paper

Directed Information -covering: An Information-Theoretic Framework for Context Engineering

arXiv:2510.00079

Abstract

We introduce \textbf{Directed Information -covering}, a simple but general framework for redundancy-aware context engineering. Directed information (DI), a causal analogue of mutual information, measures asymmetric predictiveness between chunks. If , then suffices to represent up to bits. Building on this criterion, we formulate context selection as a -cover problem and propose a greedy algorithm with provable guarantees: it preserves query information within bounded slack, inherits and approximations from submodular set cover, and enforces a diversity margin. Importantly, building the -cover is \emph{query-agnostic}: it incurs no online cost and can be computed once offline and amortized across all queries. Experiments on HotpotQA show that -covering consistently improves over BM25, a competitive baseline, and provides clear advantages in hard-decision regimes such as context compression and single-slot prompt selection. These results establish DI -covering as a principled, self-organizing backbone for modern LLM pipelines.

15 pages, 6 tables, preprint

Directed Information $γ$-covering: An Information-Theoretic Framework for Context Engineering · wovepaper