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125 lines
4.8 KiB
C#
125 lines
4.8 KiB
C#
3 months ago
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// Animancer // Copyright 2020 Kybernetik //
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#pragma warning disable CS0649 // Field is never assigned to, and will always have its default value.
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using Animancer.FSM;
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using UnityEngine;
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namespace Animancer.Examples.StateMachines.Brains
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{
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/// <summary>
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/// A <see cref="CreatureBrain"/> which controls the creature using mouse input.
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/// </summary>
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[AddComponentMenu(Strings.MenuPrefix + "Examples/Brains - Mouse Brain")]
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[HelpURL(Strings.APIDocumentationURL + ".Examples.StateMachines.Brains/MouseBrain")]
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public sealed class MouseBrain : CreatureBrain
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{
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/************************************************************************************************************************/
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[SerializeField] private CreatureState _Locomotion;
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[SerializeField] private float _StopDistance = 0.2f;
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[SerializeField] private float _MinRunDistance = 1;
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private Vector3? _Destination;
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/************************************************************************************************************************/
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private void OnEnable()
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{
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_Destination = null;
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}
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/************************************************************************************************************************/
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private void Update()
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{
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UpdateInput();
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UpdateMovement();
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}
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/************************************************************************************************************************/
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private void UpdateInput()
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{
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if (Input.GetMouseButton(0))
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{
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var creaturePosition = Creature.Rigidbody.position;
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var ray = Camera.main.ScreenPointToRay(Input.mousePosition);
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RaycastHit raycastHit;
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if (Physics.Raycast(ray, out raycastHit))
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{
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_Destination = raycastHit.point;
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Debug.DrawLine(ray.origin, raycastHit.point, Color.green);
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}
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else
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{
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// If the ray does not hit anything, just use the point where it intersects
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// the XZ plane at the height the creature is currently at.
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_Destination = CalculateRayTargetXZ(ray, creaturePosition.y);
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if (_Destination != null)
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Debug.DrawLine(ray.origin, _Destination.Value, Color.red);
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}
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IsRunning =
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_Destination != null &&
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Vector3.Distance(creaturePosition, _Destination.Value) >= _MinRunDistance;
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}
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else
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{
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IsRunning = false;
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}
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}
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/************************************************************************************************************************/
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public static Vector3? CalculateRayTargetXZ(Ray ray, float y = 0)
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{
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y = ray.origin.y - y;
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// If the ray starts above the target and is pointing up then it will never intersect.
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// Same if it is below and pointing down or if it is perfectly horizontal.
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if (ray.direction.y == 0 || SameSign(y, ray.direction.y))
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return null;
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return ray.origin - ray.direction * (y / ray.direction.y);
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}
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public static bool SameSign(float x, float y)
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{
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return
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(x > 0 && y > 0) ||
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(x < 0 && y < 0) ||
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(x == 0 && y == 0);
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}
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/************************************************************************************************************************/
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private void UpdateMovement()
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{
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if (_Destination != null)
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{
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var fromCurrentToDestination = _Destination.Value - Creature.Rigidbody.position;
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// Vector magnitudes are calculated using Pythagoras' Theorem which involves a square root.
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// Square roots are a much slower operation than simple arithmetic operations.
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// Since we only need to see which is greater, we can compare the squared magnitude and stop distance.
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if (fromCurrentToDestination.sqrMagnitude > _StopDistance * _StopDistance)
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{
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MovementDirection = fromCurrentToDestination;
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_Locomotion.TryEnterState();
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Debug.DrawLine(Creature.Rigidbody.position, _Destination.Value, Color.cyan);
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return;
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}
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}
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_Destination = null;
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MovementDirection = Vector3.zero;
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Creature.Idle.TryEnterState();
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}
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/************************************************************************************************************************/
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}
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}
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