arXiv Artificial Intelligence

Dion3: Full-Stack Orthogonal Updates

Dion3: Full-Stack Orthogonal Updates

Quick summary

arXiv:2608.11612v1 Announce Type: cross Abstract: The Muon optimizer incurs a significant overhead cost due to its cubic-time Newton-Schulz orthogonalization step. When weights are sharded, communication overhead compounds this computational cost, eroding the benefits of Muon in many settings. We present Dion3, a revision of Muon that targets this overhead at every level of the stack. Our Gram Newton-Schulz algorithm reduces the FLOP cost of orthogonalization, our CuteDSL kernels accelerate it by exploiting symmetry, and our megabatching strategy reduces communication overhead. Moreover, we pr

Key takeaways

  • arXiv:2608.11612v1 Announce Type: cross Abstract: The Muon optimizer incurs a significant overhead cost due to its cubic-time Newton-Schulz orthogonalization step.
  • When weights are sharded, communication overhead compounds this computational cost, eroding the benefits of Muon in many settings.
  • We present Dion3, a revision of Muon that targets this overhead at every level of the stack.

Why it matters

The importance of “Dion3: Full-Stack Orthogonal Updates” will be measured by what changes in practice. User behavior, access conditions, verifiable performance and responsible-use outcomes are the signals worth following.

Kaynak sitede devamını oku: arXiv Artificial Intelligence ↗