OliviaRossi/MiMo-NeoHorse-9B-AGSI

VISIONPricing:Input $0.431 / Cached $0.0862 / Output $1.12Concurrent Unit Cost:1Model Size:9BQuant:FP8Context Size:32kTool Calling:SupportedPublished:Sep 29, 2026License:mitArchitecture:Transformer0.0K Open Weights Featherless Exclusive Cold

OliviaRossi/MiMo-NeoHorse-9B-AGSI is a 9 billion parameter language model created by OliviaRossi, synthesized using Adaptive Geodesic Spectral Interpolation (AGSI). It fuses XiaomiMiMo/MiMo-V2.6-Distill-Qwen-9B, known for advanced SWE and reasoning, with TokenRhythm/NeoHorse-1-9B, an autonomous terminal and coding agent. This model is specifically designed for complex software engineering tasks, advanced reasoning, and autonomous coding applications, leveraging its unique fusion methodology.

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MiMo-NeoHorse-9B-AGSI Overview

MiMo-NeoHorse-9B-AGSI is a 9 billion parameter model developed by OliviaRossi, created through a novel Adaptive Geodesic Spectral Interpolation (AGSI) process. This unique synthesis method employs row-wise manifold SLERP, anti-phase conflict shielding, and spectral energy invariance to combine the strengths of two distinct base models.

Key Capabilities

  • Advanced Software Engineering (SWE) & Reasoning: Inherits capabilities from XiaomiMiMo/MiMo-V2.6-Distill-Qwen-9B, which is distilled for high-level SWE and complex reasoning tasks.
  • Autonomous Terminal & Coding Agent: Integrates functionalities from TokenRhythm/NeoHorse-1-9B (DeepReinforce Ornith-1.5), designed for autonomous operation within terminal environments and sophisticated coding tasks.
  • Pipelined Fusion: The AGSI technique allows for a synergistic combination of these specialized models, aiming for enhanced performance in their respective domains.

Good For

  • Developers and researchers focused on automated software development.
  • Applications requiring advanced logical reasoning and problem-solving.
  • Use cases involving autonomous code generation and execution within terminal environments.