基于 SOC 职业分类
用 Codex 或 Claude 帮你安装 复制这段 Prompt,粘贴到 Codex、Claude 或其他助手里,让它检查 Skill 页面并帮你完成安装。
直接命令不会经过审查 Prompt;运行前请先检查来源。
npx skills add https://github.com/thiagofernandes1987-create/APEX --skill shader-programming-glsl命令会保持在同一行。复制前请横向滚动并检查完整内容。
想先保存到本地?可下载 SkillsMP 当前能够提供的文件。
正在显示 SKILL.md
Token-aware reasoning workflow with real tools: picks an operating mode to control cost, runs a structured pipeline (decompose → validate → verify → snapshot), and gives Claude Program-of-Thought, RK4/Euler, a code gate, and a safe skill router. Use when: multi-step or high-stakes tasks, real math, precise computation, audits, or the user mentions APEX, PoT, pipeline, or scientific mode.
**v00.33.0**: Ingested from antigravity-awesome-skills community repo
run multiple local CLI agents in parallel (separate tmux sessions)
| name | shader-programming-glsl |
| description | "Use when creating custom visual effects in WebGL, Three.js, or game engines." |
A comprehensive guide to writing GPU shaders using GLSL (OpenGL Shading Language). Learn syntax, uniforms, varying variables, and key mathematical concepts like swizzling and vector operations for visual effects.
Understand the pipeline:
gl_Position).gl_FragColor).// Vertex Shader (basic)
attribute vec3 position;
uniform mat4 modelViewMatrix;
uniform mat4 projectionMatrix;
void main() {
gl_Position = projectionMatrix * modelViewMatrix * vec4(position, 1.0);
}
// Fragment Shader (basic)
uniform vec3 color;
void main() {
gl_FragColor = vec4(color, 1.0);
}
uniform: Data constant for all vertices/fragments (passed from CPU).varying: Data interpolated from vertex to fragment shader.// Passing UV coordinates
varying vec2 vUv;
// In Vertex Shader
void main() {
vUv = uv;
gl_Position = projectionMatrix * modelViewMatrix * vec4(position, 1.0);
}
// In Fragment Shader
void main() {
// Gradient based on UV
gl_FragColor = vec4(vUv.x, vUv.y, 1.0, 1.0);
}
Access vector components freely: vec4 color = vec4(1.0, 0.5, 0.0, 1.0);
color.rgb -> vec3(1.0, 0.5, 0.0)color.zyx -> vec3(0.0, 0.5, 1.0) (reordering)float sdSphere(vec3 p, float s) {
return length(p) - s;
}
void mainImage(out vec4 fragColor, in vec2 fragCoord) {
vec2 uv = (fragCoord - 0.5 * iResolution.xy) / iResolution.y;
vec3 ro = vec3(0.0, 0.0, -3.0); // Ray Origin
vec3 rd = normalize(vec3(uv, 1.0)); // Ray Direction
float t = 0.0;
for(int i = 0; i < 64; i++) {
vec3 p = ro + rd * t;
float d = sdSphere(p, 1.0); // Sphere radius 1.0
if(d < 0.001) break;
t += d;
}
vec3 col = vec3(0.0);
if(t < 10.0) {
vec3 p = ro + rd * t;
vec3 normal = normalize(p);
col = normal * 0.5 + 0.5; // Color by normal
}
fragColor = vec4(col, 1.0);
}
mix() for linear interpolation instead of manual math.step() and smoothstep() for thresholding and soft edges (avoid if branches).vec4) to minimize memory access.if-else) inside loops if possible; it hurts GPU parallelism.Problem: Shader compiles but screen is black.
Solution: Check if gl_Position.w is correct (usually 1.0). Check if uniforms are actually being set from the host application. Verify UV coordinates are within [0, 1].
Apply —