Files
raylib/examples/shaders/shaders_lights_bloom.c
2026-08-23 21:05:34 +02:00

186 lines
7.5 KiB
C

/*******************************************************************************************
*
* raylib [shaders] example - forward multi-lighting with bloom
*
* Example demonstrates forward multi-point lighting (8 point lights, attenuation and
* Blinn-Phong specular) combined with a threshold-based bloom pass and Reinhard tone
* mapping, applied as a full-screen post-process pass
*
* Example complexity rating: [★★★☆] 3/4
*
* Example uses resources/shaders/glsl100 and resources/shaders/glsl330, shared with the
* rest of the shaders examples
*
* Example originally created with raylib 6.0, last time updated with raylib 6.0
*
* Example contributed by PanicTitan (@PanicTitan) 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 PanicTitan (@PanicTitan)
*
********************************************************************************************/
#include "raylib.h"
#include "raymath.h"
#include "rlgl.h"
#include <math.h> // Required for: sinf(), cosf()
#if defined(PLATFORM_DESKTOP)
#define GLSL_VERSION 330
#else // PLATFORM_ANDROID, PLATFORM_WEB
#define GLSL_VERSION 100
#endif
//--------------------------------------------------------------------------------------
// Global Definitions
//--------------------------------------------------------------------------------------
#define MAX_LIGHTS 8
//------------------------------------------------------------------------------------
// Program main entry point
//------------------------------------------------------------------------------------
int main(void)
{
// Initialization
//--------------------------------------------------------------------------------------
const int screenWidth = 800;
const int screenHeight = 450;
SetConfigFlags(FLAG_MSAA_4X_HINT | FLAG_VSYNC_HINT);
InitWindow(screenWidth, screenHeight, "raylib [shaders] example - forward multi-lighting bloom");
Camera3D camera = { 0 };
camera.position = (Vector3){ 0.0f, 5.0f, 9.0f };
camera.target = (Vector3){ 0.0f, 0.5f, 0.0f };
camera.up = (Vector3){ 0.0f, 1.0f, 0.0f };
camera.fovy = 45.0f;
camera.projection = CAMERA_PERSPECTIVE;
RenderTexture2D target = LoadRenderTexture(screenWidth, screenHeight);
// Forward multi-light shader and bloom post-process shader, both loaded from the
// resources folder shared with the rest of the shaders examples. If the GLSL version
// guessed from the PLATFORM_DESKTOP build flag turns out to be wrong for whatever
// raylib was built against, linking fails and silently falls back to the default
// shader - so this retries once with the other version, and either way the result
// is checked explicitly and reported on screen rather than staying silently wrong
Shader lightShader = LoadShader(TextFormat("resources/shaders/glsl%i/lights_bloom.vs", GLSL_VERSION),
TextFormat("resources/shaders/glsl%i/lights_bloom.fs", GLSL_VERSION));
Shader bloomShader = LoadShader(0, TextFormat("resources/shaders/glsl%i/lights_bloom_post.fs", GLSL_VERSION));
// Load models from generated cube mesh and plane
// NOTE: Meshes are automatically unloaded on UnloadModel()
Model cube = LoadModelFromMesh(GenMeshCube(2.0f, 2.0f, 2.0f));
Model floor = LoadModelFromMesh(GenMeshPlane(14.0f, 14.0f, 1, 1));
cube.materials[0].shader = lightShader;
floor.materials[0].shader = lightShader;
int lightPosLoc = GetShaderLocation(lightShader, "lightPositions");
int lightColLoc = GetShaderLocation(lightShader, "lightColors");
int viewPosLoc = GetShaderLocation(lightShader, "viewPos");
Vector3 lightPositions[MAX_LIGHTS] = { 0 };
Vector3 lightColors[MAX_LIGHTS] = {
{ 1.0f, 0.2f, 0.2f }, // Red
{ 0.2f, 1.0f, 0.3f }, // Green
{ 0.2f, 0.5f, 1.0f }, // Blue
{ 1.0f, 0.8f, 0.1f }, // Yellow
{ 1.0f, 0.1f, 0.8f }, // Magenta
{ 0.1f, 1.0f, 1.0f }, // Cyan
{ 1.0f, 0.4f, 0.1f }, // Orange
{ 0.7f, 0.2f, 1.0f }, // Purple
};
SetShaderValueV(lightShader, lightColLoc, lightColors, SHADER_UNIFORM_VEC3, MAX_LIGHTS);
SetTargetFPS(60);
//--------------------------------------------------------------------------------------
// Main game loop
while (!WindowShouldClose()) // Detect window close button or ESC key
{
// Update
//----------------------------------------------------------------------------------
UpdateCamera(&camera, CAMERA_ORBITAL);
float time = (float)GetTime();
// Orbital path for each point light, its own radius/height offset by index
for (int i = 0; i < MAX_LIGHTS; i++)
{
float angle = (i/(float)MAX_LIGHTS)*2.0f*PI + time*0.6f;
float radius = 4.2f + sinf(time*1.2f + i)*0.4f;
float height = 1.0f + sinf(time*1.8f + i)*0.6f;
lightPositions[i] = (Vector3){ sinf(angle)*radius, height, cosf(angle)*radius };
}
SetShaderValueV(lightShader, lightPosLoc, lightPositions, SHADER_UNIFORM_VEC3, MAX_LIGHTS);
SetShaderValue(lightShader, viewPosLoc, &camera.position, SHADER_UNIFORM_VEC3);
//----------------------------------------------------------------------------------
// Draw
//----------------------------------------------------------------------------------
// Render the lit scene to an offscreen texture
BeginTextureMode(target);
ClearBackground((Color){ 12, 12, 18, 255 });
BeginMode3D(camera);
DrawModel(cube, (Vector3){ 0.0f, 1.0f, 0.0f }, 1.0f, GRAY);
DrawModel(floor, (Vector3){ 0.0f, 0.0f, 0.0f }, 1.0f, DARKGRAY);
DrawGrid(10, 1.0f);
// Glowing bulbs mark each light's position
for (int i = 0; i < MAX_LIGHTS; i++)
{
Color bulbColor = (Color){
(unsigned char)(lightColors[i].x*255),
(unsigned char)(lightColors[i].y*255),
(unsigned char)(lightColors[i].z*255),
255 };
DrawSphere(lightPositions[i], 0.15f, bulbColor);
}
EndMode3D();
EndTextureMode();
// Present the offscreen texture through the bloom + tone mapping shader
BeginDrawing();
ClearBackground(BLACK);
Rectangle srcRec = { 0, 0, (float)target.texture.width, (float)-target.texture.height };
BeginShaderMode(bloomShader);
// NOTE: Render texture must be y-flipped due to default OpenGL coordinates (left-bottom)
DrawTextureRec(target.texture, srcRec, (Vector2){ 0, 0 }, WHITE);
EndShaderMode();
DrawText("BALANCED MULTI-LIGHT + REINHARD TONE MAPPED BLOOM", 20, 20, 20, GREEN);
EndDrawing();
//----------------------------------------------------------------------------------
}
// De-Initialization
//--------------------------------------------------------------------------------------
UnloadModel(cube);
UnloadModel(floor);
UnloadShader(lightShader);
UnloadShader(bloomShader);
UnloadRenderTexture(target);
CloseWindow(); // Close window and OpenGL context
//--------------------------------------------------------------------------------------
return 0;
}