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	Nv_Host_Ctrl: Correct difference calculation
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				@ -68,12 +68,14 @@ u32 nvhost_ctrl::IocCtrlEventWait(const std::vector<u8>& input, std::vector<u8>&
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        return NvResult::Success;
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					        return NvResult::Success;
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    }
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					    }
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    auto lock = gpu.LockSync();
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					    auto lock = gpu.LockSync();
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    u32 current_syncpoint_value = gpu.GetSyncpointValue(params.syncpt_id);
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					    const u32 current_syncpoint_value = gpu.GetSyncpointValue(params.syncpt_id);
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    if (current_syncpoint_value >= params.threshold) {
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					    const s32 diff = current_syncpoint_value - params.threshold;
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					    if (diff >= 0) {
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        params.value = current_syncpoint_value;
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					        params.value = current_syncpoint_value;
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        std::memcpy(output.data(), ¶ms, sizeof(params));
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					        std::memcpy(output.data(), ¶ms, sizeof(params));
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        return NvResult::Success;
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					        return NvResult::Success;
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    }
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					    }
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					    const u32 target_value = current_syncpoint_value - diff;
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    if (!is_async) {
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					    if (!is_async) {
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        params.value = 0;
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					        params.value = 0;
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@ -109,7 +111,7 @@ u32 nvhost_ctrl::IocCtrlEventWait(const std::vector<u8>& input, std::vector<u8>&
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    if (event_id < MaxNvEvents || status == EventState::Free || status == EventState::Registered) {
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					    if (event_id < MaxNvEvents || status == EventState::Free || status == EventState::Registered) {
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        events_interface.SetEventStatus(event_id, EventState::Waiting);
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					        events_interface.SetEventStatus(event_id, EventState::Waiting);
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        events_interface.assigned_syncpt[event_id] = params.syncpt_id;
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					        events_interface.assigned_syncpt[event_id] = params.syncpt_id;
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        events_interface.assigned_value[event_id] = params.threshold;
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					        events_interface.assigned_value[event_id] = target_value;
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        if (is_async) {
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					        if (is_async) {
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            params.value = params.syncpt_id << 4;
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					            params.value = params.syncpt_id << 4;
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        } else {
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					        } else {
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@ -117,7 +119,7 @@ u32 nvhost_ctrl::IocCtrlEventWait(const std::vector<u8>& input, std::vector<u8>&
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        }
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					        }
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        params.value |= event_id;
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					        params.value |= event_id;
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        events_interface.events[event_id].writable->Clear();
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					        events_interface.events[event_id].writable->Clear();
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        gpu.RegisterSyncptInterrupt(params.syncpt_id, params.threshold);
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					        gpu.RegisterSyncptInterrupt(params.syncpt_id, target_value);
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        if (!is_async && ctrl.fresh_call) {
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					        if (!is_async && ctrl.fresh_call) {
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            ctrl.must_delay = true;
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					            ctrl.must_delay = true;
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            ctrl.timeout = params.timeout;
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					            ctrl.timeout = params.timeout;
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@ -167,7 +169,7 @@ u32 nvhost_ctrl::IocCtrlEventSignal(const std::vector<u8>& input, std::vector<u8
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    // TODO(Blinkhawk): This is normally called when an NvEvents timeout on WaitSynchronization
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					    // TODO(Blinkhawk): This is normally called when an NvEvents timeout on WaitSynchronization
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    // It is believed from RE to cancel the GPU Event. However, better research is required
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					    // It is believed from RE to cancel the GPU Event. However, better research is required
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    u32 event_id = params.user_event_id & 0x00FF;
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					    u32 event_id = params.user_event_id & 0x00FF;
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    LOG_DEBUG(Service_NVDRV, " called, user_event_id: {:X}", event_id);
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					    LOG_WARNING(Service_NVDRV, "(STUBBED) called, user_event_id: {:X}", event_id);
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    if (event_id >= MaxNvEvents) {
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					    if (event_id >= MaxNvEvents) {
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        return NvResult::BadParameter;
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					        return NvResult::BadParameter;
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    }
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					    }
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