Synthesis & Logic Optimization · All levels
Retiming Fundamentals: Debug Playbook
Debug Playbook for Retiming Fundamentals.
Debug playbook
Debug Playbook for Retiming Fundamentals focuses on retimed register count, critical path depth change, equivalence pass rate. The goal is to connect observed QoR movement to mechanism, ownership, and regression risk.
Synthesis debug finds the first causal drift, not the loudest downstream symptom.
Root-cause tree
ROOT-CAUSE TREE — Retiming Fundamentals
retimed register count, critical path depth change, equivalence pass rate regressed
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same RTL/constraints tag?
/ \
no yes
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input drift transform side-effect
/ \ / \
SDC libs mapping physical estimate
diff diff choice mismatchFreeze baseline and regressed run manifests.
Verify RTL/SDC/library deltas before transform tuning.
Classify issue: constraints, mapping choice, physical estimate, or ECO side effect.
Pick one minimal reversible change.
Re-run full timing/area/power checks with ownership signoff.
Review memo template
STAFF SYNTHESIS REVIEW MEMO — Datapath & Retiming / Retiming Fundamentals
1. Symptom
- Watched metric: retimed register count, critical path depth change, equivalence pass rate
- Affected compile run: <tag/build ID>
- Impacted path/class: <critical group / power lane / area lane>
- Database tags: <RTL, SDC, libs, switches>
2. Mechanism hypothesis
- Primary mechanism: Retiming moves registers across combinational logic to rebalance stage delay while preserving functionality under reset and enable constraints.
- Competing hypothesis: <constraint drift, mapping choice, physical estimate mismatch>
- Missing evidence: <report diff, dashboard trend, ownership board>
3. Proposed action
- Minimal reversible change: <constraint patch, compile knob, ECO cell move>
- Expected movement: <timing / area / power delta>
- Regression risk: hold, power spike, leakage drift, formal mismatch
4. Signoff
- Re-run artifact: retiming report, stage-depth histogram, equivalence log
- Required owners: synthesis owner, formal owner, STA owner
- Final decision: merge, rollback, or escalateSynthesis deep dive
Datapath and retiming gains are only real if formal and timing remain clean.
Concept diagram
DATAPATH + RETIME
operator inference -> stage balancing -> formal proof -> QoR validationMetric graph
FREQUENCY VS LATENCY
Fmax gain ████████
latency cost ████Reports and artifacts
retiming report
datapath inference log
equivalence status
latency impact sheet
Mini case study
Retiming met frequency target, but missing formal hooks delayed closure by two days.
Debug branches
Check retime blockers
Formal first for aggressive moves
Compare with pipeline option
Senior review question
Ask: what evidence proves this QoR move is real and stable?
Key takeaways
State exact run context (RTL, SDC, libs, switches) with every QoR claim.
Re-run timing, area, and power regressions after each synthesis ECO.
Common pitfalls
Comparing runs with mismatched constraints or library views.
Timing-only fixes that violate power or area budgets.
Skipping equivalence checks after structural changes.
Principal synthesis review addendum
Retiming moves registers across combinational logic to rebalance stage delay while preserving functionality under reset and enable constraints.
Metric: retimed register count, critical path depth change, equivalence pass rate