1 //===-- ScriptInterpreterPython.cpp -----------------------------*- C++ -*-===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 9 #ifdef LLDB_DISABLE_PYTHON 10 11 // Python is disabled in this build 12 13 #else 14 15 // LLDB Python header must be included first 16 #include "lldb-python.h" 17 18 #include "PythonDataObjects.h" 19 #include "PythonExceptionState.h" 20 #include "ScriptInterpreterPythonImpl.h" 21 22 #include "lldb/API/SBFrame.h" 23 #include "lldb/API/SBValue.h" 24 #include "lldb/Breakpoint/StoppointCallbackContext.h" 25 #include "lldb/Breakpoint/WatchpointOptions.h" 26 #include "lldb/Core/Communication.h" 27 #include "lldb/Core/Debugger.h" 28 #include "lldb/Core/PluginManager.h" 29 #include "lldb/Core/ValueObject.h" 30 #include "lldb/DataFormatters/TypeSummary.h" 31 #include "lldb/Host/ConnectionFileDescriptor.h" 32 #include "lldb/Host/FileSystem.h" 33 #include "lldb/Host/HostInfo.h" 34 #include "lldb/Host/Pipe.h" 35 #include "lldb/Interpreter/CommandInterpreter.h" 36 #include "lldb/Interpreter/CommandReturnObject.h" 37 #include "lldb/Target/Thread.h" 38 #include "lldb/Target/ThreadPlan.h" 39 #include "lldb/Utility/Timer.h" 40 41 #if defined(_WIN32) 42 #include "lldb/Host/windows/ConnectionGenericFileWindows.h" 43 #endif 44 45 #include "llvm/ADT/STLExtras.h" 46 #include "llvm/ADT/StringRef.h" 47 #include "llvm/Support/FileSystem.h" 48 49 #include <memory> 50 #include <mutex> 51 #include <stdio.h> 52 #include <stdlib.h> 53 #include <string> 54 55 using namespace lldb; 56 using namespace lldb_private; 57 58 // Defined in the SWIG source file 59 #if PY_MAJOR_VERSION >= 3 60 extern "C" PyObject *PyInit__lldb(void); 61 62 #define LLDBSwigPyInit PyInit__lldb 63 64 #else 65 extern "C" void init_lldb(void); 66 67 #define LLDBSwigPyInit init_lldb 68 #endif 69 70 // These prototypes are the Pythonic implementations of the required callbacks. 71 // Although these are scripting-language specific, their definition depends on 72 // the public API. 73 extern "C" bool LLDBSwigPythonBreakpointCallbackFunction( 74 const char *python_function_name, const char *session_dictionary_name, 75 const lldb::StackFrameSP &sb_frame, 76 const lldb::BreakpointLocationSP &sb_bp_loc); 77 78 extern "C" bool LLDBSwigPythonWatchpointCallbackFunction( 79 const char *python_function_name, const char *session_dictionary_name, 80 const lldb::StackFrameSP &sb_frame, const lldb::WatchpointSP &sb_wp); 81 82 extern "C" bool LLDBSwigPythonCallTypeScript( 83 const char *python_function_name, void *session_dictionary, 84 const lldb::ValueObjectSP &valobj_sp, void **pyfunct_wrapper, 85 const lldb::TypeSummaryOptionsSP &options_sp, std::string &retval); 86 87 extern "C" void * 88 LLDBSwigPythonCreateSyntheticProvider(const char *python_class_name, 89 const char *session_dictionary_name, 90 const lldb::ValueObjectSP &valobj_sp); 91 92 extern "C" void * 93 LLDBSwigPythonCreateCommandObject(const char *python_class_name, 94 const char *session_dictionary_name, 95 const lldb::DebuggerSP debugger_sp); 96 97 extern "C" void *LLDBSwigPythonCreateScriptedThreadPlan( 98 const char *python_class_name, const char *session_dictionary_name, 99 const lldb::ThreadPlanSP &thread_plan_sp); 100 101 extern "C" bool LLDBSWIGPythonCallThreadPlan(void *implementor, 102 const char *method_name, 103 Event *event_sp, bool &got_error); 104 105 extern "C" void *LLDBSwigPythonCreateScriptedBreakpointResolver( 106 const char *python_class_name, const char *session_dictionary_name, 107 lldb_private::StructuredDataImpl *args, lldb::BreakpointSP &bkpt_sp); 108 109 extern "C" unsigned int 110 LLDBSwigPythonCallBreakpointResolver(void *implementor, const char *method_name, 111 lldb_private::SymbolContext *sym_ctx); 112 113 extern "C" size_t LLDBSwigPython_CalculateNumChildren(void *implementor, 114 uint32_t max); 115 116 extern "C" void *LLDBSwigPython_GetChildAtIndex(void *implementor, 117 uint32_t idx); 118 119 extern "C" int LLDBSwigPython_GetIndexOfChildWithName(void *implementor, 120 const char *child_name); 121 122 extern "C" void *LLDBSWIGPython_CastPyObjectToSBValue(void *data); 123 124 extern lldb::ValueObjectSP 125 LLDBSWIGPython_GetValueObjectSPFromSBValue(void *data); 126 127 extern "C" bool LLDBSwigPython_UpdateSynthProviderInstance(void *implementor); 128 129 extern "C" bool 130 LLDBSwigPython_MightHaveChildrenSynthProviderInstance(void *implementor); 131 132 extern "C" void * 133 LLDBSwigPython_GetValueSynthProviderInstance(void *implementor); 134 135 extern "C" bool 136 LLDBSwigPythonCallCommand(const char *python_function_name, 137 const char *session_dictionary_name, 138 lldb::DebuggerSP &debugger, const char *args, 139 lldb_private::CommandReturnObject &cmd_retobj, 140 lldb::ExecutionContextRefSP exe_ctx_ref_sp); 141 142 extern "C" bool 143 LLDBSwigPythonCallCommandObject(void *implementor, lldb::DebuggerSP &debugger, 144 const char *args, 145 lldb_private::CommandReturnObject &cmd_retobj, 146 lldb::ExecutionContextRefSP exe_ctx_ref_sp); 147 148 extern "C" bool 149 LLDBSwigPythonCallModuleInit(const char *python_module_name, 150 const char *session_dictionary_name, 151 lldb::DebuggerSP &debugger); 152 153 extern "C" void * 154 LLDBSWIGPythonCreateOSPlugin(const char *python_class_name, 155 const char *session_dictionary_name, 156 const lldb::ProcessSP &process_sp); 157 158 extern "C" void * 159 LLDBSWIGPython_CreateFrameRecognizer(const char *python_class_name, 160 const char *session_dictionary_name); 161 162 extern "C" void * 163 LLDBSwigPython_GetRecognizedArguments(void *implementor, 164 const lldb::StackFrameSP &frame_sp); 165 166 extern "C" bool LLDBSWIGPythonRunScriptKeywordProcess( 167 const char *python_function_name, const char *session_dictionary_name, 168 lldb::ProcessSP &process, std::string &output); 169 170 extern "C" bool LLDBSWIGPythonRunScriptKeywordThread( 171 const char *python_function_name, const char *session_dictionary_name, 172 lldb::ThreadSP &thread, std::string &output); 173 174 extern "C" bool LLDBSWIGPythonRunScriptKeywordTarget( 175 const char *python_function_name, const char *session_dictionary_name, 176 lldb::TargetSP &target, std::string &output); 177 178 extern "C" bool LLDBSWIGPythonRunScriptKeywordFrame( 179 const char *python_function_name, const char *session_dictionary_name, 180 lldb::StackFrameSP &frame, std::string &output); 181 182 extern "C" bool LLDBSWIGPythonRunScriptKeywordValue( 183 const char *python_function_name, const char *session_dictionary_name, 184 lldb::ValueObjectSP &value, std::string &output); 185 186 extern "C" void * 187 LLDBSWIGPython_GetDynamicSetting(void *module, const char *setting, 188 const lldb::TargetSP &target_sp); 189 190 static bool g_initialized = false; 191 192 namespace { 193 194 // Initializing Python is not a straightforward process. We cannot control 195 // what external code may have done before getting to this point in LLDB, 196 // including potentially having already initialized Python, so we need to do a 197 // lot of work to ensure that the existing state of the system is maintained 198 // across our initialization. We do this by using an RAII pattern where we 199 // save off initial state at the beginning, and restore it at the end 200 struct InitializePythonRAII { 201 public: 202 InitializePythonRAII() 203 : m_gil_state(PyGILState_UNLOCKED), m_was_already_initialized(false) { 204 // Python will muck with STDIN terminal state, so save off any current TTY 205 // settings so we can restore them. 206 m_stdin_tty_state.Save(STDIN_FILENO, false); 207 208 InitializePythonHome(); 209 210 // Register _lldb as a built-in module. 211 PyImport_AppendInittab("_lldb", LLDBSwigPyInit); 212 213 // Python < 3.2 and Python >= 3.2 reversed the ordering requirements for 214 // calling `Py_Initialize` and `PyEval_InitThreads`. < 3.2 requires that you 215 // call `PyEval_InitThreads` first, and >= 3.2 requires that you call it last. 216 #if (PY_MAJOR_VERSION == 3 && PY_MINOR_VERSION >= 2) || (PY_MAJOR_VERSION > 3) 217 Py_InitializeEx(0); 218 InitializeThreadsPrivate(); 219 #else 220 InitializeThreadsPrivate(); 221 Py_InitializeEx(0); 222 #endif 223 } 224 225 ~InitializePythonRAII() { 226 if (m_was_already_initialized) { 227 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_SCRIPT)); 228 LLDB_LOGV(log, "Releasing PyGILState. Returning to state = {0}locked", 229 m_gil_state == PyGILState_UNLOCKED ? "un" : ""); 230 PyGILState_Release(m_gil_state); 231 } else { 232 // We initialized the threads in this function, just unlock the GIL. 233 PyEval_SaveThread(); 234 } 235 236 m_stdin_tty_state.Restore(); 237 } 238 239 private: 240 void InitializePythonHome() { 241 #if defined(LLDB_PYTHON_HOME) 242 #if PY_MAJOR_VERSION >= 3 243 size_t size = 0; 244 static wchar_t *g_python_home = Py_DecodeLocale(LLDB_PYTHON_HOME, &size); 245 #else 246 static char g_python_home[] = LLDB_PYTHON_HOME; 247 #endif 248 Py_SetPythonHome(g_python_home); 249 #else 250 #if defined(__APPLE__) && PY_MAJOR_VERSION == 2 && PY_MINOR_VERSION == 7 251 // For Darwin, the only Python version supported is the one shipped in the 252 // OS OS and linked with lldb. Other installation of Python may have higher 253 // priorities in the path, overriding PYTHONHOME and causing 254 // problems/incompatibilities. In order to avoid confusion, always hardcode 255 // the PythonHome to be right, as it's not going to change. 256 static char path[] = 257 "/System/Library/Frameworks/Python.framework/Versions/2.7"; 258 Py_SetPythonHome(path); 259 #endif 260 #endif 261 } 262 263 void InitializeThreadsPrivate() { 264 // Since Python 3.7 `Py_Initialize` calls `PyEval_InitThreads` inside itself, 265 // so there is no way to determine whether the embedded interpreter 266 // was already initialized by some external code. `PyEval_ThreadsInitialized` 267 // would always return `true` and `PyGILState_Ensure/Release` flow would be 268 // executed instead of unlocking GIL with `PyEval_SaveThread`. When 269 // an another thread calls `PyGILState_Ensure` it would get stuck in deadlock. 270 #if (PY_MAJOR_VERSION == 3 && PY_MINOR_VERSION >= 7) || (PY_MAJOR_VERSION > 3) 271 // The only case we should go further and acquire the GIL: it is unlocked. 272 if (PyGILState_Check()) 273 return; 274 #endif 275 276 if (PyEval_ThreadsInitialized()) { 277 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_SCRIPT)); 278 279 m_was_already_initialized = true; 280 m_gil_state = PyGILState_Ensure(); 281 LLDB_LOGV(log, "Ensured PyGILState. Previous state = {0}locked\n", 282 m_gil_state == PyGILState_UNLOCKED ? "un" : ""); 283 return; 284 } 285 286 // InitThreads acquires the GIL if it hasn't been called before. 287 PyEval_InitThreads(); 288 } 289 290 TerminalState m_stdin_tty_state; 291 PyGILState_STATE m_gil_state; 292 bool m_was_already_initialized; 293 }; 294 } // namespace 295 296 void ScriptInterpreterPython::ComputePythonDirForApple( 297 llvm::SmallVectorImpl<char> &path) { 298 auto style = llvm::sys::path::Style::posix; 299 300 llvm::StringRef path_ref(path.begin(), path.size()); 301 auto rbegin = llvm::sys::path::rbegin(path_ref, style); 302 auto rend = llvm::sys::path::rend(path_ref); 303 auto framework = std::find(rbegin, rend, "LLDB.framework"); 304 if (framework == rend) { 305 ComputePythonDirForPosix(path); 306 return; 307 } 308 path.resize(framework - rend); 309 llvm::sys::path::append(path, style, "LLDB.framework", "Resources", "Python"); 310 } 311 312 void ScriptInterpreterPython::ComputePythonDirForPosix( 313 llvm::SmallVectorImpl<char> &path) { 314 auto style = llvm::sys::path::Style::posix; 315 #if defined(LLDB_PYTHON_RELATIVE_LIBDIR) 316 // Build the path by backing out of the lib dir, then building with whatever 317 // the real python interpreter uses. (e.g. lib for most, lib64 on RHEL 318 // x86_64). 319 llvm::sys::path::remove_filename(path, style); 320 llvm::sys::path::append(path, style, LLDB_PYTHON_RELATIVE_LIBDIR); 321 #else 322 llvm::sys::path::append(path, style, 323 "python" + llvm::Twine(PY_MAJOR_VERSION) + "." + 324 llvm::Twine(PY_MINOR_VERSION), 325 "site-packages"); 326 #endif 327 } 328 329 void ScriptInterpreterPython::ComputePythonDirForWindows( 330 llvm::SmallVectorImpl<char> &path) { 331 auto style = llvm::sys::path::Style::windows; 332 llvm::sys::path::remove_filename(path, style); 333 llvm::sys::path::append(path, style, "lib", "site-packages"); 334 335 // This will be injected directly through FileSpec.GetDirectory().SetString(), 336 // so we need to normalize manually. 337 std::replace(path.begin(), path.end(), '\\', '/'); 338 } 339 340 FileSpec ScriptInterpreterPython::GetPythonDir() { 341 static FileSpec g_spec = []() { 342 FileSpec spec = HostInfo::GetShlibDir(); 343 if (!spec) 344 return FileSpec(); 345 llvm::SmallString<64> path; 346 spec.GetPath(path); 347 348 #if defined(__APPLE__) 349 ComputePythonDirForApple(path); 350 #elif defined(_WIN32) 351 ComputePythonDirForWindows(path); 352 #else 353 ComputePythonDirForPosix(path); 354 #endif 355 spec.GetDirectory().SetString(path); 356 return spec; 357 }(); 358 return g_spec; 359 } 360 361 lldb_private::ConstString ScriptInterpreterPython::GetPluginNameStatic() { 362 static ConstString g_name("script-python"); 363 return g_name; 364 } 365 366 const char *ScriptInterpreterPython::GetPluginDescriptionStatic() { 367 return "Embedded Python interpreter"; 368 } 369 370 void ScriptInterpreterPython::Initialize() { 371 static llvm::once_flag g_once_flag; 372 373 llvm::call_once(g_once_flag, []() { 374 PluginManager::RegisterPlugin(GetPluginNameStatic(), 375 GetPluginDescriptionStatic(), 376 lldb::eScriptLanguagePython, 377 ScriptInterpreterPythonImpl::CreateInstance); 378 }); 379 } 380 381 void ScriptInterpreterPython::Terminate() {} 382 383 ScriptInterpreterPythonImpl::Locker::Locker( 384 ScriptInterpreterPythonImpl *py_interpreter, uint16_t on_entry, 385 uint16_t on_leave, FILE *in, FILE *out, FILE *err) 386 : ScriptInterpreterLocker(), 387 m_teardown_session((on_leave & TearDownSession) == TearDownSession), 388 m_python_interpreter(py_interpreter) { 389 DoAcquireLock(); 390 if ((on_entry & InitSession) == InitSession) { 391 if (!DoInitSession(on_entry, in, out, err)) { 392 // Don't teardown the session if we didn't init it. 393 m_teardown_session = false; 394 } 395 } 396 } 397 398 bool ScriptInterpreterPythonImpl::Locker::DoAcquireLock() { 399 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_SCRIPT)); 400 m_GILState = PyGILState_Ensure(); 401 LLDB_LOGV(log, "Ensured PyGILState. Previous state = {0}locked", 402 m_GILState == PyGILState_UNLOCKED ? "un" : ""); 403 404 // we need to save the thread state when we first start the command because 405 // we might decide to interrupt it while some action is taking place outside 406 // of Python (e.g. printing to screen, waiting for the network, ...) in that 407 // case, _PyThreadState_Current will be NULL - and we would be unable to set 408 // the asynchronous exception - not a desirable situation 409 m_python_interpreter->SetThreadState(PyThreadState_Get()); 410 m_python_interpreter->IncrementLockCount(); 411 return true; 412 } 413 414 bool ScriptInterpreterPythonImpl::Locker::DoInitSession(uint16_t on_entry_flags, 415 FILE *in, FILE *out, 416 FILE *err) { 417 if (!m_python_interpreter) 418 return false; 419 return m_python_interpreter->EnterSession(on_entry_flags, in, out, err); 420 } 421 422 bool ScriptInterpreterPythonImpl::Locker::DoFreeLock() { 423 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_SCRIPT)); 424 LLDB_LOGV(log, "Releasing PyGILState. Returning to state = {0}locked", 425 m_GILState == PyGILState_UNLOCKED ? "un" : ""); 426 PyGILState_Release(m_GILState); 427 m_python_interpreter->DecrementLockCount(); 428 return true; 429 } 430 431 bool ScriptInterpreterPythonImpl::Locker::DoTearDownSession() { 432 if (!m_python_interpreter) 433 return false; 434 m_python_interpreter->LeaveSession(); 435 return true; 436 } 437 438 ScriptInterpreterPythonImpl::Locker::~Locker() { 439 if (m_teardown_session) 440 DoTearDownSession(); 441 DoFreeLock(); 442 } 443 444 ScriptInterpreterPythonImpl::ScriptInterpreterPythonImpl(Debugger &debugger) 445 : ScriptInterpreterPython(debugger), m_saved_stdin(), m_saved_stdout(), 446 m_saved_stderr(), m_main_module(), 447 m_session_dict(PyInitialValue::Invalid), 448 m_sys_module_dict(PyInitialValue::Invalid), m_run_one_line_function(), 449 m_run_one_line_str_global(), 450 m_dictionary_name(m_debugger.GetInstanceName().AsCString()), 451 m_active_io_handler(eIOHandlerNone), m_session_is_active(false), 452 m_pty_slave_is_open(false), m_valid_session(true), m_lock_count(0), 453 m_command_thread_state(nullptr) { 454 InitializePrivate(); 455 456 m_dictionary_name.append("_dict"); 457 StreamString run_string; 458 run_string.Printf("%s = dict()", m_dictionary_name.c_str()); 459 460 Locker locker(this, Locker::AcquireLock, Locker::FreeAcquiredLock); 461 PyRun_SimpleString(run_string.GetData()); 462 463 run_string.Clear(); 464 run_string.Printf( 465 "run_one_line (%s, 'import copy, keyword, os, re, sys, uuid, lldb')", 466 m_dictionary_name.c_str()); 467 PyRun_SimpleString(run_string.GetData()); 468 469 // Reloading modules requires a different syntax in Python 2 and Python 3. 470 // This provides a consistent syntax no matter what version of Python. 471 run_string.Clear(); 472 run_string.Printf("run_one_line (%s, 'from six.moves import reload_module')", 473 m_dictionary_name.c_str()); 474 PyRun_SimpleString(run_string.GetData()); 475 476 // WARNING: temporary code that loads Cocoa formatters - this should be done 477 // on a per-platform basis rather than loading the whole set and letting the 478 // individual formatter classes exploit APIs to check whether they can/cannot 479 // do their task 480 run_string.Clear(); 481 run_string.Printf( 482 "run_one_line (%s, 'import lldb.formatters, lldb.formatters.cpp, pydoc')", 483 m_dictionary_name.c_str()); 484 PyRun_SimpleString(run_string.GetData()); 485 run_string.Clear(); 486 487 run_string.Printf("run_one_line (%s, 'import lldb.embedded_interpreter; from " 488 "lldb.embedded_interpreter import run_python_interpreter; " 489 "from lldb.embedded_interpreter import run_one_line')", 490 m_dictionary_name.c_str()); 491 PyRun_SimpleString(run_string.GetData()); 492 run_string.Clear(); 493 494 run_string.Printf("run_one_line (%s, 'lldb.debugger_unique_id = %" PRIu64 495 "; pydoc.pager = pydoc.plainpager')", 496 m_dictionary_name.c_str(), m_debugger.GetID()); 497 PyRun_SimpleString(run_string.GetData()); 498 } 499 500 ScriptInterpreterPythonImpl::~ScriptInterpreterPythonImpl() { 501 // the session dictionary may hold objects with complex state which means 502 // that they may need to be torn down with some level of smarts and that, in 503 // turn, requires a valid thread state force Python to procure itself such a 504 // thread state, nuke the session dictionary and then release it for others 505 // to use and proceed with the rest of the shutdown 506 auto gil_state = PyGILState_Ensure(); 507 m_session_dict.Reset(); 508 PyGILState_Release(gil_state); 509 } 510 511 lldb_private::ConstString ScriptInterpreterPythonImpl::GetPluginName() { 512 return GetPluginNameStatic(); 513 } 514 515 uint32_t ScriptInterpreterPythonImpl::GetPluginVersion() { return 1; } 516 517 void ScriptInterpreterPythonImpl::IOHandlerActivated(IOHandler &io_handler, 518 bool interactive) { 519 const char *instructions = nullptr; 520 521 switch (m_active_io_handler) { 522 case eIOHandlerNone: 523 break; 524 case eIOHandlerBreakpoint: 525 instructions = R"(Enter your Python command(s). Type 'DONE' to end. 526 def function (frame, bp_loc, internal_dict): 527 """frame: the lldb.SBFrame for the location at which you stopped 528 bp_loc: an lldb.SBBreakpointLocation for the breakpoint location information 529 internal_dict: an LLDB support object not to be used""" 530 )"; 531 break; 532 case eIOHandlerWatchpoint: 533 instructions = "Enter your Python command(s). Type 'DONE' to end.\n"; 534 break; 535 } 536 537 if (instructions) { 538 StreamFileSP output_sp(io_handler.GetOutputStreamFile()); 539 if (output_sp && interactive) { 540 output_sp->PutCString(instructions); 541 output_sp->Flush(); 542 } 543 } 544 } 545 546 void ScriptInterpreterPythonImpl::IOHandlerInputComplete(IOHandler &io_handler, 547 std::string &data) { 548 io_handler.SetIsDone(true); 549 bool batch_mode = m_debugger.GetCommandInterpreter().GetBatchCommandMode(); 550 551 switch (m_active_io_handler) { 552 case eIOHandlerNone: 553 break; 554 case eIOHandlerBreakpoint: { 555 std::vector<BreakpointOptions *> *bp_options_vec = 556 (std::vector<BreakpointOptions *> *)io_handler.GetUserData(); 557 for (auto bp_options : *bp_options_vec) { 558 if (!bp_options) 559 continue; 560 561 auto data_up = llvm::make_unique<CommandDataPython>(); 562 if (!data_up) 563 break; 564 data_up->user_source.SplitIntoLines(data); 565 566 if (GenerateBreakpointCommandCallbackData(data_up->user_source, 567 data_up->script_source) 568 .Success()) { 569 auto baton_sp = std::make_shared<BreakpointOptions::CommandBaton>( 570 std::move(data_up)); 571 bp_options->SetCallback( 572 ScriptInterpreterPythonImpl::BreakpointCallbackFunction, baton_sp); 573 } else if (!batch_mode) { 574 StreamFileSP error_sp = io_handler.GetErrorStreamFile(); 575 if (error_sp) { 576 error_sp->Printf("Warning: No command attached to breakpoint.\n"); 577 error_sp->Flush(); 578 } 579 } 580 } 581 m_active_io_handler = eIOHandlerNone; 582 } break; 583 case eIOHandlerWatchpoint: { 584 WatchpointOptions *wp_options = 585 (WatchpointOptions *)io_handler.GetUserData(); 586 auto data_up = llvm::make_unique<WatchpointOptions::CommandData>(); 587 data_up->user_source.SplitIntoLines(data); 588 589 if (GenerateWatchpointCommandCallbackData(data_up->user_source, 590 data_up->script_source)) { 591 auto baton_sp = 592 std::make_shared<WatchpointOptions::CommandBaton>(std::move(data_up)); 593 wp_options->SetCallback( 594 ScriptInterpreterPythonImpl::WatchpointCallbackFunction, baton_sp); 595 } else if (!batch_mode) { 596 StreamFileSP error_sp = io_handler.GetErrorStreamFile(); 597 if (error_sp) { 598 error_sp->Printf("Warning: No command attached to breakpoint.\n"); 599 error_sp->Flush(); 600 } 601 } 602 m_active_io_handler = eIOHandlerNone; 603 } break; 604 } 605 } 606 607 lldb::ScriptInterpreterSP 608 ScriptInterpreterPythonImpl::CreateInstance(Debugger &debugger) { 609 return std::make_shared<ScriptInterpreterPythonImpl>(debugger); 610 } 611 612 void ScriptInterpreterPythonImpl::ResetOutputFileHandle(FILE *fh) {} 613 614 void ScriptInterpreterPythonImpl::LeaveSession() { 615 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_SCRIPT)); 616 if (log) 617 log->PutCString("ScriptInterpreterPythonImpl::LeaveSession()"); 618 619 // checking that we have a valid thread state - since we use our own 620 // threading and locking in some (rare) cases during cleanup Python may end 621 // up believing we have no thread state and PyImport_AddModule will crash if 622 // that is the case - since that seems to only happen when destroying the 623 // SBDebugger, we can make do without clearing up stdout and stderr 624 625 // rdar://problem/11292882 626 // When the current thread state is NULL, PyThreadState_Get() issues a fatal 627 // error. 628 if (PyThreadState_GetDict()) { 629 PythonDictionary &sys_module_dict = GetSysModuleDictionary(); 630 if (sys_module_dict.IsValid()) { 631 if (m_saved_stdin.IsValid()) { 632 sys_module_dict.SetItemForKey(PythonString("stdin"), m_saved_stdin); 633 m_saved_stdin.Reset(); 634 } 635 if (m_saved_stdout.IsValid()) { 636 sys_module_dict.SetItemForKey(PythonString("stdout"), m_saved_stdout); 637 m_saved_stdout.Reset(); 638 } 639 if (m_saved_stderr.IsValid()) { 640 sys_module_dict.SetItemForKey(PythonString("stderr"), m_saved_stderr); 641 m_saved_stderr.Reset(); 642 } 643 } 644 } 645 646 m_session_is_active = false; 647 } 648 649 bool ScriptInterpreterPythonImpl::SetStdHandle(File &file, const char *py_name, 650 PythonFile &save_file, 651 const char *mode) { 652 if (file.IsValid()) { 653 // Flush the file before giving it to python to avoid interleaved output. 654 file.Flush(); 655 656 PythonDictionary &sys_module_dict = GetSysModuleDictionary(); 657 658 save_file = sys_module_dict.GetItemForKey(PythonString(py_name)) 659 .AsType<PythonFile>(); 660 661 PythonFile new_file(file, mode); 662 sys_module_dict.SetItemForKey(PythonString(py_name), new_file); 663 return true; 664 } else 665 save_file.Reset(); 666 return false; 667 } 668 669 bool ScriptInterpreterPythonImpl::EnterSession(uint16_t on_entry_flags, 670 FILE *in, FILE *out, FILE *err) { 671 // If we have already entered the session, without having officially 'left' 672 // it, then there is no need to 'enter' it again. 673 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_SCRIPT)); 674 if (m_session_is_active) { 675 LLDB_LOGF( 676 log, 677 "ScriptInterpreterPythonImpl::EnterSession(on_entry_flags=0x%" PRIx16 678 ") session is already active, returning without doing anything", 679 on_entry_flags); 680 return false; 681 } 682 683 LLDB_LOGF( 684 log, 685 "ScriptInterpreterPythonImpl::EnterSession(on_entry_flags=0x%" PRIx16 ")", 686 on_entry_flags); 687 688 m_session_is_active = true; 689 690 StreamString run_string; 691 692 if (on_entry_flags & Locker::InitGlobals) { 693 run_string.Printf("run_one_line (%s, 'lldb.debugger_unique_id = %" PRIu64, 694 m_dictionary_name.c_str(), m_debugger.GetID()); 695 run_string.Printf( 696 "; lldb.debugger = lldb.SBDebugger.FindDebuggerWithID (%" PRIu64 ")", 697 m_debugger.GetID()); 698 run_string.PutCString("; lldb.target = lldb.debugger.GetSelectedTarget()"); 699 run_string.PutCString("; lldb.process = lldb.target.GetProcess()"); 700 run_string.PutCString("; lldb.thread = lldb.process.GetSelectedThread ()"); 701 run_string.PutCString("; lldb.frame = lldb.thread.GetSelectedFrame ()"); 702 run_string.PutCString("')"); 703 } else { 704 // If we aren't initing the globals, we should still always set the 705 // debugger (since that is always unique.) 706 run_string.Printf("run_one_line (%s, 'lldb.debugger_unique_id = %" PRIu64, 707 m_dictionary_name.c_str(), m_debugger.GetID()); 708 run_string.Printf( 709 "; lldb.debugger = lldb.SBDebugger.FindDebuggerWithID (%" PRIu64 ")", 710 m_debugger.GetID()); 711 run_string.PutCString("')"); 712 } 713 714 PyRun_SimpleString(run_string.GetData()); 715 run_string.Clear(); 716 717 PythonDictionary &sys_module_dict = GetSysModuleDictionary(); 718 if (sys_module_dict.IsValid()) { 719 File in_file(in, false); 720 File out_file(out, false); 721 File err_file(err, false); 722 723 lldb::StreamFileSP in_sp; 724 lldb::StreamFileSP out_sp; 725 lldb::StreamFileSP err_sp; 726 if (!in_file.IsValid() || !out_file.IsValid() || !err_file.IsValid()) 727 m_debugger.AdoptTopIOHandlerFilesIfInvalid(in_sp, out_sp, err_sp); 728 729 if (on_entry_flags & Locker::NoSTDIN) { 730 m_saved_stdin.Reset(); 731 } else { 732 if (!SetStdHandle(in_file, "stdin", m_saved_stdin, "r")) { 733 if (in_sp) 734 SetStdHandle(in_sp->GetFile(), "stdin", m_saved_stdin, "r"); 735 } 736 } 737 738 if (!SetStdHandle(out_file, "stdout", m_saved_stdout, "w")) { 739 if (out_sp) 740 SetStdHandle(out_sp->GetFile(), "stdout", m_saved_stdout, "w"); 741 } 742 743 if (!SetStdHandle(err_file, "stderr", m_saved_stderr, "w")) { 744 if (err_sp) 745 SetStdHandle(err_sp->GetFile(), "stderr", m_saved_stderr, "w"); 746 } 747 } 748 749 if (PyErr_Occurred()) 750 PyErr_Clear(); 751 752 return true; 753 } 754 755 PythonObject &ScriptInterpreterPythonImpl::GetMainModule() { 756 if (!m_main_module.IsValid()) 757 m_main_module.Reset(PyRefType::Borrowed, PyImport_AddModule("__main__")); 758 return m_main_module; 759 } 760 761 PythonDictionary &ScriptInterpreterPythonImpl::GetSessionDictionary() { 762 if (m_session_dict.IsValid()) 763 return m_session_dict; 764 765 PythonObject &main_module = GetMainModule(); 766 if (!main_module.IsValid()) 767 return m_session_dict; 768 769 PythonDictionary main_dict(PyRefType::Borrowed, 770 PyModule_GetDict(main_module.get())); 771 if (!main_dict.IsValid()) 772 return m_session_dict; 773 774 PythonObject item = main_dict.GetItemForKey(PythonString(m_dictionary_name)); 775 m_session_dict.Reset(PyRefType::Borrowed, item.get()); 776 return m_session_dict; 777 } 778 779 PythonDictionary &ScriptInterpreterPythonImpl::GetSysModuleDictionary() { 780 if (m_sys_module_dict.IsValid()) 781 return m_sys_module_dict; 782 783 PythonObject sys_module(PyRefType::Borrowed, PyImport_AddModule("sys")); 784 if (sys_module.IsValid()) 785 m_sys_module_dict.Reset(PyRefType::Borrowed, 786 PyModule_GetDict(sys_module.get())); 787 return m_sys_module_dict; 788 } 789 790 static std::string GenerateUniqueName(const char *base_name_wanted, 791 uint32_t &functions_counter, 792 const void *name_token = nullptr) { 793 StreamString sstr; 794 795 if (!base_name_wanted) 796 return std::string(); 797 798 if (!name_token) 799 sstr.Printf("%s_%d", base_name_wanted, functions_counter++); 800 else 801 sstr.Printf("%s_%p", base_name_wanted, name_token); 802 803 return sstr.GetString(); 804 } 805 806 bool ScriptInterpreterPythonImpl::GetEmbeddedInterpreterModuleObjects() { 807 if (m_run_one_line_function.IsValid()) 808 return true; 809 810 PythonObject module(PyRefType::Borrowed, 811 PyImport_AddModule("lldb.embedded_interpreter")); 812 if (!module.IsValid()) 813 return false; 814 815 PythonDictionary module_dict(PyRefType::Borrowed, 816 PyModule_GetDict(module.get())); 817 if (!module_dict.IsValid()) 818 return false; 819 820 m_run_one_line_function = 821 module_dict.GetItemForKey(PythonString("run_one_line")); 822 m_run_one_line_str_global = 823 module_dict.GetItemForKey(PythonString("g_run_one_line_str")); 824 return m_run_one_line_function.IsValid(); 825 } 826 827 static void ReadThreadBytesReceived(void *baton, const void *src, 828 size_t src_len) { 829 if (src && src_len) { 830 Stream *strm = (Stream *)baton; 831 strm->Write(src, src_len); 832 strm->Flush(); 833 } 834 } 835 836 bool ScriptInterpreterPythonImpl::ExecuteOneLine( 837 llvm::StringRef command, CommandReturnObject *result, 838 const ExecuteScriptOptions &options) { 839 std::string command_str = command.str(); 840 841 if (!m_valid_session) 842 return false; 843 844 if (!command.empty()) { 845 // We want to call run_one_line, passing in the dictionary and the command 846 // string. We cannot do this through PyRun_SimpleString here because the 847 // command string may contain escaped characters, and putting it inside 848 // another string to pass to PyRun_SimpleString messes up the escaping. So 849 // we use the following more complicated method to pass the command string 850 // directly down to Python. 851 Debugger &debugger = m_debugger; 852 853 StreamFileSP input_file_sp; 854 StreamFileSP output_file_sp; 855 StreamFileSP error_file_sp; 856 Communication output_comm( 857 "lldb.ScriptInterpreterPythonImpl.ExecuteOneLine.comm"); 858 bool join_read_thread = false; 859 if (options.GetEnableIO()) { 860 if (result) { 861 input_file_sp = debugger.GetInputFile(); 862 // Set output to a temporary file so we can forward the results on to 863 // the result object 864 865 Pipe pipe; 866 Status pipe_result = pipe.CreateNew(false); 867 if (pipe_result.Success()) { 868 #if defined(_WIN32) 869 lldb::file_t read_file = pipe.GetReadNativeHandle(); 870 pipe.ReleaseReadFileDescriptor(); 871 std::unique_ptr<ConnectionGenericFile> conn_up( 872 new ConnectionGenericFile(read_file, true)); 873 #else 874 std::unique_ptr<ConnectionFileDescriptor> conn_up( 875 new ConnectionFileDescriptor(pipe.ReleaseReadFileDescriptor(), 876 true)); 877 #endif 878 if (conn_up->IsConnected()) { 879 output_comm.SetConnection(conn_up.release()); 880 output_comm.SetReadThreadBytesReceivedCallback( 881 ReadThreadBytesReceived, &result->GetOutputStream()); 882 output_comm.StartReadThread(); 883 join_read_thread = true; 884 FILE *outfile_handle = 885 fdopen(pipe.ReleaseWriteFileDescriptor(), "w"); 886 output_file_sp = std::make_shared<StreamFile>(outfile_handle, true); 887 error_file_sp = output_file_sp; 888 if (outfile_handle) 889 ::setbuf(outfile_handle, nullptr); 890 891 result->SetImmediateOutputFile( 892 debugger.GetOutputFile()->GetFile().GetStream()); 893 result->SetImmediateErrorFile( 894 debugger.GetErrorFile()->GetFile().GetStream()); 895 } 896 } 897 } 898 if (!input_file_sp || !output_file_sp || !error_file_sp) 899 debugger.AdoptTopIOHandlerFilesIfInvalid(input_file_sp, output_file_sp, 900 error_file_sp); 901 } else { 902 input_file_sp = std::make_shared<StreamFile>(); 903 FileSystem::Instance().Open(input_file_sp->GetFile(), 904 FileSpec(FileSystem::DEV_NULL), 905 File::eOpenOptionRead); 906 907 output_file_sp = std::make_shared<StreamFile>(); 908 FileSystem::Instance().Open(output_file_sp->GetFile(), 909 FileSpec(FileSystem::DEV_NULL), 910 File::eOpenOptionWrite); 911 912 error_file_sp = output_file_sp; 913 } 914 915 FILE *in_file = input_file_sp->GetFile().GetStream(); 916 FILE *out_file = output_file_sp->GetFile().GetStream(); 917 FILE *err_file = error_file_sp->GetFile().GetStream(); 918 bool success = false; 919 { 920 // WARNING! It's imperative that this RAII scope be as tight as 921 // possible. In particular, the scope must end *before* we try to join 922 // the read thread. The reason for this is that a pre-requisite for 923 // joining the read thread is that we close the write handle (to break 924 // the pipe and cause it to wake up and exit). But acquiring the GIL as 925 // below will redirect Python's stdio to use this same handle. If we 926 // close the handle while Python is still using it, bad things will 927 // happen. 928 Locker locker( 929 this, 930 Locker::AcquireLock | Locker::InitSession | 931 (options.GetSetLLDBGlobals() ? Locker::InitGlobals : 0) | 932 ((result && result->GetInteractive()) ? 0 : Locker::NoSTDIN), 933 Locker::FreeAcquiredLock | Locker::TearDownSession, in_file, out_file, 934 err_file); 935 936 // Find the correct script interpreter dictionary in the main module. 937 PythonDictionary &session_dict = GetSessionDictionary(); 938 if (session_dict.IsValid()) { 939 if (GetEmbeddedInterpreterModuleObjects()) { 940 if (PyCallable_Check(m_run_one_line_function.get())) { 941 PythonObject pargs( 942 PyRefType::Owned, 943 Py_BuildValue("(Os)", session_dict.get(), command_str.c_str())); 944 if (pargs.IsValid()) { 945 PythonObject return_value( 946 PyRefType::Owned, 947 PyObject_CallObject(m_run_one_line_function.get(), 948 pargs.get())); 949 if (return_value.IsValid()) 950 success = true; 951 else if (options.GetMaskoutErrors() && PyErr_Occurred()) { 952 PyErr_Print(); 953 PyErr_Clear(); 954 } 955 } 956 } 957 } 958 } 959 960 // Flush our output and error file handles 961 ::fflush(out_file); 962 if (out_file != err_file) 963 ::fflush(err_file); 964 } 965 966 if (join_read_thread) { 967 // Close the write end of the pipe since we are done with our one line 968 // script. This should cause the read thread that output_comm is using to 969 // exit 970 output_file_sp->GetFile().Close(); 971 // The close above should cause this thread to exit when it gets to the 972 // end of file, so let it get all its data 973 output_comm.JoinReadThread(); 974 // Now we can close the read end of the pipe 975 output_comm.Disconnect(); 976 } 977 978 if (success) 979 return true; 980 981 // The one-liner failed. Append the error message. 982 if (result) { 983 result->AppendErrorWithFormat( 984 "python failed attempting to evaluate '%s'\n", command_str.c_str()); 985 } 986 return false; 987 } 988 989 if (result) 990 result->AppendError("empty command passed to python\n"); 991 return false; 992 } 993 994 void ScriptInterpreterPythonImpl::ExecuteInterpreterLoop() { 995 static Timer::Category func_cat(LLVM_PRETTY_FUNCTION); 996 Timer scoped_timer(func_cat, LLVM_PRETTY_FUNCTION); 997 998 Debugger &debugger = m_debugger; 999 1000 // At the moment, the only time the debugger does not have an input file 1001 // handle is when this is called directly from Python, in which case it is 1002 // both dangerous and unnecessary (not to mention confusing) to try to embed 1003 // a running interpreter loop inside the already running Python interpreter 1004 // loop, so we won't do it. 1005 1006 if (!debugger.GetInputFile()->GetFile().IsValid()) 1007 return; 1008 1009 IOHandlerSP io_handler_sp(new IOHandlerPythonInterpreter(debugger, this)); 1010 if (io_handler_sp) { 1011 debugger.PushIOHandler(io_handler_sp); 1012 } 1013 } 1014 1015 bool ScriptInterpreterPythonImpl::Interrupt() { 1016 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_SCRIPT)); 1017 1018 if (IsExecutingPython()) { 1019 PyThreadState *state = PyThreadState_GET(); 1020 if (!state) 1021 state = GetThreadState(); 1022 if (state) { 1023 long tid = state->thread_id; 1024 PyThreadState_Swap(state); 1025 int num_threads = PyThreadState_SetAsyncExc(tid, PyExc_KeyboardInterrupt); 1026 LLDB_LOGF(log, 1027 "ScriptInterpreterPythonImpl::Interrupt() sending " 1028 "PyExc_KeyboardInterrupt (tid = %li, num_threads = %i)...", 1029 tid, num_threads); 1030 return true; 1031 } 1032 } 1033 LLDB_LOGF(log, 1034 "ScriptInterpreterPythonImpl::Interrupt() python code not running, " 1035 "can't interrupt"); 1036 return false; 1037 } 1038 bool ScriptInterpreterPythonImpl::ExecuteOneLineWithReturn( 1039 llvm::StringRef in_string, ScriptInterpreter::ScriptReturnType return_type, 1040 void *ret_value, const ExecuteScriptOptions &options) { 1041 1042 Locker locker(this, 1043 Locker::AcquireLock | Locker::InitSession | 1044 (options.GetSetLLDBGlobals() ? Locker::InitGlobals : 0) | 1045 Locker::NoSTDIN, 1046 Locker::FreeAcquiredLock | Locker::TearDownSession); 1047 1048 PythonObject py_return; 1049 PythonObject &main_module = GetMainModule(); 1050 PythonDictionary globals(PyRefType::Borrowed, 1051 PyModule_GetDict(main_module.get())); 1052 PythonObject py_error; 1053 bool ret_success = false; 1054 int success; 1055 1056 PythonDictionary locals = GetSessionDictionary(); 1057 1058 if (!locals.IsValid()) { 1059 locals.Reset( 1060 PyRefType::Owned, 1061 PyObject_GetAttrString(globals.get(), m_dictionary_name.c_str())); 1062 } 1063 1064 if (!locals.IsValid()) 1065 locals = globals; 1066 1067 py_error.Reset(PyRefType::Borrowed, PyErr_Occurred()); 1068 if (py_error.IsValid()) 1069 PyErr_Clear(); 1070 1071 std::string as_string = in_string.str(); 1072 { // scope for PythonInputReaderManager 1073 // PythonInputReaderManager py_input(options.GetEnableIO() ? this : NULL); 1074 py_return.Reset(PyRefType::Owned, 1075 PyRun_String(as_string.c_str(), Py_eval_input, 1076 globals.get(), locals.get())); 1077 if (!py_return.IsValid()) { 1078 py_error.Reset(PyRefType::Borrowed, PyErr_Occurred()); 1079 if (py_error.IsValid()) 1080 PyErr_Clear(); 1081 1082 py_return.Reset(PyRefType::Owned, 1083 PyRun_String(as_string.c_str(), Py_single_input, 1084 globals.get(), locals.get())); 1085 } 1086 } 1087 1088 if (py_return.IsValid()) { 1089 switch (return_type) { 1090 case eScriptReturnTypeCharPtr: // "char *" 1091 { 1092 const char format[3] = "s#"; 1093 success = PyArg_Parse(py_return.get(), format, (char **)ret_value); 1094 break; 1095 } 1096 case eScriptReturnTypeCharStrOrNone: // char* or NULL if py_return == 1097 // Py_None 1098 { 1099 const char format[3] = "z"; 1100 success = PyArg_Parse(py_return.get(), format, (char **)ret_value); 1101 break; 1102 } 1103 case eScriptReturnTypeBool: { 1104 const char format[2] = "b"; 1105 success = PyArg_Parse(py_return.get(), format, (bool *)ret_value); 1106 break; 1107 } 1108 case eScriptReturnTypeShortInt: { 1109 const char format[2] = "h"; 1110 success = PyArg_Parse(py_return.get(), format, (short *)ret_value); 1111 break; 1112 } 1113 case eScriptReturnTypeShortIntUnsigned: { 1114 const char format[2] = "H"; 1115 success = 1116 PyArg_Parse(py_return.get(), format, (unsigned short *)ret_value); 1117 break; 1118 } 1119 case eScriptReturnTypeInt: { 1120 const char format[2] = "i"; 1121 success = PyArg_Parse(py_return.get(), format, (int *)ret_value); 1122 break; 1123 } 1124 case eScriptReturnTypeIntUnsigned: { 1125 const char format[2] = "I"; 1126 success = PyArg_Parse(py_return.get(), format, (unsigned int *)ret_value); 1127 break; 1128 } 1129 case eScriptReturnTypeLongInt: { 1130 const char format[2] = "l"; 1131 success = PyArg_Parse(py_return.get(), format, (long *)ret_value); 1132 break; 1133 } 1134 case eScriptReturnTypeLongIntUnsigned: { 1135 const char format[2] = "k"; 1136 success = 1137 PyArg_Parse(py_return.get(), format, (unsigned long *)ret_value); 1138 break; 1139 } 1140 case eScriptReturnTypeLongLong: { 1141 const char format[2] = "L"; 1142 success = PyArg_Parse(py_return.get(), format, (long long *)ret_value); 1143 break; 1144 } 1145 case eScriptReturnTypeLongLongUnsigned: { 1146 const char format[2] = "K"; 1147 success = 1148 PyArg_Parse(py_return.get(), format, (unsigned long long *)ret_value); 1149 break; 1150 } 1151 case eScriptReturnTypeFloat: { 1152 const char format[2] = "f"; 1153 success = PyArg_Parse(py_return.get(), format, (float *)ret_value); 1154 break; 1155 } 1156 case eScriptReturnTypeDouble: { 1157 const char format[2] = "d"; 1158 success = PyArg_Parse(py_return.get(), format, (double *)ret_value); 1159 break; 1160 } 1161 case eScriptReturnTypeChar: { 1162 const char format[2] = "c"; 1163 success = PyArg_Parse(py_return.get(), format, (char *)ret_value); 1164 break; 1165 } 1166 case eScriptReturnTypeOpaqueObject: { 1167 success = true; 1168 PyObject *saved_value = py_return.get(); 1169 Py_XINCREF(saved_value); 1170 *((PyObject **)ret_value) = saved_value; 1171 break; 1172 } 1173 } 1174 1175 ret_success = success; 1176 } 1177 1178 py_error.Reset(PyRefType::Borrowed, PyErr_Occurred()); 1179 if (py_error.IsValid()) { 1180 ret_success = false; 1181 if (options.GetMaskoutErrors()) { 1182 if (PyErr_GivenExceptionMatches(py_error.get(), PyExc_SyntaxError)) 1183 PyErr_Print(); 1184 PyErr_Clear(); 1185 } 1186 } 1187 1188 return ret_success; 1189 } 1190 1191 Status ScriptInterpreterPythonImpl::ExecuteMultipleLines( 1192 const char *in_string, const ExecuteScriptOptions &options) { 1193 Status error; 1194 1195 Locker locker(this, 1196 Locker::AcquireLock | Locker::InitSession | 1197 (options.GetSetLLDBGlobals() ? Locker::InitGlobals : 0) | 1198 Locker::NoSTDIN, 1199 Locker::FreeAcquiredLock | Locker::TearDownSession); 1200 1201 PythonObject return_value; 1202 PythonObject &main_module = GetMainModule(); 1203 PythonDictionary globals(PyRefType::Borrowed, 1204 PyModule_GetDict(main_module.get())); 1205 PythonObject py_error; 1206 1207 PythonDictionary locals = GetSessionDictionary(); 1208 1209 if (!locals.IsValid()) 1210 locals.Reset( 1211 PyRefType::Owned, 1212 PyObject_GetAttrString(globals.get(), m_dictionary_name.c_str())); 1213 1214 if (!locals.IsValid()) 1215 locals = globals; 1216 1217 py_error.Reset(PyRefType::Borrowed, PyErr_Occurred()); 1218 if (py_error.IsValid()) 1219 PyErr_Clear(); 1220 1221 if (in_string != nullptr) { 1222 PythonObject code_object; 1223 code_object.Reset(PyRefType::Owned, 1224 Py_CompileString(in_string, "temp.py", Py_file_input)); 1225 1226 if (code_object.IsValid()) { 1227 // In Python 2.x, PyEval_EvalCode takes a PyCodeObject, but in Python 3.x, it 1228 // takes a PyObject. They are convertible (hence the function 1229 // PyCode_Check(PyObject*), so we have to do the cast for Python 2.x 1230 #if PY_MAJOR_VERSION >= 3 1231 PyObject *py_code_obj = code_object.get(); 1232 #else 1233 PyCodeObject *py_code_obj = 1234 reinterpret_cast<PyCodeObject *>(code_object.get()); 1235 #endif 1236 return_value.Reset( 1237 PyRefType::Owned, 1238 PyEval_EvalCode(py_code_obj, globals.get(), locals.get())); 1239 } 1240 } 1241 1242 PythonExceptionState exception_state(!options.GetMaskoutErrors()); 1243 if (exception_state.IsError()) 1244 error.SetErrorString(exception_state.Format().c_str()); 1245 1246 return error; 1247 } 1248 1249 void ScriptInterpreterPythonImpl::CollectDataForBreakpointCommandCallback( 1250 std::vector<BreakpointOptions *> &bp_options_vec, 1251 CommandReturnObject &result) { 1252 m_active_io_handler = eIOHandlerBreakpoint; 1253 m_debugger.GetCommandInterpreter().GetPythonCommandsFromIOHandler( 1254 " ", *this, true, &bp_options_vec); 1255 } 1256 1257 void ScriptInterpreterPythonImpl::CollectDataForWatchpointCommandCallback( 1258 WatchpointOptions *wp_options, CommandReturnObject &result) { 1259 m_active_io_handler = eIOHandlerWatchpoint; 1260 m_debugger.GetCommandInterpreter().GetPythonCommandsFromIOHandler( 1261 " ", *this, true, wp_options); 1262 } 1263 1264 void ScriptInterpreterPythonImpl::SetBreakpointCommandCallbackFunction( 1265 BreakpointOptions *bp_options, const char *function_name) { 1266 // For now just cons up a oneliner that calls the provided function. 1267 std::string oneliner("return "); 1268 oneliner += function_name; 1269 oneliner += "(frame, bp_loc, internal_dict)"; 1270 m_debugger.GetScriptInterpreter()->SetBreakpointCommandCallback( 1271 bp_options, oneliner.c_str()); 1272 } 1273 1274 Status ScriptInterpreterPythonImpl::SetBreakpointCommandCallback( 1275 BreakpointOptions *bp_options, 1276 std::unique_ptr<BreakpointOptions::CommandData> &cmd_data_up) { 1277 Status error; 1278 error = GenerateBreakpointCommandCallbackData(cmd_data_up->user_source, 1279 cmd_data_up->script_source); 1280 if (error.Fail()) { 1281 return error; 1282 } 1283 auto baton_sp = 1284 std::make_shared<BreakpointOptions::CommandBaton>(std::move(cmd_data_up)); 1285 bp_options->SetCallback( 1286 ScriptInterpreterPythonImpl::BreakpointCallbackFunction, baton_sp); 1287 return error; 1288 } 1289 1290 // Set a Python one-liner as the callback for the breakpoint. 1291 Status ScriptInterpreterPythonImpl::SetBreakpointCommandCallback( 1292 BreakpointOptions *bp_options, const char *command_body_text) { 1293 auto data_up = llvm::make_unique<CommandDataPython>(); 1294 1295 // Split the command_body_text into lines, and pass that to 1296 // GenerateBreakpointCommandCallbackData. That will wrap the body in an 1297 // auto-generated function, and return the function name in script_source. 1298 // That is what the callback will actually invoke. 1299 1300 data_up->user_source.SplitIntoLines(command_body_text); 1301 Status error = GenerateBreakpointCommandCallbackData(data_up->user_source, 1302 data_up->script_source); 1303 if (error.Success()) { 1304 auto baton_sp = 1305 std::make_shared<BreakpointOptions::CommandBaton>(std::move(data_up)); 1306 bp_options->SetCallback( 1307 ScriptInterpreterPythonImpl::BreakpointCallbackFunction, baton_sp); 1308 return error; 1309 } else 1310 return error; 1311 } 1312 1313 // Set a Python one-liner as the callback for the watchpoint. 1314 void ScriptInterpreterPythonImpl::SetWatchpointCommandCallback( 1315 WatchpointOptions *wp_options, const char *oneliner) { 1316 auto data_up = llvm::make_unique<WatchpointOptions::CommandData>(); 1317 1318 // It's necessary to set both user_source and script_source to the oneliner. 1319 // The former is used to generate callback description (as in watchpoint 1320 // command list) while the latter is used for Python to interpret during the 1321 // actual callback. 1322 1323 data_up->user_source.AppendString(oneliner); 1324 data_up->script_source.assign(oneliner); 1325 1326 if (GenerateWatchpointCommandCallbackData(data_up->user_source, 1327 data_up->script_source)) { 1328 auto baton_sp = 1329 std::make_shared<WatchpointOptions::CommandBaton>(std::move(data_up)); 1330 wp_options->SetCallback( 1331 ScriptInterpreterPythonImpl::WatchpointCallbackFunction, baton_sp); 1332 } 1333 1334 return; 1335 } 1336 1337 Status ScriptInterpreterPythonImpl::ExportFunctionDefinitionToInterpreter( 1338 StringList &function_def) { 1339 // Convert StringList to one long, newline delimited, const char *. 1340 std::string function_def_string(function_def.CopyList()); 1341 1342 Status error = ExecuteMultipleLines( 1343 function_def_string.c_str(), 1344 ScriptInterpreter::ExecuteScriptOptions().SetEnableIO(false)); 1345 return error; 1346 } 1347 1348 Status ScriptInterpreterPythonImpl::GenerateFunction(const char *signature, 1349 const StringList &input) { 1350 Status error; 1351 int num_lines = input.GetSize(); 1352 if (num_lines == 0) { 1353 error.SetErrorString("No input data."); 1354 return error; 1355 } 1356 1357 if (!signature || *signature == 0) { 1358 error.SetErrorString("No output function name."); 1359 return error; 1360 } 1361 1362 StreamString sstr; 1363 StringList auto_generated_function; 1364 auto_generated_function.AppendString(signature); 1365 auto_generated_function.AppendString( 1366 " global_dict = globals()"); // Grab the global dictionary 1367 auto_generated_function.AppendString( 1368 " new_keys = internal_dict.keys()"); // Make a list of keys in the 1369 // session dict 1370 auto_generated_function.AppendString( 1371 " old_keys = global_dict.keys()"); // Save list of keys in global dict 1372 auto_generated_function.AppendString( 1373 " global_dict.update (internal_dict)"); // Add the session dictionary 1374 // to the 1375 // global dictionary. 1376 1377 // Wrap everything up inside the function, increasing the indentation. 1378 1379 auto_generated_function.AppendString(" if True:"); 1380 for (int i = 0; i < num_lines; ++i) { 1381 sstr.Clear(); 1382 sstr.Printf(" %s", input.GetStringAtIndex(i)); 1383 auto_generated_function.AppendString(sstr.GetData()); 1384 } 1385 auto_generated_function.AppendString( 1386 " for key in new_keys:"); // Iterate over all the keys from session 1387 // dict 1388 auto_generated_function.AppendString( 1389 " internal_dict[key] = global_dict[key]"); // Update session dict 1390 // values 1391 auto_generated_function.AppendString( 1392 " if key not in old_keys:"); // If key was not originally in 1393 // global dict 1394 auto_generated_function.AppendString( 1395 " del global_dict[key]"); // ...then remove key/value from 1396 // global dict 1397 1398 // Verify that the results are valid Python. 1399 1400 error = ExportFunctionDefinitionToInterpreter(auto_generated_function); 1401 1402 return error; 1403 } 1404 1405 bool ScriptInterpreterPythonImpl::GenerateTypeScriptFunction( 1406 StringList &user_input, std::string &output, const void *name_token) { 1407 static uint32_t num_created_functions = 0; 1408 user_input.RemoveBlankLines(); 1409 StreamString sstr; 1410 1411 // Check to see if we have any data; if not, just return. 1412 if (user_input.GetSize() == 0) 1413 return false; 1414 1415 // Take what the user wrote, wrap it all up inside one big auto-generated 1416 // Python function, passing in the ValueObject as parameter to the function. 1417 1418 std::string auto_generated_function_name( 1419 GenerateUniqueName("lldb_autogen_python_type_print_func", 1420 num_created_functions, name_token)); 1421 sstr.Printf("def %s (valobj, internal_dict):", 1422 auto_generated_function_name.c_str()); 1423 1424 if (!GenerateFunction(sstr.GetData(), user_input).Success()) 1425 return false; 1426 1427 // Store the name of the auto-generated function to be called. 1428 output.assign(auto_generated_function_name); 1429 return true; 1430 } 1431 1432 bool ScriptInterpreterPythonImpl::GenerateScriptAliasFunction( 1433 StringList &user_input, std::string &output) { 1434 static uint32_t num_created_functions = 0; 1435 user_input.RemoveBlankLines(); 1436 StreamString sstr; 1437 1438 // Check to see if we have any data; if not, just return. 1439 if (user_input.GetSize() == 0) 1440 return false; 1441 1442 std::string auto_generated_function_name(GenerateUniqueName( 1443 "lldb_autogen_python_cmd_alias_func", num_created_functions)); 1444 1445 sstr.Printf("def %s (debugger, args, result, internal_dict):", 1446 auto_generated_function_name.c_str()); 1447 1448 if (!GenerateFunction(sstr.GetData(), user_input).Success()) 1449 return false; 1450 1451 // Store the name of the auto-generated function to be called. 1452 output.assign(auto_generated_function_name); 1453 return true; 1454 } 1455 1456 bool ScriptInterpreterPythonImpl::GenerateTypeSynthClass( 1457 StringList &user_input, std::string &output, const void *name_token) { 1458 static uint32_t num_created_classes = 0; 1459 user_input.RemoveBlankLines(); 1460 int num_lines = user_input.GetSize(); 1461 StreamString sstr; 1462 1463 // Check to see if we have any data; if not, just return. 1464 if (user_input.GetSize() == 0) 1465 return false; 1466 1467 // Wrap all user input into a Python class 1468 1469 std::string auto_generated_class_name(GenerateUniqueName( 1470 "lldb_autogen_python_type_synth_class", num_created_classes, name_token)); 1471 1472 StringList auto_generated_class; 1473 1474 // Create the function name & definition string. 1475 1476 sstr.Printf("class %s:", auto_generated_class_name.c_str()); 1477 auto_generated_class.AppendString(sstr.GetString()); 1478 1479 // Wrap everything up inside the class, increasing the indentation. we don't 1480 // need to play any fancy indentation tricks here because there is no 1481 // surrounding code whose indentation we need to honor 1482 for (int i = 0; i < num_lines; ++i) { 1483 sstr.Clear(); 1484 sstr.Printf(" %s", user_input.GetStringAtIndex(i)); 1485 auto_generated_class.AppendString(sstr.GetString()); 1486 } 1487 1488 // Verify that the results are valid Python. (even though the method is 1489 // ExportFunctionDefinitionToInterpreter, a class will actually be exported) 1490 // (TODO: rename that method to ExportDefinitionToInterpreter) 1491 if (!ExportFunctionDefinitionToInterpreter(auto_generated_class).Success()) 1492 return false; 1493 1494 // Store the name of the auto-generated class 1495 1496 output.assign(auto_generated_class_name); 1497 return true; 1498 } 1499 1500 StructuredData::GenericSP 1501 ScriptInterpreterPythonImpl::CreateFrameRecognizer(const char *class_name) { 1502 if (class_name == nullptr || class_name[0] == '\0') 1503 return StructuredData::GenericSP(); 1504 1505 void *ret_val; 1506 1507 { 1508 Locker py_lock(this, Locker::AcquireLock | Locker::NoSTDIN, 1509 Locker::FreeLock); 1510 ret_val = LLDBSWIGPython_CreateFrameRecognizer(class_name, 1511 m_dictionary_name.c_str()); 1512 } 1513 1514 return StructuredData::GenericSP(new StructuredPythonObject(ret_val)); 1515 } 1516 1517 lldb::ValueObjectListSP ScriptInterpreterPythonImpl::GetRecognizedArguments( 1518 const StructuredData::ObjectSP &os_plugin_object_sp, 1519 lldb::StackFrameSP frame_sp) { 1520 Locker py_lock(this, Locker::AcquireLock | Locker::NoSTDIN, Locker::FreeLock); 1521 1522 if (!os_plugin_object_sp) 1523 return ValueObjectListSP(); 1524 1525 StructuredData::Generic *generic = os_plugin_object_sp->GetAsGeneric(); 1526 if (!generic) 1527 return nullptr; 1528 1529 PythonObject implementor(PyRefType::Borrowed, 1530 (PyObject *)generic->GetValue()); 1531 1532 if (!implementor.IsAllocated()) 1533 return ValueObjectListSP(); 1534 1535 PythonObject py_return(PyRefType::Owned, 1536 (PyObject *)LLDBSwigPython_GetRecognizedArguments( 1537 implementor.get(), frame_sp)); 1538 1539 // if it fails, print the error but otherwise go on 1540 if (PyErr_Occurred()) { 1541 PyErr_Print(); 1542 PyErr_Clear(); 1543 } 1544 if (py_return.get()) { 1545 PythonList result_list(PyRefType::Borrowed, py_return.get()); 1546 ValueObjectListSP result = ValueObjectListSP(new ValueObjectList()); 1547 for (size_t i = 0; i < result_list.GetSize(); i++) { 1548 PyObject *item = result_list.GetItemAtIndex(i).get(); 1549 lldb::SBValue *sb_value_ptr = 1550 (lldb::SBValue *)LLDBSWIGPython_CastPyObjectToSBValue(item); 1551 auto valobj_sp = LLDBSWIGPython_GetValueObjectSPFromSBValue(sb_value_ptr); 1552 if (valobj_sp) 1553 result->Append(valobj_sp); 1554 } 1555 return result; 1556 } 1557 return ValueObjectListSP(); 1558 } 1559 1560 StructuredData::GenericSP 1561 ScriptInterpreterPythonImpl::OSPlugin_CreatePluginObject( 1562 const char *class_name, lldb::ProcessSP process_sp) { 1563 if (class_name == nullptr || class_name[0] == '\0') 1564 return StructuredData::GenericSP(); 1565 1566 if (!process_sp) 1567 return StructuredData::GenericSP(); 1568 1569 void *ret_val; 1570 1571 { 1572 Locker py_lock(this, Locker::AcquireLock | Locker::NoSTDIN, 1573 Locker::FreeLock); 1574 ret_val = LLDBSWIGPythonCreateOSPlugin( 1575 class_name, m_dictionary_name.c_str(), process_sp); 1576 } 1577 1578 return StructuredData::GenericSP(new StructuredPythonObject(ret_val)); 1579 } 1580 1581 StructuredData::DictionarySP ScriptInterpreterPythonImpl::OSPlugin_RegisterInfo( 1582 StructuredData::ObjectSP os_plugin_object_sp) { 1583 Locker py_lock(this, Locker::AcquireLock | Locker::NoSTDIN, Locker::FreeLock); 1584 1585 static char callee_name[] = "get_register_info"; 1586 1587 if (!os_plugin_object_sp) 1588 return StructuredData::DictionarySP(); 1589 1590 StructuredData::Generic *generic = os_plugin_object_sp->GetAsGeneric(); 1591 if (!generic) 1592 return nullptr; 1593 1594 PythonObject implementor(PyRefType::Borrowed, 1595 (PyObject *)generic->GetValue()); 1596 1597 if (!implementor.IsAllocated()) 1598 return StructuredData::DictionarySP(); 1599 1600 PythonObject pmeth(PyRefType::Owned, 1601 PyObject_GetAttrString(implementor.get(), callee_name)); 1602 1603 if (PyErr_Occurred()) 1604 PyErr_Clear(); 1605 1606 if (!pmeth.IsAllocated()) 1607 return StructuredData::DictionarySP(); 1608 1609 if (PyCallable_Check(pmeth.get()) == 0) { 1610 if (PyErr_Occurred()) 1611 PyErr_Clear(); 1612 1613 return StructuredData::DictionarySP(); 1614 } 1615 1616 if (PyErr_Occurred()) 1617 PyErr_Clear(); 1618 1619 // right now we know this function exists and is callable.. 1620 PythonObject py_return( 1621 PyRefType::Owned, 1622 PyObject_CallMethod(implementor.get(), callee_name, nullptr)); 1623 1624 // if it fails, print the error but otherwise go on 1625 if (PyErr_Occurred()) { 1626 PyErr_Print(); 1627 PyErr_Clear(); 1628 } 1629 if (py_return.get()) { 1630 PythonDictionary result_dict(PyRefType::Borrowed, py_return.get()); 1631 return result_dict.CreateStructuredDictionary(); 1632 } 1633 return StructuredData::DictionarySP(); 1634 } 1635 1636 StructuredData::ArraySP ScriptInterpreterPythonImpl::OSPlugin_ThreadsInfo( 1637 StructuredData::ObjectSP os_plugin_object_sp) { 1638 Locker py_lock(this, Locker::AcquireLock | Locker::NoSTDIN, Locker::FreeLock); 1639 1640 static char callee_name[] = "get_thread_info"; 1641 1642 if (!os_plugin_object_sp) 1643 return StructuredData::ArraySP(); 1644 1645 StructuredData::Generic *generic = os_plugin_object_sp->GetAsGeneric(); 1646 if (!generic) 1647 return nullptr; 1648 1649 PythonObject implementor(PyRefType::Borrowed, 1650 (PyObject *)generic->GetValue()); 1651 1652 if (!implementor.IsAllocated()) 1653 return StructuredData::ArraySP(); 1654 1655 PythonObject pmeth(PyRefType::Owned, 1656 PyObject_GetAttrString(implementor.get(), callee_name)); 1657 1658 if (PyErr_Occurred()) 1659 PyErr_Clear(); 1660 1661 if (!pmeth.IsAllocated()) 1662 return StructuredData::ArraySP(); 1663 1664 if (PyCallable_Check(pmeth.get()) == 0) { 1665 if (PyErr_Occurred()) 1666 PyErr_Clear(); 1667 1668 return StructuredData::ArraySP(); 1669 } 1670 1671 if (PyErr_Occurred()) 1672 PyErr_Clear(); 1673 1674 // right now we know this function exists and is callable.. 1675 PythonObject py_return( 1676 PyRefType::Owned, 1677 PyObject_CallMethod(implementor.get(), callee_name, nullptr)); 1678 1679 // if it fails, print the error but otherwise go on 1680 if (PyErr_Occurred()) { 1681 PyErr_Print(); 1682 PyErr_Clear(); 1683 } 1684 1685 if (py_return.get()) { 1686 PythonList result_list(PyRefType::Borrowed, py_return.get()); 1687 return result_list.CreateStructuredArray(); 1688 } 1689 return StructuredData::ArraySP(); 1690 } 1691 1692 // GetPythonValueFormatString provides a system independent type safe way to 1693 // convert a variable's type into a python value format. Python value formats 1694 // are defined in terms of builtin C types and could change from system to as 1695 // the underlying typedef for uint* types, size_t, off_t and other values 1696 // change. 1697 1698 template <typename T> const char *GetPythonValueFormatString(T t); 1699 template <> const char *GetPythonValueFormatString(char *) { return "s"; } 1700 template <> const char *GetPythonValueFormatString(char) { return "b"; } 1701 template <> const char *GetPythonValueFormatString(unsigned char) { 1702 return "B"; 1703 } 1704 template <> const char *GetPythonValueFormatString(short) { return "h"; } 1705 template <> const char *GetPythonValueFormatString(unsigned short) { 1706 return "H"; 1707 } 1708 template <> const char *GetPythonValueFormatString(int) { return "i"; } 1709 template <> const char *GetPythonValueFormatString(unsigned int) { return "I"; } 1710 template <> const char *GetPythonValueFormatString(long) { return "l"; } 1711 template <> const char *GetPythonValueFormatString(unsigned long) { 1712 return "k"; 1713 } 1714 template <> const char *GetPythonValueFormatString(long long) { return "L"; } 1715 template <> const char *GetPythonValueFormatString(unsigned long long) { 1716 return "K"; 1717 } 1718 template <> const char *GetPythonValueFormatString(float t) { return "f"; } 1719 template <> const char *GetPythonValueFormatString(double t) { return "d"; } 1720 1721 StructuredData::StringSP 1722 ScriptInterpreterPythonImpl::OSPlugin_RegisterContextData( 1723 StructuredData::ObjectSP os_plugin_object_sp, lldb::tid_t tid) { 1724 Locker py_lock(this, Locker::AcquireLock | Locker::NoSTDIN, Locker::FreeLock); 1725 1726 static char callee_name[] = "get_register_data"; 1727 static char *param_format = 1728 const_cast<char *>(GetPythonValueFormatString(tid)); 1729 1730 if (!os_plugin_object_sp) 1731 return StructuredData::StringSP(); 1732 1733 StructuredData::Generic *generic = os_plugin_object_sp->GetAsGeneric(); 1734 if (!generic) 1735 return nullptr; 1736 PythonObject implementor(PyRefType::Borrowed, 1737 (PyObject *)generic->GetValue()); 1738 1739 if (!implementor.IsAllocated()) 1740 return StructuredData::StringSP(); 1741 1742 PythonObject pmeth(PyRefType::Owned, 1743 PyObject_GetAttrString(implementor.get(), callee_name)); 1744 1745 if (PyErr_Occurred()) 1746 PyErr_Clear(); 1747 1748 if (!pmeth.IsAllocated()) 1749 return StructuredData::StringSP(); 1750 1751 if (PyCallable_Check(pmeth.get()) == 0) { 1752 if (PyErr_Occurred()) 1753 PyErr_Clear(); 1754 return StructuredData::StringSP(); 1755 } 1756 1757 if (PyErr_Occurred()) 1758 PyErr_Clear(); 1759 1760 // right now we know this function exists and is callable.. 1761 PythonObject py_return( 1762 PyRefType::Owned, 1763 PyObject_CallMethod(implementor.get(), callee_name, param_format, tid)); 1764 1765 // if it fails, print the error but otherwise go on 1766 if (PyErr_Occurred()) { 1767 PyErr_Print(); 1768 PyErr_Clear(); 1769 } 1770 1771 if (py_return.get()) { 1772 PythonBytes result(PyRefType::Borrowed, py_return.get()); 1773 return result.CreateStructuredString(); 1774 } 1775 return StructuredData::StringSP(); 1776 } 1777 1778 StructuredData::DictionarySP ScriptInterpreterPythonImpl::OSPlugin_CreateThread( 1779 StructuredData::ObjectSP os_plugin_object_sp, lldb::tid_t tid, 1780 lldb::addr_t context) { 1781 Locker py_lock(this, Locker::AcquireLock | Locker::NoSTDIN, Locker::FreeLock); 1782 1783 static char callee_name[] = "create_thread"; 1784 std::string param_format; 1785 param_format += GetPythonValueFormatString(tid); 1786 param_format += GetPythonValueFormatString(context); 1787 1788 if (!os_plugin_object_sp) 1789 return StructuredData::DictionarySP(); 1790 1791 StructuredData::Generic *generic = os_plugin_object_sp->GetAsGeneric(); 1792 if (!generic) 1793 return nullptr; 1794 1795 PythonObject implementor(PyRefType::Borrowed, 1796 (PyObject *)generic->GetValue()); 1797 1798 if (!implementor.IsAllocated()) 1799 return StructuredData::DictionarySP(); 1800 1801 PythonObject pmeth(PyRefType::Owned, 1802 PyObject_GetAttrString(implementor.get(), callee_name)); 1803 1804 if (PyErr_Occurred()) 1805 PyErr_Clear(); 1806 1807 if (!pmeth.IsAllocated()) 1808 return StructuredData::DictionarySP(); 1809 1810 if (PyCallable_Check(pmeth.get()) == 0) { 1811 if (PyErr_Occurred()) 1812 PyErr_Clear(); 1813 return StructuredData::DictionarySP(); 1814 } 1815 1816 if (PyErr_Occurred()) 1817 PyErr_Clear(); 1818 1819 // right now we know this function exists and is callable.. 1820 PythonObject py_return(PyRefType::Owned, 1821 PyObject_CallMethod(implementor.get(), callee_name, 1822 ¶m_format[0], tid, context)); 1823 1824 // if it fails, print the error but otherwise go on 1825 if (PyErr_Occurred()) { 1826 PyErr_Print(); 1827 PyErr_Clear(); 1828 } 1829 1830 if (py_return.get()) { 1831 PythonDictionary result_dict(PyRefType::Borrowed, py_return.get()); 1832 return result_dict.CreateStructuredDictionary(); 1833 } 1834 return StructuredData::DictionarySP(); 1835 } 1836 1837 StructuredData::ObjectSP ScriptInterpreterPythonImpl::CreateScriptedThreadPlan( 1838 const char *class_name, lldb::ThreadPlanSP thread_plan_sp) { 1839 if (class_name == nullptr || class_name[0] == '\0') 1840 return StructuredData::ObjectSP(); 1841 1842 if (!thread_plan_sp.get()) 1843 return StructuredData::ObjectSP(); 1844 1845 Debugger &debugger = thread_plan_sp->GetTarget().GetDebugger(); 1846 ScriptInterpreter *script_interpreter = debugger.GetScriptInterpreter(); 1847 ScriptInterpreterPythonImpl *python_interpreter = 1848 static_cast<ScriptInterpreterPythonImpl *>(script_interpreter); 1849 1850 if (!script_interpreter) 1851 return StructuredData::ObjectSP(); 1852 1853 void *ret_val; 1854 1855 { 1856 Locker py_lock(this, 1857 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 1858 1859 ret_val = LLDBSwigPythonCreateScriptedThreadPlan( 1860 class_name, python_interpreter->m_dictionary_name.c_str(), 1861 thread_plan_sp); 1862 } 1863 1864 return StructuredData::ObjectSP(new StructuredPythonObject(ret_val)); 1865 } 1866 1867 bool ScriptInterpreterPythonImpl::ScriptedThreadPlanExplainsStop( 1868 StructuredData::ObjectSP implementor_sp, Event *event, bool &script_error) { 1869 bool explains_stop = true; 1870 StructuredData::Generic *generic = nullptr; 1871 if (implementor_sp) 1872 generic = implementor_sp->GetAsGeneric(); 1873 if (generic) { 1874 Locker py_lock(this, 1875 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 1876 explains_stop = LLDBSWIGPythonCallThreadPlan( 1877 generic->GetValue(), "explains_stop", event, script_error); 1878 if (script_error) 1879 return true; 1880 } 1881 return explains_stop; 1882 } 1883 1884 bool ScriptInterpreterPythonImpl::ScriptedThreadPlanShouldStop( 1885 StructuredData::ObjectSP implementor_sp, Event *event, bool &script_error) { 1886 bool should_stop = true; 1887 StructuredData::Generic *generic = nullptr; 1888 if (implementor_sp) 1889 generic = implementor_sp->GetAsGeneric(); 1890 if (generic) { 1891 Locker py_lock(this, 1892 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 1893 should_stop = LLDBSWIGPythonCallThreadPlan( 1894 generic->GetValue(), "should_stop", event, script_error); 1895 if (script_error) 1896 return true; 1897 } 1898 return should_stop; 1899 } 1900 1901 bool ScriptInterpreterPythonImpl::ScriptedThreadPlanIsStale( 1902 StructuredData::ObjectSP implementor_sp, bool &script_error) { 1903 bool is_stale = true; 1904 StructuredData::Generic *generic = nullptr; 1905 if (implementor_sp) 1906 generic = implementor_sp->GetAsGeneric(); 1907 if (generic) { 1908 Locker py_lock(this, 1909 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 1910 is_stale = LLDBSWIGPythonCallThreadPlan(generic->GetValue(), "is_stale", 1911 nullptr, script_error); 1912 if (script_error) 1913 return true; 1914 } 1915 return is_stale; 1916 } 1917 1918 lldb::StateType ScriptInterpreterPythonImpl::ScriptedThreadPlanGetRunState( 1919 StructuredData::ObjectSP implementor_sp, bool &script_error) { 1920 bool should_step = false; 1921 StructuredData::Generic *generic = nullptr; 1922 if (implementor_sp) 1923 generic = implementor_sp->GetAsGeneric(); 1924 if (generic) { 1925 Locker py_lock(this, 1926 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 1927 should_step = LLDBSWIGPythonCallThreadPlan( 1928 generic->GetValue(), "should_step", nullptr, script_error); 1929 if (script_error) 1930 should_step = true; 1931 } 1932 if (should_step) 1933 return lldb::eStateStepping; 1934 else 1935 return lldb::eStateRunning; 1936 } 1937 1938 StructuredData::GenericSP 1939 ScriptInterpreterPythonImpl::CreateScriptedBreakpointResolver( 1940 const char *class_name, StructuredDataImpl *args_data, 1941 lldb::BreakpointSP &bkpt_sp) { 1942 1943 if (class_name == nullptr || class_name[0] == '\0') 1944 return StructuredData::GenericSP(); 1945 1946 if (!bkpt_sp.get()) 1947 return StructuredData::GenericSP(); 1948 1949 Debugger &debugger = bkpt_sp->GetTarget().GetDebugger(); 1950 ScriptInterpreter *script_interpreter = debugger.GetScriptInterpreter(); 1951 ScriptInterpreterPythonImpl *python_interpreter = 1952 static_cast<ScriptInterpreterPythonImpl *>(script_interpreter); 1953 1954 if (!script_interpreter) 1955 return StructuredData::GenericSP(); 1956 1957 void *ret_val; 1958 1959 { 1960 Locker py_lock(this, 1961 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 1962 1963 ret_val = LLDBSwigPythonCreateScriptedBreakpointResolver( 1964 class_name, python_interpreter->m_dictionary_name.c_str(), args_data, 1965 bkpt_sp); 1966 } 1967 1968 return StructuredData::GenericSP(new StructuredPythonObject(ret_val)); 1969 } 1970 1971 bool ScriptInterpreterPythonImpl::ScriptedBreakpointResolverSearchCallback( 1972 StructuredData::GenericSP implementor_sp, SymbolContext *sym_ctx) { 1973 bool should_continue = false; 1974 1975 if (implementor_sp) { 1976 Locker py_lock(this, 1977 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 1978 should_continue = LLDBSwigPythonCallBreakpointResolver( 1979 implementor_sp->GetValue(), "__callback__", sym_ctx); 1980 if (PyErr_Occurred()) { 1981 PyErr_Print(); 1982 PyErr_Clear(); 1983 } 1984 } 1985 return should_continue; 1986 } 1987 1988 lldb::SearchDepth 1989 ScriptInterpreterPythonImpl::ScriptedBreakpointResolverSearchDepth( 1990 StructuredData::GenericSP implementor_sp) { 1991 int depth_as_int = lldb::eSearchDepthModule; 1992 if (implementor_sp) { 1993 Locker py_lock(this, 1994 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 1995 depth_as_int = LLDBSwigPythonCallBreakpointResolver( 1996 implementor_sp->GetValue(), "__get_depth__", nullptr); 1997 if (PyErr_Occurred()) { 1998 PyErr_Print(); 1999 PyErr_Clear(); 2000 } 2001 } 2002 if (depth_as_int == lldb::eSearchDepthInvalid) 2003 return lldb::eSearchDepthModule; 2004 2005 if (depth_as_int <= lldb::kLastSearchDepthKind) 2006 return (lldb::SearchDepth)depth_as_int; 2007 else 2008 return lldb::eSearchDepthModule; 2009 } 2010 2011 StructuredData::ObjectSP 2012 ScriptInterpreterPythonImpl::LoadPluginModule(const FileSpec &file_spec, 2013 lldb_private::Status &error) { 2014 if (!FileSystem::Instance().Exists(file_spec)) { 2015 error.SetErrorString("no such file"); 2016 return StructuredData::ObjectSP(); 2017 } 2018 2019 StructuredData::ObjectSP module_sp; 2020 2021 if (LoadScriptingModule(file_spec.GetPath().c_str(), true, true, error, 2022 &module_sp)) 2023 return module_sp; 2024 2025 return StructuredData::ObjectSP(); 2026 } 2027 2028 StructuredData::DictionarySP ScriptInterpreterPythonImpl::GetDynamicSettings( 2029 StructuredData::ObjectSP plugin_module_sp, Target *target, 2030 const char *setting_name, lldb_private::Status &error) { 2031 if (!plugin_module_sp || !target || !setting_name || !setting_name[0]) 2032 return StructuredData::DictionarySP(); 2033 StructuredData::Generic *generic = plugin_module_sp->GetAsGeneric(); 2034 if (!generic) 2035 return StructuredData::DictionarySP(); 2036 2037 PythonObject reply_pyobj; 2038 Locker py_lock(this, 2039 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 2040 TargetSP target_sp(target->shared_from_this()); 2041 reply_pyobj.Reset(PyRefType::Owned, 2042 (PyObject *)LLDBSWIGPython_GetDynamicSetting( 2043 generic->GetValue(), setting_name, target_sp)); 2044 2045 PythonDictionary py_dict(PyRefType::Borrowed, reply_pyobj.get()); 2046 return py_dict.CreateStructuredDictionary(); 2047 } 2048 2049 StructuredData::ObjectSP 2050 ScriptInterpreterPythonImpl::CreateSyntheticScriptedProvider( 2051 const char *class_name, lldb::ValueObjectSP valobj) { 2052 if (class_name == nullptr || class_name[0] == '\0') 2053 return StructuredData::ObjectSP(); 2054 2055 if (!valobj.get()) 2056 return StructuredData::ObjectSP(); 2057 2058 ExecutionContext exe_ctx(valobj->GetExecutionContextRef()); 2059 Target *target = exe_ctx.GetTargetPtr(); 2060 2061 if (!target) 2062 return StructuredData::ObjectSP(); 2063 2064 Debugger &debugger = target->GetDebugger(); 2065 ScriptInterpreter *script_interpreter = debugger.GetScriptInterpreter(); 2066 ScriptInterpreterPythonImpl *python_interpreter = 2067 (ScriptInterpreterPythonImpl *)script_interpreter; 2068 2069 if (!script_interpreter) 2070 return StructuredData::ObjectSP(); 2071 2072 void *ret_val = nullptr; 2073 2074 { 2075 Locker py_lock(this, 2076 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 2077 ret_val = LLDBSwigPythonCreateSyntheticProvider( 2078 class_name, python_interpreter->m_dictionary_name.c_str(), valobj); 2079 } 2080 2081 return StructuredData::ObjectSP(new StructuredPythonObject(ret_val)); 2082 } 2083 2084 StructuredData::GenericSP 2085 ScriptInterpreterPythonImpl::CreateScriptCommandObject(const char *class_name) { 2086 DebuggerSP debugger_sp(m_debugger.shared_from_this()); 2087 2088 if (class_name == nullptr || class_name[0] == '\0') 2089 return StructuredData::GenericSP(); 2090 2091 if (!debugger_sp.get()) 2092 return StructuredData::GenericSP(); 2093 2094 void *ret_val; 2095 2096 { 2097 Locker py_lock(this, 2098 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 2099 ret_val = LLDBSwigPythonCreateCommandObject( 2100 class_name, m_dictionary_name.c_str(), debugger_sp); 2101 } 2102 2103 return StructuredData::GenericSP(new StructuredPythonObject(ret_val)); 2104 } 2105 2106 bool ScriptInterpreterPythonImpl::GenerateTypeScriptFunction( 2107 const char *oneliner, std::string &output, const void *name_token) { 2108 StringList input; 2109 input.SplitIntoLines(oneliner, strlen(oneliner)); 2110 return GenerateTypeScriptFunction(input, output, name_token); 2111 } 2112 2113 bool ScriptInterpreterPythonImpl::GenerateTypeSynthClass( 2114 const char *oneliner, std::string &output, const void *name_token) { 2115 StringList input; 2116 input.SplitIntoLines(oneliner, strlen(oneliner)); 2117 return GenerateTypeSynthClass(input, output, name_token); 2118 } 2119 2120 Status ScriptInterpreterPythonImpl::GenerateBreakpointCommandCallbackData( 2121 StringList &user_input, std::string &output) { 2122 static uint32_t num_created_functions = 0; 2123 user_input.RemoveBlankLines(); 2124 StreamString sstr; 2125 Status error; 2126 if (user_input.GetSize() == 0) { 2127 error.SetErrorString("No input data."); 2128 return error; 2129 } 2130 2131 std::string auto_generated_function_name(GenerateUniqueName( 2132 "lldb_autogen_python_bp_callback_func_", num_created_functions)); 2133 sstr.Printf("def %s (frame, bp_loc, internal_dict):", 2134 auto_generated_function_name.c_str()); 2135 2136 error = GenerateFunction(sstr.GetData(), user_input); 2137 if (!error.Success()) 2138 return error; 2139 2140 // Store the name of the auto-generated function to be called. 2141 output.assign(auto_generated_function_name); 2142 return error; 2143 } 2144 2145 bool ScriptInterpreterPythonImpl::GenerateWatchpointCommandCallbackData( 2146 StringList &user_input, std::string &output) { 2147 static uint32_t num_created_functions = 0; 2148 user_input.RemoveBlankLines(); 2149 StreamString sstr; 2150 2151 if (user_input.GetSize() == 0) 2152 return false; 2153 2154 std::string auto_generated_function_name(GenerateUniqueName( 2155 "lldb_autogen_python_wp_callback_func_", num_created_functions)); 2156 sstr.Printf("def %s (frame, wp, internal_dict):", 2157 auto_generated_function_name.c_str()); 2158 2159 if (!GenerateFunction(sstr.GetData(), user_input).Success()) 2160 return false; 2161 2162 // Store the name of the auto-generated function to be called. 2163 output.assign(auto_generated_function_name); 2164 return true; 2165 } 2166 2167 bool ScriptInterpreterPythonImpl::GetScriptedSummary( 2168 const char *python_function_name, lldb::ValueObjectSP valobj, 2169 StructuredData::ObjectSP &callee_wrapper_sp, 2170 const TypeSummaryOptions &options, std::string &retval) { 2171 2172 static Timer::Category func_cat(LLVM_PRETTY_FUNCTION); 2173 Timer scoped_timer(func_cat, LLVM_PRETTY_FUNCTION); 2174 2175 if (!valobj.get()) { 2176 retval.assign("<no object>"); 2177 return false; 2178 } 2179 2180 void *old_callee = nullptr; 2181 StructuredData::Generic *generic = nullptr; 2182 if (callee_wrapper_sp) { 2183 generic = callee_wrapper_sp->GetAsGeneric(); 2184 if (generic) 2185 old_callee = generic->GetValue(); 2186 } 2187 void *new_callee = old_callee; 2188 2189 bool ret_val; 2190 if (python_function_name && *python_function_name) { 2191 { 2192 Locker py_lock(this, Locker::AcquireLock | Locker::InitSession | 2193 Locker::NoSTDIN); 2194 { 2195 TypeSummaryOptionsSP options_sp(new TypeSummaryOptions(options)); 2196 2197 static Timer::Category func_cat("LLDBSwigPythonCallTypeScript"); 2198 Timer scoped_timer(func_cat, "LLDBSwigPythonCallTypeScript"); 2199 ret_val = LLDBSwigPythonCallTypeScript( 2200 python_function_name, GetSessionDictionary().get(), valobj, 2201 &new_callee, options_sp, retval); 2202 } 2203 } 2204 } else { 2205 retval.assign("<no function name>"); 2206 return false; 2207 } 2208 2209 if (new_callee && old_callee != new_callee) 2210 callee_wrapper_sp = std::make_shared<StructuredPythonObject>(new_callee); 2211 2212 return ret_val; 2213 } 2214 2215 void ScriptInterpreterPythonImpl::Clear() { 2216 // Release any global variables that might have strong references to 2217 // LLDB objects when clearing the python script interpreter. 2218 Locker locker(this, Locker::AcquireLock, Locker::FreeAcquiredLock); 2219 2220 // This may be called as part of Py_Finalize. In that case the modules are 2221 // destroyed in random order and we can't guarantee that we can access these. 2222 if (Py_IsInitialized()) 2223 PyRun_SimpleString("lldb.debugger = None; lldb.target = None; lldb.process " 2224 "= None; lldb.thread = None; lldb.frame = None"); 2225 } 2226 2227 bool ScriptInterpreterPythonImpl::BreakpointCallbackFunction( 2228 void *baton, StoppointCallbackContext *context, user_id_t break_id, 2229 user_id_t break_loc_id) { 2230 CommandDataPython *bp_option_data = (CommandDataPython *)baton; 2231 const char *python_function_name = bp_option_data->script_source.c_str(); 2232 2233 if (!context) 2234 return true; 2235 2236 ExecutionContext exe_ctx(context->exe_ctx_ref); 2237 Target *target = exe_ctx.GetTargetPtr(); 2238 2239 if (!target) 2240 return true; 2241 2242 Debugger &debugger = target->GetDebugger(); 2243 ScriptInterpreter *script_interpreter = debugger.GetScriptInterpreter(); 2244 ScriptInterpreterPythonImpl *python_interpreter = 2245 (ScriptInterpreterPythonImpl *)script_interpreter; 2246 2247 if (!script_interpreter) 2248 return true; 2249 2250 if (python_function_name && python_function_name[0]) { 2251 const StackFrameSP stop_frame_sp(exe_ctx.GetFrameSP()); 2252 BreakpointSP breakpoint_sp = target->GetBreakpointByID(break_id); 2253 if (breakpoint_sp) { 2254 const BreakpointLocationSP bp_loc_sp( 2255 breakpoint_sp->FindLocationByID(break_loc_id)); 2256 2257 if (stop_frame_sp && bp_loc_sp) { 2258 bool ret_val = true; 2259 { 2260 Locker py_lock(python_interpreter, Locker::AcquireLock | 2261 Locker::InitSession | 2262 Locker::NoSTDIN); 2263 ret_val = LLDBSwigPythonBreakpointCallbackFunction( 2264 python_function_name, 2265 python_interpreter->m_dictionary_name.c_str(), stop_frame_sp, 2266 bp_loc_sp); 2267 } 2268 return ret_val; 2269 } 2270 } 2271 } 2272 // We currently always true so we stop in case anything goes wrong when 2273 // trying to call the script function 2274 return true; 2275 } 2276 2277 bool ScriptInterpreterPythonImpl::WatchpointCallbackFunction( 2278 void *baton, StoppointCallbackContext *context, user_id_t watch_id) { 2279 WatchpointOptions::CommandData *wp_option_data = 2280 (WatchpointOptions::CommandData *)baton; 2281 const char *python_function_name = wp_option_data->script_source.c_str(); 2282 2283 if (!context) 2284 return true; 2285 2286 ExecutionContext exe_ctx(context->exe_ctx_ref); 2287 Target *target = exe_ctx.GetTargetPtr(); 2288 2289 if (!target) 2290 return true; 2291 2292 Debugger &debugger = target->GetDebugger(); 2293 ScriptInterpreter *script_interpreter = debugger.GetScriptInterpreter(); 2294 ScriptInterpreterPythonImpl *python_interpreter = 2295 (ScriptInterpreterPythonImpl *)script_interpreter; 2296 2297 if (!script_interpreter) 2298 return true; 2299 2300 if (python_function_name && python_function_name[0]) { 2301 const StackFrameSP stop_frame_sp(exe_ctx.GetFrameSP()); 2302 WatchpointSP wp_sp = target->GetWatchpointList().FindByID(watch_id); 2303 if (wp_sp) { 2304 if (stop_frame_sp && wp_sp) { 2305 bool ret_val = true; 2306 { 2307 Locker py_lock(python_interpreter, Locker::AcquireLock | 2308 Locker::InitSession | 2309 Locker::NoSTDIN); 2310 ret_val = LLDBSwigPythonWatchpointCallbackFunction( 2311 python_function_name, 2312 python_interpreter->m_dictionary_name.c_str(), stop_frame_sp, 2313 wp_sp); 2314 } 2315 return ret_val; 2316 } 2317 } 2318 } 2319 // We currently always true so we stop in case anything goes wrong when 2320 // trying to call the script function 2321 return true; 2322 } 2323 2324 size_t ScriptInterpreterPythonImpl::CalculateNumChildren( 2325 const StructuredData::ObjectSP &implementor_sp, uint32_t max) { 2326 if (!implementor_sp) 2327 return 0; 2328 StructuredData::Generic *generic = implementor_sp->GetAsGeneric(); 2329 if (!generic) 2330 return 0; 2331 void *implementor = generic->GetValue(); 2332 if (!implementor) 2333 return 0; 2334 2335 size_t ret_val = 0; 2336 2337 { 2338 Locker py_lock(this, 2339 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 2340 ret_val = LLDBSwigPython_CalculateNumChildren(implementor, max); 2341 } 2342 2343 return ret_val; 2344 } 2345 2346 lldb::ValueObjectSP ScriptInterpreterPythonImpl::GetChildAtIndex( 2347 const StructuredData::ObjectSP &implementor_sp, uint32_t idx) { 2348 if (!implementor_sp) 2349 return lldb::ValueObjectSP(); 2350 2351 StructuredData::Generic *generic = implementor_sp->GetAsGeneric(); 2352 if (!generic) 2353 return lldb::ValueObjectSP(); 2354 void *implementor = generic->GetValue(); 2355 if (!implementor) 2356 return lldb::ValueObjectSP(); 2357 2358 lldb::ValueObjectSP ret_val; 2359 { 2360 Locker py_lock(this, 2361 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 2362 void *child_ptr = LLDBSwigPython_GetChildAtIndex(implementor, idx); 2363 if (child_ptr != nullptr && child_ptr != Py_None) { 2364 lldb::SBValue *sb_value_ptr = 2365 (lldb::SBValue *)LLDBSWIGPython_CastPyObjectToSBValue(child_ptr); 2366 if (sb_value_ptr == nullptr) 2367 Py_XDECREF(child_ptr); 2368 else 2369 ret_val = LLDBSWIGPython_GetValueObjectSPFromSBValue(sb_value_ptr); 2370 } else { 2371 Py_XDECREF(child_ptr); 2372 } 2373 } 2374 2375 return ret_val; 2376 } 2377 2378 int ScriptInterpreterPythonImpl::GetIndexOfChildWithName( 2379 const StructuredData::ObjectSP &implementor_sp, const char *child_name) { 2380 if (!implementor_sp) 2381 return UINT32_MAX; 2382 2383 StructuredData::Generic *generic = implementor_sp->GetAsGeneric(); 2384 if (!generic) 2385 return UINT32_MAX; 2386 void *implementor = generic->GetValue(); 2387 if (!implementor) 2388 return UINT32_MAX; 2389 2390 int ret_val = UINT32_MAX; 2391 2392 { 2393 Locker py_lock(this, 2394 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 2395 ret_val = LLDBSwigPython_GetIndexOfChildWithName(implementor, child_name); 2396 } 2397 2398 return ret_val; 2399 } 2400 2401 bool ScriptInterpreterPythonImpl::UpdateSynthProviderInstance( 2402 const StructuredData::ObjectSP &implementor_sp) { 2403 bool ret_val = false; 2404 2405 if (!implementor_sp) 2406 return ret_val; 2407 2408 StructuredData::Generic *generic = implementor_sp->GetAsGeneric(); 2409 if (!generic) 2410 return ret_val; 2411 void *implementor = generic->GetValue(); 2412 if (!implementor) 2413 return ret_val; 2414 2415 { 2416 Locker py_lock(this, 2417 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 2418 ret_val = LLDBSwigPython_UpdateSynthProviderInstance(implementor); 2419 } 2420 2421 return ret_val; 2422 } 2423 2424 bool ScriptInterpreterPythonImpl::MightHaveChildrenSynthProviderInstance( 2425 const StructuredData::ObjectSP &implementor_sp) { 2426 bool ret_val = false; 2427 2428 if (!implementor_sp) 2429 return ret_val; 2430 2431 StructuredData::Generic *generic = implementor_sp->GetAsGeneric(); 2432 if (!generic) 2433 return ret_val; 2434 void *implementor = generic->GetValue(); 2435 if (!implementor) 2436 return ret_val; 2437 2438 { 2439 Locker py_lock(this, 2440 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 2441 ret_val = 2442 LLDBSwigPython_MightHaveChildrenSynthProviderInstance(implementor); 2443 } 2444 2445 return ret_val; 2446 } 2447 2448 lldb::ValueObjectSP ScriptInterpreterPythonImpl::GetSyntheticValue( 2449 const StructuredData::ObjectSP &implementor_sp) { 2450 lldb::ValueObjectSP ret_val(nullptr); 2451 2452 if (!implementor_sp) 2453 return ret_val; 2454 2455 StructuredData::Generic *generic = implementor_sp->GetAsGeneric(); 2456 if (!generic) 2457 return ret_val; 2458 void *implementor = generic->GetValue(); 2459 if (!implementor) 2460 return ret_val; 2461 2462 { 2463 Locker py_lock(this, 2464 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 2465 void *child_ptr = LLDBSwigPython_GetValueSynthProviderInstance(implementor); 2466 if (child_ptr != nullptr && child_ptr != Py_None) { 2467 lldb::SBValue *sb_value_ptr = 2468 (lldb::SBValue *)LLDBSWIGPython_CastPyObjectToSBValue(child_ptr); 2469 if (sb_value_ptr == nullptr) 2470 Py_XDECREF(child_ptr); 2471 else 2472 ret_val = LLDBSWIGPython_GetValueObjectSPFromSBValue(sb_value_ptr); 2473 } else { 2474 Py_XDECREF(child_ptr); 2475 } 2476 } 2477 2478 return ret_val; 2479 } 2480 2481 ConstString ScriptInterpreterPythonImpl::GetSyntheticTypeName( 2482 const StructuredData::ObjectSP &implementor_sp) { 2483 Locker py_lock(this, 2484 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 2485 2486 static char callee_name[] = "get_type_name"; 2487 2488 ConstString ret_val; 2489 bool got_string = false; 2490 std::string buffer; 2491 2492 if (!implementor_sp) 2493 return ret_val; 2494 2495 StructuredData::Generic *generic = implementor_sp->GetAsGeneric(); 2496 if (!generic) 2497 return ret_val; 2498 PythonObject implementor(PyRefType::Borrowed, 2499 (PyObject *)generic->GetValue()); 2500 if (!implementor.IsAllocated()) 2501 return ret_val; 2502 2503 PythonObject pmeth(PyRefType::Owned, 2504 PyObject_GetAttrString(implementor.get(), callee_name)); 2505 2506 if (PyErr_Occurred()) 2507 PyErr_Clear(); 2508 2509 if (!pmeth.IsAllocated()) 2510 return ret_val; 2511 2512 if (PyCallable_Check(pmeth.get()) == 0) { 2513 if (PyErr_Occurred()) 2514 PyErr_Clear(); 2515 return ret_val; 2516 } 2517 2518 if (PyErr_Occurred()) 2519 PyErr_Clear(); 2520 2521 // right now we know this function exists and is callable.. 2522 PythonObject py_return( 2523 PyRefType::Owned, 2524 PyObject_CallMethod(implementor.get(), callee_name, nullptr)); 2525 2526 // if it fails, print the error but otherwise go on 2527 if (PyErr_Occurred()) { 2528 PyErr_Print(); 2529 PyErr_Clear(); 2530 } 2531 2532 if (py_return.IsAllocated() && PythonString::Check(py_return.get())) { 2533 PythonString py_string(PyRefType::Borrowed, py_return.get()); 2534 llvm::StringRef return_data(py_string.GetString()); 2535 if (!return_data.empty()) { 2536 buffer.assign(return_data.data(), return_data.size()); 2537 got_string = true; 2538 } 2539 } 2540 2541 if (got_string) 2542 ret_val.SetCStringWithLength(buffer.c_str(), buffer.size()); 2543 2544 return ret_val; 2545 } 2546 2547 bool ScriptInterpreterPythonImpl::RunScriptFormatKeyword( 2548 const char *impl_function, Process *process, std::string &output, 2549 Status &error) { 2550 bool ret_val; 2551 if (!process) { 2552 error.SetErrorString("no process"); 2553 return false; 2554 } 2555 if (!impl_function || !impl_function[0]) { 2556 error.SetErrorString("no function to execute"); 2557 return false; 2558 } 2559 2560 { 2561 ProcessSP process_sp(process->shared_from_this()); 2562 Locker py_lock(this, 2563 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 2564 ret_val = LLDBSWIGPythonRunScriptKeywordProcess( 2565 impl_function, m_dictionary_name.c_str(), process_sp, output); 2566 if (!ret_val) 2567 error.SetErrorString("python script evaluation failed"); 2568 } 2569 return ret_val; 2570 } 2571 2572 bool ScriptInterpreterPythonImpl::RunScriptFormatKeyword( 2573 const char *impl_function, Thread *thread, std::string &output, 2574 Status &error) { 2575 bool ret_val; 2576 if (!thread) { 2577 error.SetErrorString("no thread"); 2578 return false; 2579 } 2580 if (!impl_function || !impl_function[0]) { 2581 error.SetErrorString("no function to execute"); 2582 return false; 2583 } 2584 2585 { 2586 ThreadSP thread_sp(thread->shared_from_this()); 2587 Locker py_lock(this, 2588 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 2589 ret_val = LLDBSWIGPythonRunScriptKeywordThread( 2590 impl_function, m_dictionary_name.c_str(), thread_sp, output); 2591 if (!ret_val) 2592 error.SetErrorString("python script evaluation failed"); 2593 } 2594 return ret_val; 2595 } 2596 2597 bool ScriptInterpreterPythonImpl::RunScriptFormatKeyword( 2598 const char *impl_function, Target *target, std::string &output, 2599 Status &error) { 2600 bool ret_val; 2601 if (!target) { 2602 error.SetErrorString("no thread"); 2603 return false; 2604 } 2605 if (!impl_function || !impl_function[0]) { 2606 error.SetErrorString("no function to execute"); 2607 return false; 2608 } 2609 2610 { 2611 TargetSP target_sp(target->shared_from_this()); 2612 Locker py_lock(this, 2613 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 2614 ret_val = LLDBSWIGPythonRunScriptKeywordTarget( 2615 impl_function, m_dictionary_name.c_str(), target_sp, output); 2616 if (!ret_val) 2617 error.SetErrorString("python script evaluation failed"); 2618 } 2619 return ret_val; 2620 } 2621 2622 bool ScriptInterpreterPythonImpl::RunScriptFormatKeyword( 2623 const char *impl_function, StackFrame *frame, std::string &output, 2624 Status &error) { 2625 bool ret_val; 2626 if (!frame) { 2627 error.SetErrorString("no frame"); 2628 return false; 2629 } 2630 if (!impl_function || !impl_function[0]) { 2631 error.SetErrorString("no function to execute"); 2632 return false; 2633 } 2634 2635 { 2636 StackFrameSP frame_sp(frame->shared_from_this()); 2637 Locker py_lock(this, 2638 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 2639 ret_val = LLDBSWIGPythonRunScriptKeywordFrame( 2640 impl_function, m_dictionary_name.c_str(), frame_sp, output); 2641 if (!ret_val) 2642 error.SetErrorString("python script evaluation failed"); 2643 } 2644 return ret_val; 2645 } 2646 2647 bool ScriptInterpreterPythonImpl::RunScriptFormatKeyword( 2648 const char *impl_function, ValueObject *value, std::string &output, 2649 Status &error) { 2650 bool ret_val; 2651 if (!value) { 2652 error.SetErrorString("no value"); 2653 return false; 2654 } 2655 if (!impl_function || !impl_function[0]) { 2656 error.SetErrorString("no function to execute"); 2657 return false; 2658 } 2659 2660 { 2661 ValueObjectSP value_sp(value->GetSP()); 2662 Locker py_lock(this, 2663 Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN); 2664 ret_val = LLDBSWIGPythonRunScriptKeywordValue( 2665 impl_function, m_dictionary_name.c_str(), value_sp, output); 2666 if (!ret_val) 2667 error.SetErrorString("python script evaluation failed"); 2668 } 2669 return ret_val; 2670 } 2671 2672 uint64_t replace_all(std::string &str, const std::string &oldStr, 2673 const std::string &newStr) { 2674 size_t pos = 0; 2675 uint64_t matches = 0; 2676 while ((pos = str.find(oldStr, pos)) != std::string::npos) { 2677 matches++; 2678 str.replace(pos, oldStr.length(), newStr); 2679 pos += newStr.length(); 2680 } 2681 return matches; 2682 } 2683 2684 bool ScriptInterpreterPythonImpl::LoadScriptingModule( 2685 const char *pathname, bool can_reload, bool init_session, 2686 lldb_private::Status &error, StructuredData::ObjectSP *module_sp) { 2687 if (!pathname || !pathname[0]) { 2688 error.SetErrorString("invalid pathname"); 2689 return false; 2690 } 2691 2692 lldb::DebuggerSP debugger_sp = m_debugger.shared_from_this(); 2693 2694 { 2695 FileSpec target_file(pathname); 2696 FileSystem::Instance().Resolve(target_file); 2697 std::string basename(target_file.GetFilename().GetCString()); 2698 2699 StreamString command_stream; 2700 2701 // Before executing Python code, lock the GIL. 2702 Locker py_lock(this, 2703 Locker::AcquireLock | 2704 (init_session ? Locker::InitSession : 0) | 2705 Locker::NoSTDIN, 2706 Locker::FreeAcquiredLock | 2707 (init_session ? Locker::TearDownSession : 0)); 2708 namespace fs = llvm::sys::fs; 2709 fs::file_status st; 2710 std::error_code ec = status(target_file.GetPath(), st); 2711 2712 if (ec || st.type() == fs::file_type::status_error || 2713 st.type() == fs::file_type::type_unknown || 2714 st.type() == fs::file_type::file_not_found) { 2715 // if not a valid file of any sort, check if it might be a filename still 2716 // dot can't be used but / and \ can, and if either is found, reject 2717 if (strchr(pathname, '\\') || strchr(pathname, '/')) { 2718 error.SetErrorString("invalid pathname"); 2719 return false; 2720 } 2721 basename = pathname; // not a filename, probably a package of some sort, 2722 // let it go through 2723 } else if (is_directory(st) || is_regular_file(st)) { 2724 if (target_file.GetDirectory().IsEmpty()) { 2725 error.SetErrorString("invalid directory name"); 2726 return false; 2727 } 2728 2729 std::string directory = target_file.GetDirectory().GetCString(); 2730 replace_all(directory, "\\", "\\\\"); 2731 replace_all(directory, "'", "\\'"); 2732 2733 // now make sure that Python has "directory" in the search path 2734 StreamString command_stream; 2735 command_stream.Printf("if not (sys.path.__contains__('%s')):\n " 2736 "sys.path.insert(1,'%s');\n\n", 2737 directory.c_str(), directory.c_str()); 2738 bool syspath_retval = 2739 ExecuteMultipleLines(command_stream.GetData(), 2740 ScriptInterpreter::ExecuteScriptOptions() 2741 .SetEnableIO(false) 2742 .SetSetLLDBGlobals(false)) 2743 .Success(); 2744 if (!syspath_retval) { 2745 error.SetErrorString("Python sys.path handling failed"); 2746 return false; 2747 } 2748 2749 // strip .py or .pyc extension 2750 ConstString extension = target_file.GetFileNameExtension(); 2751 if (extension) { 2752 if (llvm::StringRef(extension.GetCString()) == ".py") 2753 basename.resize(basename.length() - 3); 2754 else if (llvm::StringRef(extension.GetCString()) == ".pyc") 2755 basename.resize(basename.length() - 4); 2756 } 2757 } else { 2758 error.SetErrorString("no known way to import this module specification"); 2759 return false; 2760 } 2761 2762 // check if the module is already import-ed 2763 command_stream.Clear(); 2764 command_stream.Printf("sys.modules.__contains__('%s')", basename.c_str()); 2765 bool does_contain = false; 2766 // this call will succeed if the module was ever imported in any Debugger 2767 // in the lifetime of the process in which this LLDB framework is living 2768 bool was_imported_globally = 2769 (ExecuteOneLineWithReturn( 2770 command_stream.GetData(), 2771 ScriptInterpreterPythonImpl::eScriptReturnTypeBool, &does_contain, 2772 ScriptInterpreter::ExecuteScriptOptions() 2773 .SetEnableIO(false) 2774 .SetSetLLDBGlobals(false)) && 2775 does_contain); 2776 // this call will fail if the module was not imported in this Debugger 2777 // before 2778 command_stream.Clear(); 2779 command_stream.Printf("sys.getrefcount(%s)", basename.c_str()); 2780 bool was_imported_locally = GetSessionDictionary() 2781 .GetItemForKey(PythonString(basename)) 2782 .IsAllocated(); 2783 2784 bool was_imported = (was_imported_globally || was_imported_locally); 2785 2786 if (was_imported && !can_reload) { 2787 error.SetErrorString("module already imported"); 2788 return false; 2789 } 2790 2791 // now actually do the import 2792 command_stream.Clear(); 2793 2794 if (was_imported) { 2795 if (!was_imported_locally) 2796 command_stream.Printf("import %s ; reload_module(%s)", basename.c_str(), 2797 basename.c_str()); 2798 else 2799 command_stream.Printf("reload_module(%s)", basename.c_str()); 2800 } else 2801 command_stream.Printf("import %s", basename.c_str()); 2802 2803 error = ExecuteMultipleLines(command_stream.GetData(), 2804 ScriptInterpreter::ExecuteScriptOptions() 2805 .SetEnableIO(false) 2806 .SetSetLLDBGlobals(false)); 2807 if (error.Fail()) 2808 return false; 2809 2810 // if we are here, everything worked 2811 // call __lldb_init_module(debugger,dict) 2812 if (!LLDBSwigPythonCallModuleInit(basename.c_str(), 2813 m_dictionary_name.c_str(), debugger_sp)) { 2814 error.SetErrorString("calling __lldb_init_module failed"); 2815 return false; 2816 } 2817 2818 if (module_sp) { 2819 // everything went just great, now set the module object 2820 command_stream.Clear(); 2821 command_stream.Printf("%s", basename.c_str()); 2822 void *module_pyobj = nullptr; 2823 if (ExecuteOneLineWithReturn( 2824 command_stream.GetData(), 2825 ScriptInterpreter::eScriptReturnTypeOpaqueObject, 2826 &module_pyobj) && 2827 module_pyobj) 2828 *module_sp = std::make_shared<StructuredPythonObject>(module_pyobj); 2829 } 2830 2831 return true; 2832 } 2833 } 2834 2835 bool ScriptInterpreterPythonImpl::IsReservedWord(const char *word) { 2836 if (!word || !word[0]) 2837 return false; 2838 2839 llvm::StringRef word_sr(word); 2840 2841 // filter out a few characters that would just confuse us and that are 2842 // clearly not keyword material anyway 2843 if (word_sr.find('"') != llvm::StringRef::npos || 2844 word_sr.find('\'') != llvm::StringRef::npos) 2845 return false; 2846 2847 StreamString command_stream; 2848 command_stream.Printf("keyword.iskeyword('%s')", word); 2849 bool result; 2850 ExecuteScriptOptions options; 2851 options.SetEnableIO(false); 2852 options.SetMaskoutErrors(true); 2853 options.SetSetLLDBGlobals(false); 2854 if (ExecuteOneLineWithReturn(command_stream.GetData(), 2855 ScriptInterpreter::eScriptReturnTypeBool, 2856 &result, options)) 2857 return result; 2858 return false; 2859 } 2860 2861 ScriptInterpreterPythonImpl::SynchronicityHandler::SynchronicityHandler( 2862 lldb::DebuggerSP debugger_sp, ScriptedCommandSynchronicity synchro) 2863 : m_debugger_sp(debugger_sp), m_synch_wanted(synchro), 2864 m_old_asynch(debugger_sp->GetAsyncExecution()) { 2865 if (m_synch_wanted == eScriptedCommandSynchronicitySynchronous) 2866 m_debugger_sp->SetAsyncExecution(false); 2867 else if (m_synch_wanted == eScriptedCommandSynchronicityAsynchronous) 2868 m_debugger_sp->SetAsyncExecution(true); 2869 } 2870 2871 ScriptInterpreterPythonImpl::SynchronicityHandler::~SynchronicityHandler() { 2872 if (m_synch_wanted != eScriptedCommandSynchronicityCurrentValue) 2873 m_debugger_sp->SetAsyncExecution(m_old_asynch); 2874 } 2875 2876 bool ScriptInterpreterPythonImpl::RunScriptBasedCommand( 2877 const char *impl_function, llvm::StringRef args, 2878 ScriptedCommandSynchronicity synchronicity, 2879 lldb_private::CommandReturnObject &cmd_retobj, Status &error, 2880 const lldb_private::ExecutionContext &exe_ctx) { 2881 if (!impl_function) { 2882 error.SetErrorString("no function to execute"); 2883 return false; 2884 } 2885 2886 lldb::DebuggerSP debugger_sp = m_debugger.shared_from_this(); 2887 lldb::ExecutionContextRefSP exe_ctx_ref_sp(new ExecutionContextRef(exe_ctx)); 2888 2889 if (!debugger_sp.get()) { 2890 error.SetErrorString("invalid Debugger pointer"); 2891 return false; 2892 } 2893 2894 bool ret_val = false; 2895 2896 std::string err_msg; 2897 2898 { 2899 Locker py_lock(this, 2900 Locker::AcquireLock | Locker::InitSession | 2901 (cmd_retobj.GetInteractive() ? 0 : Locker::NoSTDIN), 2902 Locker::FreeLock | Locker::TearDownSession); 2903 2904 SynchronicityHandler synch_handler(debugger_sp, synchronicity); 2905 2906 std::string args_str = args.str(); 2907 ret_val = LLDBSwigPythonCallCommand( 2908 impl_function, m_dictionary_name.c_str(), debugger_sp, args_str.c_str(), 2909 cmd_retobj, exe_ctx_ref_sp); 2910 } 2911 2912 if (!ret_val) 2913 error.SetErrorString("unable to execute script function"); 2914 else 2915 error.Clear(); 2916 2917 return ret_val; 2918 } 2919 2920 bool ScriptInterpreterPythonImpl::RunScriptBasedCommand( 2921 StructuredData::GenericSP impl_obj_sp, llvm::StringRef args, 2922 ScriptedCommandSynchronicity synchronicity, 2923 lldb_private::CommandReturnObject &cmd_retobj, Status &error, 2924 const lldb_private::ExecutionContext &exe_ctx) { 2925 if (!impl_obj_sp || !impl_obj_sp->IsValid()) { 2926 error.SetErrorString("no function to execute"); 2927 return false; 2928 } 2929 2930 lldb::DebuggerSP debugger_sp = m_debugger.shared_from_this(); 2931 lldb::ExecutionContextRefSP exe_ctx_ref_sp(new ExecutionContextRef(exe_ctx)); 2932 2933 if (!debugger_sp.get()) { 2934 error.SetErrorString("invalid Debugger pointer"); 2935 return false; 2936 } 2937 2938 bool ret_val = false; 2939 2940 std::string err_msg; 2941 2942 { 2943 Locker py_lock(this, 2944 Locker::AcquireLock | Locker::InitSession | 2945 (cmd_retobj.GetInteractive() ? 0 : Locker::NoSTDIN), 2946 Locker::FreeLock | Locker::TearDownSession); 2947 2948 SynchronicityHandler synch_handler(debugger_sp, synchronicity); 2949 2950 std::string args_str = args.str(); 2951 ret_val = LLDBSwigPythonCallCommandObject(impl_obj_sp->GetValue(), 2952 debugger_sp, args_str.c_str(), 2953 cmd_retobj, exe_ctx_ref_sp); 2954 } 2955 2956 if (!ret_val) 2957 error.SetErrorString("unable to execute script function"); 2958 else 2959 error.Clear(); 2960 2961 return ret_val; 2962 } 2963 2964 // in Python, a special attribute __doc__ contains the docstring for an object 2965 // (function, method, class, ...) if any is defined Otherwise, the attribute's 2966 // value is None 2967 bool ScriptInterpreterPythonImpl::GetDocumentationForItem(const char *item, 2968 std::string &dest) { 2969 dest.clear(); 2970 if (!item || !*item) 2971 return false; 2972 std::string command(item); 2973 command += ".__doc__"; 2974 2975 char *result_ptr = nullptr; // Python is going to point this to valid data if 2976 // ExecuteOneLineWithReturn returns successfully 2977 2978 if (ExecuteOneLineWithReturn( 2979 command.c_str(), ScriptInterpreter::eScriptReturnTypeCharStrOrNone, 2980 &result_ptr, 2981 ScriptInterpreter::ExecuteScriptOptions().SetEnableIO(false))) { 2982 if (result_ptr) 2983 dest.assign(result_ptr); 2984 return true; 2985 } else { 2986 StreamString str_stream; 2987 str_stream.Printf( 2988 "Function %s was not found. Containing module might be missing.", item); 2989 dest = str_stream.GetString(); 2990 return false; 2991 } 2992 } 2993 2994 bool ScriptInterpreterPythonImpl::GetShortHelpForCommandObject( 2995 StructuredData::GenericSP cmd_obj_sp, std::string &dest) { 2996 bool got_string = false; 2997 dest.clear(); 2998 2999 Locker py_lock(this, Locker::AcquireLock | Locker::NoSTDIN, Locker::FreeLock); 3000 3001 static char callee_name[] = "get_short_help"; 3002 3003 if (!cmd_obj_sp) 3004 return false; 3005 3006 PythonObject implementor(PyRefType::Borrowed, 3007 (PyObject *)cmd_obj_sp->GetValue()); 3008 3009 if (!implementor.IsAllocated()) 3010 return false; 3011 3012 PythonObject pmeth(PyRefType::Owned, 3013 PyObject_GetAttrString(implementor.get(), callee_name)); 3014 3015 if (PyErr_Occurred()) 3016 PyErr_Clear(); 3017 3018 if (!pmeth.IsAllocated()) 3019 return false; 3020 3021 if (PyCallable_Check(pmeth.get()) == 0) { 3022 if (PyErr_Occurred()) 3023 PyErr_Clear(); 3024 return false; 3025 } 3026 3027 if (PyErr_Occurred()) 3028 PyErr_Clear(); 3029 3030 // right now we know this function exists and is callable.. 3031 PythonObject py_return( 3032 PyRefType::Owned, 3033 PyObject_CallMethod(implementor.get(), callee_name, nullptr)); 3034 3035 // if it fails, print the error but otherwise go on 3036 if (PyErr_Occurred()) { 3037 PyErr_Print(); 3038 PyErr_Clear(); 3039 } 3040 3041 if (py_return.IsAllocated() && PythonString::Check(py_return.get())) { 3042 PythonString py_string(PyRefType::Borrowed, py_return.get()); 3043 llvm::StringRef return_data(py_string.GetString()); 3044 dest.assign(return_data.data(), return_data.size()); 3045 got_string = true; 3046 } 3047 return got_string; 3048 } 3049 3050 uint32_t ScriptInterpreterPythonImpl::GetFlagsForCommandObject( 3051 StructuredData::GenericSP cmd_obj_sp) { 3052 uint32_t result = 0; 3053 3054 Locker py_lock(this, Locker::AcquireLock | Locker::NoSTDIN, Locker::FreeLock); 3055 3056 static char callee_name[] = "get_flags"; 3057 3058 if (!cmd_obj_sp) 3059 return result; 3060 3061 PythonObject implementor(PyRefType::Borrowed, 3062 (PyObject *)cmd_obj_sp->GetValue()); 3063 3064 if (!implementor.IsAllocated()) 3065 return result; 3066 3067 PythonObject pmeth(PyRefType::Owned, 3068 PyObject_GetAttrString(implementor.get(), callee_name)); 3069 3070 if (PyErr_Occurred()) 3071 PyErr_Clear(); 3072 3073 if (!pmeth.IsAllocated()) 3074 return result; 3075 3076 if (PyCallable_Check(pmeth.get()) == 0) { 3077 if (PyErr_Occurred()) 3078 PyErr_Clear(); 3079 return result; 3080 } 3081 3082 if (PyErr_Occurred()) 3083 PyErr_Clear(); 3084 3085 // right now we know this function exists and is callable.. 3086 PythonObject py_return( 3087 PyRefType::Owned, 3088 PyObject_CallMethod(implementor.get(), callee_name, nullptr)); 3089 3090 // if it fails, print the error but otherwise go on 3091 if (PyErr_Occurred()) { 3092 PyErr_Print(); 3093 PyErr_Clear(); 3094 } 3095 3096 if (py_return.IsAllocated() && PythonInteger::Check(py_return.get())) { 3097 PythonInteger int_value(PyRefType::Borrowed, py_return.get()); 3098 result = int_value.GetInteger(); 3099 } 3100 3101 return result; 3102 } 3103 3104 bool ScriptInterpreterPythonImpl::GetLongHelpForCommandObject( 3105 StructuredData::GenericSP cmd_obj_sp, std::string &dest) { 3106 bool got_string = false; 3107 dest.clear(); 3108 3109 Locker py_lock(this, Locker::AcquireLock | Locker::NoSTDIN, Locker::FreeLock); 3110 3111 static char callee_name[] = "get_long_help"; 3112 3113 if (!cmd_obj_sp) 3114 return false; 3115 3116 PythonObject implementor(PyRefType::Borrowed, 3117 (PyObject *)cmd_obj_sp->GetValue()); 3118 3119 if (!implementor.IsAllocated()) 3120 return false; 3121 3122 PythonObject pmeth(PyRefType::Owned, 3123 PyObject_GetAttrString(implementor.get(), callee_name)); 3124 3125 if (PyErr_Occurred()) 3126 PyErr_Clear(); 3127 3128 if (!pmeth.IsAllocated()) 3129 return false; 3130 3131 if (PyCallable_Check(pmeth.get()) == 0) { 3132 if (PyErr_Occurred()) 3133 PyErr_Clear(); 3134 3135 return false; 3136 } 3137 3138 if (PyErr_Occurred()) 3139 PyErr_Clear(); 3140 3141 // right now we know this function exists and is callable.. 3142 PythonObject py_return( 3143 PyRefType::Owned, 3144 PyObject_CallMethod(implementor.get(), callee_name, nullptr)); 3145 3146 // if it fails, print the error but otherwise go on 3147 if (PyErr_Occurred()) { 3148 PyErr_Print(); 3149 PyErr_Clear(); 3150 } 3151 3152 if (py_return.IsAllocated() && PythonString::Check(py_return.get())) { 3153 PythonString str(PyRefType::Borrowed, py_return.get()); 3154 llvm::StringRef str_data(str.GetString()); 3155 dest.assign(str_data.data(), str_data.size()); 3156 got_string = true; 3157 } 3158 3159 return got_string; 3160 } 3161 3162 std::unique_ptr<ScriptInterpreterLocker> 3163 ScriptInterpreterPythonImpl::AcquireInterpreterLock() { 3164 std::unique_ptr<ScriptInterpreterLocker> py_lock(new Locker( 3165 this, Locker::AcquireLock | Locker::InitSession | Locker::NoSTDIN, 3166 Locker::FreeLock | Locker::TearDownSession)); 3167 return py_lock; 3168 } 3169 3170 void ScriptInterpreterPythonImpl::InitializePrivate() { 3171 if (g_initialized) 3172 return; 3173 3174 g_initialized = true; 3175 3176 static Timer::Category func_cat(LLVM_PRETTY_FUNCTION); 3177 Timer scoped_timer(func_cat, LLVM_PRETTY_FUNCTION); 3178 3179 // RAII-based initialization which correctly handles multiple-initialization, 3180 // version- specific differences among Python 2 and Python 3, and saving and 3181 // restoring various other pieces of state that can get mucked with during 3182 // initialization. 3183 InitializePythonRAII initialize_guard; 3184 3185 LLDBSwigPyInit(); 3186 3187 // Update the path python uses to search for modules to include the current 3188 // directory. 3189 3190 PyRun_SimpleString("import sys"); 3191 AddToSysPath(AddLocation::End, "."); 3192 3193 // Don't denormalize paths when calling file_spec.GetPath(). On platforms 3194 // that use a backslash as the path separator, this will result in executing 3195 // python code containing paths with unescaped backslashes. But Python also 3196 // accepts forward slashes, so to make life easier we just use that. 3197 if (FileSpec file_spec = GetPythonDir()) 3198 AddToSysPath(AddLocation::Beginning, file_spec.GetPath(false)); 3199 if (FileSpec file_spec = HostInfo::GetShlibDir()) 3200 AddToSysPath(AddLocation::Beginning, file_spec.GetPath(false)); 3201 3202 PyRun_SimpleString("sys.dont_write_bytecode = 1; import " 3203 "lldb.embedded_interpreter; from " 3204 "lldb.embedded_interpreter import run_python_interpreter; " 3205 "from lldb.embedded_interpreter import run_one_line"); 3206 } 3207 3208 void ScriptInterpreterPythonImpl::AddToSysPath(AddLocation location, 3209 std::string path) { 3210 std::string path_copy; 3211 3212 std::string statement; 3213 if (location == AddLocation::Beginning) { 3214 statement.assign("sys.path.insert(0,\""); 3215 statement.append(path); 3216 statement.append("\")"); 3217 } else { 3218 statement.assign("sys.path.append(\""); 3219 statement.append(path); 3220 statement.append("\")"); 3221 } 3222 PyRun_SimpleString(statement.c_str()); 3223 } 3224 3225 // We are intentionally NOT calling Py_Finalize here (this would be the logical 3226 // place to call it). Calling Py_Finalize here causes test suite runs to seg 3227 // fault: The test suite runs in Python. It registers SBDebugger::Terminate to 3228 // be called 'at_exit'. When the test suite Python harness finishes up, it 3229 // calls Py_Finalize, which calls all the 'at_exit' registered functions. 3230 // SBDebugger::Terminate calls Debugger::Terminate, which calls lldb::Terminate, 3231 // which calls ScriptInterpreter::Terminate, which calls 3232 // ScriptInterpreterPythonImpl::Terminate. So if we call Py_Finalize here, we 3233 // end up with Py_Finalize being called from within Py_Finalize, which results 3234 // in a seg fault. Since this function only gets called when lldb is shutting 3235 // down and going away anyway, the fact that we don't actually call Py_Finalize 3236 // should not cause any problems (everything should shut down/go away anyway 3237 // when the process exits). 3238 // 3239 // void ScriptInterpreterPythonImpl::Terminate() { Py_Finalize (); } 3240 3241 #endif // LLDB_DISABLE_PYTHON 3242