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raylib-cs/Examples/Audio/SoundPositioning.cs
2026-07-29 19:58:47 +02:00

156 lines
5 KiB
C#

/*******************************************************************************************
*
* raylib [audio] example - sound positioning
*
* Example complexity rating: [★★☆☆] 2/4
*
* Example originally created with raylib 5.5, last time updated with raylib 5.5
*
* Example contributed by Le Juez Victor (@Bigfoot71) 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) 2025 Le Juez Victor (@Bigfoot71)
*
********************************************************************************************/
namespace Examples.Audio;
public partial class SoundPositioning : IExample
{
private const int screenWidth = 800;
private const int screenHeight = 450;
public string Name => "Audio / Sound Positioning";
public string Title => "raylib [audio] example - sound positioning";
public bool CursorDisabled => true;
private Sound sound;
private Camera3D camera;
public void Init()
{
InitAudioDevice();
sound = LoadSound("resources/audio/coin.wav");
camera = new Camera3D
{
Position = new Vector3(0, 5, 5),
Target = new Vector3(0, 0, 0),
Up = new Vector3(0, 1, 0),
FovY = 60,
Projection = CameraProjection.Perspective
};
}
public void Update()
{
// Update
//----------------------------------------------------------------------------------
UpdateCamera(ref camera, CameraMode.Free);
float th = (float)GetTime();
Vector3 spherePos = new Vector3(
5.0f * MathF.Cos(th),
0.0f,
5.0f * MathF.Sin(th)
);
SetSoundPosition(camera, sound, spherePos, 1.0f);
if (!IsSoundPlaying(sound))
{
PlaySound(sound);
}
//----------------------------------------------------------------------------------
// Draw
//----------------------------------------------------------------------------------
BeginDrawing();
ClearBackground(Color.RayWhite);
BeginMode3D(camera);
DrawGrid(10, 2);
DrawSphere(spherePos, 0.5f, Color.Red);
EndMode3D();
EndDrawing();
//----------------------------------------------------------------------------------
}
public void Unload()
{
UnloadSound(sound);
CloseAudioDevice(); // Close audio device
}
//------------------------------------------------------------------------------------
// Module Functions Definition
//------------------------------------------------------------------------------------
// Set sound 3d position
private static void SetSoundPosition(Camera3D listener, Sound sound, Vector3 position, float maxDist)
{
// Calculate direction vector and distance between listener and sound source
Vector3 direction = Vector3.Subtract(position, listener.Position);
float distance = direction.Length();
// Apply logarithmic distance attenuation and clamp between 0-1
float attenuation = 1.0f / (1.0f + (distance / maxDist));
attenuation = Math.Clamp(attenuation, 0.0f, 1.0f);
// Calculate normalized vectors for spatial positioning
Vector3 normalizedDirection = Vector3.Normalize(direction);
Vector3 forward = Vector3.Normalize(Vector3.Subtract(listener.Target, listener.Position));
Vector3 right = Vector3.Normalize(Vector3.Cross(listener.Up, forward));
// Reduce volume for sounds behind the listener
float dotProduct = Vector3.Dot(forward, normalizedDirection);
if (dotProduct < 0.0f)
{
attenuation *= (1.0f + dotProduct * 0.5f);
}
// Set stereo panning based on sound position relative to listener
float pan = 0.5f + 0.5f * Vector3.Dot(normalizedDirection, right);
// Apply final sound properties
SetSoundVolume(sound, attenuation);
SetSoundPan(sound, pan);
}
public static int Main()
{
// Initialization
//--------------------------------------------------------------------------------------
InitWindow(screenWidth, screenHeight, "raylib [audio] example - sound positioning");
DisableCursor();
SetTargetFPS(60);
//--------------------------------------------------------------------------------------
var game = new SoundPositioning();
game.Init();
// Main game loop
while (!WindowShouldClose())
{
game.Update();
}
game.Unload();
// De-Initialization
//--------------------------------------------------------------------------------------
CloseWindow(); // Close window and OpenGL context
//--------------------------------------------------------------------------------------
return 0;
}
}