Low Power Verification · All levels
Debugging Retention Corruption: Review Checklist
Review Checklist for Debugging Retention Corruption.
Review checklist
Review Checklist for Debugging Retention Corruption is anchored on Time-to-first-divergence localization and percentage of corruption bugs resolved with deterministic reproduction.. Convert observations into mechanism-backed and owner-bound actions.
Scope, mode, seed, and metadata are explicit.
Mechanism classification is evidence-backed.
Ownership and rollback boundary are documented.
Validation matrix includes deterministic replay checks.
Owners signed: low-power debug owner, silicon validation owner, power architecture owner, firmware owner.
Low-power verification deep dive
Retention closure requires proving end-to-end state lifecycle through save, off, and restore windows.
Concept diagram
RETENTION LIFECYCLE
save request -> state capture -> power off -> power on -> restore -> traffic resumeMetric graph
RETENTION STABILITY
restore mismatch █████
save timing defects ████
stable wake cycles ███████Metrics and artifacts to collect
retention save/restore timing report
pre/post state diff matrix
multi-cycle retention stress summary
state-loss bug trend by mode
Mini case study
A corruption issue persisted until retention checks compared multi-cycle state snapshots rather than single wake events.
Debug branches
Track save acknowledgement against actual state capture.
Validate restore completion before functional traffic resumes.
Run repeated sleep/wake cycles to expose drift.
Senior review question
Ask: what exact low-power transition boundary failed first, and which artifact proves the closure claim reproducibly?
Key takeaways
Tie each LPV claim to a concrete transition boundary and one proving artifact.
Prefer minimal reversible fixes with explicit owner and rollback criteria.
Common pitfalls
Treating power-aware failures as random before boundary classification.
Waiving X-prop failures before proving impact and root cause.
Declaring closure without deterministic replay across key modes.
Principal LPV review addendum
Debugging Retention Corruption should be reviewed as a transition integrity system, not just isolated checks.
Use Time-to-first-divergence localization and percentage of corruption bugs resolved with deterministic reproduction. as alarm and Corruption triage packet with first-divergence trace, root-cause taxonomy, and regression guardrail checklist. as proof.
Retention closure requires proving save, off, and restore phases as one lifecycle with explicit handshake timing. Closure quality comes from reproducible evidence and explicit owners.