CDC / RDC · All levels

Multi-bit Crossing Strategies: Mechanism

Mechanism for Multi-bit Crossing Strategies.

Mechanism to understand

Mechanism 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.

Bundled-data handshakes, FIFOs, source-synchronous strobes, and encoded protocols each trade latency, area, and proof complexity. Treat each warning as a behavior contract violation candidate, then prove whether it is real risk or tool noise.

  • Classify crossing type and data criticality.

  • State source/destination clock or reset relationship.

  • Identify when protocol semantics dominate topology choice.

System flow

diagram
CDC/RDC SIGNOFF FLOW — Multi-bit Crossing Strategies

crossing inventory + reset map
          |
          v
crossing classification (level/pulse/bus/reset)
          |
          v
structure + protocol + reset checks
          |
          v
critical issues + waiver review
          |
          v
fix / validate / regress / signoff

Strategy matrix

diagram
bundle+valid/ready  : moderate latency, strong coherency
async FIFO         : high robustness, area cost
source strobe      : throughput friendly, timing contract heavy
token protocol     : explicit ordering, more control logic

Layer responsibilities

diagram
CDC/RDC OWNERSHIP LAYERS — Multi-bit Crossing Strategies

layer                 owns                            common failure
------------------    -----------------------------   -----------------------------
design intent         crossing architecture           wrong topology selected
protocol semantics    req/ack, fifo, ordering        liveness/deadlock bugs
reset behavior        assert/deassert sequencing      boot instability
analysis setup        tool rules + waivers            false confidence
signoff governance    risk acceptance + dashboard     stale critical waivers

CDC/RDC deep dive

Reconvergence failures are timing + logic coupling hazards.

Concept diagram

diagram
RECONVERGENCE

branch A sync --                 -> merge logic -> illegal combination window
branch B sync --/

Metric graph

diagram
HAZARD REPRODUCTION RATE

before fix: 1/2000 runs
after fix: 0/100000 runs

Reports 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.

Mechanism deep dive

Bundled-data handshakes, FIFOs, source-synchronous strobes, and encoded protocols each trade latency, area, and proof complexity.