175 lines
6.6 KiB
C
175 lines
6.6 KiB
C
/*******************************************************************************************
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*
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* raylib [shaders] example - lightmap
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*
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* NOTE: This example requires raylib OpenGL 3.3 or ES2 versions for shaders support,
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* OpenGL 1.1 does not support shaders, recompile raylib to OpenGL 3.3 version.
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*
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* NOTE: Shaders used in this example are #version 330 (OpenGL 3.3).
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*
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* Example contributed by Jussi Viitala (@nullstare) and reviewed by Ramon Santamaria (@raysan5)
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*
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* Example licensed under an unmodified zlib/libpng license, which is an OSI-certified,
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* BSD-like license that allows static linking with closed source software
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*
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* Copyright (c) 2019-2024 Jussi Viitala (@nullstare) and Ramon Santamaria (@raysan5)
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*
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********************************************************************************************/
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#include <stdio.h>
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#include <stdlib.h>
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#include "raylib.h"
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#include "raymath.h"
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#include "rlgl.h"
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#if defined(PLATFORM_DESKTOP)
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#define GLSL_VERSION 330
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#else // PLATFORM_ANDROID, PLATFORM_WEB
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#define GLSL_VERSION 100
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#endif
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#define MAP_SIZE 10
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//------------------------------------------------------------------------------------
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// Program main entry point
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//------------------------------------------------------------------------------------
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int main(void)
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{
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// Initialization
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//--------------------------------------------------------------------------------------
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const int screenWidth = 800;
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const int screenHeight = 450;
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SetConfigFlags(FLAG_MSAA_4X_HINT); // Enable Multi Sampling Anti Aliasing 4x (if available)
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InitWindow(screenWidth, screenHeight, "raylib [shaders] example - lightmap");
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// Define the camera to look into our 3d world
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Camera camera = { 0 };
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camera.position = (Vector3){ 4.0f, 6.0f, 8.0f }; // Camera position
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camera.target = (Vector3){ 0.0f, 0.0f, 0.0f }; // Camera looking at point
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camera.up = (Vector3){ 0.0f, 1.0f, 0.0f }; // Camera up vector (rotation towards target)
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camera.fovy = 45.0f; // Camera field-of-view Y
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camera.projection = CAMERA_PERSPECTIVE; // Camera projection type
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Mesh mesh = GenMeshPlane((float)MAP_SIZE, (float)MAP_SIZE, 1, 1);
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// GenMeshPlane doesn't generate texcoords2 so we will upload them separately
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mesh.texcoords2 = (float *)RL_MALLOC(mesh.vertexCount*2*sizeof(float));
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// X // Y
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mesh.texcoords2[0] = 0.0f; mesh.texcoords2[1] = 0.0f;
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mesh.texcoords2[2] = 1.0f; mesh.texcoords2[3] = 0.0f;
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mesh.texcoords2[4] = 0.0f; mesh.texcoords2[5] = 1.0f;
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mesh.texcoords2[6] = 1.0f; mesh.texcoords2[7] = 1.0f;
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// Load a new texcoords2 attributes buffer
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mesh.vboId[SHADER_LOC_VERTEX_TEXCOORD02] = rlLoadVertexBuffer(mesh.texcoords2, mesh.vertexCount*2*sizeof(float), false);
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rlEnableVertexArray(mesh.vaoId);
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// Index 5 is for texcoords2
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rlSetVertexAttribute(5, 2, RL_FLOAT, 0, 0, 0);
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rlEnableVertexAttribute(5);
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rlDisableVertexArray();
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// Load lightmap shader
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Shader shader = LoadShader(TextFormat("resources/shaders/glsl%i/lightmap.vs", GLSL_VERSION),
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TextFormat("resources/shaders/glsl%i/lightmap.fs", GLSL_VERSION));
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Texture texture = LoadTexture("resources/cubicmap_atlas.png");
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Texture light = LoadTexture("resources/spark_flame.png");
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GenTextureMipmaps(&texture);
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SetTextureFilter(texture, TEXTURE_FILTER_TRILINEAR);
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RenderTexture lightmap = LoadRenderTexture(MAP_SIZE, MAP_SIZE);
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SetTextureFilter(lightmap.texture, TEXTURE_FILTER_TRILINEAR);
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Material material = LoadMaterialDefault();
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material.shader = shader;
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material.maps[MATERIAL_MAP_ALBEDO].texture = texture;
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material.maps[MATERIAL_MAP_METALNESS].texture = lightmap.texture;
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// Drawing to lightmap
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BeginTextureMode(lightmap);
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ClearBackground(BLACK);
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BeginBlendMode(BLEND_ADDITIVE);
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DrawTexturePro(
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light,
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(Rectangle){ 0, 0, light.width, light.height },
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(Rectangle){ 0, 0, 20, 20 },
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(Vector2){ 10.0, 10.0 },
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0.0,
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RED
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);
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DrawTexturePro(
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light,
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(Rectangle){ 0, 0, light.width, light.height },
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(Rectangle){ 8, 4, 20, 20 },
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(Vector2){ 10.0, 10.0 },
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0.0,
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BLUE
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);
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DrawTexturePro(
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light,
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(Rectangle){ 0, 0, light.width, light.height },
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(Rectangle){ 8, 8, 10, 10 },
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(Vector2){ 5.0, 5.0 },
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0.0,
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GREEN
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);
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BeginBlendMode(BLEND_ALPHA);
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EndTextureMode();
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SetTargetFPS(60); // Set our game to run at 60 frames-per-second
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//--------------------------------------------------------------------------------------
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// Main game loop
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while (!WindowShouldClose()) // Detect window close button or ESC key
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{
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// Update
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//----------------------------------------------------------------------------------
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UpdateCamera(&camera, CAMERA_ORBITAL);
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//----------------------------------------------------------------------------------
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// Draw
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//----------------------------------------------------------------------------------
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BeginDrawing();
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ClearBackground(RAYWHITE);
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BeginMode3D(camera);
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DrawMesh(mesh, material, MatrixIdentity());
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EndMode3D();
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DrawFPS(10, 10);
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DrawTexturePro(
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lightmap.texture,
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(Rectangle){ 0, 0, -MAP_SIZE, -MAP_SIZE },
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(Rectangle){ GetRenderWidth() - MAP_SIZE*8 - 10, 10, MAP_SIZE*8, MAP_SIZE*8 },
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(Vector2){ 0.0, 0.0 },
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0.0,
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WHITE);
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DrawText("lightmap", GetRenderWidth() - 66, 16 + MAP_SIZE*8, 10, GRAY);
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DrawText("10x10 pixels", GetRenderWidth() - 76, 30 + MAP_SIZE*8, 10, GRAY);
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EndDrawing();
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//----------------------------------------------------------------------------------
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}
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// De-Initialization
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//--------------------------------------------------------------------------------------
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UnloadMesh(mesh); // Unload the mesh
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UnloadShader(shader); // Unload shader
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UnloadTexture(texture); // Unload texture
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UnloadTexture(light); // Unload texture
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CloseWindow(); // Close window and OpenGL context
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//--------------------------------------------------------------------------------------
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return 0;
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}
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