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@@ -13,75 +13,54 @@
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namespace Kernel {
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namespace Kernel {
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-class Timer : public WaitObject {
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-public:
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- std::string GetTypeName() const override { return "Timer"; }
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- std::string GetName() const override { return name; }
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-
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- static const HandleType HANDLE_TYPE = HandleType::Timer;
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- HandleType GetHandleType() const override { return HANDLE_TYPE; }
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-
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- ResetType reset_type; ///< The ResetType of this timer
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-
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- bool signaled; ///< Whether the timer has been signaled or not
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- std::string name; ///< Name of timer (optional)
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-
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- u64 initial_delay; ///< The delay until the timer fires for the first time
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- u64 interval_delay; ///< The delay until the timer fires after the first time
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-
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- bool ShouldWait() override {
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- return !signaled;
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- }
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-
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- void Acquire() override {
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- _assert_msg_(Kernel, !ShouldWait(), "object unavailable!");
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- }
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-};
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-
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-/**
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- * Creates a timer.
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- * @param handle Reference to handle for the newly created timer
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- * @param reset_type ResetType describing how to create timer
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- * @param name Optional name of timer
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- * @return Newly created Timer object
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- */
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-static Timer* CreateTimer(Handle& handle, const ResetType reset_type, const std::string& name) {
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- Timer* timer = new Timer;
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+/// The event type of the generic timer callback event
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+static int timer_callback_event_type = -1;
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- handle = Kernel::g_handle_table.Create(timer).ValueOr(INVALID_HANDLE);
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+ResultVal<SharedPtr<Timer>> Timer::Create(ResetType reset_type, std::string name) {
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+ SharedPtr<Timer> timer(new Timer);
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+ // TOOD(yuriks): Don't create Handle (see Thread::Create())
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+ CASCADE_RESULT(auto unused, Kernel::g_handle_table.Create(timer));
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timer->reset_type = reset_type;
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timer->reset_type = reset_type;
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timer->signaled = false;
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timer->signaled = false;
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- timer->name = name;
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+ timer->name = std::move(name);
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timer->initial_delay = 0;
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timer->initial_delay = 0;
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timer->interval_delay = 0;
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timer->interval_delay = 0;
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- return timer;
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+ return MakeResult<SharedPtr<Timer>>(timer);
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}
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}
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-ResultCode CreateTimer(Handle* handle, const ResetType reset_type, const std::string& name) {
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- CreateTimer(*handle, reset_type, name);
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- return RESULT_SUCCESS;
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+bool Timer::ShouldWait() {
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+ return !signaled;
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}
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}
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-ResultCode ClearTimer(Handle handle) {
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- SharedPtr<Timer> timer = Kernel::g_handle_table.Get<Timer>(handle);
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-
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- if (timer == nullptr)
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- return InvalidHandle(ErrorModule::Kernel);
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+void Timer::Acquire() {
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+ _assert_msg_(Kernel, !ShouldWait(), "object unavailable!");
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+}
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- timer->signaled = false;
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- return RESULT_SUCCESS;
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+void Timer::Set(s64 initial, s64 interval) {
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+ initial_delay = initial;
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+ interval_delay = interval;
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+
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+ u64 initial_microseconds = initial / 1000;
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+ // TODO(yuriks): Figure out a replacement for GetHandle here
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+ CoreTiming::ScheduleEvent(usToCycles(initial_microseconds), timer_callback_event_type,
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+ GetHandle());
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}
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}
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-/// The event type of the generic timer callback event
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-static int TimerCallbackEventType = -1;
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+void Timer::Cancel() {
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+ CoreTiming::UnscheduleEvent(timer_callback_event_type, GetHandle());
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+}
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+
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+void Timer::Clear() {
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+ signaled = false;
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+}
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/// The timer callback event, called when a timer is fired
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/// The timer callback event, called when a timer is fired
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static void TimerCallback(u64 timer_handle, int cycles_late) {
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static void TimerCallback(u64 timer_handle, int cycles_late) {
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SharedPtr<Timer> timer = Kernel::g_handle_table.Get<Timer>(timer_handle);
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SharedPtr<Timer> timer = Kernel::g_handle_table.Get<Timer>(timer_handle);
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if (timer == nullptr) {
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if (timer == nullptr) {
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- LOG_CRITICAL(Kernel, "Callback fired for invalid timer %u", timer_handle);
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+ LOG_CRITICAL(Kernel, "Callback fired for invalid timer %08X", timer_handle);
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return;
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return;
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}
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}
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@@ -99,36 +78,12 @@ static void TimerCallback(u64 timer_handle, int cycles_late) {
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// Reschedule the timer with the interval delay
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// Reschedule the timer with the interval delay
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u64 interval_microseconds = timer->interval_delay / 1000;
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u64 interval_microseconds = timer->interval_delay / 1000;
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CoreTiming::ScheduleEvent(usToCycles(interval_microseconds) - cycles_late,
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CoreTiming::ScheduleEvent(usToCycles(interval_microseconds) - cycles_late,
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- TimerCallbackEventType, timer_handle);
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+ timer_callback_event_type, timer_handle);
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}
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}
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}
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}
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-ResultCode SetTimer(Handle handle, s64 initial, s64 interval) {
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- SharedPtr<Timer> timer = Kernel::g_handle_table.Get<Timer>(handle);
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-
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- if (timer == nullptr)
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- return InvalidHandle(ErrorModule::Kernel);
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-
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- timer->initial_delay = initial;
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- timer->interval_delay = interval;
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-
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- u64 initial_microseconds = initial / 1000;
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- CoreTiming::ScheduleEvent(usToCycles(initial_microseconds), TimerCallbackEventType, handle);
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- return RESULT_SUCCESS;
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-}
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-
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-ResultCode CancelTimer(Handle handle) {
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- SharedPtr<Timer> timer = Kernel::g_handle_table.Get<Timer>(handle);
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-
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- if (timer == nullptr)
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- return InvalidHandle(ErrorModule::Kernel);
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-
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- CoreTiming::UnscheduleEvent(TimerCallbackEventType, handle);
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- return RESULT_SUCCESS;
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-}
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-
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void TimersInit() {
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void TimersInit() {
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- TimerCallbackEventType = CoreTiming::RegisterEvent("TimerCallback", TimerCallback);
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+ timer_callback_event_type = CoreTiming::RegisterEvent("TimerCallback", TimerCallback);
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}
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}
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void TimersShutdown() {
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void TimersShutdown() {
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