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*** to conform to clang-format’s LLVM style. This kind of mass change has *** two obvious implications: Firstly, merging this particular commit into a downstream fork may be a huge effort. Alternatively, it may be worth merging all changes up to this commit, performing the same reformatting operation locally, and then discarding the merge for this particular commit. The commands used to accomplish this reformatting were as follows (with current working directory as the root of the repository): find . \( -iname "*.c" -or -iname "*.cpp" -or -iname "*.h" -or -iname "*.mm" \) -exec clang-format -i {} + find . -iname "*.py" -exec autopep8 --in-place --aggressive --aggressive {} + ; The version of clang-format used was 3.9.0, and autopep8 was 1.2.4. Secondly, “blame” style tools will generally point to this commit instead of a meaningful prior commit. There are alternatives available that will attempt to look through this change and find the appropriate prior commit. YMMV. llvm-svn: 280751
507 lines
18 KiB
C++
507 lines
18 KiB
C++
//===-- ThreadPlanStepInRange.cpp -------------------------------*- C++ -*-===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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// C Includes
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// C++ Includes
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// Other libraries and framework includes
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// Project includes
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#include "lldb/Target/ThreadPlanStepInRange.h"
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#include "lldb/Core/Log.h"
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#include "lldb/Core/Module.h"
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#include "lldb/Core/RegularExpression.h"
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#include "lldb/Core/Stream.h"
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#include "lldb/Symbol/Function.h"
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#include "lldb/Symbol/Symbol.h"
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#include "lldb/Target/Process.h"
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#include "lldb/Target/RegisterContext.h"
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#include "lldb/Target/Target.h"
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#include "lldb/Target/Thread.h"
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#include "lldb/Target/ThreadPlanStepOut.h"
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#include "lldb/Target/ThreadPlanStepThrough.h"
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using namespace lldb;
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using namespace lldb_private;
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uint32_t ThreadPlanStepInRange::s_default_flag_values =
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ThreadPlanShouldStopHere::eStepInAvoidNoDebug;
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//----------------------------------------------------------------------
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// ThreadPlanStepInRange: Step through a stack range, either stepping over or
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// into
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// based on the value of \a type.
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//----------------------------------------------------------------------
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ThreadPlanStepInRange::ThreadPlanStepInRange(
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Thread &thread, const AddressRange &range,
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const SymbolContext &addr_context, lldb::RunMode stop_others,
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LazyBool step_in_avoids_code_without_debug_info,
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LazyBool step_out_avoids_code_without_debug_info)
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: ThreadPlanStepRange(ThreadPlan::eKindStepInRange,
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"Step Range stepping in", thread, range, addr_context,
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stop_others),
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ThreadPlanShouldStopHere(this), m_step_past_prologue(true),
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m_virtual_step(false) {
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SetCallbacks();
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SetFlagsToDefault();
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SetupAvoidNoDebug(step_in_avoids_code_without_debug_info,
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step_out_avoids_code_without_debug_info);
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}
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ThreadPlanStepInRange::ThreadPlanStepInRange(
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Thread &thread, const AddressRange &range,
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const SymbolContext &addr_context, const char *step_into_target,
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lldb::RunMode stop_others, LazyBool step_in_avoids_code_without_debug_info,
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LazyBool step_out_avoids_code_without_debug_info)
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: ThreadPlanStepRange(ThreadPlan::eKindStepInRange,
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"Step Range stepping in", thread, range, addr_context,
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stop_others),
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ThreadPlanShouldStopHere(this), m_step_past_prologue(true),
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m_virtual_step(false), m_step_into_target(step_into_target) {
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SetCallbacks();
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SetFlagsToDefault();
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SetupAvoidNoDebug(step_in_avoids_code_without_debug_info,
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step_out_avoids_code_without_debug_info);
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}
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ThreadPlanStepInRange::~ThreadPlanStepInRange() = default;
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void ThreadPlanStepInRange::SetupAvoidNoDebug(
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LazyBool step_in_avoids_code_without_debug_info,
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LazyBool step_out_avoids_code_without_debug_info) {
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bool avoid_nodebug = true;
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switch (step_in_avoids_code_without_debug_info) {
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case eLazyBoolYes:
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avoid_nodebug = true;
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break;
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case eLazyBoolNo:
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avoid_nodebug = false;
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break;
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case eLazyBoolCalculate:
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avoid_nodebug = m_thread.GetStepInAvoidsNoDebug();
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break;
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}
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if (avoid_nodebug)
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GetFlags().Set(ThreadPlanShouldStopHere::eStepInAvoidNoDebug);
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else
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GetFlags().Clear(ThreadPlanShouldStopHere::eStepInAvoidNoDebug);
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switch (step_out_avoids_code_without_debug_info) {
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case eLazyBoolYes:
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avoid_nodebug = true;
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break;
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case eLazyBoolNo:
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avoid_nodebug = false;
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break;
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case eLazyBoolCalculate:
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avoid_nodebug = m_thread.GetStepOutAvoidsNoDebug();
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break;
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}
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if (avoid_nodebug)
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GetFlags().Set(ThreadPlanShouldStopHere::eStepOutAvoidNoDebug);
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else
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GetFlags().Clear(ThreadPlanShouldStopHere::eStepOutAvoidNoDebug);
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}
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void ThreadPlanStepInRange::GetDescription(Stream *s,
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lldb::DescriptionLevel level) {
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if (level == lldb::eDescriptionLevelBrief) {
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s->Printf("step in");
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return;
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}
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s->Printf("Stepping in");
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bool printed_line_info = false;
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if (m_addr_context.line_entry.IsValid()) {
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s->Printf(" through line ");
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m_addr_context.line_entry.DumpStopContext(s, false);
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printed_line_info = true;
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}
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const char *step_into_target = m_step_into_target.AsCString();
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if (step_into_target && step_into_target[0] != '\0')
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s->Printf(" targeting %s", m_step_into_target.AsCString());
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if (!printed_line_info || level == eDescriptionLevelVerbose) {
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s->Printf(" using ranges:");
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DumpRanges(s);
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}
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s->PutChar('.');
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}
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bool ThreadPlanStepInRange::ShouldStop(Event *event_ptr) {
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Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP));
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if (log) {
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StreamString s;
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s.Address(
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m_thread.GetRegisterContext()->GetPC(),
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m_thread.CalculateTarget()->GetArchitecture().GetAddressByteSize());
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log->Printf("ThreadPlanStepInRange reached %s.", s.GetData());
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}
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if (IsPlanComplete())
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return true;
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m_no_more_plans = false;
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if (m_sub_plan_sp && m_sub_plan_sp->IsPlanComplete()) {
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if (!m_sub_plan_sp->PlanSucceeded()) {
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SetPlanComplete();
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m_no_more_plans = true;
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return true;
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} else
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m_sub_plan_sp.reset();
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}
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if (m_virtual_step) {
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// If we've just completed a virtual step, all we need to do is check for a
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// ShouldStopHere plan, and otherwise
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// we're done.
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// FIXME - This can be both a step in and a step out. Probably should
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// record which in the m_virtual_step.
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m_sub_plan_sp = CheckShouldStopHereAndQueueStepOut(eFrameCompareYounger);
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} else {
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// Stepping through should be done running other threads in general, since
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// we're setting a breakpoint and
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// continuing. So only stop others if we are explicitly told to do so.
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bool stop_others = (m_stop_others == lldb::eOnlyThisThread);
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FrameComparison frame_order = CompareCurrentFrameToStartFrame();
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if (frame_order == eFrameCompareOlder ||
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frame_order == eFrameCompareSameParent) {
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// If we're in an older frame then we should stop.
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//
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// A caveat to this is if we think the frame is older but we're actually
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// in a trampoline.
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// I'm going to make the assumption that you wouldn't RETURN to a
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// trampoline. So if we are
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// in a trampoline we think the frame is older because the trampoline
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// confused the backtracer.
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m_sub_plan_sp = m_thread.QueueThreadPlanForStepThrough(m_stack_id, false,
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stop_others);
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if (!m_sub_plan_sp) {
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// Otherwise check the ShouldStopHere for step out:
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m_sub_plan_sp = CheckShouldStopHereAndQueueStepOut(frame_order);
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if (log)
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log->Printf("ShouldStopHere says we should step out of this frame.");
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} else if (log) {
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log->Printf(
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"Thought I stepped out, but in fact arrived at a trampoline.");
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}
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} else if (frame_order == eFrameCompareEqual && InSymbol()) {
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// If we are not in a place we should step through, we're done.
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// One tricky bit here is that some stubs don't push a frame, so we have
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// to check
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// both the case of a frame that is younger, or the same as this frame.
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// However, if the frame is the same, and we are still in the symbol we
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// started
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// in, the we don't need to do this. This first check isn't strictly
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// necessary,
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// but it is more efficient.
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// If we're still in the range, keep going, either by running to the next
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// branch breakpoint, or by
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// stepping.
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if (InRange()) {
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SetNextBranchBreakpoint();
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return false;
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}
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SetPlanComplete();
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m_no_more_plans = true;
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return true;
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}
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// If we get to this point, we're not going to use a previously set "next
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// branch" breakpoint, so delete it:
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ClearNextBranchBreakpoint();
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// We may have set the plan up above in the FrameIsOlder section:
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if (!m_sub_plan_sp)
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m_sub_plan_sp = m_thread.QueueThreadPlanForStepThrough(m_stack_id, false,
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stop_others);
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if (log) {
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if (m_sub_plan_sp)
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log->Printf("Found a step through plan: %s", m_sub_plan_sp->GetName());
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else
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log->Printf("No step through plan found.");
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}
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// If not, give the "should_stop" callback a chance to push a plan to get us
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// out of here.
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// But only do that if we actually have stepped in.
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if (!m_sub_plan_sp && frame_order == eFrameCompareYounger)
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m_sub_plan_sp = CheckShouldStopHereAndQueueStepOut(frame_order);
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// If we've stepped in and we are going to stop here, check to see if we
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// were asked to
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// run past the prologue, and if so do that.
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if (!m_sub_plan_sp && frame_order == eFrameCompareYounger &&
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m_step_past_prologue) {
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lldb::StackFrameSP curr_frame = m_thread.GetStackFrameAtIndex(0);
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if (curr_frame) {
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size_t bytes_to_skip = 0;
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lldb::addr_t curr_addr = m_thread.GetRegisterContext()->GetPC();
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Address func_start_address;
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SymbolContext sc = curr_frame->GetSymbolContext(eSymbolContextFunction |
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eSymbolContextSymbol);
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if (sc.function) {
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func_start_address = sc.function->GetAddressRange().GetBaseAddress();
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if (curr_addr ==
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func_start_address.GetLoadAddress(
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m_thread.CalculateTarget().get()))
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bytes_to_skip = sc.function->GetPrologueByteSize();
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} else if (sc.symbol) {
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func_start_address = sc.symbol->GetAddress();
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if (curr_addr ==
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func_start_address.GetLoadAddress(
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m_thread.CalculateTarget().get()))
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bytes_to_skip = sc.symbol->GetPrologueByteSize();
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}
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if (bytes_to_skip != 0) {
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func_start_address.Slide(bytes_to_skip);
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log = lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP);
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if (log)
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log->Printf("Pushing past prologue ");
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m_sub_plan_sp = m_thread.QueueThreadPlanForRunToAddress(
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false, func_start_address, true);
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}
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}
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}
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}
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if (!m_sub_plan_sp) {
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m_no_more_plans = true;
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SetPlanComplete();
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return true;
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} else {
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m_no_more_plans = false;
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m_sub_plan_sp->SetPrivate(true);
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return false;
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}
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}
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void ThreadPlanStepInRange::SetAvoidRegexp(const char *name) {
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if (!m_avoid_regexp_ap)
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m_avoid_regexp_ap.reset(new RegularExpression(name));
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m_avoid_regexp_ap->Compile(name);
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}
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void ThreadPlanStepInRange::SetDefaultFlagValue(uint32_t new_value) {
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// TODO: Should we test this for sanity?
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ThreadPlanStepInRange::s_default_flag_values = new_value;
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}
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bool ThreadPlanStepInRange::FrameMatchesAvoidCriteria() {
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StackFrame *frame = GetThread().GetStackFrameAtIndex(0).get();
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// Check the library list first, as that's cheapest:
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bool libraries_say_avoid = false;
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FileSpecList libraries_to_avoid(GetThread().GetLibrariesToAvoid());
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size_t num_libraries = libraries_to_avoid.GetSize();
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if (num_libraries > 0) {
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SymbolContext sc(frame->GetSymbolContext(eSymbolContextModule));
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FileSpec frame_library(sc.module_sp->GetFileSpec());
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if (frame_library) {
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for (size_t i = 0; i < num_libraries; i++) {
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const FileSpec &file_spec(libraries_to_avoid.GetFileSpecAtIndex(i));
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if (FileSpec::Equal(file_spec, frame_library, false)) {
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libraries_say_avoid = true;
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break;
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}
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}
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}
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}
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if (libraries_say_avoid)
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return true;
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const RegularExpression *avoid_regexp_to_use = m_avoid_regexp_ap.get();
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if (avoid_regexp_to_use == nullptr)
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avoid_regexp_to_use = GetThread().GetSymbolsToAvoidRegexp();
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if (avoid_regexp_to_use != nullptr) {
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SymbolContext sc = frame->GetSymbolContext(
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eSymbolContextFunction | eSymbolContextBlock | eSymbolContextSymbol);
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if (sc.symbol != nullptr) {
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const char *frame_function_name =
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sc.GetFunctionName(Mangled::ePreferDemangledWithoutArguments)
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.GetCString();
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if (frame_function_name) {
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size_t num_matches = 0;
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Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP));
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if (log)
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num_matches = 1;
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RegularExpression::Match regex_match(num_matches);
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bool return_value =
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avoid_regexp_to_use->Execute(frame_function_name, ®ex_match);
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if (return_value) {
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if (log) {
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std::string match;
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regex_match.GetMatchAtIndex(frame_function_name, 0, match);
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log->Printf("Stepping out of function \"%s\" because it matches "
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"the avoid regexp \"%s\" - match substring: \"%s\".",
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frame_function_name, avoid_regexp_to_use->GetText(),
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match.c_str());
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}
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}
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return return_value;
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}
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}
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}
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return false;
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}
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bool ThreadPlanStepInRange::DefaultShouldStopHereCallback(
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ThreadPlan *current_plan, Flags &flags, FrameComparison operation,
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void *baton) {
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bool should_stop_here = true;
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StackFrame *frame = current_plan->GetThread().GetStackFrameAtIndex(0).get();
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Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP));
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// First see if the ThreadPlanShouldStopHere default implementation thinks we
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// should get out of here:
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should_stop_here = ThreadPlanShouldStopHere::DefaultShouldStopHereCallback(
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current_plan, flags, operation, baton);
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if (!should_stop_here)
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return should_stop_here;
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if (should_stop_here && current_plan->GetKind() == eKindStepInRange &&
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operation == eFrameCompareYounger) {
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ThreadPlanStepInRange *step_in_range_plan =
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static_cast<ThreadPlanStepInRange *>(current_plan);
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if (step_in_range_plan->m_step_into_target) {
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SymbolContext sc = frame->GetSymbolContext(
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eSymbolContextFunction | eSymbolContextBlock | eSymbolContextSymbol);
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if (sc.symbol != nullptr) {
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// First try an exact match, since that's cheap with ConstStrings. Then
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// do a strstr compare.
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if (step_in_range_plan->m_step_into_target == sc.GetFunctionName()) {
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should_stop_here = true;
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} else {
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const char *target_name =
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step_in_range_plan->m_step_into_target.AsCString();
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const char *function_name = sc.GetFunctionName().AsCString();
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if (function_name == nullptr)
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should_stop_here = false;
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else if (strstr(function_name, target_name) == nullptr)
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should_stop_here = false;
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}
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if (log && !should_stop_here)
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log->Printf("Stepping out of frame %s which did not match step into "
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"target %s.",
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sc.GetFunctionName().AsCString(),
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step_in_range_plan->m_step_into_target.AsCString());
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}
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}
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if (should_stop_here) {
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ThreadPlanStepInRange *step_in_range_plan =
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static_cast<ThreadPlanStepInRange *>(current_plan);
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// Don't log the should_step_out here, it's easier to do it in
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// FrameMatchesAvoidCriteria.
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should_stop_here = !step_in_range_plan->FrameMatchesAvoidCriteria();
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}
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}
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return should_stop_here;
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}
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bool ThreadPlanStepInRange::DoPlanExplainsStop(Event *event_ptr) {
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// We always explain a stop. Either we've just done a single step, in which
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// case we'll do our ordinary processing, or we stopped for some
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// reason that isn't handled by our sub-plans, in which case we want to just
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// stop right
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// away.
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// In general, we don't want to mark the plan as complete for unexplained
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// stops.
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// For instance, if you step in to some code with no debug info, so you step
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// out
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// and in the course of that hit a breakpoint, then you want to stop & show
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// the user
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// the breakpoint, but not unship the step in plan, since you still may want
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// to complete that
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// plan when you continue. This is particularly true when doing "step in to
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// target function."
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// stepping.
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//
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// The only variation is that if we are doing "step by running to next branch"
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// in which case
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// if we hit our branch breakpoint we don't set the plan to complete.
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bool return_value = false;
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if (m_virtual_step) {
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return_value = true;
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} else {
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StopInfoSP stop_info_sp = GetPrivateStopInfo();
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if (stop_info_sp) {
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StopReason reason = stop_info_sp->GetStopReason();
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if (reason == eStopReasonBreakpoint) {
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if (NextRangeBreakpointExplainsStop(stop_info_sp)) {
|
|
return_value = true;
|
|
}
|
|
} else if (IsUsuallyUnexplainedStopReason(reason)) {
|
|
Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP));
|
|
if (log)
|
|
log->PutCString("ThreadPlanStepInRange got asked if it explains the "
|
|
"stop for some reason other than step.");
|
|
return_value = false;
|
|
} else {
|
|
return_value = true;
|
|
}
|
|
} else
|
|
return_value = true;
|
|
}
|
|
|
|
return return_value;
|
|
}
|
|
|
|
bool ThreadPlanStepInRange::DoWillResume(lldb::StateType resume_state,
|
|
bool current_plan) {
|
|
m_virtual_step = false;
|
|
if (resume_state == eStateStepping && current_plan) {
|
|
// See if we are about to step over a virtual inlined call.
|
|
bool step_without_resume = m_thread.DecrementCurrentInlinedDepth();
|
|
if (step_without_resume) {
|
|
Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_STEP));
|
|
if (log)
|
|
log->Printf("ThreadPlanStepInRange::DoWillResume: returning false, "
|
|
"inline_depth: %d",
|
|
m_thread.GetCurrentInlinedDepth());
|
|
SetStopInfo(StopInfo::CreateStopReasonToTrace(m_thread));
|
|
|
|
// FIXME: Maybe it would be better to create a InlineStep stop reason, but
|
|
// then
|
|
// the whole rest of the world would have to handle that stop reason.
|
|
m_virtual_step = true;
|
|
}
|
|
return !step_without_resume;
|
|
}
|
|
return true;
|
|
}
|
|
|
|
bool ThreadPlanStepInRange::IsVirtualStep() { return m_virtual_step; }
|