1 //===-- LanguageRuntime.cpp -------------------------------------*- C++ -*-===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 10 // C Includes 11 // C++ Includes 12 // Other libraries and framework includes 13 // Project includes 14 #include "lldb/Target/LanguageRuntime.h" 15 #include "Plugins/Language/ObjC/ObjCLanguage.h" 16 #include "lldb/Core/PluginManager.h" 17 #include "lldb/Core/SearchFilter.h" 18 #include "lldb/Interpreter/CommandInterpreter.h" 19 #include "lldb/Target/ObjCLanguageRuntime.h" 20 #include "lldb/Target/Target.h" 21 22 using namespace lldb; 23 using namespace lldb_private; 24 25 ExceptionSearchFilter::ExceptionSearchFilter(const lldb::TargetSP &target_sp, 26 lldb::LanguageType language, 27 bool update_module_list) 28 : SearchFilter(target_sp, FilterTy::Exception), m_language(language), 29 m_language_runtime(nullptr), m_filter_sp() { 30 if (update_module_list) 31 UpdateModuleListIfNeeded(); 32 } 33 34 bool ExceptionSearchFilter::ModulePasses(const lldb::ModuleSP &module_sp) { 35 UpdateModuleListIfNeeded(); 36 if (m_filter_sp) 37 return m_filter_sp->ModulePasses(module_sp); 38 return false; 39 } 40 41 bool ExceptionSearchFilter::ModulePasses(const FileSpec &spec) { 42 UpdateModuleListIfNeeded(); 43 if (m_filter_sp) 44 return m_filter_sp->ModulePasses(spec); 45 return false; 46 } 47 48 void ExceptionSearchFilter::Search(Searcher &searcher) { 49 UpdateModuleListIfNeeded(); 50 if (m_filter_sp) 51 m_filter_sp->Search(searcher); 52 } 53 54 void ExceptionSearchFilter::GetDescription(Stream *s) { 55 UpdateModuleListIfNeeded(); 56 if (m_filter_sp) 57 m_filter_sp->GetDescription(s); 58 } 59 60 void ExceptionSearchFilter::UpdateModuleListIfNeeded() { 61 ProcessSP process_sp(m_target_sp->GetProcessSP()); 62 if (process_sp) { 63 bool refreash_filter = !m_filter_sp; 64 if (m_language_runtime == nullptr) { 65 m_language_runtime = process_sp->GetLanguageRuntime(m_language); 66 refreash_filter = true; 67 } else { 68 LanguageRuntime *language_runtime = 69 process_sp->GetLanguageRuntime(m_language); 70 if (m_language_runtime != language_runtime) { 71 m_language_runtime = language_runtime; 72 refreash_filter = true; 73 } 74 } 75 76 if (refreash_filter && m_language_runtime) { 77 m_filter_sp = m_language_runtime->CreateExceptionSearchFilter(); 78 } 79 } else { 80 m_filter_sp.reset(); 81 m_language_runtime = nullptr; 82 } 83 } 84 85 SearchFilterSP 86 ExceptionSearchFilter::DoCopyForBreakpoint(Breakpoint &breakpoint) { 87 return SearchFilterSP( 88 new ExceptionSearchFilter(TargetSP(), m_language, false)); 89 } 90 91 SearchFilter *ExceptionSearchFilter::CreateFromStructuredData( 92 Target &target, const StructuredData::Dictionary &data_dict, Error &error) { 93 SearchFilter *result = nullptr; 94 return result; 95 } 96 97 StructuredData::ObjectSP ExceptionSearchFilter::SerializeToStructuredData() { 98 StructuredData::ObjectSP result_sp; 99 100 return result_sp; 101 } 102 103 // The Target is the one that knows how to create breakpoints, so this function 104 // is meant to be used either by the target or internally in 105 // Set/ClearExceptionBreakpoints. 106 class ExceptionBreakpointResolver : public BreakpointResolver { 107 public: 108 ExceptionBreakpointResolver(lldb::LanguageType language, bool catch_bp, 109 bool throw_bp) 110 : BreakpointResolver(nullptr, BreakpointResolver::ExceptionResolver), 111 m_language(language), m_language_runtime(nullptr), m_catch_bp(catch_bp), 112 m_throw_bp(throw_bp) {} 113 114 ~ExceptionBreakpointResolver() override = default; 115 116 Searcher::CallbackReturn SearchCallback(SearchFilter &filter, 117 SymbolContext &context, Address *addr, 118 bool containing) override { 119 120 if (SetActualResolver()) 121 return m_actual_resolver_sp->SearchCallback(filter, context, addr, 122 containing); 123 else 124 return eCallbackReturnStop; 125 } 126 127 Searcher::Depth GetDepth() override { 128 if (SetActualResolver()) 129 return m_actual_resolver_sp->GetDepth(); 130 else 131 return eDepthTarget; 132 } 133 134 void GetDescription(Stream *s) override { 135 Language *language_plugin = Language::FindPlugin(m_language); 136 if (language_plugin) 137 language_plugin->GetExceptionResolverDescription(m_catch_bp, m_throw_bp, 138 *s); 139 else 140 Language::GetDefaultExceptionResolverDescription(m_catch_bp, m_throw_bp, 141 *s); 142 143 SetActualResolver(); 144 if (m_actual_resolver_sp) { 145 s->Printf(" using: "); 146 m_actual_resolver_sp->GetDescription(s); 147 } else 148 s->Printf(" the correct runtime exception handler will be determined " 149 "when you run"); 150 } 151 152 void Dump(Stream *s) const override {} 153 154 /// Methods for support type inquiry through isa, cast, and dyn_cast: 155 static inline bool classof(const BreakpointResolverName *) { return true; } 156 static inline bool classof(const BreakpointResolver *V) { 157 return V->getResolverID() == BreakpointResolver::ExceptionResolver; 158 } 159 160 protected: 161 BreakpointResolverSP CopyForBreakpoint(Breakpoint &breakpoint) override { 162 return BreakpointResolverSP( 163 new ExceptionBreakpointResolver(m_language, m_catch_bp, m_throw_bp)); 164 } 165 166 bool SetActualResolver() { 167 ProcessSP process_sp; 168 if (m_breakpoint) { 169 process_sp = m_breakpoint->GetTarget().GetProcessSP(); 170 if (process_sp) { 171 bool refreash_resolver = !m_actual_resolver_sp; 172 if (m_language_runtime == nullptr) { 173 m_language_runtime = process_sp->GetLanguageRuntime(m_language); 174 refreash_resolver = true; 175 } else { 176 LanguageRuntime *language_runtime = 177 process_sp->GetLanguageRuntime(m_language); 178 if (m_language_runtime != language_runtime) { 179 m_language_runtime = language_runtime; 180 refreash_resolver = true; 181 } 182 } 183 184 if (refreash_resolver && m_language_runtime) { 185 m_actual_resolver_sp = m_language_runtime->CreateExceptionResolver( 186 m_breakpoint, m_catch_bp, m_throw_bp); 187 } 188 } else { 189 m_actual_resolver_sp.reset(); 190 m_language_runtime = nullptr; 191 } 192 } else { 193 m_actual_resolver_sp.reset(); 194 m_language_runtime = nullptr; 195 } 196 return (bool)m_actual_resolver_sp; 197 } 198 199 lldb::BreakpointResolverSP m_actual_resolver_sp; 200 lldb::LanguageType m_language; 201 LanguageRuntime *m_language_runtime; 202 bool m_catch_bp; 203 bool m_throw_bp; 204 }; 205 206 LanguageRuntime *LanguageRuntime::FindPlugin(Process *process, 207 lldb::LanguageType language) { 208 std::unique_ptr<LanguageRuntime> language_runtime_ap; 209 LanguageRuntimeCreateInstance create_callback; 210 211 for (uint32_t idx = 0; 212 (create_callback = 213 PluginManager::GetLanguageRuntimeCreateCallbackAtIndex(idx)) != 214 nullptr; 215 ++idx) { 216 language_runtime_ap.reset(create_callback(process, language)); 217 218 if (language_runtime_ap) 219 return language_runtime_ap.release(); 220 } 221 222 return nullptr; 223 } 224 225 LanguageRuntime::LanguageRuntime(Process *process) : m_process(process) {} 226 227 LanguageRuntime::~LanguageRuntime() = default; 228 229 Breakpoint::BreakpointPreconditionSP 230 LanguageRuntime::CreateExceptionPrecondition(lldb::LanguageType language, 231 bool catch_bp, bool throw_bp) { 232 switch (language) { 233 case eLanguageTypeObjC: 234 if (throw_bp) 235 return Breakpoint::BreakpointPreconditionSP( 236 new ObjCLanguageRuntime::ObjCExceptionPrecondition()); 237 break; 238 default: 239 break; 240 } 241 return Breakpoint::BreakpointPreconditionSP(); 242 } 243 244 BreakpointSP LanguageRuntime::CreateExceptionBreakpoint( 245 Target &target, lldb::LanguageType language, bool catch_bp, bool throw_bp, 246 bool is_internal) { 247 BreakpointResolverSP resolver_sp( 248 new ExceptionBreakpointResolver(language, catch_bp, throw_bp)); 249 SearchFilterSP filter_sp( 250 new ExceptionSearchFilter(target.shared_from_this(), language)); 251 bool hardware = false; 252 bool resolve_indirect_functions = false; 253 BreakpointSP exc_breakpt_sp( 254 target.CreateBreakpoint(filter_sp, resolver_sp, is_internal, hardware, 255 resolve_indirect_functions)); 256 if (exc_breakpt_sp) { 257 Breakpoint::BreakpointPreconditionSP precondition_sp = 258 CreateExceptionPrecondition(language, catch_bp, throw_bp); 259 if (precondition_sp) 260 exc_breakpt_sp->SetPrecondition(precondition_sp); 261 262 if (is_internal) 263 exc_breakpt_sp->SetBreakpointKind("exception"); 264 } 265 266 return exc_breakpt_sp; 267 } 268 269 void LanguageRuntime::InitializeCommands(CommandObject *parent) { 270 if (!parent) 271 return; 272 273 if (!parent->IsMultiwordObject()) 274 return; 275 276 LanguageRuntimeCreateInstance create_callback; 277 278 for (uint32_t idx = 0; 279 (create_callback = 280 PluginManager::GetLanguageRuntimeCreateCallbackAtIndex(idx)) != 281 nullptr; 282 ++idx) { 283 if (LanguageRuntimeGetCommandObject command_callback = 284 PluginManager::GetLanguageRuntimeGetCommandObjectAtIndex(idx)) { 285 CommandObjectSP command = 286 command_callback(parent->GetCommandInterpreter()); 287 if (command) { 288 // the CommandObject vended by a Language plugin cannot be created once 289 // and cached because we may create multiple debuggers and need one 290 // instance of the command each - the implementing function is meant to 291 // create a new instance of the command each time it is invoked. 292 parent->LoadSubCommand(command->GetCommandName().str().c_str(), command); 293 } 294 } 295 } 296 } 297 298 lldb::SearchFilterSP LanguageRuntime::CreateExceptionSearchFilter() { 299 return m_process->GetTarget().GetSearchFilterForModule(nullptr); 300 } 301