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8981227644
Also add a getter for the native thread handle.
368 lines
6.9 KiB
C++
368 lines
6.9 KiB
C++
#pragma once
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#include "types.h"
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#include "Atomic.h"
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#include <exception>
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#include <string>
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#include <memory>
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#include "sema.h"
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#include "cond.h"
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// Report error and call std::abort(), defined in main.cpp
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[[noreturn]] void report_fatal_error(const std::string&);
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// Will report exception and call std::abort() if put in catch(...)
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[[noreturn]] void catch_all_exceptions();
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// Hardware core layout
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enum class native_core_arrangement : u32
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{
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undefined,
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generic,
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intel_ht,
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amd_ccx
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};
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enum class thread_class : u32
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{
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general,
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rsx,
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spu,
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ppu
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};
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// Simple list of void() functors
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class task_stack
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{
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struct task_base
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{
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std::unique_ptr<task_base> next;
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virtual ~task_base();
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virtual void invoke()
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{
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if (next)
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{
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next->invoke();
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}
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}
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};
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template <typename F>
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struct task_type final : task_base
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{
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std::remove_reference_t<F> func;
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task_type(F&& func)
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: func(std::forward<F>(func))
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{
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}
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void invoke() final override
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{
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func();
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task_base::invoke();
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}
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};
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std::unique_ptr<task_base> m_stack;
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public:
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task_stack() = default;
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template <typename F>
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task_stack(F&& func)
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: m_stack(new task_type<F>(std::forward<F>(func)))
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{
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}
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void push(task_stack stack)
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{
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auto _top = stack.m_stack.release();
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auto _next = m_stack.release();
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m_stack.reset(_top);
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while (UNLIKELY(_top->next)) _top = _top->next.get();
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_top->next.reset(_next);
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}
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void reset()
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{
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m_stack.reset();
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}
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void invoke() const
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{
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if (m_stack)
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{
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m_stack->invoke();
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}
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}
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};
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// Thread control class
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class thread_ctrl final
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{
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// Current thread
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static thread_local thread_ctrl* g_tls_this_thread;
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// Target cpu core layout
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static atomic_t<native_core_arrangement> g_native_core_layout;
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// Self pointer
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std::shared_ptr<thread_ctrl> m_self;
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// Thread handle (platform-specific)
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atomic_t<std::uintptr_t> m_thread{0};
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// Thread mutex
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mutable semaphore<> m_mutex;
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// Thread condition variable
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cond_variable m_cond;
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// Thread flags
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atomic_t<u32> m_signal{0};
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// Thread joining condition variable
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cond_variable m_jcv;
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// Remotely set or caught exception
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std::exception_ptr m_exception;
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// Thread initial task or atexit task
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task_stack m_task;
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// Fixed name
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std::string m_name;
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// CPU cycles thread has run for
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u64 m_cycles{0};
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// Start thread
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static void start(const std::shared_ptr<thread_ctrl>&, task_stack);
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// Called at the thread start
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void initialize();
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// Called at the thread end
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void finalize(std::exception_ptr) noexcept;
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// Add task (atexit)
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static void _push(task_stack);
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// Internal waiting function, may throw. Infinite value is -1.
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static bool _wait_for(u64 usec);
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// Internal throwing function. Mutex must be locked and will be unlocked.
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[[noreturn]] void _throw();
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// Internal notification function
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void _notify(cond_variable thread_ctrl::*);
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public:
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thread_ctrl(std::string&& name);
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thread_ctrl(const thread_ctrl&) = delete;
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~thread_ctrl();
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// Get thread name
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const std::string& get_name() const
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{
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return m_name;
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}
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// Get CPU cycles since last time this function was called. First call returns 0.
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u64 get_cycles();
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// Get platform-specific thread handle
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std::uintptr_t get_native_handle() const
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{
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return m_thread.load();
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}
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// Get exception
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std::exception_ptr get_exception() const;
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// Set exception
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void set_exception(std::exception_ptr ptr);
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// Get thread result (may throw, simultaneous joining allowed)
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void join();
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// Notify the thread
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void notify();
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// Wait once with timeout. Abortable, may throw. May spuriously return false.
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static inline bool wait_for(u64 usec)
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{
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return _wait_for(usec);
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}
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// Wait. Abortable, may throw.
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static inline void wait()
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{
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_wait_for(-1);
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}
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// Wait until pred(). Abortable, may throw.
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template<typename F, typename RT = std::result_of_t<F()>>
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static inline RT wait(F&& pred)
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{
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while (true)
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{
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if (RT result = pred())
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{
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return result;
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}
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_wait_for(-1);
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}
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}
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// Wait eternally until aborted.
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[[noreturn]] static inline void eternalize()
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{
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while (true)
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{
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_wait_for(-1);
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}
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}
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// Test exception (may throw).
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static void test();
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// Get current thread (may be nullptr)
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static thread_ctrl* get_current()
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{
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return g_tls_this_thread;
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}
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// Register function at thread exit (for the current thread)
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template<typename F>
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static inline void atexit(F&& func)
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{
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_push(std::forward<F>(func));
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}
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// Create detached named thread
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template<typename N, typename F>
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static inline void spawn(N&& name, F&& func)
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{
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auto out = std::make_shared<thread_ctrl>(std::forward<N>(name));
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thread_ctrl::start(out, std::forward<F>(func));
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}
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// Named thread factory
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template<typename N, typename F>
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static inline void spawn(std::shared_ptr<thread_ctrl>& out, N&& name, F&& func)
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{
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out = std::make_shared<thread_ctrl>(std::forward<N>(name));
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thread_ctrl::start(out, std::forward<F>(func));
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}
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// Detect layout
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static void detect_cpu_layout();
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// Returns a core affinity mask. Set whether to generate the high priority set or not
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static u16 get_affinity_mask(thread_class group);
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// Sets the native thread priority
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static void set_native_priority(int priority);
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// Sets the preferred affinity mask for this thread
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static void set_thread_affinity_mask(u16 mask);
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};
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class named_thread
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{
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// Pointer to managed resource (shared with actual thread)
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std::shared_ptr<thread_ctrl> m_thread;
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public:
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named_thread();
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virtual ~named_thread();
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// Deleted copy/move constructors + copy/move operators
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named_thread(const named_thread&) = delete;
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// Get thread name
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virtual std::string get_name() const;
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protected:
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// Start thread (cannot be called from the constructor: should throw in such case)
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void start_thread(const std::shared_ptr<void>& _this);
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// Thread task (called in the thread)
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virtual void on_task() = 0;
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// Thread finalization (called after on_task)
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virtual void on_exit() {}
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// Called once upon thread spawn within the thread's own context
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virtual void on_spawn() {}
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public:
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// ID initialization
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virtual void on_init(const std::shared_ptr<void>& _this)
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{
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return start_thread(_this);
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}
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// ID finalization
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virtual void on_stop()
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{
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m_thread->join();
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}
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// Access thread_ctrl
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thread_ctrl* get() const
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{
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return m_thread.get();
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}
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void join() const
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{
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return m_thread->join();
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}
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void notify() const
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{
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return m_thread->notify();
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}
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};
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// Wrapper for named thread, joins automatically in the destructor, can only be used in function scope
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class scope_thread final
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{
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std::shared_ptr<thread_ctrl> m_thread;
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public:
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template<typename N, typename F>
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scope_thread(N&& name, F&& func)
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{
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thread_ctrl::spawn(m_thread, std::forward<N>(name), std::forward<F>(func));
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}
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// Deleted copy/move constructors + copy/move operators
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scope_thread(const scope_thread&) = delete;
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// Destructor with exceptions allowed
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~scope_thread() noexcept(false)
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{
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m_thread->join();
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}
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// Access thread_ctrl
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thread_ctrl* get() const
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{
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return m_thread.get();
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}
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};
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