Xid 61 (Internal Micro-Controller Breakpoint)
Often occurs randomly when the GPU utilizes aggressive power saving and attempts a rapid transition from its lowest state (PCIe Gen 1) to a high-performance state (Gen 3/4).
Often occurs randomly when the GPU utilizes aggressive power saving and attempts a rapid transition from its lowest state (PCIe Gen 1) to a high-performance state (Gen 3/4).
- Root cause
- Aggressive power saving modes (P8) causing unstable transitions when a sudden compute load is applied.
- Recommended fix
- Force the GPU clock frequencies to stay elevated by locking them (e.g., sudo nvidia-smi -lgc 600,2130), bypassing the unstable P8 power state entirely.
- How Denpex helps
- Denpex matches Xid 61 (Internal Micro-Controller Breakpoint) across every rank in a distributed run and reports which rank failed first, so you act on the initiating node instead of the loudest one.
What this failure is
Xid 61 (Internal Micro-Controller Breakpoint) is a Hardware failure seen during ML training runs. Often occurs randomly when the GPU utilizes aggressive power saving and attempts a rapid transition from its lowest state (PCIe Gen 1) to a high-performance state (Gen 3/4). Common tags: Xid 61, User Report.
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Why it happens (the mechanism)
Aggressive power saving modes (P8) causing unstable transitions when a sudden compute load is applied. Taken together, these mechanisms explain why the failure is reproducible, why it tends to surface on specific workloads or scales, and why generic mitigation attempts often fall short without addressing the underlying cause.
What you'll observe
- The PMU (Power Management Unit) firmware hits a breakpoint during rapid power state transitions.
Common symptoms and what they mean
| Symptom | Why it happens |
|---|---|
| NVRM: Xid (PCI:0000:XX:00): 61, pid=XXXX, name=python | Aggressive power saving modes (P8) causing unstable transitions when a sudden compute load is applied. |
Which systems are affected
- Hardware
- Drivers
How to confirm this is the problem
Use this checklist to test the hypothesis against a small reproduction. No single line proves the root cause, so preserve the preceding events and compare one variable at a time.
- ✓Reproduce the failure from a clean checkpoint/seed: the symptom must appear without warm-up state from a previous run.
- ✓Verified signal present: NVRM: Xid (PCI:0000:XX:00): 61, pid=XXXX, name=python
- ✓A targeted fix from the "How to fix it" section eliminates or substantially reduces the symptom within one validation pass.
The fix and the prevention pattern
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Xid 61 in context
Xid 61 is one of a small set of codes the NVIDIA driver uses to report GPU faults, and the number is most of the diagnosis: it tells you whether you are looking at your own code, the driver, or a board that needs replacing.
Compare every Xid code side by sideDiagnose this failure in VS Code
Select the traceback or open the failed terminal, then run Denpex locally to see the initiating rank, collateral failures, exact fix, and verification command without uploading the log.
Install the free VS Code extensionRoot cause
- Aggressive power saving modes (P8) causing unstable transitions when a sudden compute load is applied.
The fix and how to prevent it
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Don't just read the fix, diagnose your run
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