Synthesis & Logic Optimization · All levels

Mapping Debug: Inputs & Outputs

Inputs & Outputs for Mapping Debug.

Inputs and outputs contract

Inputs & Outputs for Mapping Debug focuses on failed mapping cases, rule override count, QoR regression root-cause time. 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 — Mapping Debug

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

Primary metric: failed mapping cases, rule override count, QoR regression root-cause time

Ownership map

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OWNERSHIP MAP — Mapping Debug

artifact              owner
----------------      -----------------
compile owner       synthesis owner
timing/power owner  CAD owner
cross-team review   library 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

Mapping debug isolates whether QoR regressions come from library views, constraints, or synthesis transforms, then applies minimal reversible fixes.

Metric: failed mapping cases, rule override count, QoR regression root-cause time