1 //===-- ThreadPlanStepUntil.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/ThreadPlanStepUntil.h" 10 11 #include "lldb/Breakpoint/Breakpoint.h" 12 #include "lldb/Symbol/SymbolContextScope.h" 13 #include "lldb/Target/Process.h" 14 #include "lldb/Target/RegisterContext.h" 15 #include "lldb/Target/StopInfo.h" 16 #include "lldb/Target/Target.h" 17 #include "lldb/Utility/Log.h" 18 19 using namespace lldb; 20 using namespace lldb_private; 21 22 //---------------------------------------------------------------------- 23 // ThreadPlanStepUntil: Run until we reach a given line number or step out of 24 // the current frame 25 //---------------------------------------------------------------------- 26 27 ThreadPlanStepUntil::ThreadPlanStepUntil(Thread &thread, 28 lldb::addr_t *address_list, 29 size_t num_addresses, bool stop_others, 30 uint32_t frame_idx) 31 : ThreadPlan(ThreadPlan::eKindStepUntil, "Step until", thread, 32 eVoteNoOpinion, eVoteNoOpinion), 33 m_step_from_insn(LLDB_INVALID_ADDRESS), 34 m_return_bp_id(LLDB_INVALID_BREAK_ID), 35 m_return_addr(LLDB_INVALID_ADDRESS), m_stepped_out(false), 36 m_should_stop(false), m_ran_analyze(false), m_explains_stop(false), 37 m_until_points(), m_stop_others(stop_others) { 38 // Stash away our "until" addresses: 39 TargetSP target_sp(m_thread.CalculateTarget()); 40 41 StackFrameSP frame_sp(m_thread.GetStackFrameAtIndex(frame_idx)); 42 if (frame_sp) { 43 m_step_from_insn = frame_sp->GetStackID().GetPC(); 44 lldb::user_id_t thread_id = m_thread.GetID(); 45 46 // Find the return address and set a breakpoint there: 47 // FIXME - can we do this more securely if we know first_insn? 48 49 StackFrameSP return_frame_sp(m_thread.GetStackFrameAtIndex(frame_idx + 1)); 50 if (return_frame_sp) { 51 // TODO: add inline functionality 52 m_return_addr = return_frame_sp->GetStackID().GetPC(); 53 Breakpoint *return_bp = 54 target_sp->CreateBreakpoint(m_return_addr, true, false).get(); 55 56 if (return_bp != nullptr) { 57 if (return_bp->IsHardware() && !return_bp->HasResolvedLocations()) 58 m_could_not_resolve_hw_bp = true; 59 return_bp->SetThreadID(thread_id); 60 m_return_bp_id = return_bp->GetID(); 61 return_bp->SetBreakpointKind("until-return-backstop"); 62 } 63 } 64 65 m_stack_id = frame_sp->GetStackID(); 66 67 // Now set breakpoints on all our return addresses: 68 for (size_t i = 0; i < num_addresses; i++) { 69 Breakpoint *until_bp = 70 target_sp->CreateBreakpoint(address_list[i], true, false).get(); 71 if (until_bp != nullptr) { 72 until_bp->SetThreadID(thread_id); 73 m_until_points[address_list[i]] = until_bp->GetID(); 74 until_bp->SetBreakpointKind("until-target"); 75 } else { 76 m_until_points[address_list[i]] = LLDB_INVALID_BREAK_ID; 77 } 78 } 79 } 80 } 81 82 ThreadPlanStepUntil::~ThreadPlanStepUntil() { Clear(); } 83 84 void ThreadPlanStepUntil::Clear() { 85 TargetSP target_sp(m_thread.CalculateTarget()); 86 if (target_sp) { 87 if (m_return_bp_id != LLDB_INVALID_BREAK_ID) { 88 target_sp->RemoveBreakpointByID(m_return_bp_id); 89 m_return_bp_id = LLDB_INVALID_BREAK_ID; 90 } 91 92 until_collection::iterator pos, end = m_until_points.end(); 93 for (pos = m_until_points.begin(); pos != end; pos++) { 94 target_sp->RemoveBreakpointByID((*pos).second); 95 } 96 } 97 m_until_points.clear(); 98 m_could_not_resolve_hw_bp = false; 99 } 100 101 void ThreadPlanStepUntil::GetDescription(Stream *s, 102 lldb::DescriptionLevel level) { 103 if (level == lldb::eDescriptionLevelBrief) { 104 s->Printf("step until"); 105 if (m_stepped_out) 106 s->Printf(" - stepped out"); 107 } else { 108 if (m_until_points.size() == 1) 109 s->Printf("Stepping from address 0x%" PRIx64 " until we reach 0x%" PRIx64 110 " using breakpoint %d", 111 (uint64_t)m_step_from_insn, 112 (uint64_t)(*m_until_points.begin()).first, 113 (*m_until_points.begin()).second); 114 else { 115 until_collection::iterator pos, end = m_until_points.end(); 116 s->Printf("Stepping from address 0x%" PRIx64 " until we reach one of:", 117 (uint64_t)m_step_from_insn); 118 for (pos = m_until_points.begin(); pos != end; pos++) { 119 s->Printf("\n\t0x%" PRIx64 " (bp: %d)", (uint64_t)(*pos).first, 120 (*pos).second); 121 } 122 } 123 s->Printf(" stepped out address is 0x%" PRIx64 ".", 124 (uint64_t)m_return_addr); 125 } 126 } 127 128 bool ThreadPlanStepUntil::ValidatePlan(Stream *error) { 129 if (m_could_not_resolve_hw_bp) { 130 if (error) 131 error->PutCString( 132 "Could not create hardware breakpoint for thread plan."); 133 return false; 134 } else if (m_return_bp_id == LLDB_INVALID_BREAK_ID) { 135 if (error) 136 error->PutCString("Could not create return breakpoint."); 137 return false; 138 } else { 139 until_collection::iterator pos, end = m_until_points.end(); 140 for (pos = m_until_points.begin(); pos != end; pos++) { 141 if (!LLDB_BREAK_ID_IS_VALID((*pos).second)) 142 return false; 143 } 144 return true; 145 } 146 } 147 148 void ThreadPlanStepUntil::AnalyzeStop() { 149 if (m_ran_analyze) 150 return; 151 152 StopInfoSP stop_info_sp = GetPrivateStopInfo(); 153 m_should_stop = true; 154 m_explains_stop = false; 155 156 if (stop_info_sp) { 157 StopReason reason = stop_info_sp->GetStopReason(); 158 159 if (reason == eStopReasonBreakpoint) { 160 // If this is OUR breakpoint, we're fine, otherwise we don't know why 161 // this happened... 162 BreakpointSiteSP this_site = 163 m_thread.GetProcess()->GetBreakpointSiteList().FindByID( 164 stop_info_sp->GetValue()); 165 if (!this_site) { 166 m_explains_stop = false; 167 return; 168 } 169 170 if (this_site->IsBreakpointAtThisSite(m_return_bp_id)) { 171 // If we are at our "step out" breakpoint, and the stack depth has 172 // shrunk, then this is indeed our stop. If the stack depth has grown, 173 // then we've hit our step out breakpoint recursively. If we are the 174 // only breakpoint at that location, then we do explain the stop, and 175 // we'll just continue. If there was another breakpoint here, then we 176 // don't explain the stop, but we won't mark ourselves Completed, 177 // because maybe that breakpoint will continue, and then we'll finish 178 // the "until". 179 bool done; 180 StackID cur_frame_zero_id; 181 182 done = (m_stack_id < cur_frame_zero_id); 183 184 if (done) { 185 m_stepped_out = true; 186 SetPlanComplete(); 187 } else 188 m_should_stop = false; 189 190 if (this_site->GetNumberOfOwners() == 1) 191 m_explains_stop = true; 192 else 193 m_explains_stop = false; 194 return; 195 } else { 196 // Check if we've hit one of our "until" breakpoints. 197 until_collection::iterator pos, end = m_until_points.end(); 198 for (pos = m_until_points.begin(); pos != end; pos++) { 199 if (this_site->IsBreakpointAtThisSite((*pos).second)) { 200 // If we're at the right stack depth, then we're done. 201 202 bool done; 203 StackID frame_zero_id = 204 m_thread.GetStackFrameAtIndex(0)->GetStackID(); 205 206 if (frame_zero_id == m_stack_id) 207 done = true; 208 else if (frame_zero_id < m_stack_id) 209 done = false; 210 else { 211 StackFrameSP older_frame_sp = m_thread.GetStackFrameAtIndex(1); 212 213 // But if we can't even unwind one frame we should just get out 214 // of here & stop... 215 if (older_frame_sp) { 216 const SymbolContext &older_context = 217 older_frame_sp->GetSymbolContext(eSymbolContextEverything); 218 SymbolContext stack_context; 219 m_stack_id.GetSymbolContextScope()->CalculateSymbolContext( 220 &stack_context); 221 222 done = (older_context == stack_context); 223 } else 224 done = false; 225 } 226 227 if (done) 228 SetPlanComplete(); 229 else 230 m_should_stop = false; 231 232 // Otherwise we've hit this breakpoint recursively. If we're the 233 // only breakpoint here, then we do explain the stop, and we'll 234 // continue. If not then we should let higher plans handle this 235 // stop. 236 if (this_site->GetNumberOfOwners() == 1) 237 m_explains_stop = true; 238 else { 239 m_should_stop = true; 240 m_explains_stop = false; 241 } 242 return; 243 } 244 } 245 } 246 // If we get here we haven't hit any of our breakpoints, so let the 247 // higher plans take care of the stop. 248 m_explains_stop = false; 249 return; 250 } else if (IsUsuallyUnexplainedStopReason(reason)) { 251 m_explains_stop = false; 252 } else { 253 m_explains_stop = true; 254 } 255 } 256 } 257 258 bool ThreadPlanStepUntil::DoPlanExplainsStop(Event *event_ptr) { 259 // We don't explain signals or breakpoints (breakpoints that handle stepping 260 // in or out will be handled by a child plan. 261 AnalyzeStop(); 262 return m_explains_stop; 263 } 264 265 bool ThreadPlanStepUntil::ShouldStop(Event *event_ptr) { 266 // If we've told our self in ExplainsStop that we plan to continue, then do 267 // so here. Otherwise, as long as this thread has stopped for a reason, we 268 // will stop. 269 270 StopInfoSP stop_info_sp = GetPrivateStopInfo(); 271 if (!stop_info_sp || stop_info_sp->GetStopReason() == eStopReasonNone) 272 return false; 273 274 AnalyzeStop(); 275 return m_should_stop; 276 } 277 278 bool ThreadPlanStepUntil::StopOthers() { return m_stop_others; } 279 280 StateType ThreadPlanStepUntil::GetPlanRunState() { return eStateRunning; } 281 282 bool ThreadPlanStepUntil::DoWillResume(StateType resume_state, 283 bool current_plan) { 284 if (current_plan) { 285 TargetSP target_sp(m_thread.CalculateTarget()); 286 if (target_sp) { 287 Breakpoint *return_bp = 288 target_sp->GetBreakpointByID(m_return_bp_id).get(); 289 if (return_bp != nullptr) 290 return_bp->SetEnabled(true); 291 292 until_collection::iterator pos, end = m_until_points.end(); 293 for (pos = m_until_points.begin(); pos != end; pos++) { 294 Breakpoint *until_bp = 295 target_sp->GetBreakpointByID((*pos).second).get(); 296 if (until_bp != nullptr) 297 until_bp->SetEnabled(true); 298 } 299 } 300 } 301 302 m_should_stop = true; 303 m_ran_analyze = false; 304 m_explains_stop = false; 305 return true; 306 } 307 308 bool ThreadPlanStepUntil::WillStop() { 309 TargetSP target_sp(m_thread.CalculateTarget()); 310 if (target_sp) { 311 Breakpoint *return_bp = target_sp->GetBreakpointByID(m_return_bp_id).get(); 312 if (return_bp != nullptr) 313 return_bp->SetEnabled(false); 314 315 until_collection::iterator pos, end = m_until_points.end(); 316 for (pos = m_until_points.begin(); pos != end; pos++) { 317 Breakpoint *until_bp = target_sp->GetBreakpointByID((*pos).second).get(); 318 if (until_bp != nullptr) 319 until_bp->SetEnabled(false); 320 } 321 } 322 return true; 323 } 324 325 bool ThreadPlanStepUntil::MischiefManaged() { 326 // I'm letting "PlanExplainsStop" do all the work, and just reporting that 327 // here. 328 bool done = false; 329 if (IsPlanComplete()) { 330 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP)); 331 if (log) 332 log->Printf("Completed step until plan."); 333 334 Clear(); 335 done = true; 336 } 337 if (done) 338 ThreadPlan::MischiefManaged(); 339 340 return done; 341 } 342