size,
2407 Error &error) {
2408 size_t bytes_written = 0;
2409 const uint8_t *bytes = (const uint8_t *)buf;
2410
2411 while (bytes_written < size) {
2412 const size_t curr_size = size - bytes_written;
2413 const size_t curr_bytes_written = DoWriteMemory(
2414 addr + bytes_written, bytes + bytes_written, curr_size, error);
2415 bytes_written += curr_bytes_written;
2416 if (curr_bytes_written == curr_size || curr_bytes_written == 0)
2417 break;
2418 }
2419 return bytes_written;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002420}
2421
Kate Stoneb9c1b512016-09-06 20:57:50 +00002422size_t Process::WriteMemory(addr_t addr, const void *buf, size_t size,
2423 Error &error) {
2424#if defined(ENABLE_MEMORY_CACHING)
2425 m_memory_cache.Flush(addr, size);
Greg Clayton58be07b2011-01-07 06:08:19 +00002426#endif
2427
Kate Stoneb9c1b512016-09-06 20:57:50 +00002428 if (buf == nullptr || size == 0)
2429 return 0;
Jim Ingham78a685a2011-04-16 00:01:13 +00002430
Kate Stoneb9c1b512016-09-06 20:57:50 +00002431 m_mod_id.BumpMemoryID();
Jim Ingham78a685a2011-04-16 00:01:13 +00002432
Kate Stoneb9c1b512016-09-06 20:57:50 +00002433 // We need to write any data that would go where any current software traps
2434 // (enabled software breakpoints) any software traps (breakpoints) that we
2435 // may have placed in our tasks memory.
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002436
Kate Stoneb9c1b512016-09-06 20:57:50 +00002437 BreakpointSiteList bp_sites_in_range;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002438
Kate Stoneb9c1b512016-09-06 20:57:50 +00002439 if (m_breakpoint_site_list.FindInRange(addr, addr + size,
2440 bp_sites_in_range)) {
2441 // No breakpoint sites overlap
2442 if (bp_sites_in_range.IsEmpty())
2443 return WriteMemoryPrivate(addr, buf, size, error);
2444 else {
2445 const uint8_t *ubuf = (const uint8_t *)buf;
2446 uint64_t bytes_written = 0;
2447
2448 bp_sites_in_range.ForEach([this, addr, size, &bytes_written, &ubuf,
2449 &error](BreakpointSite *bp) -> void {
2450
2451 if (error.Success()) {
2452 addr_t intersect_addr;
2453 size_t intersect_size;
2454 size_t opcode_offset;
2455 const bool intersects = bp->IntersectsRange(
2456 addr, size, &intersect_addr, &intersect_size, &opcode_offset);
2457 UNUSED_IF_ASSERT_DISABLED(intersects);
2458 assert(intersects);
2459 assert(addr <= intersect_addr && intersect_addr < addr + size);
2460 assert(addr < intersect_addr + intersect_size &&
2461 intersect_addr + intersect_size <= addr + size);
2462 assert(opcode_offset + intersect_size <= bp->GetByteSize());
2463
2464 // Check for bytes before this breakpoint
2465 const addr_t curr_addr = addr + bytes_written;
2466 if (intersect_addr > curr_addr) {
2467 // There are some bytes before this breakpoint that we need to
2468 // just write to memory
2469 size_t curr_size = intersect_addr - curr_addr;
2470 size_t curr_bytes_written = WriteMemoryPrivate(
2471 curr_addr, ubuf + bytes_written, curr_size, error);
2472 bytes_written += curr_bytes_written;
2473 if (curr_bytes_written != curr_size) {
2474 // We weren't able to write all of the requested bytes, we
2475 // are done looping and will return the number of bytes that
2476 // we have written so far.
2477 if (error.Success())
2478 error.SetErrorToGenericError();
2479 }
2480 }
2481 // Now write any bytes that would cover up any software breakpoints
2482 // directly into the breakpoint opcode buffer
2483 ::memcpy(bp->GetSavedOpcodeBytes() + opcode_offset,
2484 ubuf + bytes_written, intersect_size);
2485 bytes_written += intersect_size;
Greg Claytond8cf1a12013-06-12 00:46:38 +00002486 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00002487 });
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002488
Kate Stoneb9c1b512016-09-06 20:57:50 +00002489 if (bytes_written < size)
2490 WriteMemoryPrivate(addr + bytes_written, ubuf + bytes_written,
2491 size - bytes_written, error);
2492 }
2493 } else {
2494 return WriteMemoryPrivate(addr, buf, size, error);
2495 }
2496
2497 // Write any remaining bytes after the last breakpoint if we have any left
2498 return 0; // bytes_written;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002499}
Greg Claytonf3ef3d22011-05-22 22:46:53 +00002500
Kate Stoneb9c1b512016-09-06 20:57:50 +00002501size_t Process::WriteScalarToMemory(addr_t addr, const Scalar &scalar,
2502 size_t byte_size, Error &error) {
2503 if (byte_size == UINT32_MAX)
2504 byte_size = scalar.GetByteSize();
2505 if (byte_size > 0) {
2506 uint8_t buf[32];
2507 const size_t mem_size =
2508 scalar.GetAsMemoryData(buf, byte_size, GetByteOrder(), error);
2509 if (mem_size > 0)
2510 return WriteMemory(addr, buf, mem_size, error);
Greg Claytonf3ef3d22011-05-22 22:46:53 +00002511 else
Kate Stoneb9c1b512016-09-06 20:57:50 +00002512 error.SetErrorString("failed to get scalar as memory data");
2513 } else {
2514 error.SetErrorString("invalid scalar value");
2515 }
2516 return 0;
Greg Claytonf3ef3d22011-05-22 22:46:53 +00002517}
2518
Kate Stoneb9c1b512016-09-06 20:57:50 +00002519size_t Process::ReadScalarIntegerFromMemory(addr_t addr, uint32_t byte_size,
2520 bool is_signed, Scalar &scalar,
2521 Error &error) {
2522 uint64_t uval = 0;
2523 if (byte_size == 0) {
2524 error.SetErrorString("byte size is zero");
2525 } else if (byte_size & (byte_size - 1)) {
2526 error.SetErrorStringWithFormat("byte size %u is not a power of 2",
2527 byte_size);
2528 } else if (byte_size <= sizeof(uval)) {
2529 const size_t bytes_read = ReadMemory(addr, &uval, byte_size, error);
2530 if (bytes_read == byte_size) {
2531 DataExtractor data(&uval, sizeof(uval), GetByteOrder(),
2532 GetAddressByteSize());
2533 lldb::offset_t offset = 0;
2534 if (byte_size <= 4)
2535 scalar = data.GetMaxU32(&offset, byte_size);
2536 else
2537 scalar = data.GetMaxU64(&offset, byte_size);
2538 if (is_signed)
2539 scalar.SignExtend(byte_size * 8);
2540 return bytes_read;
Greg Clayton7060f892013-05-01 23:41:30 +00002541 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00002542 } else {
2543 error.SetErrorStringWithFormat(
2544 "byte size of %u is too large for integer scalar type", byte_size);
2545 }
2546 return 0;
Greg Claytonf3ef3d22011-05-22 22:46:53 +00002547}
2548
Greg Claytond495c532011-05-17 03:37:42 +00002549#define USE_ALLOCATE_MEMORY_CACHE 1
Kate Stoneb9c1b512016-09-06 20:57:50 +00002550addr_t Process::AllocateMemory(size_t size, uint32_t permissions,
2551 Error &error) {
2552 if (GetPrivateState() != eStateStopped)
2553 return LLDB_INVALID_ADDRESS;
2554
2555#if defined(USE_ALLOCATE_MEMORY_CACHE)
2556 return m_allocated_memory_cache.AllocateMemory(size, permissions, error);
Greg Claytond495c532011-05-17 03:37:42 +00002557#else
Kate Stoneb9c1b512016-09-06 20:57:50 +00002558 addr_t allocated_addr = DoAllocateMemory(size, permissions, error);
2559 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
2560 if (log)
2561 log->Printf("Process::AllocateMemory(size=%" PRIu64
2562 ", permissions=%s) => 0x%16.16" PRIx64
2563 " (m_stop_id = %u m_memory_id = %u)",
2564 (uint64_t)size, GetPermissionsAsCString(permissions),
2565 (uint64_t)allocated_addr, m_mod_id.GetStopID(),
2566 m_mod_id.GetMemoryID());
2567 return allocated_addr;
Greg Claytond495c532011-05-17 03:37:42 +00002568#endif
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002569}
2570
Kate Stoneb9c1b512016-09-06 20:57:50 +00002571addr_t Process::CallocateMemory(size_t size, uint32_t permissions,
2572 Error &error) {
2573 addr_t return_addr = AllocateMemory(size, permissions, error);
2574 if (error.Success()) {
2575 std::string buffer(size, 0);
2576 WriteMemory(return_addr, buffer.c_str(), size, error);
2577 }
2578 return return_addr;
2579}
2580
2581bool Process::CanJIT() {
2582 if (m_can_jit == eCanJITDontKnow) {
2583 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
2584 Error err;
2585
2586 uint64_t allocated_memory = AllocateMemory(
2587 8, ePermissionsReadable | ePermissionsWritable | ePermissionsExecutable,
2588 err);
2589
2590 if (err.Success()) {
2591 m_can_jit = eCanJITYes;
2592 if (log)
2593 log->Printf("Process::%s pid %" PRIu64
2594 " allocation test passed, CanJIT () is true",
2595 __FUNCTION__, GetID());
2596 } else {
2597 m_can_jit = eCanJITNo;
2598 if (log)
2599 log->Printf("Process::%s pid %" PRIu64
2600 " allocation test failed, CanJIT () is false: %s",
2601 __FUNCTION__, GetID(), err.AsCString());
Jim Ingham2c381412015-11-04 20:32:27 +00002602 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00002603
2604 DeallocateMemory(allocated_memory);
2605 }
2606
2607 return m_can_jit == eCanJITYes;
Jim Ingham2c381412015-11-04 20:32:27 +00002608}
2609
Kate Stoneb9c1b512016-09-06 20:57:50 +00002610void Process::SetCanJIT(bool can_jit) {
2611 m_can_jit = (can_jit ? eCanJITYes : eCanJITNo);
Sean Callanan90539452011-09-20 23:01:51 +00002612}
2613
Kate Stoneb9c1b512016-09-06 20:57:50 +00002614void Process::SetCanRunCode(bool can_run_code) {
2615 SetCanJIT(can_run_code);
2616 m_can_interpret_function_calls = can_run_code;
Sean Callanan90539452011-09-20 23:01:51 +00002617}
2618
Kate Stoneb9c1b512016-09-06 20:57:50 +00002619Error Process::DeallocateMemory(addr_t ptr) {
2620 Error error;
2621#if defined(USE_ALLOCATE_MEMORY_CACHE)
2622 if (!m_allocated_memory_cache.DeallocateMemory(ptr)) {
2623 error.SetErrorStringWithFormat(
2624 "deallocation of memory at 0x%" PRIx64 " failed.", (uint64_t)ptr);
2625 }
Greg Claytond495c532011-05-17 03:37:42 +00002626#else
Kate Stoneb9c1b512016-09-06 20:57:50 +00002627 error = DoDeallocateMemory(ptr);
2628
2629 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
2630 if (log)
2631 log->Printf("Process::DeallocateMemory(addr=0x%16.16" PRIx64
2632 ") => err = %s (m_stop_id = %u, m_memory_id = %u)",
2633 ptr, error.AsCString("SUCCESS"), m_mod_id.GetStopID(),
2634 m_mod_id.GetMemoryID());
Greg Claytond495c532011-05-17 03:37:42 +00002635#endif
Kate Stoneb9c1b512016-09-06 20:57:50 +00002636 return error;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002637}
2638
Kate Stoneb9c1b512016-09-06 20:57:50 +00002639ModuleSP Process::ReadModuleFromMemory(const FileSpec &file_spec,
2640 lldb::addr_t header_addr,
2641 size_t size_to_read) {
2642 Log *log = lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_HOST);
2643 if (log) {
2644 log->Printf("Process::ReadModuleFromMemory reading %s binary from memory",
2645 file_spec.GetPath().c_str());
2646 }
2647 ModuleSP module_sp(new Module(file_spec, ArchSpec()));
2648 if (module_sp) {
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002649 Error error;
Kate Stoneb9c1b512016-09-06 20:57:50 +00002650 ObjectFile *objfile = module_sp->GetMemoryObjectFile(
2651 shared_from_this(), header_addr, error, size_to_read);
2652 if (objfile)
2653 return module_sp;
2654 }
2655 return ModuleSP();
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002656}
2657
Kate Stoneb9c1b512016-09-06 20:57:50 +00002658bool Process::GetLoadAddressPermissions(lldb::addr_t load_addr,
2659 uint32_t &permissions) {
2660 MemoryRegionInfo range_info;
2661 permissions = 0;
2662 Error error(GetMemoryRegionInfo(load_addr, range_info));
2663 if (!error.Success())
2664 return false;
2665 if (range_info.GetReadable() == MemoryRegionInfo::eDontKnow ||
2666 range_info.GetWritable() == MemoryRegionInfo::eDontKnow ||
2667 range_info.GetExecutable() == MemoryRegionInfo::eDontKnow) {
2668 return false;
2669 }
2670
2671 if (range_info.GetReadable() == MemoryRegionInfo::eYes)
2672 permissions |= lldb::ePermissionsReadable;
2673
2674 if (range_info.GetWritable() == MemoryRegionInfo::eYes)
2675 permissions |= lldb::ePermissionsWritable;
2676
2677 if (range_info.GetExecutable() == MemoryRegionInfo::eYes)
2678 permissions |= lldb::ePermissionsExecutable;
2679
2680 return true;
2681}
2682
2683Error Process::EnableWatchpoint(Watchpoint *watchpoint, bool notify) {
2684 Error error;
2685 error.SetErrorString("watchpoints are not supported");
2686 return error;
2687}
2688
2689Error Process::DisableWatchpoint(Watchpoint *watchpoint, bool notify) {
2690 Error error;
2691 error.SetErrorString("watchpoints are not supported");
2692 return error;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002693}
2694
2695StateType
Pavel Labathe3e21cf2016-11-30 11:56:32 +00002696Process::WaitForProcessStopPrivate(EventSP &event_sp,
2697 const Timeout<std::micro> &timeout) {
Kate Stoneb9c1b512016-09-06 20:57:50 +00002698 StateType state;
2699 // Now wait for the process to launch and return control to us, and then
2700 // call DidLaunch:
2701 while (true) {
2702 event_sp.reset();
Pavel Labathe3e21cf2016-11-30 11:56:32 +00002703 state = GetStateChangedEventsPrivate(event_sp, timeout);
Greg Clayton6779606a2011-01-22 23:43:18 +00002704
Kate Stoneb9c1b512016-09-06 20:57:50 +00002705 if (StateIsStoppedState(state, false))
2706 break;
Greg Clayton6779606a2011-01-22 23:43:18 +00002707
Kate Stoneb9c1b512016-09-06 20:57:50 +00002708 // If state is invalid, then we timed out
2709 if (state == eStateInvalid)
2710 break;
Greg Clayton6779606a2011-01-22 23:43:18 +00002711
Kate Stoneb9c1b512016-09-06 20:57:50 +00002712 if (event_sp)
2713 HandlePrivateEvent(event_sp);
2714 }
2715 return state;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002716}
2717
Kate Stoneb9c1b512016-09-06 20:57:50 +00002718void Process::LoadOperatingSystemPlugin(bool flush) {
2719 if (flush)
2720 m_thread_list.Clear();
2721 m_os_ap.reset(OperatingSystem::FindPlugin(this, nullptr));
2722 if (flush)
2723 Flush();
Greg Clayton332e8b12015-01-13 21:13:08 +00002724}
2725
Kate Stoneb9c1b512016-09-06 20:57:50 +00002726Error Process::Launch(ProcessLaunchInfo &launch_info) {
2727 Error error;
2728 m_abi_sp.reset();
2729 m_dyld_ap.reset();
2730 m_jit_loaders_ap.reset();
2731 m_system_runtime_ap.reset();
2732 m_os_ap.reset();
2733 m_process_input_reader.reset();
2734 m_stop_info_override_callback = nullptr;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002735
Kate Stoneb9c1b512016-09-06 20:57:50 +00002736 Module *exe_module = GetTarget().GetExecutableModulePointer();
2737 if (exe_module) {
2738 char local_exec_file_path[PATH_MAX];
2739 char platform_exec_file_path[PATH_MAX];
2740 exe_module->GetFileSpec().GetPath(local_exec_file_path,
2741 sizeof(local_exec_file_path));
2742 exe_module->GetPlatformFileSpec().GetPath(platform_exec_file_path,
2743 sizeof(platform_exec_file_path));
2744 if (exe_module->GetFileSpec().Exists()) {
2745 // Install anything that might need to be installed prior to launching.
2746 // For host systems, this will do nothing, but if we are connected to a
2747 // remote platform it will install any needed binaries
2748 error = GetTarget().Install(&launch_info);
2749 if (error.Fail())
2750 return error;
Greg Claytonfbb76342013-11-20 21:07:01 +00002751
Kate Stoneb9c1b512016-09-06 20:57:50 +00002752 if (PrivateStateThreadIsValid())
2753 PausePrivateStateThread();
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002754
Kate Stoneb9c1b512016-09-06 20:57:50 +00002755 error = WillLaunch(exe_module);
2756 if (error.Success()) {
2757 const bool restarted = false;
2758 SetPublicState(eStateLaunching, restarted);
2759 m_should_detach = false;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002760
Kate Stoneb9c1b512016-09-06 20:57:50 +00002761 if (m_public_run_lock.TrySetRunning()) {
2762 // Now launch using these arguments.
2763 error = DoLaunch(exe_module, launch_info);
2764 } else {
2765 // This shouldn't happen
2766 error.SetErrorString("failed to acquire process run lock");
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002767 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002768
Kate Stoneb9c1b512016-09-06 20:57:50 +00002769 if (error.Fail()) {
2770 if (GetID() != LLDB_INVALID_PROCESS_ID) {
2771 SetID(LLDB_INVALID_PROCESS_ID);
2772 const char *error_string = error.AsCString();
2773 if (error_string == nullptr)
2774 error_string = "launch failed";
2775 SetExitStatus(-1, error_string);
2776 }
2777 } else {
2778 EventSP event_sp;
Pavel Labathe3e21cf2016-11-30 11:56:32 +00002779 StateType state = WaitForProcessStopPrivate(event_sp, seconds(10));
Greg Clayton35824e32015-02-20 20:59:47 +00002780
Kate Stoneb9c1b512016-09-06 20:57:50 +00002781 if (state == eStateInvalid || !event_sp) {
2782 // We were able to launch the process, but we failed to
2783 // catch the initial stop.
2784 error.SetErrorString("failed to catch stop after launch");
2785 SetExitStatus(0, "failed to catch stop after launch");
2786 Destroy(false);
2787 } else if (state == eStateStopped || state == eStateCrashed) {
2788 DidLaunch();
Greg Claytonc3776bf2012-02-09 06:16:32 +00002789
Kate Stoneb9c1b512016-09-06 20:57:50 +00002790 DynamicLoader *dyld = GetDynamicLoader();
2791 if (dyld)
2792 dyld->DidLaunch();
Andrew MacPherson17220c12014-03-05 10:12:43 +00002793
Kate Stoneb9c1b512016-09-06 20:57:50 +00002794 GetJITLoaders().DidLaunch();
Jason Molendaeef51062013-11-05 03:57:19 +00002795
Kate Stoneb9c1b512016-09-06 20:57:50 +00002796 SystemRuntime *system_runtime = GetSystemRuntime();
2797 if (system_runtime)
2798 system_runtime->DidLaunch();
Greg Clayton35824e32015-02-20 20:59:47 +00002799
Kate Stoneb9c1b512016-09-06 20:57:50 +00002800 LoadOperatingSystemPlugin(false);
Greg Clayton35824e32015-02-20 20:59:47 +00002801
Kate Stoneb9c1b512016-09-06 20:57:50 +00002802 // Note, the stop event was consumed above, but not handled. This
2803 // was done
2804 // to give DidLaunch a chance to run. The target is either stopped
2805 // or crashed.
2806 // Directly set the state. This is done to prevent a stop message
2807 // with a bunch
2808 // of spurious output on thread status, as well as not pop a
2809 // ProcessIOHandler.
2810 SetPublicState(state, false);
Greg Claytonc3776bf2012-02-09 06:16:32 +00002811
Kate Stoneb9c1b512016-09-06 20:57:50 +00002812 if (PrivateStateThreadIsValid())
2813 ResumePrivateStateThread();
Eugene Zelenkoda8cf8a2016-03-01 00:55:51 +00002814 else
Kate Stoneb9c1b512016-09-06 20:57:50 +00002815 StartPrivateStateThread();
Todd Fiala76e0fc92014-08-27 22:58:26 +00002816
Kate Stoneb9c1b512016-09-06 20:57:50 +00002817 m_stop_info_override_callback =
2818 GetTarget().GetArchitecture().GetStopInfoOverrideCallback();
Greg Claytonc9ed4782011-11-12 02:10:56 +00002819
Kate Stoneb9c1b512016-09-06 20:57:50 +00002820 // Target was stopped at entry as was intended. Need to notify the
2821 // listeners
2822 // about it.
2823 if (state == eStateStopped &&
2824 launch_info.GetFlags().Test(eLaunchFlagStopAtEntry))
2825 HandlePrivateEvent(event_sp);
2826 } else if (state == eStateExited) {
2827 // We exited while trying to launch somehow. Don't call DidLaunch
2828 // as that's
2829 // not likely to work, and return an invalid pid.
2830 HandlePrivateEvent(event_sp);
2831 }
2832 }
2833 }
2834 } else {
2835 error.SetErrorStringWithFormat("file doesn't exist: '%s'",
2836 local_exec_file_path);
Jim Inghambb3a2832011-01-29 01:49:25 +00002837 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00002838 }
2839 return error;
Jim Inghambb3a2832011-01-29 01:49:25 +00002840}
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002841
Kate Stoneb9c1b512016-09-06 20:57:50 +00002842Error Process::LoadCore() {
2843 Error error = DoLoadCore();
2844 if (error.Success()) {
2845 ListenerSP listener_sp(
2846 Listener::MakeListener("lldb.process.load_core_listener"));
2847 HijackProcessEvents(listener_sp);
Jim Inghambb3a2832011-01-29 01:49:25 +00002848
Kate Stoneb9c1b512016-09-06 20:57:50 +00002849 if (PrivateStateThreadIsValid())
2850 ResumePrivateStateThread();
Jim Ingham583bbb12016-03-07 21:50:25 +00002851 else
Kate Stoneb9c1b512016-09-06 20:57:50 +00002852 StartPrivateStateThread();
Greg Clayton8012cad2014-11-17 19:39:20 +00002853
Kate Stoneb9c1b512016-09-06 20:57:50 +00002854 DynamicLoader *dyld = GetDynamicLoader();
Greg Claytonc859e2d2012-02-13 23:10:39 +00002855 if (dyld)
Kate Stoneb9c1b512016-09-06 20:57:50 +00002856 dyld->DidAttach();
Greg Clayton93d3c8332011-02-16 04:46:07 +00002857
Andrew MacPhersoneb4d0602014-03-13 09:37:02 +00002858 GetJITLoaders().DidAttach();
Andrew MacPherson17220c12014-03-05 10:12:43 +00002859
Kate Stoneb9c1b512016-09-06 20:57:50 +00002860 SystemRuntime *system_runtime = GetSystemRuntime();
Jason Molendaeef51062013-11-05 03:57:19 +00002861 if (system_runtime)
Kate Stoneb9c1b512016-09-06 20:57:50 +00002862 system_runtime->DidAttach();
Jason Molendaeef51062013-11-05 03:57:19 +00002863
Eugene Zelenkoda8cf8a2016-03-01 00:55:51 +00002864 m_os_ap.reset(OperatingSystem::FindPlugin(this, nullptr));
Kate Stoneb9c1b512016-09-06 20:57:50 +00002865 // We successfully loaded a core file, now pretend we stopped so we can
2866 // show all of the threads in the core file and explore the crashed
2867 // state.
2868 SetPrivateState(eStateStopped);
Greg Claytona97c4d22014-12-09 23:31:02 +00002869
Kate Stoneb9c1b512016-09-06 20:57:50 +00002870 // Wait indefinitely for a stopped event since we just posted one above...
2871 lldb::EventSP event_sp;
Pavel Labathd35031e12016-11-30 10:41:42 +00002872 listener_sp->GetEvent(event_sp, llvm::None);
Kate Stoneb9c1b512016-09-06 20:57:50 +00002873 StateType state = ProcessEventData::GetStateFromEvent(event_sp.get());
2874
2875 if (!StateIsStoppedState(state, false)) {
2876 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
2877 if (log)
2878 log->Printf("Process::Halt() failed to stop, state is: %s",
2879 StateAsCString(state));
2880 error.SetErrorString(
2881 "Did not get stopped event after loading the core file.");
2882 }
2883 RestoreProcessEvents();
2884 }
2885 return error;
Greg Clayton93d3c8332011-02-16 04:46:07 +00002886}
2887
Kate Stoneb9c1b512016-09-06 20:57:50 +00002888DynamicLoader *Process::GetDynamicLoader() {
2889 if (!m_dyld_ap)
2890 m_dyld_ap.reset(DynamicLoader::FindPlugin(this, nullptr));
2891 return m_dyld_ap.get();
2892}
2893
2894const lldb::DataBufferSP Process::GetAuxvData() { return DataBufferSP(); }
2895
2896JITLoaderList &Process::GetJITLoaders() {
2897 if (!m_jit_loaders_ap) {
2898 m_jit_loaders_ap.reset(new JITLoaderList());
2899 JITLoader::LoadPlugins(this, *m_jit_loaders_ap);
2900 }
2901 return *m_jit_loaders_ap;
2902}
2903
2904SystemRuntime *Process::GetSystemRuntime() {
2905 if (!m_system_runtime_ap)
2906 m_system_runtime_ap.reset(SystemRuntime::FindPlugin(this));
2907 return m_system_runtime_ap.get();
2908}
2909
2910Process::AttachCompletionHandler::AttachCompletionHandler(Process *process,
2911 uint32_t exec_count)
2912 : NextEventAction(process), m_exec_count(exec_count) {
2913 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
2914 if (log)
2915 log->Printf(
2916 "Process::AttachCompletionHandler::%s process=%p, exec_count=%" PRIu32,
2917 __FUNCTION__, static_cast<void *>(process), exec_count);
2918}
2919
2920Process::NextEventAction::EventActionResult
2921Process::AttachCompletionHandler::PerformAction(lldb::EventSP &event_sp) {
2922 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
2923
2924 StateType state = ProcessEventData::GetStateFromEvent(event_sp.get());
2925 if (log)
2926 log->Printf(
2927 "Process::AttachCompletionHandler::%s called with state %s (%d)",
2928 __FUNCTION__, StateAsCString(state), static_cast<int>(state));
2929
2930 switch (state) {
2931 case eStateAttaching:
2932 return eEventActionSuccess;
2933
2934 case eStateRunning:
2935 case eStateConnected:
2936 return eEventActionRetry;
2937
2938 case eStateStopped:
2939 case eStateCrashed:
2940 // During attach, prior to sending the eStateStopped event,
2941 // lldb_private::Process subclasses must set the new process ID.
2942 assert(m_process->GetID() != LLDB_INVALID_PROCESS_ID);
2943 // We don't want these events to be reported, so go set the ShouldReportStop
2944 // here:
2945 m_process->GetThreadList().SetShouldReportStop(eVoteNo);
2946
2947 if (m_exec_count > 0) {
2948 --m_exec_count;
2949
2950 if (log)
2951 log->Printf("Process::AttachCompletionHandler::%s state %s: reduced "
2952 "remaining exec count to %" PRIu32 ", requesting resume",
2953 __FUNCTION__, StateAsCString(state), m_exec_count);
2954
2955 RequestResume();
2956 return eEventActionRetry;
2957 } else {
2958 if (log)
2959 log->Printf("Process::AttachCompletionHandler::%s state %s: no more "
2960 "execs expected to start, continuing with attach",
2961 __FUNCTION__, StateAsCString(state));
2962
2963 m_process->CompleteAttach();
2964 return eEventActionSuccess;
2965 }
2966 break;
2967
2968 default:
2969 case eStateExited:
2970 case eStateInvalid:
2971 break;
2972 }
2973
2974 m_exit_string.assign("No valid Process");
2975 return eEventActionExit;
2976}
2977
2978Process::NextEventAction::EventActionResult
2979Process::AttachCompletionHandler::HandleBeingInterrupted() {
2980 return eEventActionSuccess;
2981}
2982
2983const char *Process::AttachCompletionHandler::GetExitString() {
2984 return m_exit_string.c_str();
2985}
2986
2987ListenerSP ProcessAttachInfo::GetListenerForProcess(Debugger &debugger) {
2988 if (m_listener_sp)
2989 return m_listener_sp;
2990 else
2991 return debugger.GetListener();
2992}
2993
2994Error Process::Attach(ProcessAttachInfo &attach_info) {
2995 m_abi_sp.reset();
2996 m_process_input_reader.reset();
2997 m_dyld_ap.reset();
2998 m_jit_loaders_ap.reset();
2999 m_system_runtime_ap.reset();
3000 m_os_ap.reset();
3001 m_stop_info_override_callback = nullptr;
3002
3003 lldb::pid_t attach_pid = attach_info.GetProcessID();
3004 Error error;
3005 if (attach_pid == LLDB_INVALID_PROCESS_ID) {
3006 char process_name[PATH_MAX];
3007
3008 if (attach_info.GetExecutableFile().GetPath(process_name,
3009 sizeof(process_name))) {
3010 const bool wait_for_launch = attach_info.GetWaitForLaunch();
3011
3012 if (wait_for_launch) {
3013 error = WillAttachToProcessWithName(process_name, wait_for_launch);
3014 if (error.Success()) {
3015 if (m_public_run_lock.TrySetRunning()) {
3016 m_should_detach = true;
3017 const bool restarted = false;
3018 SetPublicState(eStateAttaching, restarted);
3019 // Now attach using these arguments.
3020 error = DoAttachToProcessWithName(process_name, attach_info);
3021 } else {
3022 // This shouldn't happen
3023 error.SetErrorString("failed to acquire process run lock");
3024 }
3025
3026 if (error.Fail()) {
3027 if (GetID() != LLDB_INVALID_PROCESS_ID) {
3028 SetID(LLDB_INVALID_PROCESS_ID);
3029 if (error.AsCString() == nullptr)
3030 error.SetErrorString("attach failed");
3031
3032 SetExitStatus(-1, error.AsCString());
3033 }
3034 } else {
3035 SetNextEventAction(new Process::AttachCompletionHandler(
3036 this, attach_info.GetResumeCount()));
3037 StartPrivateStateThread();
3038 }
3039 return error;
3040 }
3041 } else {
3042 ProcessInstanceInfoList process_infos;
3043 PlatformSP platform_sp(GetTarget().GetPlatform());
3044
3045 if (platform_sp) {
3046 ProcessInstanceInfoMatch match_info;
3047 match_info.GetProcessInfo() = attach_info;
3048 match_info.SetNameMatchType(eNameMatchEquals);
3049 platform_sp->FindProcesses(match_info, process_infos);
3050 const uint32_t num_matches = process_infos.GetSize();
3051 if (num_matches == 1) {
3052 attach_pid = process_infos.GetProcessIDAtIndex(0);
3053 // Fall through and attach using the above process ID
3054 } else {
3055 match_info.GetProcessInfo().GetExecutableFile().GetPath(
3056 process_name, sizeof(process_name));
3057 if (num_matches > 1) {
3058 StreamString s;
3059 ProcessInstanceInfo::DumpTableHeader(s, platform_sp.get(), true,
3060 false);
3061 for (size_t i = 0; i < num_matches; i++) {
3062 process_infos.GetProcessInfoAtIndex(i).DumpAsTableRow(
3063 s, platform_sp.get(), true, false);
3064 }
3065 error.SetErrorStringWithFormat(
3066 "more than one process named %s:\n%s", process_name,
3067 s.GetData());
3068 } else
3069 error.SetErrorStringWithFormat(
3070 "could not find a process named %s", process_name);
3071 }
3072 } else {
3073 error.SetErrorString(
3074 "invalid platform, can't find processes by name");
3075 return error;
3076 }
3077 }
3078 } else {
3079 error.SetErrorString("invalid process name");
3080 }
3081 }
3082
3083 if (attach_pid != LLDB_INVALID_PROCESS_ID) {
3084 error = WillAttachToProcessWithID(attach_pid);
3085 if (error.Success()) {
3086
3087 if (m_public_run_lock.TrySetRunning()) {
3088 // Now attach using these arguments.
3089 m_should_detach = true;
3090 const bool restarted = false;
3091 SetPublicState(eStateAttaching, restarted);
3092 error = DoAttachToProcessWithID(attach_pid, attach_info);
3093 } else {
3094 // This shouldn't happen
3095 error.SetErrorString("failed to acquire process run lock");
3096 }
3097
3098 if (error.Success()) {
3099 SetNextEventAction(new Process::AttachCompletionHandler(
3100 this, attach_info.GetResumeCount()));
3101 StartPrivateStateThread();
3102 } else {
Greg Clayton71337622011-02-24 22:24:29 +00003103 if (GetID() != LLDB_INVALID_PROCESS_ID)
Kate Stoneb9c1b512016-09-06 20:57:50 +00003104 SetID(LLDB_INVALID_PROCESS_ID);
Saleem Abdulrasool2d6a9ec2016-07-28 17:32:20 +00003105
Kate Stoneb9c1b512016-09-06 20:57:50 +00003106 const char *error_string = error.AsCString();
3107 if (error_string == nullptr)
3108 error_string = "attach failed";
Greg Clayton32e0a752011-03-30 18:16:51 +00003109
Kate Stoneb9c1b512016-09-06 20:57:50 +00003110 SetExitStatus(-1, error_string);
3111 }
Greg Claytonb766a732011-02-04 01:58:07 +00003112 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00003113 }
3114 return error;
Greg Claytonb766a732011-02-04 01:58:07 +00003115}
3116
Kate Stoneb9c1b512016-09-06 20:57:50 +00003117void Process::CompleteAttach() {
3118 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS |
3119 LIBLLDB_LOG_TARGET));
3120 if (log)
3121 log->Printf("Process::%s()", __FUNCTION__);
3122
3123 // Let the process subclass figure out at much as it can about the process
3124 // before we go looking for a dynamic loader plug-in.
3125 ArchSpec process_arch;
3126 DidAttach(process_arch);
3127
3128 if (process_arch.IsValid()) {
3129 GetTarget().SetArchitecture(process_arch);
3130 if (log) {
3131 const char *triple_str = process_arch.GetTriple().getTriple().c_str();
3132 log->Printf("Process::%s replacing process architecture with DidAttach() "
3133 "architecture: %s",
3134 __FUNCTION__, triple_str ? triple_str : "<null>");
3135 }
3136 }
3137
3138 // We just attached. If we have a platform, ask it for the process
3139 // architecture, and if it isn't
3140 // the same as the one we've already set, switch architectures.
3141 PlatformSP platform_sp(GetTarget().GetPlatform());
3142 assert(platform_sp);
3143 if (platform_sp) {
3144 const ArchSpec &target_arch = GetTarget().GetArchitecture();
3145 if (target_arch.IsValid() &&
3146 !platform_sp->IsCompatibleArchitecture(target_arch, false, nullptr)) {
3147 ArchSpec platform_arch;
3148 platform_sp =
3149 platform_sp->GetPlatformForArchitecture(target_arch, &platform_arch);
3150 if (platform_sp) {
3151 GetTarget().SetPlatform(platform_sp);
3152 GetTarget().SetArchitecture(platform_arch);
3153 if (log)
3154 log->Printf("Process::%s switching platform to %s and architecture "
3155 "to %s based on info from attach",
3156 __FUNCTION__, platform_sp->GetName().AsCString(""),
3157 platform_arch.GetTriple().getTriple().c_str());
3158 }
3159 } else if (!process_arch.IsValid()) {
3160 ProcessInstanceInfo process_info;
3161 GetProcessInfo(process_info);
3162 const ArchSpec &process_arch = process_info.GetArchitecture();
3163 if (process_arch.IsValid() &&
3164 !GetTarget().GetArchitecture().IsExactMatch(process_arch)) {
3165 GetTarget().SetArchitecture(process_arch);
3166 if (log)
3167 log->Printf("Process::%s switching architecture to %s based on info "
3168 "the platform retrieved for pid %" PRIu64,
3169 __FUNCTION__,
3170 process_arch.GetTriple().getTriple().c_str(), GetID());
3171 }
3172 }
3173 }
3174
3175 // We have completed the attach, now it is time to find the dynamic loader
3176 // plug-in
3177 DynamicLoader *dyld = GetDynamicLoader();
3178 if (dyld) {
3179 dyld->DidAttach();
3180 if (log) {
3181 ModuleSP exe_module_sp = GetTarget().GetExecutableModule();
3182 log->Printf("Process::%s after DynamicLoader::DidAttach(), target "
3183 "executable is %s (using %s plugin)",
3184 __FUNCTION__,
3185 exe_module_sp ? exe_module_sp->GetFileSpec().GetPath().c_str()
3186 : "<none>",
3187 dyld->GetPluginName().AsCString("<unnamed>"));
3188 }
3189 }
3190
3191 GetJITLoaders().DidAttach();
3192
3193 SystemRuntime *system_runtime = GetSystemRuntime();
3194 if (system_runtime) {
3195 system_runtime->DidAttach();
3196 if (log) {
3197 ModuleSP exe_module_sp = GetTarget().GetExecutableModule();
3198 log->Printf("Process::%s after SystemRuntime::DidAttach(), target "
3199 "executable is %s (using %s plugin)",
3200 __FUNCTION__,
3201 exe_module_sp ? exe_module_sp->GetFileSpec().GetPath().c_str()
3202 : "<none>",
3203 system_runtime->GetPluginName().AsCString("<unnamed>"));
3204 }
3205 }
3206
3207 m_os_ap.reset(OperatingSystem::FindPlugin(this, nullptr));
3208 // Figure out which one is the executable, and set that in our target:
3209 const ModuleList &target_modules = GetTarget().GetImages();
3210 std::lock_guard<std::recursive_mutex> guard(target_modules.GetMutex());
3211 size_t num_modules = target_modules.GetSize();
3212 ModuleSP new_executable_module_sp;
3213
3214 for (size_t i = 0; i < num_modules; i++) {
3215 ModuleSP module_sp(target_modules.GetModuleAtIndexUnlocked(i));
3216 if (module_sp && module_sp->IsExecutable()) {
3217 if (GetTarget().GetExecutableModulePointer() != module_sp.get())
3218 new_executable_module_sp = module_sp;
3219 break;
3220 }
3221 }
3222 if (new_executable_module_sp) {
3223 GetTarget().SetExecutableModule(new_executable_module_sp, false);
3224 if (log) {
3225 ModuleSP exe_module_sp = GetTarget().GetExecutableModule();
3226 log->Printf(
3227 "Process::%s after looping through modules, target executable is %s",
3228 __FUNCTION__,
3229 exe_module_sp ? exe_module_sp->GetFileSpec().GetPath().c_str()
3230 : "<none>");
3231 }
3232 }
3233
3234 m_stop_info_override_callback = process_arch.GetStopInfoOverrideCallback();
3235}
3236
Zachary Turner31659452016-11-17 21:15:14 +00003237Error Process::ConnectRemote(Stream *strm, llvm::StringRef remote_url) {
Kate Stoneb9c1b512016-09-06 20:57:50 +00003238 m_abi_sp.reset();
3239 m_process_input_reader.reset();
3240
3241 // Find the process and its architecture. Make sure it matches the
Zachary Turner31659452016-11-17 21:15:14 +00003242 // architecture of the current Target, and if not adjust it.
Kate Stoneb9c1b512016-09-06 20:57:50 +00003243
3244 Error error(DoConnectRemote(strm, remote_url));
3245 if (error.Success()) {
3246 if (GetID() != LLDB_INVALID_PROCESS_ID) {
3247 EventSP event_sp;
Pavel Labathe3e21cf2016-11-30 11:56:32 +00003248 StateType state = WaitForProcessStopPrivate(event_sp, llvm::None);
Kate Stoneb9c1b512016-09-06 20:57:50 +00003249
3250 if (state == eStateStopped || state == eStateCrashed) {
3251 // If we attached and actually have a process on the other end, then
3252 // this ended up being the equivalent of an attach.
3253 CompleteAttach();
3254
3255 // This delays passing the stopped event to listeners till
3256 // CompleteAttach gets a chance to complete...
3257 HandlePrivateEvent(event_sp);
3258 }
3259 }
3260
3261 if (PrivateStateThreadIsValid())
3262 ResumePrivateStateThread();
3263 else
3264 StartPrivateStateThread();
3265 }
3266 return error;
3267}
3268
3269Error Process::PrivateResume() {
3270 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS |
3271 LIBLLDB_LOG_STEP));
3272 if (log)
3273 log->Printf("Process::PrivateResume() m_stop_id = %u, public state: %s "
3274 "private state: %s",
3275 m_mod_id.GetStopID(), StateAsCString(m_public_state.GetValue()),
3276 StateAsCString(m_private_state.GetValue()));
3277
3278 Error error(WillResume());
3279 // Tell the process it is about to resume before the thread list
3280 if (error.Success()) {
3281 // Now let the thread list know we are about to resume so it
3282 // can let all of our threads know that they are about to be
3283 // resumed. Threads will each be called with
3284 // Thread::WillResume(StateType) where StateType contains the state
3285 // that they are supposed to have when the process is resumed
3286 // (suspended/running/stepping). Threads should also check
3287 // their resume signal in lldb::Thread::GetResumeSignal()
3288 // to see if they are supposed to start back up with a signal.
3289 if (m_thread_list.WillResume()) {
3290 // Last thing, do the PreResumeActions.
3291 if (!RunPreResumeActions()) {
3292 error.SetErrorStringWithFormat(
3293 "Process::PrivateResume PreResumeActions failed, not resuming.");
3294 } else {
3295 m_mod_id.BumpResumeID();
3296 error = DoResume();
3297 if (error.Success()) {
3298 DidResume();
3299 m_thread_list.DidResume();
3300 if (log)
3301 log->Printf("Process thinks the process has resumed.");
3302 }
3303 }
3304 } else {
3305 // Somebody wanted to run without running (e.g. we were faking a step from
3306 // one frame of a set of inlined
3307 // frames that share the same PC to another.) So generate a continue & a
3308 // stopped event,
3309 // and let the world handle them.
3310 if (log)
3311 log->Printf(
3312 "Process::PrivateResume() asked to simulate a start & stop.");
3313
3314 SetPrivateState(eStateRunning);
3315 SetPrivateState(eStateStopped);
3316 }
3317 } else if (log)
3318 log->Printf("Process::PrivateResume() got an error \"%s\".",
3319 error.AsCString("<unknown error>"));
3320 return error;
3321}
3322
3323Error Process::Halt(bool clear_thread_plans, bool use_run_lock) {
3324 if (!StateIsRunningState(m_public_state.GetValue()))
3325 return Error("Process is not running.");
3326
3327 // Don't clear the m_clear_thread_plans_on_stop, only set it to true if
3328 // in case it was already set and some thread plan logic calls halt on its
3329 // own.
3330 m_clear_thread_plans_on_stop |= clear_thread_plans;
3331
3332 ListenerSP halt_listener_sp(
3333 Listener::MakeListener("lldb.process.halt_listener"));
3334 HijackProcessEvents(halt_listener_sp);
3335
3336 EventSP event_sp;
3337
3338 SendAsyncInterrupt();
3339
3340 if (m_public_state.GetValue() == eStateAttaching) {
3341 // Don't hijack and eat the eStateExited as the code that was doing
3342 // the attach will be waiting for this event...
3343 RestoreProcessEvents();
3344 SetExitStatus(SIGKILL, "Cancelled async attach.");
3345 Destroy(false);
Mehdi Aminic1edf562016-11-11 04:29:25 +00003346 return Error();
Kate Stoneb9c1b512016-09-06 20:57:50 +00003347 }
3348
3349 // Wait for 10 second for the process to stop.
Pavel Labathe3e21cf2016-11-30 11:56:32 +00003350 StateType state = WaitForProcessToStop(
3351 seconds(10), &event_sp, true, halt_listener_sp, nullptr, use_run_lock);
Kate Stoneb9c1b512016-09-06 20:57:50 +00003352 RestoreProcessEvents();
3353
3354 if (state == eStateInvalid || !event_sp) {
3355 // We timed out and didn't get a stop event...
3356 return Error("Halt timed out. State = %s", StateAsCString(GetState()));
3357 }
3358
3359 BroadcastEvent(event_sp);
3360
Mehdi Aminic1edf562016-11-11 04:29:25 +00003361 return Error();
Kate Stoneb9c1b512016-09-06 20:57:50 +00003362}
3363
3364Error Process::StopForDestroyOrDetach(lldb::EventSP &exit_event_sp) {
3365 Error error;
3366
3367 // Check both the public & private states here. If we're hung evaluating an
3368 // expression, for instance, then
3369 // the public state will be stopped, but we still need to interrupt.
3370 if (m_public_state.GetValue() == eStateRunning ||
3371 m_private_state.GetValue() == eStateRunning) {
3372 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
Chris Lattner30fdc8d2010-06-08 16:52:24 +00003373 if (log)
Kate Stoneb9c1b512016-09-06 20:57:50 +00003374 log->Printf("Process::%s() About to stop.", __FUNCTION__);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00003375
Kate Stoneb9c1b512016-09-06 20:57:50 +00003376 ListenerSP listener_sp(
3377 Listener::MakeListener("lldb.Process.StopForDestroyOrDetach.hijack"));
3378 HijackProcessEvents(listener_sp);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00003379
Pavel Labath19da1f12015-12-07 12:36:52 +00003380 SendAsyncInterrupt();
3381
Kate Stoneb9c1b512016-09-06 20:57:50 +00003382 // Consume the interrupt event.
Pavel Labathe3e21cf2016-11-30 11:56:32 +00003383 StateType state =
3384 WaitForProcessToStop(seconds(10), &exit_event_sp, true, listener_sp);
Jim Inghambb3a2832011-01-29 01:49:25 +00003385
Pavel Labath19da1f12015-12-07 12:36:52 +00003386 RestoreProcessEvents();
Jim Inghambb3a2832011-01-29 01:49:25 +00003387
Kate Stoneb9c1b512016-09-06 20:57:50 +00003388 // If the process exited while we were waiting for it to stop, put the
3389 // exited event into
3390 // the shared pointer passed in and return. Our caller doesn't need to do
3391 // anything else, since
3392 // they don't have a process anymore...
3393
3394 if (state == eStateExited || m_private_state.GetValue() == eStateExited) {
3395 if (log)
3396 log->Printf("Process::%s() Process exited while waiting to stop.",
3397 __FUNCTION__);
3398 return error;
3399 } else
3400 exit_event_sp.reset(); // It is ok to consume any non-exit stop events
3401
3402 if (state != eStateStopped) {
3403 if (log)
3404 log->Printf("Process::%s() failed to stop, state is: %s", __FUNCTION__,
3405 StateAsCString(state));
3406 // If we really couldn't stop the process then we should just error out
3407 // here, but if the
3408 // lower levels just bobbled sending the event and we really are stopped,
3409 // then continue on.
3410 StateType private_state = m_private_state.GetValue();
3411 if (private_state != eStateStopped) {
3412 return Error("Attempt to stop the target in order to detach timed out. "
3413 "State = %s",
3414 StateAsCString(GetState()));
3415 }
3416 }
3417 }
3418 return error;
3419}
3420
3421Error Process::Detach(bool keep_stopped) {
3422 EventSP exit_event_sp;
3423 Error error;
3424 m_destroy_in_process = true;
3425
3426 error = WillDetach();
3427
3428 if (error.Success()) {
3429 if (DetachRequiresHalt()) {
3430 error = StopForDestroyOrDetach(exit_event_sp);
3431 if (!error.Success()) {
3432 m_destroy_in_process = false;
3433 return error;
3434 } else if (exit_event_sp) {
3435 // We shouldn't need to do anything else here. There's no process left
3436 // to detach from...
3437 StopPrivateStateThread();
3438 m_destroy_in_process = false;
3439 return error;
3440 }
3441 }
3442
3443 m_thread_list.DiscardThreadPlans();
3444 DisableAllBreakpointSites();
3445
3446 error = DoDetach(keep_stopped);
3447 if (error.Success()) {
3448 DidDetach();
3449 StopPrivateStateThread();
3450 } else {
3451 return error;
3452 }
3453 }
3454 m_destroy_in_process = false;
3455
3456 // If we exited when we were waiting for a process to stop, then
3457 // forward the event here so we don't lose the event
3458 if (exit_event_sp) {
3459 // Directly broadcast our exited event because we shut down our
3460 // private state thread above
3461 BroadcastEvent(exit_event_sp);
3462 }
3463
3464 // If we have been interrupted (to kill us) in the middle of running, we may
3465 // not end up propagating
3466 // the last events through the event system, in which case we might strand the
3467 // write lock. Unlock
3468 // it here so when we do to tear down the process we don't get an error
3469 // destroying the lock.
3470
3471 m_public_run_lock.SetStopped();
3472 return error;
3473}
3474
3475Error Process::Destroy(bool force_kill) {
3476
3477 // Tell ourselves we are in the process of destroying the process, so that we
3478 // don't do any unnecessary work
3479 // that might hinder the destruction. Remember to set this back to false when
3480 // we are done. That way if the attempt
3481 // failed and the process stays around for some reason it won't be in a
3482 // confused state.
3483
3484 if (force_kill)
3485 m_should_detach = false;
3486
3487 if (GetShouldDetach()) {
3488 // FIXME: This will have to be a process setting:
3489 bool keep_stopped = false;
3490 Detach(keep_stopped);
3491 }
3492
3493 m_destroy_in_process = true;
3494
3495 Error error(WillDestroy());
3496 if (error.Success()) {
3497 EventSP exit_event_sp;
3498 if (DestroyRequiresHalt()) {
3499 error = StopForDestroyOrDetach(exit_event_sp);
3500 }
3501
3502 if (m_public_state.GetValue() != eStateRunning) {
3503 // Ditch all thread plans, and remove all our breakpoints: in case we have
3504 // to restart the target to
3505 // kill it, we don't want it hitting a breakpoint...
3506 // Only do this if we've stopped, however, since if we didn't manage to
3507 // halt it above, then
3508 // we're not going to have much luck doing this now.
3509 m_thread_list.DiscardThreadPlans();
3510 DisableAllBreakpointSites();
3511 }
3512
3513 error = DoDestroy();
3514 if (error.Success()) {
3515 DidDestroy();
3516 StopPrivateStateThread();
3517 }
3518 m_stdio_communication.Disconnect();
3519 m_stdio_communication.StopReadThread();
3520 m_stdin_forward = false;
3521
3522 if (m_process_input_reader) {
3523 m_process_input_reader->SetIsDone(true);
3524 m_process_input_reader->Cancel();
3525 m_process_input_reader.reset();
3526 }
3527
3528 // If we exited when we were waiting for a process to stop, then
3529 // forward the event here so we don't lose the event
3530 if (exit_event_sp) {
3531 // Directly broadcast our exited event because we shut down our
3532 // private state thread above
3533 BroadcastEvent(exit_event_sp);
3534 }
3535
3536 // If we have been interrupted (to kill us) in the middle of running, we may
3537 // not end up propagating
3538 // the last events through the event system, in which case we might strand
3539 // the write lock. Unlock
3540 // it here so when we do to tear down the process we don't get an error
3541 // destroying the lock.
3542 m_public_run_lock.SetStopped();
3543 }
3544
3545 m_destroy_in_process = false;
3546
3547 return error;
3548}
3549
3550Error Process::Signal(int signal) {
3551 Error error(WillSignal());
3552 if (error.Success()) {
3553 error = DoSignal(signal);
3554 if (error.Success())
3555 DidSignal();
3556 }
3557 return error;
3558}
3559
3560void Process::SetUnixSignals(UnixSignalsSP &&signals_sp) {
3561 assert(signals_sp && "null signals_sp");
3562 m_unix_signals_sp = signals_sp;
3563}
3564
3565const lldb::UnixSignalsSP &Process::GetUnixSignals() {
3566 assert(m_unix_signals_sp && "null m_unix_signals_sp");
3567 return m_unix_signals_sp;
3568}
3569
3570lldb::ByteOrder Process::GetByteOrder() const {
3571 return GetTarget().GetArchitecture().GetByteOrder();
3572}
3573
3574uint32_t Process::GetAddressByteSize() const {
3575 return GetTarget().GetArchitecture().GetAddressByteSize();
3576}
3577
3578bool Process::ShouldBroadcastEvent(Event *event_ptr) {
3579 const StateType state =
3580 Process::ProcessEventData::GetStateFromEvent(event_ptr);
3581 bool return_value = true;
3582 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_EVENTS |
3583 LIBLLDB_LOG_PROCESS));
3584
3585 switch (state) {
3586 case eStateDetached:
3587 case eStateExited:
3588 case eStateUnloaded:
3589 m_stdio_communication.SynchronizeWithReadThread();
3590 m_stdio_communication.Disconnect();
3591 m_stdio_communication.StopReadThread();
3592 m_stdin_forward = false;
3593
3594 LLVM_FALLTHROUGH;
3595 case eStateConnected:
3596 case eStateAttaching:
3597 case eStateLaunching:
3598 // These events indicate changes in the state of the debugging session,
3599 // always report them.
3600 return_value = true;
3601 break;
3602 case eStateInvalid:
3603 // We stopped for no apparent reason, don't report it.
3604 return_value = false;
3605 break;
3606 case eStateRunning:
3607 case eStateStepping:
3608 // If we've started the target running, we handle the cases where we
3609 // are already running and where there is a transition from stopped to
3610 // running differently.
3611 // running -> running: Automatically suppress extra running events
3612 // stopped -> running: Report except when there is one or more no votes
3613 // and no yes votes.
3614 SynchronouslyNotifyStateChanged(state);
3615 if (m_force_next_event_delivery)
3616 return_value = true;
3617 else {
3618 switch (m_last_broadcast_state) {
3619 case eStateRunning:
3620 case eStateStepping:
3621 // We always suppress multiple runnings with no PUBLIC stop in between.
3622 return_value = false;
3623 break;
3624 default:
3625 // TODO: make this work correctly. For now always report
3626 // run if we aren't running so we don't miss any running
3627 // events. If I run the lldb/test/thread/a.out file and
3628 // break at main.cpp:58, run and hit the breakpoints on
3629 // multiple threads, then somehow during the stepping over
3630 // of all breakpoints no run gets reported.
3631
3632 // This is a transition from stop to run.
3633 switch (m_thread_list.ShouldReportRun(event_ptr)) {
3634 case eVoteYes:
3635 case eVoteNoOpinion:
3636 return_value = true;
3637 break;
3638 case eVoteNo:
3639 return_value = false;
3640 break;
3641 }
3642 break;
3643 }
3644 }
3645 break;
3646 case eStateStopped:
3647 case eStateCrashed:
3648 case eStateSuspended:
3649 // We've stopped. First see if we're going to restart the target.
3650 // If we are going to stop, then we always broadcast the event.
3651 // If we aren't going to stop, let the thread plans decide if we're going to
3652 // report this event.
3653 // If no thread has an opinion, we don't report it.
3654
3655 m_stdio_communication.SynchronizeWithReadThread();
3656 RefreshStateAfterStop();
3657 if (ProcessEventData::GetInterruptedFromEvent(event_ptr)) {
3658 if (log)
3659 log->Printf("Process::ShouldBroadcastEvent (%p) stopped due to an "
3660 "interrupt, state: %s",
3661 static_cast<void *>(event_ptr), StateAsCString(state));
3662 // Even though we know we are going to stop, we should let the threads
3663 // have a look at the stop,
3664 // so they can properly set their state.
3665 m_thread_list.ShouldStop(event_ptr);
3666 return_value = true;
3667 } else {
3668 bool was_restarted = ProcessEventData::GetRestartedFromEvent(event_ptr);
3669 bool should_resume = false;
3670
3671 // It makes no sense to ask "ShouldStop" if we've already been
3672 // restarted...
3673 // Asking the thread list is also not likely to go well, since we are
3674 // running again.
3675 // So in that case just report the event.
3676
3677 if (!was_restarted)
3678 should_resume = !m_thread_list.ShouldStop(event_ptr);
3679
3680 if (was_restarted || should_resume || m_resume_requested) {
3681 Vote stop_vote = m_thread_list.ShouldReportStop(event_ptr);
3682 if (log)
3683 log->Printf("Process::ShouldBroadcastEvent: should_resume: %i state: "
3684 "%s was_restarted: %i stop_vote: %d.",
3685 should_resume, StateAsCString(state), was_restarted,
3686 stop_vote);
3687
3688 switch (stop_vote) {
3689 case eVoteYes:
3690 return_value = true;
3691 break;
3692 case eVoteNoOpinion:
3693 case eVoteNo:
3694 return_value = false;
3695 break;
3696 }
3697
3698 if (!was_restarted) {
3699 if (log)
3700 log->Printf("Process::ShouldBroadcastEvent (%p) Restarting process "
3701 "from state: %s",
3702 static_cast<void *>(event_ptr), StateAsCString(state));
3703 ProcessEventData::SetRestartedInEvent(event_ptr, true);
3704 PrivateResume();
3705 }
3706 } else {
3707 return_value = true;
3708 SynchronouslyNotifyStateChanged(state);
3709 }
3710 }
3711 break;
3712 }
3713
3714 // Forcing the next event delivery is a one shot deal. So reset it here.
3715 m_force_next_event_delivery = false;
3716
3717 // We do some coalescing of events (for instance two consecutive running
3718 // events get coalesced.)
3719 // But we only coalesce against events we actually broadcast. So we use
3720 // m_last_broadcast_state
3721 // to track that. NB - you can't use "m_public_state.GetValue()" for that
3722 // purpose, as was originally done,
3723 // because the PublicState reflects the last event pulled off the queue, and
3724 // there may be several
3725 // events stacked up on the queue unserviced. So the PublicState may not
3726 // reflect the last broadcasted event
3727 // yet. m_last_broadcast_state gets updated here.
3728
3729 if (return_value)
3730 m_last_broadcast_state = state;
3731
3732 if (log)
3733 log->Printf("Process::ShouldBroadcastEvent (%p) => new state: %s, last "
3734 "broadcast state: %s - %s",
3735 static_cast<void *>(event_ptr), StateAsCString(state),
3736 StateAsCString(m_last_broadcast_state),
3737 return_value ? "YES" : "NO");
3738 return return_value;
3739}
3740
3741bool Process::StartPrivateStateThread(bool is_secondary_thread) {
3742 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EVENTS));
3743
3744 bool already_running = PrivateStateThreadIsValid();
3745 if (log)
3746 log->Printf("Process::%s()%s ", __FUNCTION__,
3747 already_running ? " already running"
3748 : " starting private state thread");
3749
3750 if (!is_secondary_thread && already_running)
3751 return true;
3752
3753 // Create a thread that watches our internal state and controls which
3754 // events make it to clients (into the DCProcess event queue).
3755 char thread_name[1024];
3756
3757 if (HostInfo::GetMaxThreadNameLength() <= 30) {
3758 // On platforms with abbreviated thread name lengths, choose thread names
3759 // that fit within the limit.
3760 if (already_running)
3761 snprintf(thread_name, sizeof(thread_name), "intern-state-OV");
3762 else
3763 snprintf(thread_name, sizeof(thread_name), "intern-state");
3764 } else {
3765 if (already_running)
3766 snprintf(thread_name, sizeof(thread_name),
3767 "<lldb.process.internal-state-override(pid=%" PRIu64 ")>",
3768 GetID());
3769 else
3770 snprintf(thread_name, sizeof(thread_name),
3771 "<lldb.process.internal-state(pid=%" PRIu64 ")>", GetID());
3772 }
3773
3774 // Create the private state thread, and start it running.
3775 PrivateStateThreadArgs *args_ptr =
3776 new PrivateStateThreadArgs(this, is_secondary_thread);
3777 m_private_state_thread =
3778 ThreadLauncher::LaunchThread(thread_name, Process::PrivateStateThread,
3779 (void *)args_ptr, nullptr, 8 * 1024 * 1024);
3780 if (m_private_state_thread.IsJoinable()) {
3781 ResumePrivateStateThread();
3782 return true;
3783 } else
3784 return false;
3785}
3786
3787void Process::PausePrivateStateThread() {
3788 ControlPrivateStateThread(eBroadcastInternalStateControlPause);
3789}
3790
3791void Process::ResumePrivateStateThread() {
3792 ControlPrivateStateThread(eBroadcastInternalStateControlResume);
3793}
3794
3795void Process::StopPrivateStateThread() {
3796 if (m_private_state_thread.IsJoinable())
3797 ControlPrivateStateThread(eBroadcastInternalStateControlStop);
3798 else {
3799 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
3800 if (log)
3801 log->Printf(
3802 "Went to stop the private state thread, but it was already invalid.");
3803 }
3804}
3805
3806void Process::ControlPrivateStateThread(uint32_t signal) {
3807 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
3808
3809 assert(signal == eBroadcastInternalStateControlStop ||
3810 signal == eBroadcastInternalStateControlPause ||
3811 signal == eBroadcastInternalStateControlResume);
3812
3813 if (log)
3814 log->Printf("Process::%s (signal = %d)", __FUNCTION__, signal);
3815
3816 // Signal the private state thread
3817 if (m_private_state_thread.IsJoinable()) {
3818 // Broadcast the event.
3819 // It is important to do this outside of the if below, because
3820 // it's possible that the thread state is invalid but that the
3821 // thread is waiting on a control event instead of simply being
3822 // on its way out (this should not happen, but it apparently can).
3823 if (log)
3824 log->Printf("Sending control event of type: %d.", signal);
3825 std::shared_ptr<EventDataReceipt> event_receipt_sp(new EventDataReceipt());
3826 m_private_state_control_broadcaster.BroadcastEvent(signal,
3827 event_receipt_sp);
3828
3829 // Wait for the event receipt or for the private state thread to exit
3830 bool receipt_received = false;
3831 if (PrivateStateThreadIsValid()) {
3832 while (!receipt_received) {
3833 bool timed_out = false;
3834 // Check for a receipt for 2 seconds and then check if the private state
3835 // thread is still around.
3836 receipt_received = event_receipt_sp->WaitForEventReceived(
3837 std::chrono::seconds(2), &timed_out);
3838 if (!receipt_received) {
3839 // Check if the private state thread is still around. If it isn't then
3840 // we are done waiting
3841 if (!PrivateStateThreadIsValid())
3842 break; // Private state thread exited or is exiting, we are done
3843 }
3844 }
3845 }
3846
3847 if (signal == eBroadcastInternalStateControlStop) {
3848 thread_result_t result = NULL;
3849 m_private_state_thread.Join(&result);
3850 m_private_state_thread.Reset();
3851 }
3852 } else {
3853 if (log)
3854 log->Printf(
3855 "Private state thread already dead, no need to signal it to stop.");
3856 }
3857}
3858
3859void Process::SendAsyncInterrupt() {
3860 if (PrivateStateThreadIsValid())
3861 m_private_state_broadcaster.BroadcastEvent(Process::eBroadcastBitInterrupt,
3862 nullptr);
3863 else
3864 BroadcastEvent(Process::eBroadcastBitInterrupt, nullptr);
3865}
3866
3867void Process::HandlePrivateEvent(EventSP &event_sp) {
3868 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
3869 m_resume_requested = false;
3870
3871 const StateType new_state =
3872 Process::ProcessEventData::GetStateFromEvent(event_sp.get());
3873
3874 // First check to see if anybody wants a shot at this event:
3875 if (m_next_event_action_ap) {
3876 NextEventAction::EventActionResult action_result =
3877 m_next_event_action_ap->PerformAction(event_sp);
3878 if (log)
3879 log->Printf("Ran next event action, result was %d.", action_result);
3880
3881 switch (action_result) {
3882 case NextEventAction::eEventActionSuccess:
3883 SetNextEventAction(nullptr);
3884 break;
3885
3886 case NextEventAction::eEventActionRetry:
3887 break;
3888
3889 case NextEventAction::eEventActionExit:
3890 // Handle Exiting Here. If we already got an exited event,
3891 // we should just propagate it. Otherwise, swallow this event,
3892 // and set our state to exit so the next event will kill us.
3893 if (new_state != eStateExited) {
3894 // FIXME: should cons up an exited event, and discard this one.
3895 SetExitStatus(0, m_next_event_action_ap->GetExitString());
3896 SetNextEventAction(nullptr);
3897 return;
3898 }
3899 SetNextEventAction(nullptr);
3900 break;
3901 }
3902 }
3903
3904 // See if we should broadcast this state to external clients?
3905 const bool should_broadcast = ShouldBroadcastEvent(event_sp.get());
3906
3907 if (should_broadcast) {
3908 const bool is_hijacked = IsHijackedForEvent(eBroadcastBitStateChanged);
3909 if (log) {
3910 log->Printf("Process::%s (pid = %" PRIu64
3911 ") broadcasting new state %s (old state %s) to %s",
3912 __FUNCTION__, GetID(), StateAsCString(new_state),
3913 StateAsCString(GetState()),
3914 is_hijacked ? "hijacked" : "public");
3915 }
3916 Process::ProcessEventData::SetUpdateStateOnRemoval(event_sp.get());
3917 if (StateIsRunningState(new_state)) {
3918 // Only push the input handler if we aren't fowarding events,
3919 // as this means the curses GUI is in use...
3920 // Or don't push it if we are launching since it will come up stopped.
3921 if (!GetTarget().GetDebugger().IsForwardingEvents() &&
3922 new_state != eStateLaunching && new_state != eStateAttaching) {
3923 PushProcessIOHandler();
3924 m_iohandler_sync.SetValue(m_iohandler_sync.GetValue() + 1,
3925 eBroadcastAlways);
3926 if (log)
3927 log->Printf("Process::%s updated m_iohandler_sync to %d",
3928 __FUNCTION__, m_iohandler_sync.GetValue());
3929 }
3930 } else if (StateIsStoppedState(new_state, false)) {
3931 if (!Process::ProcessEventData::GetRestartedFromEvent(event_sp.get())) {
3932 // If the lldb_private::Debugger is handling the events, we don't
3933 // want to pop the process IOHandler here, we want to do it when
3934 // we receive the stopped event so we can carefully control when
3935 // the process IOHandler is popped because when we stop we want to
3936 // display some text stating how and why we stopped, then maybe some
3937 // process/thread/frame info, and then we want the "(lldb) " prompt
3938 // to show up. If we pop the process IOHandler here, then we will
3939 // cause the command interpreter to become the top IOHandler after
3940 // the process pops off and it will update its prompt right away...
3941 // See the Debugger.cpp file where it calls the function as
3942 // "process_sp->PopProcessIOHandler()" to see where I am talking about.
3943 // Otherwise we end up getting overlapping "(lldb) " prompts and
3944 // garbled output.
3945 //
3946 // If we aren't handling the events in the debugger (which is indicated
3947 // by "m_target.GetDebugger().IsHandlingEvents()" returning false) or we
3948 // are hijacked, then we always pop the process IO handler manually.
3949 // Hijacking happens when the internal process state thread is running
3950 // thread plans, or when commands want to run in synchronous mode
3951 // and they call "process->WaitForProcessToStop()". An example of
3952 // something
3953 // that will hijack the events is a simple expression:
3954 //
3955 // (lldb) expr (int)puts("hello")
3956 //
3957 // This will cause the internal process state thread to resume and halt
3958 // the process (and _it_ will hijack the eBroadcastBitStateChanged
3959 // events) and we do need the IO handler to be pushed and popped
3960 // correctly.
3961
3962 if (is_hijacked || !GetTarget().GetDebugger().IsHandlingEvents())
3963 PopProcessIOHandler();
3964 }
Pavel Labath19da1f12015-12-07 12:36:52 +00003965 }
3966
3967 BroadcastEvent(event_sp);
Kate Stoneb9c1b512016-09-06 20:57:50 +00003968 } else {
3969 if (log) {
3970 log->Printf(
3971 "Process::%s (pid = %" PRIu64
3972 ") suppressing state %s (old state %s): should_broadcast == false",
3973 __FUNCTION__, GetID(), StateAsCString(new_state),
3974 StateAsCString(GetState()));
3975 }
3976 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +00003977}
3978
Kate Stoneb9c1b512016-09-06 20:57:50 +00003979Error Process::HaltPrivate() {
3980 EventSP event_sp;
3981 Error error(WillHalt());
3982 if (error.Fail())
Jim Ingham8af3b9c2013-03-29 01:18:12 +00003983 return error;
Kate Stoneb9c1b512016-09-06 20:57:50 +00003984
3985 // Ask the process subclass to actually halt our process
3986 bool caused_stop;
3987 error = DoHalt(caused_stop);
3988
3989 DidHalt();
3990 return error;
Jim Ingham8af3b9c2013-03-29 01:18:12 +00003991}
3992
Kate Stoneb9c1b512016-09-06 20:57:50 +00003993thread_result_t Process::PrivateStateThread(void *arg) {
3994 std::unique_ptr<PrivateStateThreadArgs> args_up(
3995 static_cast<PrivateStateThreadArgs *>(arg));
3996 thread_result_t result =
3997 args_up->process->RunPrivateStateThread(args_up->is_secondary_thread);
3998 return result;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00003999}
4000
Kate Stoneb9c1b512016-09-06 20:57:50 +00004001thread_result_t Process::RunPrivateStateThread(bool is_secondary_thread) {
4002 bool control_only = true;
Pavel Labath19da1f12015-12-07 12:36:52 +00004003
Kate Stoneb9c1b512016-09-06 20:57:50 +00004004 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
4005 if (log)
4006 log->Printf("Process::%s (arg = %p, pid = %" PRIu64 ") thread starting...",
4007 __FUNCTION__, static_cast<void *>(this), GetID());
Jason Molendaede31932015-04-17 05:01:58 +00004008
Kate Stoneb9c1b512016-09-06 20:57:50 +00004009 bool exit_now = false;
4010 bool interrupt_requested = false;
4011 while (!exit_now) {
Pavel Labath19da1f12015-12-07 12:36:52 +00004012 EventSP event_sp;
Pavel Labathe3e21cf2016-11-30 11:56:32 +00004013 GetEventsPrivate(event_sp, llvm::None, control_only);
Kate Stoneb9c1b512016-09-06 20:57:50 +00004014 if (event_sp->BroadcasterIs(&m_private_state_control_broadcaster)) {
4015 if (log)
4016 log->Printf("Process::%s (arg = %p, pid = %" PRIu64
4017 ") got a control event: %d",
4018 __FUNCTION__, static_cast<void *>(this), GetID(),
4019 event_sp->GetType());
Pavel Labath19da1f12015-12-07 12:36:52 +00004020
Kate Stoneb9c1b512016-09-06 20:57:50 +00004021 switch (event_sp->GetType()) {
4022 case eBroadcastInternalStateControlStop:
4023 exit_now = true;
4024 break; // doing any internal state management below
Pavel Labath19da1f12015-12-07 12:36:52 +00004025
Kate Stoneb9c1b512016-09-06 20:57:50 +00004026 case eBroadcastInternalStateControlPause:
4027 control_only = true;
4028 break;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004029
Kate Stoneb9c1b512016-09-06 20:57:50 +00004030 case eBroadcastInternalStateControlResume:
4031 control_only = false;
4032 break;
4033 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004034
Kate Stoneb9c1b512016-09-06 20:57:50 +00004035 continue;
4036 } else if (event_sp->GetType() == eBroadcastBitInterrupt) {
4037 if (m_public_state.GetValue() == eStateAttaching) {
4038 if (log)
4039 log->Printf("Process::%s (arg = %p, pid = %" PRIu64
4040 ") woke up with an interrupt while attaching - "
4041 "forwarding interrupt.",
4042 __FUNCTION__, static_cast<void *>(this), GetID());
4043 BroadcastEvent(eBroadcastBitInterrupt, nullptr);
4044 } else if (StateIsRunningState(m_last_broadcast_state)) {
4045 if (log)
4046 log->Printf("Process::%s (arg = %p, pid = %" PRIu64
4047 ") woke up with an interrupt - Halting.",
4048 __FUNCTION__, static_cast<void *>(this), GetID());
4049 Error error = HaltPrivate();
4050 if (error.Fail() && log)
4051 log->Printf("Process::%s (arg = %p, pid = %" PRIu64
4052 ") failed to halt the process: %s",
4053 __FUNCTION__, static_cast<void *>(this), GetID(),
4054 error.AsCString());
4055 // Halt should generate a stopped event. Make a note of the fact that we
4056 // were
4057 // doing the interrupt, so we can set the interrupted flag after we
4058 // receive the
4059 // event. We deliberately set this to true even if HaltPrivate failed,
4060 // so that we
4061 // can interrupt on the next natural stop.
4062 interrupt_requested = true;
4063 } else {
4064 // This can happen when someone (e.g. Process::Halt) sees that we are
4065 // running and
4066 // sends an interrupt request, but the process actually stops before we
4067 // receive
4068 // it. In that case, we can just ignore the request. We use
4069 // m_last_broadcast_state, because the Stopped event may not have been
4070 // popped of
4071 // the event queue yet, which is when the public state gets updated.
4072 if (log)
4073 log->Printf(
4074 "Process::%s ignoring interrupt as we have already stopped.",
4075 __FUNCTION__);
4076 }
4077 continue;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004078 }
4079
Kate Stoneb9c1b512016-09-06 20:57:50 +00004080 const StateType internal_state =
4081 Process::ProcessEventData::GetStateFromEvent(event_sp.get());
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004082
Kate Stoneb9c1b512016-09-06 20:57:50 +00004083 if (internal_state != eStateInvalid) {
4084 if (m_clear_thread_plans_on_stop &&
4085 StateIsStoppedState(internal_state, true)) {
4086 m_clear_thread_plans_on_stop = false;
4087 m_thread_list.DiscardThreadPlans();
4088 }
4089
4090 if (interrupt_requested) {
4091 if (StateIsStoppedState(internal_state, true)) {
4092 // We requested the interrupt, so mark this as such in the stop event
4093 // so
4094 // clients can tell an interrupted process from a natural stop
4095 ProcessEventData::SetInterruptedInEvent(event_sp.get(), true);
4096 interrupt_requested = false;
4097 } else if (log) {
4098 log->Printf("Process::%s interrupt_requested, but a non-stopped "
4099 "state '%s' received.",
4100 __FUNCTION__, StateAsCString(internal_state));
4101 }
4102 }
4103
4104 HandlePrivateEvent(event_sp);
4105 }
4106
4107 if (internal_state == eStateInvalid || internal_state == eStateExited ||
4108 internal_state == eStateDetached) {
4109 if (log)
4110 log->Printf("Process::%s (arg = %p, pid = %" PRIu64
4111 ") about to exit with internal state %s...",
4112 __FUNCTION__, static_cast<void *>(this), GetID(),
4113 StateAsCString(internal_state));
4114
4115 break;
4116 }
4117 }
4118
4119 // Verify log is still enabled before attempting to write to it...
4120 if (log)
4121 log->Printf("Process::%s (arg = %p, pid = %" PRIu64 ") thread exiting...",
4122 __FUNCTION__, static_cast<void *>(this), GetID());
4123
4124 // If we are a secondary thread, then the primary thread we are working for
4125 // will have already
4126 // acquired the public_run_lock, and isn't done with what it was doing yet, so
4127 // don't
4128 // try to change it on the way out.
4129 if (!is_secondary_thread)
4130 m_public_run_lock.SetStopped();
4131 return NULL;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004132}
4133
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004134//------------------------------------------------------------------
4135// Process Event Data
4136//------------------------------------------------------------------
4137
Kate Stoneb9c1b512016-09-06 20:57:50 +00004138Process::ProcessEventData::ProcessEventData()
4139 : EventData(), m_process_wp(), m_state(eStateInvalid), m_restarted(false),
4140 m_update_state(0), m_interrupted(false) {}
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004141
Kate Stoneb9c1b512016-09-06 20:57:50 +00004142Process::ProcessEventData::ProcessEventData(const ProcessSP &process_sp,
4143 StateType state)
4144 : EventData(), m_process_wp(), m_state(state), m_restarted(false),
4145 m_update_state(0), m_interrupted(false) {
4146 if (process_sp)
4147 m_process_wp = process_sp;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004148}
4149
Eugene Zelenko8f30a652015-10-23 18:39:37 +00004150Process::ProcessEventData::~ProcessEventData() = default;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004151
Kate Stoneb9c1b512016-09-06 20:57:50 +00004152const ConstString &Process::ProcessEventData::GetFlavorString() {
4153 static ConstString g_flavor("Process::ProcessEventData");
4154 return g_flavor;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004155}
4156
Kate Stoneb9c1b512016-09-06 20:57:50 +00004157const ConstString &Process::ProcessEventData::GetFlavor() const {
4158 return ProcessEventData::GetFlavorString();
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004159}
4160
Kate Stoneb9c1b512016-09-06 20:57:50 +00004161void Process::ProcessEventData::DoOnRemoval(Event *event_ptr) {
4162 ProcessSP process_sp(m_process_wp.lock());
Greg Clayton2e309072015-07-17 23:42:28 +00004163
Kate Stoneb9c1b512016-09-06 20:57:50 +00004164 if (!process_sp)
4165 return;
Greg Claytonf4b47e12010-08-04 01:40:35 +00004166
Kate Stoneb9c1b512016-09-06 20:57:50 +00004167 // This function gets called twice for each event, once when the event gets
4168 // pulled
4169 // off of the private process event queue, and then any number of times, first
4170 // when it gets pulled off of
4171 // the public event queue, then other times when we're pretending that this is
4172 // where we stopped at the
4173 // end of expression evaluation. m_update_state is used to distinguish these
4174 // three cases; it is 0 when we're just pulling it off for private handling,
4175 // and > 1 for expression evaluation, and we don't want to do the breakpoint
4176 // command handling then.
4177 if (m_update_state != 1)
4178 return;
4179
4180 process_sp->SetPublicState(
4181 m_state, Process::ProcessEventData::GetRestartedFromEvent(event_ptr));
4182
Jason Molendab3a3cd12016-12-08 06:27:29 +00004183 if (m_state == eStateStopped && !m_restarted) {
4184 // Let process subclasses know we are about to do a public stop and
4185 // do anything they might need to in order to speed up register and
4186 // memory accesses.
4187 process_sp->WillPublicStop();
4188 }
4189
Kate Stoneb9c1b512016-09-06 20:57:50 +00004190 // If this is a halt event, even if the halt stopped with some reason other
4191 // than a plain interrupt (e.g. we had
4192 // already stopped for a breakpoint when the halt request came through) don't
4193 // do the StopInfo actions, as they may
4194 // end up restarting the process.
4195 if (m_interrupted)
4196 return;
4197
4198 // If we're stopped and haven't restarted, then do the StopInfo actions here:
4199 if (m_state == eStateStopped && !m_restarted) {
Kate Stoneb9c1b512016-09-06 20:57:50 +00004200 ThreadList &curr_thread_list = process_sp->GetThreadList();
4201 uint32_t num_threads = curr_thread_list.GetSize();
4202 uint32_t idx;
4203
4204 // The actions might change one of the thread's stop_info's opinions about
4205 // whether we should
4206 // stop the process, so we need to query that as we go.
4207
4208 // One other complication here, is that we try to catch any case where the
4209 // target has run (except for expressions)
4210 // and immediately exit, but if we get that wrong (which is possible) then
4211 // the thread list might have changed, and
4212 // that would cause our iteration here to crash. We could make a copy of
4213 // the thread list, but we'd really like
4214 // to also know if it has changed at all, so we make up a vector of the
4215 // thread ID's and check what we get back
4216 // against this list & bag out if anything differs.
4217 std::vector<uint32_t> thread_index_array(num_threads);
4218 for (idx = 0; idx < num_threads; ++idx)
4219 thread_index_array[idx] =
4220 curr_thread_list.GetThreadAtIndex(idx)->GetIndexID();
4221
4222 // Use this to track whether we should continue from here. We will only
4223 // continue the target running if
4224 // no thread says we should stop. Of course if some thread's PerformAction
4225 // actually sets the target running,
4226 // then it doesn't matter what the other threads say...
4227
4228 bool still_should_stop = false;
4229
4230 // Sometimes - for instance if we have a bug in the stub we are talking to,
4231 // we stop but no thread has a
4232 // valid stop reason. In that case we should just stop, because we have no
4233 // way of telling what the right
4234 // thing to do is, and it's better to let the user decide than continue
4235 // behind their backs.
4236
4237 bool does_anybody_have_an_opinion = false;
4238
4239 for (idx = 0; idx < num_threads; ++idx) {
4240 curr_thread_list = process_sp->GetThreadList();
4241 if (curr_thread_list.GetSize() != num_threads) {
4242 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_STEP |
4243 LIBLLDB_LOG_PROCESS));
4244 if (log)
4245 log->Printf(
4246 "Number of threads changed from %u to %u while processing event.",
4247 num_threads, curr_thread_list.GetSize());
4248 break;
4249 }
4250
4251 lldb::ThreadSP thread_sp = curr_thread_list.GetThreadAtIndex(idx);
4252
4253 if (thread_sp->GetIndexID() != thread_index_array[idx]) {
4254 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_STEP |
4255 LIBLLDB_LOG_PROCESS));
4256 if (log)
4257 log->Printf("The thread at position %u changed from %u to %u while "
4258 "processing event.",
4259 idx, thread_index_array[idx], thread_sp->GetIndexID());
4260 break;
4261 }
4262
4263 StopInfoSP stop_info_sp = thread_sp->GetStopInfo();
4264 if (stop_info_sp && stop_info_sp->IsValid()) {
4265 does_anybody_have_an_opinion = true;
4266 bool this_thread_wants_to_stop;
4267 if (stop_info_sp->GetOverrideShouldStop()) {
4268 this_thread_wants_to_stop =
4269 stop_info_sp->GetOverriddenShouldStopValue();
4270 } else {
4271 stop_info_sp->PerformAction(event_ptr);
4272 // The stop action might restart the target. If it does, then we want
4273 // to mark that in the
4274 // event so that whoever is receiving it will know to wait for the
4275 // running event and reflect
4276 // that state appropriately.
4277 // We also need to stop processing actions, since they aren't
4278 // expecting the target to be running.
4279
4280 // FIXME: we might have run.
4281 if (stop_info_sp->HasTargetRunSinceMe()) {
4282 SetRestarted(true);
4283 break;
4284 }
4285
4286 this_thread_wants_to_stop = stop_info_sp->ShouldStop(event_ptr);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004287 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00004288
4289 if (!still_should_stop)
4290 still_should_stop = this_thread_wants_to_stop;
4291 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004292 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00004293
4294 if (!GetRestarted()) {
4295 if (!still_should_stop && does_anybody_have_an_opinion) {
4296 // We've been asked to continue, so do that here.
4297 SetRestarted(true);
4298 // Use the public resume method here, since this is just
4299 // extending a public resume.
4300 process_sp->PrivateResume();
4301 } else {
4302 // If we didn't restart, run the Stop Hooks here:
4303 // They might also restart the target, so watch for that.
4304 process_sp->GetTarget().RunStopHooks();
4305 if (process_sp->GetPrivateState() == eStateRunning)
4306 SetRestarted(true);
4307 }
4308 }
4309 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004310}
4311
Kate Stoneb9c1b512016-09-06 20:57:50 +00004312void Process::ProcessEventData::Dump(Stream *s) const {
4313 ProcessSP process_sp(m_process_wp.lock());
Greg Claytonaeb3b8b2015-05-29 03:20:37 +00004314
Kate Stoneb9c1b512016-09-06 20:57:50 +00004315 if (process_sp)
4316 s->Printf(" process = %p (pid = %" PRIu64 "), ",
4317 static_cast<void *>(process_sp.get()), process_sp->GetID());
4318 else
4319 s->PutCString(" process = NULL, ");
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004320
Kate Stoneb9c1b512016-09-06 20:57:50 +00004321 s->Printf("state = %s", StateAsCString(GetState()));
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004322}
4323
4324const Process::ProcessEventData *
Kate Stoneb9c1b512016-09-06 20:57:50 +00004325Process::ProcessEventData::GetEventDataFromEvent(const Event *event_ptr) {
4326 if (event_ptr) {
4327 const EventData *event_data = event_ptr->GetData();
4328 if (event_data &&
4329 event_data->GetFlavor() == ProcessEventData::GetFlavorString())
4330 return static_cast<const ProcessEventData *>(event_ptr->GetData());
4331 }
4332 return nullptr;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004333}
4334
4335ProcessSP
Kate Stoneb9c1b512016-09-06 20:57:50 +00004336Process::ProcessEventData::GetProcessFromEvent(const Event *event_ptr) {
4337 ProcessSP process_sp;
4338 const ProcessEventData *data = GetEventDataFromEvent(event_ptr);
4339 if (data)
4340 process_sp = data->GetProcessSP();
4341 return process_sp;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004342}
4343
Kate Stoneb9c1b512016-09-06 20:57:50 +00004344StateType Process::ProcessEventData::GetStateFromEvent(const Event *event_ptr) {
4345 const ProcessEventData *data = GetEventDataFromEvent(event_ptr);
4346 if (data == nullptr)
4347 return eStateInvalid;
4348 else
4349 return data->GetState();
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004350}
4351
Kate Stoneb9c1b512016-09-06 20:57:50 +00004352bool Process::ProcessEventData::GetRestartedFromEvent(const Event *event_ptr) {
4353 const ProcessEventData *data = GetEventDataFromEvent(event_ptr);
4354 if (data == nullptr)
4355 return false;
4356 else
4357 return data->GetRestarted();
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004358}
4359
Kate Stoneb9c1b512016-09-06 20:57:50 +00004360void Process::ProcessEventData::SetRestartedInEvent(Event *event_ptr,
4361 bool new_value) {
4362 ProcessEventData *data =
4363 const_cast<ProcessEventData *>(GetEventDataFromEvent(event_ptr));
4364 if (data != nullptr)
4365 data->SetRestarted(new_value);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004366}
4367
Jim Ingham0161b492013-02-09 01:29:05 +00004368size_t
Kate Stoneb9c1b512016-09-06 20:57:50 +00004369Process::ProcessEventData::GetNumRestartedReasons(const Event *event_ptr) {
4370 ProcessEventData *data =
4371 const_cast<ProcessEventData *>(GetEventDataFromEvent(event_ptr));
4372 if (data != nullptr)
4373 return data->GetNumRestartedReasons();
4374 else
4375 return 0;
Jim Ingham0161b492013-02-09 01:29:05 +00004376}
4377
4378const char *
Kate Stoneb9c1b512016-09-06 20:57:50 +00004379Process::ProcessEventData::GetRestartedReasonAtIndex(const Event *event_ptr,
4380 size_t idx) {
4381 ProcessEventData *data =
4382 const_cast<ProcessEventData *>(GetEventDataFromEvent(event_ptr));
4383 if (data != nullptr)
4384 return data->GetRestartedReasonAtIndex(idx);
4385 else
4386 return nullptr;
Jim Ingham0161b492013-02-09 01:29:05 +00004387}
4388
Kate Stoneb9c1b512016-09-06 20:57:50 +00004389void Process::ProcessEventData::AddRestartedReason(Event *event_ptr,
4390 const char *reason) {
4391 ProcessEventData *data =
4392 const_cast<ProcessEventData *>(GetEventDataFromEvent(event_ptr));
4393 if (data != nullptr)
4394 data->AddRestartedReason(reason);
Jim Ingham0161b492013-02-09 01:29:05 +00004395}
4396
Kate Stoneb9c1b512016-09-06 20:57:50 +00004397bool Process::ProcessEventData::GetInterruptedFromEvent(
4398 const Event *event_ptr) {
4399 const ProcessEventData *data = GetEventDataFromEvent(event_ptr);
4400 if (data == nullptr)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004401 return false;
Kate Stoneb9c1b512016-09-06 20:57:50 +00004402 else
4403 return data->GetInterrupted();
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004404}
4405
Kate Stoneb9c1b512016-09-06 20:57:50 +00004406void Process::ProcessEventData::SetInterruptedInEvent(Event *event_ptr,
4407 bool new_value) {
4408 ProcessEventData *data =
4409 const_cast<ProcessEventData *>(GetEventDataFromEvent(event_ptr));
4410 if (data != nullptr)
4411 data->SetInterrupted(new_value);
Greg Claytond9e416c2012-02-18 05:35:26 +00004412}
4413
Kate Stoneb9c1b512016-09-06 20:57:50 +00004414bool Process::ProcessEventData::SetUpdateStateOnRemoval(Event *event_ptr) {
4415 ProcessEventData *data =
4416 const_cast<ProcessEventData *>(GetEventDataFromEvent(event_ptr));
4417 if (data) {
4418 data->SetUpdateStateOnRemoval();
4419 return true;
4420 }
4421 return false;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00004422}
4423
Kate Stoneb9c1b512016-09-06 20:57:50 +00004424lldb::TargetSP Process::CalculateTarget() { return m_target_sp.lock(); }
4425
4426void Process::CalculateExecutionContext(ExecutionContext &exe_ctx) {
4427 exe_ctx.SetTargetPtr(&GetTarget());
4428 exe_ctx.SetProcessPtr(this);
4429 exe_ctx.SetThreadPtr(nullptr);
4430 exe_ctx.SetFramePtr(nullptr);
4431}
4432
4433// uint32_t
4434// Process::ListProcessesMatchingName (const char *name, StringList &matches,
4435// std::vector<lldb::pid_t> &pids)
Greg Claytone996fd32011-03-08 22:40:15 +00004436//{
4437// return 0;
4438//}
Kate Stoneb9c1b512016-09-06 20:57:50 +00004439//
4440// ArchSpec
4441// Process::GetArchSpecForExistingProcess (lldb::pid_t pid)
Greg Claytone996fd32011-03-08 22:40:15 +00004442//{
4443// return Host::GetArchSpecForExistingProcess (pid);
4444//}
4445//
Kate Stoneb9c1b512016-09-06 20:57:50 +00004446// ArchSpec
4447// Process::GetArchSpecForExistingProcess (const char *process_name)
Greg Claytone996fd32011-03-08 22:40:15 +00004448//{
4449// return Host::GetArchSpecForExistingProcess (process_name);
4450//}
Eugene Zelenkoda8cf8a2016-03-01 00:55:51 +00004451
Kate Stoneb9c1b512016-09-06 20:57:50 +00004452void Process::AppendSTDOUT(const char *s, size_t len) {
4453 std::lock_guard<std::recursive_mutex> guard(m_stdio_communication_mutex);
4454 m_stdout_data.append(s, len);
4455 BroadcastEventIfUnique(eBroadcastBitSTDOUT,
4456 new ProcessEventData(shared_from_this(), GetState()));
Caroline Ticeef5c6d02010-11-16 05:07:41 +00004457}
4458
Kate Stoneb9c1b512016-09-06 20:57:50 +00004459void Process::AppendSTDERR(const char *s, size_t len) {
4460 std::lock_guard<std::recursive_mutex> guard(m_stdio_communication_mutex);
4461 m_stderr_data.append(s, len);
4462 BroadcastEventIfUnique(eBroadcastBitSTDERR,
4463 new ProcessEventData(shared_from_this(), GetState()));
Greg Clayton93e86192011-11-13 04:45:22 +00004464}
4465
Kate Stoneb9c1b512016-09-06 20:57:50 +00004466void Process::BroadcastAsyncProfileData(const std::string &one_profile_data) {
4467 std::lock_guard<std::recursive_mutex> guard(m_profile_data_comm_mutex);
4468 m_profile_data.push_back(one_profile_data);
4469 BroadcastEventIfUnique(eBroadcastBitProfileData,
4470 new ProcessEventData(shared_from_this(), GetState()));
Han Ming Ongab3b8b22012-11-17 00:21:04 +00004471}
4472
Kate Stoneb9c1b512016-09-06 20:57:50 +00004473void Process::BroadcastStructuredData(const StructuredData::ObjectSP &object_sp,
4474 const StructuredDataPluginSP &plugin_sp) {
4475 BroadcastEvent(
4476 eBroadcastBitStructuredData,
4477 new EventDataStructuredData(shared_from_this(), object_sp, plugin_sp));
Todd Fiala75930012016-08-19 04:21:48 +00004478}
4479
4480StructuredDataPluginSP
Kate Stoneb9c1b512016-09-06 20:57:50 +00004481Process::GetStructuredDataPlugin(const ConstString &type_name) const {
4482 auto find_it = m_structured_data_plugin_map.find(type_name);
4483 if (find_it != m_structured_data_plugin_map.end())
4484 return find_it->second;
4485 else
4486 return StructuredDataPluginSP();
Todd Fiala75930012016-08-19 04:21:48 +00004487}
4488
Kate Stoneb9c1b512016-09-06 20:57:50 +00004489size_t Process::GetAsyncProfileData(char *buf, size_t buf_size, Error &error) {
4490 std::lock_guard<std::recursive_mutex> guard(m_profile_data_comm_mutex);
4491 if (m_profile_data.empty())
4492 return 0;
4493
4494 std::string &one_profile_data = m_profile_data.front();
4495 size_t bytes_available = one_profile_data.size();
4496 if (bytes_available > 0) {
4497 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
4498 if (log)
4499 log->Printf("Process::GetProfileData (buf = %p, size = %" PRIu64 ")",
4500 static_cast<void *>(buf), static_cast<uint64_t>(buf_size));
4501 if (bytes_available > buf_size) {
4502 memcpy(buf, one_profile_data.c_str(), buf_size);
4503 one_profile_data.erase(0, buf_size);
4504 bytes_available = buf_size;
4505 } else {
4506 memcpy(buf, one_profile_data.c_str(), bytes_available);
4507 m_profile_data.erase(m_profile_data.begin());
Han Ming Ongab3b8b22012-11-17 00:21:04 +00004508 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00004509 }
4510 return bytes_available;
Han Ming Ongab3b8b22012-11-17 00:21:04 +00004511}
4512
Greg Clayton93e86192011-11-13 04:45:22 +00004513//------------------------------------------------------------------
4514// Process STDIO
4515//------------------------------------------------------------------
4516
Kate Stoneb9c1b512016-09-06 20:57:50 +00004517size_t Process::GetSTDOUT(char *buf, size_t buf_size, Error &error) {
4518 std::lock_guard<std::recursive_mutex> guard(m_stdio_communication_mutex);
4519 size_t bytes_available = m_stdout_data.size();
4520 if (bytes_available > 0) {
4521 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
4522 if (log)
4523 log->Printf("Process::GetSTDOUT (buf = %p, size = %" PRIu64 ")",
4524 static_cast<void *>(buf), static_cast<uint64_t>(buf_size));
4525 if (bytes_available > buf_size) {
4526 memcpy(buf, m_stdout_data.c_str(), buf_size);
4527 m_stdout_data.erase(0, buf_size);
4528 bytes_available = buf_size;
4529 } else {
4530 memcpy(buf, m_stdout_data.c_str(), bytes_available);
4531 m_stdout_data.clear();
Greg Clayton93e86192011-11-13 04:45:22 +00004532 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00004533 }
4534 return bytes_available;
Greg Clayton93e86192011-11-13 04:45:22 +00004535}
4536
Kate Stoneb9c1b512016-09-06 20:57:50 +00004537size_t Process::GetSTDERR(char *buf, size_t buf_size, Error &error) {
4538 std::lock_guard<std::recursive_mutex> gaurd(m_stdio_communication_mutex);
4539 size_t bytes_available = m_stderr_data.size();
4540 if (bytes_available > 0) {
4541 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
4542 if (log)
4543 log->Printf("Process::GetSTDERR (buf = %p, size = %" PRIu64 ")",
4544 static_cast<void *>(buf), static_cast<uint64_t>(buf_size));
4545 if (bytes_available > buf_size) {
4546 memcpy(buf, m_stderr_data.c_str(), buf_size);
4547 m_stderr_data.erase(0, buf_size);
4548 bytes_available = buf_size;
4549 } else {
4550 memcpy(buf, m_stderr_data.c_str(), bytes_available);
4551 m_stderr_data.clear();
Greg Clayton93e86192011-11-13 04:45:22 +00004552 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00004553 }
4554 return bytes_available;
Greg Clayton93e86192011-11-13 04:45:22 +00004555}
4556
Kate Stoneb9c1b512016-09-06 20:57:50 +00004557void Process::STDIOReadThreadBytesReceived(void *baton, const void *src,
4558 size_t src_len) {
4559 Process *process = (Process *)baton;
4560 process->AppendSTDOUT(static_cast<const char *>(src), src_len);
Caroline Ticeef5c6d02010-11-16 05:07:41 +00004561}
4562
Kate Stoneb9c1b512016-09-06 20:57:50 +00004563class IOHandlerProcessSTDIO : public IOHandler {
Greg Clayton44d93782014-01-27 23:43:24 +00004564public:
Kate Stoneb9c1b512016-09-06 20:57:50 +00004565 IOHandlerProcessSTDIO(Process *process, int write_fd)
4566 : IOHandler(process->GetTarget().GetDebugger(),
4567 IOHandler::Type::ProcessIO),
Sam McCall6f43d9d2016-11-15 10:58:16 +00004568 m_process(process), m_write_file(write_fd, false) {
Kate Stoneb9c1b512016-09-06 20:57:50 +00004569 m_pipe.CreateNew(false);
4570 m_read_file.SetDescriptor(GetInputFD(), false);
4571 }
4572
4573 ~IOHandlerProcessSTDIO() override = default;
4574
4575 // Each IOHandler gets to run until it is done. It should read data
4576 // from the "in" and place output into "out" and "err and return
4577 // when done.
4578 void Run() override {
4579 if (!m_read_file.IsValid() || !m_write_file.IsValid() ||
4580 !m_pipe.CanRead() || !m_pipe.CanWrite()) {
4581 SetIsDone(true);
4582 return;
Greg Clayton44d93782014-01-27 23:43:24 +00004583 }
4584
Kate Stoneb9c1b512016-09-06 20:57:50 +00004585 SetIsDone(false);
4586 const int read_fd = m_read_file.GetDescriptor();
4587 TerminalState terminal_state;
4588 terminal_state.Save(read_fd, false);
4589 Terminal terminal(read_fd);
4590 terminal.SetCanonical(false);
4591 terminal.SetEcho(false);
Deepak Panickal914b8d92014-01-31 18:48:46 +00004592// FD_ZERO, FD_SET are not supported on windows
Hafiz Abid Qadeer6eff1012014-03-12 10:45:23 +00004593#ifndef _WIN32
Kate Stoneb9c1b512016-09-06 20:57:50 +00004594 const int pipe_read_fd = m_pipe.GetReadFileDescriptor();
4595 m_is_running = true;
4596 while (!GetIsDone()) {
4597 SelectHelper select_helper;
4598 select_helper.FDSetRead(read_fd);
4599 select_helper.FDSetRead(pipe_read_fd);
4600 Error error = select_helper.Select();
Greg Clayton860582f2016-02-26 17:36:44 +00004601
Kate Stoneb9c1b512016-09-06 20:57:50 +00004602 if (error.Fail()) {
Greg Clayton860582f2016-02-26 17:36:44 +00004603 SetIsDone(true);
Kate Stoneb9c1b512016-09-06 20:57:50 +00004604 } else {
4605 char ch = 0;
4606 size_t n;
4607 if (select_helper.FDIsSetRead(read_fd)) {
4608 n = 1;
4609 if (m_read_file.Read(&ch, n).Success() && n == 1) {
4610 if (m_write_file.Write(&ch, n).Fail() || n != 1)
4611 SetIsDone(true);
4612 } else
4613 SetIsDone(true);
Greg Clayton860582f2016-02-26 17:36:44 +00004614 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00004615 if (select_helper.FDIsSetRead(pipe_read_fd)) {
4616 size_t bytes_read;
4617 // Consume the interrupt byte
4618 Error error = m_pipe.Read(&ch, 1, bytes_read);
4619 if (error.Success()) {
4620 switch (ch) {
4621 case 'q':
4622 SetIsDone(true);
4623 break;
4624 case 'i':
4625 if (StateIsRunningState(m_process->GetState()))
Greg Clayton0fdd3ae2014-07-16 21:05:41 +00004626 m_process->SendAsyncInterrupt();
Kate Stoneb9c1b512016-09-06 20:57:50 +00004627 break;
Greg Clayton0fdd3ae2014-07-16 21:05:41 +00004628 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00004629 }
Greg Clayton0fdd3ae2014-07-16 21:05:41 +00004630 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00004631 }
Greg Claytone68f5d62014-02-24 22:50:57 +00004632 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00004633 m_is_running = false;
4634#endif
4635 terminal_state.Restore();
4636 }
4637
4638 void Cancel() override {
4639 SetIsDone(true);
4640 // Only write to our pipe to cancel if we are in
4641 // IOHandlerProcessSTDIO::Run().
4642 // We can end up with a python command that is being run from the command
4643 // interpreter:
4644 //
4645 // (lldb) step_process_thousands_of_times
4646 //
4647 // In this case the command interpreter will be in the middle of handling
4648 // the command and if the process pushes and pops the IOHandler thousands
4649 // of times, we can end up writing to m_pipe without ever consuming the
4650 // bytes from the pipe in IOHandlerProcessSTDIO::Run() and end up
4651 // deadlocking when the pipe gets fed up and blocks until data is consumed.
4652 if (m_is_running) {
4653 char ch = 'q'; // Send 'q' for quit
4654 size_t bytes_written = 0;
4655 m_pipe.Write(&ch, 1, bytes_written);
Greg Clayton44d93782014-01-27 23:43:24 +00004656 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00004657 }
4658
4659 bool Interrupt() override {
4660 // Do only things that are safe to do in an interrupt context (like in
4661 // a SIGINT handler), like write 1 byte to a file descriptor. This will
4662 // interrupt the IOHandlerProcessSTDIO::Run() and we can look at the byte
4663 // that was written to the pipe and then call
4664 // m_process->SendAsyncInterrupt()
4665 // from a much safer location in code.
4666 if (m_active) {
4667 char ch = 'i'; // Send 'i' for interrupt
4668 size_t bytes_written = 0;
4669 Error result = m_pipe.Write(&ch, 1, bytes_written);
4670 return result.Success();
4671 } else {
4672 // This IOHandler might be pushed on the stack, but not being run
4673 // currently
4674 // so do the right thing if we aren't actively watching for STDIN by
4675 // sending
4676 // the interrupt to the process. Otherwise the write to the pipe above
4677 // would
4678 // do nothing. This can happen when the command interpreter is running and
4679 // gets a "expression ...". It will be on the IOHandler thread and sending
4680 // the input is complete to the delegate which will cause the expression
4681 // to
4682 // run, which will push the process IO handler, but not run it.
4683
4684 if (StateIsRunningState(m_process->GetState())) {
4685 m_process->SendAsyncInterrupt();
4686 return true;
4687 }
4688 }
4689 return false;
4690 }
4691
4692 void GotEOF() override {}
4693
Greg Clayton44d93782014-01-27 23:43:24 +00004694protected:
Kate Stoneb9c1b512016-09-06 20:57:50 +00004695 Process *m_process;
4696 File m_read_file; // Read from this file (usually actual STDIN for LLDB
4697 File m_write_file; // Write to this file (usually the master pty for getting
4698 // io to debuggee)
4699 Pipe m_pipe;
Sam McCall6f43d9d2016-11-15 10:58:16 +00004700 std::atomic<bool> m_is_running{false};
Greg Clayton44d93782014-01-27 23:43:24 +00004701};
4702
Kate Stoneb9c1b512016-09-06 20:57:50 +00004703void Process::SetSTDIOFileDescriptor(int fd) {
4704 // First set up the Read Thread for reading/handling process I/O
4705
4706 std::unique_ptr<ConnectionFileDescriptor> conn_ap(
4707 new ConnectionFileDescriptor(fd, true));
4708
4709 if (conn_ap) {
4710 m_stdio_communication.SetConnection(conn_ap.release());
4711 if (m_stdio_communication.IsConnected()) {
4712 m_stdio_communication.SetReadThreadBytesReceivedCallback(
4713 STDIOReadThreadBytesReceived, this);
4714 m_stdio_communication.StartReadThread();
4715
4716 // Now read thread is set up, set up input reader.
4717
4718 if (!m_process_input_reader)
4719 m_process_input_reader.reset(new IOHandlerProcessSTDIO(this, fd));
Caroline Ticeef5c6d02010-11-16 05:07:41 +00004720 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00004721 }
Caroline Ticeef5c6d02010-11-16 05:07:41 +00004722}
4723
Kate Stoneb9c1b512016-09-06 20:57:50 +00004724bool Process::ProcessIOHandlerIsActive() {
4725 IOHandlerSP io_handler_sp(m_process_input_reader);
4726 if (io_handler_sp)
4727 return GetTarget().GetDebugger().IsTopIOHandler(io_handler_sp);
4728 return false;
Greg Clayton6fea17e2014-03-03 19:15:20 +00004729}
Kate Stoneb9c1b512016-09-06 20:57:50 +00004730bool Process::PushProcessIOHandler() {
4731 IOHandlerSP io_handler_sp(m_process_input_reader);
4732 if (io_handler_sp) {
4733 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
4734 if (log)
4735 log->Printf("Process::%s pushing IO handler", __FUNCTION__);
Pavel Labath44464872015-05-27 12:40:32 +00004736
Kate Stoneb9c1b512016-09-06 20:57:50 +00004737 io_handler_sp->SetIsDone(false);
4738 GetTarget().GetDebugger().PushIOHandler(io_handler_sp);
4739 return true;
4740 }
4741 return false;
Caroline Ticeef5c6d02010-11-16 05:07:41 +00004742}
4743
Kate Stoneb9c1b512016-09-06 20:57:50 +00004744bool Process::PopProcessIOHandler() {
4745 IOHandlerSP io_handler_sp(m_process_input_reader);
4746 if (io_handler_sp)
4747 return GetTarget().GetDebugger().PopIOHandler(io_handler_sp);
4748 return false;
Caroline Ticeef5c6d02010-11-16 05:07:41 +00004749}
4750
Greg Claytonbfe5f3b2011-02-18 01:44:25 +00004751// The process needs to know about installed plug-ins
Kate Stoneb9c1b512016-09-06 20:57:50 +00004752void Process::SettingsInitialize() { Thread::SettingsInitialize(); }
Caroline Tice3df9a8d2010-09-04 00:03:46 +00004753
Kate Stoneb9c1b512016-09-06 20:57:50 +00004754void Process::SettingsTerminate() { Thread::SettingsTerminate(); }
Caroline Tice3df9a8d2010-09-04 00:03:46 +00004755
Kate Stoneb9c1b512016-09-06 20:57:50 +00004756namespace {
4757// RestorePlanState is used to record the "is private", "is master" and "okay to
4758// discard" fields of
4759// the plan we are running, and reset it on Clean or on destruction.
4760// It will only reset the state once, so you can call Clean and then monkey with
4761// the state and it
4762// won't get reset on you again.
Eugene Zelenko8f30a652015-10-23 18:39:37 +00004763
Kate Stoneb9c1b512016-09-06 20:57:50 +00004764class RestorePlanState {
4765public:
4766 RestorePlanState(lldb::ThreadPlanSP thread_plan_sp)
4767 : m_thread_plan_sp(thread_plan_sp), m_already_reset(false) {
4768 if (m_thread_plan_sp) {
4769 m_private = m_thread_plan_sp->GetPrivate();
4770 m_is_master = m_thread_plan_sp->IsMasterPlan();
4771 m_okay_to_discard = m_thread_plan_sp->OkayToDiscard();
4772 }
4773 }
4774
4775 ~RestorePlanState() { Clean(); }
4776
4777 void Clean() {
4778 if (!m_already_reset && m_thread_plan_sp) {
4779 m_already_reset = true;
4780 m_thread_plan_sp->SetPrivate(m_private);
4781 m_thread_plan_sp->SetIsMasterPlan(m_is_master);
4782 m_thread_plan_sp->SetOkayToDiscard(m_okay_to_discard);
4783 }
4784 }
4785
4786private:
4787 lldb::ThreadPlanSP m_thread_plan_sp;
4788 bool m_already_reset;
4789 bool m_private;
4790 bool m_is_master;
4791 bool m_okay_to_discard;
4792};
Eugene Zelenko8f30a652015-10-23 18:39:37 +00004793} // anonymous namespace
Jim Inghamc60963c2015-10-12 19:11:03 +00004794
Pavel Labath2ce22162016-12-01 10:57:30 +00004795static microseconds
4796GetOneThreadExpressionTimeout(const EvaluateExpressionOptions &options) {
4797 const milliseconds default_one_thread_timeout(250);
4798
4799 // If the overall wait is forever, then we don't need to worry about it.
Pavel Labath43d35412016-12-06 11:24:51 +00004800 if (!options.GetTimeout()) {
4801 return options.GetOneThreadTimeout() ? *options.GetOneThreadTimeout()
4802 : default_one_thread_timeout;
Pavel Labath2ce22162016-12-01 10:57:30 +00004803 }
4804
4805 // If the one thread timeout is set, use it.
Pavel Labath43d35412016-12-06 11:24:51 +00004806 if (options.GetOneThreadTimeout())
4807 return *options.GetOneThreadTimeout();
Pavel Labath2ce22162016-12-01 10:57:30 +00004808
4809 // Otherwise use half the total timeout, bounded by the
4810 // default_one_thread_timeout.
4811 return std::min<microseconds>(default_one_thread_timeout,
Pavel Labath43d35412016-12-06 11:24:51 +00004812 *options.GetTimeout() / 2);
Pavel Labath2ce22162016-12-01 10:57:30 +00004813}
4814
4815static Timeout<std::micro>
4816GetExpressionTimeout(const EvaluateExpressionOptions &options,
4817 bool before_first_timeout) {
4818 // If we are going to run all threads the whole time, or if we are only
4819 // going to run one thread, we can just return the overall timeout.
4820 if (!options.GetStopOthers() || !options.GetTryAllThreads())
Pavel Labath43d35412016-12-06 11:24:51 +00004821 return options.GetTimeout();
Pavel Labath2ce22162016-12-01 10:57:30 +00004822
4823 if (before_first_timeout)
4824 return GetOneThreadExpressionTimeout(options);
4825
Pavel Labath43d35412016-12-06 11:24:51 +00004826 if (!options.GetTimeout())
Pavel Labath2ce22162016-12-01 10:57:30 +00004827 return llvm::None;
4828 else
Pavel Labath43d35412016-12-06 11:24:51 +00004829 return *options.GetTimeout() - GetOneThreadExpressionTimeout(options);
Pavel Labath2ce22162016-12-01 10:57:30 +00004830}
4831
Jim Ingham1624a2d2014-05-05 02:26:40 +00004832ExpressionResults
Kate Stoneb9c1b512016-09-06 20:57:50 +00004833Process::RunThreadPlan(ExecutionContext &exe_ctx,
4834 lldb::ThreadPlanSP &thread_plan_sp,
4835 const EvaluateExpressionOptions &options,
4836 DiagnosticManager &diagnostic_manager) {
4837 ExpressionResults return_value = eExpressionSetupError;
Saleem Abdulrasool324a1032014-04-04 04:06:10 +00004838
Kate Stoneb9c1b512016-09-06 20:57:50 +00004839 std::lock_guard<std::mutex> run_thread_plan_locker(m_run_thread_plan_lock);
4840
4841 if (!thread_plan_sp) {
Zachary Turnere2411fa2016-11-12 19:12:56 +00004842 diagnostic_manager.PutString(
Kate Stoneb9c1b512016-09-06 20:57:50 +00004843 eDiagnosticSeverityError,
4844 "RunThreadPlan called with empty thread plan.");
4845 return eExpressionSetupError;
4846 }
4847
4848 if (!thread_plan_sp->ValidatePlan(nullptr)) {
Zachary Turnere2411fa2016-11-12 19:12:56 +00004849 diagnostic_manager.PutString(
Kate Stoneb9c1b512016-09-06 20:57:50 +00004850 eDiagnosticSeverityError,
4851 "RunThreadPlan called with an invalid thread plan.");
4852 return eExpressionSetupError;
4853 }
4854
4855 if (exe_ctx.GetProcessPtr() != this) {
Zachary Turnere2411fa2016-11-12 19:12:56 +00004856 diagnostic_manager.PutString(eDiagnosticSeverityError,
4857 "RunThreadPlan called on wrong process.");
Kate Stoneb9c1b512016-09-06 20:57:50 +00004858 return eExpressionSetupError;
4859 }
4860
4861 Thread *thread = exe_ctx.GetThreadPtr();
4862 if (thread == nullptr) {
Zachary Turnere2411fa2016-11-12 19:12:56 +00004863 diagnostic_manager.PutString(eDiagnosticSeverityError,
4864 "RunThreadPlan called with invalid thread.");
Kate Stoneb9c1b512016-09-06 20:57:50 +00004865 return eExpressionSetupError;
4866 }
4867
4868 // We need to change some of the thread plan attributes for the thread plan
4869 // runner. This will restore them
4870 // when we are done:
4871
4872 RestorePlanState thread_plan_restorer(thread_plan_sp);
4873
4874 // We rely on the thread plan we are running returning "PlanCompleted" if when
4875 // it successfully completes.
4876 // For that to be true the plan can't be private - since private plans
4877 // suppress themselves in the
4878 // GetCompletedPlan call.
4879
4880 thread_plan_sp->SetPrivate(false);
4881
4882 // The plans run with RunThreadPlan also need to be terminal master plans or
4883 // when they are done we will end
4884 // up asking the plan above us whether we should stop, which may give the
4885 // wrong answer.
4886
4887 thread_plan_sp->SetIsMasterPlan(true);
4888 thread_plan_sp->SetOkayToDiscard(false);
4889
4890 if (m_private_state.GetValue() != eStateStopped) {
Zachary Turnere2411fa2016-11-12 19:12:56 +00004891 diagnostic_manager.PutString(
Kate Stoneb9c1b512016-09-06 20:57:50 +00004892 eDiagnosticSeverityError,
4893 "RunThreadPlan called while the private state was not stopped.");
4894 return eExpressionSetupError;
4895 }
4896
4897 // Save the thread & frame from the exe_ctx for restoration after we run
4898 const uint32_t thread_idx_id = thread->GetIndexID();
4899 StackFrameSP selected_frame_sp = thread->GetSelectedFrame();
4900 if (!selected_frame_sp) {
4901 thread->SetSelectedFrame(nullptr);
4902 selected_frame_sp = thread->GetSelectedFrame();
4903 if (!selected_frame_sp) {
4904 diagnostic_manager.Printf(
4905 eDiagnosticSeverityError,
4906 "RunThreadPlan called without a selected frame on thread %d",
4907 thread_idx_id);
4908 return eExpressionSetupError;
Jim Ingham77787032011-01-20 02:03:18 +00004909 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00004910 }
Saleem Abdulrasool324a1032014-04-04 04:06:10 +00004911
Pavel Labath2ce22162016-12-01 10:57:30 +00004912 // Make sure the timeout values make sense. The one thread timeout needs to be
4913 // smaller than the overall timeout.
Pavel Labath43d35412016-12-06 11:24:51 +00004914 if (options.GetOneThreadTimeout() && options.GetTimeout() &&
4915 *options.GetTimeout() < *options.GetOneThreadTimeout()) {
Pavel Labath2ce22162016-12-01 10:57:30 +00004916 diagnostic_manager.PutString(eDiagnosticSeverityError,
4917 "RunThreadPlan called with one thread "
4918 "timeout greater than total timeout");
4919 return eExpressionSetupError;
4920 }
4921
Kate Stoneb9c1b512016-09-06 20:57:50 +00004922 StackID ctx_frame_id = selected_frame_sp->GetStackID();
Saleem Abdulrasool324a1032014-04-04 04:06:10 +00004923
Kate Stoneb9c1b512016-09-06 20:57:50 +00004924 // N.B. Running the target may unset the currently selected thread and frame.
4925 // We don't want to do that either,
4926 // so we should arrange to reset them as well.
Greg Claytonc14ee322011-09-22 04:58:26 +00004927
Kate Stoneb9c1b512016-09-06 20:57:50 +00004928 lldb::ThreadSP selected_thread_sp = GetThreadList().GetSelectedThread();
Saleem Abdulrasool324a1032014-04-04 04:06:10 +00004929
Kate Stoneb9c1b512016-09-06 20:57:50 +00004930 uint32_t selected_tid;
4931 StackID selected_stack_id;
4932 if (selected_thread_sp) {
4933 selected_tid = selected_thread_sp->GetIndexID();
4934 selected_stack_id = selected_thread_sp->GetSelectedFrame()->GetStackID();
4935 } else {
4936 selected_tid = LLDB_INVALID_THREAD_ID;
4937 }
Saleem Abdulrasool324a1032014-04-04 04:06:10 +00004938
Kate Stoneb9c1b512016-09-06 20:57:50 +00004939 HostThread backup_private_state_thread;
4940 lldb::StateType old_state = eStateInvalid;
4941 lldb::ThreadPlanSP stopper_base_plan_sp;
Saleem Abdulrasool324a1032014-04-04 04:06:10 +00004942
Kate Stoneb9c1b512016-09-06 20:57:50 +00004943 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_STEP |
4944 LIBLLDB_LOG_PROCESS));
4945 if (m_private_state_thread.EqualsThread(Host::GetCurrentThread())) {
4946 // Yikes, we are running on the private state thread! So we can't wait for
4947 // public events on this thread, since
4948 // we are the thread that is generating public events.
4949 // The simplest thing to do is to spin up a temporary thread to handle
4950 // private state thread events while
4951 // we are fielding public events here.
Todd Fiala76e0fc92014-08-27 22:58:26 +00004952 if (log)
Kate Stoneb9c1b512016-09-06 20:57:50 +00004953 log->Printf("Running thread plan on private state thread, spinning up "
4954 "another state thread to handle the events.");
Todd Fiala76e0fc92014-08-27 22:58:26 +00004955
Kate Stoneb9c1b512016-09-06 20:57:50 +00004956 backup_private_state_thread = m_private_state_thread;
Greg Clayton095eeaa2013-11-05 23:28:00 +00004957
Kate Stoneb9c1b512016-09-06 20:57:50 +00004958 // One other bit of business: we want to run just this thread plan and
4959 // anything it pushes, and then stop,
4960 // returning control here.
4961 // But in the normal course of things, the plan above us on the stack would
4962 // be given a shot at the stop
4963 // event before deciding to stop, and we don't want that. So we insert a
4964 // "stopper" base plan on the stack
4965 // before the plan we want to run. Since base plans always stop and return
4966 // control to the user, that will
4967 // do just what we want.
4968 stopper_base_plan_sp.reset(new ThreadPlanBase(*thread));
4969 thread->QueueThreadPlan(stopper_base_plan_sp, false);
4970 // Have to make sure our public state is stopped, since otherwise the
4971 // reporting logic below doesn't work correctly.
4972 old_state = m_public_state.GetValue();
4973 m_public_state.SetValueNoLock(eStateStopped);
4974
4975 // Now spin up the private state thread:
4976 StartPrivateStateThread(true);
4977 }
4978
4979 thread->QueueThreadPlan(
4980 thread_plan_sp, false); // This used to pass "true" does that make sense?
4981
4982 if (options.GetDebug()) {
4983 // In this case, we aren't actually going to run, we just want to stop right
4984 // away.
4985 // Flush this thread so we will refetch the stacks and show the correct
4986 // backtrace.
4987 // FIXME: To make this prettier we should invent some stop reason for this,
4988 // but that
4989 // is only cosmetic, and this functionality is only of use to lldb
4990 // developers who can
4991 // live with not pretty...
4992 thread->Flush();
4993 return eExpressionStoppedForDebug;
4994 }
4995
4996 ListenerSP listener_sp(
4997 Listener::MakeListener("lldb.process.listener.run-thread-plan"));
4998
4999 lldb::EventSP event_to_broadcast_sp;
5000
5001 {
5002 // This process event hijacker Hijacks the Public events and its destructor
5003 // makes sure that the process events get
5004 // restored on exit to the function.
5005 //
5006 // If the event needs to propagate beyond the hijacker (e.g., the process
5007 // exits during execution), then the event
5008 // is put into event_to_broadcast_sp for rebroadcasting.
5009
5010 ProcessEventHijacker run_thread_plan_hijacker(*this, listener_sp);
5011
5012 if (log) {
5013 StreamString s;
5014 thread_plan_sp->GetDescription(&s, lldb::eDescriptionLevelVerbose);
5015 log->Printf("Process::RunThreadPlan(): Resuming thread %u - 0x%4.4" PRIx64
5016 " to run thread plan \"%s\".",
5017 thread->GetIndexID(), thread->GetID(), s.GetData());
Jim Ingham1460e4b2014-01-10 23:46:59 +00005018 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00005019
5020 bool got_event;
5021 lldb::EventSP event_sp;
5022 lldb::StateType stop_state = lldb::eStateInvalid;
5023
5024 bool before_first_timeout = true; // This is set to false the first time
5025 // that we have to halt the target.
5026 bool do_resume = true;
5027 bool handle_running_event = true;
Kate Stoneb9c1b512016-09-06 20:57:50 +00005028
5029 // This is just for accounting:
5030 uint32_t num_resumes = 0;
5031
Kate Stoneb9c1b512016-09-06 20:57:50 +00005032 // If we are going to run all threads the whole time, or if we are only
Pavel Labath2ce22162016-12-01 10:57:30 +00005033 // going to run one thread, then we don't need the first timeout. So we
5034 // pretend we are after the first timeout already.
5035 if (!options.GetStopOthers() || !options.GetTryAllThreads())
Kate Stoneb9c1b512016-09-06 20:57:50 +00005036 before_first_timeout = false;
Andrew MacPhersoneb4d0602014-03-13 09:37:02 +00005037
Kate Stoneb9c1b512016-09-06 20:57:50 +00005038 if (log)
Pavel Labath2ce22162016-12-01 10:57:30 +00005039 log->Printf("Stop others: %u, try all: %u, before_first: %u.\n",
5040 options.GetStopOthers(), options.GetTryAllThreads(),
5041 before_first_timeout);
Kate Stoneb9c1b512016-09-06 20:57:50 +00005042
5043 // This isn't going to work if there are unfetched events on the queue.
5044 // Are there cases where we might want to run the remaining events here, and
5045 // then try to
5046 // call the function? That's probably being too tricky for our own good.
5047
5048 Event *other_events = listener_sp->PeekAtNextEvent();
5049 if (other_events != nullptr) {
Zachary Turnere2411fa2016-11-12 19:12:56 +00005050 diagnostic_manager.PutString(
Kate Stoneb9c1b512016-09-06 20:57:50 +00005051 eDiagnosticSeverityError,
5052 "RunThreadPlan called with pending events on the queue.");
5053 return eExpressionSetupError;
Kuba Breckaafdf8422014-10-10 23:43:03 +00005054 }
5055
Kate Stoneb9c1b512016-09-06 20:57:50 +00005056 // We also need to make sure that the next event is delivered. We might be
5057 // calling a function as part of
5058 // a thread plan, in which case the last delivered event could be the
5059 // running event, and we don't want
5060 // event coalescing to cause us to lose OUR running event...
5061 ForceNextEventDelivery();
Ryan Brown65d4d5c2015-09-16 21:20:44 +00005062
Kate Stoneb9c1b512016-09-06 20:57:50 +00005063// This while loop must exit out the bottom, there's cleanup that we need to do
5064// when we are done.
5065// So don't call return anywhere within it.
Todd Fiala75930012016-08-19 04:21:48 +00005066
Kate Stoneb9c1b512016-09-06 20:57:50 +00005067#ifdef LLDB_RUN_THREAD_HALT_WITH_EVENT
5068 // It's pretty much impossible to write test cases for things like:
5069 // One thread timeout expires, I go to halt, but the process already stopped
5070 // on the function call stop breakpoint. Turning on this define will make
5071 // us not
5072 // fetch the first event till after the halt. So if you run a quick
5073 // function, it will have
5074 // completed, and the completion event will be waiting, when you interrupt
5075 // for halt.
5076 // The expression evaluation should still succeed.
5077 bool miss_first_event = true;
5078#endif
Kate Stoneb9c1b512016-09-06 20:57:50 +00005079 while (true) {
5080 // We usually want to resume the process if we get to the top of the loop.
5081 // The only exception is if we get two running events with no intervening
5082 // stop, which can happen, we will just wait for then next stop event.
5083 if (log)
5084 log->Printf("Top of while loop: do_resume: %i handle_running_event: %i "
5085 "before_first_timeout: %i.",
5086 do_resume, handle_running_event, before_first_timeout);
Jason Molendaef7d6412015-08-06 03:27:10 +00005087
Kate Stoneb9c1b512016-09-06 20:57:50 +00005088 if (do_resume || handle_running_event) {
5089 // Do the initial resume and wait for the running event before going
5090 // further.
Jason Molendaef7d6412015-08-06 03:27:10 +00005091
Kate Stoneb9c1b512016-09-06 20:57:50 +00005092 if (do_resume) {
5093 num_resumes++;
5094 Error resume_error = PrivateResume();
5095 if (!resume_error.Success()) {
5096 diagnostic_manager.Printf(
5097 eDiagnosticSeverityError,
5098 "couldn't resume inferior the %d time: \"%s\".", num_resumes,
5099 resume_error.AsCString());
5100 return_value = eExpressionSetupError;
5101 break;
5102 }
Jason Molendaef7d6412015-08-06 03:27:10 +00005103 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00005104
Pavel Labathd35031e12016-11-30 10:41:42 +00005105 got_event =
5106 listener_sp->GetEvent(event_sp, std::chrono::milliseconds(500));
Kate Stoneb9c1b512016-09-06 20:57:50 +00005107 if (!got_event) {
5108 if (log)
5109 log->Printf("Process::RunThreadPlan(): didn't get any event after "
5110 "resume %" PRIu32 ", exiting.",
5111 num_resumes);
5112
5113 diagnostic_manager.Printf(eDiagnosticSeverityError,
5114 "didn't get any event after resume %" PRIu32
5115 ", exiting.",
5116 num_resumes);
5117 return_value = eExpressionSetupError;
5118 break;
5119 }
5120
5121 stop_state =
5122 Process::ProcessEventData::GetStateFromEvent(event_sp.get());
5123
5124 if (stop_state != eStateRunning) {
5125 bool restarted = false;
5126
5127 if (stop_state == eStateStopped) {
5128 restarted = Process::ProcessEventData::GetRestartedFromEvent(
5129 event_sp.get());
5130 if (log)
5131 log->Printf(
5132 "Process::RunThreadPlan(): didn't get running event after "
5133 "resume %d, got %s instead (restarted: %i, do_resume: %i, "
5134 "handle_running_event: %i).",
5135 num_resumes, StateAsCString(stop_state), restarted, do_resume,
5136 handle_running_event);
5137 }
5138
5139 if (restarted) {
5140 // This is probably an overabundance of caution, I don't think I
5141 // should ever get a stopped & restarted
5142 // event here. But if I do, the best thing is to Halt and then get
5143 // out of here.
5144 const bool clear_thread_plans = false;
5145 const bool use_run_lock = false;
5146 Halt(clear_thread_plans, use_run_lock);
5147 }
5148
5149 diagnostic_manager.Printf(
5150 eDiagnosticSeverityError,
5151 "didn't get running event after initial resume, got %s instead.",
5152 StateAsCString(stop_state));
5153 return_value = eExpressionSetupError;
5154 break;
5155 }
5156
5157 if (log)
5158 log->PutCString("Process::RunThreadPlan(): resuming succeeded.");
5159 // We need to call the function synchronously, so spin waiting for it to
5160 // return.
5161 // If we get interrupted while executing, we're going to lose our
5162 // context, and
5163 // won't be able to gather the result at this point.
5164 // We set the timeout AFTER the resume, since the resume takes some time
5165 // and we
5166 // don't want to charge that to the timeout.
5167 } else {
5168 if (log)
5169 log->PutCString("Process::RunThreadPlan(): waiting for next event.");
5170 }
5171
Kate Stoneb9c1b512016-09-06 20:57:50 +00005172 do_resume = true;
5173 handle_running_event = true;
5174
5175 // Now wait for the process to stop again:
5176 event_sp.reset();
5177
Pavel Labath2ce22162016-12-01 10:57:30 +00005178 Timeout<std::micro> timeout =
5179 GetExpressionTimeout(options, before_first_timeout);
Kate Stoneb9c1b512016-09-06 20:57:50 +00005180 if (log) {
Pavel Labath2ce22162016-12-01 10:57:30 +00005181 if (timeout) {
5182 auto now = system_clock::now();
5183 log->Printf("Process::RunThreadPlan(): about to wait - now is %s - "
5184 "endpoint is %s",
5185 llvm::to_string(now).c_str(),
5186 llvm::to_string(now + *timeout).c_str());
Kate Stoneb9c1b512016-09-06 20:57:50 +00005187 } else {
5188 log->Printf("Process::RunThreadPlan(): about to wait forever.");
Jason Molendaef7d6412015-08-06 03:27:10 +00005189 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00005190 }
5191
5192#ifdef LLDB_RUN_THREAD_HALT_WITH_EVENT
5193 // See comment above...
5194 if (miss_first_event) {
5195 usleep(1000);
5196 miss_first_event = false;
5197 got_event = false;
5198 } else
5199#endif
Pavel Labath2ce22162016-12-01 10:57:30 +00005200 got_event = listener_sp->GetEvent(event_sp, timeout);
Kate Stoneb9c1b512016-09-06 20:57:50 +00005201
5202 if (got_event) {
5203 if (event_sp) {
5204 bool keep_going = false;
5205 if (event_sp->GetType() == eBroadcastBitInterrupt) {
5206 const bool clear_thread_plans = false;
5207 const bool use_run_lock = false;
5208 Halt(clear_thread_plans, use_run_lock);
5209 return_value = eExpressionInterrupted;
Zachary Turnere2411fa2016-11-12 19:12:56 +00005210 diagnostic_manager.PutString(eDiagnosticSeverityRemark,
5211 "execution halted by user interrupt.");
Kate Stoneb9c1b512016-09-06 20:57:50 +00005212 if (log)
5213 log->Printf("Process::RunThreadPlan(): Got interrupted by "
5214 "eBroadcastBitInterrupted, exiting.");
5215 break;
5216 } else {
5217 stop_state =
5218 Process::ProcessEventData::GetStateFromEvent(event_sp.get());
5219 if (log)
5220 log->Printf(
5221 "Process::RunThreadPlan(): in while loop, got event: %s.",
5222 StateAsCString(stop_state));
5223
5224 switch (stop_state) {
5225 case lldb::eStateStopped: {
5226 // We stopped, figure out what we are going to do now.
5227 ThreadSP thread_sp =
5228 GetThreadList().FindThreadByIndexID(thread_idx_id);
5229 if (!thread_sp) {
5230 // Ooh, our thread has vanished. Unlikely that this was
5231 // successful execution...
5232 if (log)
5233 log->Printf("Process::RunThreadPlan(): execution completed "
5234 "but our thread (index-id=%u) has vanished.",
5235 thread_idx_id);
5236 return_value = eExpressionInterrupted;
5237 } else {
5238 // If we were restarted, we just need to go back up to fetch
5239 // another event.
5240 if (Process::ProcessEventData::GetRestartedFromEvent(
5241 event_sp.get())) {
5242 if (log) {
5243 log->Printf("Process::RunThreadPlan(): Got a stop and "
5244 "restart, so we'll continue waiting.");
5245 }
5246 keep_going = true;
5247 do_resume = false;
5248 handle_running_event = true;
5249 } else {
5250 StopInfoSP stop_info_sp(thread_sp->GetStopInfo());
5251 StopReason stop_reason = eStopReasonInvalid;
5252 if (stop_info_sp)
5253 stop_reason = stop_info_sp->GetStopReason();
5254
5255 // FIXME: We only check if the stop reason is plan complete,
5256 // should we make sure that
5257 // it is OUR plan that is complete?
5258 if (stop_reason == eStopReasonPlanComplete) {
5259 if (log)
5260 log->PutCString("Process::RunThreadPlan(): execution "
5261 "completed successfully.");
5262
5263 // Restore the plan state so it will get reported as
5264 // intended when we are done.
5265 thread_plan_restorer.Clean();
5266
5267 return_value = eExpressionCompleted;
5268 } else {
5269 // Something restarted the target, so just wait for it to
5270 // stop for real.
5271 if (stop_reason == eStopReasonBreakpoint) {
5272 if (log)
5273 log->Printf("Process::RunThreadPlan() stopped for "
5274 "breakpoint: %s.",
5275 stop_info_sp->GetDescription());
5276 return_value = eExpressionHitBreakpoint;
5277 if (!options.DoesIgnoreBreakpoints()) {
5278 // Restore the plan state and then force Private to
5279 // false. We are
5280 // going to stop because of this plan so we need it to
5281 // become a public
5282 // plan or it won't report correctly when we continue to
5283 // its termination
5284 // later on.
5285 thread_plan_restorer.Clean();
5286 if (thread_plan_sp)
5287 thread_plan_sp->SetPrivate(false);
5288 event_to_broadcast_sp = event_sp;
5289 }
5290 } else {
5291 if (log)
5292 log->PutCString("Process::RunThreadPlan(): thread plan "
5293 "didn't successfully complete.");
5294 if (!options.DoesUnwindOnError())
5295 event_to_broadcast_sp = event_sp;
5296 return_value = eExpressionInterrupted;
5297 }
5298 }
5299 }
5300 }
5301 } break;
5302
5303 case lldb::eStateRunning:
5304 // This shouldn't really happen, but sometimes we do get two
5305 // running events without an
5306 // intervening stop, and in that case we should just go back to
5307 // waiting for the stop.
5308 do_resume = false;
5309 keep_going = true;
5310 handle_running_event = false;
5311 break;
5312
5313 default:
5314 if (log)
5315 log->Printf("Process::RunThreadPlan(): execution stopped with "
5316 "unexpected state: %s.",
5317 StateAsCString(stop_state));
5318
5319 if (stop_state == eStateExited)
5320 event_to_broadcast_sp = event_sp;
5321
Zachary Turnere2411fa2016-11-12 19:12:56 +00005322 diagnostic_manager.PutString(
Kate Stoneb9c1b512016-09-06 20:57:50 +00005323 eDiagnosticSeverityError,
5324 "execution stopped with unexpected state.");
5325 return_value = eExpressionInterrupted;
5326 break;
5327 }
5328 }
5329
5330 if (keep_going)
5331 continue;
5332 else
5333 break;
5334 } else {
5335 if (log)
5336 log->PutCString("Process::RunThreadPlan(): got_event was true, but "
5337 "the event pointer was null. How odd...");
5338 return_value = eExpressionInterrupted;
5339 break;
5340 }
5341 } else {
5342 // If we didn't get an event that means we've timed out...
5343 // We will interrupt the process here. Depending on what we were asked
5344 // to do we will
5345 // either exit, or try with all threads running for the same timeout.
5346
5347 if (log) {
5348 if (options.GetTryAllThreads()) {
5349 if (before_first_timeout) {
Pavel Labath2ce22162016-12-01 10:57:30 +00005350 log->Printf("Process::RunThreadPlan(): Running function with "
5351 "one thread timeout timed out.");
Kate Stoneb9c1b512016-09-06 20:57:50 +00005352 } else
5353 log->Printf("Process::RunThreadPlan(): Restarting function with "
5354 "all threads enabled "
Pavel Labath2ce22162016-12-01 10:57:30 +00005355 "and timeout: %" PRIu64
5356 " timed out, abandoning execution.",
5357 timeout ? timeout->count() : -1);
Kate Stoneb9c1b512016-09-06 20:57:50 +00005358 } else
5359 log->Printf("Process::RunThreadPlan(): Running function with "
Pavel Labath2ce22162016-12-01 10:57:30 +00005360 "timeout: %" PRIu64 " timed out, "
Kate Stoneb9c1b512016-09-06 20:57:50 +00005361 "abandoning execution.",
Pavel Labath2ce22162016-12-01 10:57:30 +00005362 timeout ? timeout->count() : -1);
Kate Stoneb9c1b512016-09-06 20:57:50 +00005363 }
5364
5365 // It is possible that between the time we issued the Halt, and we get
5366 // around to calling Halt the target
5367 // could have stopped. That's fine, Halt will figure that out and send
5368 // the appropriate Stopped event.
5369 // BUT it is also possible that we stopped & restarted (e.g. hit a
5370 // signal with "stop" set to false.) In
5371 // that case, we'll get the stopped & restarted event, and we should go
5372 // back to waiting for the Halt's
5373 // stopped event. That's what this while loop does.
5374
5375 bool back_to_top = true;
5376 uint32_t try_halt_again = 0;
5377 bool do_halt = true;
5378 const uint32_t num_retries = 5;
5379 while (try_halt_again < num_retries) {
5380 Error halt_error;
5381 if (do_halt) {
5382 if (log)
5383 log->Printf("Process::RunThreadPlan(): Running Halt.");
5384 const bool clear_thread_plans = false;
5385 const bool use_run_lock = false;
5386 Halt(clear_thread_plans, use_run_lock);
5387 }
5388 if (halt_error.Success()) {
5389 if (log)
5390 log->PutCString("Process::RunThreadPlan(): Halt succeeded.");
5391
Pavel Labathd35031e12016-11-30 10:41:42 +00005392 got_event =
5393 listener_sp->GetEvent(event_sp, std::chrono::milliseconds(500));
Kate Stoneb9c1b512016-09-06 20:57:50 +00005394
5395 if (got_event) {
5396 stop_state =
5397 Process::ProcessEventData::GetStateFromEvent(event_sp.get());
5398 if (log) {
5399 log->Printf("Process::RunThreadPlan(): Stopped with event: %s",
5400 StateAsCString(stop_state));
5401 if (stop_state == lldb::eStateStopped &&
5402 Process::ProcessEventData::GetInterruptedFromEvent(
5403 event_sp.get()))
5404 log->PutCString(" Event was the Halt interruption event.");
5405 }
5406
5407 if (stop_state == lldb::eStateStopped) {
5408 // Between the time we initiated the Halt and the time we
5409 // delivered it, the process could have
5410 // already finished its job. Check that here:
5411
5412 if (thread->IsThreadPlanDone(thread_plan_sp.get())) {
5413 if (log)
5414 log->PutCString("Process::RunThreadPlan(): Even though we "
5415 "timed out, the call plan was done. "
5416 "Exiting wait loop.");
5417 return_value = eExpressionCompleted;
5418 back_to_top = false;
5419 break;
5420 }
5421
5422 if (Process::ProcessEventData::GetRestartedFromEvent(
5423 event_sp.get())) {
5424 if (log)
5425 log->PutCString("Process::RunThreadPlan(): Went to halt "
5426 "but got a restarted event, there must be "
5427 "an un-restarted stopped event so try "
5428 "again... "
5429 "Exiting wait loop.");
5430 try_halt_again++;
5431 do_halt = false;
5432 continue;
5433 }
5434
5435 if (!options.GetTryAllThreads()) {
5436 if (log)
5437 log->PutCString("Process::RunThreadPlan(): try_all_threads "
5438 "was false, we stopped so now we're "
5439 "quitting.");
5440 return_value = eExpressionInterrupted;
5441 back_to_top = false;
5442 break;
5443 }
5444
5445 if (before_first_timeout) {
5446 // Set all the other threads to run, and return to the top of
5447 // the loop, which will continue;
5448 before_first_timeout = false;
5449 thread_plan_sp->SetStopOthers(false);
5450 if (log)
5451 log->PutCString(
5452 "Process::RunThreadPlan(): about to resume.");
5453
5454 back_to_top = true;
5455 break;
5456 } else {
5457 // Running all threads failed, so return Interrupted.
5458 if (log)
5459 log->PutCString("Process::RunThreadPlan(): running all "
5460 "threads timed out.");
5461 return_value = eExpressionInterrupted;
5462 back_to_top = false;
5463 break;
5464 }
5465 }
5466 } else {
5467 if (log)
5468 log->PutCString("Process::RunThreadPlan(): halt said it "
5469 "succeeded, but I got no event. "
5470 "I'm getting out of here passing Interrupted.");
5471 return_value = eExpressionInterrupted;
5472 back_to_top = false;
5473 break;
5474 }
5475 } else {
5476 try_halt_again++;
5477 continue;
5478 }
5479 }
5480
5481 if (!back_to_top || try_halt_again > num_retries)
5482 break;
5483 else
5484 continue;
5485 }
5486 } // END WAIT LOOP
5487
5488 // If we had to start up a temporary private state thread to run this thread
5489 // plan, shut it down now.
5490 if (backup_private_state_thread.IsJoinable()) {
5491 StopPrivateStateThread();
5492 Error error;
5493 m_private_state_thread = backup_private_state_thread;
5494 if (stopper_base_plan_sp) {
5495 thread->DiscardThreadPlansUpToPlan(stopper_base_plan_sp);
5496 }
5497 if (old_state != eStateInvalid)
5498 m_public_state.SetValueNoLock(old_state);
Jason Molendaef7d6412015-08-06 03:27:10 +00005499 }
5500
Kate Stoneb9c1b512016-09-06 20:57:50 +00005501 if (return_value != eExpressionCompleted && log) {
5502 // Print a backtrace into the log so we can figure out where we are:
5503 StreamString s;
5504 s.PutCString("Thread state after unsuccessful completion: \n");
5505 thread->GetStackFrameStatus(s, 0, UINT32_MAX, true, UINT32_MAX);
Zachary Turnerc1564272016-11-16 21:15:24 +00005506 log->PutString(s.GetString());
Jason Molendaef7d6412015-08-06 03:27:10 +00005507 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00005508 // Restore the thread state if we are going to discard the plan execution.
5509 // There are three cases where this
5510 // could happen:
5511 // 1) The execution successfully completed
5512 // 2) We hit a breakpoint, and ignore_breakpoints was true
5513 // 3) We got some other error, and discard_on_error was true
5514 bool should_unwind = (return_value == eExpressionInterrupted &&
5515 options.DoesUnwindOnError()) ||
5516 (return_value == eExpressionHitBreakpoint &&
5517 options.DoesIgnoreBreakpoints());
5518
5519 if (return_value == eExpressionCompleted || should_unwind) {
5520 thread_plan_sp->RestoreThreadState();
5521 }
5522
5523 // Now do some processing on the results of the run:
5524 if (return_value == eExpressionInterrupted ||
5525 return_value == eExpressionHitBreakpoint) {
5526 if (log) {
5527 StreamString s;
5528 if (event_sp)
5529 event_sp->Dump(&s);
5530 else {
5531 log->PutCString("Process::RunThreadPlan(): Stop event that "
5532 "interrupted us is NULL.");
5533 }
5534
5535 StreamString ts;
5536
5537 const char *event_explanation = nullptr;
5538
5539 do {
5540 if (!event_sp) {
5541 event_explanation = "<no event>";
5542 break;
5543 } else if (event_sp->GetType() == eBroadcastBitInterrupt) {
5544 event_explanation = "<user interrupt>";
5545 break;
5546 } else {
5547 const Process::ProcessEventData *event_data =
5548 Process::ProcessEventData::GetEventDataFromEvent(
5549 event_sp.get());
5550
5551 if (!event_data) {
5552 event_explanation = "<no event data>";
5553 break;
5554 }
5555
5556 Process *process = event_data->GetProcessSP().get();
5557
5558 if (!process) {
5559 event_explanation = "<no process>";
5560 break;
5561 }
5562
5563 ThreadList &thread_list = process->GetThreadList();
5564
5565 uint32_t num_threads = thread_list.GetSize();
5566 uint32_t thread_index;
5567
5568 ts.Printf("<%u threads> ", num_threads);
5569
5570 for (thread_index = 0; thread_index < num_threads; ++thread_index) {
5571 Thread *thread = thread_list.GetThreadAtIndex(thread_index).get();
5572
5573 if (!thread) {
5574 ts.Printf("<?> ");
5575 continue;
5576 }
5577
5578 ts.Printf("<0x%4.4" PRIx64 " ", thread->GetID());
5579 RegisterContext *register_context =
5580 thread->GetRegisterContext().get();
5581
5582 if (register_context)
5583 ts.Printf("[ip 0x%" PRIx64 "] ", register_context->GetPC());
5584 else
5585 ts.Printf("[ip unknown] ");
5586
5587 // Show the private stop info here, the public stop info will be
5588 // from the last natural stop.
5589 lldb::StopInfoSP stop_info_sp = thread->GetPrivateStopInfo();
5590 if (stop_info_sp) {
5591 const char *stop_desc = stop_info_sp->GetDescription();
5592 if (stop_desc)
5593 ts.PutCString(stop_desc);
5594 }
5595 ts.Printf(">");
5596 }
5597
5598 event_explanation = ts.GetData();
5599 }
5600 } while (0);
5601
5602 if (event_explanation)
5603 log->Printf("Process::RunThreadPlan(): execution interrupted: %s %s",
5604 s.GetData(), event_explanation);
5605 else
5606 log->Printf("Process::RunThreadPlan(): execution interrupted: %s",
5607 s.GetData());
5608 }
5609
5610 if (should_unwind) {
5611 if (log)
5612 log->Printf("Process::RunThreadPlan: ExecutionInterrupted - "
5613 "discarding thread plans up to %p.",
5614 static_cast<void *>(thread_plan_sp.get()));
5615 thread->DiscardThreadPlansUpToPlan(thread_plan_sp);
5616 } else {
5617 if (log)
5618 log->Printf("Process::RunThreadPlan: ExecutionInterrupted - for "
5619 "plan: %p not discarding.",
5620 static_cast<void *>(thread_plan_sp.get()));
5621 }
5622 } else if (return_value == eExpressionSetupError) {
5623 if (log)
5624 log->PutCString("Process::RunThreadPlan(): execution set up error.");
5625
5626 if (options.DoesUnwindOnError()) {
5627 thread->DiscardThreadPlansUpToPlan(thread_plan_sp);
5628 }
5629 } else {
5630 if (thread->IsThreadPlanDone(thread_plan_sp.get())) {
5631 if (log)
5632 log->PutCString("Process::RunThreadPlan(): thread plan is done");
5633 return_value = eExpressionCompleted;
5634 } else if (thread->WasThreadPlanDiscarded(thread_plan_sp.get())) {
5635 if (log)
5636 log->PutCString(
5637 "Process::RunThreadPlan(): thread plan was discarded");
5638 return_value = eExpressionDiscarded;
5639 } else {
5640 if (log)
5641 log->PutCString(
5642 "Process::RunThreadPlan(): thread plan stopped in mid course");
5643 if (options.DoesUnwindOnError() && thread_plan_sp) {
5644 if (log)
5645 log->PutCString("Process::RunThreadPlan(): discarding thread plan "
5646 "'cause unwind_on_error is set.");
5647 thread->DiscardThreadPlansUpToPlan(thread_plan_sp);
5648 }
5649 }
5650 }
5651
5652 // Thread we ran the function in may have gone away because we ran the
5653 // target
5654 // Check that it's still there, and if it is put it back in the context.
5655 // Also restore the
5656 // frame in the context if it is still present.
5657 thread = GetThreadList().FindThreadByIndexID(thread_idx_id, true).get();
5658 if (thread) {
5659 exe_ctx.SetFrameSP(thread->GetFrameWithStackID(ctx_frame_id));
5660 }
5661
5662 // Also restore the current process'es selected frame & thread, since this
5663 // function calling may
5664 // be done behind the user's back.
5665
5666 if (selected_tid != LLDB_INVALID_THREAD_ID) {
5667 if (GetThreadList().SetSelectedThreadByIndexID(selected_tid) &&
5668 selected_stack_id.IsValid()) {
5669 // We were able to restore the selected thread, now restore the frame:
5670 std::lock_guard<std::recursive_mutex> guard(GetThreadList().GetMutex());
5671 StackFrameSP old_frame_sp =
5672 GetThreadList().GetSelectedThread()->GetFrameWithStackID(
5673 selected_stack_id);
5674 if (old_frame_sp)
5675 GetThreadList().GetSelectedThread()->SetSelectedFrame(
5676 old_frame_sp.get());
5677 }
5678 }
5679 }
5680
5681 // If the process exited during the run of the thread plan, notify everyone.
5682
5683 if (event_to_broadcast_sp) {
5684 if (log)
5685 log->PutCString("Process::RunThreadPlan(): rebroadcasting event.");
5686 BroadcastEvent(event_to_broadcast_sp);
5687 }
5688
5689 return return_value;
Jason Molendaef7d6412015-08-06 03:27:10 +00005690}
5691
Kate Stoneb9c1b512016-09-06 20:57:50 +00005692const char *Process::ExecutionResultAsCString(ExpressionResults result) {
5693 const char *result_name;
5694
5695 switch (result) {
5696 case eExpressionCompleted:
5697 result_name = "eExpressionCompleted";
5698 break;
5699 case eExpressionDiscarded:
5700 result_name = "eExpressionDiscarded";
5701 break;
5702 case eExpressionInterrupted:
5703 result_name = "eExpressionInterrupted";
5704 break;
5705 case eExpressionHitBreakpoint:
5706 result_name = "eExpressionHitBreakpoint";
5707 break;
5708 case eExpressionSetupError:
5709 result_name = "eExpressionSetupError";
5710 break;
5711 case eExpressionParseError:
5712 result_name = "eExpressionParseError";
5713 break;
5714 case eExpressionResultUnavailable:
5715 result_name = "eExpressionResultUnavailable";
5716 break;
5717 case eExpressionTimedOut:
5718 result_name = "eExpressionTimedOut";
5719 break;
5720 case eExpressionStoppedForDebug:
5721 result_name = "eExpressionStoppedForDebug";
5722 break;
5723 }
5724 return result_name;
Jason Molenda484900b2015-08-10 07:55:25 +00005725}
5726
Kate Stoneb9c1b512016-09-06 20:57:50 +00005727void Process::GetStatus(Stream &strm) {
5728 const StateType state = GetState();
5729 if (StateIsStoppedState(state, false)) {
5730 if (state == eStateExited) {
5731 int exit_status = GetExitStatus();
5732 const char *exit_description = GetExitDescription();
5733 strm.Printf("Process %" PRIu64 " exited with status = %i (0x%8.8x) %s\n",
5734 GetID(), exit_status, exit_status,
5735 exit_description ? exit_description : "");
5736 } else {
5737 if (state == eStateConnected)
5738 strm.Printf("Connected to remote target.\n");
5739 else
5740 strm.Printf("Process %" PRIu64 " %s\n", GetID(), StateAsCString(state));
5741 }
5742 } else {
5743 strm.Printf("Process %" PRIu64 " is running.\n", GetID());
5744 }
Pavel Labatha933d512016-04-05 13:07:16 +00005745}
5746
Kate Stoneb9c1b512016-09-06 20:57:50 +00005747size_t Process::GetThreadStatus(Stream &strm,
5748 bool only_threads_with_stop_reason,
5749 uint32_t start_frame, uint32_t num_frames,
Jim Ingham6a9767c2016-11-08 20:36:40 +00005750 uint32_t num_frames_with_source,
5751 bool stop_format) {
Kate Stoneb9c1b512016-09-06 20:57:50 +00005752 size_t num_thread_infos_dumped = 0;
Greg Clayton35ca64b2015-04-16 17:13:34 +00005753
Kate Stoneb9c1b512016-09-06 20:57:50 +00005754 // You can't hold the thread list lock while calling Thread::GetStatus. That
5755 // very well might run code (e.g. if we need it
5756 // to get return values or arguments.) For that to work the process has to be
5757 // able to acquire it. So instead copy the thread
5758 // ID's, and look them up one by one:
5759
5760 uint32_t num_threads;
5761 std::vector<lldb::tid_t> thread_id_array;
5762 // Scope for thread list locker;
5763 {
5764 std::lock_guard<std::recursive_mutex> guard(GetThreadList().GetMutex());
5765 ThreadList &curr_thread_list = GetThreadList();
5766 num_threads = curr_thread_list.GetSize();
5767 uint32_t idx;
5768 thread_id_array.resize(num_threads);
5769 for (idx = 0; idx < num_threads; ++idx)
5770 thread_id_array[idx] = curr_thread_list.GetThreadAtIndex(idx)->GetID();
5771 }
5772
5773 for (uint32_t i = 0; i < num_threads; i++) {
5774 ThreadSP thread_sp(GetThreadList().FindThreadByID(thread_id_array[i]));
5775 if (thread_sp) {
5776 if (only_threads_with_stop_reason) {
5777 StopInfoSP stop_info_sp = thread_sp->GetStopInfo();
5778 if (!stop_info_sp || !stop_info_sp->IsValid())
5779 continue;
5780 }
5781 thread_sp->GetStatus(strm, start_frame, num_frames,
Jim Ingham6a9767c2016-11-08 20:36:40 +00005782 num_frames_with_source,
5783 stop_format);
Kate Stoneb9c1b512016-09-06 20:57:50 +00005784 ++num_thread_infos_dumped;
5785 } else {
5786 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS));
5787 if (log)
5788 log->Printf("Process::GetThreadStatus - thread 0x" PRIu64
5789 " vanished while running Thread::GetStatus.");
Kuba Breckaa51ea382014-09-06 01:33:13 +00005790 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00005791 }
5792 return num_thread_infos_dumped;
5793}
5794
5795void Process::AddInvalidMemoryRegion(const LoadRange &region) {
5796 m_memory_cache.AddInvalidRange(region.GetRangeBase(), region.GetByteSize());
5797}
5798
5799bool Process::RemoveInvalidMemoryRange(const LoadRange &region) {
5800 return m_memory_cache.RemoveInvalidRange(region.GetRangeBase(),
5801 region.GetByteSize());
5802}
5803
5804void Process::AddPreResumeAction(PreResumeActionCallback callback,
5805 void *baton) {
5806 m_pre_resume_actions.push_back(PreResumeCallbackAndBaton(callback, baton));
5807}
5808
5809bool Process::RunPreResumeActions() {
5810 bool result = true;
5811 while (!m_pre_resume_actions.empty()) {
5812 struct PreResumeCallbackAndBaton action = m_pre_resume_actions.back();
5813 m_pre_resume_actions.pop_back();
5814 bool this_result = action.callback(action.baton);
5815 if (result)
5816 result = this_result;
5817 }
5818 return result;
5819}
5820
5821void Process::ClearPreResumeActions() { m_pre_resume_actions.clear(); }
5822
Jim Inghamffd91752016-10-20 22:50:00 +00005823void Process::ClearPreResumeAction(PreResumeActionCallback callback, void *baton)
5824{
5825 PreResumeCallbackAndBaton element(callback, baton);
5826 auto found_iter = std::find(m_pre_resume_actions.begin(), m_pre_resume_actions.end(), element);
5827 if (found_iter != m_pre_resume_actions.end())
5828 {
5829 m_pre_resume_actions.erase(found_iter);
5830 }
5831}
5832
Kate Stoneb9c1b512016-09-06 20:57:50 +00005833ProcessRunLock &Process::GetRunLock() {
5834 if (m_private_state_thread.EqualsThread(Host::GetCurrentThread()))
5835 return m_private_run_lock;
5836 else
5837 return m_public_run_lock;
5838}
5839
5840void Process::Flush() {
5841 m_thread_list.Flush();
5842 m_extended_thread_list.Flush();
5843 m_extended_thread_stop_id = 0;
5844 m_queue_list.Clear();
5845 m_queue_list_stop_id = 0;
5846}
5847
5848void Process::DidExec() {
5849 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_PROCESS));
5850 if (log)
5851 log->Printf("Process::%s()", __FUNCTION__);
5852
5853 Target &target = GetTarget();
5854 target.CleanupProcess();
5855 target.ClearModules(false);
5856 m_dynamic_checkers_ap.reset();
5857 m_abi_sp.reset();
5858 m_system_runtime_ap.reset();
5859 m_os_ap.reset();
5860 m_dyld_ap.reset();
5861 m_jit_loaders_ap.reset();
5862 m_image_tokens.clear();
5863 m_allocated_memory_cache.Clear();
5864 m_language_runtimes.clear();
5865 m_instrumentation_runtimes.clear();
5866 m_thread_list.DiscardThreadPlans();
5867 m_memory_cache.Clear(true);
5868 m_stop_info_override_callback = nullptr;
5869 DoDidExec();
5870 CompleteAttach();
5871 // Flush the process (threads and all stack frames) after running
5872 // CompleteAttach()
5873 // in case the dynamic loader loaded things in new locations.
5874 Flush();
5875
5876 // After we figure out what was loaded/unloaded in CompleteAttach,
5877 // we need to let the target know so it can do any cleanup it needs to.
5878 target.DidExec();
5879}
5880
5881addr_t Process::ResolveIndirectFunction(const Address *address, Error &error) {
5882 if (address == nullptr) {
5883 error.SetErrorString("Invalid address argument");
5884 return LLDB_INVALID_ADDRESS;
5885 }
5886
5887 addr_t function_addr = LLDB_INVALID_ADDRESS;
5888
5889 addr_t addr = address->GetLoadAddress(&GetTarget());
5890 std::map<addr_t, addr_t>::const_iterator iter =
5891 m_resolved_indirect_addresses.find(addr);
5892 if (iter != m_resolved_indirect_addresses.end()) {
5893 function_addr = (*iter).second;
5894 } else {
5895 if (!InferiorCall(this, address, function_addr)) {
5896 Symbol *symbol = address->CalculateSymbolContextSymbol();
5897 error.SetErrorStringWithFormat(
5898 "Unable to call resolver for indirect function %s",
5899 symbol ? symbol->GetName().AsCString() : "<UNKNOWN>");
5900 function_addr = LLDB_INVALID_ADDRESS;
5901 } else {
5902 m_resolved_indirect_addresses.insert(
5903 std::pair<addr_t, addr_t>(addr, function_addr));
5904 }
5905 }
5906 return function_addr;
5907}
5908
5909void Process::ModulesDidLoad(ModuleList &module_list) {
5910 SystemRuntime *sys_runtime = GetSystemRuntime();
5911 if (sys_runtime) {
5912 sys_runtime->ModulesDidLoad(module_list);
5913 }
5914
5915 GetJITLoaders().ModulesDidLoad(module_list);
5916
5917 // Give runtimes a chance to be created.
5918 InstrumentationRuntime::ModulesDidLoad(module_list, this,
5919 m_instrumentation_runtimes);
5920
5921 // Tell runtimes about new modules.
5922 for (auto pos = m_instrumentation_runtimes.begin();
5923 pos != m_instrumentation_runtimes.end(); ++pos) {
5924 InstrumentationRuntimeSP runtime = pos->second;
5925 runtime->ModulesDidLoad(module_list);
5926 }
5927
5928 // Let any language runtimes we have already created know
5929 // about the modules that loaded.
5930
5931 // Iterate over a copy of this language runtime list in case
5932 // the language runtime ModulesDidLoad somehow causes the language
5933 // riuntime to be unloaded.
5934 LanguageRuntimeCollection language_runtimes(m_language_runtimes);
5935 for (const auto &pair : language_runtimes) {
5936 // We must check language_runtime_sp to make sure it is not
5937 // nullptr as we might cache the fact that we didn't have a
5938 // language runtime for a language.
5939 LanguageRuntimeSP language_runtime_sp = pair.second;
5940 if (language_runtime_sp)
5941 language_runtime_sp->ModulesDidLoad(module_list);
5942 }
5943
5944 // If we don't have an operating system plug-in, try to load one since
5945 // loading shared libraries might cause a new one to try and load
5946 if (!m_os_ap)
5947 LoadOperatingSystemPlugin(false);
5948
5949 // Give structured-data plugins a chance to see the modified modules.
5950 for (auto pair : m_structured_data_plugin_map) {
5951 if (pair.second)
5952 pair.second->ModulesDidLoad(*this, module_list);
5953 }
5954}
5955
5956void Process::PrintWarning(uint64_t warning_type, const void *repeat_key,
5957 const char *fmt, ...) {
5958 bool print_warning = true;
5959
5960 StreamSP stream_sp = GetTarget().GetDebugger().GetAsyncOutputStream();
5961 if (!stream_sp)
5962 return;
5963 if (warning_type == eWarningsOptimization && !GetWarningsOptimization()) {
5964 return;
5965 }
5966
5967 if (repeat_key != nullptr) {
5968 WarningsCollection::iterator it = m_warnings_issued.find(warning_type);
5969 if (it == m_warnings_issued.end()) {
5970 m_warnings_issued[warning_type] = WarningsPointerSet();
5971 m_warnings_issued[warning_type].insert(repeat_key);
5972 } else {
5973 if (it->second.find(repeat_key) != it->second.end()) {
5974 print_warning = false;
5975 } else {
5976 it->second.insert(repeat_key);
5977 }
5978 }
5979 }
5980
5981 if (print_warning) {
5982 va_list args;
5983 va_start(args, fmt);
5984 stream_sp->PrintfVarArg(fmt, args);
5985 va_end(args);
5986 }
5987}
5988
5989void Process::PrintWarningOptimization(const SymbolContext &sc) {
5990 if (GetWarningsOptimization() && sc.module_sp &&
5991 !sc.module_sp->GetFileSpec().GetFilename().IsEmpty() && sc.function &&
5992 sc.function->GetIsOptimized()) {
5993 PrintWarning(Process::Warnings::eWarningsOptimization, sc.module_sp.get(),
5994 "%s was compiled with optimization - stepping may behave "
5995 "oddly; variables may not be available.\n",
5996 sc.module_sp->GetFileSpec().GetFilename().GetCString());
5997 }
5998}
5999
6000bool Process::GetProcessInfo(ProcessInstanceInfo &info) {
6001 info.Clear();
6002
6003 PlatformSP platform_sp = GetTarget().GetPlatform();
6004 if (!platform_sp)
6005 return false;
6006
6007 return platform_sp->GetProcessInfo(GetID(), info);
6008}
6009
6010ThreadCollectionSP Process::GetHistoryThreads(lldb::addr_t addr) {
6011 ThreadCollectionSP threads;
6012
6013 const MemoryHistorySP &memory_history =
6014 MemoryHistory::FindPlugin(shared_from_this());
6015
6016 if (!memory_history) {
Kuba Breckaa51ea382014-09-06 01:33:13 +00006017 return threads;
Kate Stoneb9c1b512016-09-06 20:57:50 +00006018 }
6019
6020 threads.reset(new ThreadCollection(memory_history->GetHistoryThreads(addr)));
6021
6022 return threads;
Kuba Breckaa51ea382014-09-06 01:33:13 +00006023}
Kuba Brecka63927542014-10-11 01:59:32 +00006024
6025InstrumentationRuntimeSP
Kate Stoneb9c1b512016-09-06 20:57:50 +00006026Process::GetInstrumentationRuntime(lldb::InstrumentationRuntimeType type) {
6027 InstrumentationRuntimeCollection::iterator pos;
6028 pos = m_instrumentation_runtimes.find(type);
6029 if (pos == m_instrumentation_runtimes.end()) {
6030 return InstrumentationRuntimeSP();
6031 } else
6032 return (*pos).second;
Kuba Brecka63927542014-10-11 01:59:32 +00006033}
Tamas Berghammer7cb18bf2015-03-24 11:15:23 +00006034
Kate Stoneb9c1b512016-09-06 20:57:50 +00006035bool Process::GetModuleSpec(const FileSpec &module_file_spec,
6036 const ArchSpec &arch, ModuleSpec &module_spec) {
6037 module_spec.Clear();
6038 return false;
Tamas Berghammer7cb18bf2015-03-24 11:15:23 +00006039}
Tamas Berghammer3cb132a2015-12-02 11:58:51 +00006040
Kate Stoneb9c1b512016-09-06 20:57:50 +00006041size_t Process::AddImageToken(lldb::addr_t image_ptr) {
6042 m_image_tokens.push_back(image_ptr);
6043 return m_image_tokens.size() - 1;
Tamas Berghammer3cb132a2015-12-02 11:58:51 +00006044}
6045
Kate Stoneb9c1b512016-09-06 20:57:50 +00006046lldb::addr_t Process::GetImagePtrFromToken(size_t token) const {
6047 if (token < m_image_tokens.size())
6048 return m_image_tokens[token];
6049 return LLDB_INVALID_IMAGE_TOKEN;
Tamas Berghammer3cb132a2015-12-02 11:58:51 +00006050}
6051
Kate Stoneb9c1b512016-09-06 20:57:50 +00006052void Process::ResetImageToken(size_t token) {
6053 if (token < m_image_tokens.size())
6054 m_image_tokens[token] = LLDB_INVALID_IMAGE_TOKEN;
Enrico Granataf3129cb2015-12-03 23:53:45 +00006055}
Jason Molendafd4cea52016-01-08 21:40:11 +00006056
6057Address
Kate Stoneb9c1b512016-09-06 20:57:50 +00006058Process::AdvanceAddressToNextBranchInstruction(Address default_stop_addr,
6059 AddressRange range_bounds) {
6060 Target &target = GetTarget();
6061 DisassemblerSP disassembler_sp;
6062 InstructionList *insn_list = nullptr;
Jason Molendafd4cea52016-01-08 21:40:11 +00006063
Kate Stoneb9c1b512016-09-06 20:57:50 +00006064 Address retval = default_stop_addr;
Jason Molendafd4cea52016-01-08 21:40:11 +00006065
Kate Stoneb9c1b512016-09-06 20:57:50 +00006066 if (!target.GetUseFastStepping())
Jason Molendafd4cea52016-01-08 21:40:11 +00006067 return retval;
Kate Stoneb9c1b512016-09-06 20:57:50 +00006068 if (!default_stop_addr.IsValid())
6069 return retval;
6070
6071 ExecutionContext exe_ctx(this);
6072 const char *plugin_name = nullptr;
6073 const char *flavor = nullptr;
6074 const bool prefer_file_cache = true;
6075 disassembler_sp = Disassembler::DisassembleRange(
6076 target.GetArchitecture(), plugin_name, flavor, exe_ctx, range_bounds,
6077 prefer_file_cache);
6078 if (disassembler_sp)
6079 insn_list = &disassembler_sp->GetInstructionList();
6080
6081 if (insn_list == nullptr) {
6082 return retval;
6083 }
6084
6085 size_t insn_offset =
6086 insn_list->GetIndexOfInstructionAtAddress(default_stop_addr);
6087 if (insn_offset == UINT32_MAX) {
6088 return retval;
6089 }
6090
6091 uint32_t branch_index =
6092 insn_list->GetIndexOfNextBranchInstruction(insn_offset, target);
6093 if (branch_index == UINT32_MAX) {
6094 return retval;
6095 }
6096
6097 if (branch_index > insn_offset) {
6098 Address next_branch_insn_address =
6099 insn_list->GetInstructionAtIndex(branch_index)->GetAddress();
6100 if (next_branch_insn_address.IsValid() &&
6101 range_bounds.ContainsFileAddress(next_branch_insn_address)) {
6102 retval = next_branch_insn_address;
6103 }
6104 }
6105
6106 return retval;
Jason Molendafd4cea52016-01-08 21:40:11 +00006107}
Howard Hellyerad007562016-07-07 08:21:28 +00006108
Kate Stoneb9c1b512016-09-06 20:57:50 +00006109Error Process::GetMemoryRegions(
6110 std::vector<lldb::MemoryRegionInfoSP> &region_list) {
Howard Hellyerad007562016-07-07 08:21:28 +00006111
Kate Stoneb9c1b512016-09-06 20:57:50 +00006112 Error error;
Howard Hellyerad007562016-07-07 08:21:28 +00006113
Kate Stoneb9c1b512016-09-06 20:57:50 +00006114 lldb::addr_t range_end = 0;
Howard Hellyerad007562016-07-07 08:21:28 +00006115
Kate Stoneb9c1b512016-09-06 20:57:50 +00006116 region_list.clear();
6117 do {
6118 lldb::MemoryRegionInfoSP region_info(new lldb_private::MemoryRegionInfo());
6119 error = GetMemoryRegionInfo(range_end, *region_info);
6120 // GetMemoryRegionInfo should only return an error if it is unimplemented.
6121 if (error.Fail()) {
6122 region_list.clear();
6123 break;
Todd Fiala75930012016-08-19 04:21:48 +00006124 }
6125
Kate Stoneb9c1b512016-09-06 20:57:50 +00006126 range_end = region_info->GetRange().GetRangeEnd();
6127 if (region_info->GetMapped() == MemoryRegionInfo::eYes) {
6128 region_list.push_back(region_info);
6129 }
6130 } while (range_end != LLDB_INVALID_ADDRESS);
Todd Fiala75930012016-08-19 04:21:48 +00006131
Kate Stoneb9c1b512016-09-06 20:57:50 +00006132 return error;
6133}
6134
6135Error Process::ConfigureStructuredData(
6136 const ConstString &type_name, const StructuredData::ObjectSP &config_sp) {
6137 // If you get this, the Process-derived class needs to implement a method
6138 // to enable an already-reported asynchronous structured data feature.
6139 // See ProcessGDBRemote for an example implementation over gdb-remote.
6140 return Error("unimplemented");
6141}
6142
6143void Process::MapSupportedStructuredDataPlugins(
6144 const StructuredData::Array &supported_type_names) {
6145 Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS));
6146
6147 // Bail out early if there are no type names to map.
6148 if (supported_type_names.GetSize() == 0) {
Todd Fiala75930012016-08-19 04:21:48 +00006149 if (log)
Kate Stoneb9c1b512016-09-06 20:57:50 +00006150 log->Printf("Process::%s(): no structured data types supported",
6151 __FUNCTION__);
6152 return;
6153 }
Todd Fiala75930012016-08-19 04:21:48 +00006154
Kate Stoneb9c1b512016-09-06 20:57:50 +00006155 // Convert StructuredData type names to ConstString instances.
6156 std::set<ConstString> const_type_names;
6157
6158 if (log)
6159 log->Printf("Process::%s(): the process supports the following async "
6160 "structured data types:",
6161 __FUNCTION__);
6162
6163 supported_type_names.ForEach(
6164 [&const_type_names, &log](StructuredData::Object *object) {
6165 if (!object) {
6166 // Invalid - shouldn't be null objects in the array.
6167 return false;
Todd Fiala75930012016-08-19 04:21:48 +00006168 }
6169
6170 auto type_name = object->GetAsString();
Kate Stoneb9c1b512016-09-06 20:57:50 +00006171 if (!type_name) {
6172 // Invalid format - all type names should be strings.
6173 return false;
Todd Fiala75930012016-08-19 04:21:48 +00006174 }
6175
6176 const_type_names.insert(ConstString(type_name->GetValue()));
6177 if (log)
Kate Stoneb9c1b512016-09-06 20:57:50 +00006178 log->Printf("- %s", type_name->GetValue().c_str());
Todd Fiala75930012016-08-19 04:21:48 +00006179 return true;
Kate Stoneb9c1b512016-09-06 20:57:50 +00006180 });
Todd Fiala75930012016-08-19 04:21:48 +00006181
Kate Stoneb9c1b512016-09-06 20:57:50 +00006182 // For each StructuredDataPlugin, if the plugin handles any of the
6183 // types in the supported_type_names, map that type name to that plugin.
6184 uint32_t plugin_index = 0;
6185 for (auto create_instance =
6186 PluginManager::GetStructuredDataPluginCreateCallbackAtIndex(
6187 plugin_index);
6188 create_instance && !const_type_names.empty(); ++plugin_index) {
6189 // Create the plugin.
6190 StructuredDataPluginSP plugin_sp = (*create_instance)(*this);
6191 if (!plugin_sp) {
6192 // This plugin doesn't think it can work with the process.
6193 // Move on to the next.
6194 continue;
Todd Fiala75930012016-08-19 04:21:48 +00006195 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00006196
6197 // For any of the remaining type names, map any that this plugin
6198 // supports.
6199 std::vector<ConstString> names_to_remove;
6200 for (auto &type_name : const_type_names) {
6201 if (plugin_sp->SupportsStructuredDataType(type_name)) {
6202 m_structured_data_plugin_map.insert(
6203 std::make_pair(type_name, plugin_sp));
6204 names_to_remove.push_back(type_name);
6205 if (log)
6206 log->Printf("Process::%s(): using plugin %s for type name "
6207 "%s",
6208 __FUNCTION__, plugin_sp->GetPluginName().GetCString(),
6209 type_name.GetCString());
6210 }
6211 }
6212
6213 // Remove the type names that were consumed by this plugin.
6214 for (auto &type_name : names_to_remove)
6215 const_type_names.erase(type_name);
6216 }
Todd Fiala75930012016-08-19 04:21:48 +00006217}
6218
Kate Stoneb9c1b512016-09-06 20:57:50 +00006219bool Process::RouteAsyncStructuredData(
6220 const StructuredData::ObjectSP object_sp) {
6221 // Nothing to do if there's no data.
6222 if (!object_sp)
6223 return false;
Todd Fiala75930012016-08-19 04:21:48 +00006224
Kate Stoneb9c1b512016-09-06 20:57:50 +00006225 // The contract is this must be a dictionary, so we can look up the
6226 // routing key via the top-level 'type' string value within the dictionary.
6227 StructuredData::Dictionary *dictionary = object_sp->GetAsDictionary();
6228 if (!dictionary)
6229 return false;
Todd Fiala75930012016-08-19 04:21:48 +00006230
Kate Stoneb9c1b512016-09-06 20:57:50 +00006231 // Grab the async structured type name (i.e. the feature/plugin name).
6232 ConstString type_name;
6233 if (!dictionary->GetValueForKeyAsString("type", type_name))
6234 return false;
Todd Fiala75930012016-08-19 04:21:48 +00006235
Kate Stoneb9c1b512016-09-06 20:57:50 +00006236 // Check if there's a plugin registered for this type name.
6237 auto find_it = m_structured_data_plugin_map.find(type_name);
6238 if (find_it == m_structured_data_plugin_map.end()) {
6239 // We don't have a mapping for this structured data type.
6240 return false;
6241 }
Todd Fiala75930012016-08-19 04:21:48 +00006242
Kate Stoneb9c1b512016-09-06 20:57:50 +00006243 // Route the structured data to the plugin.
6244 find_it->second->HandleArrivalOfStructuredData(*this, type_name, object_sp);
6245 return true;
Howard Hellyerad007562016-07-07 08:21:28 +00006246}