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raylib-cs/Examples/Models/TesseractView.cs
tiger tiger tiger 8c22e68c2a
WASM examples (+ backports of new official examples) (#344)
* chg: New build system that uses the officially distributed binaries, bumped version to 8.0.0, simplified git workflow, removed deprecated OpenGL 1.1 functionality.

* chg: Modernize CI workflow, enable SourceLink

- Bump workflow actions to latest majors (Node 24); drop deprecated softprops/action-gh-release@v1
- Trigger push builds on main instead of master
- Create local nuget feed dir before pack (fixes NU1301)
- Enable Microsoft.SourceLink.GitHub for debugging symbols (ref PR #340)

* fix: centralized version data in Directory.build.props, and fixed various interop details that had incorrect function signatures

* chore: updated readme

* fix: version the native extract marker and chain download via DependsOnTargets

The .extracted marker now includes the raylib package name, so bumping
TargetRaylibTag re-extracts the new archive instead of silently keeping
(and packing/copying) the previous version's files.

_PrepareNativeLibrary and _StageWasmNative now depend directly on
_DownloadAndExtractInternal instead of CallTarget-ing it; dependency
targets run in the same project instance, so the resolved properties
(RaylibPackageName etc.) propagate naturally.

* fix: let the binding build for browser-wasm on both net8.0 and net10.0

The net8-era wasm workload (Microsoft.NET.Runtime.WebAssembly.Sdk 8.0.x,
auto-imported for RID browser-wasm) treats every browser-wasm project as
a wasm app: it forces OutputType=Exe after project evaluation (CS5001
for a classlib) and hooks its app-bundle build after Build, which errors
because a library has no assemblies to bundle. Opt Raylib-cs out via
DisableAutoWasmBuildApp (props time, before the workload defaults its
trigger) and pin OutputType back to Library in Directory.Build.targets
(evaluated after the workload props, so the assignment wins). net10's
wasm SDK needs neither workaround.

* chore: readme updated

* chg: simplifying build logic - a simple line in the documentation should save us the code here

* fix: Wrong signature of FrameBufferComplete

* chore: readme update

* feat: samples default to local project reference, and can optionally use the nuget package

* feat: backporting existing raylib-cs examples and new official raylib examples to WASM, adopting raylib's original code style

* chore: readme, gitignore, and targets backport.

* fix: Examples.csproj runs the download task when building locally

* feat: backporting existing raylib-cs examples and new official raylib examples to WASM, adopting raylib's original code style

* chore: readme, gitignore, and targets backport.

* chore: clean up linter warnings

* feat: html harness focuses the example and allows quick navigation with J/K instead.

* chore: readme mentions the property to use nuget vs. the local project reference

* feat: replaced the J/K navigation with good old HTML buttons

* chore: run dotnet format scoped default (was previously scoped to just 'style')
2026-07-30 18:34:34 +01:00

163 lines
5.7 KiB
C#

/*******************************************************************************************
*
* raylib [models] example - tesseract view
*
* NOTE: This example only works on platforms that support drag & drop (Windows, Linux, OSX, Html5?)
*
* Example complexity rating: [★★☆☆] 2/4
*
* Example originally created with raylib 6.0, last time updated with raylib 6.0
*
* Example contributed by Timothy van der Valk (@arceryz) and reviewed by Ramon Santamaria (@raysan5)
*
* Example licensed under an unmodified zlib/libpng license, which is an OSI-certified,
* BSD-like license that allows static linking with closed source software
*
* Copyright (c) 2024-2025 Timothy van der Valk (@arceryz) and Ramon Santamaria (@raysan5)
*
********************************************************************************************/
using static Raylib_cs.Raymath;
namespace Examples.Models;
public partial class TesseractView : IExample
{
private const int screenWidth = 800;
private const int screenHeight = 450;
public string Name => "Models / Tesseract View";
public string Title => "raylib [models] example - tesseract view";
// Define the camera to look into our 3d world
private Camera3D camera;
// Find the coordinates by setting XYZW to +-1
private Vector4[] tesseract;
private float rotation;
private Vector3[] transformed;
private float[] wValues;
public void Init()
{
// Define the camera to look into our 3d world
camera = new Camera3D();
camera.Position = new Vector3(4.0f, 4.0f, 4.0f); // Camera position
camera.Target = new Vector3(0.0f, 0.0f, 0.0f); // Camera looking at point
camera.Up = new Vector3(0.0f, 0.0f, 1.0f); // Camera up vector (rotation towards target)
camera.FovY = 50.0f; // Camera field-of-view Y
camera.Projection = CameraProjection.Perspective; // Camera mode type
// Find the coordinates by setting XYZW to +-1
tesseract = new Vector4[16]
{
new( 1, 1, 1, 1 ), new( 1, 1, 1, -1 ),
new( 1, 1, -1, 1 ), new( 1, 1, -1, -1 ),
new( 1, -1, 1, 1 ), new( 1, -1, 1, -1 ),
new( 1, -1, -1, 1 ), new( 1, -1, -1, -1 ),
new(-1, 1, 1, 1 ), new(-1, 1, 1, -1 ),
new(-1, 1, -1, 1 ), new(-1, 1, -1, -1 ),
new(-1, -1, 1, 1 ), new(-1, -1, 1, -1 ),
new(-1, -1, -1, 1 ), new(-1, -1, -1, -1 ),
};
rotation = 0.0f;
transformed = new Vector3[16];
wValues = new float[16];
}
public void Update()
{
// Update
//----------------------------------------------------------------------------------
rotation = DEG2RAD * 45.0f * (float)GetTime();
for (int i = 0; i < 16; i++)
{
Vector4 p = tesseract[i];
// Rotate the XW part of the vector
Vector2 rotXW = Vector2Rotate(new Vector2(p.X, p.W), rotation);
p.X = rotXW.X;
p.W = rotXW.Y;
// Projection from XYZW to XYZ from perspective point (0, 0, 0, 3)
// NOTE: Trace a ray from (0, 0, 0, 3) > p and continue until W = 0
float c = 3.0f / (3.0f - p.W);
p.X = c * p.X;
p.Y = c * p.Y;
p.Z = c * p.Z;
// Split XYZ coordinate and W values later for drawing
transformed[i] = new Vector3(p.X, p.Y, p.Z);
wValues[i] = p.W;
}
//----------------------------------------------------------------------------------
// Draw
//----------------------------------------------------------------------------------
BeginDrawing();
ClearBackground(Color.RayWhite);
BeginMode3D(camera);
for (int i = 0; i < 16; i++)
{
// Draw spheres to indicate the W value
DrawSphere(transformed[i], MathF.Abs(wValues[i] * 0.1f), Color.Red);
for (int j = 0; j < 16; j++)
{
// Two lines are connected if they differ by 1 coordinate
// This way we dont have to keep an edge list
Vector4 v1 = tesseract[i];
Vector4 v2 = tesseract[j];
int diff = (v1.X == v2.X ? 1 : 0) + (v1.Y == v2.Y ? 1 : 0) + (v1.Z == v2.Z ? 1 : 0) + (v1.W == v2.W ? 1 : 0);
// Draw only differing by 1 coordinate and the lower index only (duplicate lines)
if (diff == 3 && i < j)
{
DrawLine3D(transformed[i], transformed[j], Color.Maroon);
}
}
}
EndMode3D();
EndDrawing();
//----------------------------------------------------------------------------------
}
public void Unload()
{
}
public static int Main()
{
// Initialization
//--------------------------------------------------------------------------------------
InitWindow(screenWidth, screenHeight, "raylib [models] example - tesseract view");
SetTargetFPS(60); // Set our game to run at 60 frames-per-second
//--------------------------------------------------------------------------------------
var game = new TesseractView();
game.Init();
// Main game loop
while (!WindowShouldClose()) // Detect window close button or ESC key
{
game.Update();
}
game.Unload();
// De-Initialization
//--------------------------------------------------------------------------------------
CloseWindow(); // Close window and OpenGL context
//--------------------------------------------------------------------------------------
return 0;
}
}