1 //===-- ThreadPlanStepInRange.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 #include "lldb/Target/ThreadPlanStepInRange.h" 10 #include "lldb/Core/Architecture.h" 11 #include "lldb/Core/Module.h" 12 #include "lldb/Symbol/Function.h" 13 #include "lldb/Symbol/Symbol.h" 14 #include "lldb/Target/Process.h" 15 #include "lldb/Target/RegisterContext.h" 16 #include "lldb/Target/SectionLoadList.h" 17 #include "lldb/Target/Target.h" 18 #include "lldb/Target/Thread.h" 19 #include "lldb/Target/ThreadPlanStepOut.h" 20 #include "lldb/Target/ThreadPlanStepThrough.h" 21 #include "lldb/Utility/Log.h" 22 #include "lldb/Utility/RegularExpression.h" 23 #include "lldb/Utility/Stream.h" 24 25 using namespace lldb; 26 using namespace lldb_private; 27 28 uint32_t ThreadPlanStepInRange::s_default_flag_values = 29 ThreadPlanShouldStopHere::eStepInAvoidNoDebug; 30 31 //---------------------------------------------------------------------- 32 // ThreadPlanStepInRange: Step through a stack range, either stepping over or 33 // into based on the value of \a type. 34 //---------------------------------------------------------------------- 35 36 ThreadPlanStepInRange::ThreadPlanStepInRange( 37 Thread &thread, const AddressRange &range, 38 const SymbolContext &addr_context, lldb::RunMode stop_others, 39 LazyBool step_in_avoids_code_without_debug_info, 40 LazyBool step_out_avoids_code_without_debug_info) 41 : ThreadPlanStepRange(ThreadPlan::eKindStepInRange, 42 "Step Range stepping in", thread, range, addr_context, 43 stop_others), 44 ThreadPlanShouldStopHere(this), m_step_past_prologue(true), 45 m_virtual_step(false) { 46 SetCallbacks(); 47 SetFlagsToDefault(); 48 SetupAvoidNoDebug(step_in_avoids_code_without_debug_info, 49 step_out_avoids_code_without_debug_info); 50 } 51 52 ThreadPlanStepInRange::ThreadPlanStepInRange( 53 Thread &thread, const AddressRange &range, 54 const SymbolContext &addr_context, const char *step_into_target, 55 lldb::RunMode stop_others, LazyBool step_in_avoids_code_without_debug_info, 56 LazyBool step_out_avoids_code_without_debug_info) 57 : ThreadPlanStepRange(ThreadPlan::eKindStepInRange, 58 "Step Range stepping in", thread, range, addr_context, 59 stop_others), 60 ThreadPlanShouldStopHere(this), m_step_past_prologue(true), 61 m_virtual_step(false), m_step_into_target(step_into_target) { 62 SetCallbacks(); 63 SetFlagsToDefault(); 64 SetupAvoidNoDebug(step_in_avoids_code_without_debug_info, 65 step_out_avoids_code_without_debug_info); 66 } 67 68 ThreadPlanStepInRange::~ThreadPlanStepInRange() = default; 69 70 void ThreadPlanStepInRange::SetupAvoidNoDebug( 71 LazyBool step_in_avoids_code_without_debug_info, 72 LazyBool step_out_avoids_code_without_debug_info) { 73 bool avoid_nodebug = true; 74 75 switch (step_in_avoids_code_without_debug_info) { 76 case eLazyBoolYes: 77 avoid_nodebug = true; 78 break; 79 case eLazyBoolNo: 80 avoid_nodebug = false; 81 break; 82 case eLazyBoolCalculate: 83 avoid_nodebug = m_thread.GetStepInAvoidsNoDebug(); 84 break; 85 } 86 if (avoid_nodebug) 87 GetFlags().Set(ThreadPlanShouldStopHere::eStepInAvoidNoDebug); 88 else 89 GetFlags().Clear(ThreadPlanShouldStopHere::eStepInAvoidNoDebug); 90 91 switch (step_out_avoids_code_without_debug_info) { 92 case eLazyBoolYes: 93 avoid_nodebug = true; 94 break; 95 case eLazyBoolNo: 96 avoid_nodebug = false; 97 break; 98 case eLazyBoolCalculate: 99 avoid_nodebug = m_thread.GetStepOutAvoidsNoDebug(); 100 break; 101 } 102 if (avoid_nodebug) 103 GetFlags().Set(ThreadPlanShouldStopHere::eStepOutAvoidNoDebug); 104 else 105 GetFlags().Clear(ThreadPlanShouldStopHere::eStepOutAvoidNoDebug); 106 } 107 108 void ThreadPlanStepInRange::GetDescription(Stream *s, 109 lldb::DescriptionLevel level) { 110 111 auto PrintFailureIfAny = [&]() { 112 if (m_status.Success()) 113 return; 114 s->Printf(" failed (%s)", m_status.AsCString()); 115 }; 116 117 if (level == lldb::eDescriptionLevelBrief) { 118 s->Printf("step in"); 119 PrintFailureIfAny(); 120 return; 121 } 122 123 s->Printf("Stepping in"); 124 bool printed_line_info = false; 125 if (m_addr_context.line_entry.IsValid()) { 126 s->Printf(" through line "); 127 m_addr_context.line_entry.DumpStopContext(s, false); 128 printed_line_info = true; 129 } 130 131 const char *step_into_target = m_step_into_target.AsCString(); 132 if (step_into_target && step_into_target[0] != '\0') 133 s->Printf(" targeting %s", m_step_into_target.AsCString()); 134 135 if (!printed_line_info || level == eDescriptionLevelVerbose) { 136 s->Printf(" using ranges:"); 137 DumpRanges(s); 138 } 139 140 PrintFailureIfAny(); 141 142 s->PutChar('.'); 143 } 144 145 bool ThreadPlanStepInRange::ShouldStop(Event *event_ptr) { 146 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 147 148 if (log) { 149 StreamString s; 150 s.Address( 151 m_thread.GetRegisterContext()->GetPC(), 152 m_thread.CalculateTarget()->GetArchitecture().GetAddressByteSize()); 153 log->Printf("ThreadPlanStepInRange reached %s.", s.GetData()); 154 } 155 156 if (IsPlanComplete()) 157 return true; 158 159 m_no_more_plans = false; 160 if (m_sub_plan_sp && m_sub_plan_sp->IsPlanComplete()) { 161 if (!m_sub_plan_sp->PlanSucceeded()) { 162 SetPlanComplete(); 163 m_no_more_plans = true; 164 return true; 165 } else 166 m_sub_plan_sp.reset(); 167 } 168 169 if (m_virtual_step) { 170 // If we've just completed a virtual step, all we need to do is check for a 171 // ShouldStopHere plan, and otherwise we're done. 172 // FIXME - This can be both a step in and a step out. Probably should 173 // record which in the m_virtual_step. 174 m_sub_plan_sp = 175 CheckShouldStopHereAndQueueStepOut(eFrameCompareYounger, m_status); 176 } else { 177 // Stepping through should be done running other threads in general, since 178 // we're setting a breakpoint and continuing. So only stop others if we 179 // are explicitly told to do so. 180 181 bool stop_others = (m_stop_others == lldb::eOnlyThisThread); 182 183 FrameComparison frame_order = CompareCurrentFrameToStartFrame(); 184 185 if (frame_order == eFrameCompareOlder || 186 frame_order == eFrameCompareSameParent) { 187 // If we're in an older frame then we should stop. 188 // 189 // A caveat to this is if we think the frame is older but we're actually 190 // in a trampoline. 191 // I'm going to make the assumption that you wouldn't RETURN to a 192 // trampoline. So if we are in a trampoline we think the frame is older 193 // because the trampoline confused the backtracer. 194 m_sub_plan_sp = m_thread.QueueThreadPlanForStepThrough( 195 m_stack_id, false, stop_others, m_status); 196 if (!m_sub_plan_sp) { 197 // Otherwise check the ShouldStopHere for step out: 198 m_sub_plan_sp = 199 CheckShouldStopHereAndQueueStepOut(frame_order, m_status); 200 if (log) { 201 if (m_sub_plan_sp) 202 log->Printf("ShouldStopHere found plan to step out of this frame."); 203 else 204 log->Printf("ShouldStopHere no plan to step out of this frame."); 205 } 206 } else if (log) { 207 log->Printf( 208 "Thought I stepped out, but in fact arrived at a trampoline."); 209 } 210 } else if (frame_order == eFrameCompareEqual && InSymbol()) { 211 // If we are not in a place we should step through, we're done. One 212 // tricky bit here is that some stubs don't push a frame, so we have to 213 // check both the case of a frame that is younger, or the same as this 214 // frame. However, if the frame is the same, and we are still in the 215 // symbol we started in, the we don't need to do this. This first check 216 // isn't strictly necessary, but it is more efficient. 217 218 // If we're still in the range, keep going, either by running to the next 219 // branch breakpoint, or by stepping. 220 if (InRange()) { 221 SetNextBranchBreakpoint(); 222 return false; 223 } 224 225 SetPlanComplete(); 226 m_no_more_plans = true; 227 return true; 228 } 229 230 // If we get to this point, we're not going to use a previously set "next 231 // branch" breakpoint, so delete it: 232 ClearNextBranchBreakpoint(); 233 234 // We may have set the plan up above in the FrameIsOlder section: 235 236 if (!m_sub_plan_sp) 237 m_sub_plan_sp = m_thread.QueueThreadPlanForStepThrough( 238 m_stack_id, false, stop_others, m_status); 239 240 if (log) { 241 if (m_sub_plan_sp) 242 log->Printf("Found a step through plan: %s", m_sub_plan_sp->GetName()); 243 else 244 log->Printf("No step through plan found."); 245 } 246 247 // If not, give the "should_stop" callback a chance to push a plan to get 248 // us out of here. But only do that if we actually have stepped in. 249 if (!m_sub_plan_sp && frame_order == eFrameCompareYounger) 250 m_sub_plan_sp = CheckShouldStopHereAndQueueStepOut(frame_order, m_status); 251 252 // If we've stepped in and we are going to stop here, check to see if we 253 // were asked to run past the prologue, and if so do that. 254 255 if (!m_sub_plan_sp && frame_order == eFrameCompareYounger && 256 m_step_past_prologue) { 257 lldb::StackFrameSP curr_frame = m_thread.GetStackFrameAtIndex(0); 258 if (curr_frame) { 259 size_t bytes_to_skip = 0; 260 lldb::addr_t curr_addr = m_thread.GetRegisterContext()->GetPC(); 261 Address func_start_address; 262 263 SymbolContext sc = curr_frame->GetSymbolContext(eSymbolContextFunction | 264 eSymbolContextSymbol); 265 266 if (sc.function) { 267 func_start_address = sc.function->GetAddressRange().GetBaseAddress(); 268 if (curr_addr == 269 func_start_address.GetLoadAddress( 270 m_thread.CalculateTarget().get())) 271 bytes_to_skip = sc.function->GetPrologueByteSize(); 272 } else if (sc.symbol) { 273 func_start_address = sc.symbol->GetAddress(); 274 if (curr_addr == 275 func_start_address.GetLoadAddress( 276 m_thread.CalculateTarget().get())) 277 bytes_to_skip = sc.symbol->GetPrologueByteSize(); 278 } 279 280 if (bytes_to_skip == 0 && sc.symbol) { 281 TargetSP target = m_thread.CalculateTarget(); 282 const Architecture *arch = target->GetArchitecturePlugin(); 283 if (arch) { 284 Address curr_sec_addr; 285 target->GetSectionLoadList().ResolveLoadAddress(curr_addr, 286 curr_sec_addr); 287 bytes_to_skip = arch->GetBytesToSkip(*sc.symbol, curr_sec_addr); 288 } 289 } 290 291 if (bytes_to_skip != 0) { 292 func_start_address.Slide(bytes_to_skip); 293 log = lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP); 294 if (log) 295 log->Printf("Pushing past prologue "); 296 297 m_sub_plan_sp = m_thread.QueueThreadPlanForRunToAddress( 298 false, func_start_address, true, m_status); 299 } 300 } 301 } 302 } 303 304 if (!m_sub_plan_sp) { 305 m_no_more_plans = true; 306 SetPlanComplete(); 307 return true; 308 } else { 309 m_no_more_plans = false; 310 m_sub_plan_sp->SetPrivate(true); 311 return false; 312 } 313 } 314 315 void ThreadPlanStepInRange::SetAvoidRegexp(const char *name) { 316 auto name_ref = llvm::StringRef::withNullAsEmpty(name); 317 if (!m_avoid_regexp_ap) 318 m_avoid_regexp_ap.reset(new RegularExpression(name_ref)); 319 320 m_avoid_regexp_ap->Compile(name_ref); 321 } 322 323 void ThreadPlanStepInRange::SetDefaultFlagValue(uint32_t new_value) { 324 // TODO: Should we test this for sanity? 325 ThreadPlanStepInRange::s_default_flag_values = new_value; 326 } 327 328 bool ThreadPlanStepInRange::FrameMatchesAvoidCriteria() { 329 StackFrame *frame = GetThread().GetStackFrameAtIndex(0).get(); 330 331 // Check the library list first, as that's cheapest: 332 bool libraries_say_avoid = false; 333 334 FileSpecList libraries_to_avoid(GetThread().GetLibrariesToAvoid()); 335 size_t num_libraries = libraries_to_avoid.GetSize(); 336 if (num_libraries > 0) { 337 SymbolContext sc(frame->GetSymbolContext(eSymbolContextModule)); 338 FileSpec frame_library(sc.module_sp->GetFileSpec()); 339 340 if (frame_library) { 341 for (size_t i = 0; i < num_libraries; i++) { 342 const FileSpec &file_spec(libraries_to_avoid.GetFileSpecAtIndex(i)); 343 if (FileSpec::Equal(file_spec, frame_library, false)) { 344 libraries_say_avoid = true; 345 break; 346 } 347 } 348 } 349 } 350 if (libraries_say_avoid) 351 return true; 352 353 const RegularExpression *avoid_regexp_to_use = m_avoid_regexp_ap.get(); 354 if (avoid_regexp_to_use == nullptr) 355 avoid_regexp_to_use = GetThread().GetSymbolsToAvoidRegexp(); 356 357 if (avoid_regexp_to_use != nullptr) { 358 SymbolContext sc = frame->GetSymbolContext( 359 eSymbolContextFunction | eSymbolContextBlock | eSymbolContextSymbol); 360 if (sc.symbol != nullptr) { 361 const char *frame_function_name = 362 sc.GetFunctionName(Mangled::ePreferDemangledWithoutArguments) 363 .GetCString(); 364 if (frame_function_name) { 365 size_t num_matches = 0; 366 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 367 if (log) 368 num_matches = 1; 369 370 RegularExpression::Match regex_match(num_matches); 371 372 bool return_value = 373 avoid_regexp_to_use->Execute(frame_function_name, ®ex_match); 374 if (return_value) { 375 if (log) { 376 std::string match; 377 regex_match.GetMatchAtIndex(frame_function_name, 0, match); 378 log->Printf("Stepping out of function \"%s\" because it matches " 379 "the avoid regexp \"%s\" - match substring: \"%s\".", 380 frame_function_name, 381 avoid_regexp_to_use->GetText().str().c_str(), 382 match.c_str()); 383 } 384 } 385 return return_value; 386 } 387 } 388 } 389 return false; 390 } 391 392 bool ThreadPlanStepInRange::DefaultShouldStopHereCallback( 393 ThreadPlan *current_plan, Flags &flags, FrameComparison operation, 394 Status &status, void *baton) { 395 bool should_stop_here = true; 396 StackFrame *frame = current_plan->GetThread().GetStackFrameAtIndex(0).get(); 397 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 398 399 // First see if the ThreadPlanShouldStopHere default implementation thinks we 400 // should get out of here: 401 should_stop_here = ThreadPlanShouldStopHere::DefaultShouldStopHereCallback( 402 current_plan, flags, operation, status, baton); 403 if (!should_stop_here) 404 return should_stop_here; 405 406 if (should_stop_here && current_plan->GetKind() == eKindStepInRange && 407 operation == eFrameCompareYounger) { 408 ThreadPlanStepInRange *step_in_range_plan = 409 static_cast<ThreadPlanStepInRange *>(current_plan); 410 if (step_in_range_plan->m_step_into_target) { 411 SymbolContext sc = frame->GetSymbolContext( 412 eSymbolContextFunction | eSymbolContextBlock | eSymbolContextSymbol); 413 if (sc.symbol != nullptr) { 414 // First try an exact match, since that's cheap with ConstStrings. 415 // Then do a strstr compare. 416 if (step_in_range_plan->m_step_into_target == sc.GetFunctionName()) { 417 should_stop_here = true; 418 } else { 419 const char *target_name = 420 step_in_range_plan->m_step_into_target.AsCString(); 421 const char *function_name = sc.GetFunctionName().AsCString(); 422 423 if (function_name == nullptr) 424 should_stop_here = false; 425 else if (strstr(function_name, target_name) == nullptr) 426 should_stop_here = false; 427 } 428 if (log && !should_stop_here) 429 log->Printf("Stepping out of frame %s which did not match step into " 430 "target %s.", 431 sc.GetFunctionName().AsCString(), 432 step_in_range_plan->m_step_into_target.AsCString()); 433 } 434 } 435 436 if (should_stop_here) { 437 ThreadPlanStepInRange *step_in_range_plan = 438 static_cast<ThreadPlanStepInRange *>(current_plan); 439 // Don't log the should_step_out here, it's easier to do it in 440 // FrameMatchesAvoidCriteria. 441 should_stop_here = !step_in_range_plan->FrameMatchesAvoidCriteria(); 442 } 443 } 444 445 return should_stop_here; 446 } 447 448 bool ThreadPlanStepInRange::DoPlanExplainsStop(Event *event_ptr) { 449 // We always explain a stop. Either we've just done a single step, in which 450 // case we'll do our ordinary processing, or we stopped for some reason that 451 // isn't handled by our sub-plans, in which case we want to just stop right 452 // away. In general, we don't want to mark the plan as complete for 453 // unexplained stops. For instance, if you step in to some code with no debug 454 // info, so you step out and in the course of that hit a breakpoint, then you 455 // want to stop & show the user the breakpoint, but not unship the step in 456 // plan, since you still may want to complete that plan when you continue. 457 // This is particularly true when doing "step in to target function." 458 // stepping. 459 // 460 // The only variation is that if we are doing "step by running to next 461 // branch" in which case if we hit our branch breakpoint we don't set the 462 // plan to complete. 463 464 bool return_value = false; 465 466 if (m_virtual_step) { 467 return_value = true; 468 } else { 469 StopInfoSP stop_info_sp = GetPrivateStopInfo(); 470 if (stop_info_sp) { 471 StopReason reason = stop_info_sp->GetStopReason(); 472 473 if (reason == eStopReasonBreakpoint) { 474 if (NextRangeBreakpointExplainsStop(stop_info_sp)) { 475 return_value = true; 476 } 477 } else if (IsUsuallyUnexplainedStopReason(reason)) { 478 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 479 if (log) 480 log->PutCString("ThreadPlanStepInRange got asked if it explains the " 481 "stop for some reason other than step."); 482 return_value = false; 483 } else { 484 return_value = true; 485 } 486 } else 487 return_value = true; 488 } 489 490 return return_value; 491 } 492 493 bool ThreadPlanStepInRange::DoWillResume(lldb::StateType resume_state, 494 bool current_plan) { 495 m_virtual_step = false; 496 if (resume_state == eStateStepping && current_plan) { 497 // See if we are about to step over a virtual inlined call. 498 bool step_without_resume = m_thread.DecrementCurrentInlinedDepth(); 499 if (step_without_resume) { 500 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 501 if (log) 502 log->Printf("ThreadPlanStepInRange::DoWillResume: returning false, " 503 "inline_depth: %d", 504 m_thread.GetCurrentInlinedDepth()); 505 SetStopInfo(StopInfo::CreateStopReasonToTrace(m_thread)); 506 507 // FIXME: Maybe it would be better to create a InlineStep stop reason, but 508 // then 509 // the whole rest of the world would have to handle that stop reason. 510 m_virtual_step = true; 511 } 512 return !step_without_resume; 513 } 514 return true; 515 } 516 517 bool ThreadPlanStepInRange::IsVirtualStep() { return m_virtual_step; } 518