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using System;
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using System.Collections;
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using System.Collections.Generic;
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using UnityEngine;
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using UnityEngine.Events;
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namespace MoreMountains.Tools
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{
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/// <summary>
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/// This class lets you define an axis on which to flip a "two sided" UI element (made of two separate and usually aligned objects, effectively turning each side on/off everytime the container's scale goes above/below a certain threshold
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/// </summary>
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[ExecuteAlways]
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public class MMTwoSidedUI : MonoBehaviour
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{
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/// the possible axis on which to flip the double object
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public enum Axis { x, y, z }
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[Header("Bindings")]
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/// the object to consider as the "front" of the two sided element. Will be visible if the scale is above the threshold
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public GameObject Front;
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/// the object to consider as the "back" of the two sided element. Will be visible if the scale is below the threshold
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public GameObject Back;
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[Header("Axis")]
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/// the axis on which to flip this object
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public Axis FlipAxis;
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/// the scale threshold at which the flip should occur
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public float ScaleThreshold = 0f;
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[Header("Events")]
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/// an event to invoke on flip
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public UnityEvent OnFlip;
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[Header("Debug")]
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/// whether or not we're in debug mode
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public bool DebugMode;
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/// the value to apply to the scale when in debug mode
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[Range(-1f, 1f)]
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public float ScaleValue;
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/// whether or not our object is flipped right now
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[MMReadOnly]
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public bool BackVisible = false;
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protected RectTransform _rectTransform;
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protected bool _initialized = false;
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/// <summary>
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/// On Start we initialize our object
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/// </summary>
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protected virtual void Start()
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{
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Initialization();
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}
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/// <summary>
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/// On init we grab our rect transform and initialize visibility
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/// </summary>
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protected virtual void Initialization()
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{
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_rectTransform = this.gameObject.GetComponent<RectTransform>();
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_initialized = true;
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float axis = GetScaleValue();
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BackVisible = (axis < ScaleThreshold);
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Front.SetActive(!BackVisible);
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Back.SetActive(BackVisible);
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}
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/// <summary>
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/// On Update we update visibility if needed
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/// </summary>
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protected virtual void Update()
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{
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#if UNITY_EDITOR
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IfEditor();
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#endif
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float axis = GetScaleValue();
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if ((axis < ScaleThreshold) != BackVisible)
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{
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Front.SetActive(BackVisible);
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Back.SetActive(!BackVisible);
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OnFlip?.Invoke();
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}
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BackVisible = (axis < ScaleThreshold);
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}
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/// <summary>
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/// If in editor, we initialize if needed, and apply the debug scale value if needed
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/// </summary>
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protected virtual void IfEditor()
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{
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if (!_initialized)
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{
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Initialization();
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}
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if (DebugMode)
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{
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switch (FlipAxis)
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{
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case Axis.x:
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_rectTransform.localScale = new Vector3(ScaleValue, _rectTransform.localScale.y, _rectTransform.localScale.z);
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break;
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case Axis.y:
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_rectTransform.localScale = new Vector3(_rectTransform.localScale.x, ScaleValue, _rectTransform.localScale.z);
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break;
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case Axis.z:
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_rectTransform.localScale = new Vector3(_rectTransform.localScale.x, _rectTransform.localScale.y, ScaleValue);
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break;
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}
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}
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}
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/// <summary>
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/// Returns the scale of the selected axis
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/// </summary>
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/// <returns></returns>
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protected virtual float GetScaleValue()
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{
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switch (FlipAxis)
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{
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case Axis.x:
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return _rectTransform.localScale.x;
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case Axis.y:
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return _rectTransform.localScale.y;
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case Axis.z:
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return _rectTransform.localScale.z;
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}
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return 0f;
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}
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}
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}
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