Wires the Phase 1 vocabulary pilot into the canonical agent instructions (tapir#18). CLAUDE.md is canonical here (no .context/ source, no generation header). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
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CLAUDE.md — Agent operating instructions for Tapir
Read this first if you are an agent (or human) starting a work session in this repo.
It tells you how to work here. For what and why, read README.md and the guardrail
docs it indexes.
Orientation order
README.md— what Tapir is, links to all guardrails.VISION.md— the staged Definition of Success. Stage 0 ("useful to me") is the gate. Do not build Stage 1+ machinery before Stage 0 holds.DECISIONS.md— the ADRs. Decisions are settled here; do not re-litigate without a new ADR.docs/architecture/architecture.md,docs/data-model.md,docs/use-cases/*.feature.docs/homelab-integration.md— the concrete endpoints/conventions you'll need.LANGUAGE.md— the project vocabulary. Apply the caveman rubric before destructive operations.
How to work in this repo
- Trunk-Based Development (ADR-009). Commit directly to
main. One logical change per commit. Every commit deployable. No feature branches or PRs for solo/agent work — the only exception is a short-livedagent/<desc>branch when another agent is simultaneously active on this repo, merged within the same session. - Run the quality gate before every push.
task check. CI is the gate, not branch protection — do not enable branch protection on this repo. - Conventional commits.
feat:,fix:,chore:,docs:,refactor:. Subject line says what; body says why. - Language is Go (ADR-001). Do not introduce Python or a second language. If you think you need one, that's a new ADR with a real justification, not a default.
Things that look reusable but are NOT — read before "reusing"
These caused real mistakes that were caught and corrected; the corrections are load-bearing.
- The
llmpackage is COPIED fromhyperguild/ingestion, not imported (ADR-004). Tapir owes that repo nothing at the dependency level. Do not addhyperguild/ingestionas a Go module dependency to "share" code. If the copiedllmneeds changes, change Tapir's copy. - The brain sink is HTTP to brain-mcp, NOT the filesystem
brainpackage (ADR-005).hyperguild/ingestion'sinternal/brainwrites files into a brain git checkout on disk. That is the wrong model for Tapir. The brain sink calls brain-mcp'sbrain_ingesttool over HTTP. Do not copy or replicate the filesystem brain package. - YouTube/Vimeo OAuth is written fresh (ADR-006).
hyperguild/ingestion'sinternal/oauthis the MCP server's inbound auth (client_credentials). It has nothing to do with outbound OAuth to video providers despite the shared name. Usegolang.org/x/oauth2.
Settled decisions you should not "helpfully" reopen
(See DECISIONS.md for full rationale. Listed here so you don't propose them.)
- No Supabase — reuse Dex / ESO+1Password / Postgres (ADR-002).
- No global cross-tenant video table — videos stay per-user (data-model). Transcripts ARE
shared since ADR-021 (public caption content, keyed by
(provider, provider_video_id), non-RLS) so re-analysis never re-fetches; the videos half of cross-tenant dedup stays a Future C concern. - No audio-download + speech-to-text in the core path — captions-first (ADR-007). STT is a deferred, bounded optional component.
- No public SaaS / sign-up / billing / Google OAuth verification at scale — Future C, deferred behind the Stage 0 gate (ADR-008).
Architecture stance for new code
- Clean Architecture, dependencies point inward. The engine (use cases) depends only on the
ports (
VideoSource,Summarizer,Sink,SecretStore). Concrete providers, the AI router, stores, and sinks are adapters. Adding a video provider or a sink = a new adapter implementing the interface, nothing in the engine changes. This is what keeps "standalone vs homelab" a wiring choice (ADR-003). - BDD. The
docs/use-cases/*.featurefiles are the behavior spec (design records — there is no godog runner). New behavior gets a scenario; the use-case core is tested through fake adapters, not live YouTube/brain. A name-coverage gate (test/acceptance/scenario_coverage_test.go,TestScenarioCoverage) keeps the two from drifting: every non-@pendingscenario must be mapped to an existing Go test inscenarioCoverage. When you add a scenario, either map it to its covering test or tag it@pendingin the.featurewith a one-line reason. It checks the link, not that the test exercises the scenario — that's the deliberate trade for not running godog (see issue #5 / the BDD-runner decision).
Skills (engineering discipline)
Skills live in the canonical library mathias/skills and are wired into this repo as
gitignored symlinks — do not commit them, do not add a skills manifest to this repo.
- Install/refresh:
task skills(orcurl -fsSL https://gitea.d-ma.be/mathias/skills/raw/branch/main/install.sh | bash). Idempotent. - Most relevant skills for Tapir work:
tdd,atdd,test-design— the build is test-first; the.featurefiles are the ATDD spec.clean-code,solid— the ports-and-adapters structure depends on these.gitea-ci— for the CI workflow (and its act_runner gotchas) and the TBD section.debug— whentask checkgoes red for a non-obvious reason.- Reviewer-side:
code-review,refactoring,cognitive-load. - Session close:
session-retrospective(surface learnings into brain before context is lost).
Current build state (start here for the first task)
The repo is green and shipping — last tag v0.15.0. task check passes (fmt, vet, lint,
go test -p 1 ./...). Go is 1.26.1 (see go.mod).
- Clean Architecture core is implemented:
internal/domain(entities),internal/ports(interfaces),internal/usecase.Engine.ProcessNewVideo(resolve transcript → summarize → deliver to sinks | skip on no-transcript). The acceptance tests intest/acceptance/are green against it. - Adapters present under
internal/adapters/:youtube(captions-firstVideoSource, timedtext/InnerTube acquisition per ADR-010),summarizer+llm(the copied AI router, now a resilient endpoint chain — local primary → local fallback → external worst-case, parse-failure-aware, ADR-004 + ADR-022),store(Postgres, golang-migrate migrations 001–015),secrets(file-backedSecretStore). The brain HTTP sink (ADR-005) is the remaining optional sink. - Stage 1 is open (ADR-012): multi-user with DB-enforced isolation — Postgres RLS
FORCEd on all user-owned tables (migration 003), two-user isolation test ininternal/adapters/store/rls_test.go. Registration gate, per-user YouTube web connect, and account management (disconnect / delete, ADR-013) all shipped. - Transcript persistence (ADR-021, migration 015): transcripts are a shared, non-RLS store
keyed by
(provider, provider_video_id)— the single exception to the isolation boundary (TestTranscriptsTableIsSharedNotRLS). The engine reads stored transcripts before any caption fetch (usecase.resolveTranscript), so re-analysis — re-summarize, paste-a-URL, onboarding burst — never re-touches YouTube. Per-user summaries/videos stay RLS-scoped. cmd/tapirsubcommands:list,show,auth(interactive host-side OAuth),run(batch watch→summarize),serve(the HTMX+Templ web reader/writer underinternal/web, a new transport over the unchanged engine/ports — ADR-003).tapir envprints config.- Build/run:
task checkis the gate;task buildproduces the binary. Local dev usesStubAuth(allow-all) and aTAPIR_DB_DSNPostgres; the deployed service uses Dex OIDC.
Setup facts (resolved — see docs/homelab-integration.md for the live values): LiteLLM is
off-cluster at koala:30401/v1/ with LITELLM_MASTER_KEY from 1Password; the summarization
model is config (TAPIR_SUMMARIZER_MODEL, default koala/phi4-mini), never hardcoded. The
brain-mcp base URL and ESO ref scheme are pinned in that doc; check it before wiring rather than
re-deriving.
Provenance (where this design came from)
- The reuse decisions came from Spike S5, recorded at
infra/docs/superpowers/handoffs/2026-06-02-video-adapter-placement.md(read it for the per-package lift-vs-copy analysis). - The
llmpackage source ishyperguild/ingestion/internal/llm(Client+Router). - The standalone-first framing, the Supabase/Python rejections, and the staged success
definition came from a planning + grill session on 2026-06-02 (claude.ai). The conclusions are
in
VISION.mdandDECISIONS.md; this file is the operational distillation.