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111 lines
4.2 KiB
C#
111 lines
4.2 KiB
C#
using UnityEngine;
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public class CameraControl : MonoBehaviour
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{
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[Range(0.1f, 30)]
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public float MoveSpeed = 8.5f;
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[Range(0, 30)]
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public float MinZoom = 1.2f;
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[Range(0, 30)]
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public float MaxZoom = 10.0f;
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[Range(0, 10)]
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public float ZoomSpeed = 1.0f;
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[Range(1, 60)]
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public float TargetPositionMultiplier = 24.0f;
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[Range(1, 60)]
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public float TargetZoomMultiplier = 12.0f;
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[SerializeField]
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public float TargetZoom { get { return _targetZoom; } }
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private float _targetZoom;
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private Vector2 _targetPosition;
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private Vector2? _panningClickPosition;
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private Vector3? _panningCameraPosition;
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private new Camera camera;
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void Start()
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{
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camera = GetComponent<Camera>();
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_targetZoom = camera.orthographicSize;
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_targetPosition = transform.position;
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}
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void Update()
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{
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var isPanning = Input.GetMouseButton(1);
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if (!isPanning)
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{
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if (_panningClickPosition != null)
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{
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_panningClickPosition = null;
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_panningCameraPosition = null;
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_targetPosition = (Vector2)transform.position;
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_targetZoom = camera.orthographicSize;
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}
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// calculate target zoom
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var scroll = Input.GetAxisRaw("Mouse ScrollWheel");
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if (scroll != 0)
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{
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// scroll passes on it's negative value
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var zoomAmount = camera.orthographicSize * scroll * ZoomSpeed;
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// changes the target zoom, keeps it within min/max range
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_targetZoom = Mathf.Clamp(camera.orthographicSize - zoomAmount, MinZoom, MaxZoom);
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// Camera.main.transform.position = Vector2.Lerp(Camera.main.transform.position,
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// Camera.main.ScreenToWorldPoint(Input.mousePosition),
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// ZoomSpeed * Time.deltaTime);
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// //KEEP THE Z POSITION BEHIND YOUR OBJECTS!
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// Camera.main.transform.position = new Vector3(Camera.main.transform.position.x,
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// Camera.main.transform.position.y,
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// -20);
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}
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// calculate target position
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// moveSpeed dependent on zoom, moves slower when zoomed in
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// 50% speed at 2.5 zoom, 100% speed at 5 zoom, 200% speed at 10 zoom
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// 0.5 = 1 / (5 / 2.5), 1 = (5 / 5), 2 = (5 / 10)
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var movement = new Vector3(Input.GetAxisRaw("Horizontal"), Input.GetAxisRaw("Vertical")) * MoveSpeed * Time.deltaTime * (1 / (5 / camera.orthographicSize));
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_targetPosition += (Vector2)movement;
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// Move towards the target zoom
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if (_targetZoom != camera.orthographicSize)
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if (!isPanning)
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camera.orthographicSize = Mathf.Lerp(camera.orthographicSize, _targetZoom, Time.deltaTime * TargetZoomMultiplier);
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else
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// panning cancels target zoom immediately
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_targetZoom = camera.orthographicSize;
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// Move towards the target position
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if (_targetPosition != (Vector2)transform.position)
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{
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var newPosition = Vector2.Lerp(transform.position, _targetPosition, Time.deltaTime * TargetPositionMultiplier);
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transform.position = new Vector3(newPosition.x, newPosition.y, -20);
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}
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}
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else
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{
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if (_panningClickPosition == null)
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{
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_panningClickPosition = Input.mousePosition;
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_panningCameraPosition = transform.position;
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}
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// We need to apply the delta between the initial click position and the current mouse position to the camera's position
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var worldDelta = camera.ScreenToWorldPoint(Input.mousePosition) - camera.ScreenToWorldPoint(_panningClickPosition.Value);
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transform.position = new Vector3(
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_panningCameraPosition.Value.x - worldDelta.x,
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_panningCameraPosition.Value.y - worldDelta.y,
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-20
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);
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}
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}
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} |