Synthesis & Logic Optimization · All levels

Structuring & Buffering: Inputs & Outputs

Inputs & Outputs for Structuring & Buffering.

Inputs and outputs contract

Inputs & Outputs for Structuring & Buffering focuses on logic depth, fanout violations, buffer count, slew violations. The goal is to connect observed QoR movement to mechanism, ownership, and regression risk.

Synthesis closure fails when teams optimize against different assumptions. Treat these artifacts as a signed handoff contract.

diagram
INPUTS
  - RTL tag and compile switches
  - SDC / policy constraints
  - Library and operating views
  - Optional physical estimates (topo/congestion)

OUTPUTS
  - QoR timing/area/power reports
  - transform/mapping summaries
  - owner-tagged closure memo
  - regression matrix verdict

Flow sequence

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SYNTHESIS FLOW — Structuring & Buffering

RTL + constraints
      |
      v
elaboration + checks
      |
      v
mapping + optimization
      |
      v
QoR reports (timing/area/power)
      |
      v
incremental ECO + regression

Primary metric: logic depth, fanout violations, buffer count, slew violations

Ownership map

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OWNERSHIP MAP — Structuring & Buffering

artifact              owner
----------------      -----------------
compile owner       synthesis owner
timing/power owner  PD owner
cross-team review   STA owner

Every QoR movement needs a named owner before ECO.

Synthesis deep dive

Mapping converts logic intent into real PPA outcomes.

Concept diagram

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MAPPING LOOP

boolean net -> library mapping -> optimization -> report and iterate

Metric graph

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MAPPING IMPACT

depth reduction   ███████
fanout cleanup    █████
runtime overhead  ███

Reports and artifacts

  • mapping summary

  • critical path cell list

  • fanout/slew report

  • library coverage

Mini case study

Cell-heavy critical path improved after restructuring, while blanket buffering had worsened power.

Debug branches

  • Depth issue -> structure

  • Fanout issue -> buffers

  • Library mismatch -> view audit

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

Structuring rewrites logic cones and buffering controls transition/fanout; both directly affect timing, area, and power in different corners.

Metric: logic depth, fanout violations, buffer count, slew violations