207 lines
7.4 KiB
C#
207 lines
7.4 KiB
C#
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/// Credit Tomasz Schelenz
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/// Sourced from - https://bitbucket.org/ddreaper/unity-ui-extensions/issues/46/feature-uiknob#comment-29243988
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using UnityEngine.Events;
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using UnityEngine.EventSystems;
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/// <summary>
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/// KNOB controller
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///
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/// Fields
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/// - direction - direction of rotation CW - clockwise CCW - counter clock wise
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/// - knobValue - Output value of the control
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/// - maxValue - max value knob can rotate to, if higher than loops value or set to 0 - it will be ignored, and max value will be based on loops
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/// - loops - how any turns around knob can do
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/// - clampOutput01 - if true the output knobValue will be clamped between 0 and 1 regardless of number of loops.
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/// - snapToPosition - snap to step. NOTE: max value will override the step.
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/// - snapStepsPerLoop - how many snap positions are in one knob loop;
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/// - OnValueChanged - event that is called every frame while rotating knob, sends <float> argument of knobValue
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/// NOTES
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/// - script works only in images rotation on Z axis;
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/// - while dragging outside of control, the rotation will be canceled
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/// </summary>
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///
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namespace UnityEngine.UI.Extensions
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{
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[RequireComponent(typeof(Image))]
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[AddComponentMenu("UI/Extensions/UI_Knob")]
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public class UI_Knob : Selectable, IPointerDownHandler, IPointerUpHandler, IPointerEnterHandler, IPointerExitHandler, IDragHandler, IInitializePotentialDragHandler
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{
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public enum Direction { CW, CCW };
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[Tooltip("Direction of rotation CW - clockwise, CCW - counterClockwise")]
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public Direction direction = Direction.CW;
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[HideInInspector]
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public float knobValue;
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[Tooltip("Max value of the knob, maximum RAW output value knob can reach, overrides snap step, IF set to 0 or higher than loops, max value will be set by loops")]
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public float maxValue = 0;
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[Tooltip("How many rotations knob can do, if higher than max value, the latter will limit max value")]
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public int loops = 1;
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[Tooltip("Clamp output value between 0 and 1, useful with loops > 1")]
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public bool clampOutput01 = false;
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[Tooltip("snap to position?")]
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public bool snapToPosition = false;
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[Tooltip("Number of positions to snap")]
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public int snapStepsPerLoop = 10;
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[Space(30)]
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public KnobFloatValueEvent OnValueChanged;
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private float _currentLoops = 0;
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private float _previousValue = 0;
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private float _initAngle;
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private float _currentAngle;
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private Vector2 _currentVector;
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private Quaternion _initRotation;
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private bool _canDrag = false;
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private bool _screenSpaceOverlay;
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protected override void Awake()
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{
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_screenSpaceOverlay = GetComponentInParent<Canvas>().rootCanvas.renderMode == RenderMode.ScreenSpaceOverlay;
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}
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public override void OnPointerUp(PointerEventData eventData)
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{
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_canDrag = false;
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}
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public override void OnPointerEnter(PointerEventData eventData)
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{
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_canDrag = true;
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}
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public override void OnPointerExit(PointerEventData eventData)
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{
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_canDrag = false;
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}
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public override void OnPointerDown(PointerEventData eventData)
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{
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_canDrag = true;
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base.OnPointerDown(eventData);
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_initRotation = transform.rotation;
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if (_screenSpaceOverlay)
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{
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_currentVector = eventData.position - (Vector2)transform.position;
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}
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else
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{
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_currentVector = eventData.position - (Vector2)Camera.main.WorldToScreenPoint(transform.position);
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}
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_initAngle = Mathf.Atan2(_currentVector.y, _currentVector.x) * Mathf.Rad2Deg;
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}
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public void OnDrag(PointerEventData eventData)
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{
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//CHECK IF CAN DRAG
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if (!_canDrag)
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{
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return;
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}
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if (_screenSpaceOverlay)
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{
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_currentVector = eventData.position - (Vector2)transform.position;
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}
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else
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{
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_currentVector = eventData.position - (Vector2)Camera.main.WorldToScreenPoint(transform.position);
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}
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_currentAngle = Mathf.Atan2(_currentVector.y, _currentVector.x) * Mathf.Rad2Deg;
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Quaternion addRotation = Quaternion.AngleAxis(_currentAngle - _initAngle, this.transform.forward);
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addRotation.eulerAngles = new Vector3(0, 0, addRotation.eulerAngles.z);
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Quaternion finalRotation = _initRotation * addRotation;
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if (direction == Direction.CW)
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{
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knobValue = 1 - (finalRotation.eulerAngles.z / 360f);
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if (snapToPosition)
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{
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SnapToPosition(ref knobValue);
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finalRotation.eulerAngles = new Vector3(0, 0, 360 - 360 * knobValue);
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}
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}
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else
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{
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knobValue = (finalRotation.eulerAngles.z / 360f);
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if (snapToPosition)
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{
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SnapToPosition(ref knobValue);
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finalRotation.eulerAngles = new Vector3(0, 0, 360 * knobValue);
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}
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}
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//PREVENT OVERROTATION
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if (Mathf.Abs(knobValue - _previousValue) > 0.5f)
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{
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if (knobValue < 0.5f && loops > 1 && _currentLoops < loops - 1)
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{
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_currentLoops++;
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}
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else if (knobValue > 0.5f && _currentLoops >= 1)
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{
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_currentLoops--;
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}
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else
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{
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if (knobValue > 0.5f && _currentLoops == 0)
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{
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knobValue = 0;
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transform.localEulerAngles = Vector3.zero;
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InvokeEvents(knobValue + _currentLoops);
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return;
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}
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else if (knobValue < 0.5f && _currentLoops == loops - 1)
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{
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knobValue = 1;
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transform.localEulerAngles = Vector3.zero;
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InvokeEvents(knobValue + _currentLoops);
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return;
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}
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}
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}
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//CHECK MAX VALUE
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if (maxValue > 0)
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{
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if (knobValue + _currentLoops > maxValue)
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{
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knobValue = maxValue;
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float maxAngle = direction == Direction.CW ? 360f - 360f * maxValue : 360f * maxValue;
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transform.localEulerAngles = new Vector3(0, 0, maxAngle);
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InvokeEvents(knobValue);
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return;
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}
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}
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transform.rotation = finalRotation;
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InvokeEvents(knobValue + _currentLoops);
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_previousValue = knobValue;
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}
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private void SnapToPosition(ref float knobValue)
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{
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float snapStep = 1 / (float)snapStepsPerLoop;
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float newValue = Mathf.Round(knobValue / snapStep) * snapStep;
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knobValue = newValue;
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}
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private void InvokeEvents(float value)
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{
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if (clampOutput01)
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value /= loops;
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OnValueChanged.Invoke(value);
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}
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public virtual void OnInitializePotentialDrag(PointerEventData eventData)
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{
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eventData.useDragThreshold = false;
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}
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}
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[System.Serializable]
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public class KnobFloatValueEvent : UnityEvent<float> { }
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}
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