REMORY: Learning Residual Memory for Context Compaction
Abstract
Long-horizon agents compact their history to continue within a finite context window, but a textual summary alone may not support every subsequent decision. We introduce REMORY, a neural memory network that supplements the summary with a bounded sequence of soft memory tokens. Given the history and summary, the network learns to generate tokens that help a frozen LLM approximate the continuation it would produce with the full history. The tokens are conditioned on the summary and appended after it, forming an analogue of a residual connection along the sequence dimension. On SummHay, REMORY improves source attribution at nearly unchanged insight coverage and approaches the full-context joint score using only 5.2% of the input positions. Across long-horizon agent benchmarks, Qwen3.8-27B and GLM-5.3-Flash show consistent gains with residual memory. Both models also exhibit substantially fewer repeated tool outputs and tool errors on BrowseComp and Terminal-Bench 2.1.
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Remory appends learned soft memory tokens to a compacted summary. On Qwen3.8-27B and GLM-5.3-Flash, it improves long-horizon benchmark performance while reducing repeated tool outputs and tool errors.
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mocoV3/GLM-5.3-Flash-REMORY-1.24B
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