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GitHub - josephg/diamond-types: The world's fastest CRDT. WIP.
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Diamond Types

📦 Cargo package

📖 Documentation on docs.rs

🇳 NodeJS package on npm (via WASM)

🌐 Web browser package on npm (via WASM)

This repository contains a high performance rust CRDT for text editing. This is a special data type which supports concurrent editing of lists or strings (text documents) by multiple users in a P2P network without needing a centralized server.

This version of diamond types only supports plain text editing. Work is underway to add support for other JSON-style data types. See the more_types branch for details.

This project was initially created as a prototype to see how fast a well optimized CRDT could be made to go. The answer is really fast - faster than other similar libraries. This library is currently in the process of being expanded into a fast, feature rich CRDT in its own right.

For detail about how to use diamond types, see the package level documentation at docs.rs.

Note the package published to cargo is quite out of date, both in terms of API and performance.

For much more detail about how this library works, see:

As well as being lightning fast, this library is also designed to be interoperable with positional updates. This allows simple peers to interact with the data structure via operational transform.

Internals

Each client / device has a unique ID. Each character typed or deleted on each device is assigned an incrementing sequence number (starting at 0). Each character in the document can thus be uniquely identified by the tuple of (client ID, sequence number). This allows any location in the document to be uniquely named.

The internal data structures are designed to optimize two main operations:

  • Text edit to CRDT operation (Eg, "user A inserts at position 100" -> "user A seq 1000 inserts at (B, 50)")
  • CRDT operation to text edit ("user A seq 1000 inserts at (B, 50)" -> "insert at document position 100")

Much more detail on the internal data structures used is in INTERNALS.md.

LICENSE

This code is published under the ISC license.

Acknowledgements

This work has been made possible by funding from the Invisible College.