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* [https://github.com/czielinski/secmultipartycomp/blob/master/slides/sec_multi_party_comp.pdf Introduction to SMC] Christian Zielinski.
* [http://www.sepia.ee.ethz.ch/ SEPIA] A java library for SMC using secret sharing.
* [https://github.com/mahdiz/mpclib MPCLib: Multi-Party Computation Library] — A library written in C# and C++ that implements several building blocks required for implementing secure multi-party computation protocols
* [https://web.archive.org/web/20061230075325/http://www.theiia.org/ITAudit/index.cfm?act=itaudit.archive&fid=216 The God Protocols] Nick Szabo (archived).
* [https://web.archive.org/web/20110105121420/http://alexandra.dk/uk/Projects/Pages/SIMAP.aspx The SIMAP project]; Secure Information Management and Processing (SIMAP) is a project sponsored by the Danish National Research Agency (archived).
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* [http://www.brics.dk/SMCL/ Secure Multiparty Computation Language] - project for development of a '___domain specific programming language for secure multiparty computation' and associated cryptographic runtime.
* [https://www.win.tue.nl/~berry/mpyc/ MPyC]: Secure Multiparty Computation in [[Python (programming language)|Python]] (and [[Project Jupyter|Jupyter notebooks]]) — Open-source package for MPC using a customized type of Python coroutines, supporting advanced applications such as ID3 decision trees, linear programming, CNN/MLP neural networks, AES, one-way hash chains, and many more. Launched in May 2018.
▲* [https://github.com/mahdiz/mpclib MPCLib: Multi-Party Computation Library] — A library written in C# and C++ that implements several building blocks required for implementing secure multi-party computation protocols. MPCLib has a discrete-event simulation engine that can be used for simulating MPC protocols in virtual networks.
* [https://doi.org/10.1007%2F978-3-642-02617-1_42 Virtual Parties in SMC] A protocol for Virtual Parties in SMC (Secure Multi Party computation)
* [https://github.com/OpenCryptoProject/Myst Myst Project] - JavaCard Applet implementing Secure Multiparty Key Generation, Signing and Decryption.
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