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arXiv · 2608.09761

Certified Split Windows for Parallel Lexing: Recovering Boundaries Where No Byte Certifies

Abstract

A certified split point lets a parallel lexer cut unlexed input at a single byte with the serial token stream provably preserved, but several conventional token sets in the predecessor's controlled study certify no byte once string, comment, or whitespace-run forms are included (arXiv:2608.03473). We generalize from a byte to a bounded window: a byte string after which the position where the current token began is known, regardless of surrounding context. We certify the directly usable form of that recovery: the token covering the window's final byte begins at the reported origin. The certificate is conditional on occurrence and may be vacuous; every applicability figure counts only windows carrying an asserted completely tokenizable occurrence witness. We give a conservative model of a maximal-munch scanner's possible histories across a window, prove it sound, and decide reachability in that model exactly by exhausting a finite quotient of its reachable configurations, so every answer of the unbudgeted procedure is either a certified window with its origin or a proof that the model admits none. Within the stated flat, completely-tokenizable scope, model-positive answers are semantic certificates; negatives are relative to the conservative model, which deliberately refuses some windows a greedy scanner would allow. A token set in which some token matches the empty string is decided through its positive-width equivalent, the same automaton entered through a start state that does not accept, which changes no scan. In a sample of 400 random token sets, 322 of the 337 sets certifying no byte gain a witnessed window, with zero inconclusive searches, and every exact-empty row of the predecessor's study gains a witnessed window of two to four bytes. The analysis runs once after automaton construction, using only the compiled tables and no input.

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BibTeXRIS

Nicklas Nidhögg. 2026-09-16. Certified Split Windows for Parallel Lexing: Recovering Boundaries Where No Byte Certifies. https://arxiv.org/abs/2608.09761

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