The objective is a tall order. The quantum-resistant cryptographic data needed to transparently publish TLS certificates is roughly 40 times bigger than the classical cryptographic material used today. A typical X.509 certificate chain used today comprises six elliptic curve signatures and two EC public keys, each of them only 64 bytes. This material can be cracked through the quantum-enabled Shor’s algorithm. The full chain is roughly 4 kilobytes. All this data must be transmitted when a browser connects to a site.
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Regexes display a typical long-tail distribution, with boring regexes dominating. The two most common regexes, representing 62 962 778, 42% of all 150 012 734 collected patterns, are both equivalent to each other and to ; /[0-9]*/ and \d*. In fact, all of top 10 is redundant with existing input types: