RISC-V Design · All levels

Hazard Detection Basics in Decode: Step-by-Step Walkthrough

Step-by-Step Walkthrough for Hazard Detection Basics in Decode.

Step-by-step walkthrough

Step-by-Step Walkthrough for Hazard Detection Basics in Decode is anchored on RAW stall cycles per kilo-instruction and percentage of avoidable stalls removed by forwarding.. Convert observations into mechanism-backed decisions with explicit ownership.

  1. Define failing workload and acceptance threshold.

  2. Capture reproducible metadata and evidence snapshot.

  3. Classify dominant mechanism path.

  4. Propose minimal reversible change.

  5. Validate cross-workload and corner behavior.

  6. Document owner and rollout decision.

Reference path

diagram
RISC-V PIPELINE DIAGRAM - Hazard Detection Basics in Decode

PC -> IF -> ID -> EX -> MEM -> WB
      |     |      |      |      |
  i-cache decode  ALU/BR  LSU    regfile write
              \   |
               +-> branch resolve + redirect

Hot paths:
  - branch + load-use dependencies in ID/EX
  - memory latency stretching MEM stage
  - writeback arbitration for integer/vector units

Focus: keep control hazards predictable