agentsclimarketplace

Reference driven rohd

Skill Midstall/claude-for-hardware/skills/reference-driven-rohd

Claude Code skills for hardware design, validation, and bring-up

Install
npx -y skills add Midstall/claude-for-hardware --skill reference-driven-rohd

Assembled from the repository path, not quoted from the project. Check it against their README if it does not work.

One thing to look at

  • 7 stars7 stars. Stars are a popularity signal and not a quality one, but at this level it is likely that nobody has read this closely except its author, and you would be relying on your own review.

What its author says it does

Copied from the file, not written here

Use when implementing a hardware block, protocol, peripheral, or ISA feature in ROHD and you should ground it in the authoritative spec, existing reference implementations, and reusable libraries you fetch first, instead of writing it from memory

SKILL.md

5.7 KB, as published. Nobody here has run it

Reference-Driven ROHD

Overview

Writing a protocol or peripheral from memory is how you ship a design that is subtly wrong: a reserved bit in the wrong place, a handshake that almost matches the spec, an edge case the standard calls out that you never saw. The fix is cheap and boring: get the real sources first, then implement against them.

Core principle: Before writing custom ROHD, fetch the authoritative spec, the existing reference implementations, and any reusable library that already solves part of the problem. Implement from primary sources, not from recall. The spec is the oracle, the references show the behavior, the library saves the parts you should not rewrite.

When to Use

  • Implementing a standardized block (a bus, a UART, an SPI controller, a CRC, an ECC, a CSR file, an ISA extension)
  • Building something that must interoperate with hardware or software you do not control
  • You are about to write RTL from your own memory of how the protocol works
  • A datasheet, RFC, ISA manual, or vendor spec exists for what you are building

Skip for genuinely novel internal logic that has no external spec and no prior art.

Fetch The Sources First

Do this before writing a line of RTL. Three buckets, in order:

  1. The authoritative spec. The actual standard, datasheet, or ISA manual, not a blog summary. RISC-V unprivileged/privileged manuals, the Wishbone B4 spec, a part's datasheet PDF, the protocol's RFC. Use WebFetch/WebSearch to pull it, and note the exact version and section numbers. A spec you cite by section is a spec you can be held to.
  2. Existing reference implementations. Other HDL (Verilog/Chisel/SpinalHDL/migen), a C model, a vendor reference, an emulator. Clone or fetch them to read the behavior, especially the corner cases and reset values. These show you what the spec leaves ambiguous and how real implementations resolved it.
  3. Reusable libraries. Check rohd_hcl and existing Midstall ROHD (River, Harbor) before writing anything new. A FIFO, ECC, ready/valid handshake, rotator, or arbiter is probably already there, tested. Compose it; do not reinvent it.

If you cannot find a source for something the block needs, that gap is the first thing to resolve, not to guess past.

Build A Spec-To-RTL Map

Turn the fetched spec into a checklist before implementing:

  • List every field, register, state, and transition the spec defines, each tagged with its spec section.
  • Note reset values, reserved bits, and the must/should/may distinctions explicitly. Reserved is not "do whatever"; the spec usually says read-zero or preserve.
  • Mark the edge cases the spec calls out (wrap, overflow, back-pressure, error responses). These are the ones memory drops.
  • Each item becomes something the implementation handles and a test asserts. A spec line with no corresponding test is a line you are trusting to luck.

Reference Implementations Inform, They Do Not Get Pasted

You read references to understand behavior, then write your own clean ROHD.

  • Provenance matters for silicon. Do not paste code whose license is incompatible with the project into a clean design. Read it, understand the behavior, reimplement it in ROHD. Reimplementation from understanding is clean; copy-paste carries the license with it.
  • A reference shows you the timing and the corner cases. Your job is to express that behavior in idiomatic ROHD with build-time-validated config, per hdl-module-design.
  • When references disagree with each other, the spec breaks the tie. When a reference disagrees with the spec, the reference may be buggy or may know something the spec implies; dig until you know which.

Turn The Reference Into A Golden Test

The reference implementation or C model you fetched is not just documentation, it is a verification oracle.

  • Run your ROHD DUT and the reference against the same stimulus and compare, the differential-verification pattern. The reference becomes the golden model.
  • If the reference is a C model or emulator, drive both with the same vectors and diff the outputs cycle-relevant signals.
  • Cover every item from the spec-to-RTL map, including the reserved-bit and error-response cases the reference exercises.

Red Flags

SmellDo instead
"I know how SPI works, I'll just write it"Fetch the datasheet and an existing controller first
Implementing a CRC/ECC/FIFO from scratchCheck rohd_hcl and existing ROHD first
Citing the protocol from memoryCite the spec by version and section number
Pasting GPL/incompatible RTL into a clean designRead it, reimplement the behavior cleanly in ROHD
Reserved bits left to "whatever the tools do"Implement read-zero/preserve as the spec states
No golden model when a reference existsDiff the DUT against the reference as the oracle

Midstall House Style

  • River and Harbor are pure ROHD/Dart; new blocks compose rohd_hcl and existing modules before adding custom RTL.
  • Heimdall's verification leans on golden models (Spike for the ISA, SPICE for analog); a fetched reference implementation plays the same role for a new block.
  • Record the spec version and section numbers you implemented against, in the conversation or a comment, so the next person can check the design against the same source.
  • No em dashes, no emoji, no slang. Pairs with hdl-module-design for the module shape, rohd-rtl-gotchas for the ROHD pitfalls, and differential-verification for the golden-model harness.

Keep looking

Skills are one crate of 328,083. Ordering is by how many stacks a row turns up in, so the top of any crate is what has actually been picked rather than what has the most stars.