Per-plan copy-paste command (subagent-driven-development in a git worktree), plus the slash-command and executing-plans/resume alternatives, and a note that the four independent plans can run in concurrent worktrees. Claude-Session: https://claude.ai/code/session_01GASWkNEi68FSCtvr6rLoEW
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Driver-expansion — Waves 0–2 tracking
Living status tracker for the driver-expansion program (Waves 0, 1, 2). One row per deliverable, each pointing at its design doc, its implementation plan (once written), and its current status. The authoritative architecture index is the program design doc; this file is the authoritative progress index.
Program design (architecture / shared contract / build order):
2026-07-15-driver-expansion-program-design.mdLast updated: 2026-07-24.
Legend
| Status | Meaning |
|---|---|
| ✅ Done | Merged to master, tests green. |
| 🟡 Live gate open | Code merged; a live /run or hardware-gated verification still outstanding. |
| 📝 Plan ready | Executable implementation plan (*-implementation.md + .tasks.json) written; not yet built. |
| 📐 Design only | Design doc exists; no implementation plan yet — writing-plans is the next step. |
| ⛔ Not started | No design, no plan. |
Doc types (per the writing-plans skill): a design states architecture, decisions, and risks;
an implementation plan is the bite-sized, TDD, file-path-level task list the subagent-driven
executor runs off, with a co-located .tasks.json for resume. A deliverable is only buildable once
it reaches 📝.
Summary
| Wave | Deliverable | Design | Impl. plan | Status | Effort | Fixture / hardware |
|---|---|---|---|---|---|---|
| 0 | Universal Discover-backed browser | design | plan · tasks | 🟡 Live gate open | S–M | none (retrofits shipped drivers) |
| 1 | Modbus RTU (extend Modbus) | design | plan · tasks | 📝 Plan ready (11 tasks) | S (lowest) | pymodbus rtu_over_tcp — CI-simulatable, no new infra |
| 1 | SQL poll | design | plan · tasks | 📝 Plan ready (22 tasks) | S–M | existing central SQL Server 10.100.0.35,14330 + SQLite unit |
| 2 | MTConnect Agent | design | plan · tasks | 📝 Plan ready (23 tasks) | S–M | Dockerized mtconnect/cppagent — CI-simulatable |
| 2 | MQTT / Sparkplug B | design | plan · tasks | 📝 Plan ready (27 tasks, P1+P2) | M–L | Mosquitto/EMQX + C# Sparkplug sim — CI-simulatable |
Waves 3+ (BACnet/IP, Omron) and the deferred MELSEC are tracked in the program design doc §6/§8, not here. Omron CIP is the program's sole real-hardware wire gate; BACnet's broadcast/BBMD leg is env-gated live. Both are out of this file's scope until they're pulled forward.
Executing a plan (git worktree + subagent-per-task)
Each 📝 plan is executed with the subagent-driven-development skill: it sets up an isolated
git worktree first (via using-git-worktrees), then dispatches a fresh subagent per task,
running the classification-driven review chain (trivial = implement only … high-risk =
spec-review → code-review → integration review) between tasks. The .tasks.json next to each plan
tracks progress and lets a later session resume.
Paste one of these into Claude Code to build a driver:
| Deliverable | Command |
|---|---|
| Modbus RTU (Wave 1) | Use superpowers-extended-cc:subagent-driven-development to execute docs/plans/2026-07-24-modbus-rtu-driver.md in a new git worktree |
| SQL poll (Wave 1) | Use superpowers-extended-cc:subagent-driven-development to execute docs/plans/2026-07-24-sql-poll-driver.md in a new git worktree |
| MTConnect (Wave 2) | Use superpowers-extended-cc:subagent-driven-development to execute docs/plans/2026-07-24-mtconnect-driver.md in a new git worktree |
| MQTT/Sparkplug (Wave 2) | Use superpowers-extended-cc:subagent-driven-development to execute docs/plans/2026-07-24-mqtt-sparkplug-driver.md in a new git worktree |
- Slash-command form (equivalent):
/superpowers-extended-cc:subagent-driven-development <plan-path>. - Parallel-session / resume form (batch execution with checkpoints, no fresh-subagent-per-task):
/superpowers-extended-cc:executing-plans <plan-path>— reads the same.tasks.jsonand continues from the first pending task. - Recommended order: Modbus RTU → SQL poll → MTConnect → MQTT/Sparkplug (lowest effort first; see each wave below for the gating notes). Run one plan per worktree; the four plans are independent, so separate worktrees may run concurrently.
Wave 0 — Universal Discover-backed browser 🟡
What it is. One generic DiscoveryDriverBrowser (+ CapturingAddressSpaceBuilder,
CapturedTreeBrowseSession, BrowserSessionService fallback, and the
ITagDiscovery.SupportsOnlineDiscovery gate) that turns any driver's ITagDiscovery.DiscoverAsync
into an AdminUI browse tree. It is the Wave-0 gate: every browsable new driver depends on this
seam, and it retrofits browse to the already-shipped AbCip / TwinCAT / FOCAS drivers for near-zero
marginal cost.
- Design:
2026-07-15-universal-discovery-browser-design.md - Implementation plan:
2026-07-15-universal-discovery-browser-implementation.md·.tasks.json - Status: 🟡 code-complete + merged, live gate open.
- Merged to master —
056887d6(Merge feat/universal-discovery-browser — Wave-0 universal Discover-backed browser), 2026-07-15. - Implementation plan: 19 / 19 tasks completed.
- Lit up AbCip / TwinCAT / FOCAS pickers with zero per-driver browse code.
- Merged to master —
- Outstanding: the full tree-render live
/rungate is fixture-blocked — tracked as Gitea #468. Complete this before leaning on browse in Wave 2/3.
Wave 1 — low-effort / high-leverage pair 📝
Both are fully CI-simulatable with zero new hardware; Modbus RTU needs no new infra at all, and SQL poll reuses the always-on central SQL Server. This is the recommended next build.
Modbus RTU — 📝 Plan ready
- Design:
2026-07-15-modbus-rtu-driver-design.md - Implementation plan:
2026-07-24-modbus-rtu-driver.md·.tasks.json— 11 tasks (1 trivial / 5 small / 2 standard / 3 high-risk). - Scope: extend the existing Modbus driver with a
Transportselector (RTU CRC-16 + FC-aware length, no TxId) + artu_over_tcppymodbusdocker profile + the AdminUI selector. Direct-serial transport is descoped (user, 2026-07-15) — RTU-over-TCP via a serial→Ethernet gateway is the only shipped mode, so there is no serial hardware gate. - Fixture: add an
rtu_over_tcpprofile to the existing Modbus integration fixture. First P1 step is confirming the pymodbus simulator exposes the RTU framer on a TCP server. - Effort: S — the lowest on the roadmap. Recommended first.
SQL poll — 📝 Plan ready
- Design:
2026-07-15-sql-poll-driver-design.md - Implementation plan:
2026-07-24-sql-poll-driver.md·.tasks.json— 22 tasks.ISqlDialectseam in from day one; only the SQL Server dialect built in v1 (Postgres/ODBC deferred). - Scope: a bespoke schema-browser driver polling a SQL table into equipment tags (SQL Server P1;
Postgres/ODBC land in P2/P3 behind
ISqlDialect). - Fixture: SQLite unit fixture (primary) + an env-gated integration fixture against the
existing central SQL Server (
10.100.0.35,14330) with a seededSqlPollFixtureDB. The blackhole/timeout live-gate pauses a dedicatedmssqlcontainer — never the shared central SQL Server (it hostsConfigDb). - Effort: S–M.
Wave 2 — strategic telemetry / UNS pair 📝
Both CI-simulatable on the shared docker host, no hardware.
MTConnect Agent — 📝 Plan ready
- Design:
2026-07-15-mtconnect-driver-design.md - Implementation plan:
2026-07-24-mtconnect-driver.md·.tasks.json— 23 tasks. Task 0 is the TrakHound-vs-hand-rolled client decision; browse-picker live-verify is gated on Wave-0 #468. - Scope: P1 Agent MVP (
IDriver+ITagDiscovery+IReadable+ISubscribable+probe+rediscover), browse free via the Wave-0 universal browser (SupportsOnlineDiscovery=true, no browser code), typed editor,UNAVAILABLE→BadNoCommunicationmapping, ring-buffer re-baseline paging. - Fixture: canned XML unit fixtures (bulk of coverage) + a dockerized
mtconnect/cppagentintegration fixture (env-gated). Depends on Wave 0's browse seam being live-verified (#468). - Effort: S–M (≈1–1.5 wk with TrakHound, ≈2.5–3 wk hand-rolled).
MQTT / Sparkplug B — 📝 Plan ready
- Design:
2026-07-15-mqtt-sparkplug-driver-design.md - Implementation plan:
2026-07-24-mqtt-sparkplug-driver.md·.tasks.json— 27 tasks (P1 plain MQTT = Tasks 0–14, a complete shippable milestone; P2 Sparkplug B = Tasks 15–26). Task 0 is the mandatory MQTTnet-5/net10 + central-pinning validation spike. - Scope: P1 plain MQTT (MQTTnet-5 connect/TLS/auth + hand-rolled reconnect, subscribe→
OnDataChange, retained last-value read,#-observation browser); P2 Sparkplug B ingest (vendored Tahu proto, birth/alias/seq-gap/rebirth state machine, death→STALE). - Fixture: Mosquitto/EMQX broker (TLS + real auth, not anonymous) + a project-owned C#
Sparkplug edge-node simulator for the rebirth/seq-gap/death test matrix + env-gated live suite
(
MQTT_FIXTURE_ENDPOINT). - Effort: M–L. Top risks: Sparkplug state-machine correctness; MQTTnet-5/net10 + the repo's fragile central pinning (mitigated by hand-rolling Tahu over one MQTTnet-5 client).
Next actions
- Close the Wave-0 live gate (Gitea #468) — unblocks browse verification for MTConnect/BACnet.
- Build Wave 1 — Modbus RTU first (lowest effort, no new infra), then SQL poll. Both plans are 📝 ready; run the command from the Executing a plan table (subagent-driven-development in a git worktree).
- Build Wave 2 (MTConnect, then MQTT/Sparkplug) — both plans 📝 ready. MTConnect's browse leg wants #468 closed first; MQTT's Task 0 pinning spike gates everything after it.
Update this file's Summary table and per-wave status whenever a deliverable changes state.