Ten elementary cellular automata rules, found by exhaustive search, are used in a 4x4 error-scoring scheme claimed to give unique, evenly distributed, partially invertible hashes, with the proof of uniqueness left as an assertion.
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Elementary Cellular Automata as Non-Cryptographic Hash Functions
Ten elementary cellular automata rules, found by exhaustive search, are used in a 4x4 error-scoring scheme claimed to give unique, evenly distributed, partially invertible hashes, with the proof of uniqueness left as an assertion.