rpcsx/rpcs3/Emu/CPU/CPUThread.h
2019-03-23 02:43:41 +03:00

113 lines
2.2 KiB
C++

#pragma once
#include "../Utilities/Thread.h"
#include "../Utilities/bit_set.h"
// Thread state flags
enum class cpu_flag : u32
{
stop, // Thread not running (HLE, initial state)
exit, // Irreversible exit
suspend, // Thread suspended
ret, // Callback return requested
signal, // Thread received a signal (HLE)
memory, // Thread must unlock memory mutex
jit_return, // JIT compiler event (forced return)
dbg_global_pause, // Emulation paused
dbg_global_stop, // Emulation stopped
dbg_pause, // Thread paused
dbg_step, // Thread forced to pause after one step (one instruction, etc)
__bitset_enum_max
};
class cpu_thread
{
// PPU cache backward compatibility hack
char dummy[sizeof(std::shared_ptr<void>)];
protected:
cpu_thread(u32 id);
public:
virtual ~cpu_thread();
void operator()();
void on_abort();
// Self identifier
const u32 id;
// Public thread state
atomic_bs_t<cpu_flag> state{+cpu_flag::stop};
// Process thread state, return true if the checker must return
bool check_state();
// Process thread state (pause)
[[nodiscard]] bool test_stopped()
{
if (UNLIKELY(state))
{
if (check_state())
{
return true;
}
}
return false;
}
// Test stopped state
bool is_stopped()
{
return !!(state & (cpu_flag::stop + cpu_flag::exit + cpu_flag::jit_return + cpu_flag::dbg_global_stop));
}
// Test paused state
bool is_paused()
{
return !!(state & (cpu_flag::suspend + cpu_flag::dbg_global_pause + cpu_flag::dbg_pause));
}
// Check thread type
u32 id_type()
{
return id >> 24;
}
// Upcast and notify
void notify();
// Thread stats for external observation
static atomic_t<u64> g_threads_created, g_threads_deleted;
// Get thread name
virtual std::string get_name() const = 0;
// Get CPU state dump
virtual std::string dump() const;
// Thread entry point function
virtual void cpu_task() = 0;
// Callback for cpu_flag::suspend
virtual void cpu_sleep() {}
// Callback for cpu_flag::memory
virtual void cpu_mem() {}
// Callback for vm::temporary_unlock
virtual void cpu_unmem() {}
};
inline cpu_thread* get_current_cpu_thread() noexcept
{
extern thread_local cpu_thread* g_tls_current_cpu_thread;
return g_tls_current_cpu_thread;
}
class ppu_thread;
class spu_thread;