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Pixel Art

Free

Transform images into retro pixel art and animations.

Get this skill

Free · Opens the source repo

What Pixel Art does

The Pixel Art skill provides a straightforward way to convert images into retro-style pixel art while allowing for optional animation effects. This skill is particularly useful for developers and designers looking to create nostalgic visuals reminiscent of classic gaming hardware like the NES, Game Boy, and PICO-8. The skill includes two main scripts that facilitate this process: one for converting images to pixel art and another for animating those images into short video clips or GIFs.

The conversion process employs Floyd-Steinberg dithering, which helps create visually appealing pixel art from any input image. Users can choose from a variety of era-specific palettes, ensuring that the resulting artwork maintains the authentic color schemes associated with different gaming consoles. The skill supports a range of presets that cater to various styles, from the bold colors of arcade games to the muted tones of the Game Boy.

In addition to static images, the skill also allows users to animate their pixel art creations. Users can select from several predefined animation scenes that add dynamic effects like falling snow or twinkling stars. This feature is particularly useful for creating engaging content for social media, game assets, or digital art projects. The skill is designed to be user-friendly, with clear steps for selecting styles and scenes, making it accessible for both beginners and experienced creators.

Overall, the Pixel Art skill is an excellent tool for anyone interested in retro art styles, providing both simplicity and flexibility in generating pixel art and animations.

When to use it

Use this skill when you need to convert images into pixel art or create animated retro-style visuals for projects like games, social media, or digital art.

When not to use it

This skill may not be suitable for high-resolution artwork or modern graphic design needs that require detailed imagery beyond the pixel art aesthetic.

What you can build with it

Creating Game Assets

Use the Pixel Art skill to generate character sprites and backgrounds for retro-style games, ensuring they fit the aesthetic of classic gaming.

Social Media Content

Transform photos into pixel art for engaging social media posts or profile pictures, utilizing nostalgic visuals to attract attention.

Digital Art Projects

Incorporate pixel art into digital art projects or animations, adding a unique retro flair to your creative works.

How to install Pixel Art

View source

1. Install with the skills CLI

npx skills add nousresearch/hermes-agent/pixel-art --agent claude-code

2. Or install it manually

Download the skill folder and drop it into ~/.claude/skills/ for all projects, or .claude/skills/ to scope it to one repo. Restart Claude Code so it picks up the new skill.

Anthropic's agentic coding CLI, and the reference implementation of Agent Skills. Drop a skill folder into ~/.claude/skills and Claude Code loads it automatically whenever a task matches the skill's description. Claude Code docs

Inside SKILL.md

Written by nousresearch

Pixel Art

Convert any image into retro pixel art, then optionally animate it into a short MP4 or GIF with era-appropriate effects (rain, fireflies, snow, embers).

Two scripts ship with this skill:

  • scripts/pixel_art.py — photo → pixel-art PNG (Floyd-Steinberg dithering)
  • scripts/pixel_art_video.py — pixel-art PNG → animated MP4 (+ optional GIF)

Each is importable or runnable directly. Presets snap to hardware palettes when you want era-accurate colors (NES, Game Boy, PICO-8, etc.), or use adaptive N-color quantization for arcade/SNES-style looks.

When to Use

  • User wants retro pixel art from a source image
  • User asks for NES / Game Boy / PICO-8 / C64 / arcade / SNES styling
  • User wants a short looping animation (rain scene, night sky, snow, etc.)
  • Posters, album covers, social posts, sprites, characters, avatars

Workflow

Before generating, confirm the style with the user. Different presets produce very different outputs and regenerating is costly.

Step 1 — Offer a style

Call clarify with 4 representative presets. Pick the set based on what the user asked for — don't just dump all 14.

Default menu when the user's intent is unclear:

clarify(
    question="Which pixel-art style do you want?",
    choices=[
        "arcade — bold, chunky 80s cabinet feel (16 colors, 8px)",
        "nes — Nintendo 8-bit hardware palette (54 colors, 8px)",
        "gameboy — 4-shade green Game Boy DMG",
        "snes — cleaner 16-bit look (32 colors, 4px)",
    ],
)

When the user already named an era (e.g. "80s arcade", "Gameboy"), skip clarify and use the matching preset directly.

Step 2 — Offer animation (optional)

If the user asked for a video/GIF, or the output might benefit from motion, ask which scene:

clarify(
    question="Want to animate it? Pick a scene or skip.",
    choices=[
        "night — stars + fireflies + leaves",
        "urban — rain + neon pulse",
        "snow — falling snowflakes",
        "skip — just the image",
    ],
)

Do NOT call clarify more than twice in a row. One for style, one for scene if animation is on the table. If the user explicitly asked for a specific style and scene in their message, skip clarify entirely.

Step 3 — Generate

Run pixel_art() first; if animation was requested, chain into pixel_art_video() on the result.

Preset Catalog

PresetEraPaletteBlockBest for
arcade80s arcadeadaptive 168pxBold posters, hero art
snes16-bitadaptive 324pxCharacters, detailed scenes
nes8-bitNES (54)8pxTrue NES look
gameboyDMG handheld4 green shades8pxMonochrome Game Boy
gameboy_pocketPocket handheld4 grey shades8pxMono GB Pocket
pico8PICO-816 fixed6pxFantasy-console look
c64Commodore 6416 fixed8px8-bit home computer
apple2Apple II hi-res6 fixed10pxExtreme retro, 6 colors
teletextBBC Teletext8 pure10pxChunky primary colors
mspaintWindows MS Paint24 fixed8pxNostalgic desktop
mono_greenCRT phosphor2 green6pxTerminal/CRT aesthetic
mono_amberCRT amber2 amber6pxAmber monitor look
neonCyberpunk10 neons6pxVaporwave/cyber
pastelSoft pastel10 pastels6pxKawaii / gentle

Named palettes live in scripts/palettes.py (see references/palettes.md for the complete list — 28 named palettes total). Any preset can be overridden:

pixel_art("in.png", "out.png", preset="snes", palette="PICO_8", block=6)

Scene Catalog (for video)

SceneEffects
nightTwinkling stars + fireflies + drifting leaves
duskFireflies + sparkles
tavernDust motes + warm sparkles
indoorDust motes
urbanRain + neon pulse
natureLeaves + fireflies
magicSparkles + fireflies
stormRain + lightning
underwaterBubbles + light sparkles
fireEmbers + sparkles
snowSnowflakes + sparkles
desertHeat shimmer + dust

Invocation Patterns

Python (import)

import sys
import os
sys.path.insert(0, os.path.expanduser("~/.hermes/skills/creative/pixel-art/scripts"))
from pixel_art import pixel_art
from pixel_art_video import pixel_art_video

# 1. Convert to pixel art
pixel_art("/path/to/photo.jpg", "/tmp/pixel.png", preset="nes")

# 2. Animate (optional)
pixel_art_video(
    "/tmp/pixel.png",
    "/tmp/pixel.mp4",
    scene="night",
    duration=6,
    fps=15,
    seed=42,
    export_gif=True,
)

CLI

cd ~/.hermes/skills/creative/pixel-art/scripts

python pixel_art.py in.jpg out.png --preset gameboy
python pixel_art.py in.jpg out.png --preset snes --palette PICO_8 --block 6

python pixel_art_video.py out.png out.mp4 --scene night --duration 6 --gif

Pipeline Rationale

Pixel conversion:

  1. Boost contrast/color/sharpness (stronger for smaller palettes)
  2. Posterize to simplify tonal regions before quantization
  3. Downscale by block with Image.NEAREST (hard pixels, no interpolation)
  4. Quantize with Floyd-Steinberg dithering — against either an adaptive N-color palette OR a named hardware palette
  5. Upscale back with Image.NEAREST

Quantizing AFTER downscale keeps dithering aligned with the final pixel grid. Quantizing before would waste error-diffusion on detail that disappears.

Video overlay:

  • Copies the base frame each tick (static background)
  • Overlays stateless-per-frame particle draws (one function per effect)
  • Encodes via ffmpeg libx264 -pix_fmt yuv420p -crf 18
  • Optional GIF via palettegen + paletteuse

Dependencies

  • Python 3.9+
  • Pillow (pip install Pillow)
  • ffmpeg on PATH (only needed for video — Hermes installs package this)

Pitfalls

  • Pallet keys are case-sensitive ("NES", "PICO_8", "GAMEBOY_ORIGINAL").
  • Very small sources (<100px wide) collapse under 8-10px blocks. Upscale the source first if it's tiny.
  • Fractional block or palette will break quantization — keep them positive ints.
  • Animation particle counts are tuned for ~640x480 canvases. On very large images you may want a second pass with a different seed for density.
  • mono_green / mono_amber force color=0.0 (desaturate). If you override and keep chroma, the 2-color palette can produce stripes on smooth regions.
  • clarify loop: call it at most twice per turn (style, then scene). Don't pepper the user with more picks.

Verification

  • PNG is created at the output path
  • Clear square pixel blocks visible at the preset's block size
  • Color count matches preset (eyeball the image or run Image.open(p).getcolors())
  • Video is a valid MP4 (ffprobe can open it) with non-zero size

Attribution

Named hardware palettes and the procedural animation loops in pixel_art_video.py are ported from pixel-art-studio (MIT). See ATTRIBUTION.md in this skill directory for details.

Frequently asked questions about Pixel Art

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