Drive the ENTIRE tdmcp roadmap-to-1.0 to completion as a resumable, wave-by-wave campaign — Milestone 4 (generative-AI bridge wave), Milestone 5 (mixer scene arming), and the v1.0 consolidation gates G1–G6 — routing each class of work to the right existing sub-harness. Use whenever the user wants to "implement everything / all the milestones / the whole roadmap / finish the road to 1.0", run the next milestone, close the consolidation gates, or build a long autonomous campaign across M4/M5/G1...
Scanned 9/12/2026
Install to Claude Code
npx -y skills add Pantani/tdmcp --skill tdmcp-roadmap-campaign --agent claude-codeInstalls into .claude/skills of the current project.
Are you the author of Tdmcp Roadmap Campaign?
Add the live security badge to your README — it updates automatically with every re-scan.
[](https://www.skillsdirectory.com/skills/pantani-tdmcp-roadmap-campaign)More formats (shields.io, HTML) on the badges page.
---
name: tdmcp-roadmap-campaign
description: >-
Drive the ENTIRE tdmcp roadmap-to-1.0 to completion as a resumable,
wave-by-wave campaign — Milestone 4 (generative-AI bridge wave), Milestone 5
(mixer scene arming), and the v1.0 consolidation gates G1–G6 — routing each
class of work to the right existing sub-harness. Use whenever the user wants to
"implement everything / all the milestones / the whole roadmap / finish the
road to 1.0", run the next milestone, close the consolidation gates, or build a
long autonomous campaign across M4/M5/G1–G6. ALSO use for every follow-up:
continue/resume the roadmap campaign, run the next wave, re-run a failed wave,
fold in QA results, check campaign status, re-prioritize, or scope to one
milestone/gate. This is the CAMPAIGN layer ABOVE tdmcp-pipeline /
tdmcp-feature-lead / tdmcp-backlog-campaign — it sequences across MULTIPLE
sub-harnesses (tools, mixer, coverage, docs, bridge, recipes, submission),
which the generic backlog-campaign does not. For a SINGLE feature use
tdmcp-pipeline; for one tool-shaped backlog file use tdmcp-backlog-campaign.
Simple questions can be answered directly.
---
# tdmcp Roadmap-to-1.0 Campaign
Drives `_workspace/campaign_roadmap_v1/ROADMAP_1.0_BACKLOG.md` to completion,
gated by `_workspace/campaign_roadmap_v1/ledger.json` (idempotent, resumable,
merge-safe). This is **orchestration only** — it never writes product code
itself; it routes each ledger item to the existing specialist sub-harness and
records the outcome back into the ledger.
## Why this exists (vs tdmcp-backlog-campaign)
`tdmcp-backlog-campaign` drives a *tool-shaped* backlog through one pipeline
(design→build→integrate→QA→release). The road to 1.0 is **not** uniform: it mixes
new tools (M4), a policy-bounded mixer slice (M5), a coverage CI gate (G2), a
bridge exec→REST sweep (G4), docs/governance (G1/G5/G6 prep), and live-validated
recipes (G3). Each needs a *different* specialist. This skill is the thin router
that sequences them and keeps one ledger of truth.
## Confirmed campaign policy (2026-06-21)
- **Release:** commit + push, **NO tag/bump**. Everything lands in CHANGELOG
`[Unreleased]`. Cutting the version is a manual user step — never tag
autonomously (`[[no-premature-release-tag]]`).
- **Blocked items** (GPU/CUDA, live-TD, external service): **build offline +
quarantine**. Implement, pass the offline gates, set `live` to the right
`UNVERIFIED-pending-*` marker, keep going. Quarantine never blocks the campaign.
- **Checkpoint:** after Wave 1 only, then autonomous to the end. On repeat
failure: retry once → quarantine-and-continue (note it in the wave report).
## Routing table (ledger `route` → sub-harness)
| `route` | Sub-harness | Agents |
|---------|-------------|--------|
| `docs` | `tdmcp-docs-roadmap-update` | roadmap-docs-editor, docs-cookbook-sync, docs-roadmap-qa |
| `tools` | `tdmcp-feature-lead` | tdmcp-tool-builder ×N + single-writer integration |
| `mixer` | `tdmcp-pipeline` | mixer-scene-contract-architect, soundcraft-ui24r-adapter-architect, mixer-policy-safety-qa |
| `coverage` | `tdmcp-test-coverage` | tdmcp-coverage-writer, tdmcp-coverage-qa |
| `bridge` | `tdmcp-bridge-endpoint` | tdmcp-bridge-engineer (sequential — bridge slices share files) |
| `recipes` | `tdmcp-pipeline` | td-architect, td-builder, td-qa (needs live TD) |
| `submission` | `tdmcp-submission` | submission-architect, submission-qa |
| planning | — | tdmcp-backlog-planner (wave computation + ledger transitions) |
## Workflow
### Phase 0 — Context check (resume vs fresh)
1. Read `ledger.json`. If absent, the harness isn't initialized — (re)generate it
from `ROADMAP_1.0_BACKLOG.md` and `docs/ROADMAP.md`, then stop and report.
2. **Reconcile against the tree first** — a prior session or a merged PR may have
already shipped a ledger item. For each `pending` item, cheaply verify it's
genuinely undone (grep for the tool/file/gate) before assigning it. Flip
already-done items to `shipped` with an `event: reconciled` history row.
3. Determine the next ready wave: lowest wave number with `pending`,
non-`blocked` items whose `depends_on` are all `shipped`. Honor the
`checkpoint_after_wave` gate.
### Phase 1 — Plan the wave (tdmcp-backlog-planner)
Spawn `tdmcp-backlog-planner` (opus) with the ledger + backlog. It returns: the
exact item set for this wave, their routes, dependency-safe ordering, and the
proposed ledger status transitions. Write its report to
`_workspace/campaign_roadmap_v1/wave_<n>_planner_report.md`.
### Phase 2 — Execute the wave (route to sub-harnesses)
For each item, invoke its `route` sub-harness with a precise spec. Within a wave:
- **Parallelize independent items** across routes (docs ∥ coverage ∥ tools).
- **Serialize same-file routes** — all `bridge` items run sequentially (they
share `td-client`/`td/` files); within `tools`, builders are parallel but the
integrator is the single writer of shared registries.
- **Blocked/needs-hardware items:** build to the offline boundary, then mark
`live` quarantined per policy — do not wait on hardware.
Every sub-harness already runs its own gates; this skill does not re-implement
them. Record per-item QA (`typecheck/build/biome/vitest/recipes/bridge`) into the
ledger `qa` block, exactly like the project_rag campaign.
### Phase 3 — Gate, commit, record
1. Run the four PR gates + recipe + bridge tests at the wave boundary
(`npm run typecheck && npm run build && npm run lint && npm test`,
`npm run validate:recipes`, `npm run test:bridge`).
2. Commit + push the wave on its own branch (`feature/roadmap-<wave-theme>`).
**No tag, no version bump** — CHANGELOG `[Unreleased]` only.
3. Update the ledger: flip items `pending → shipped` (or `quarantined`), stamp
`qa`, `commit`, and a `history` row. Write `wave_<n>_report.md`.
### Phase 4 — Loop or checkpoint
- If the just-finished wave is the `checkpoint_after_wave` → **stop and report**;
wait for the user before the next wave.
- Otherwise advance to the next ready wave (Phase 0 → 3) until no `pending`
non-blocked item remains.
### Phase 5 — Hand-back
When only quarantine items remain, report **campaign complete (offline scope)**
and enumerate what the user must do to actually tag 1.0: provide GPU/TOX
components or a reachable TD for the `UNVERIFIED-pending-*` live validations,
run the bench/hardware M5 spikes, submit to the Connectors Directory, and — only
on the user's word — cut the tagged 1.0 minor (closing G1).
## Error handling
- A sub-harness that fails a gate: retry once with the failure fed back. On
second failure, mark the item `quarantined` with the reason, leave the rest of
the wave intact, and note it in the wave report — never delete partial work.
- Conflicting tree state vs ledger: trust the tree, reconcile the ledger, note
the drift. Never silently overwrite shipped work.
- The ledger is the single source of truth and must stay valid JSON after every
transition; write it atomically (full rewrite), never partial.
## Test scenarios
- **Happy path:** fresh ledger → Phase 0 picks Wave 1 → planner assigns 4 docs
items → docs sub-harness ships all four → gates green → commit no-tag →
checkpoint stop with a Wave-1 report.
- **Resume after merge:** a follow-up run finds `g2_coverage_ci_gate` already
landed on main → reconcile to `shipped` (event: reconciled) → skip it → plan
the remainder of Wave 2.
- **Blocked item:** Wave 4 `m4_drive_streamdiffusion` builds offline, gates green,
but no GPU → ship with `live: UNVERIFIED-pending-gpu`, campaign continues.
- **Repeat failure:** a tool fails its gate twice → quarantined with reason, wave
proceeds with the rest, report flags the gap.
Is this your skill, or is something wrong with this listing? Request removal or report an issue. Author removals are honored within 72 hours.
No comments yet. Be the first to comment!