CDC / RDC · All levels
Multi-bit Crossing Strategies: Debug Playbook
Debug Playbook for Multi-bit Crossing Strategies.
Debug playbook
Debug Playbook for Multi-bit Crossing Strategies focuses on coherency guarantee coverage, data corruption incidents, protocol overhead. The goal is to convert issue observations into mechanism-backed closure decisions.
CDC/RDC debug is about finding the earliest violated assumption. Start with intent and context before touching low-level signal traces.
Root-cause tree
ROOT-CAUSE TREE — Multi-bit Crossing Strategies
crossing failure observed
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reproducible?
/ \
no yes
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stress mode classify issue
expansion / | \
synchronizer protocol reset/reconvergence
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MTBF fit liveness release orderingFreeze RTL/config/tool tags for reproducibility.
Reproduce in smallest mode/reset/traffic scenario.
Classify mechanism: synchronizer, protocol, reset, reconvergence, or governance.
Collect one decisive artifact that proves the class.
Pick minimal fix or bounded waiver.
Run targeted and full-regression matrices before closure.
Review memo template
STAFF CDC/RDC REVIEW MEMO — Reconvergence & Gray Coding / Multi-bit Crossing Strategies
1. Symptom
- Failing metric: coherency guarantee coverage, data corruption incidents, protocol overhead
- Context: <mode, traffic, reset state, corner>
- Risk class: <critical/high/medium/low>
- Database tags: <rtl, config, assertions, tool setup>
2. Mechanism hypothesis
- Primary mechanism: Bundled-data handshakes, FIFOs, source-synchronous strobes, and encoded protocols each trade latency, area, and proof complexity.
- Competing hypothesis: <false warning / protocol bug / reset order / reconvergence>
- Missing evidence: <assertion, waveform, formal proof, stress replay>
3. Proposed action
- Minimal reversible change: <sync/protocol/reset/waiver decision>
- Expected metric movement: <critical count delta>
- Regression risk: throughput, boot, latency, mode interaction
4. Signoff
- Re-run artifact: strategy decision matrix, interface timing contract, verification plan
- Required owners: architecture owner, RTL owner, CDC lead
- Final decision: fix, bounded waiver, or escalateCDC/RDC deep dive
Reconvergence failures are timing + logic coupling hazards.
Concept diagram
RECONVERGENCE
branch A sync -- -> merge logic -> illegal combination window
branch B sync --/Metric graph
HAZARD REPRODUCTION RATE
before fix: 1/2000 runs
after fix: 0/100000 runsReports and artifacts
reconvergence warnings
gray transition checks
hazard replay traces
multi-bit strategy map
Mini case study
Gray pointer was legal, but downstream merge decoded mixed-era values during burst stress.
Debug branches
Trace fanin cones
align event windows
verify decode assumptions
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.
Principal CDC/RDC review addendum
Bundled-data handshakes, FIFOs, source-synchronous strobes, and encoded protocols each trade latency, area, and proof complexity.
Metric: coherency guarantee coverage, data corruption incidents, protocol overhead