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Add ascii post processing (#5213)
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67
examples/shaders/resources/shaders/glsl100/ascii.fs
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67
examples/shaders/resources/shaders/glsl100/ascii.fs
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#version 100
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precision mediump float;
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// Input from the vertex shader
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varying vec2 fragTexCoord;
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// Output color for the screen
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varying vec4 finalColor;
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uniform sampler2D texture0;
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uniform vec2 resolution;
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uniform float fontSize;
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float greyScale(in vec3 col) {
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return dot(col, vec3(0.2126, 0.7152, 0.0722));
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}
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float character(float n, vec2 p)
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{
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p = floor(p * vec2(4.0, -4.0) + 2.5);
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// Check if the coordinate is inside the 5x5 grid (0 to 4).
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if (clamp(p.x, 0.0, 4.0) == p.x && clamp(p.y, 0.0, 4.0) == p.y) {
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if (int(mod(n / exp2(p.x + 5.0 * p.y), 2.0)) == 1) {
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return 1.0; // The bit is on, so draw this part of the character.
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}
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}
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return 0.0; // The bit is off, or we are outside the grid.
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}
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// -----------------------------------------------------------------------------
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// Main shader logic
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// -----------------------------------------------------------------------------
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void main()
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{
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vec2 charPixelSize = vec2(fontSize, fontSize * 1.8);
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vec2 uvCellSize = charPixelSize / resolution;
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vec2 cellUV = floor(fragTexCoord / uvCellSize) * uvCellSize;
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vec3 cellColor = texture2D(texture0, cellUV).rgb;
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float gray = greyScale(cellColor);
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float n = 4096;
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// limited character set
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if (gray > 0.2) n = 65600.0; // :
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if (gray > 0.3) n = 163153.0; // *
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if (gray > 0.4) n = 15255086.0; // o
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if (gray > 0.5) n = 13121101.0; // &
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if (gray > 0.6) n = 15252014.0; // 8
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if (gray > 0.7) n = 13195790.0; // @
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if (gray > 0.8) n = 11512810.0; // #
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vec2 localUV = (fragTexCoord - cellUV) / uvCellSize; // Range [0.0, 1.0]
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vec2 p = localUV * 2.0 - 1.0;
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float charShape = character(n, p);
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vec3 final_col = cellColor * charShape;
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gl_FragColor = vec4(final_col, 1.0);
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}
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65
examples/shaders/resources/shaders/glsl120/ascii.fs
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65
examples/shaders/resources/shaders/glsl120/ascii.fs
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#version 120
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// Input from the vertex shader
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varying vec2 fragTexCoord;
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// Output color for the screen
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varying vec4 finalColor;
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uniform sampler2D texture0;
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uniform vec2 resolution;
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uniform float fontSize;
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float greyScale(in vec3 col) {
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return dot(col, vec3(0.2126, 0.7152, 0.0722));
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}
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float character(float n, vec2 p)
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{
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p = floor(p * vec2(4.0, -4.0) + 2.5);
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// Check if the coordinate is inside the 5x5 grid (0 to 4).
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if (clamp(p.x, 0.0, 4.0) == p.x && clamp(p.y, 0.0, 4.0) == p.y) {
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if (int(mod(n / exp2(p.x + 5.0 * p.y), 2.0)) == 1) {
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return 1.0; // The bit is on, so draw this part of the character.
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}
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}
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return 0.0; // The bit is off, or we are outside the grid.
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}
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// -----------------------------------------------------------------------------
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// Main shader logic
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// -----------------------------------------------------------------------------
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void main()
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{
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vec2 charPixelSize = vec2(fontSize, fontSize * 1.8);
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vec2 uvCellSize = charPixelSize / resolution;
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vec2 cellUV = floor(fragTexCoord / uvCellSize) * uvCellSize;
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vec3 cellColor = texture2D(texture0, cellUV).rgb;
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float gray = greyScale(cellColor);
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float n = 4096;
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// limited character set
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if (gray > 0.2) n = 65600.0; // :
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if (gray > 0.3) n = 163153.0; // *
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if (gray > 0.4) n = 15255086.0; // o
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if (gray > 0.5) n = 13121101.0; // &
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if (gray > 0.6) n = 15252014.0; // 8
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if (gray > 0.7) n = 13195790.0; // @
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if (gray > 0.8) n = 11512810.0; // #
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vec2 localUV = (fragTexCoord - cellUV) / uvCellSize; // Range [0.0, 1.0]
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vec2 p = localUV * 2.0 - 1.0;
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float charShape = character(n, p);
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vec3 final_col = cellColor * charShape;
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gl_FragColor = vec4(final_col, 1.0);
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}
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66
examples/shaders/resources/shaders/glsl330/ascii.fs
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66
examples/shaders/resources/shaders/glsl330/ascii.fs
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#version 330
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// Input from the vertex shader
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in vec2 fragTexCoord;
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// Output color for the screen
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out vec4 finalColor;
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uniform sampler2D texture0;
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uniform vec2 resolution;
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uniform float fontSize;
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float greyScale(in vec3 col) {
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return dot(col, vec3(0.2126, 0.7152, 0.0722));
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}
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float character(float n, vec2 p)
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{
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p = floor(p * vec2(4.0, -4.0) + 2.5);
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// Check if the coordinate is inside the 5x5 grid (0 to 4).
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if (clamp(p.x, 0.0, 4.0) == p.x && clamp(p.y, 0.0, 4.0) == p.y) {
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if (int(mod(n / exp2(p.x + 5.0 * p.y), 2.0)) == 1) {
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return 1.0; // The bit is on, so draw this part of the character.
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}
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}
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return 0.0; // The bit is off, or we are outside the grid.
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}
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// -----------------------------------------------------------------------------
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// Main shader logic
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// -----------------------------------------------------------------------------
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void main()
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{
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vec2 charPixelSize = vec2(fontSize, fontSize * 1.8);
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vec2 uvCellSize = charPixelSize / resolution;
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vec2 cellUV = floor(fragTexCoord / uvCellSize) * uvCellSize;
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vec3 cellColor = texture(texture0, cellUV).rgb;
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float gray = greyScale(cellColor);
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float n = 4096;
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// limited character set
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if (gray > 0.2) n = 65600.0; // :
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if (gray > 0.3) n = 163153.0; // *
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if (gray > 0.4) n = 15255086.0; // o
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if (gray > 0.5) n = 13121101.0; // &
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if (gray > 0.6) n = 15252014.0; // 8
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if (gray > 0.7) n = 13195790.0; // @
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if (gray > 0.8) n = 11512810.0; // #
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vec2 localUV = (fragTexCoord - cellUV) / uvCellSize; // Range [0.0, 1.0]
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vec2 p = localUV * 2.0 - 1.0;
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float charShape = character(n, p);
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vec3 final_col = cellColor * charShape;
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finalColor = vec4(final_col, 1.0);
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}
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119
examples/shaders/shaders_ascii_effect.c
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119
examples/shaders/shaders_ascii_effect.c
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/*******************************************************************************************
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*
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* raylib [shaders] example - ascii effect
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*
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* Example complexity rating: [★☆☆☆] 1/4
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*
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* Example originally created with raylib 5.5, last time updated with raylib 5.6
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*
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* Example contributed by Maicon Santana (@maiconpintoabreu) 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) 2025-2025 Maicon Santana (@maiconpintoabreu)
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*
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********************************************************************************************/
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#include "raylib.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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//------------------------------------------------------------------------------------
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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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InitWindow(screenWidth, screenHeight, "raylib [shaders] example - ascii effect");
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// Texture to test static drawing
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Texture2D fudesumi = LoadTexture("resources/fudesumi.png");
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// Texture to test moving drawing
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Texture2D raysan = LoadTexture("resources/raysan.png");
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// Load shader to be used on postprocessing
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Shader shader = LoadShader(0, TextFormat("resources/shaders/glsl%i/ascii.fs", GLSL_VERSION));
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// These locations are used to send data to the GPU.
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int resolutionLoc = GetShaderLocation(shader, "resolution");
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int fontSizeLoc = GetShaderLocation(shader, "fontSize");
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// Set the character size for the ASCII effect
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float fontSize = 4.0f;
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// Send the updated values to the shader
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float resolution[2] = { (float)screenWidth, (float)screenHeight };
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SetShaderValue(shader, resolutionLoc, resolution, SHADER_UNIFORM_VEC2);
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SetShaderValue(shader, fontSizeLoc, &fontSize, SHADER_UNIFORM_FLOAT);
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Vector2 circlePos = (Vector2){40.0f, (float)screenHeight * 0.5f};
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float circleSpeed = 1.0f;
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// RenderTexture to apply the postprocessing later
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RenderTexture2D target = LoadRenderTexture(screenWidth, screenHeight);
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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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if (circlePos.x > 200.0f || circlePos.x < 40.0f) {
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circleSpeed *= -1;
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}
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circlePos.x += circleSpeed;
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// Draw
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//----------------------------------------------------------------------------------
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BeginTextureMode(target);
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ClearBackground(WHITE); // The background of the scene itself
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DrawTexture(fudesumi, 500, -30, WHITE); // Using custom shader
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DrawTextureV(raysan, circlePos, WHITE);
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EndTextureMode();
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BeginDrawing();
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ClearBackground(RAYWHITE);
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BeginShaderMode(shader);
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// Draw the scene texture (that we rendered earlier) to the screen.
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// The shader will process every pixel of this texture.
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DrawTextureRec(target.texture,
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(Rectangle){ 0, 0, (float)target.texture.width, (float)-target.texture.height },
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(Vector2){ 0, 0 },
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WHITE);
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EndShaderMode();
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DrawRectangle(0, 0, screenWidth, 40, BLACK);
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DrawText("Ascii effect", 120, 10, 20, LIGHTGRAY);
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DrawFPS(10, 10);
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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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UnloadShader(shader); // Unload shader
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UnloadTexture(fudesumi); // Unload texture
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UnloadTexture(raysan); // 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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BIN
examples/shaders/shaders_ascii_effect.png
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BIN
examples/shaders/shaders_ascii_effect.png
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Binary file not shown.
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