Feyospace-v1: How the Cyber Mercury Seven Trained Frontier Cyber Models

📅 2026-09-08
📈 Citations: 0
Influential: 0
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🤖 AI Summary
本文提出一种数据为中心的框架,通过五个系统解决训练网络代理的成本和环境限制问题,提高模型在网络安全任务中的表现。
📝 Abstract
Training capable cyber agents is often treated primarily as a problem of model scale, yet open-weight post-training is constrained more directly by the cost of executable environments, reliable multi-turn supervision, and access to strong teachers. We present a data-centric framework that addresses these bottlenecks through five complementary systems: Choulea analyzes hidden reasoning signatures, SkyReal reduces teacher-sampling cost, Hongzwang bypasses API restrictions on teacher execution, PSBreakup restores capabilities weakened by model merging, and Kreator converts expert interventions into trainable reasoning. Our data engine constructs resettable coding, vulnerability, CTF, kernel-history, full-exploit, firmware, and device-backed environments. Candidate trajectories are retained only after execution verification and evidence auditing, yielding 164,269 trajectories for long-context supervised fine-tuning. The three checkpoints improve over their starting models by an average of 23.76% on the full CyberGym suite and 10.49% across the pooled CTF suites. As of September 1, 2026, Feyospace-s1 achieves a verified success rate of 63.24% and ranks 10th on the official CyberGym leaderboard, while all three checkpoints rank 1st among models at comparable parameter scales. To our knowledge, this is the first end-to-end demonstration that a seven-person independent team can train open-weight models with leading agentic cyber capability.
Problem

Research questions and friction points this paper is trying to address.

cyber agents
execution environment cost
multi-turn supervision
teacher models
Innovation

Methods, ideas, or system contributions that make the work stand out.

data-centric framework
hidden reasoning signatures
teacher-sampling cost reduction
API restrictions bypass
trainable reasoning
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