Files
RobustToolbox/Robust.Client/GameObjects/Components/Light/PointLightComponent.cs
T
Pieter-Jan BriersandGitHub 32bafb66a8 Shadows & FOV. (#992)
* Work on shadow casting.

* Shadowcasting depth works, code cleanup

* Adds #include support to SWSL parser.

* Move lighting shader to swsl.

Also more shader parser fixes.

* Move PI constant to correct file.

* Got functional FOV, working on wall bleed.

* Hey, it kinda works.

* Occluder component now lives in shared.

* Optimizations.

* Fix light map color format.

I set it to something else while testing perf.

* Front face cull final FOV pass.

* Fix holes in occlusion geometry due to disabled occluders.

* Starting work on better wall handling.

* Some comments.

* Improve font-face-culled FOV pass.

* Improve various light biasing things.

* VSM, smooth shadows.

Also unused VSM blurring because it didn't work but committing it like this will forever keep it in Git somewhere.

* FOV smoothing, looks kinda awful.

* Base wall bleed blur strength on camera size.

* The part where I give up.

* Comments. Many comments.

* Allow eyes to disable FOV.

* Improve OccluderComponent on the client.

* Update for occluder component changes.

* Maybe do this properly...
2020-02-23 17:18:58 +01:00

179 lines
5.3 KiB
C#

using Robust.Client.Graphics;
using Robust.Client.Interfaces.ResourceManagement;
using Robust.Client.ResourceManagement;
using Robust.Shared.Animations;
using Robust.Shared.GameObjects;
using Robust.Shared.Interfaces.GameObjects;
using Robust.Shared.Interfaces.Network;
using Robust.Shared.IoC;
using Robust.Shared.Maths;
using Robust.Shared.Serialization;
using Robust.Shared.ViewVariables;
namespace Robust.Client.GameObjects
{
public class PointLightComponent : Component
{
public override string Name => "PointLight";
public override uint? NetID => NetIDs.POINT_LIGHT;
[ViewVariables(VVAccess.ReadWrite)]
public Color Color
{
get => _color;
set => _color = value;
}
[ViewVariables(VVAccess.ReadWrite)]
public Vector2 Offset
{
get => _offset;
set => _offset = value;
}
[ViewVariables(VVAccess.ReadWrite)]
public bool Enabled
{
get => _enabled;
set => _enabled = value;
}
/// <summary>
/// Determines if the light mask should automatically rotate with the entity. (like a flashlight)
/// </summary>
[ViewVariables(VVAccess.ReadWrite)]
public bool MaskAutoRotate
{
get => _maskAutoRotate;
set => _maskAutoRotate = value;
}
/// <summary>
/// Local rotation of the light mask around the center origin
/// </summary>
[ViewVariables(VVAccess.ReadWrite)]
[Animatable]
public Angle Rotation
{
get => _rotation;
set => _rotation = value;
}
/// <summary>
/// Set a mask texture that will be applied to the light while rendering.
/// The mask's red channel will be linearly multiplied.p
/// </summary>
[ViewVariables(VVAccess.ReadWrite)]
public Texture Mask { get; set; }
[ViewVariables(VVAccess.ReadWrite)]
public float Energy
{
get => _energy;
set => _energy = value;
}
[ViewVariables(VVAccess.ReadWrite)]
public bool VisibleNested
{
get => _visibleNested;
set
{
if (_visibleNested == value) return;
_visibleNested = value;
if (value)
{
if (Owner.Transform.Parent == null) return;
_lightOnParent = true;
}
else
{
if (!_lightOnParent) return;
_lightOnParent = false;
}
}
}
private float _radius = 5;
private bool _visibleNested = true;
private bool _lightOnParent = false;
private Color _color = Color.White;
private Vector2 _offset;
private bool _enabled = true;
private bool _maskAutoRotate;
private Angle _rotation;
private float _energy;
/// <summary>
/// Radius, in meters.
/// </summary>
[ViewVariables(VVAccess.ReadWrite)]
public float Radius
{
get => _radius;
set => _radius = value;
}
/// <inheritdoc />
public override void HandleMessage(ComponentMessage message, INetChannel netChannel = null,
IComponent component = null)
{
base.HandleMessage(message, netChannel, component);
if ((message is ParentChangedMessage msg))
{
HandleTransformParentChanged(msg);
}
}
private void HandleTransformParentChanged(ParentChangedMessage obj)
{
// TODO: this does not work for things nested multiply layers deep.
if (!VisibleNested)
{
return;
}
if (obj.NewParent != null && obj.NewParent.IsValid())
{
_lightOnParent = true;
}
else
{
_lightOnParent = false;
}
}
public override void ExposeData(ObjectSerializer serializer)
{
serializer.DataFieldCached(ref _offset, "offset", Vector2.Zero);
serializer.DataFieldCached(ref _radius, "radius", 5f);
serializer.DataFieldCached(ref _color, "color", Color.White);
serializer.DataFieldCached(ref _enabled, "enabled", true);
serializer.DataFieldCached(ref _energy, "energy", 1f);
serializer.DataFieldCached(ref _maskAutoRotate, "autoRot", false);
serializer.DataFieldCached(ref _visibleNested, "nestedvisible", true);
if (serializer.Reading && serializer.TryReadDataField("mask", out string value))
{
Mask = IoCManager.Resolve<IResourceCache>().GetResource<TextureResource>(value);
}
}
/// <inheritdoc />
public override void HandleComponentState(ComponentState curState, ComponentState nextState)
{
if (curState == null)
return;
var newState = (PointLightComponentState) curState;
Enabled = newState.Enabled;
Radius = newState.Radius;
Offset = newState.Offset;
Color = newState.Color;
}
}
}