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Graph, Loop, and Harness Engineering for Zero-Trust Agentic Data Engineering and Analytical Processing

A new arXiv paper (2609.29668v1) presents two zero-trust frameworks for large language model agents that automate cloud data workflows: Zero-Trust Agentic Data Engineering, which generates, deploys and verifies complete cloud data-engineering solutions from natural-language tasks with completion conditioned on repository, deployment, runtime and policy evidence, and Zero-Trust Agentic OLAP, which permits production promotion only after validation and evidence-bound approval and releases analytical answers only after Same-Snapshot Execution, Exact Result Equivalence, deterministic grounding and reflection. Both frameworks share three abstractions — graph engineering for evidence-gated workflow structure, loop engineering for bounded recovery, and agent-harness engineering for zero-trust execution — and are evaluated under nominal execution, controlled failures, bounded recovery and policy-constrained conditions, measuring verified completion, recovery, authorization enforcement, production promotion and verified OLAP execution.

by read1 min views1 publishedSep 25, 2026

arXiv:2609.29668v1 Announce Type: new Abstract: Large language model agents increasingly automate data workflows, but end-to-end cloud data engineering and analytical execution require reliable coordination across code, data, infrastructure, and runtime environments. We present two zero-trust frameworks. Zero-Trust Agentic Data Engineering generates, deploys, and verifies complete cloud data-engineering solutions from natural-language tasks, with completion conditioned on repository, deployment, runtime, and policy evidence. Zero-Trust Agentic OLAP combines governed Data Preparation with verified Online Analytical Processing (OLAP), permitting production promotion only after validation and evidence-bound approval, and releasing analytical answers only after Same-Snapshot Execution, Exact Result Equivalence, deterministic grounding, and reflection. Both frameworks share three abstractions: graph engineering for evidence-gated workflow structure, loop engineering for bounded recovery, and agent-harness engineering for zero-trust execution. We evaluate both frameworks under nominal execution, controlled failures, bounded recovery, and policy-constrained conditions, measuring verified completion, recovery, authorization enforcement, production promotion, and verified OLAP execution.

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