SoC Integration · All levels
Reset-Domain Integration Debug: Debug Playbook
Debug Playbook for Reset-Domain Integration Debug.
Debug playbook
Debug Playbook for Reset-Domain Integration Debug focuses on reset-domain escape count, debug turnaround for boot hangs. The goal is to map symptoms to boundary contracts, owner actions, and regression-proof closure.
Integration debug is a search for the first contract break, not the loudest downstream failure signature.
Root-cause tree
ROOT-CAUSE TREE — Reset-Domain Integration Debug
reset-domain escape count, debug turnaround for boot hangs regressed
|
same baseline manifest?
/ \
no yes
| |
version/collateral real integration
mismatch contract break
/ \ |
inputs env isolate domain
drift drift and first failureFreeze baseline manifest and owner matrix.
Find first failing boundary and earliest reproducible symptom.
Classify failure type: contract, collateral, implementation, or governance.
Prove with one reduced experiment.
Apply smallest owner-controlled fix.
Run focused verification and full cross-domain regression.
Review memo template
STAFF SOC REVIEW MEMO — Clock & Reset Architecture / Reset-Domain Integration Debug
1. Symptom
- Watched metric: reset-domain escape count, debug turnaround for boot hangs
- Failing integration boundary: <domain/interface>
- Baseline manifest: <hash/tag>
- Repro setup: <sim/emulation/fpga/silicon + fw tag>
2. Mechanism hypothesis
- Primary mechanism: Reset-domain debug traces dependency chains between PLL lock, power-good, reset deassertion, and software initialization ordering.
- Competing hypothesis: <contract drift, collateral mismatch, implementation bug, governance gap>
- Missing evidence: <trace, report, checklist, signoff artifact>
3. Proposed action
- Minimal reversible fix: <contract update, config patch, RTL fix, process guardrail>
- Expected metric movement: <delta and scope>
- Regression risk: timing, power, functionality, schedule
4. Signoff
- Re-run artifact: reset-domain trace, boot timeline, cross-domain dependency log
- Required owners: bring-up lead, integration lead, firmware owner
- Final decision: close, waive (bounded), or escalateSoC deep dive
Clock/reset assumptions must be globally consistent across functional and test modes.
Concept diagram
CLOCK/RESET FLOW
pll lock -> clock enable -> reset release -> domain readyMetric graph
BOOT STABILITY
stable boots ████████
reset hangs ███Reports and artifacts
clock architecture report
reset release timing
mode matrix
boot trace summary
Mini case study
Intermittent boot hang traced to one domain releasing reset before dependent clock was stable.
Debug branches
Check mode-specific constraints
Trace reset dependencies
Correlate firmware sequencing
Senior review question
Ask: what baseline, owner, and artifact prove this topic is truly closed?
Key takeaways
State baseline manifest and owner with every closure metric.
Run cross-domain regression after every top-level fix.
Common pitfalls
Comparing results across different manifests.
Unowned issues slipping through review cycles.
Waiving risks without expiry and validation plan.
Principal SoC review addendum
Reset-domain debug traces dependency chains between PLL lock, power-good, reset deassertion, and software initialization ordering.
Metric: reset-domain escape count, debug turnaround for boot hangs