CDC / RDC · All levels
Reset Debug Playbook: Mechanism
Mechanism for Reset Debug Playbook.
Mechanism to understand
Mechanism for Reset Debug Playbook focuses on reset-related failure reproduction time, first-pass root-cause hit rate. The goal is to convert issue observations into mechanism-backed closure decisions.
Reset bugs are often timing-sequence interactions across power, clocks, and reset domains; debug must isolate order, polarity, and release windows. Treat each warning as a behavior contract violation candidate, then prove whether it is real risk or tool noise.
Classify crossing type and data criticality.
State source/destination clock or reset relationship.
Identify when protocol semantics dominate topology choice.
System flow
CDC/RDC SIGNOFF FLOW — Reset Debug Playbook
crossing inventory + reset map
|
v
crossing classification (level/pulse/bus/reset)
|
v
structure + protocol + reset checks
|
v
critical issues + waiver review
|
v
fix / validate / regress / signoffReset failure timeline
t0 reset assert
t1 clock ungated
t2 reset release domain A
t3 reset release domain B
t4 first traffic
Correlate failure to exact release ordering.Layer responsibilities
CDC/RDC OWNERSHIP LAYERS — Reset Debug Playbook
layer owns common failure
------------------ ----------------------------- -----------------------------
design intent crossing architecture wrong topology selected
protocol semantics req/ack, fifo, ordering liveness/deadlock bugs
reset behavior assert/deassert sequencing boot instability
analysis setup tool rules + waivers false confidence
signoff governance risk acceptance + dashboard stale critical waiversCDC/RDC deep dive
Reset release ordering is a first-order reliability contract.
Concept diagram
RESET RELEASE FLOW
assert global -> clocks stable -> sync release per domain -> first transactionMetric graph
BOOT STABILITY
passes per 1k boots: 920 -> 980 -> 999Reports and artifacts
reset dependency matrix
RDC warning classes
boot stress logs
waiver aging
Mini case study
Domain B released before producer A was valid, causing rare startup deadlock.
Debug branches
Correlate reset and clock timelines
verify async assert/sync release
exercise skewed release tests
Senior review question
Ask: what evidence proves this risk is closed for silicon, not just tool-clean?
Key takeaways
State crossing class, assumptions, and owner with every issue.
Run structural and dynamic regressions after each fix.
Common pitfalls
Treating all warnings as equivalent risk.
Waiving issues without containment evidence.
Skipping reset and reconvergence stress after CDC fixes.
Mechanism deep dive
Reset bugs are often timing-sequence interactions across power, clocks, and reset domains; debug must isolate order, polarity, and release windows.