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Brace the code! Fix compile error due to class member construction order
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@ -386,35 +386,50 @@ const std::array<GCState, 4>& Adapter::GetPadState() const {
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}
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int Adapter::GetOriginValue(int port, int axis) {
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// TODO: perhaps place stick statuses into an array in PadStatus
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const PadAxes padaxis = static_cast<PadAxes>(axis);
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if (padaxis == PadAxes::StickX)
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if (padaxis == PadAxes::StickX) {
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return origin_status[port].stick_x;
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if (padaxis == PadAxes::StickY)
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}
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if (padaxis == PadAxes::StickY) {
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return origin_status[port].stick_y;
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if (padaxis == PadAxes::SubstickX)
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}
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if (padaxis == PadAxes::SubstickX) {
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return origin_status[port].substick_x;
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if (padaxis == PadAxes::SubstickY)
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}
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if (padaxis == PadAxes::SubstickY) {
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return origin_status[port].substick_x;
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if (padaxis == PadAxes::TriggerLeft)
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}
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if (padaxis == PadAxes::TriggerLeft) {
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return origin_status[port].trigger_left;
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if (padaxis == PadAxes::TriggerRight)
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}
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if (padaxis == PadAxes::TriggerRight) {
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return origin_status[port].trigger_right;
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}
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return 0;
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}
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const int Adapter::GetOriginValue(int port, int axis) const {
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const PadAxes padaxis = static_cast<PadAxes>(axis);
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if (padaxis == PadAxes::StickX)
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if (padaxis == PadAxes::StickX) {
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return origin_status[port].stick_x;
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if (padaxis == PadAxes::StickY)
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}
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if (padaxis == PadAxes::StickY) {
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return origin_status[port].stick_y;
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if (padaxis == PadAxes::SubstickX)
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}
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if (padaxis == PadAxes::SubstickX) {
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return origin_status[port].substick_x;
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if (padaxis == PadAxes::SubstickY)
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}
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if (padaxis == PadAxes::SubstickY) {
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return origin_status[port].substick_x;
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if (padaxis == PadAxes::TriggerLeft)
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}
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if (padaxis == PadAxes::TriggerLeft) {
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return origin_status[port].trigger_left;
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if (padaxis == PadAxes::TriggerRight)
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}
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if (padaxis == PadAxes::TriggerRight) {
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return origin_status[port].trigger_right;
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}
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return 0;
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}
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} // namespace GCAdapter
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@ -155,11 +155,12 @@ public:
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// division is not by a perfect 128 to account for some variance in center location
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// e.g. my device idled at 131 in X, 120 in Y, and full range of motion was in range
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// [20-230]
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if (axis % 2 == 0)
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if (axis % 2 == 0) {
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return (gcadapter->GetPadState()[port].axes.at(axis) - origin_value_x) / 95.0f;
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else
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} else {
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return (gcadapter->GetPadState()[port].axes.at(axis) - origin_value_y) / 95.0f;
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}
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}
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std::pair<float, float> GetAnalog(int axis_x, int axis_y) const {
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float x = GetAxis(axis_x);
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@ -208,10 +209,10 @@ private:
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const int axis_x;
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const int axis_y;
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const float deadzone;
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GCAdapter::Adapter* gcadapter;
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const float origin_value_x;
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const float origin_value_y;
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mutable std::mutex mutex;
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GCAdapter::Adapter* gcadapter;
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};
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/// An analog device factory that creates analog devices from GC Adapter
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