This is a user facing action, it is meant to focus the user's attention on something other than the 0th frame when you stop somewhere where that's helpful. For instance, stopping in pthread_kill after an assert will select the assert frame. This is not something you want to have happen internally in lldb, both because internally you really don't want the selected frame changing out from under you, and because the recognizers can do arbitrary work, and that can cause deadlocks or other unexpected behavior. However, it's not something that the current code does explicitly after a stop has been delivered, it's expected to happen implicitly as part of stopping. I changing this to call SMRF explicitly after a user stop, but that got pretty ugly quickly. So I added a bool to control whether to run this and audited all the current uses to determine whether we're returning to the user or not. Differential Revision: https://reviews.llvm.org/D148863
614 lines
18 KiB
C++
614 lines
18 KiB
C++
//===-- ExecutionContext.cpp ----------------------------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#include "lldb/Target/ExecutionContext.h"
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#include "lldb/Target/ExecutionContextScope.h"
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#include "lldb/Target/Process.h"
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#include "lldb/Target/StackFrame.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/Utility/State.h"
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using namespace lldb_private;
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ExecutionContext::ExecutionContext()
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: m_target_sp(), m_process_sp(), m_thread_sp(), m_frame_sp() {}
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ExecutionContext::ExecutionContext(const ExecutionContext &rhs) = default;
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ExecutionContext::ExecutionContext(const lldb::TargetSP &target_sp,
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bool get_process)
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: m_target_sp(), m_process_sp(), m_thread_sp(), m_frame_sp() {
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if (target_sp)
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SetContext(target_sp, get_process);
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}
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ExecutionContext::ExecutionContext(const lldb::ProcessSP &process_sp)
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: m_target_sp(), m_process_sp(), m_thread_sp(), m_frame_sp() {
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if (process_sp)
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SetContext(process_sp);
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}
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ExecutionContext::ExecutionContext(const lldb::ThreadSP &thread_sp)
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: m_target_sp(), m_process_sp(), m_thread_sp(), m_frame_sp() {
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if (thread_sp)
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SetContext(thread_sp);
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}
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ExecutionContext::ExecutionContext(const lldb::StackFrameSP &frame_sp)
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: m_target_sp(), m_process_sp(), m_thread_sp(), m_frame_sp() {
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if (frame_sp)
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SetContext(frame_sp);
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}
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ExecutionContext::ExecutionContext(const lldb::TargetWP &target_wp,
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bool get_process)
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: m_target_sp(), m_process_sp(), m_thread_sp(), m_frame_sp() {
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lldb::TargetSP target_sp(target_wp.lock());
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if (target_sp)
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SetContext(target_sp, get_process);
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}
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ExecutionContext::ExecutionContext(const lldb::ProcessWP &process_wp)
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: m_target_sp(), m_process_sp(), m_thread_sp(), m_frame_sp() {
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lldb::ProcessSP process_sp(process_wp.lock());
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if (process_sp)
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SetContext(process_sp);
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}
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ExecutionContext::ExecutionContext(const lldb::ThreadWP &thread_wp)
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: m_target_sp(), m_process_sp(), m_thread_sp(), m_frame_sp() {
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lldb::ThreadSP thread_sp(thread_wp.lock());
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if (thread_sp)
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SetContext(thread_sp);
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}
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ExecutionContext::ExecutionContext(const lldb::StackFrameWP &frame_wp)
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: m_target_sp(), m_process_sp(), m_thread_sp(), m_frame_sp() {
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lldb::StackFrameSP frame_sp(frame_wp.lock());
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if (frame_sp)
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SetContext(frame_sp);
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}
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ExecutionContext::ExecutionContext(Target *t,
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bool fill_current_process_thread_frame)
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: m_target_sp(), m_process_sp(), m_thread_sp(), m_frame_sp() {
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if (t) {
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m_target_sp = t->shared_from_this();
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if (fill_current_process_thread_frame) {
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m_process_sp = t->GetProcessSP();
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if (m_process_sp) {
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m_thread_sp = m_process_sp->GetThreadList().GetSelectedThread();
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if (m_thread_sp)
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m_frame_sp =
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m_thread_sp->GetSelectedFrame(DoNoSelectMostRelevantFrame);
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}
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}
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}
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}
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ExecutionContext::ExecutionContext(Process *process, Thread *thread,
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StackFrame *frame)
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: m_target_sp(), m_process_sp(), m_thread_sp(), m_frame_sp() {
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if (process) {
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m_process_sp = process->shared_from_this();
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m_target_sp = process->GetTarget().shared_from_this();
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}
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if (thread)
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m_thread_sp = thread->shared_from_this();
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if (frame)
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m_frame_sp = frame->shared_from_this();
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}
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ExecutionContext::ExecutionContext(const ExecutionContextRef &exe_ctx_ref)
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: m_target_sp(exe_ctx_ref.GetTargetSP()),
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m_process_sp(exe_ctx_ref.GetProcessSP()),
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m_thread_sp(exe_ctx_ref.GetThreadSP()),
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m_frame_sp(exe_ctx_ref.GetFrameSP()) {}
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ExecutionContext::ExecutionContext(const ExecutionContextRef *exe_ctx_ref_ptr,
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bool thread_and_frame_only_if_stopped)
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: m_target_sp(), m_process_sp(), m_thread_sp(), m_frame_sp() {
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if (exe_ctx_ref_ptr) {
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m_target_sp = exe_ctx_ref_ptr->GetTargetSP();
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m_process_sp = exe_ctx_ref_ptr->GetProcessSP();
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if (!thread_and_frame_only_if_stopped ||
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(m_process_sp && StateIsStoppedState(m_process_sp->GetState(), true))) {
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m_thread_sp = exe_ctx_ref_ptr->GetThreadSP();
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m_frame_sp = exe_ctx_ref_ptr->GetFrameSP();
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}
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}
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}
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ExecutionContext::ExecutionContext(const ExecutionContextRef *exe_ctx_ref_ptr,
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std::unique_lock<std::recursive_mutex> &lock)
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: m_target_sp(), m_process_sp(), m_thread_sp(), m_frame_sp() {
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if (exe_ctx_ref_ptr) {
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m_target_sp = exe_ctx_ref_ptr->GetTargetSP();
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if (m_target_sp) {
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lock = std::unique_lock<std::recursive_mutex>(m_target_sp->GetAPIMutex());
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m_process_sp = exe_ctx_ref_ptr->GetProcessSP();
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m_thread_sp = exe_ctx_ref_ptr->GetThreadSP();
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m_frame_sp = exe_ctx_ref_ptr->GetFrameSP();
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}
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}
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}
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ExecutionContext::ExecutionContext(const ExecutionContextRef &exe_ctx_ref,
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std::unique_lock<std::recursive_mutex> &lock)
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: m_target_sp(exe_ctx_ref.GetTargetSP()), m_process_sp(), m_thread_sp(),
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m_frame_sp() {
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if (m_target_sp) {
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lock = std::unique_lock<std::recursive_mutex>(m_target_sp->GetAPIMutex());
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m_process_sp = exe_ctx_ref.GetProcessSP();
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m_thread_sp = exe_ctx_ref.GetThreadSP();
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m_frame_sp = exe_ctx_ref.GetFrameSP();
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}
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}
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ExecutionContext::ExecutionContext(ExecutionContextScope *exe_scope_ptr)
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: m_target_sp(), m_process_sp(), m_thread_sp(), m_frame_sp() {
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if (exe_scope_ptr)
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exe_scope_ptr->CalculateExecutionContext(*this);
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}
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ExecutionContext::ExecutionContext(ExecutionContextScope &exe_scope_ref) {
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exe_scope_ref.CalculateExecutionContext(*this);
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}
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void ExecutionContext::Clear() {
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m_target_sp.reset();
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m_process_sp.reset();
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m_thread_sp.reset();
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m_frame_sp.reset();
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}
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ExecutionContext::~ExecutionContext() = default;
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uint32_t ExecutionContext::GetAddressByteSize() const {
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if (m_target_sp && m_target_sp->GetArchitecture().IsValid())
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return m_target_sp->GetArchitecture().GetAddressByteSize();
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if (m_process_sp)
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return m_process_sp->GetAddressByteSize();
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return sizeof(void *);
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}
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lldb::ByteOrder ExecutionContext::GetByteOrder() const {
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if (m_target_sp && m_target_sp->GetArchitecture().IsValid())
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return m_target_sp->GetArchitecture().GetByteOrder();
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if (m_process_sp)
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return m_process_sp->GetByteOrder();
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return endian::InlHostByteOrder();
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}
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RegisterContext *ExecutionContext::GetRegisterContext() const {
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if (m_frame_sp)
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return m_frame_sp->GetRegisterContext().get();
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else if (m_thread_sp)
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return m_thread_sp->GetRegisterContext().get();
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return nullptr;
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}
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Target *ExecutionContext::GetTargetPtr() const {
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if (m_target_sp)
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return m_target_sp.get();
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if (m_process_sp)
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return &m_process_sp->GetTarget();
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return nullptr;
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}
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Process *ExecutionContext::GetProcessPtr() const {
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if (m_process_sp)
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return m_process_sp.get();
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if (m_target_sp)
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return m_target_sp->GetProcessSP().get();
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return nullptr;
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}
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ExecutionContextScope *ExecutionContext::GetBestExecutionContextScope() const {
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if (m_frame_sp)
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return m_frame_sp.get();
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if (m_thread_sp)
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return m_thread_sp.get();
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if (m_process_sp)
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return m_process_sp.get();
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return m_target_sp.get();
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}
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Target &ExecutionContext::GetTargetRef() const {
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assert(m_target_sp);
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return *m_target_sp;
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}
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Process &ExecutionContext::GetProcessRef() const {
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assert(m_process_sp);
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return *m_process_sp;
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}
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Thread &ExecutionContext::GetThreadRef() const {
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assert(m_thread_sp);
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return *m_thread_sp;
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}
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StackFrame &ExecutionContext::GetFrameRef() const {
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assert(m_frame_sp);
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return *m_frame_sp;
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}
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void ExecutionContext::SetTargetSP(const lldb::TargetSP &target_sp) {
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m_target_sp = target_sp;
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}
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void ExecutionContext::SetProcessSP(const lldb::ProcessSP &process_sp) {
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m_process_sp = process_sp;
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}
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void ExecutionContext::SetThreadSP(const lldb::ThreadSP &thread_sp) {
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m_thread_sp = thread_sp;
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}
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void ExecutionContext::SetFrameSP(const lldb::StackFrameSP &frame_sp) {
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m_frame_sp = frame_sp;
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}
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void ExecutionContext::SetTargetPtr(Target *target) {
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if (target)
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m_target_sp = target->shared_from_this();
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else
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m_target_sp.reset();
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}
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void ExecutionContext::SetProcessPtr(Process *process) {
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if (process)
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m_process_sp = process->shared_from_this();
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else
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m_process_sp.reset();
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}
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void ExecutionContext::SetThreadPtr(Thread *thread) {
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if (thread)
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m_thread_sp = thread->shared_from_this();
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else
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m_thread_sp.reset();
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}
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void ExecutionContext::SetFramePtr(StackFrame *frame) {
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if (frame)
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m_frame_sp = frame->shared_from_this();
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else
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m_frame_sp.reset();
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}
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void ExecutionContext::SetContext(const lldb::TargetSP &target_sp,
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bool get_process) {
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m_target_sp = target_sp;
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if (get_process && target_sp)
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m_process_sp = target_sp->GetProcessSP();
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else
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m_process_sp.reset();
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m_thread_sp.reset();
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m_frame_sp.reset();
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}
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void ExecutionContext::SetContext(const lldb::ProcessSP &process_sp) {
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m_process_sp = process_sp;
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if (process_sp)
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m_target_sp = process_sp->GetTarget().shared_from_this();
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else
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m_target_sp.reset();
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m_thread_sp.reset();
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m_frame_sp.reset();
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}
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void ExecutionContext::SetContext(const lldb::ThreadSP &thread_sp) {
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m_frame_sp.reset();
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m_thread_sp = thread_sp;
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if (thread_sp) {
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m_process_sp = thread_sp->GetProcess();
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if (m_process_sp)
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m_target_sp = m_process_sp->GetTarget().shared_from_this();
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else
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m_target_sp.reset();
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} else {
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m_target_sp.reset();
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m_process_sp.reset();
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}
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}
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void ExecutionContext::SetContext(const lldb::StackFrameSP &frame_sp) {
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m_frame_sp = frame_sp;
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if (frame_sp) {
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m_thread_sp = frame_sp->CalculateThread();
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if (m_thread_sp) {
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m_process_sp = m_thread_sp->GetProcess();
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if (m_process_sp)
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m_target_sp = m_process_sp->GetTarget().shared_from_this();
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else
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m_target_sp.reset();
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} else {
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m_target_sp.reset();
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m_process_sp.reset();
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}
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} else {
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m_target_sp.reset();
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m_process_sp.reset();
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m_thread_sp.reset();
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}
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}
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ExecutionContext &ExecutionContext::operator=(const ExecutionContext &rhs) {
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if (this != &rhs) {
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m_target_sp = rhs.m_target_sp;
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m_process_sp = rhs.m_process_sp;
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m_thread_sp = rhs.m_thread_sp;
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m_frame_sp = rhs.m_frame_sp;
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}
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return *this;
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}
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bool ExecutionContext::operator==(const ExecutionContext &rhs) const {
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// Check that the frame shared pointers match, or both are valid and their
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// stack IDs match since sometimes we get new objects that represent the same
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// frame within a thread.
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if ((m_frame_sp == rhs.m_frame_sp) ||
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(m_frame_sp && rhs.m_frame_sp &&
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m_frame_sp->GetStackID() == rhs.m_frame_sp->GetStackID())) {
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// Check that the thread shared pointers match, or both are valid and their
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// thread IDs match since sometimes we get new objects that represent the
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// same thread within a process.
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if ((m_thread_sp == rhs.m_thread_sp) ||
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(m_thread_sp && rhs.m_thread_sp &&
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m_thread_sp->GetID() == rhs.m_thread_sp->GetID())) {
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// Processes and targets don't change much
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return m_process_sp == rhs.m_process_sp && m_target_sp == rhs.m_target_sp;
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}
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}
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return false;
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}
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bool ExecutionContext::operator!=(const ExecutionContext &rhs) const {
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return !(*this == rhs);
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}
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bool ExecutionContext::HasTargetScope() const {
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return ((bool)m_target_sp && m_target_sp->IsValid());
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}
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bool ExecutionContext::HasProcessScope() const {
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return (HasTargetScope() && ((bool)m_process_sp && m_process_sp->IsValid()));
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}
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bool ExecutionContext::HasThreadScope() const {
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return (HasProcessScope() && ((bool)m_thread_sp && m_thread_sp->IsValid()));
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}
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bool ExecutionContext::HasFrameScope() const {
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return HasThreadScope() && m_frame_sp;
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}
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ExecutionContextRef::ExecutionContextRef()
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: m_target_wp(), m_process_wp(), m_thread_wp(), m_stack_id() {}
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ExecutionContextRef::ExecutionContextRef(const ExecutionContext *exe_ctx)
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: m_target_wp(), m_process_wp(), m_thread_wp(), m_stack_id() {
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if (exe_ctx)
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*this = *exe_ctx;
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}
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ExecutionContextRef::ExecutionContextRef(const ExecutionContext &exe_ctx)
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: m_target_wp(), m_process_wp(), m_thread_wp(), m_stack_id() {
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*this = exe_ctx;
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}
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ExecutionContextRef::ExecutionContextRef(Target *target, bool adopt_selected)
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: m_target_wp(), m_process_wp(), m_thread_wp(), m_stack_id() {
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SetTargetPtr(target, adopt_selected);
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}
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ExecutionContextRef::ExecutionContextRef(const ExecutionContextRef &rhs)
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= default;
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ExecutionContextRef &ExecutionContextRef::
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operator=(const ExecutionContextRef &rhs) {
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if (this != &rhs) {
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m_target_wp = rhs.m_target_wp;
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m_process_wp = rhs.m_process_wp;
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m_thread_wp = rhs.m_thread_wp;
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m_tid = rhs.m_tid;
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m_stack_id = rhs.m_stack_id;
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}
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return *this;
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}
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ExecutionContextRef &ExecutionContextRef::
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operator=(const ExecutionContext &exe_ctx) {
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m_target_wp = exe_ctx.GetTargetSP();
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m_process_wp = exe_ctx.GetProcessSP();
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lldb::ThreadSP thread_sp(exe_ctx.GetThreadSP());
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m_thread_wp = thread_sp;
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if (thread_sp)
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m_tid = thread_sp->GetID();
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else
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m_tid = LLDB_INVALID_THREAD_ID;
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lldb::StackFrameSP frame_sp(exe_ctx.GetFrameSP());
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if (frame_sp)
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m_stack_id = frame_sp->GetStackID();
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else
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m_stack_id.Clear();
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return *this;
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}
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void ExecutionContextRef::Clear() {
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m_target_wp.reset();
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m_process_wp.reset();
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ClearThread();
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ClearFrame();
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}
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ExecutionContextRef::~ExecutionContextRef() = default;
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void ExecutionContextRef::SetTargetSP(const lldb::TargetSP &target_sp) {
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m_target_wp = target_sp;
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}
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void ExecutionContextRef::SetProcessSP(const lldb::ProcessSP &process_sp) {
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if (process_sp) {
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m_process_wp = process_sp;
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SetTargetSP(process_sp->GetTarget().shared_from_this());
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} else {
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m_process_wp.reset();
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m_target_wp.reset();
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}
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}
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void ExecutionContextRef::SetThreadSP(const lldb::ThreadSP &thread_sp) {
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if (thread_sp) {
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m_thread_wp = thread_sp;
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m_tid = thread_sp->GetID();
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SetProcessSP(thread_sp->GetProcess());
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} else {
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ClearThread();
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|
m_process_wp.reset();
|
|
m_target_wp.reset();
|
|
}
|
|
}
|
|
|
|
void ExecutionContextRef::SetFrameSP(const lldb::StackFrameSP &frame_sp) {
|
|
if (frame_sp) {
|
|
m_stack_id = frame_sp->GetStackID();
|
|
SetThreadSP(frame_sp->GetThread());
|
|
} else {
|
|
ClearFrame();
|
|
ClearThread();
|
|
m_process_wp.reset();
|
|
m_target_wp.reset();
|
|
}
|
|
}
|
|
|
|
void ExecutionContextRef::SetTargetPtr(Target *target, bool adopt_selected) {
|
|
Clear();
|
|
if (target) {
|
|
lldb::TargetSP target_sp(target->shared_from_this());
|
|
if (target_sp) {
|
|
m_target_wp = target_sp;
|
|
if (adopt_selected) {
|
|
lldb::ProcessSP process_sp(target_sp->GetProcessSP());
|
|
if (process_sp) {
|
|
m_process_wp = process_sp;
|
|
if (process_sp) {
|
|
// Only fill in the thread and frame if our process is stopped
|
|
// Don't just check the state, since we might be in the middle of
|
|
// resuming.
|
|
Process::StopLocker stop_locker;
|
|
|
|
if (stop_locker.TryLock(&process_sp->GetRunLock()) &&
|
|
StateIsStoppedState(process_sp->GetState(), true)) {
|
|
lldb::ThreadSP thread_sp(
|
|
process_sp->GetThreadList().GetSelectedThread());
|
|
if (!thread_sp)
|
|
thread_sp = process_sp->GetThreadList().GetThreadAtIndex(0);
|
|
|
|
if (thread_sp) {
|
|
SetThreadSP(thread_sp);
|
|
lldb::StackFrameSP frame_sp(
|
|
thread_sp->GetSelectedFrame(DoNoSelectMostRelevantFrame));
|
|
if (!frame_sp)
|
|
frame_sp = thread_sp->GetStackFrameAtIndex(0);
|
|
if (frame_sp)
|
|
SetFrameSP(frame_sp);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
void ExecutionContextRef::SetProcessPtr(Process *process) {
|
|
if (process) {
|
|
SetProcessSP(process->shared_from_this());
|
|
} else {
|
|
m_process_wp.reset();
|
|
m_target_wp.reset();
|
|
}
|
|
}
|
|
|
|
void ExecutionContextRef::SetThreadPtr(Thread *thread) {
|
|
if (thread) {
|
|
SetThreadSP(thread->shared_from_this());
|
|
} else {
|
|
ClearThread();
|
|
m_process_wp.reset();
|
|
m_target_wp.reset();
|
|
}
|
|
}
|
|
|
|
void ExecutionContextRef::SetFramePtr(StackFrame *frame) {
|
|
if (frame)
|
|
SetFrameSP(frame->shared_from_this());
|
|
else
|
|
Clear();
|
|
}
|
|
|
|
lldb::TargetSP ExecutionContextRef::GetTargetSP() const {
|
|
lldb::TargetSP target_sp(m_target_wp.lock());
|
|
if (target_sp && !target_sp->IsValid())
|
|
target_sp.reset();
|
|
return target_sp;
|
|
}
|
|
|
|
lldb::ProcessSP ExecutionContextRef::GetProcessSP() const {
|
|
lldb::ProcessSP process_sp(m_process_wp.lock());
|
|
if (process_sp && !process_sp->IsValid())
|
|
process_sp.reset();
|
|
return process_sp;
|
|
}
|
|
|
|
lldb::ThreadSP ExecutionContextRef::GetThreadSP() const {
|
|
lldb::ThreadSP thread_sp(m_thread_wp.lock());
|
|
|
|
if (m_tid != LLDB_INVALID_THREAD_ID) {
|
|
// We check if the thread has been destroyed in cases where clients might
|
|
// still have shared pointer to a thread, but the thread is not valid
|
|
// anymore (not part of the process)
|
|
if (!thread_sp || !thread_sp->IsValid()) {
|
|
lldb::ProcessSP process_sp(GetProcessSP());
|
|
if (process_sp && process_sp->IsValid()) {
|
|
thread_sp = process_sp->GetThreadList().FindThreadByID(m_tid);
|
|
m_thread_wp = thread_sp;
|
|
}
|
|
}
|
|
}
|
|
|
|
// Check that we aren't about to return an invalid thread sp. We might
|
|
// return a nullptr thread_sp, but don't return an invalid one.
|
|
|
|
if (thread_sp && !thread_sp->IsValid())
|
|
thread_sp.reset();
|
|
|
|
return thread_sp;
|
|
}
|
|
|
|
lldb::StackFrameSP ExecutionContextRef::GetFrameSP() const {
|
|
if (m_stack_id.IsValid()) {
|
|
lldb::ThreadSP thread_sp(GetThreadSP());
|
|
if (thread_sp)
|
|
return thread_sp->GetFrameWithStackID(m_stack_id);
|
|
}
|
|
return lldb::StackFrameSP();
|
|
}
|
|
|
|
ExecutionContext
|
|
ExecutionContextRef::Lock(bool thread_and_frame_only_if_stopped) const {
|
|
return ExecutionContext(this, thread_and_frame_only_if_stopped);
|
|
}
|