Skip to main content

A high-performance Minecraft schematic parser and utility library

Project description

Nucleation

Nucleation is a high-performance Minecraft schematic engine written in Rust with full support for Rust, WebAssembly/JavaScript, Python, and FFI-based integrations like PHP and C.

Built for performance, portability, and parity across ecosystems.


Crates.io npm PyPI


Features

Core

  • Multi-format support: .schematic, .litematic, .nbt, and more
  • Memory-safe Rust core with zero-copy deserialization
  • Cross-platform: Linux, macOS, Windows (x86_64 + ARM64)
  • Multi-language: Rust, JavaScript/TypeScript (WASM), Python, C/FFI

Schematic Building

  • SchematicBuilder: Create schematics with ASCII art and Unicode characters
  • Compositional Design: Build circuits hierarchically from smaller components
  • Unicode Palettes: Visual circuit design with intuitive characters (, , , etc.)
  • Template System: Define circuits in human-readable text format
  • CLI Tool: Build schematics from command line (schematic-builder)

Circuit Simulation

  • Redstone simulation via MCHPRS integration (optional simulation feature)
  • TypedCircuitExecutor: High-level API with typed inputs/outputs (Bool, U32, Ascii, etc.)
  • Custom IO: Inject and monitor signal strengths at specific positions
  • Execution Modes: Fixed ticks, until condition, until stable, until change
  • State Management: Stateless, stateful, or manual control

Developer Experience

  • Bracket notation for blocks: "minecraft:lever[facing=east,powered=false]"
  • Feature parity across all language bindings
  • Comprehensive documentation in docs/
  • Seamless integration with Cubane

Installation

Rust

cargo add nucleation

JavaScript / TypeScript (WASM)

npm install nucleation

Python

pip install nucleation

C / PHP / FFI

Download prebuilt .so / .dylib / .dll from Releases or build locally using:

./build-ffi.sh

Quick Examples

Loading and Saving Schematics

Rust

use nucleation::UniversalSchematic;

let bytes = std::fs::read("example.litematic")?;
let mut schematic = UniversalSchematic::new("my_schematic");
schematic.load_from_data(&bytes)?;
println!("{:?}", schematic.get_info());

JavaScript (WASM)

import { SchematicParser } from "nucleation";

const bytes = await fetch("example.litematic").then(r => r.arrayBuffer());
const parser = new SchematicParser();
await parser.fromData(new Uint8Array(bytes));
console.log(parser.getDimensions());

Python

from nucleation import Schematic

with open("example.litematic", "rb") as f:
    data = f.read()

schem = Schematic("my_schematic")
schem.load_from_bytes(data)
print(schem.get_info())

Building Schematics with ASCII Art

use nucleation::SchematicBuilder;

// Use Unicode characters for visual circuit design!
let circuit = SchematicBuilder::new()
    .from_template(r#"
        # Base layer
        ccc
        ccc
        
        # Logic layer
        ─→─
        │█│
        "#)
    .build()?;

// Save as litematic
let bytes = nucleation::litematic::to_litematic(&circuit)?;
std::fs::write("circuit.litematic", bytes)?;

Available in Rust, JavaScript, and Python! See SchematicBuilder Guide.

Compositional Circuit Design

// Build a basic gate
let and_gate = create_and_gate();

// Use it in a larger circuit
let half_adder = SchematicBuilder::new()
    .map_schematic('A', and_gate)  // Use entire schematic as palette entry!
    .map_schematic('X', xor_gate)
    .layers(&[&["AX"]])  // Place side-by-side
    .build()?;

// Stack multiple copies
let four_bit_adder = SchematicBuilder::new()
    .map_schematic('F', full_adder)
    .layers(&[&["FFFF"]])  // 4 full-adders in a row
    .build()?;

See 4-Bit Adder Example for a complete hierarchical design.

CLI Tool

# Build schematic from text template
cat circuit.txt | schematic-builder -o circuit.litematic

# From file
schematic-builder -i circuit.txt -o circuit.litematic

# Choose format
schematic-builder -i circuit.txt -o circuit.schem --format schem

Advanced Examples

Setting Blocks with Properties

const schematic = new SchematicWrapper();
schematic.set_block(0, 1, 0, "minecraft:lever[facing=east,powered=false,face=floor]");
schematic.set_block(5, 1, 0, "minecraft:redstone_wire[power=15,east=side,west=side]");

More in examples/rust.md

Redstone Circuit Simulation

const simWorld = schematic.create_simulation_world();
simWorld.on_use_block(0, 1, 0); // Toggle lever
simWorld.tick(2);
simWorld.flush();
const isLit = simWorld.is_lit(15, 1, 0); // Check if lamp is lit

High-Level Typed Executor

use nucleation::{TypedCircuitExecutor, IoType, Value, ExecutionMode};

// Create executor with typed IO
let mut executor = TypedCircuitExecutor::new(world, inputs, outputs);

// Execute with typed values
let mut input_values = HashMap::new();
input_values.insert("a".to_string(), Value::Bool(true));
input_values.insert("b".to_string(), Value::Bool(true));

let result = executor.execute(
    input_values,
    ExecutionMode::FixedTicks { ticks: 100 }
)?;

// Get typed output
let output = result.outputs.get("result").unwrap();
assert_eq!(*output, Value::Bool(true));  // AND gate result

Supported types: Bool, U8, U16, U32, I8, I16, I32, Float32, Ascii, Array, Matrix, Struct

See TypedCircuitExecutor Guide for execution modes, state management, and more.


Development

# Build the Rust core
cargo build --release

# Build with simulation support
cargo build --release --features simulation

# Build WASM module (includes simulation)
./build-wasm.sh

# Build Python bindings locally
maturin develop --features python

# Build FFI libs
./build-ffi.sh

# Run tests
cargo test
cargo test --features simulation
./test-wasm.sh  # WASM tests with simulation

# Pre-push verification (recommended before pushing)
./pre-push.sh  # Runs all checks that CI runs

Documentation

📖 Language-Specific Documentation

Choose your language for complete API reference and examples:

📚 Shared Guides

These guides apply to all languages:

🎯 Quick Links


License

Licensed under the GNU AGPL-3.0-only. See LICENSE for full terms.

Made by @Nano112

Project details


Release history Release notifications | RSS feed

Download files

Download the file for your platform. If you're not sure which to choose, learn more about installing packages.

Source Distribution

nucleation-0.1.110.tar.gz (7.2 MB view details)

Uploaded Source

Built Distribution

If you're not sure about the file name format, learn more about wheel file names.

nucleation-0.1.110-cp312-cp312-manylinux_2_34_x86_64.whl (993.0 kB view details)

Uploaded CPython 3.12manylinux: glibc 2.34+ x86-64

File details

Details for the file nucleation-0.1.110.tar.gz.

File metadata

  • Download URL: nucleation-0.1.110.tar.gz
  • Upload date:
  • Size: 7.2 MB
  • Tags: Source
  • Uploaded using Trusted Publishing? No
  • Uploaded via: maturin/1.10.1

File hashes

Hashes for nucleation-0.1.110.tar.gz
Algorithm Hash digest
SHA256 d139eb2eae4c81cd46ccdd30f17485a0e5c06c44681ff2518c8b335db0de3671
MD5 671d6fda6472c96fa11a5e20a90b3f4e
BLAKE2b-256 ca34106042742cb36f913d77e4ff0c6e2397669227b2691eb260f256336ce9bb

See more details on using hashes here.

File details

Details for the file nucleation-0.1.110-cp312-cp312-manylinux_2_34_x86_64.whl.

File metadata

File hashes

Hashes for nucleation-0.1.110-cp312-cp312-manylinux_2_34_x86_64.whl
Algorithm Hash digest
SHA256 62e121695b22572160edd0a3ab6128af500a5d3281ecfaa74f425d527e03e15a
MD5 b86ef91db597b3fc510dfde95d8255a0
BLAKE2b-256 8107257ee8b709e825f17f94fbc0a1c31aec31363a473a54961a6f0e5fda3a8f

See more details on using hashes here.

Supported by

AWS Cloud computing and Security Sponsor Datadog Monitoring Depot Continuous Integration Fastly CDN Google Download Analytics Pingdom Monitoring Sentry Error logging StatusPage Status page