using System;
using System.Linq;
using System.Numerics;
using Robust.Client.Graphics;
using Robust.Shared.GameObjects;
using Robust.Shared.Graphics.RSI;
using Robust.Shared.Maths;
using Robust.Shared.Utility;
using static Robust.Client.GameObjects.SpriteComponent;
namespace Robust.Client.GameObjects;
// This partial class contains code related to updating a sprites bounding boxes and its position in the sprite tree.
public sealed partial class SpriteSystem
{
///
/// Get a sprite's local bounding box. The returned bounds do factor in the sprite's scale but not the rotation or
/// offset.
///
public Box2 GetLocalBounds(Entity sprite)
{
if (!sprite.Comp.BoundsDirty)
{
DebugTools.Assert(sprite.Comp.Layers.All(x => !x.BoundsDirty || !x.Drawn));
return sprite.Comp._bounds;
}
var bounds = new Box2();
foreach (var layer in sprite.Comp.Layers)
{
if (layer.Drawn)
bounds = bounds.Union(GetLocalBounds(layer));
}
sprite.Comp._bounds = bounds.Scale(Vector2.Abs(sprite.Comp.Scale));
sprite.Comp.BoundsDirty = false;
return sprite.Comp._bounds;
}
///
/// Get a layer's local bounding box relative to its owning sprite. Unlike the sprite variant of this method, this
/// does account for the layer's rotation and offset.
///
public Box2 GetLocalBounds(Layer layer)
{
if (!layer.BoundsDirty)
{
DebugTools.Assert(layer.Bounds.EqualsApprox(CalculateLocalBounds(layer)));
return layer.Bounds;
}
layer.Bounds = CalculateLocalBounds(layer);
layer.BoundsDirty = false;
return layer.Bounds;
}
internal Box2 CalculateLocalBounds(Layer layer)
{
var textureSize = (Vector2) layer.PixelSize / EyeManager.PixelsPerMeter;
var longestSide = MathF.Max(textureSize.X, textureSize.Y);
var longestRotatedSide = Math.Max(longestSide, (textureSize.X + textureSize.Y) / MathF.Sqrt(2));
Vector2 size;
var sprite = layer.Owner.Comp;
// If this layer has any form of arbitrary rotation, return a bounding box big enough to cover
// any possible rotation.
if (layer._rotation != 0)
{
size = new Vector2(longestRotatedSide, longestRotatedSide);
return Box2.CenteredAround(layer.Offset, size * Vector2.Abs(layer._scale));
}
var snapToCardinals = sprite.SnapCardinals;
if (sprite.GranularLayersRendering && layer.RenderingStrategy != LayerRenderingStrategy.UseSpriteStrategy)
{
snapToCardinals = layer.RenderingStrategy == LayerRenderingStrategy.SnapToCardinals;
}
if (snapToCardinals)
{
// Snapping to cardinals only makes sense for 1-directional layers/sprites
DebugTools.Assert(layer._actualState == null || layer._actualState.RsiDirections == RsiDirectionType.Dir1);
// We won't know the actual direction it snaps to, so we ahve to assume the box is given by the longest side.
size = new Vector2(longestSide, longestSide);
return Box2.CenteredAround(layer.Offset, size * Vector2.Abs(layer._scale));
}
// Build the bounding box based on how many directions the sprite has
size = (layer._actualState?.RsiDirections) switch
{
RsiDirectionType.Dir4 => new Vector2(longestSide, longestSide),
RsiDirectionType.Dir8 => new Vector2(longestRotatedSide, longestRotatedSide),
_ => textureSize
};
return Box2.CenteredAround(layer.Offset, size * Vector2.Abs(layer._scale));
}
///
/// Gets a sprite's bounding box in world coordinates.
///
public Box2Rotated CalculateBounds(Entity sprite, Vector2 worldPos, Angle worldRot, Angle eyeRot)
{
// fast check for invisible sprites
if (!sprite.Comp.Visible || sprite.Comp.Layers.Count == 0)
return new Box2Rotated(new Box2(worldPos, worldPos), Angle.Zero, worldPos);
// We need to modify world rotation so that it lies between 0 and 2pi.
// This matters for 4 or 8 directional sprites deciding which quadrant (octant?) they lie in.
// the 0->2pi convention is set by the sprite-rendering code that selects the layers.
// See RenderInternal().
worldRot = worldRot.Reduced();
if (worldRot.Theta < 0)
worldRot = new Angle(worldRot.Theta + Math.Tau);
// Next, what we do is take the box2 and apply the sprite's transform, and then the entity's transform. We
// could do this via Matrix3.TransformBox, but that only yields bounding boxes. So instead we manually
// transform our box by the combination of these matrices:
var finalRotation = sprite.Comp.NoRotation
? sprite.Comp.Rotation - eyeRot
: sprite.Comp.Rotation + worldRot;
var bounds = GetLocalBounds(sprite);
// slightly faster path if offset == 0 (true for 99.9% of sprites)
if (sprite.Comp.Offset == Vector2.Zero)
return new Box2Rotated(bounds.Translated(worldPos), finalRotation, worldPos);
var adjustedOffset = sprite.Comp.NoRotation
? (-eyeRot).RotateVec(sprite.Comp.Offset)
: worldRot.RotateVec(sprite.Comp.Offset);
var position = adjustedOffset + worldPos;
return new Box2Rotated(bounds.Translated(position), finalRotation, position);
}
private void DirtyBounds(Entity sprite)
{
sprite.Comp.BoundsDirty = true;
foreach (var layer in sprite.Comp.Layers)
{
layer.BoundsDirty = true;
}
}
}