//===-- HistoryThread.h -----------------------------------------*- C++ -*-===// // // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. // See https://llvm.org/LICENSE.txt for license information. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception // //===----------------------------------------------------------------------===// #ifndef LLDB_SOURCE_PLUGINS_PROCESS_UTILITY_HISTORYTHREAD_H #define LLDB_SOURCE_PLUGINS_PROCESS_UTILITY_HISTORYTHREAD_H #include #include "lldb/Core/UserSettingsController.h" #include "lldb/Target/ExecutionContextScope.h" #include "lldb/Target/StackFrameList.h" #include "lldb/Target/Thread.h" #include "lldb/Utility/Broadcaster.h" #include "lldb/Utility/Event.h" #include "lldb/Utility/UserID.h" #include "lldb/lldb-private.h" namespace lldb_private { /// \class HistoryThread HistoryThread.h "HistoryThread.h" /// A thread object representing a backtrace from a previous point in the /// process execution /// /// This subclass of Thread is used to provide a backtrace from earlier in /// process execution. It is given a backtrace list of pc addresses and it /// will create stack frames for them. class HistoryThread : public lldb_private::Thread { public: HistoryThread(lldb_private::Process &process, lldb::tid_t tid, std::vector pcs, bool pcs_are_call_addresses = false); ~HistoryThread() override; lldb::RegisterContextSP GetRegisterContext() override; lldb::RegisterContextSP CreateRegisterContextForFrame(StackFrame *frame) override; void RefreshStateAfterStop() override {} bool CalculateStopInfo() override { return false; } void SetExtendedBacktraceToken(uint64_t token) override { m_extended_unwind_token = token; } uint64_t GetExtendedBacktraceToken() override { return m_extended_unwind_token; } const char *GetQueueName() override { return m_queue_name.c_str(); } void SetQueueName(const char *name) override { m_queue_name = name; } lldb::queue_id_t GetQueueID() override { return m_queue_id; } void SetQueueID(lldb::queue_id_t queue) override { m_queue_id = queue; } const char *GetThreadName() { return m_thread_name.c_str(); } uint32_t GetExtendedBacktraceOriginatingIndexID() override; void SetThreadName(const char *name) { m_thread_name = name; } const char *GetName() override { return m_thread_name.c_str(); } void SetName(const char *name) override { m_thread_name = name; } protected: virtual lldb::StackFrameListSP GetStackFrameList(); mutable std::mutex m_framelist_mutex; lldb::StackFrameListSP m_framelist; std::vector m_pcs; uint64_t m_extended_unwind_token; std::string m_queue_name; std::string m_thread_name; lldb::tid_t m_originating_unique_thread_id; lldb::queue_id_t m_queue_id; }; } // namespace lldb_private #endif // LLDB_SOURCE_PLUGINS_PROCESS_UTILITY_HISTORYTHREAD_H