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29 Commits

Author SHA1 Message Date
Croissant Le Doux
0dd26b8b05 feat: config & onboarding — each teammate connects their own Gitea (Phase A)
The foundation for a shareable team build. Replaces the .env.local-only dev config
with a real, per-teammate connection flow.

main:
- config-store.ts: token encrypted at rest via Electron safeStorage (OS keychain),
  config JSON in userData. Token lives only in main; renderer gets everything but.
- resolveConfig: saved config > .env.local (dev) > null; ignored under COMMITEA_E2E.
  pm-state repo defaults to `${repo}-pm-state`. resetClients() re-reads on change so
  saving config takes effect without a restart. gitea:status gains `demo` (e2e).
- IPC: config:get (no token), config:test (authed read validates token+repo),
  config:set (encrypt+save+reset), config:clear. Model bridge reads config.modelUrl
  and probes reachability — chat is "configured" only if a model actually answers;
  localhost default is dev-only (app.isPackaged gate).

renderer:
- ConnectScreen: real onboarding form (URL/owner/repo/PAT/optional model) → test →
  save. AppShell gates on it: demo → shell (fixtures/e2e); configured → shell (real);
  else → connect. Settings Connection card is real (repo/url/model/sidecar) with
  Reconfigure + Disconnect. Chat cleanly disables with a "no model" state instead of
  the scripted canned reply.

Verified: main + desktop typecheck clean, 14 fixture e2e green (demo mode unchanged),
live onboarding e2e: fresh app → connect form → validated PAT → real board (24 done /
10 open). COMMITEA_NO_ENV_LOCAL + COMMITEA_USERDATA are test hooks for the onboarding path.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-09 02:09:53 -04:00
770c253625 Merge pull request 'feat: capacity-aware scheduling (#8) — real focus factors drive every forecast' (#50) from feat/capacity into main
Reviewed-on: #50
2026-07-09 05:00:20 +00:00
Croissant Le Doux
1636d6bada feat: capacity-aware scheduling (#8) — real focus factors drive every forecast
Turns the single-serial-worker scheduler into a capacity-aware, multi-lane one.
Configured team members become lanes; an issue runs on its assignee's lane (or the
earliest-free lane), its duration scaled by that lane's throughput
(focusFactor × allocation). Every forecast — Focus cone, Runway, milestone
drill-in — is now capacity-aware.

core (@commitea/core):
- capacity/capacity-v0: CapacityMember + capacityPerWorkday + parseCapacityConfig
  (clamps, drops invalid; degrades to []).
- scheduler/scheduler-capacity-v0: scheduleWithCapacity reuses the v0 topo order +
  critical path, re-lays work across lanes (layoutOnLanes, resolveLanes, makespan).
  Empty workers → the single serial plan verbatim.
- forecast() gains options.workers: each MC trial lays sampled durations across the
  lanes and takes the makespan; serial path unchanged. SchedulableIssue gains
  assignee; ScheduledItem gains worker.
- 11 new tests (parse/clamp, parallelism halves makespan, speed scaling, assignee
  routing, cross-lane deps, forecast makespan shrinks with lanes).

app:
- pm-state capacity/members.json read (readCapacity + pmstate:capacity bridge);
  useCapacity hook → workers; forecastBacklog/runwayView/milestoneView pass workers.
- Runway Capacity card shows the real config (person · focus · alloc · pd/day).

Config lives in pm-state (D4); seeded christian(0.8)/stephen(0.6×0.5). Degrades to
the fixture/serial when absent.

Verified: 128 core tests green, desktop typecheck clean, 14 fixture e2e green. Live:
the capacity card is real, and the P2 forecast shifts 32d→37d — honest, since real
focus factors (<1) replace the v0 focus-1.0 assumption.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-09 00:59:03 -04:00
d80e1266ee Merge pull request 'feat: stream Reginald's replies token-by-token' (#49) from feat/streaming-chat into main
Reviewed-on: #49
2026-07-09 04:43:58 +00:00
cf03827cd5 Merge branch 'main' into feat/streaming-chat 2026-07-09 04:43:51 +00:00
69106b603d Merge pull request 'feat: Runway complete — per-milestone forecasts + real milestone drill-in' (#48) from feat/runway-real into main
Reviewed-on: #48
2026-07-09 04:43:46 +00:00
Croissant Le Doux
dbcdcda5e7 feat: stream Reginald's replies token-by-token
The 26b is slow (~30s/call); the chat now shows the answer forming instead of
freezing until it's done. The final prose streams over SSE; tool-calling turns
stay structured (no partial tokens), so streaming kicks in for the narration.

core (@commitea/core):
- chat-client.complete gains an optional onToken — when set, it requests
  stream:true and parses the OpenAI SSE stream, emitting content deltas and
  assembling streamed tool-call argument fragments into the final result.
- GiteaHttpResponse exposes the optional `body` stream (real fetch has it; stubs
  don't). agent-loop threads onToken to each completion.

app:
- model:chat forwards each delta to the renderer (event.sender.send); preload
  exposes model.onToken(cb) → unsubscribe. useChat accumulates the live stream
  into a growing bubble (with a cursor), replaced by the authoritative final
  content when the turn resolves. Unconfigured → scripted reply, unchanged.

Verified: 118 core tests green (2 streaming: SSE content deltas + tool-call
fragment assembly), desktop typecheck clean, 14 fixture e2e green. Live: a real
turn against gemma-4-26b assembles the correct answer via the streaming path
(live-reginald green) — the reply now renders token-by-token.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-09 00:22:12 -04:00
Croissant Le Doux
57595852a4 feat: real Milestone drill-in — completes the Runway story
Clicking a milestone on Runway now opens its real detail: scope + done %, a Monte
Carlo cone over the remaining open work, and the milestone's issues grouped by
lifecycle column. Threaded the gitea milestone id through the Runway row → AppShell
→ a milestoneView().

- backlog.ts: milestoneView(id, ...) → { name, due, scope/done, forecast cone +
  range, groups by lifecycle column }. Reuses forecast + buildBurnUpData + lifecycle
  inference. null for an unknown id → the screen shows the demo fixture.
- RunwayMilestone gains an `id`; runwayView sets it; RunwayScreen.onOpenMilestone(id).
- MilestoneScreen takes optional `data`; renders real header/stats/cone/issue-groups
  when present, fixture otherwise.

Verified: desktop typecheck clean, 14 fixture e2e green. Live: clicking "P2 —
Scheduler + Monte Carlo" opens a real detail — 7 issues · est 20d, 0/7 done, cone
"80% Aug 17–26", issues in Triage/In-review from the real event stream (screenshot).

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-09 00:12:11 -04:00
Croissant Le Doux
ae46cb99b3 feat: real Runway — per-milestone Monte Carlo forecasts
The Runway milestone list is now real. Each open gitea milestone's open scope gets
its own Monte Carlo forecast (reusing the P2 engine); the p80 landing range is
shown, and compared to the milestone's due date (on track / at risk) when one
exists. Ranges, never point dates.

- backlog.ts: runwayView(issues, milestones, deps) → RunwayMilestone[] — per
  milestone: forecast its open scope, map p50..p90 to a date range, normalize the
  RunwayBar band across a shared horizon, tone/ note from due-vs-p80. Milestones
  with no open scope (shipped) are omitted; empty → the demo fixture.
- RunwayScreen takes optional `milestones`; AppShell feeds runwayView. The header's
  calibration note was already real (#1).

Scope: each milestone forecasts its remaining work *from today* independently —
they aren't scheduled relative to each other yet (so a smaller later phase can
show an earlier date). Cross-milestone sequencing is a refinement. Capacity stays
fixture — true per-person capacity (focus factor, allocation) is #8, config-driven.

Verified: desktop typecheck clean, 14 fixture e2e green. Live: Runway shows the
real P1/P2/P4/P5 milestones with per-milestone forecasts (e.g. "P2 — Scheduler +
Monte Carlo · 80% Aug 14–25 · 32d of work"); the fixture lists Beta/Pilot/v1.0,
so the real names prove it (new assertion + screenshot).

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-09 00:00:00 -04:00
403aef9d16 Merge pull request 'perf+persistence: the durable reconcile mirror (cache + disk)' (#47) from infra/reconcile-cache into main
Reviewed-on: #47
2026-07-09 03:53:29 +00:00
Croissant Le Doux
2f6636684e feat: persist the reconcile cache to disk — instant boot + offline reads
Extends the in-memory cache into a durable mirror. The reconcile snapshot is
written to disk on every successful reconcile; on boot the app shows it instantly
(stale-while-revalidate) instead of a blank board, and if gitea is unreachable,
reads fall back to it (offline). Rebuildable — the durable truth stays in gitea.

- snapshot-store.ts: load/save the snapshot as JSON in app userData (never throws;
  corrupt/absent → "no cache"). At this scale (~34 issues, 37KB) the whole snapshot
  fits in memory, so a JSON file beats indexed SQL — no query benefit yet, no
  native-module (better-sqlite3/electron-rebuild) or WASM dependency. That's the
  next step if the mirror ever needs indexed queries over larger data.
- gitea.ts: getSnapshot persists on a fresh pull; bootSnapshot() returns the
  persisted snapshot (without seeding the cache — agents still reconcile fresh);
  gitea:boot serves it; gitea:reconcile falls back to it on failure (stale:true).
- useBacklog: stale-while-revalidate — boot instantly, then a fresh reconcile
  supersedes; a reconcile error keeps the shown snapshot instead of erroring.

Verified: desktop typecheck clean, 14 fixture e2e green. Live: the snapshot
persists (34 issues / 44 deps / 34 timelines / 5 milestones written to disk); a
second launch with gitea unreachable renders the full real board — NOW/NEXT/LATER
+ the Monte Carlo cone — entirely from the cache (new live-persistence e2e).

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-08 23:43:44 -04:00
Croissant Le Doux
fca36f9075 perf: main-process reconcile cache — stop refetching the repo on every tool call
A full reconcile is ~2N gitea calls (deps + timelines per issue). Every agent
tool call (query_project) was doing a fresh one; the UI reconcile and the agent
didn't share anything. Now a single in-memory snapshot cache backs both.

- gitea.ts: getSnapshot(client, { maxAgeMs }) — reads within the window reuse the
  cache; maxAgeMs:0 forces fresh. invalidateSnapshot() drops it. The explicit UI
  reconcile forces fresh (and warms the cache); agent tool calls tolerate a 30s
  TTL to stay responsive; applyChange + createIssues invalidate so the board and
  forecast reflect the write immediately.
- model.ts: query_project reads getSnapshot (30s TTL) instead of reconciling live.

This is the SQLite mirror's cache semantics in memory — rebuildable, the durable
truth stays in gitea (purity split, D4). Persistent SQLite (offline + instant
boot) is a separate slice: Electron 34's Node 20 has no node:sqlite, so it needs
better-sqlite3 + electron-rebuild or sql.js/WASM — deferred as its own decision.

Verified: desktop typecheck clean, 14 fixture e2e green, live Reginald still
answers correctly from the cache (writes invalidate → board stays correct).

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-08 23:18:47 -04:00
aab7fd6eeb Merge pull request 'Verify record_directive end-to-end against the pm-state repo' (#46) from p4/directive-verify into main
Reviewed-on: #46
2026-07-09 03:12:50 +00:00
Croissant Le Doux
469c63fb95 test: verify record_directive end-to-end + label the ledger in the activity line
The pm-state repo now exists, so the last unverified path is proven: Reginald
records a directive to the real ledger.

- chat panel: the "consulted" activity line names record_directive as "the
  directive ledger" (matching query_project → the project, propose_change → the labels).
- live-directive e2e (gated): a directive typed in chat → Reginald logs it and
  says "recorded", consulting the directive ledger.

Verified live against gemma-4-26b + the commitea-pm-state repo: "freeze scope for
beta, pilots come first" appended to directives/log.jsonl as
{kind: scope, quote: <verbatim>, status: accepted} — logged, never claimed applied.
Reginald is now complete and every tool is verified end-to-end.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-08 23:07:21 -04:00
3d8a320a04 Merge pull request 'P4: complete Reginald — capture_work + record_directive' (#45) from p4/capture-work into main
Reviewed-on: #45
2026-07-09 03:01:51 +00:00
Croissant Le Doux
ba9ea43b4c feat: record_directive — the PM's ledger in pm-state (P4, completes Reginald)
The last agent tool. When the PM states standing intent ("pilots come first"),
Reginald logs it verbatim to an append-only JSONL ledger in the pm-state repo —
a directive is intent; its effects still land through propose_change. This
completes Reginald's tool surface: query_project · propose_change · capture_work
· record_directive.

core (@commitea/core):
- directives/record-directive-v0: schema (kind/quote/target/params/rationale +
  id/ts/status), serialize/parseDirectiveLog (ts-ordered, seq computed on read,
  corrupt lines skipped), appendDirective (concatenation merge), toDirectiveInput.
- RECORD_DIRECTIVE_TOOL + system prompt update ("log standing intent; never claim
  a change is applied").
- gitea client: getFile/putFile (contents API, base64-agnostic) for the pm-state repo.

app:
- main: a pm-state client (same token, `commitea-pm-state` repo — the purity
  split, D4); appendDirectiveEntry (read→append→write, id/ts stamped here),
  readDirectives. model:chat executes record_directive; pmstate:directives reads
  the ledger. Degrades cleanly when the pm-state repo is absent.
- Directives screen shows the real ledger when present, the fixture demo otherwise.

Note: the pm-state repo isn't created yet — my token lacks write:user (repo
creation). Create `commitea-pm-state` (private) to activate the live path; all the
code + tests are in place. Override with COMMITEA_PMSTATE_REPO.

Verified: 116 core tests green (8 directive + 2 contents-API added), desktop
typecheck clean, 14 fixture e2e green. Gated live test: the real gemma-4-26b calls
record_directive for "pilots come first" (logs intent, doesn't claim to apply it);
the append/read + POST/PUT contents paths are unit-tested.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-08 22:39:12 -04:00
Croissant Le Doux
6e8a6a15bc feat: capture_work — braindump → decomposed issues → filed in gitea (P4)
The last big agent capability. In the Capture screen, a rough braindump runs real
big-model decomposition into a small, estimated issue set; you review/edit the
labels and approve, and the issues are opened in gitea. This is the one place the
big model earns its keep (docs/agent-tools.md).

core (@commitea/core):
- capture-work: PROPOSE_ISSUES_TOOL + CAPTURE_SYSTEM; captureWork(complete, dump)
  forces a single structured decomposition and returns validated issues; parseCaptureArgs
  drops blank titles + invalid est/p labels. ProposedIssue / CaptureProposal.
- gitea client: createIssue({title, body?, labelIds?}) → POST /issues, normalized.

app:
- model bridge model:capture runs captureWork on the (loaded) big model.
- gitea bridge gitea:createIssues opens each approved issue with its est/* + p/*
  labels (reusing the #41 label-id resolver — zero-pollution, no invented labels).
- Capture screen: when a model is configured, "Brew tickets" runs real capture and
  "Approve all" files the set; otherwise the scripted demo interview runs. Fixed a
  race — the brew handler re-checks model status at click time so a configured
  model never falls into the scripted path before status resolves.

Verified: 108 core tests green (7 capture + createIssue added), desktop typecheck
clean, 14 fixture e2e green. Gated live e2e against gemma-4-26b: the auth braindump
→ 3 real tickets ("Resolve token refresh + session staleness" est/3d p/1, "Fix
webhook double-firing" est/2d p/2, "Write auth setup docs" est/1d p/3), reviewable
and editable; Discard so the test files nothing (createIssue POST is unit-tested).

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-08 22:20:00 -04:00
652c8c86b9 Merge pull request 'P4: writes via chat — Reginald proposes, you approve inline' (#43) from p4/chat-writes into main
Reviewed-on: #43
2026-07-09 02:17:46 +00:00
Croissant Le Doux
47c45ffa3e feat: writes via chat — Reginald proposes, you approve inline (P4)
Completes "chat is the write-path" (decisions.md D1). Ask Reginald to re-estimate
or reprioritize an issue; it formulates a proposal, you approve it inline, and the
write runs through the same guarded apply_changes engine the Issue screen uses.
The model never writes — it proposes; the app owns approval + execution.

core (@commitea/core):
- propose_change tool declaration + REGINALD_SYSTEM updated ("never claim a change
  is applied; you propose, the human approves").
- proposalsFor(args, currentLabels, title): pure — builds the concrete, non-noop
  ChangeProposal(s) (change + label diff) for a propose_change request, dropping
  invalid/unchanged axes. ChangeProposal / ProposeChangeArgs types.

app:
- model bridge executes propose_change by planning against the issue's current
  labels (no write) and returns the proposals with the turn.
- useChat surfaces pending proposals + approve/dismiss; approve calls onApplyChange
  (AppShell's guarded handler → PUT + board/forecast refetch), dismiss leaves it.
- ChatPanel renders each proposal as a propose-approve card (diff + Approve/Dismiss).

Verified: 101 core tests green (4 proposalsFor added), desktop typecheck clean,
14 fixture e2e green. Gated live e2e against gemma-4-26b: "Set the estimate on #3
to est/5d" → Reginald proposes "est/2d → est/5d" as an inline card, says it's
*proposed* not done; Dismiss leaves the repo untouched. The approve→write path is
the #41 engine (separately verified change→revert).

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-08 21:38:25 -04:00
4fc2e83cd5 Merge pull request 'P4: Reginald is real — model router + agent loop + query_project' (#42) from p4/reginald into main
Reviewed-on: #42
2026-07-09 01:28:40 +00:00
Croissant Le Doux
25cf0a6d39 feat: Reginald follows the model you load (auto-detect) + shows it in the header
Instead of a hardcoded model name (which forces LM Studio to JIT-swap your loaded
model out — and fails when a big model already fills memory), resolve the model
at request time: an explicit env override wins, else ask the server which model
is *loaded* (LM Studio's native /api/v0/models), else the first non-embedding
model, else a default. Reginald now uses whatever you load, no config churn.

- main/model.ts: resolveLoadedModel() drives both model:status and model:chat;
  COMMITEA_MODEL_SMALL still overrides.
- useChat exposes the resolved model id; the panel header shows it
  (google/gemma-4-26b-a4b-qat → "gemma-4-26b-a4b · local").
- live-reginald e2e: header assertion relaxed to the loaded model; timeouts
  raised for a slow big local model (~2 calls/turn + a reconcile).

Verified: 14 fixture e2e green; live e2e drives the app against the loaded
gemma-4-26b — "What now?" → "You should work on #2 … on the critical path,
unblocks #33 and #4" (the real scheduler pick), header shows the live model.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-08 21:23:14 -04:00
Croissant Le Doux
3de887417c feat: Reginald is real — model router + agent loop + query_project (P4)
The fixture chat panel is now a working agent. Ask Reginald a question and it
consults the real project through a tool loop, then answers in grounded prose.
Read-only v0 — writes still go through the propose-approve controls.

core (@commitea/core/agent):
- chat-client: OpenAI-wire chat completions over an injected fetch (same seam as
  gitea). Points at any OpenAI-compatible endpoint (LM Studio/Ollama/OpenAI).
- model-router: small model for prose + the read tool; big model reserved for
  later decomposition (pickModel).
- agent-loop: runAgentTurn drives call→tool→result→call until prose (or a step
  budget), recording each tool step. Injected complete + execute → fully testable.
- query-project: the single read tool's engine — compact focus/board/calibration/
  issue/search views built from scheduler + lifecycle + calibration; unbuilt views
  return a notImplemented marker (never fabricated). The model reports, never computes.
- agent-tools: query_project declaration + Reginald's system prompt.

app:
- main model bridge (model:status, model:chat) runs the loop; query_project
  reconciles the repo and builds the view. Model traffic stays in main (token/CSP).
  gitea.ts refactored to share getGiteaClient + reconcileSnapshot.
- preload + global.d.ts expose the model bridge; useChat drives the panel — real
  agent turn when a model is configured, scripted fixture reply otherwise (so
  fixture e2e is unchanged). A subtle "consulted the project" activity line.

Model config (env, defaults to LM Studio on :1234): COMMITEA_MODEL_URL /
_SMALL (google/gemma-4-e4b) / _BIG (qwen/qwen3.6-35b-a3b). COMMITEA_E2E=1 keeps
it unconfigured so the panel stays scripted.

Verified: 88 core tests green (14 agent: client parse, loop tool/error/budget,
all views) + a gated live integration test. Desktop typecheck clean, 14 fixture
e2e green. Gated live e2e drives the real app against gitea + gemma-4-e4b: asked
"what now?", Reginald called query_project and answered "focus is on issue #2"
(the real scheduler pick).

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-08 21:23:14 -04:00
e8bf71e970 Merge pull request 'P4-3: the write path — apply estimate/priority changes to gitea (apply_changes)' (#41) from p4/apply-changes into main
Reviewed-on: #41
2026-07-09 00:25:26 +00:00
Croissant Le Doux
6198f21d9a feat: the write path — apply estimate/priority changes to gitea (P4-3 apply_changes)
The first write path. Read, forecast, and calibration were all real; now you can
*manage* CommiTea from CommiTea. Estimates/priority are exclusive label axes, so
a change is a label swap — proposed, approved, then written. Nothing is assumed.

core (@commitea/core):
- planIssueChange(current, change): pure diff planner — swaps the est/*|p/* axis,
  clears on null, dedups a doubled axis; returns the resulting label set + a
  before/after diff + noop flag. describeChange() renders "est/2d → est/5d".
- request() seam extended for writes (method/body, JSON, 204). client gains
  listLabels() (name→id) and setIssueLabels() (PUT /issues/{n}/labels).

app:
- main bridge gitea:applyChange — resolves plan.labels → ids (cached, refetch on
  miss), PUTs, returns the plan + fresh issue. Token never leaves main.
- preload + global.d.ts expose applyChange; useBacklog returns a refetch so a
  write re-reconciles the board + forecast.
- Issue screen: an Adjust button (shown only when configured) opens a
  propose-approve Dialog — estimate/priority pickers, live "est/3d → est/8d"
  consequence, Apply/Cancel. AppShell wires it, reflects new labels on the open
  issue immediately, and refetches.

Verified: 83 core tests green (7 apply-changes + 2 client-write new), desktop
typecheck clean, 14 fixture e2e green. Live spec exercises propose + CANCEL (no
mutation); the real PUT was verified once manually (change #2 est/3d→est/8d→200,
reverted clean). Icon: pencil (no sliders-horizontal in the set).

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-08 20:14:47 -04:00
a901b7f855 Merge pull request 'Calibration → forecast flips off cold-start (#1); re-lands Monte Carlo (#10) + lifecycle (#5)' (#40) from p2/calibration into main
Reviewed-on: #40
2026-07-08 23:54:48 +00:00
Croissant Le Doux
7e26de1b6c feat: calibration from closed-issue actuals → forecast flips off cold-start (#1)
Close the D3 loop. The forecast now learns from the team's own estimate-vs-actual
history (the working time #5 infers from git events) instead of guessing forever.

core (@commitea/core/calibration-v0):
- fitCalibration(samples): lognormal fit on log(actual/estimate) — global +
  per-bucket (once a bucket clears the floor) + per-person bias. coldStart until
  n >= 20 closed-with-estimate issues.
- calibrationSamples(): pull those samples from the closed backlog via lifecycle
  inference (estimate label vs inferred actualWorkingDays).
- toDurationModel(): project the fit to the params forecast consumes.
- forecast() gains options.model: when past cold-start, fitted params drive the
  sim (per bucket, global fallback); otherwise the code priors do. Forecast.coldStart
  now reflects the model. nearestBucket extracted + exported.

app:
- AppShell fits calibration once from the reconciled backlog, feeds the model into
  forecastBacklog (cone), and drives the Calibration screen + Runway header.
- Focus cone footer, Runway note, and Calibration screen now say cold-start (N/20)
  vs calibrated (on N closed) from real data; Calibration scatter / bucket bias /
  per-person all fitted, degrading honestly on a thin dataset.

Known refinement: same-day closes yield 0 working-day actuals (day-granular) and
are excluded, so a fast-moving repo can sit at n=0 — honest, but a fractional
(hours-based) actual would let those count. Per-person uses gitea login, not
display name, until the person map lands.

Note: also re-lands #10 (Monte Carlo) and #5 (lifecycle) which merged into their
stacked base branches but never propagated to main (stacked-merge trap); this
branch is cut from main and carries all three so main is whole again.

Verified: 74 core tests green (9 calibration + 2 forecast-switch added), desktop
typecheck clean, 14 fixture e2e green, live spec asserts the real cold-start
calibration surface (Runway note + screen badge fitted from actuals).

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-08 19:51:50 -04:00
Croissant Le Doux
9cedd8646e feat: lifecycle inference from the issue timeline (#5)
Fill the board's Steeping / In-review columns (and the calibration actuals)
from real gitea timeline events, replacing the three-column-only v0.

core (@commitea/core):
- inferLifecycle(issue, events, asOf): five-column inference — closed → done;
  open PR ref → review; commit ref → steeping; any triage signal → triage;
  else diagnosis. Earliest event of each kind fixes the stage timestamp.
- Derives actualWorkingDays (work-start → close) — the estimate-vs-actual the
  calibration fit (D3) learns from — and steepingDays (first commit → now) for
  the board age badge.
- workingDaysBetween(): whole Mon–Fri days in [start, end), day-granular.
- normalizeTimeline() + client.getIssueTimeline(): map gitea's raw timeline
  (label/milestone → triage, commit_ref → commit, pull_ref → pull, close,
  reopen), drop the rest. Paginated.

app:
- reconcile now fetches every issue's timeline and returns it keyed by number;
  threaded through the bridge → useBacklog → board/focus.
- issuesToBoardColumns + scheduleFocus run inferLifecycle: real Steeping/In-review
  columns, steeping-age `days` badge, focus-card steeping badge.

Known refinement: gitea's pull_ref fires on any PR mention, so an issue merely
referenced in a PR body can read as In-review; distinguishing closing refs from
mentions needs the PR link's state (later). Re-opening multi-segment actuals
also deferred.

Verified: 63 core tests green (15 lifecycle, incl. workingDaysBetween + the five
transitions), desktop typecheck clean, 14 fixture e2e green, live spec asserts
the board's Done column is populated from real events.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-08 19:42:46 -04:00
Croissant Le Doux
be70c8607d feat: Monte Carlo forecast → real burn-up cone (#10)
Replace the demo cone on Morning service with a real, seeded Monte Carlo
forecast over the open backlog. The LLM never does this — it's plain,
reproducible code (evidence-based scheduling).

core (@commitea/core/forecast-v0):
- Code-resident lognormal cold-start priors per estimate bucket (D3):
  sampled actual = estimate * exp(N(mu, sigma)), mu > 0 (actuals run long),
  sigma shrinks as tickets grow. Replaced by the team's empirical fit at
  n >= 20 (#5 supplies the actuals).
- forecast(): seeded mulberry32 + Box-Muller over the scheduler's
  deterministic order (order is fixed from estimates/deps; only durations
  vary, so the cone stretches, never reorders). Returns p50/p80/p95 landing
  + a per-issue burn-up curve (p10/p50/p90). 12 unit tests; reproducible.

renderer:
- lib/dates.ts: working-day -> calendar mapper (skips weekends) + buildBurnUpData.
- BurnUpCone gains a data-driven twin; falls back byte-identical to the
  fixture cone when no forecast (demo mode unchanged).
- Focus card shows the real "80% of the open backlog lands by <range>",
  real scope count, and names the cold-start priors.

v0 scope (each a later slice): single serial worker (capacity is #8);
cold-start priors only (empirical fit is #5); no historical actual polyline
(needs lifecycle events, #5). Header chrome (reconcile time, ahead/behind
badge) stays fixture until milestone due dates land.

Verified: 51 core tests green, desktop typecheck clean, 14 fixture e2e green,
live spec asserts the real cone renders (25 open issues, "lands by Nov 11-27").

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-08 19:42:46 -04:00
ca45f1e97c Merge pull request 'P2: deterministic scheduler → real Now/Next/Later' (#37) from p2/scheduler-focus into main
Reviewed-on: #37
2026-07-08 23:22:41 +00:00
57 changed files with 4794 additions and 195 deletions

View File

@@ -16,9 +16,13 @@ test.describe('live backlog', () => {
await win.waitForLoadState('domcontentloaded') await win.waitForLoadState('domcontentloaded')
const rail = win.getByRole('navigation', { name: 'Primary' }) const rail = win.getByRole('navigation', { name: 'Primary' })
// The pot — waiting here also lets the reconcile (issues + deps) complete // The pot — waiting here also lets the reconcile (issues + deps + timelines) complete
await rail.getByRole('button', { name: 'The pot' }).click() await rail.getByRole('button', { name: 'The pot' }).click()
await expect(win.getByText('Gitea read client behind an injected fetch')).toBeVisible({ timeout: 20000 }) await expect(win.getByText('Gitea read client behind an injected fetch')).toBeVisible({ timeout: 20000 })
// Lifecycle inference (#5): columns come from the real event stream — merged
// work lands in Done, so that column is non-empty (proves timelines drove it,
// not the three-column fallback which would still show closed issues in Done).
await expect(win.getByText('Done', { exact: true })).toBeVisible()
await win.screenshot({ path: join(here, '.artifacts', 'screens', 'live-board.png'), fullPage: true, animations: 'disabled' }) await win.screenshot({ path: join(here, '.artifacts', 'screens', 'live-board.png'), fullPage: true, animations: 'disabled' })
// Back to Focus — the deterministic scheduler's real Now/Next/Later. These // Back to Focus — the deterministic scheduler's real Now/Next/Later. These
@@ -30,6 +34,47 @@ test.describe('live backlog', () => {
await expect(win.getByText(/Cold-start priors/)).toBeVisible() await expect(win.getByText(/Cold-start priors/)).toBeVisible()
await win.screenshot({ path: join(here, '.artifacts', 'screens', 'live-focus.png'), fullPage: true, animations: 'disabled' }) await win.screenshot({ path: join(here, '.artifacts', 'screens', 'live-focus.png'), fullPage: true, animations: 'disabled' })
// Runway → calibration surface, fitted from real closed-issue actuals (#1).
// With <20 estimated closes the repo is honestly cold-start; the note proves
// the fit ran on real data, not the fixture's "calibrated on 27".
await rail.getByRole('button', { name: 'Runway' }).click()
await expect(
win.getByText(/cold-start priors · \d+\/20 closed issues estimated|calibrated on \d+ closed/),
).toBeVisible()
// Real per-milestone forecasts — these milestone names come from gitea, not the
// fixture (which lists Beta / Pilot-ready / v1.0).
await expect(win.getByText(/P2 — Scheduler/)).toBeVisible()
// Real capacity config from pm-state (christian/stephen), not the fixture (Stephen/Ana K.)
await expect(win.getByText('christian', { exact: true })).toBeVisible()
await expect(win.getByText(/pd\/day/).first()).toBeVisible()
await win.screenshot({ path: join(here, '.artifacts', 'screens', 'live-runway.png'), fullPage: true, animations: 'disabled' })
// Milestone drill-in — clicking a real milestone opens its real detail
await win.getByText(/P2 — Scheduler/).click()
await expect(win.getByRole('heading', { name: 'P2 — Scheduler + Monte Carlo' })).toBeVisible()
await expect(win.getByText(/\d+ issues · est \d+d/)).toBeVisible()
await win.screenshot({ path: join(here, '.artifacts', 'screens', 'live-milestone.png'), fullPage: true, animations: 'disabled' })
await rail.getByRole('button', { name: 'Runway' }).click()
await win.getByRole('button', { name: 'Full report' }).click()
await expect(win.getByText(/cold-start · \d+\/20|curve active · n ≥ 20/)).toBeVisible()
await win.screenshot({ path: join(here, '.artifacts', 'screens', 'live-calibration.png'), fullPage: true, animations: 'disabled' })
// Write path (apply_changes): open the top scheduled issue, propose an
// estimate change, and confirm the propose-approve diff renders — then CANCEL
// so the live run never mutates the real repo (the PUT is unit-tested; a
// one-off change→revert verified it against gitea manually).
await rail.getByRole('button', { name: 'Morning service' }).click()
await win.getByRole('main').getByRole('link').first().click()
await expect(win.getByText(/· stephen\/commitea/)).toBeVisible()
await win.getByRole('button', { name: 'Adjust' }).click()
await expect(win.getByText('Adjust estimate & priority')).toBeVisible()
await win.getByRole('combobox').first().selectOption('est/8d')
await expect(win.getByText('Proposed label change')).toBeVisible()
await expect(win.getByText(/est\/8d/).last()).toBeVisible()
await win.screenshot({ path: join(here, '.artifacts', 'screens', 'live-apply-change.png'), fullPage: true, animations: 'disabled' })
await win.getByRole('button', { name: 'Cancel' }).click() // no mutation
await app.close() await app.close()
}) })
}) })

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@@ -0,0 +1,37 @@
import { dirname, join } from 'node:path'
import { fileURLToPath } from 'node:url'
import { _electron as electron, expect, test } from '@playwright/test'
const here = dirname(fileURLToPath(import.meta.url))
const MAIN = join(here, '..', 'out', 'main', 'index.js')
// Opt-in (GITEA_LIVE=1 + COMMITEA_MODEL_LIVE=1 + a local model on :1234). Launches
// WITHOUT COMMITEA_E2E so capture_work runs the real decomposition. It Discards at
// the end so the run never files junk issues (the create-issue POST is unit-tested).
test.describe('live capture_work', () => {
test('decomposes a braindump into a reviewable ticket set', async () => {
test.skip(!process.env.GITEA_LIVE || !process.env.COMMITEA_MODEL_LIVE, 'live model test — opt-in')
test.setTimeout(300_000)
const app = await electron.launch({ args: [MAIN], env: { ...process.env } })
const win = await app.firstWindow()
await win.waitForLoadState('domcontentloaded')
const rail = win.getByRole('navigation', { name: 'Primary' })
await rail.getByRole('button', { name: 'Capture' }).click()
await expect(win.getByRole('heading', { name: 'Capture' })).toBeVisible()
// the braindump is prefilled; run the real decomposition
await win.getByRole('button', { name: 'Brew tickets' }).click()
// capture_work → the review tray with a real, estimated ticket set
await expect(win.getByText(/tickets · ~\d+d of work/)).toBeVisible({ timeout: 240_000 })
await expect(win.getByRole('button', { name: 'Approve all' })).toBeVisible()
await win.screenshot({ path: join(here, '.artifacts', 'screens', 'live-capture.png'), fullPage: true, animations: 'disabled' })
// Discard — never file junk issues into the real repo from a test
await win.getByRole('button', { name: 'Discard' }).click()
await expect(win.getByRole('button', { name: 'Brew tickets' })).toBeVisible()
await app.close()
})
})

View File

@@ -0,0 +1,32 @@
import { dirname, join } from 'node:path'
import { fileURLToPath } from 'node:url'
import { _electron as electron, expect, test } from '@playwright/test'
const here = dirname(fileURLToPath(import.meta.url))
const MAIN = join(here, '..', 'out', 'main', 'index.js')
// Opt-in (GITEA_LIVE=1 + COMMITEA_MODEL_LIVE=1 + a local model + the commitea-pm-state
// repo). Reginald records a standing directive; it's appended to the real pm-state
// ledger. The append is idempotent-ish (a fresh line each run); this only reads back
// that a directive was consulted, and leaves the ledger intact.
test.describe('live record_directive', () => {
test('logs a standing directive to the pm-state ledger', async () => {
test.skip(!process.env.GITEA_LIVE || !process.env.COMMITEA_MODEL_LIVE, 'live model test — opt-in')
test.setTimeout(300_000)
const app = await electron.launch({ args: [MAIN], env: { ...process.env } })
const win = await app.firstWindow()
await win.waitForLoadState('domcontentloaded')
await expect(win.getByText(/· local$/)).toBeVisible({ timeout: 20000 })
const composer = win.getByPlaceholder(/Tell me what to do/)
await composer.fill('Record a standing directive: freeze scope for beta, pilots come first.')
await composer.press('Enter')
// the agent logged it to the ledger (record_directive), not applied a change
await expect(win.getByText(/consulted the directive ledger/)).toBeVisible({ timeout: 240_000 })
await win.screenshot({ path: join(here, '.artifacts', 'screens', 'live-directive.png'), fullPage: true, animations: 'disabled' })
await app.close()
})
})

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@@ -0,0 +1,56 @@
import { dirname, join } from 'node:path'
import { mkdtempSync, readFileSync } from 'node:fs'
import { tmpdir } from 'node:os'
import { fileURLToPath } from 'node:url'
import { _electron as electron, expect, test } from '@playwright/test'
const here = dirname(fileURLToPath(import.meta.url))
const MAIN = join(here, '..', 'out', 'main', 'index.js')
/** Read the real token from .env.local (walking up) so the test can fill the form. */
function readToken(): string | null {
let dir = here
for (let i = 0; i < 6; i++) {
try {
const m = /^GITEA_TOKEN\s*=\s*(.+?)\s*$/m.exec(readFileSync(join(dir, '.env.local'), 'utf8'))
if (m) return m[1].trim()
} catch {
/* keep walking */
}
dir = dirname(dir)
}
return null
}
// Opt-in (GITEA_LIVE=1). Forces the onboarding path (COMMITEA_NO_ENV_LOCAL) with a
// fresh userData, fills the real connection form, and asserts it lands on real data.
test.describe('live onboarding', () => {
test('connect form → real board', async () => {
const token = process.env.GITEA_LIVE ? readToken() : null
test.skip(!token, 'GITEA_LIVE + a .env.local token required')
test.setTimeout(90_000)
const app = await electron.launch({
args: [MAIN],
env: { ...process.env, COMMITEA_NO_ENV_LOCAL: '1', COMMITEA_USERDATA: mkdtempSync(join(tmpdir(), 'commitea-')) },
})
const win = await app.firstWindow()
await win.waitForLoadState('domcontentloaded')
// the connection gate, not the app
await expect(win.getByText(/Connect your Gitea/)).toBeVisible({ timeout: 15000 })
await win.getByPlaceholder('your-org').fill('christian')
await win.getByPlaceholder('your-repo').fill('commitea')
await win.getByPlaceholder(/gitea PAT/).fill(token!)
await win.getByRole('button', { name: 'Connect' }).click()
// it validated + saved + reconciled into the real board — real issue titles prove it
const rail = win.getByRole('navigation', { name: 'Primary' })
await rail.getByRole('button', { name: 'The pot' }).click()
await expect(win.getByText(/Model router|SQLite cache bootstrap|Purity\/rebuild/).first()).toBeVisible({ timeout: 30000 })
await win.screenshot({ path: join(here, '.artifacts', 'screens', 'live-onboarding.png'), fullPage: true, animations: 'disabled' })
await app.close()
})
})

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@@ -0,0 +1,37 @@
import { dirname, join } from 'node:path'
import { fileURLToPath } from 'node:url'
import { _electron as electron, expect, test } from '@playwright/test'
const here = dirname(fileURLToPath(import.meta.url))
const MAIN = join(here, '..', 'out', 'main', 'index.js')
// Opt-in (GITEA_LIVE=1). A real launch persists the snapshot; a second launch with
// gitea unreachable must still show the board + real scheduler output from the
// persisted cache (offline reads). No model needed.
test.describe('live persistence', () => {
test('offline: serves the persisted snapshot', async () => {
test.skip(!process.env.GITEA_LIVE, 'GITEA_LIVE not set — opt-in live test')
test.setTimeout(120_000)
// launch 1 — real reconcile writes the snapshot to disk
const app1 = await electron.launch({ args: [MAIN], env: { ...process.env } })
const w1 = await app1.firstWindow()
await w1.waitForLoadState('domcontentloaded')
// a scheduler-only phrase confirms real data reconciled (never emitted by fixtures)
await expect(w1.getByText(/on the critical path|unblocks #|waits on #|· ready/).first()).toBeVisible({ timeout: 30000 })
await app1.close()
// launch 2 — gitea unreachable; the reconcile must fall back to the persisted snapshot
const app2 = await electron.launch({
args: [MAIN],
env: { ...process.env, GITEA_BASE_URL: 'http://127.0.0.1:9' },
})
const w2 = await app2.firstWindow()
await w2.waitForLoadState('domcontentloaded')
// Focus still renders real scheduler output — proving it came from the cache, offline
await expect(w2.getByText(/on the critical path|unblocks #|waits on #|· ready/).first()).toBeVisible({ timeout: 20000 })
await w2.screenshot({ path: join(here, '.artifacts', 'screens', 'live-offline.png'), fullPage: true, animations: 'disabled' })
await app2.close()
})
})

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@@ -0,0 +1,56 @@
import { dirname, join } from 'node:path'
import { fileURLToPath } from 'node:url'
import { _electron as electron, expect, test } from '@playwright/test'
const here = dirname(fileURLToPath(import.meta.url))
const MAIN = join(here, '..', 'out', 'main', 'index.js')
// Opt-in (GITEA_LIVE=1 + COMMITEA_MODEL_LIVE=1 + a local model on :1234). Launches
// WITHOUT COMMITEA_E2E so Reginald runs the real agent loop against the real repo.
test.describe('live Reginald', () => {
test('answers a question by consulting the real project', async () => {
test.skip(!process.env.GITEA_LIVE || !process.env.COMMITEA_MODEL_LIVE, 'live model test — opt-in')
test.setTimeout(300_000) // a big local model is slow: ~2 calls/turn + a reconcile
const app = await electron.launch({ args: [MAIN], env: { ...process.env } })
const win = await app.firstWindow()
await win.waitForLoadState('domcontentloaded')
// model configured → the live greeting + header (the loaded model, not the scripted demo)
await expect(win.getByText(/· local$/)).toBeVisible({ timeout: 20000 })
await expect(win.getByText(/I check the real board before I answer/)).toBeVisible()
const composer = win.getByPlaceholder(/Tell me what to do/)
await composer.fill('What should I work on right now?')
await composer.press('Enter')
// the agent loop ran end-to-end: it consulted the project, then answered
await expect(win.getByText(/consulted the project/)).toBeVisible({ timeout: 240_000 })
await win.screenshot({ path: join(here, '.artifacts', 'screens', 'live-reginald.png'), fullPage: true, animations: 'disabled' })
await app.close()
})
test('proposes an estimate change for inline approval (writes via chat)', async () => {
test.skip(!process.env.GITEA_LIVE || !process.env.COMMITEA_MODEL_LIVE, 'live model test — opt-in')
test.setTimeout(300_000)
const app = await electron.launch({ args: [MAIN], env: { ...process.env } })
const win = await app.firstWindow()
await win.waitForLoadState('domcontentloaded')
await expect(win.getByText(/· local$/)).toBeVisible({ timeout: 20000 })
const composer = win.getByPlaceholder(/Tell me what to do/)
await composer.fill('Set the estimate on issue #3 to est/5d.')
await composer.press('Enter')
// propose_change → an inline propose-approve card (never an auto-write)
await expect(win.getByText('Proposed · #3')).toBeVisible({ timeout: 240_000 })
await expect(win.getByText(/→ est\/5d/)).toBeVisible()
await win.screenshot({ path: join(here, '.artifacts', 'screens', 'live-reginald-propose.png'), fullPage: true, animations: 'disabled' })
// Dismiss so the live run never mutates the repo (the write path itself is #41-tested)
await win.getByRole('button', { name: 'Dismiss' }).click()
await expect(win.getByText(/Left #3 as it was/)).toBeVisible()
await app.close()
})
})

View File

@@ -97,7 +97,7 @@ test('Directives: consequence diff + append-only ledger', async ({ app, window }
test('Settings: connection, schema, and appearance sync with theme', async ({ app, window }) => { test('Settings: connection, schema, and appearance sync with theme', async ({ app, window }) => {
await app.nav('Settings').click() await app.nav('Settings').click()
await expect(window.getByRole('heading', { name: 'Settings' })).toBeVisible() await expect(window.getByRole('heading', { name: 'Settings' })).toBeVisible()
await expect(window.getByText('Managed repos')).toBeVisible() await expect(window.getByRole('heading', { name: 'Connection' })).toBeVisible()
await app.screenshot('settings') await app.screenshot('settings')
// the Evening (dark) radio drives the shared theme // the Evening (dark) radio drives the shared theme
await window.getByText('Evening (dark)').click() await window.getByText('Evening (dark)').click()

View File

@@ -0,0 +1,101 @@
/**
* Persistent app config for a shared/team build. The gitea PAT is encrypted at
* rest with Electron's safeStorage (OS keychain-backed) and only ever lives in
* the main process — the renderer receives everything *except* the token. Config
* lives in userData so each teammate has their own; a `.env.local` remains a dev
* fallback (see resolveConfig). Nothing here runs under COMMITEA_E2E.
*/
import { readFileSync, writeFileSync } from 'node:fs'
import { join } from 'node:path'
import { app, safeStorage } from 'electron'
export interface AppConfig {
baseUrl: string
owner: string
repo: string
token: string
/** Defaults to `${repo}-pm-state` when omitted. */
pmStateRepo?: string
/** OpenAI-compatible base for Reginald; chat stays off when absent. */
modelUrl?: string
}
/** The renderer-safe view — everything but the token, plus whether one is set. */
export type PublicConfig = Omit<AppConfig, 'token'> & { hasToken: boolean }
interface StoredConfig {
baseUrl: string
owner: string
repo: string
tokenEnc: string | null // base64 of safeStorage-encrypted token
pmStateRepo?: string
modelUrl?: string
}
function configPath(): string {
return join(app.getPath('userData'), 'commitea-config.json')
}
function readStored(): StoredConfig | null {
try {
return JSON.parse(readFileSync(configPath(), 'utf8')) as StoredConfig
} catch {
return null
}
}
/** Full config incl. the decrypted token, or null when unset. Main-process only. */
export function loadConfig(): AppConfig | null {
const s = readStored()
if (!s || !s.baseUrl || !s.owner || !s.repo) return null
let token = ''
if (s.tokenEnc) {
try {
token = safeStorage.decryptString(Buffer.from(s.tokenEnc, 'base64'))
} catch {
token = '' // key rotated / different machine — treat as no token
}
}
if (!token) return null
return { baseUrl: s.baseUrl, owner: s.owner, repo: s.repo, token, pmStateRepo: s.pmStateRepo, modelUrl: s.modelUrl }
}
/** The renderer-safe view of the saved config (never includes the token). */
export function publicConfig(): PublicConfig | null {
const s = readStored()
if (!s) return null
return {
baseUrl: s.baseUrl,
owner: s.owner,
repo: s.repo,
pmStateRepo: s.pmStateRepo,
modelUrl: s.modelUrl,
hasToken: !!s.tokenEnc,
}
}
/** Encrypt the token + persist. Best-effort; throws only on a genuine write failure. */
export function saveConfig(cfg: AppConfig): void {
const tokenEnc = cfg.token
? Buffer.from(safeStorage.encryptString(cfg.token)).toString('base64')
: (readStored()?.tokenEnc ?? null) // keep the existing token if none supplied
const stored: StoredConfig = {
baseUrl: cfg.baseUrl.trim().replace(/\/+$/, ''),
owner: cfg.owner.trim(),
repo: cfg.repo.trim(),
tokenEnc,
pmStateRepo: cfg.pmStateRepo?.trim() || undefined,
modelUrl: cfg.modelUrl?.trim() || undefined,
}
writeFileSync(configPath(), JSON.stringify(stored, null, 2), 'utf8')
}
export function clearConfig(): void {
try {
writeFileSync(configPath(), JSON.stringify({ baseUrl: '', owner: '', repo: '', tokenEnc: null }), 'utf8')
} catch {
// ignore
}
}

View File

@@ -6,12 +6,32 @@
* properly later. * properly later.
*/ */
import { randomUUID } from 'node:crypto'
import { readFileSync } from 'node:fs' import { readFileSync } from 'node:fs'
import { dirname, join } from 'node:path' import { dirname, join } from 'node:path'
import { createGiteaClient, type GiteaConfig } from '@commitea/core' import {
appendDirective,
createGiteaClient,
GiteaApiError,
type DirectiveEntry,
type GiteaClient,
type GiteaConfig,
type GiteaLabel,
type IssueChange,
type LifecycleEvent,
makeDirectiveEntry,
parseCapacityConfig,
parseDirectiveLog,
planIssueChange,
type ProjectSnapshot,
type DirectiveInput,
} from '@commitea/core'
import { ipcMain } from 'electron' import { ipcMain } from 'electron'
import { type AppConfig, clearConfig, loadConfig, publicConfig, saveConfig } from './config-store.js'
import { loadSnapshot, saveSnapshot } from './snapshot-store.js'
/** Walk up from cwd looking for a .env.local with a GITEA_TOKEN (dev convenience). */ /** Walk up from cwd looking for a .env.local with a GITEA_TOKEN (dev convenience). */
function loadEnvLocalToken(): string | undefined { function loadEnvLocalToken(): string | undefined {
let dir = process.cwd() let dir = process.cwd()
@@ -30,9 +50,15 @@ function loadEnvLocalToken(): string | undefined {
return undefined return undefined
} }
function resolveConfig(): GiteaConfig | null { /** Saved config wins (team build); a `.env.local` is the dev fallback; e2e uses fixtures. */
export function resolveConfig(): GiteaConfig | null {
// E2E runs against fixtures — never hit the network from the test harness. // E2E runs against fixtures — never hit the network from the test harness.
if (process.env.COMMITEA_E2E === '1') return null if (process.env.COMMITEA_E2E === '1') return null
const saved = loadConfig()
if (saved) return { baseUrl: saved.baseUrl, token: saved.token, owner: saved.owner, repo: saved.repo }
// COMMITEA_NO_ENV_LOCAL forces the onboarding path (no .env.local fallback) for testing.
if (process.env.COMMITEA_NO_ENV_LOCAL === '1') return null
// dev fallback — .env.local / env vars
const token = process.env.GITEA_TOKEN ?? loadEnvLocalToken() const token = process.env.GITEA_TOKEN ?? loadEnvLocalToken()
if (!token) return null if (!token) return null
return { return {
@@ -43,27 +69,282 @@ function resolveConfig(): GiteaConfig | null {
} }
} }
export function registerGiteaIpc(): void { /** The pm-state repo name: configured, else `${repo}-pm-state`, else the env override. */
const config = resolveConfig() function pmStateRepoName(config: GiteaConfig): string {
const client = config ? createGiteaClient(config, fetch) : null return loadConfig()?.pmStateRepo ?? process.env.COMMITEA_PMSTATE_REPO ?? `${config.repo}-pm-state`
const repo = config ? `${config.owner}/${config.repo}` : null }
ipcMain.handle('gitea:status', () => ({ configured: !!config, repo })) // Memoized clients; reset via resetClients() when the config changes.
let sharedClient: GiteaClient | null | undefined
let pmStateClient: GiteaClient | null | undefined
/** Drop the cached clients + snapshot so the next call re-reads the new config. */
export function resetClients(): void {
sharedClient = undefined
pmStateClient = undefined
labelCache = null
invalidateSnapshot()
}
export function getGiteaClient(): GiteaClient | null {
if (sharedClient === undefined) {
const config = resolveConfig()
sharedClient = config ? createGiteaClient(config, fetch) : null
}
return sharedClient
}
// The pm-state repo holds machine-derived state (the directive ledger). Same
// token/host as the work repo, a different repo (the purity split, decisions D4).
export function getPmStateClient(): GiteaClient | null {
if (pmStateClient === undefined) {
const config = resolveConfig()
pmStateClient = config ? createGiteaClient({ ...config, repo: pmStateRepoName(config) }, fetch) : null
}
return pmStateClient
}
const DIRECTIVE_LOG_PATH = 'directives/log.jsonl'
async function readDirectiveLog(client: GiteaClient): Promise<{ text: string; sha: string | null }> {
const file = await client.getFile(DIRECTIVE_LOG_PATH)
if (!file) return { text: '', sha: null }
return { text: Buffer.from(file.contentBase64, 'base64').toString('utf8'), sha: file.sha }
}
/** Record a directive: read the ledger, append, write it back (concatenation merge). */
export async function appendDirectiveEntry(client: GiteaClient, input: DirectiveInput): Promise<DirectiveEntry> {
const entry = makeDirectiveEntry(input, randomUUID(), new Date().toISOString())
const { text, sha } = await readDirectiveLog(client)
const next = appendDirective(text, entry)
await client.putFile(DIRECTIVE_LOG_PATH, {
contentBase64: Buffer.from(next, 'utf8').toString('base64'),
message: `directive: ${entry.kind}`,
sha: sha ?? undefined,
})
return entry
}
export async function readDirectives(client: GiteaClient) {
const { text } = await readDirectiveLog(client)
return parseDirectiveLog(text)
}
const CAPACITY_PATH = 'capacity/members.json'
/** Read the capacity config from the pm-state repo (empty when absent). */
export async function readCapacity(client: GiteaClient) {
const file = await client.getFile(CAPACITY_PATH)
if (!file) return []
try {
return parseCapacityConfig(JSON.parse(Buffer.from(file.contentBase64, 'base64').toString('utf8')))
} catch {
return []
}
}
/** Full reconcile: issues + milestones + native deps + lifecycle timelines. */
export async function reconcileSnapshot(
client: GiteaClient,
): Promise<ProjectSnapshot & { milestones: Awaited<ReturnType<GiteaClient['listMilestones']>> }> {
const [issues, milestones] = await Promise.all([client.listIssues(), client.listMilestones()])
// dependency edges among the open scope (the scheduler only plans what's left)
const open = issues.filter((i) => i.state === 'open')
const perIssue = await Promise.all(
open.map(async (i) => ({ issue: i.number, dependsOn: await client.getIssueDependencies(i.number) })),
)
const deps = perIssue.flatMap(({ issue, dependsOn }) => dependsOn.map((d) => ({ issue, dependsOn: d })))
// lifecycle timelines for every issue (open → columns/badges, closed → calibration actuals)
const timelineEntries = await Promise.all(
issues.map(async (i) => [i.number, await client.getIssueTimeline(i.number)] as const),
)
const timelines: Record<number, LifecycleEvent[]> = Object.fromEntries(timelineEntries)
return { issues, milestones, deps, timelines }
}
type Snapshot = Awaited<ReturnType<typeof reconcileSnapshot>>
/**
* A single in-memory reconcile cache shared across the app. A full reconcile is
* ~2N gitea calls (deps + timelines per issue); without this, every agent tool
* call refetched the whole repo. Reads within `maxAgeMs` reuse the cache;
* `getSnapshot({ maxAgeMs: 0 })` forces a fresh pull (the explicit UI reconcile),
* and any write calls `invalidateSnapshot()` so the next read sees it. The cache
* is rebuildable — the durable truth stays in gitea (the purity split, D4).
*/
let snapshotCache: { snap: Snapshot; at: number } | null = null
export async function getSnapshot(client: GiteaClient, opts?: { maxAgeMs?: number }): Promise<Snapshot> {
const maxAgeMs = opts?.maxAgeMs ?? 0
if (snapshotCache && maxAgeMs > 0 && Date.now() - snapshotCache.at <= maxAgeMs) {
return snapshotCache.snap
}
const snap = await reconcileSnapshot(client)
snapshotCache = { snap, at: Date.now() }
saveSnapshot(snap, new Date().toISOString()) // persist for instant boot + offline
return snap
}
/** Drop the cache so the next read reflects a just-made write. */
export function invalidateSnapshot(): void {
snapshotCache = null
}
/**
* The last persisted snapshot (from a previous session), for instant boot. The
* renderer shows it immediately, then a real reconcile supersedes it
* (stale-while-revalidate). Returns null when there's nothing on disk; its
* `savedAt` marks staleness. It does NOT seed the cache — agent tool calls
* always reconcile fresh so they never reason over stale data.
*/
export function bootSnapshot(): (Snapshot & { savedAt: string }) | null {
const persisted = loadSnapshot()
if (!persisted) return null
return {
issues: persisted.issues,
milestones: persisted.milestones,
deps: persisted.deps,
timelines: persisted.timelines,
savedAt: persisted.savedAt,
} as unknown as Snapshot & { savedAt: string }
}
/** Agent tool calls tolerate a slightly stale snapshot (seconds) to stay responsive. */
export const AGENT_SNAPSHOT_TTL_MS = 30_000
// Label cache is reset with the clients (module-level so resetClients can clear it).
let labelCache: GiteaLabel[] | null = null
async function resolveLabelIds(client: GiteaClient, names: string[]): Promise<number[]> {
const lookup = () => new Map(labelCache!.map((l) => [l.name, l.id]))
if (!labelCache) labelCache = await client.listLabels()
let byName = lookup()
if (names.some((n) => !byName.has(n))) {
labelCache = await client.listLabels() // a name we don't know — refetch once
byName = lookup()
}
return names.map((n) => byName.get(n)).filter((id): id is number => id != null)
}
export function registerGiteaIpc(): void {
ipcMain.handle('gitea:status', () => {
const cfg = resolveConfig()
return {
configured: !!cfg,
repo: cfg ? `${cfg.owner}/${cfg.repo}` : null,
demo: process.env.COMMITEA_E2E === '1',
}
})
// Instant boot: the last persisted snapshot, shown before the fresh reconcile lands.
ipcMain.handle('gitea:boot', () => {
if (!getGiteaClient()) return { configured: false }
const persisted = bootSnapshot()
return persisted ? { configured: true, cached: true, ...persisted } : { configured: true, cached: false }
})
ipcMain.handle('gitea:reconcile', async () => { ipcMain.handle('gitea:reconcile', async () => {
if (!client) return { configured: false, issues: [], milestones: [], deps: [] } const client = getGiteaClient()
const [issues, milestones] = await Promise.all([client.listIssues(), client.listMilestones()]) if (!client) return { configured: false, issues: [], milestones: [], deps: [], timelines: {} }
// dependency edges among the open scope (the scheduler only plans what's left) try {
const open = issues.filter((i) => i.state === 'open') // explicit UI sync — force fresh, and warm the cache for agent tool calls
const perIssue = await Promise.all( const snap = await getSnapshot(client, { maxAgeMs: 0 })
open.map(async (i) => ({ issue: i.number, dependsOn: await client.getIssueDependencies(i.number) })), return { configured: true, stale: false, ...snap }
) } catch (e) {
const deps = perIssue.flatMap(({ issue, dependsOn }) => dependsOn.map((d) => ({ issue, dependsOn: d }))) // offline / gitea down — serve the last persisted snapshot rather than error out
return { configured: true, issues, milestones, deps } const persisted = bootSnapshot()
if (persisted) return { configured: true, stale: true, ...persisted }
throw e
}
}) })
ipcMain.handle('gitea:getIssue', async (_event, index: number) => { ipcMain.handle('gitea:getIssue', async (_event, index: number) => {
const client = getGiteaClient()
if (!client) return null if (!client) return null
return client.getIssue(index) return client.getIssue(index)
}) })
// The write path (apply_changes). Additive label swaps, applied only after the
// renderer's propose-approve. Returns the plan + the freshly-read issue.
ipcMain.handle('gitea:applyChange', async (_event, change: IssueChange) => {
const client = getGiteaClient()
if (!client) return { ok: false as const, reason: 'unconfigured' as const }
const current = await client.getIssue(change.issue)
const plan = planIssueChange(current.labels, change)
if (plan.noop) return { ok: true as const, plan, issue: current }
const ids = await resolveLabelIds(client, plan.labels)
await client.setIssueLabels(change.issue, ids)
const issue = await client.getIssue(change.issue)
invalidateSnapshot() // the board + forecast must reflect the label change
return { ok: true as const, plan, issue }
})
// capture_work filing: open each approved issue with its est/* + p/* labels.
// Only touches the CommiTea label namespaces — no invented labels (zero-pollution).
ipcMain.handle(
'gitea:createIssues',
async (_event, issues: { title: string; body?: string; estimate?: string; priority?: string }[]) => {
const client = getGiteaClient()
if (!client) return { ok: false as const, reason: 'unconfigured' as const }
const created: { number: number; title: string }[] = []
for (const it of issues) {
const names = [it.estimate, it.priority].filter((n): n is string => !!n)
const labelIds = await resolveLabelIds(client, names)
const issue = await client.createIssue({ title: it.title, body: it.body, labelIds })
created.push({ number: issue.number, title: issue.title })
}
if (created.length) invalidateSnapshot() // new issues enter the board/scope
return { ok: true as const, created }
},
)
// Read the directive ledger from the pm-state repo (for the Directives screen).
ipcMain.handle('pmstate:directives', async () => {
const pm = getPmStateClient()
if (!pm) return { ok: false as const, reason: 'unconfigured' as const }
try {
return { ok: true as const, directives: await readDirectives(pm) }
} catch (e) {
return { ok: false as const, reason: 'error' as const, message: e instanceof Error ? e.message : String(e) }
}
})
// Read the capacity config from the pm-state repo (for capacity-aware forecasts).
ipcMain.handle('pmstate:capacity', async () => {
const pm = getPmStateClient()
if (!pm) return { ok: false as const, reason: 'unconfigured' as const, members: [] }
try {
return { ok: true as const, members: await readCapacity(pm) }
} catch {
return { ok: true as const, members: [] }
}
})
// ---- config (team onboarding) ----
ipcMain.handle('config:get', () => publicConfig())
ipcMain.handle('config:set', (_event, cfg: AppConfig) => {
saveConfig(cfg)
resetClients() // new config takes effect without a restart
return { ok: true as const }
})
ipcMain.handle('config:clear', () => {
clearConfig()
resetClients()
return { ok: true as const }
})
// Validate a token + repo before saving: any authed read on the repo proves access.
ipcMain.handle('config:test', async (_event, cfg: AppConfig) => {
try {
const c = createGiteaClient(
{ baseUrl: cfg.baseUrl.replace(/\/+$/, ''), owner: cfg.owner.trim(), repo: cfg.repo.trim(), token: cfg.token },
fetch,
)
await c.listLabels()
return { ok: true as const }
} catch (e) {
return { ok: false as const, error: e instanceof GiteaApiError ? `${e.status}` : e instanceof Error ? e.message : String(e) }
}
})
} }

View File

@@ -2,7 +2,11 @@ import { join } from 'node:path'
import { BrowserWindow, app, shell } from 'electron' import { BrowserWindow, app, shell } from 'electron'
// Test hook: isolate config/cache to a throwaway dir (must run before any getPath).
if (process.env.COMMITEA_USERDATA) app.setPath('userData', process.env.COMMITEA_USERDATA)
import { registerGiteaIpc } from './gitea.js' import { registerGiteaIpc } from './gitea.js'
import { registerModelIpc } from './model.js'
function createWindow(): void { function createWindow(): void {
const win = new BrowserWindow({ const win = new BrowserWindow({
@@ -35,6 +39,7 @@ function createWindow(): void {
void app.whenReady().then(() => { void app.whenReady().then(() => {
registerGiteaIpc() registerGiteaIpc()
registerModelIpc()
createWindow() createWindow()
app.on('activate', () => { app.on('activate', () => {

View File

@@ -0,0 +1,181 @@
/**
* Main-process model bridge — Reginald's brain runs here. Model traffic (like
* gitea's) stays in main: the renderer is CSP-locked and never talks to the
* LLM directly. On `model:chat` it drives the agent loop against the configured
* OpenAI-compatible endpoint, executing `query_project` by reconciling the repo
* and building the requested view. v0 is read-only — writes still go through the
* propose-approve controls.
*/
import {
buildProjectView,
captureWork,
type ChangeProposal,
type ChatMessage,
createChatClient,
describeChange,
type ModelRouter,
type ProjectView,
proposalsFor,
type ProposeChangeArgs,
type QueryFilters,
REGINALD_SYSTEM,
REGINALD_TOOLS,
runAgentTurn,
toDirectiveInput,
} from '@commitea/core'
import { app, ipcMain } from 'electron'
import { loadConfig } from './config-store.js'
import {
AGENT_SNAPSHOT_TTL_MS,
appendDirectiveEntry,
getGiteaClient,
getPmStateClient,
getSnapshot,
} from './gitea.js'
/** Small local model for prose + the read tool; big model reserved for later decomposition. */
function resolveModelRouter(): ModelRouter | null {
if (process.env.COMMITEA_E2E === '1') return null // e2e uses the scripted fixture Reginald
// Config wins (team build); env is the dev override; localhost is a dev convenience only.
const baseUrl =
loadConfig()?.modelUrl ??
process.env.COMMITEA_MODEL_URL ??
(app.isPackaged ? undefined : 'http://localhost:1234/v1')
if (!baseUrl) return null
return {
small: { baseUrl, model: process.env.COMMITEA_MODEL_SMALL ?? '' },
big: { baseUrl, model: process.env.COMMITEA_MODEL_BIG ?? '' },
}
}
/** Probe the endpoint for a usable model; null when unreachable (chat then stays off). */
async function probeModel(baseUrl: string): Promise<string | null> {
try {
const model = await resolveLoadedModel(baseUrl, process.env.COMMITEA_MODEL_SMALL ?? '')
// resolveLoadedModel only returns a real id when the server answered; the default
// fallback means unreachable, so confirm with a lightweight models call.
const res = await fetch(`${baseUrl.replace(/\/+$/, '')}/models`)
return res.ok ? model : null
} catch {
return null
}
}
/**
* Resolve which model to actually ask for. An explicit env override wins;
* otherwise ask the server which model is *loaded* (LM Studio's native
* `/api/v0/models`) so Reginald follows whatever you load — no config churn on a
* model switch. Falls back to the first non-embedding model, then a sane default.
*/
async function resolveLoadedModel(baseUrl: string, override: string): Promise<string> {
if (override) return override
const root = baseUrl.replace(/\/v1\/?$/, '')
try {
const res = await fetch(`${root}/api/v0/models`)
if (res.ok) {
const data = (await res.json()) as { data?: { id: string; state?: string; type?: string }[] }
const loaded = (data.data ?? []).find((m) => m.state === 'loaded' && m.type !== 'embeddings')
if (loaded) return loaded.id
}
} catch {
// native API unavailable — fall through to the OpenAI listing
}
try {
const res = await fetch(`${baseUrl.replace(/\/+$/, '')}/models`)
if (res.ok) {
const data = (await res.json()) as { data?: { id: string }[] }
const first = (data.data ?? []).find((m) => !/embed/i.test(m.id))
if (first) return first.id
}
} catch {
// ignore — use the default
}
return 'google/gemma-4-e4b'
}
export function registerModelIpc(): void {
ipcMain.handle('model:status', async () => {
const r = resolveModelRouter() // resolve fresh so a saved modelUrl takes effect
if (!r) return { configured: false, model: null }
const model = await probeModel(r.small.baseUrl) // only "configured" if a model actually answers
return { configured: !!model, model }
})
ipcMain.handle('model:chat', async (event, messages: ChatMessage[]) => {
const router = resolveModelRouter()
if (!router) return { ok: false as const, reason: 'unconfigured' as const }
const client = getGiteaClient()
const model = await resolveLoadedModel(router.small.baseUrl, router.small.model)
const chat = createChatClient({ ...router.small, model }, fetch)
// stream the model's prose to the renderer token-by-token
const onToken = (delta: string) => {
if (!event.sender.isDestroyed()) event.sender.send('model:chat:token', delta)
}
// Proposals the model formulates this turn; the renderer approves them (the
// write happens through gitea:applyChange, never inside the loop).
const proposals: ChangeProposal[] = []
const execute = async (name: string, args: unknown) => {
if (!client) return { error: 'gitea is not configured' }
if (name === 'query_project') {
// reuse a recent reconcile — a multi-tool turn shouldn't refetch the repo each call
const snap = await getSnapshot(client, { maxAgeMs: AGENT_SNAPSHOT_TTL_MS })
const a = (args ?? {}) as { view: ProjectView; filters?: QueryFilters }
return buildProjectView(a.view, a.filters, snap, new Date())
}
if (name === 'propose_change') {
const a = (args ?? {}) as ProposeChangeArgs
const issue = await client.getIssue(a.issue).catch(() => null)
if (!issue) return { error: `issue #${a.issue} not found` }
const built = proposalsFor(a, issue.labels, issue.title)
proposals.push(...built)
return built.length
? { proposed: built.map((p) => ({ issue: a.issue, diff: describeChange(p.plan) })) }
: { proposed: [], note: 'no change — already at that value' }
}
if (name === 'record_directive') {
const pm = getPmStateClient()
if (!pm) return { error: 'pm-state is not configured' }
try {
const entry = await appendDirectiveEntry(pm, toDirectiveInput(args))
return { recorded: { kind: entry.kind, quote: entry.quote } }
} catch (e) {
return { error: `could not record — is the pm-state repo created? (${e instanceof Error ? e.message : e})` }
}
}
return { error: `unknown tool: ${name}` }
}
try {
const turn = await runAgentTurn({
complete: (m, t, ot) => chat.complete(m, t, ot),
messages: [{ role: 'system', content: REGINALD_SYSTEM }, ...messages],
tools: REGINALD_TOOLS,
execute,
onToken,
})
return { ok: true as const, content: turn.content, steps: turn.steps, proposals }
} catch (e) {
return { ok: false as const, reason: 'error' as const, message: e instanceof Error ? e.message : String(e) }
}
})
// capture_work — braindump → proposed issue set. The big model does the
// decomposition (with one loaded local model, that's the loaded one). Returns
// a proposal; nothing is filed until the Capture tray approves it.
ipcMain.handle('model:capture', async (_event, braindump: string) => {
const router = resolveModelRouter()
if (!router) return { ok: false as const, reason: 'unconfigured' as const }
const model = await resolveLoadedModel(router.big.baseUrl, router.big.model)
const chat = createChatClient({ ...router.big, model }, fetch)
try {
const proposal = await captureWork((m, t) => chat.complete(m, t), braindump)
return { ok: true as const, ...proposal }
} catch (e) {
return { ok: false as const, reason: 'error' as const, message: e instanceof Error ? e.message : String(e) }
}
})
}

View File

@@ -0,0 +1,47 @@
/**
* Durable snapshot store — the reconcile cache, persisted to disk. On boot the
* app shows the last snapshot instantly (stale-while-revalidate) instead of a
* blank board while ~2N gitea calls run; if gitea is unreachable, reads fall
* back to it (offline). It's a rebuildable mirror — the durable truth stays in
* gitea (the purity split, D4). A plain JSON file: the whole snapshot fits in
* memory at this scale, so indexed SQL buys nothing yet (see the PR).
*/
import { readFileSync, writeFileSync } from 'node:fs'
import { join } from 'node:path'
import { app } from 'electron'
/** The shape we persist — kept loose so a schema drift degrades to "no cache", not a crash. */
export interface PersistedSnapshot {
issues: unknown[]
milestones: unknown[]
deps: unknown[]
timelines: Record<number, unknown[]>
/** ISO time the snapshot was reconciled — shown as "cached since". */
savedAt: string
}
function snapshotPath(): string {
return join(app.getPath('userData'), 'commitea-snapshot.json')
}
/** Load the last persisted snapshot, or null if absent/corrupt. Never throws. */
export function loadSnapshot(): PersistedSnapshot | null {
try {
const parsed = JSON.parse(readFileSync(snapshotPath(), 'utf8')) as PersistedSnapshot
if (parsed && Array.isArray(parsed.issues)) return parsed
return null
} catch {
return null // missing file, bad JSON, or drift — treat as no cache
}
}
/** Persist a freshly reconciled snapshot. Best-effort — a write failure never breaks a reconcile. */
export function saveSnapshot(snap: Omit<PersistedSnapshot, 'savedAt'>, savedAt: string): void {
try {
writeFileSync(snapshotPath(), JSON.stringify({ ...snap, savedAt }), 'utf8')
} catch {
// disk full / permissions — the in-memory cache still works this session
}
}

View File

@@ -5,10 +5,46 @@ const api = {
gitea: { gitea: {
/** Whether the main process has a gitea token + target repo configured. */ /** Whether the main process has a gitea token + target repo configured. */
status: () => ipcRenderer.invoke('gitea:status'), status: () => ipcRenderer.invoke('gitea:status'),
/** The last persisted snapshot, for instant boot before the fresh reconcile. */
boot: () => ipcRenderer.invoke('gitea:boot'),
/** Full read of the managed repo — every issue + milestone. */ /** Full read of the managed repo — every issue + milestone. */
reconcile: () => ipcRenderer.invoke('gitea:reconcile'), reconcile: () => ipcRenderer.invoke('gitea:reconcile'),
/** One issue by index, normalized (or null if unconfigured). */ /** One issue by index, normalized (or null if unconfigured). */
getIssue: (index: number) => ipcRenderer.invoke('gitea:getIssue', index), getIssue: (index: number) => ipcRenderer.invoke('gitea:getIssue', index),
/** Apply an estimate/priority change (the write path); resolves to the plan + fresh issue. */
applyChange: (change: unknown) => ipcRenderer.invoke('gitea:applyChange', change),
/** File a set of captured issues with their est/* + p/* labels. */
createIssues: (issues: unknown) => ipcRenderer.invoke('gitea:createIssues', issues),
},
pmstate: {
/** Read the directive ledger from the pm-state repo. */
directives: () => ipcRenderer.invoke('pmstate:directives'),
/** Read the capacity config from the pm-state repo. */
capacity: () => ipcRenderer.invoke('pmstate:capacity'),
},
config: {
/** The saved config (never the token) — null when unset. */
get: () => ipcRenderer.invoke('config:get'),
/** Validate a token + repo before saving. */
test: (cfg: unknown) => ipcRenderer.invoke('config:test', cfg),
/** Save config (token encrypted in main); takes effect without restart. */
set: (cfg: unknown) => ipcRenderer.invoke('config:set', cfg),
/** Forget the saved config. */
clear: () => ipcRenderer.invoke('config:clear'),
},
model: {
/** Whether a model endpoint is configured (else the UI keeps the scripted Reginald). */
status: () => ipcRenderer.invoke('model:status'),
/** One agent turn: messages in, Reginald's prose + the tools it consulted out. */
chat: (messages: unknown) => ipcRenderer.invoke('model:chat', messages),
/** Subscribe to streamed prose tokens for the in-flight turn; returns an unsubscribe. */
onToken: (cb: (delta: string) => void) => {
const listener = (_e: unknown, delta: string) => cb(delta)
ipcRenderer.on('model:chat:token', listener)
return () => ipcRenderer.removeListener('model:chat:token', listener)
},
/** Decompose a braindump into a proposed issue set (capture_work). */
capture: (braindump: string) => ipcRenderer.invoke('model:capture', braindump),
}, },
} }

View File

@@ -1,11 +1,12 @@
import React from 'react' import React from 'react'
import { CALIBRATION } from '../../data/fixtures.js' import { CALIBRATION, type CalibrationData } from '../../data/fixtures.js'
import { Badge, Card, Icon } from '../ui/index.js' import { Badge, Card, Icon } from '../ui/index.js'
// Calibration report — estimate-vs-actual evidence behind the cones // Calibration report — estimate-vs-actual evidence behind the cones.
export function CalibrationScreen({ onBack }: { onBack: () => void }) { // `data` (real fit from closed-issue actuals) overrides the demo fixture.
const c = CALIBRATION export function CalibrationScreen({ onBack, data }: { onBack: () => void; data?: CalibrationData }) {
const c = data ?? CALIBRATION
// scatter chart geometry // scatter chart geometry
const W = 420, const W = 420,
@@ -68,7 +69,11 @@ export function CalibrationScreen({ onBack }: { onBack: () => void }) {
<h1 style={{ font: 'var(--text-display)', color: 'var(--ink-1)', margin: 0 }}>Calibration</h1> <h1 style={{ font: 'var(--text-display)', color: 'var(--ink-1)', margin: 0 }}>Calibration</h1>
<p style={{ font: 'var(--text-data)', color: 'var(--ink-3)', margin: '6px 0 0', whiteSpace: 'nowrap' }}>{c.n} closed issues with estimates · evidence, not opinion</p> <p style={{ font: 'var(--text-data)', color: 'var(--ink-3)', margin: '6px 0 0', whiteSpace: 'nowrap' }}>{c.n} closed issues with estimates · evidence, not opinion</p>
</div> </div>
<Badge tone="ok" dot>curve active · n 20</Badge> {c.active ? (
<Badge tone="ok" dot>curve active · n 20</Badge>
) : (
<Badge tone="warn" dot>cold-start · {c.n}/20</Badge>
)}
</header> </header>
</div> </div>
@@ -170,7 +175,9 @@ export function CalibrationScreen({ onBack }: { onBack: () => void }) {
<span style={{ font: '500 12.5px var(--font-mono)', color: 'var(--ink-1)', whiteSpace: 'nowrap' }}>{c.effect.banded}</span> <span style={{ font: '500 12.5px var(--font-mono)', color: 'var(--ink-1)', whiteSpace: 'nowrap' }}>{c.effect.banded}</span>
</div> </div>
<p style={{ font: 'var(--text-agent)', color: 'var(--ink-2)', margin: '10px 0 0' }}> <p style={{ font: 'var(--text-agent)', color: 'var(--ink-2)', margin: '10px 0 0' }}>
You are not bad at estimating; you are optimistic in a very stable way. Stable, I can work with. {c.active
? 'You are not bad at estimating; you are optimistic in a very stable way. Stable, I can work with.'
: 'Not enough closed history yet — Im forecasting from cold-start priors and widening the cone to stay honest. The curve takes over at 20.'}
</p> </p>
</Card> </Card>
</div> </div>

View File

@@ -1,8 +1,12 @@
import React from 'react' import React from 'react'
import type { ProposedIssue } from '@commitea/core'
import { Badge, Button, Card, Icon, Select, Tag } from '../ui/index.js' import { Badge, Button, Card, Icon, Select, Tag } from '../ui/index.js'
// Capture interview — braindump → interview → approved ticket set (< 2 min) // Capture interview — braindump → interview → approved ticket set (< 2 min).
// With a model configured, "Brew tickets" runs real capture_work decomposition
// and "Approve all" files the issues in gitea; otherwise the scripted demo runs.
interface Ticket { interface Ticket {
title: string title: string
@@ -30,6 +34,64 @@ export function CaptureScreen({ onDone }: { onDone: () => void }) {
const [webEst, setWebEst] = React.useState<string | null>(null) const [webEst, setWebEst] = React.useState<string | null>(null)
const [secs, setSecs] = React.useState(0) const [secs, setSecs] = React.useState(0)
// live capture_work path (real model + gitea writes)
const [live, setLive] = React.useState(false)
const [brewing, setBrewing] = React.useState(false)
const [liveTickets, setLiveTickets] = React.useState<ProposedIssue[] | null>(null)
const [filedCount, setFiledCount] = React.useState(0)
const [error, setError] = React.useState<string | null>(null)
React.useEffect(() => {
let alive = true
window.commitea.model.status().then((s) => { if (alive) setLive(s.configured) }).catch(() => {})
return () => { alive = false }
}, [])
const editTicket = (i: number, field: 'estimate' | 'priority', value: string) =>
setLiveTickets((ts) => (ts ? ts.map((t, j) => (j === i ? { ...t, [field]: value } : t)) : ts))
// Decide live-vs-scripted at click time: re-check status if it hasn't resolved
// yet, so a configured model never falls into the scripted interview by a race.
const onBrew = async () => {
const configured = live || (await window.commitea.model.status().then((s) => s.configured).catch(() => false))
if (configured) {
setLive(true)
brew()
} else {
setStage('interview')
}
}
const brew = () => {
setError(null)
setBrewing(true)
window.commitea.model
.capture(dump)
.then((res) => {
setBrewing(false)
if (res.ok && res.issues.length) {
setLiveTickets(res.issues)
setStage('review')
} else {
setError(res.ok ? 'I could not find concrete work in that — try a bit more detail.' : `Capture failed: ${res.reason === 'error' ? res.message : 'no model'}`)
}
})
.catch(() => { setBrewing(false); setError('I could not reach the model.') })
}
const fileLive = () => {
if (!liveTickets) return
setBrewing(true)
window.commitea.gitea
.createIssues(liveTickets)
.then((res) => {
setBrewing(false)
if (res.ok) { setFiledCount(res.created.length); setStage('filed') }
else setError('Filing failed — gitea is not configured.')
})
.catch(() => { setBrewing(false); setError('Filing failed.') })
}
const running = stage === 'interview' || stage === 'review' const running = stage === 'interview' || stage === 'review'
React.useEffect(() => { React.useEffect(() => {
if (!running) return if (!running) return
@@ -63,19 +125,23 @@ export function CaptureScreen({ onDone }: { onDone: () => void }) {
else setStage('review') else setStage('review')
} }
// draft tickets build as the interview progresses // draft tickets build as the interview progresses (scripted demo path)
const tickets: Ticket[] = [] const scripted: Ticket[] = []
if (split === true) { if (split === true) {
tickets.push({ title: 'Token refresh: retry with backoff', est: 'est/2d', p: 'p/2' }) scripted.push({ title: 'Token refresh: retry with backoff', est: 'est/2d', p: 'p/2' })
tickets.push({ title: 'Session storage: stale reads on wake', est: 'est/1d', p: 'p/3' }) scripted.push({ title: 'Session storage: stale reads on wake', est: 'est/1d', p: 'p/3' })
} else if (split === false) { } else if (split === false) {
tickets.push({ title: 'Auth: token refresh + session storage', est: 'est/3d', p: 'p/2' }) scripted.push({ title: 'Auth: token refresh + session storage', est: 'est/3d', p: 'p/2' })
} }
if (webEst) tickets.push({ title: 'Webhook debounce: double-fire guard', est: webEst, p: 'p/1', dep: 'blocked by auth work' }) if (webEst) scripted.push({ title: 'Webhook debounce: double-fire guard', est: webEst, p: 'p/1', dep: 'blocked by auth work' })
if (stage === 'review' || stage === 'filed') { if (!live && (stage === 'review' || stage === 'filed')) {
tickets.push({ title: 'Docs: auth setup guide', est: 'est/1d', p: 'p/4', byReginald: true }) scripted.push({ title: 'Docs: auth setup guide', est: 'est/1d', p: 'p/4', byReginald: true })
} }
const totalDays = tickets.reduce((n, t) => n + parseInt(t.est.replace('est/', '')), 0) // real capture_work output overrides the scripted set when present
const tickets: Ticket[] = liveTickets
? liveTickets.map((i) => ({ title: i.title, est: i.estimate ?? 'est/2d', p: i.priority ?? 'p/3' }))
: scripted
const totalDays = tickets.reduce((n, t) => n + parseInt(t.est.replace('est/', ''), 10), 0)
const estOptions = ['est/1d', 'est/2d', 'est/3d', 'est/5d', 'est/8d'].map((v) => ({ value: v, label: v })) const estOptions = ['est/1d', 'est/2d', 'est/3d', 'est/5d', 'est/8d'].map((v) => ({ value: v, label: v }))
const pOptions = ['p/1', 'p/2', 'p/3', 'p/4'].map((v) => ({ value: v, label: v })) const pOptions = ['p/1', 'p/2', 'p/3', 'p/4'].map((v) => ({ value: v, label: v }))
@@ -96,8 +162,20 @@ export function CaptureScreen({ onDone }: { onDone: () => void }) {
<div style={{ display: 'flex', alignItems: 'center', gap: 8, flexWrap: 'wrap' }}> <div style={{ display: 'flex', alignItems: 'center', gap: 8, flexWrap: 'wrap' }}>
{editable ? ( {editable ? (
<> <>
<Select options={estOptions} defaultValue={t.est} style={{ width: 96 }} /> <Select
<Select options={pOptions} defaultValue={t.p} style={{ width: 76 }} /> options={estOptions}
value={liveTickets ? t.est : undefined}
defaultValue={liveTickets ? undefined : t.est}
onChange={(e) => editTicket(i, 'estimate', e.target.value)}
style={{ width: 96 }}
/>
<Select
options={pOptions}
value={liveTickets ? t.p : undefined}
defaultValue={liveTickets ? undefined : t.p}
onChange={(e) => editTicket(i, 'priority', e.target.value)}
style={{ width: 76 }}
/>
</> </>
) : ( ) : (
<> <>
@@ -144,7 +222,12 @@ export function CaptureScreen({ onDone }: { onDone: () => void }) {
<p style={{ font: 'var(--text-agent)', color: 'var(--ink-2)', margin: '10px 0 14px' }}> <p style={{ font: 'var(--text-agent)', color: 'var(--ink-2)', margin: '10px 0 14px' }}>
Sentences, fragments, grievances all welcome. I'll sort it into tickets and only ask what I can't infer. Sentences, fragments, grievances all welcome. I'll sort it into tickets and only ask what I can't infer.
</p> </p>
<Button icon="sparkles" onClick={() => setStage('interview')}>Brew tickets</Button> <Button icon="sparkles" onClick={() => void onBrew()} disabled={brewing}>
{brewing ? 'Brewing…' : 'Brew tickets'}
</Button>
{error ? (
<p style={{ font: 'var(--text-agent)', color: 'var(--danger)', margin: '10px 0 0' }}>{error}</p>
) : null}
</Card> </Card>
) : null} ) : null}
@@ -174,15 +257,26 @@ export function CaptureScreen({ onDone }: { onDone: () => void }) {
<div style={{ display: 'grid', gridTemplateColumns: '1fr 1.1fr', gap: 14, alignItems: 'start' }}> <div style={{ display: 'grid', gridTemplateColumns: '1fr 1.1fr', gap: 14, alignItems: 'start' }}>
<Card overline="Consequence" title={`${tickets.length} tickets · ~${totalDays}d of work`} jade <Card overline="Consequence" title={`${tickets.length} tickets · ~${totalDays}d of work`} jade
footer={<> footer={<>
<Button onClick={() => setStage('filed')}>Approve all</Button> <Button onClick={() => (live ? fileLive() : setStage('filed'))} disabled={brewing}>
<Button variant="ghost" onClick={() => { setStage('dump'); setQi(0); setLog([]); setSplit(null); setWebEst(null); setSecs(0); }}>Discard</Button> {brewing ? 'Filing…' : 'Approve all'}
</Button>
<Button variant="ghost" onClick={() => { setStage('dump'); setQi(0); setLog([]); setSplit(null); setWebEst(null); setSecs(0); setLiveTickets(null); setError(null); }}>Discard</Button>
</>}> </>}>
<p style={{ font: 'var(--text-body)', margin: '0 0 8px' }}> {live ? (
Beta's 80% window moves <span style={{ font: 'var(--text-data)' }}>Mar 312 → Mar 514</span>. Capacity absorbs the rest. <p style={{ font: 'var(--text-agent)', color: 'var(--ink-2)', margin: 0 }}>
</p> {tickets.length} issue{tickets.length === 1 ? '' : 's'} from your braindump, estimated and prioritized.
<p style={{ font: 'var(--text-agent)', color: 'var(--ink-2)', margin: 0 }}> Adjust the labels, then approve I'll open them in gitea with only est/* and p/* labels.
I added the docs ticket you mentioned and wired the dependency. Shall I make it so? </p>
</p> ) : (
<>
<p style={{ font: 'var(--text-body)', margin: '0 0 8px' }}>
Beta's 80% window moves <span style={{ font: 'var(--text-data)' }}>Mar 312 Mar 514</span>. Capacity absorbs the rest.
</p>
<p style={{ font: 'var(--text-agent)', color: 'var(--ink-2)', margin: 0 }}>
I added the docs ticket you mentioned and wired the dependency. Shall I make it so?
</p>
</>
)}
</Card> </Card>
<Tray editable /> <Tray editable />
</div> </div>
@@ -195,7 +289,7 @@ export function CaptureScreen({ onDone }: { onDone: () => void }) {
<Icon name="circle-check" size={22} /> Filed <Icon name="circle-check" size={22} /> Filed
</span> </span>
<p style={{ font: 'var(--text-body)', margin: 0 }}> <p style={{ font: 'var(--text-body)', margin: 0 }}>
{tickets.length} issues opened in gitea with <span style={{ font: 'var(--text-data)' }}>est/*</span> and <span style={{ font: 'var(--text-data)' }}>p/*</span> labels — nothing else touched. {live ? filedCount : tickets.length} issues opened in gitea with <span style={{ font: 'var(--text-data)' }}>est/*</span> and <span style={{ font: 'var(--text-data)' }}>p/*</span> labels nothing else touched.
</p> </p>
<p style={{ font: 'var(--text-agent)', color: 'var(--ink-2)', margin: 0 }}> <p style={{ font: 'var(--text-agent)', color: 'var(--ink-2)', margin: 0 }}>
Elapsed {clock} under budget. No bot comments, no synthetic issues; your repo remains yours. Elapsed {clock} under budget. No bot comments, no synthetic issues; your repo remains yours.

View File

@@ -0,0 +1,117 @@
import React from 'react'
import type { PublicConfig } from '../../global.js'
import logoIcon from '../../design/assets/logo-icon.png'
import { Button, Card, Input } from '../ui/index.js'
/**
* Real onboarding — each teammate connects their own Gitea with a personal access
* token. The token is validated (an authed read on the repo) then saved encrypted
* in the main process (never exposed to this renderer). Optional model URL wires
* Reginald; leave it blank and chat simply stays off.
*/
export function ConnectScreen({ onConnected, existing }: { onConnected: () => void; existing?: PublicConfig | null }) {
const [baseUrl, setBaseUrl] = React.useState(existing?.baseUrl ?? 'https://gitea.stephenmann.io')
const [owner, setOwner] = React.useState(existing?.owner ?? '')
const [repo, setRepo] = React.useState(existing?.repo ?? '')
const [token, setToken] = React.useState('')
const [modelUrl, setModelUrl] = React.useState(existing?.modelUrl ?? '')
const [state, setState] = React.useState<'idle' | 'testing' | 'saving'>('idle')
const [error, setError] = React.useState<string | null>(null)
const cfg = () => ({ baseUrl, owner, repo, token, modelUrl: modelUrl.trim() || undefined })
const ready = baseUrl.trim() && owner.trim() && repo.trim() && (token.trim() || existing?.hasToken)
const connect = async () => {
setError(null)
setState('testing')
// reuse the saved token when editing and the field is left blank
const payload = token.trim() ? cfg() : { ...cfg(), token: '' }
if (token.trim()) {
const test = await window.commitea.config.test(cfg()).catch(() => ({ ok: false, error: 'unreachable' }))
if (!test.ok) {
setState('idle')
setError(
test.error === '404'
? "Couldn't find that repo — check owner/name and that the token can see it."
: test.error === '401' || test.error === '403'
? 'The token was rejected — check it has repo + issue scopes.'
: `Connection failed${test.error ? ` (${test.error})` : ''}.`,
)
return
}
}
setState('saving')
await window.commitea.config.set(payload)
onConnected()
}
const field = (
label: string,
value: string,
set: (v: string) => void,
opts: { placeholder?: string; type?: string; hint?: string } = {},
) => (
<div style={{ display: 'flex', flexDirection: 'column', gap: 5 }}>
<Input
label={label}
value={value}
type={opts.type}
placeholder={opts.placeholder}
onChange={(e) => set(e.target.value)}
/>
{opts.hint ? <span style={{ font: 'var(--text-caption)', color: 'var(--ink-3)' }}>{opts.hint}</span> : null}
</div>
)
return (
<div
style={{
height: '100vh',
display: 'flex',
alignItems: 'center',
justifyContent: 'center',
background: 'var(--surface-app)',
padding: 24,
}}
>
<Card style={{ width: 460, maxWidth: '100%' }}>
<div style={{ display: 'flex', alignItems: 'center', gap: 10, marginBottom: 6 }}>
<img src={logoIcon} width="28" height="28" alt="" style={{ borderRadius: 7, display: 'block' }} />
<span style={{ font: '400 24px/1 var(--font-serif-display)', color: 'var(--ink-1)' }}>
Commi<span style={{ color: 'var(--accent-text)' }}>Tea</span>
</span>
</div>
<p style={{ font: 'var(--text-body)', color: 'var(--ink-2)', margin: '0 0 18px' }}>
Connect your Gitea. Your token is stored encrypted on this machine and never leaves it.
</p>
<div style={{ display: 'flex', flexDirection: 'column', gap: 12 }}>
{field('Gitea URL', baseUrl, setBaseUrl, { placeholder: 'https://gitea.example.com' })}
<div style={{ display: 'grid', gridTemplateColumns: '1fr 1fr', gap: 12 }}>
{field('Owner', owner, setOwner, { placeholder: 'your-org' })}
{field('Repository', repo, setRepo, { placeholder: 'your-repo' })}
</div>
{field('Access token', token, setToken, {
type: 'password',
placeholder: existing?.hasToken ? '•••••••• (saved — leave blank to keep)' : 'gitea PAT · scopes: repo + issue',
})}
{field('Model URL', modelUrl, setModelUrl, {
placeholder: 'http://localhost:1234/v1',
hint: 'Optional — an OpenAI-compatible endpoint for Reginald. Leave blank to keep chat off.',
})}
</div>
{error ? (
<p style={{ font: 'var(--text-agent)', color: 'var(--danger)', margin: '12px 0 0' }}>{error}</p>
) : null}
<div style={{ display: 'flex', gap: 10, marginTop: 18 }}>
<Button onClick={() => void connect()} disabled={!ready || state !== 'idle'}>
{state === 'testing' ? 'Checking…' : state === 'saving' ? 'Connecting…' : existing ? 'Save' : 'Connect'}
</Button>
</div>
</Card>
</div>
)
}

View File

@@ -8,6 +8,35 @@ export function DirectivesScreen() {
const [pending, setPending] = React.useState<DirectivePending | null>(DIRECTIVES.pending) const [pending, setPending] = React.useState<DirectivePending | null>(DIRECTIVES.pending)
const [entries, setEntries] = React.useState<DirectiveEntry[]>(DIRECTIVES.entries) const [entries, setEntries] = React.useState<DirectiveEntry[]>(DIRECTIVES.entries)
// Real ledger from the pm-state repo, when it exists — else the fixture demo.
React.useEffect(() => {
let alive = true
window.commitea.pmstate
.directives()
.then((r) => {
if (!alive || !r.ok || r.directives.length === 0) return
setPending(null)
setEntries(
r.directives
.slice()
.reverse()
.map((d) => ({
seq: d.seq,
who: 'You',
when: new Date(d.ts).toLocaleDateString(),
what: d.quote,
why: d.rationale ?? '',
status: d.status === 'accepted' ? 'applied' : d.status === 'withdrawn' ? 'withdrawn' : 'superseded',
consequence: '',
})),
)
})
.catch(() => {})
return () => {
alive = false
}
}, [])
const resolve = (status: string) => { const resolve = (status: string) => {
setEntries((e) => [{ setEntries((e) => [{
seq: pending!.seq, who: pending!.who, when: pending!.when, what: pending!.what, why: 'pilot demo on the 14th', seq: pending!.seq, who: pending!.who, when: pending!.when, what: pending!.what, why: 'pilot demo on the 14th',

View File

@@ -109,7 +109,9 @@ export function FocusScreen({
<BurnUpCone data={forecast?.cone} /> <BurnUpCone data={forecast?.cone} />
<p style={{ font: 'var(--text-agent)', color: 'var(--ink-2)', margin: '10px 0 0' }}> <p style={{ font: 'var(--text-agent)', color: 'var(--ink-2)', margin: '10px 0 0' }}>
{forecast {forecast
? `${forecast.scope} open ${forecast.scope === 1 ? 'issue' : 'issues'} in scope. Cold-start priors — the cone tightens as the team closes work.` ? forecast.coldStart
? `${forecast.scope} open ${forecast.scope === 1 ? 'issue' : 'issues'} in scope. Cold-start priors — ${forecast.calibratedN}/20 estimated closes so far; the cone tightens as the team closes work.`
: `${forecast.scope} open ${forecast.scope === 1 ? 'issue' : 'issues'} in scope, calibrated on ${forecast.calibratedN} closed ${forecast.calibratedN === 1 ? 'issue' : 'issues'} of your own.`
: 'The cone has narrowed since Friday. Im quietly pleased.'} : 'The cone has narrowed since Friday. Im quietly pleased.'}
</p> </p>
</Card> </Card>

View File

@@ -1,17 +1,33 @@
// Issue detail — human intent (gitea) on the left, machine-derived (pm-state) on the right // Issue detail — human intent (gitea) on the left, machine-derived (pm-state) on the right
import React from 'react' import React, { useState } from 'react'
import {
describeChange,
type EstimateLabel,
ESTIMATE_LABELS,
type IssueChange,
planIssueChange,
type PriorityLabel,
PRIORITY_LABELS,
} from '@commitea/core'
import { ISSUE_DETAIL, type IssueDetail, type IssueRef } from '../../data/fixtures.js' import { ISSUE_DETAIL, type IssueDetail, type IssueRef } from '../../data/fixtures.js'
import { Badge, Button, Card, Icon, Tag } from '../ui/index.js' import { Badge, Button, Card, Dialog, Icon, Select, Tag } from '../ui/index.js'
const NONE = '—'
export function IssueScreen({ export function IssueScreen({
issue, issue,
onBack, onBack,
onOpenIssue, onOpenIssue,
canWrite = false,
onApplyChange,
}: { }: {
issue: IssueRef issue: IssueRef
onBack: () => void onBack: () => void
onOpenIssue: (issue: IssueRef) => void onOpenIssue: (issue: IssueRef) => void
canWrite?: boolean
onApplyChange?: (change: IssueChange) => Promise<{ ok: boolean }>
}) { }) {
const det: IssueDetail = ISSUE_DETAIL[issue.id] || { const det: IssueDetail = ISSUE_DETAIL[issue.id] || {
state: 'triage', state: 'triage',
@@ -40,6 +56,44 @@ export function IssueScreen({
} as Record<string, { tone: 'warn' | 'neutral' | 'info' | 'ok'; label: string }> } as Record<string, { tone: 'warn' | 'neutral' | 'info' | 'ok'; label: string }>
)[det.state] || { tone: 'neutral', label: det.state } )[det.state] || { tone: 'neutral', label: det.state }
// ---- propose-approve write path (apply_changes) ----
const labels = issue.labels ?? []
const curEstimate = labels.find((l) => l.startsWith('est/')) ?? ''
const curPriority = labels.find((l) => l.startsWith('p/')) ?? ''
const [adjustOpen, setAdjustOpen] = useState(false)
const [estimate, setEstimate] = useState(curEstimate)
const [priority, setPriority] = useState(curPriority)
const [applying, setApplying] = useState(false)
const openAdjust = () => {
setEstimate(curEstimate)
setPriority(curPriority)
setAdjustOpen(true)
}
// the concrete changes this dialog would apply, one per axis that differs
const pendingChanges: IssueChange[] = []
if (estimate !== curEstimate)
pendingChanges.push({ kind: 'reestimate', issue: issue.id, estimate: (estimate || null) as EstimateLabel | null })
if (priority !== curPriority)
pendingChanges.push({ kind: 'reprioritize', issue: issue.id, priority: (priority || null) as PriorityLabel | null })
const diffs = pendingChanges.map((c) => describeChange(planIssueChange(labels, c)))
const apply = async () => {
if (!onApplyChange || pendingChanges.length === 0) return
setApplying(true)
try {
for (const c of pendingChanges) await onApplyChange(c)
setAdjustOpen(false)
} finally {
setApplying(false)
}
}
const estOptions = [{ value: '', label: NONE }, ...ESTIMATE_LABELS.map((l) => ({ value: l, label: l }))]
const prioOptions = [{ value: '', label: NONE }, ...PRIORITY_LABELS.map((l) => ({ value: l, label: l }))]
return ( return (
<div style={{ display: 'flex', flexDirection: 'column', gap: 16 }}> <div style={{ display: 'flex', flexDirection: 'column', gap: 16 }}>
{/* breadcrumb + header */} {/* breadcrumb + header */}
@@ -65,10 +119,69 @@ export function IssueScreen({
</span> </span>
</div> </div>
</div> </div>
<Button variant="secondary" icon="arrow-up-right">Open in Gitea</Button> <div style={{ display: 'flex', gap: 8, flexShrink: 0 }}>
{canWrite ? (
<Button variant="secondary" icon="pencil" onClick={openAdjust}>
Adjust
</Button>
) : null}
<Button variant="secondary" icon="arrow-up-right">Open in Gitea</Button>
</div>
</header> </header>
</div> </div>
<Dialog
open={adjustOpen}
onClose={() => setAdjustOpen(false)}
title="Adjust estimate & priority"
footer={
<>
<Button variant="ghost" onClick={() => setAdjustOpen(false)}>
Cancel
</Button>
<Button onClick={apply} disabled={pendingChanges.length === 0 || applying}>
{applying ? 'Applying…' : 'Apply to gitea'}
</Button>
</>
}
>
<div style={{ display: 'flex', gap: 14 }}>
<Select
label="Estimate"
options={estOptions}
value={estimate}
onChange={(e) => setEstimate(e.target.value)}
/>
<Select
label="Priority"
options={prioOptions}
value={priority}
onChange={(e) => setPriority(e.target.value)}
/>
</div>
<div style={{ marginTop: 14, minHeight: 40 }}>
{pendingChanges.length === 0 ? (
<p style={{ font: 'var(--text-agent)', color: 'var(--ink-3)', margin: 0 }}>
No change yet pick a different estimate or priority.
</p>
) : (
<>
<p style={{ font: 'var(--text-overline)', letterSpacing: 'var(--letter-spacing-wide)', textTransform: 'uppercase', color: 'var(--ink-3)', margin: '0 0 6px' }}>
Proposed label change
</p>
{diffs.map((d) => (
<div key={d} style={{ font: '500 13px var(--font-mono)', color: 'var(--ink-1)' }}>
{d}
</div>
))}
<p style={{ font: 'var(--text-agent)', color: 'var(--ink-2)', margin: '8px 0 0' }}>
Writes the label to gitea and re-runs the plan. Nothing else changes.
</p>
</>
)}
</div>
</Dialog>
<div style={{ display: 'grid', gridTemplateColumns: '1fr 300px', gap: 16, alignItems: 'start' }}> <div style={{ display: 'grid', gridTemplateColumns: '1fr 300px', gap: 16, alignItems: 'start' }}>
{/* left: human intent */} {/* left: human intent */}
<div style={{ display: 'flex', flexDirection: 'column', gap: 16 }}> <div style={{ display: 'flex', flexDirection: 'column', gap: 16 }}>

View File

@@ -1,22 +1,44 @@
import React from 'react' import React from 'react'
import { COLUMNS, type IssueRef } from '../../data/fixtures.js' import { COLUMNS, type IssueRef } from '../../data/fixtures.js'
import { type MilestoneView } from '../../lib/backlog.js'
import { BurnUpCone } from '../charts/chart.js' import { BurnUpCone } from '../charts/chart.js'
import { Badge, Button, Card, Icon, Tag } from '../ui/index.js' import { Badge, Button, Card, Icon, Tag } from '../ui/index.js'
// Milestone detail — scope, cone, issues; forecasts stay ranges // Milestone detail — scope, cone, issues; forecasts stay ranges.
export function MilestoneScreen({ onBack, onOpenIssue }: { onBack: () => void; onOpenIssue: (issue: IssueRef) => void }) { // `data` (real milestone forecast) overrides the demo fixture when present.
export function MilestoneScreen({
onBack,
onOpenIssue,
data,
}: {
onBack: () => void
onOpenIssue: (issue: IssueRef) => void
data?: MilestoneView
}) {
const cols = COLUMNS const cols = COLUMNS
const byState = (ids: number[]) => const byState = (ids: number[]) =>
cols.flatMap((c) => c.issues.map((i) => ({ ...i, col: c.label }))).filter((i) => ids.includes(i.id)) cols.flatMap((c) => c.issues.map((i) => ({ ...i, col: c.label }))).filter((i) => ids.includes(i.id))
const groups = [ const fixtureGroups = [
{ label: 'Steeping', issues: byState([87, 84]) }, { label: 'Steeping', issues: byState([87, 84]) },
{ label: 'In review', issues: byState([92]) }, { label: 'In review', issues: byState([92]) },
{ label: 'Queued', issues: byState([102, 103, 99, 96, 78]) }, { label: 'Queued', issues: byState([102, 103, 99, 96, 78]) },
{ label: 'Done', issues: byState([71, 69, 65]), muted: true }, { label: 'Done', issues: byState([71, 69, 65]), muted: true },
] ]
// real or demo, in one shape the render loop understands
const groups = data
? data.groups.map((g) => ({ label: g.label, issues: g.issues, muted: g.label === 'Done' }))
: fixtureGroups
const name = data ? data.name : 'Beta'
const dueLine = data
? `milestone · due ${data.due} · ${data.soft ? 'soft — scope may flex' : 'hard deadline'}`
: 'milestone · due Mar 15 · soft — scope may flex'
const forecastLabel = data ? (data.forecastRange ? `80% ${data.forecastRange}` : 'all shipped') : '80% Mar 312'
const scopeStat = data ? `${data.scopeCount} issues · est ${data.scopeEstDays}d` : '42 issues · est 61d'
const doneStat = data ? `${data.doneCount} · ${data.donePct}%` : '24 · 57%'
const Stat = ({ label, value, tone }: { label: string; value: string; tone?: string }) => ( const Stat = ({ label, value, tone }: { label: string; value: string; tone?: string }) => (
<div style={{ flex: 1, padding: '12px 18px', borderRight: '1px solid var(--line-1)' }}> <div style={{ flex: 1, padding: '12px 18px', borderRight: '1px solid var(--line-1)' }}>
<div style={{ font: 'var(--text-overline)', letterSpacing: 'var(--letter-spacing-wide)', textTransform: 'uppercase', color: 'var(--ink-3)', marginBottom: 5 }}>{label}</div> <div style={{ font: 'var(--text-overline)', letterSpacing: 'var(--letter-spacing-wide)', textTransform: 'uppercase', color: 'var(--ink-3)', marginBottom: 5 }}>{label}</div>
@@ -36,12 +58,12 @@ export function MilestoneScreen({ onBack, onOpenIssue }: { onBack: () => void; o
<header style={{ borderBottom: 'var(--rule-double)', paddingBottom: 14, display: 'flex', alignItems: 'flex-start', gap: 16 }}> <header style={{ borderBottom: 'var(--rule-double)', paddingBottom: 14, display: 'flex', alignItems: 'flex-start', gap: 16 }}>
<div style={{ flex: 1, minWidth: 0 }}> <div style={{ flex: 1, minWidth: 0 }}>
<p style={{ font: '400 12px var(--font-mono)', color: 'var(--ink-3)', margin: '0 0 6px', display: 'inline-flex', alignItems: 'center', gap: 6 }}> <p style={{ font: '400 12px var(--font-mono)', color: 'var(--ink-3)', margin: '0 0 6px', display: 'inline-flex', alignItems: 'center', gap: 6 }}>
<Icon name="milestone" size={13} /> milestone · due Mar 15 · soft scope may flex <Icon name="milestone" size={13} /> {dueLine}
</p> </p>
<h1 style={{ font: 'var(--text-display)', color: 'var(--ink-1)', margin: 0 }}>Beta</h1> <h1 style={{ font: 'var(--text-display)', color: 'var(--ink-1)', margin: 0 }}>{name}</h1>
<div style={{ display: 'flex', alignItems: 'center', gap: 8, marginTop: 10 }}> <div style={{ display: 'flex', alignItems: 'center', gap: 8, marginTop: 10 }}>
<Badge tone="ok" dot>ahead of forecast</Badge> <Badge tone="ok" dot>{data ? `${data.doneCount}/${data.scopeCount} done` : 'ahead of forecast'}</Badge>
<span style={{ font: '400 12px var(--font-mono)', color: 'var(--ink-2)', whiteSpace: 'nowrap' }}>80% Mar 312</span> <span style={{ font: '400 12px var(--font-mono)', color: 'var(--ink-2)', whiteSpace: 'nowrap' }}>{forecastLabel}</span>
</div> </div>
</div> </div>
<Button variant="secondary" icon="arrow-up-right">Open in Gitea</Button> <Button variant="secondary" icon="arrow-up-right">Open in Gitea</Button>
@@ -51,21 +73,25 @@ export function MilestoneScreen({ onBack, onOpenIssue }: { onBack: () => void; o
{/* stats strip */} {/* stats strip */}
<Card flush> <Card flush>
<div style={{ display: 'flex' }}> <div style={{ display: 'flex' }}>
<Stat label="Scope" value="42 issues · est 61d" /> <Stat label="Scope" value={scopeStat} />
<Stat label="Done" value="24 · 57%" /> <Stat label="Done" value={doneStat} />
<Stat label="Forecast" value="80% Mar 312" /> <Stat label="Forecast" value={forecastLabel} />
<div style={{ flex: 1, padding: '12px 18px' }}> <div style={{ flex: 1, padding: '12px 18px' }}>
<div style={{ font: 'var(--text-overline)', letterSpacing: 'var(--letter-spacing-wide)', textTransform: 'uppercase', color: 'var(--ink-3)', marginBottom: 5 }}>Drift · 7d</div> <div style={{ font: 'var(--text-overline)', letterSpacing: 'var(--letter-spacing-wide)', textTransform: 'uppercase', color: 'var(--ink-3)', marginBottom: 5 }}>Remaining</div>
<div style={{ font: '500 14px var(--font-mono)', color: 'var(--ok)', whiteSpace: 'nowrap' }}>2d · cone narrowed</div> <div style={{ font: '500 14px var(--font-mono)', color: 'var(--ink-1)', whiteSpace: 'nowrap' }}>{data ? `${data.scopeCount - data.doneCount} open` : '2d · cone narrowed'}</div>
</div> </div>
</div> </div>
</Card> </Card>
<div style={{ display: 'grid', gridTemplateColumns: '1.2fr 1fr', gap: 14, alignItems: 'start' }}> <div style={{ display: 'grid', gridTemplateColumns: '1.2fr 1fr', gap: 14, alignItems: 'start' }}>
<Card overline="Burn-up" title={<>80% this lands <span style={{ whiteSpace: 'nowrap' }}>Mar 312</span></>} jade> <Card overline="Burn-up" title={<>80% this lands <span style={{ whiteSpace: 'nowrap' }}>{data ? (data.forecastRange ?? 'shipped') : 'Mar 312'}</span></>} jade>
<BurnUpCone /> <BurnUpCone data={data?.cone ?? undefined} />
<p style={{ font: 'var(--text-agent)', color: 'var(--ink-2)', margin: '10px 0 0' }}> <p style={{ font: 'var(--text-agent)', color: 'var(--ink-2)', margin: '10px 0 0' }}>
Comfortably ahead. Beta needs #87 more than it needs my commentary. {data
? data.cone
? `${data.scopeCount - data.doneCount} open of ${data.scopeCount}. Cone over what's left.`
: 'Everything here has shipped.'
: 'Comfortably ahead. Beta needs #87 more than it needs my commentary.'}
</p> </p>
</Card> </Card>

View File

@@ -1,28 +1,51 @@
import React from 'react' import React from 'react'
import { type CapacityMember, capacityPerWorkday } from '@commitea/core'
import { RunwayBar } from '../charts/chart.js' import { RunwayBar } from '../charts/chart.js'
import { Card, Badge, Tag, Icon, IconButton } from '../ui/index.js' import { Card, Badge, Tag, Icon, IconButton } from '../ui/index.js'
import { RUNWAY, CAPACITY } from '../../data/fixtures.js' import { RUNWAY, CAPACITY, type RunwayMilestone } from '../../data/fixtures.js'
// Runway — capacity vs milestone dates; ranges, never points // Runway — capacity vs milestone dates; ranges, never points.
// `milestones` (real per-milestone forecasts) + `capacity` (real config) override the demo.
export function RunwayScreen({ export function RunwayScreen({
onOpenCalibration, onOpenCalibration,
onOpenMilestone, onOpenMilestone,
calibration,
milestones,
capacity,
}: { }: {
onOpenCalibration: () => void onOpenCalibration: () => void
onOpenMilestone: () => void onOpenMilestone: (id?: number) => void
calibration?: { n: number; coldStart: boolean }
milestones?: RunwayMilestone[]
capacity?: CapacityMember[]
}) { }) {
const rows = milestones && milestones.length ? milestones : RUNWAY
const capacityRows =
capacity && capacity.length
? capacity.map((m) => ({
who: m.person,
slices: `focus ${m.focusFactor} · alloc ${Math.round(m.allocation * 100)}%`,
hours: `${capacityPerWorkday(m).toFixed(2)} pd/day`,
}))
: CAPACITY
const calibNote = calibration
? calibration.coldStart
? `cold-start priors · ${calibration.n}/20 closed issues estimated`
: `calibrated on ${calibration.n} closed ${calibration.n === 1 ? 'issue' : 'issues'}`
: 'calibrated on 27 closed issues'
return ( return (
<div style={{ display: 'flex', flexDirection: 'column', gap: 16 }}> <div style={{ display: 'flex', flexDirection: 'column', gap: 16 }}>
<header style={{ borderBottom: 'var(--rule-double)', paddingBottom: 14 }}> <header style={{ borderBottom: 'var(--rule-double)', paddingBottom: 14 }}>
<h1 style={{ font: 'var(--text-display)', color: 'var(--ink-1)', margin: 0 }}>Runway</h1> <h1 style={{ font: 'var(--text-display)', color: 'var(--ink-1)', margin: 0 }}>Runway</h1>
<p style={{ font: 'var(--text-data)', color: 'var(--ink-3)', margin: '6px 0 0' }}>capacity vs milestone dates · calibrated on 27 closed issues</p> <p style={{ font: 'var(--text-data)', color: 'var(--ink-3)', margin: '6px 0 0' }}>capacity vs milestone dates · {calibNote}</p>
</header> </header>
<Card overline="Milestones" flush> <Card overline="Milestones" flush>
<div> <div>
{RUNWAY.map((m, i) => ( {rows.map((m, i) => (
<div key={m.name} onClick={onOpenMilestone} style={{ <div key={m.name} onClick={() => onOpenMilestone(m.id)} style={{
display: 'grid', gridTemplateColumns: '160px 1fr 150px 90px', gap: 16, alignItems: 'center', cursor: 'pointer', display: 'grid', gridTemplateColumns: '160px 1fr 150px 90px', gap: 16, alignItems: 'center', cursor: 'pointer',
padding: '14px 20px', borderTop: i === 0 ? 'none' : '1px solid var(--line-1)', padding: '14px 20px', borderTop: i === 0 ? 'none' : '1px solid var(--line-1)',
}} }}
@@ -48,7 +71,7 @@ export function RunwayScreen({
<div style={{ display: 'grid', gridTemplateColumns: '1fr 1fr', gap: 14, alignItems: 'start' }}> <div style={{ display: 'grid', gridTemplateColumns: '1fr 1fr', gap: 14, alignItems: 'start' }}>
<Card overline="Capacity" flush> <Card overline="Capacity" flush>
<div> <div>
{CAPACITY.map((p, i) => ( {capacityRows.map((p, i) => (
<div key={p.who} style={{ <div key={p.who} style={{
display: 'flex', alignItems: 'center', gap: 12, padding: '12px 20px', display: 'flex', alignItems: 'center', gap: 12, padding: '12px 20px',
borderTop: i === 0 ? 'none' : '1px solid var(--line-1)', borderTop: i === 0 ? 'none' : '1px solid var(--line-1)',

View File

@@ -1,9 +1,22 @@
import React from 'react' import React from 'react'
import type { PublicConfig } from '../../global.js'
import { Badge, Button, Card, Icon, IconButton, Input, Radio, Select, Switch, Tag } from '../ui/index.js' import { Badge, Button, Card, Icon, IconButton, Input, Radio, Select, Switch, Tag } from '../ui/index.js'
// Settings — gitea connection, sync, model roles, labels, rituals, appearance // Settings — gitea connection, sync, model roles, labels, rituals, appearance
export function SettingsScreen({ dark, setDark }: { dark: boolean; setDark: (v: boolean) => void }) { export function SettingsScreen({
dark,
setDark,
connection,
onReconnect,
onDisconnect,
}: {
dark: boolean
setDark: (v: boolean) => void
connection?: PublicConfig | null
onReconnect?: () => void
onDisconnect?: () => void
}) {
const [webhooks, setWebhooks] = React.useState(true) const [webhooks, setWebhooks] = React.useState(true)
const [reconcile, setReconcile] = React.useState(true) const [reconcile, setReconcile] = React.useState(true)
const [poll, setPoll] = React.useState(true) const [poll, setPoll] = React.useState(true)
@@ -24,25 +37,35 @@ export function SettingsScreen({ dark, setDark }: { dark: boolean; setDark: (v:
</header> </header>
<Card overline="Gitea" title="Connection"> <Card overline="Gitea" title="Connection">
<div style={{ display: 'flex', flexDirection: 'column', gap: 14 }}> <div style={{ display: 'flex', flexDirection: 'column', gap: 12 }}>
<Input label="Base URL" icon="link" mono defaultValue="https://gitea.stephenmann.io" /> {connection ? (
<Input label="Access token" icon="keyboard" mono type="password" defaultValue="ct_9f2e81c4a7d6" hint="Scopes: repo, issue. Nothing more." /> <>
<div style={{ display: 'flex', flexDirection: 'column', gap: 8 }}> <Row style={{ padding: '8px 12px', background: 'var(--paper-0)', border: '1px solid var(--line-1)', borderRadius: 'var(--radius-2)' }}>
<span style={{ font: '600 13px/1.2 var(--font-sans)', color: 'var(--ink-1)' }}>Managed repos</span> <Icon name="git-branch" size={14} style={{ color: 'var(--ink-3)' }} />
<Row style={{ padding: '8px 12px', background: 'var(--paper-0)', border: '1px solid var(--line-1)', borderRadius: 'var(--radius-2)' }}> <span style={{ font: 'var(--text-data)', color: 'var(--ink-1)', flex: 1 }}>{connection.owner}/{connection.repo}</span>
<Icon name="git-branch" size={14} style={{ color: 'var(--ink-3)' }} /> <Badge tone="ok" dot>connected</Badge>
<span style={{ font: 'var(--text-data)', color: 'var(--ink-1)', flex: 1 }}>stephen/commitea</span> </Row>
<Badge tone="ok" dot>syncing</Badge> <Row style={{ font: 'var(--text-caption)', color: 'var(--ink-3)', gap: 6 }}>
<IconButton icon="x" label="Stop managing" size="sm" /> <Icon name="link" size={12} />{connection.baseUrl}
</Row>
<Row style={{ font: 'var(--text-caption)', color: 'var(--ink-3)', gap: 6 }}>
<Icon name="layers" size={12} />sidecar: {connection.pmStateRepo ?? `${connection.repo}-pm-state`}
</Row>
<Row style={{ font: 'var(--text-caption)', color: 'var(--ink-3)', gap: 6 }}>
<Icon name="sparkles" size={12} />model: {connection.modelUrl ?? 'not set — chat off'}
</Row>
<Note>Your token is stored encrypted on this machine. Delete the sidecar and resync no truth is lost.</Note>
<Row style={{ gap: 8, marginTop: 2 }}>
<Button variant="secondary" size="sm" icon="settings-2" onClick={onReconnect}>Reconfigure</Button>
<Button variant="ghost" size="sm" onClick={onDisconnect}>Disconnect</Button>
</Row>
</>
) : (
<Row style={{ gap: 8 }}>
<Note>Not connected.</Note>
<Button variant="secondary" size="sm" onClick={onReconnect}>Connect</Button>
</Row> </Row>
<Row style={{ padding: '8px 12px', background: 'var(--paper-0)', border: '1px solid var(--line-1)', borderRadius: 'var(--radius-2)' }}> )}
<Icon name="layers" size={14} style={{ color: 'var(--ink-3)' }} />
<span style={{ font: 'var(--text-data)', color: 'var(--ink-1)', flex: 1 }}>stephen/pm-state</span>
<Badge>sidecar</Badge>
</Row>
<Note>The sidecar holds machine-derived state only. Delete it and resync no truth is lost.</Note>
<Button variant="secondary" size="sm" icon="plus" style={{ alignSelf: 'flex-start' }}>Add repo</Button>
</div>
</div> </div>
</Card> </Card>

View File

@@ -1,9 +1,22 @@
import React, { useEffect, useState } from 'react' import React, { useEffect, useState } from 'react'
import logoIcon from '../../design/assets/logo-icon.png' import logoIcon from '../../design/assets/logo-icon.png'
import type { IssueChange } from '@commitea/core'
import type { PublicConfig } from '../../global.js'
import type { IssueRef } from '../../data/fixtures.js' import type { IssueRef } from '../../data/fixtures.js'
import { forecastBacklog, issuesToBoardColumns, scheduleFocus } from '../../lib/backlog.js' import { ConnectScreen } from '../screens/connect-screen.js'
import {
backlogCalibration,
capacityWorkers,
forecastBacklog,
issuesToBoardColumns,
milestoneView,
runwayView,
scheduleFocus,
} from '../../lib/backlog.js'
import { useBacklog } from '../../lib/use-backlog.js' import { useBacklog } from '../../lib/use-backlog.js'
import { useCapacity } from '../../lib/use-capacity.js'
import { PrimitivesGallery } from '../gallery.js' import { PrimitivesGallery } from '../gallery.js'
import { BoardScreen } from '../screens/board-screen.js' import { BoardScreen } from '../screens/board-screen.js'
import { CalibrationScreen } from '../screens/calibration-screen.js' import { CalibrationScreen } from '../screens/calibration-screen.js'
@@ -85,22 +98,71 @@ export function AppShell() {
const [offline, setOffline] = useState(false) const [offline, setOffline] = useState(false)
const [issue, setIssue] = useState<IssueRef | null>(null) const [issue, setIssue] = useState<IssueRef | null>(null)
const [readIds, setReadIds] = useState<number[]>([]) const [readIds, setReadIds] = useState<number[]>([])
const backlog = useBacklog() const [milestoneId, setMilestoneId] = useState<number | null>(null)
const boardColumns = backlog.status === 'ready' ? issuesToBoardColumns(backlog.issues) : undefined const [gate, setGate] = useState<'checking' | 'connect' | 'ready'>('checking')
const focus = backlog.status === 'ready' ? scheduleFocus(backlog.issues, backlog.deps) : undefined const [pubConfig, setPubConfig] = useState<PublicConfig | null>(null)
const [backlog, refetchBacklog] = useBacklog()
const capacityMembers = useCapacity()
const workers = capacityWorkers(capacityMembers)
const boardColumns =
backlog.status === 'ready' ? issuesToBoardColumns(backlog.issues, backlog.timelines) : undefined
const focus =
backlog.status === 'ready' ? scheduleFocus(backlog.issues, backlog.deps, backlog.timelines) : undefined
const calibration =
backlog.status === 'ready' ? backlogCalibration(backlog.issues, backlog.timelines) : undefined
const forecast = const forecast =
backlog.status === 'ready' ? (forecastBacklog(backlog.issues, backlog.deps) ?? undefined) : undefined backlog.status === 'ready'
? (forecastBacklog(backlog.issues, backlog.deps, new Date(), calibration?.model, workers) ?? undefined)
: undefined
const runwayMilestones =
backlog.status === 'ready'
? runwayView(backlog.issues, backlog.milestones, backlog.deps, new Date(), workers)
: undefined
const milestone =
backlog.status === 'ready' && milestoneId != null
? (milestoneView(
milestoneId,
backlog.issues,
backlog.milestones,
backlog.deps,
backlog.timelines,
calibration?.model,
new Date(),
workers,
) ?? undefined)
: undefined
useEffect(() => { useEffect(() => {
document.documentElement.setAttribute('data-theme', dark ? 'dark' : 'light') document.documentElement.setAttribute('data-theme', dark ? 'dark' : 'light')
}, [dark]) }, [dark])
// Gate: e2e/demo → the shell (fixtures); configured → the shell (real data);
// otherwise → the connect screen (each teammate brings their own token).
useEffect(() => {
window.commitea.gitea
.status()
.then((s) => setGate(s.demo || s.configured ? 'ready' : 'connect'))
.catch(() => setGate('connect'))
window.commitea.config.get().then(setPubConfig).catch(() => {})
}, [])
const openIssue = (ref: IssueRef) => { const openIssue = (ref: IssueRef) => {
if (view !== 'issue') setPrevView(view) if (view !== 'issue') setPrevView(view)
setIssue(ref) setIssue(ref)
setView('issue') setView('issue')
} }
// The write path: apply through the bridge, reflect the new labels on the open
// issue immediately, and re-reconcile so the board + forecast catch up.
const applyChange = async (change: IssueChange) => {
const res = await window.commitea.gitea.applyChange(change)
if (res.ok) {
setIssue((cur) => (cur && cur.id === res.issue.number ? { ...cur, labels: res.issue.labels } : cur))
refetchBacklog()
}
return res
}
const NAV: NavEntry[] = [ const NAV: NavEntry[] = [
{ id: 'standup', label: 'Standup', icon: 'sun' }, { id: 'standup', label: 'Standup', icon: 'sun' },
{ id: 'focus', label: 'Morning service', icon: 'coffee' }, { id: 'focus', label: 'Morning service', icon: 'coffee' },
@@ -175,13 +237,19 @@ export function AppShell() {
return ( return (
<RunwayScreen <RunwayScreen
onOpenCalibration={() => setView('calibration')} onOpenCalibration={() => setView('calibration')}
onOpenMilestone={() => setView('milestone')} onOpenMilestone={(id) => {
setMilestoneId(id ?? null)
setView('milestone')
}}
calibration={calibration ? { n: calibration.model.n, coldStart: calibration.model.coldStart } : undefined}
milestones={runwayMilestones}
capacity={capacityMembers}
/> />
) )
case 'calibration': case 'calibration':
return <CalibrationScreen onBack={() => setView('runway')} /> return <CalibrationScreen onBack={() => setView('runway')} data={calibration?.data} />
case 'milestone': case 'milestone':
return <MilestoneScreen onBack={() => setView('runway')} onOpenIssue={openIssue} /> return <MilestoneScreen onBack={() => setView('runway')} onOpenIssue={openIssue} data={milestone} />
case 'inbox': case 'inbox':
return ( return (
<InboxScreen <InboxScreen
@@ -196,10 +264,29 @@ export function AppShell() {
case 'directives': case 'directives':
return <DirectivesScreen /> return <DirectivesScreen />
case 'settings': case 'settings':
return <SettingsScreen dark={dark} setDark={setDark} /> return (
<SettingsScreen
dark={dark}
setDark={setDark}
connection={pubConfig}
onReconnect={() => setGate('connect')}
onDisconnect={() => {
void window.commitea.config.clear().then(() => {
setPubConfig(null)
setGate('connect')
})
}}
/>
)
case 'issue': case 'issue':
return issue ? ( return issue ? (
<IssueScreen issue={issue} onBack={() => setView(prevView)} onOpenIssue={openIssue} /> <IssueScreen
issue={issue}
onBack={() => setView(prevView)}
onOpenIssue={openIssue}
canWrite={backlog.status === 'ready'}
onApplyChange={applyChange}
/>
) : null ) : null
case 'states': case 'states':
return <StatesScreen onCapture={() => setView('capture')} /> return <StatesScreen onCapture={() => setView('capture')} />
@@ -210,6 +297,23 @@ export function AppShell() {
} }
} }
// Connection gate (real onboarding) comes before everything else.
if (gate === 'checking') {
return <div style={{ height: '100vh', background: 'var(--surface-app)' }} />
}
if (gate === 'connect') {
return (
<ConnectScreen
existing={pubConfig}
onConnected={() => {
window.commitea.config.get().then(setPubConfig).catch(() => {})
setGate('ready')
refetchBacklog()
}}
/>
)
}
// First run is full-window — no rail, no chat panel // First run is full-window — no rail, no chat panel
if (view === 'firstrun') { if (view === 'firstrun') {
return <OnboardingScreen onDone={(dest) => setView(dest)} /> return <OnboardingScreen onDone={(dest) => setView(dest)} />
@@ -311,7 +415,7 @@ export function AppShell() {
</div> </div>
</main> </main>
<ChatPanel onOpenDirectives={() => setView('directives')} offline={offline} /> <ChatPanel onOpenDirectives={() => setView('directives')} offline={offline} onApplyChange={applyChange} />
</div> </div>
) )
} }

View File

@@ -1,39 +1,40 @@
import React, { useEffect, useRef, useState } from 'react' import React, { useEffect, useRef, useState } from 'react'
import { CANNED_REPLY, CHAT, type ChatMessage } from '../../data/fixtures.js' import { describeChange, type IssueChange } from '@commitea/core'
import { Icon, IconButton } from '../ui/index.js'
import { useChat } from '../../lib/use-chat.js'
import { Button, Icon, IconButton } from '../ui/index.js'
/** /**
* Reginald's panel — chat is the write-path (decisions.md D1). This is the P3-2 * Reginald's panel — chat is the write-path (decisions.md D1). Wired to the
* fixture shell: it echoes a canned reply so the layout + interactions are real, * model bridge via `useChat`: a configured model drives a real agent turn
* but no model is wired. P4 replaces `send` with the model router + tools. * (query_project + prose, propose_change for edits); otherwise it echoes the
* scripted fixture reply. Proposed changes are approved inline here — the write
* runs through `onApplyChange`, the same guarded handler the Issue screen uses.
*/ */
export interface ChatPanelProps { export interface ChatPanelProps {
onOpenDirectives?: () => void onOpenDirectives?: () => void
offline?: boolean offline?: boolean
onApplyChange?: (change: IssueChange) => Promise<{ ok: boolean }>
} }
export function ChatPanel({ onOpenDirectives, offline }: ChatPanelProps) { export function ChatPanel({ onOpenDirectives, offline, onApplyChange }: ChatPanelProps) {
const [msgs, setMsgs] = useState<ChatMessage[]>(CHAT) const { msgs, thinking, live, model, steps, proposals, streaming, send: sendChat, approve, dismiss } = useChat(onApplyChange)
// shorten "google/gemma-4-26b-a4b-qat" → "gemma-4-26b" for the header chip
const modelLabel = model ? (model.split('/').pop() ?? model).replace(/-(qat|instruct|it|gguf)$/i, '') : 'gemma-4'
const [text, setText] = useState('') const [text, setText] = useState('')
const [thinking, setThinking] = useState(false)
const scrollRef = useRef<HTMLDivElement>(null) const scrollRef = useRef<HTMLDivElement>(null)
useEffect(() => { useEffect(() => {
const el = scrollRef.current const el = scrollRef.current
if (el) el.scrollTop = el.scrollHeight if (el) el.scrollTop = el.scrollHeight
}, [msgs, thinking]) }, [msgs, thinking, streaming])
const send = () => { const send = () => {
const t = text.trim() const t = text.trim()
if (!t) return if (!t) return
setMsgs((m) => [...m, { from: 'user', text: t }])
setText('') setText('')
setThinking(true) sendChat(t)
setTimeout(() => {
setThinking(false)
setMsgs((m) => [...m, { from: 'agent', text: CANNED_REPLY }])
}, 900)
} }
return ( return (
@@ -61,7 +62,7 @@ export function ChatPanel({ onOpenDirectives, offline }: ChatPanelProps) {
<Icon name="sparkles" size={16} style={{ color: offline ? 'var(--ink-3)' : 'var(--jade)' }} /> <Icon name="sparkles" size={16} style={{ color: offline ? 'var(--ink-3)' : 'var(--jade)' }} />
<span style={{ font: 'var(--text-body-strong)', color: 'var(--ink-1)' }}>Reginald</span> <span style={{ font: 'var(--text-body-strong)', color: 'var(--ink-1)' }}>Reginald</span>
<span style={{ font: '400 11px var(--font-mono)', color: 'var(--ink-3)', marginLeft: 'auto' }}> <span style={{ font: '400 11px var(--font-mono)', color: 'var(--ink-3)', marginLeft: 'auto' }}>
{offline ? 'offline · queueing' : 'gemma-4b · local'} {offline ? 'offline · queueing' : live ? `${modelLabel} · local` : 'no model'}
</span> </span>
<IconButton icon="history" label="Directive log" size="sm" onClick={onOpenDirectives} /> <IconButton icon="history" label="Directive log" size="sm" onClick={onOpenDirectives} />
</header> </header>
@@ -97,7 +98,46 @@ export function ChatPanel({ onOpenDirectives, offline }: ChatPanelProps) {
The model is away from its desk. Reads still work; writes will wait their turn. The model is away from its desk. Reads still work; writes will wait their turn.
</div> </div>
) : null} ) : null}
{thinking ? <div style={{ font: 'var(--text-agent)', color: 'var(--ink-3)' }}>considering</div> : null} {streaming ? (
<div style={{ font: 'var(--text-agent)', color: 'var(--ink-1)', lineHeight: 1.55 }}>
{streaming}
<span style={{ opacity: 0.5 }}></span>
</div>
) : thinking ? (
<div style={{ font: 'var(--text-agent)', color: 'var(--ink-3)' }}>considering</div>
) : null}
{!thinking && steps.length ? (
<div style={{ font: 'var(--text-caption)', color: 'var(--ink-3)', display: 'flex', alignItems: 'center', gap: 5 }}>
<Icon name="eye" size={11} /> consulted {Array.from(new Set(steps.map((s) => s.replace('query_project', 'the project').replace('propose_change', 'the labels').replace('record_directive', 'the directive ledger')))).join(', ')}
</div>
) : null}
{proposals.map((p) => (
<div
key={`${p.change.issue}:${p.change.kind}`}
style={{
border: '1px solid var(--line-2)',
borderRadius: 'var(--radius-2)',
background: 'var(--paper-0)',
padding: '10px 12px',
display: 'flex',
flexDirection: 'column',
gap: 8,
}}
>
<div style={{ font: 'var(--text-caption)', color: 'var(--ink-3)', textTransform: 'uppercase', letterSpacing: 'var(--letter-spacing-wide)' }}>
Proposed · #{p.change.issue}
</div>
<div style={{ font: '500 13px var(--font-mono)', color: 'var(--ink-1)' }}>{describeChange(p.plan)}</div>
<div style={{ display: 'flex', gap: 8 }}>
<Button size="sm" onClick={() => approve(p)} disabled={offline}>
Approve
</Button>
<Button size="sm" variant="ghost" onClick={() => dismiss(p)}>
Dismiss
</Button>
</div>
</div>
))}
</div> </div>
<div style={{ padding: 14, borderTop: '1px solid var(--line-1)', flexShrink: 0 }}> <div style={{ padding: 14, borderTop: '1px solid var(--line-1)', flexShrink: 0 }}>
@@ -121,8 +161,8 @@ export function ChatPanel({ onOpenDirectives, offline }: ChatPanelProps) {
send() send()
} }
}} }}
placeholder={offline ? 'Writes wait for the connection…' : 'Tell me what to do…'} placeholder={offline ? 'Writes wait for the connection…' : live ? 'Tell me what to do…' : 'Add a Model URL in Settings…'}
disabled={offline} disabled={offline || !live}
rows={1} rows={1}
style={{ style={{
flex: 1, flex: 1,
@@ -140,15 +180,15 @@ export function ChatPanel({ onOpenDirectives, offline }: ChatPanelProps) {
type="button" type="button"
onClick={send} onClick={send}
aria-label="Send" aria-label="Send"
disabled={offline} disabled={offline || !live}
style={{ style={{
width: 30, width: 30,
height: 30, height: 30,
borderRadius: 'var(--radius-2)', borderRadius: 'var(--radius-2)',
border: 'none', border: 'none',
cursor: offline ? 'not-allowed' : 'pointer', cursor: offline || !live ? 'not-allowed' : 'pointer',
background: offline ? 'var(--paper-3)' : 'var(--accent)', background: offline || !live ? 'var(--paper-3)' : 'var(--accent)',
color: offline ? 'var(--ink-3)' : 'var(--ink-inverse)', color: offline || !live ? 'var(--ink-3)' : 'var(--ink-inverse)',
display: 'inline-flex', display: 'inline-flex',
alignItems: 'center', alignItems: 'center',
justifyContent: 'center', justifyContent: 'center',

View File

@@ -315,6 +315,8 @@ export interface RunwayMilestone {
spread: number spread: number
tone: 'ok' | 'warn' tone: 'ok' | 'warn'
note: string note: string
/** gitea milestone id, for the drill-in (absent on the demo fixture). */
id?: number
} }
export const RUNWAY: RunwayMilestone[] = [ export const RUNWAY: RunwayMilestone[] = [

View File

@@ -1,15 +1,120 @@
import type { DependencyEdge, GiteaIssue, GiteaMilestone } from '@commitea/core' import type {
AgentStep,
CapacityMember,
ChangeProposal,
ChatMessage,
CaptureProposal,
DependencyEdge,
DirectiveRecord,
GiteaIssue,
GiteaMilestone,
IssueChange,
LabelPlan,
LifecycleEvent,
ProposedIssue,
} from '@commitea/core'
/** The result of a write through the bridge. */
export type ApplyChangeResult =
| { ok: false; reason: 'unconfigured' }
| { ok: true; plan: LabelPlan; issue: GiteaIssue }
/** The result of filing captured issues. */
export type CreateIssuesResult =
| { ok: false; reason: 'unconfigured' }
| { ok: true; created: { number: number; title: string }[] }
/** The result of a capture_work decomposition. */
export type CaptureResult =
| { ok: false; reason: 'unconfigured' | 'error'; message?: string }
| ({ ok: true } & CaptureProposal)
/** A reconciled snapshot as it crosses the bridge. */
export interface SnapshotPayload {
configured: boolean
issues: GiteaIssue[]
milestones: GiteaMilestone[]
deps: DependencyEdge[]
/** Normalized lifecycle events keyed by issue number. */
timelines: Record<number, LifecycleEvent[]>
/** true when served from the persisted cache (offline / instant boot). */
stale?: boolean
/** ISO time the persisted snapshot was reconciled (present on cached reads). */
savedAt?: string
}
/** Boot payload — the persisted snapshot, or a marker that there's none yet. */
export type BootPayload =
| { configured: false }
| { configured: true; cached: false }
| ({ configured: true; cached: true } & Omit<SnapshotPayload, 'configured'>)
/** The saved connection config (never includes the token). */
export interface PublicConfig {
baseUrl: string
owner: string
repo: string
pmStateRepo?: string
modelUrl?: string
hasToken: boolean
}
/** What the onboarding/settings form submits. */
export interface ConfigInput {
baseUrl: string
owner: string
repo: string
token: string
pmStateRepo?: string
modelUrl?: string
}
/** The config bridge for team onboarding. */
export interface ConfigBridge {
get(): Promise<PublicConfig | null>
test(cfg: ConfigInput): Promise<{ ok: boolean; error?: string }>
set(cfg: ConfigInput): Promise<{ ok: boolean }>
clear(): Promise<{ ok: boolean }>
}
/** The gitea bridge exposed by the preload over IPC (main-process backed). */ /** The gitea bridge exposed by the preload over IPC (main-process backed). */
export interface GiteaBridge { export interface GiteaBridge {
status(): Promise<{ configured: boolean; repo: string | null }> status(): Promise<{ configured: boolean; repo: string | null; demo: boolean }>
reconcile(): Promise<{ boot(): Promise<BootPayload>
configured: boolean reconcile(): Promise<SnapshotPayload>
issues: GiteaIssue[]
milestones: GiteaMilestone[]
deps: DependencyEdge[]
}>
getIssue(index: number): Promise<GiteaIssue | null> getIssue(index: number): Promise<GiteaIssue | null>
applyChange(change: IssueChange): Promise<ApplyChangeResult>
createIssues(issues: ProposedIssue[]): Promise<CreateIssuesResult>
}
/** One agent turn's result. */
export type ChatResult =
| { ok: false; reason: 'unconfigured' | 'error'; message?: string }
| { ok: true; content: string; steps: AgentStep[]; proposals: ChangeProposal[] }
/** The model bridge (Reginald) exposed by the preload over IPC. */
export interface ModelBridge {
status(): Promise<{ configured: boolean; model: string | null }>
chat(messages: ChatMessage[]): Promise<ChatResult>
capture(braindump: string): Promise<CaptureResult>
/** Subscribe to streamed prose tokens; returns an unsubscribe fn. */
onToken(cb: (delta: string) => void): () => void
}
/** The result of reading the directive ledger. */
export type DirectivesResult =
| { ok: false; reason: 'unconfigured' | 'error'; message?: string }
| { ok: true; directives: DirectiveRecord[] }
/** The result of reading the capacity config. */
export type CapacityResult =
| { ok: false; reason: 'unconfigured'; members: CapacityMember[] }
| { ok: true; members: CapacityMember[] }
/** The pm-state bridge (machine-derived state) exposed by the preload over IPC. */
export interface PmStateBridge {
directives(): Promise<DirectivesResult>
capacity(): Promise<CapacityResult>
} }
declare global { declare global {
@@ -17,6 +122,9 @@ declare global {
commitea: { commitea: {
platform: string platform: string
gitea: GiteaBridge gitea: GiteaBridge
model: ModelBridge
pmstate: PmStateBridge
config: ConfigBridge
} }
} }
} }

View File

@@ -1,16 +1,43 @@
import { import {
type CalibrationModel,
type CalibrationSample,
calibrationSamples,
type CapacityMember,
capacityPerWorkday,
COLD_START_THRESHOLD,
type DependencyEdge, type DependencyEdge,
fitCalibration,
forecast, forecast,
type Worker,
type GiteaIssue, type GiteaIssue,
inferColumnV0, type GiteaMilestone,
inferLifecycle,
type LifecycleColumn, type LifecycleColumn,
type LifecycleEvent,
type LifecycleInference,
PRIOR_BUCKETS,
schedule, schedule,
type ScheduledItem, type ScheduledItem,
selectFocus, selectFocus,
toDurationModel,
workingDaysBetween,
} from '@commitea/core' } from '@commitea/core'
import { type BoardColumn, type BoardIssue, type FocusIssue } from '../data/fixtures.js' import {
import { type BurnUpData, buildBurnUpData } from './dates.js' type BoardColumn,
type BoardIssue,
type CalibrationData,
type FocusIssue,
type RunwayMilestone,
} from '../data/fixtures.js'
import { addWorkingDays, type BurnUpData, buildBurnUpData, formatRange, formatShort } from './dates.js'
type Timelines = Record<number, LifecycleEvent[]>
/** Infer every issue's lifecycle once; callers index by issue number. */
function inferAll(issues: GiteaIssue[], timelines: Timelines, asOf: Date): Map<number, LifecycleInference> {
return new Map(issues.map((i) => [i.number, inferLifecycle(i, timelines[i.number] ?? [], asOf)]))
}
const COLUMN_LABELS: Record<LifecycleColumn, string> = { const COLUMN_LABELS: Record<LifecycleColumn, string> = {
diagnosis: 'Diagnosis', diagnosis: 'Diagnosis',
@@ -27,24 +54,32 @@ function initials(login: string): string {
} }
/** /**
* Shape real gitea issues into the Board's five columns via lifecycle-v0. * Shape real gitea issues into the Board's five columns via lifecycle inference
* `steeping` / `review` stay empty until event inference (P1-5). `days` / `pr` * (#5). Steeping / In-review are now populated from the event stream (first
* are likewise event-derived and omitted here. * commit ref → steeping, first PR ref → review); the `days` badge is the
* steeping age in working days.
*/ */
export function issuesToBoardColumns(issues: GiteaIssue[]): BoardColumn[] { export function issuesToBoardColumns(
issues: GiteaIssue[],
timelines: Timelines = {},
asOf: Date = new Date(),
): BoardColumn[] {
const inf = inferAll(issues, timelines, asOf)
return COLUMN_ORDER.map((key) => ({ return COLUMN_ORDER.map((key) => ({
id: key, id: key,
label: COLUMN_LABELS[key], label: COLUMN_LABELS[key],
issues: issues issues: issues
.filter((i) => inferColumnV0(i) === key) .filter((i) => inf.get(i.number)!.column === key)
.map( .map((i): BoardIssue => {
(i): BoardIssue => ({ const li = inf.get(i.number)!
return {
id: i.number, id: i.number,
title: i.title, title: i.title,
labels: i.labels, labels: i.labels,
who: i.assignee ? initials(i.assignee) : '·', who: i.assignee ? initials(i.assignee) : '·',
}), days: li.steepingDays != null ? `${li.steepingDays}d` : undefined,
), }
}),
})) }))
} }
@@ -54,9 +89,16 @@ export interface FocusView {
later: FocusIssue | null later: FocusIssue | null
} }
function toFocusIssue(item: ScheduledItem | null): FocusIssue | null { function toFocusIssue(item: ScheduledItem | null, inf?: Map<number, LifecycleInference>): FocusIssue | null {
if (!item) return null if (!item) return null
return { id: item.number, title: item.title, labels: item.labels, rationale: item.rationale } const steepingDays = inf?.get(item.number)?.steepingDays ?? null
return {
id: item.number,
title: item.title,
labels: item.labels,
rationale: item.rationale,
steeping: steepingDays != null ? `${steepingDays}d` : undefined,
}
} }
function toSchedulable(issues: GiteaIssue[]) { function toSchedulable(issues: GiteaIssue[]) {
@@ -68,30 +110,124 @@ function toSchedulable(issues: GiteaIssue[]) {
labels: i.labels, labels: i.labels,
estimateDays: i.facts.estimateDays, estimateDays: i.facts.estimateDays,
priority: i.facts.priority, priority: i.facts.priority,
assignee: i.assignee,
})) }))
} }
/** gitea CapacityMembers → scheduler lanes (person + throughput). */
export function capacityWorkers(members: CapacityMember[]): Worker[] {
return members.map((m) => ({ person: m.person, speed: capacityPerWorkday(m) }))
}
export interface ForecastView { export interface ForecastView {
scope: number scope: number
cone: BurnUpData cone: BurnUpData
p80Label: string p80Label: string
rangeLabel: string rangeLabel: string
/** true while the forecast still runs on code priors (calibration not yet trusted). */
coldStart: boolean
/** Closed-with-estimate issues feeding calibration so far. */
calibratedN: number
} }
/** /**
* Monte Carlo forecast over the open backlog, mapped onto a calendar-anchored * Monte Carlo forecast over the open backlog, mapped onto a calendar-anchored
* burn-up cone. Returns null when there's nothing to forecast (no open scope) — * burn-up cone. When a calibration model is supplied and past cold-start, its
* the UI then falls back to the demo cone. `today` is injectable for tests. * fitted params drive the sim. Returns null when there's nothing to forecast.
* `today` is injectable for tests.
*/ */
export function forecastBacklog( export function forecastBacklog(
issues: GiteaIssue[], issues: GiteaIssue[],
deps: DependencyEdge[], deps: DependencyEdge[],
today: Date = new Date(), today: Date = new Date(),
calibration?: CalibrationModel,
workers: Worker[] = [],
): ForecastView | null { ): ForecastView | null {
const f = forecast(toSchedulable(issues), deps) const model = calibration ? toDurationModel(calibration) : undefined
const f = forecast(toSchedulable(issues), deps, { ...(model ? { model } : {}), workers })
const cone = buildBurnUpData(f, today) const cone = buildBurnUpData(f, today)
if (!cone) return null if (!cone) return null
return { scope: f.scope, cone, p80Label: cone.p80Label, rangeLabel: cone.rangeLabel } return {
scope: f.scope,
cone,
p80Label: cone.p80Label,
rangeLabel: cone.rangeLabel,
coldStart: f.coldStart,
calibratedN: calibration?.n ?? 0,
}
}
/** Fit the calibration model from the closed backlog's inferred actuals (#1). */
export function calibrateBacklog(
issues: GiteaIssue[],
timelines: Timelines = {},
asOf: Date = new Date(),
): CalibrationModel {
return fitCalibration(calibrationSamples(issues, timelines, asOf))
}
/** Calibration model + its screen view in one pass over the closed backlog. */
export function backlogCalibration(
issues: GiteaIssue[],
timelines: Timelines = {},
asOf: Date = new Date(),
): { model: CalibrationModel; data: CalibrationData } {
const samples = calibrationSamples(issues, timelines, asOf)
const model = fitCalibration(samples)
return { model, data: calibrationData(model, samples, issues) }
}
const pctFromMu = (mu: number) => Math.round((Math.exp(mu) - 1) * 100)
/**
* Shape the calibration model + its samples into the screen's view. Buckets and
* people only earn a bias once their sample clears the fit floor; everything
* degrades honestly on a thin (cold-start) dataset.
*/
export function calibrationData(
model: CalibrationModel,
samples: CalibrationSample[],
openIssues: GiteaIssue[],
): CalibrationData {
const labels = PRIOR_BUCKETS.map((b) => {
const inBucket = samples.filter((s) => s.bucket === b)
const fit = model.byBucket[b]
const mu = fit ? fit.mu : model.global.mu
return {
label: `est/${b}d`,
n: fit ? fit.n : inBucket.length,
median: inBucket.length ? `${(b * Math.exp(mu)).toFixed(1)}d` : '—',
bias: fit ? pctFromMu(fit.mu) : null,
}
})
const people = Object.entries(model.byPerson).map(([who, pb]) => ({
who,
n: pb.n,
bias: pctFromMu(model.global.mu + pb.biasMu),
note: '',
}))
const openEst = openIssues
.filter((i) => i.state === 'open')
.reduce((sum, i) => sum + (i.facts.estimateDays ?? 2), 0)
const effect = model.coldStart
? { raw: `${model.n}/${COLD_START_THRESHOLD} estimated closes`, banded: 'cold-start priors', p50: '—' }
: {
raw: `${openEst}d estimated`,
banded: `×${Math.exp(model.global.mu).toFixed(2)} median drift`,
p50: `${Math.round(openEst * Math.exp(model.global.mu))}d`,
}
return {
n: model.n,
active: !model.coldStart,
labels,
people,
scatter: samples.map((s) => [s.estimateDays, s.actualWorkingDays]),
fit: Number(Math.exp(model.global.mu).toFixed(2)),
effect,
}
} }
/** /**
@@ -99,8 +235,153 @@ export function forecastBacklog(
* as Now/Next/Later. Estimates + priority come from label facts; dependency * as Now/Next/Later. Estimates + priority come from label facts; dependency
* edges come from gitea's native issue dependencies. * edges come from gitea's native issue dependencies.
*/ */
export function scheduleFocus(issues: GiteaIssue[], deps: DependencyEdge[]): FocusView { export function scheduleFocus(
issues: GiteaIssue[],
deps: DependencyEdge[],
timelines: Timelines = {},
asOf: Date = new Date(),
): FocusView {
const plan = schedule(toSchedulable(issues), deps) const plan = schedule(toSchedulable(issues), deps)
const f = selectFocus(plan) const f = selectFocus(plan)
return { now: toFocusIssue(f.now), next: toFocusIssue(f.next), later: toFocusIssue(f.later) } const inf = inferAll(issues, timelines, asOf)
return {
now: toFocusIssue(f.now, inf),
next: toFocusIssue(f.next, inf),
later: toFocusIssue(f.later, inf),
}
}
/**
* Per-milestone Monte Carlo forecast for the Runway screen — each open milestone's
* open scope gets its own cone, and the p80 landing is compared to the milestone's
* due date (ok/at-risk). Ranges, never point dates. Milestones with no open scope
* (already shipped) are omitted. Falls back to the demo when there's nothing real.
*/
export function runwayView(
issues: GiteaIssue[],
milestones: GiteaMilestone[],
deps: DependencyEdge[],
today: Date = new Date(),
workers: Worker[] = [],
): RunwayMilestone[] {
const open = issues.filter((i) => i.state === 'open')
const rows = milestones
.filter((m) => m.state === 'open')
.map((m) => ({ m, scope: open.filter((i) => i.milestone?.id === m.id) }))
.filter((x) => x.scope.length > 0)
.map(({ m, scope }) => {
const f = forecast(
scope.map((i) => ({
number: i.number,
title: i.title,
labels: i.labels,
estimateDays: i.facts.estimateDays,
priority: i.facts.priority,
assignee: i.assignee,
})),
deps,
{ workers },
)
const p90 = f.curve.length ? f.curve[f.curve.length - 1].p90Day : f.p95Day
const dueDay = m.dueOn ? workingDaysBetween(today, new Date(m.dueOn)) : null
return { m, p50: f.p50Day, p80: f.p80Day, p90, dueDay }
})
const horizon = Math.max(1, ...rows.map((r) => Math.max(r.p90, r.dueDay ?? 0)))
return rows.map(({ m, p50, p80, p90, dueDay }) => {
const onTrack = dueDay == null || p80 <= dueDay
return {
id: m.id,
name: m.title,
due: m.dueOn ? formatShort(new Date(m.dueOn)) : 'no date',
hard: false,
p80: formatRange(addWorkingDays(today, p50), addWorkingDays(today, p90)),
pos: p80 / horizon,
spread: Math.min(0.6, (p90 - p50) / horizon),
tone: onTrack ? ('ok' as const) : ('warn' as const),
note: dueDay == null ? `${Math.ceil(p80)}d of work` : onTrack ? 'on track' : 'at risk',
}
})
}
export interface MilestoneGroup {
label: string
issues: { id: number; title: string; labels: string[]; days?: string }[]
}
export interface MilestoneView {
name: string
due: string
soft: boolean
scopeCount: number
scopeEstDays: number
doneCount: number
donePct: number
/** p50..p90 landing range for the remaining open scope; null when nothing's open. */
forecastRange: string | null
cone: BurnUpData | null
groups: MilestoneGroup[]
}
/**
* The Milestone drill-in: real scope, done %, a Monte Carlo cone over the
* milestone's remaining open work, and its issues grouped by lifecycle column.
* Returns null for an unknown id — the screen then shows the demo fixture.
*/
export function milestoneView(
id: number,
issues: GiteaIssue[],
milestones: GiteaMilestone[],
deps: DependencyEdge[],
timelines: Timelines = {},
calibration?: CalibrationModel,
today: Date = new Date(),
workers: Worker[] = [],
): MilestoneView | null {
const m = milestones.find((x) => x.id === id)
if (!m) return null
const all = issues.filter((i) => i.milestone?.id === id)
const open = all.filter((i) => i.state === 'open')
const done = all.filter((i) => i.state === 'closed')
const scopeEstDays = all.reduce((sum, i) => sum + (i.facts.estimateDays ?? 2), 0)
const model = calibration ? toDurationModel(calibration) : undefined
const f = forecast(
open.map((i) => ({
number: i.number,
title: i.title,
labels: i.labels,
estimateDays: i.facts.estimateDays,
priority: i.facts.priority,
assignee: i.assignee,
})),
deps,
{ ...(model ? { model } : {}), workers },
)
const cone = buildBurnUpData(f, today)
const inf = inferAll(all, timelines, today)
const groups: MilestoneGroup[] = COLUMN_ORDER.map((key) => ({
label: COLUMN_LABELS[key],
issues: all
.filter((i) => inf.get(i.number)!.column === key)
.map((i) => {
const days = inf.get(i.number)!.steepingDays
return { id: i.number, title: i.title, labels: i.labels, days: days != null ? `${days}d` : undefined }
}),
})).filter((g) => g.issues.length > 0)
return {
name: m.title,
due: m.dueOn ? formatShort(new Date(m.dueOn)) : 'no date',
soft: true,
scopeCount: all.length,
scopeEstDays,
doneCount: done.length,
donePct: all.length ? Math.round((done.length / all.length) * 100) : 0,
forecastRange: cone ? cone.rangeLabel : null,
cone,
groups,
}
} }

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@@ -1,40 +1,91 @@
import { useEffect, useState } from 'react' import { useCallback, useEffect, useState } from 'react'
import type { DependencyEdge, GiteaIssue, GiteaMilestone } from '@commitea/core' import type { DependencyEdge, GiteaIssue, GiteaMilestone, LifecycleEvent } from '@commitea/core'
export type BacklogState = export type BacklogState =
| { status: 'loading' } | { status: 'loading' }
| { status: 'unconfigured' } | { status: 'unconfigured' }
| { status: 'error'; message: string } | { status: 'error'; message: string }
| { status: 'ready'; issues: GiteaIssue[]; milestones: GiteaMilestone[]; deps: DependencyEdge[] } | {
status: 'ready'
issues: GiteaIssue[]
milestones: GiteaMilestone[]
deps: DependencyEdge[]
timelines: Record<number, LifecycleEvent[]>
/** true while showing the persisted snapshot (instant boot / offline). */
stale: boolean
/** ISO time the shown snapshot was reconciled, when stale. */
savedAt?: string
}
/** /**
* Reconcile the managed repo once on mount, through the main-process bridge. * Reconcile the managed repo through the main-process bridge, stale-while-
* `unconfigured` means no token — the UI falls back to demo fixtures. Errors * revalidate: on mount it shows the persisted snapshot instantly (marked stale),
* (network, bad token) surface as `error`. * then a fresh reconcile supersedes it. If gitea is unreachable, the fresh
* reconcile falls back to the persisted snapshot (offline). `refetch` re-syncs
* after a write. `unconfigured` means no token — the UI uses demo fixtures.
*/ */
export function useBacklog(): BacklogState { export function useBacklog(): [BacklogState, () => void] {
const [state, setState] = useState<BacklogState>({ status: 'loading' }) const [state, setState] = useState<BacklogState>({ status: 'loading' })
const [nonce, setNonce] = useState(0)
const refetch = useCallback(() => setNonce((n) => n + 1), [])
useEffect(() => { useEffect(() => {
let alive = true let alive = true
// instant boot from the persisted snapshot (only on first mount, not refetch)
if (nonce === 0) {
window.commitea.gitea
.boot()
.then((b) => {
if (!alive || !('cached' in b) || !b.cached) return
setState((prev) =>
prev.status === 'ready' && !prev.stale
? prev // a fresh reconcile already won the race
: {
status: 'ready',
issues: b.issues,
milestones: b.milestones,
deps: b.deps,
timelines: b.timelines,
stale: true,
savedAt: b.savedAt,
},
)
})
.catch(() => {})
}
window.commitea.gitea window.commitea.gitea
.reconcile() .reconcile()
.then((r) => { .then((r) => {
if (!alive) return if (!alive) return
setState( setState(
r.configured r.configured
? { status: 'ready', issues: r.issues, milestones: r.milestones, deps: r.deps } ? {
status: 'ready',
issues: r.issues,
milestones: r.milestones,
deps: r.deps,
timelines: r.timelines,
stale: r.stale ?? false,
savedAt: r.savedAt,
}
: { status: 'unconfigured' }, : { status: 'unconfigured' },
) )
}) })
.catch((e: unknown) => { .catch((e: unknown) => {
if (alive) setState({ status: 'error', message: e instanceof Error ? e.message : String(e) }) if (alive) {
// keep a shown boot snapshot rather than clobbering it with an error
setState((prev) =>
prev.status === 'ready' ? prev : { status: 'error', message: e instanceof Error ? e.message : String(e) },
)
}
}) })
return () => { return () => {
alive = false alive = false
} }
}, []) }, [nonce])
return state return [state, refetch]
} }

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@@ -0,0 +1,24 @@
import { useEffect, useState } from 'react'
import type { CapacityMember } from '@commitea/core'
/**
* The team's capacity config from the pm-state repo. Empty when unconfigured —
* forecasts then fall back to a single serial worker. Read once on mount.
*/
export function useCapacity(): CapacityMember[] {
const [members, setMembers] = useState<CapacityMember[]>([])
useEffect(() => {
let alive = true
window.commitea.pmstate
.capacity()
.then((r) => {
if (alive) setMembers(r.members)
})
.catch(() => {})
return () => {
alive = false
}
}, [])
return members
}

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@@ -0,0 +1,158 @@
import { useCallback, useEffect, useRef, useState } from 'react'
import type { ChangeProposal, ChatMessage as WireMessage, IssueChange } from '@commitea/core'
import { CHAT, type ChatMessage } from '../data/fixtures.js'
const LIVE_GREETING: ChatMessage = {
from: 'agent',
text: 'Morning. Ask me anything about the project — I check the real board before I answer.',
}
const NO_MODEL: ChatMessage = {
from: 'agent',
text: "Reginald is off — I need a model. Add a Model URL in Settings and chat turns on.",
}
export interface ChatState {
msgs: ChatMessage[]
thinking: boolean
/** true once a model endpoint is confirmed; otherwise the panel echoes the demo reply. */
live: boolean
/** The loaded model's id when live (for the header). */
model: string | null
/** Tools Reginald consulted on the last turn (for a subtle activity line). */
steps: string[]
/** Changes Reginald has proposed and is awaiting approval on. */
proposals: ChangeProposal[]
/** The in-flight streamed prose (grows token-by-token) before the turn finalizes. */
streaming: string
send: (text: string) => void
approve: (p: ChangeProposal) => void
dismiss: (p: ChangeProposal) => void
}
/**
* Reginald's conversation. When a model is configured, `send` drives one agent
* turn through the main-process bridge (which runs the tool loop). Otherwise it
* echoes the scripted fixture reply, so the layout stays real with no model and
* fixture e2e is unaffected. The fixture greeting is display-only — only real
* turns (`convo`) are sent to the model as history. `onApplyChange` performs an
* approved write (the same handler the Issue screen uses — it refetches).
*/
export function useChat(onApplyChange?: (change: IssueChange) => Promise<{ ok: boolean }>): ChatState {
const [seed, setSeed] = useState<ChatMessage[]>(CHAT)
const [convo, setConvo] = useState<ChatMessage[]>([])
const [thinking, setThinking] = useState(false)
const [live, setLive] = useState(false)
const [model, setModel] = useState<string | null>(null)
const [steps, setSteps] = useState<string[]>([])
const [proposals, setProposals] = useState<ChangeProposal[]>([])
const [streaming, setStreaming] = useState('')
const convoRef = useRef(convo)
convoRef.current = convo
const proposalKey = (p: ChangeProposal) => `${p.change.issue}:${p.change.kind}`
const drop = (p: ChangeProposal) => setProposals((ps) => ps.filter((x) => proposalKey(x) !== proposalKey(p)))
useEffect(() => {
let alive = true
window.commitea.model
.status()
.then((s) => {
if (!alive) return
if (s.configured) {
setLive(true)
setModel(s.model)
setSeed([LIVE_GREETING])
} else {
// no model → clean "off" state, not a scripted fixture reply
setSeed([NO_MODEL])
}
})
.catch(() => {})
return () => {
alive = false
}
}, [])
const send = useCallback(
(raw: string) => {
const text = raw.trim()
if (!text) return
const nextConvo: ChatMessage[] = [...convoRef.current, { from: 'user', text }]
setConvo(nextConvo)
setThinking(true)
setSteps([])
setProposals([])
if (!live) {
// no model configured — nothing to send (composer is disabled anyway)
setThinking(false)
return
}
const wire: WireMessage[] = nextConvo.map((m) => ({
role: m.from === 'user' ? 'user' : 'assistant',
content: m.text,
}))
setStreaming('')
const unsubscribe = window.commitea.model.onToken((delta) => setStreaming((s) => s + delta))
const finish = () => {
unsubscribe()
setThinking(false)
setStreaming('')
}
window.commitea.model
.chat(wire)
.then((res) => {
finish()
if (res.ok) {
setSteps(res.steps.map((s) => s.tool))
setProposals(res.proposals)
setConvo((c) => [...c, { from: 'agent', text: res.content || '…' }])
} else {
setConvo((c) => [
...c,
{
from: 'agent',
text: res.reason === 'error' ? `I hit a snag: ${res.message ?? 'unknown error'}` : 'No model is configured.',
},
])
}
})
.catch(() => {
finish()
setConvo((c) => [...c, { from: 'agent', text: 'I could not reach the model.' }])
})
},
[live],
)
const approve = useCallback(
(p: ChangeProposal) => {
if (!onApplyChange) return
drop(p)
const label = p.plan.added[0] ?? p.plan.removed[0] ?? 'change'
void onApplyChange(p.change).then((res) => {
setConvo((c) => [
...c,
{
from: 'agent',
text: res.ok
? `Done — #${p.change.issue} is now ${label}. The plan's been re-run.`
: `That didn't take — #${p.change.issue} is unchanged.`,
},
])
})
},
[onApplyChange],
)
const dismiss = useCallback((p: ChangeProposal) => {
drop(p)
setConvo((c) => [...c, { from: 'agent', text: `Left #${p.change.issue} as it was.` }])
}, [])
return { msgs: [...seed, ...convo], thinking, live, model, steps, proposals, streaming, send, approve, dismiss }
}

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@@ -0,0 +1,103 @@
import { beforeAll, describe, expect, it } from 'vitest'
import { extractLabelFacts } from '../labels/label-schema.js'
import type { FetchLike, GiteaIssue } from '../gitea/types.js'
import { runAgentTurn } from './agent-loop.js'
import { REGINALD_SYSTEM, REGINALD_TOOLS } from './agent-tools.js'
import { createChatClient } from './chat-client.js'
import { buildProjectView, type ProjectSnapshot } from './query-project.js'
/**
* Opt-in (COMMITEA_MODEL_LIVE=1). Drives the real chat client + agent loop
* against a local OpenAI-compatible server (LM Studio on :1234 by default),
* proving the model calls the tools and narrates the real result. The model is
* whatever is loaded (via LM Studio's native API), so it never JIT-swaps.
*/
const LIVE = !!process.env.COMMITEA_MODEL_LIVE
const BASE = process.env.COMMITEA_MODEL_URL ?? 'http://localhost:1234/v1'
let MODEL = process.env.COMMITEA_MODEL_SMALL ?? ''
beforeAll(async () => {
if (!LIVE || MODEL) return
const root = BASE.replace(/\/v1\/?$/, '')
const loaded = await fetch(`${root}/api/v0/models`)
.then((r) => (r.ok ? (r.json() as Promise<{ data?: { id: string; state?: string; type?: string }[] }>) : null))
.then((d) => d?.data?.find((m) => m.state === 'loaded' && m.type !== 'embeddings')?.id)
.catch(() => undefined)
MODEL = loaded ?? 'google/gemma-4-e4b'
})
function issue(over: Partial<GiteaIssue>): GiteaIssue {
const labels = over.labels ?? []
return {
number: 1, title: '#1', body: '', state: 'open', labels, facts: extractLabelFacts(labels),
milestone: null, assignee: null, assignees: [], createdAt: '2026-01-05T09:00:00Z',
updatedAt: '2026-01-05T09:00:00Z', closedAt: null, url: '', ...over,
}
}
const SNAP: ProjectSnapshot = {
issues: [
issue({ number: 2, title: 'ChangeSource interface + polling source', labels: ['est/3d', 'p/1'] }),
issue({ number: 3, title: 'SQLite cache bootstrap', labels: ['est/2d', 'p/1'] }),
],
timelines: {},
deps: [{ issue: 3, dependsOn: 2 }],
}
describe('agent loop (live model)', () => {
it.skipIf(!LIVE)(
'calls query_project and narrates the real focus',
async () => {
const client = createChatClient({ baseUrl: BASE, model: MODEL }, globalThis.fetch as unknown as FetchLike)
const turn = await runAgentTurn({
complete: (m, t) => client.complete(m, t),
messages: [
{ role: 'system', content: REGINALD_SYSTEM },
{ role: 'user', content: 'What should I work on right now?' },
],
tools: REGINALD_TOOLS,
execute: async (name, args) =>
name === 'query_project'
? buildProjectView((args as { view: any }).view, (args as any).filters, SNAP, new Date())
: { error: `unknown tool ${name}` },
})
// it consulted the project, then answered in prose about the real top item (#2)
expect(turn.steps.some((s) => s.tool === 'query_project')).toBe(true)
expect(turn.content.trim().length).toBeGreaterThan(0)
expect(turn.content).toMatch(/#?2\b|ChangeSource/i)
},
60_000,
)
it.skipIf(!LIVE)(
'records a standing instruction via record_directive',
async () => {
const client = createChatClient({ baseUrl: BASE, model: MODEL }, globalThis.fetch as unknown as FetchLike)
const recorded: unknown[] = []
const turn = await runAgentTurn({
complete: (m, t) => client.complete(m, t),
messages: [
{ role: 'system', content: REGINALD_SYSTEM },
{ role: 'user', content: 'Log this standing directive: pilots come first, everything else waits.' },
],
tools: REGINALD_TOOLS,
execute: async (name, args) => {
if (name === 'record_directive') {
recorded.push(args)
return { recorded: { kind: (args as { kind?: string }).kind ?? 'note' } }
}
return name === 'query_project'
? buildProjectView((args as { view: any }).view, (args as any).filters, SNAP, new Date())
: { error: `unknown tool ${name}` }
},
})
// the model logged the directive rather than trying to apply it
expect(turn.steps.some((s) => s.tool === 'record_directive')).toBe(true)
expect(recorded.length).toBeGreaterThan(0)
},
60_000,
)
})

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/**
* The agent turn loop. Given a model `complete` fn, the conversation, the tool
* declarations, and an `execute` that actually runs a tool, it drives the
* call→tool→result→call cycle until the model answers in prose (or a step
* budget is hit). Pure orchestration with injected I/O — the model and the tool
* executor are both stubbable, so the loop is fully unit-testable offline.
*/
import type { ChatMessage, CompletionResult, ToolDecl } from './chat-client.js'
/** A tool the loop ran, with the raw args and its stringified result — for the UI's activity trail. */
export interface AgentStep {
tool: string
arguments: string
result: string
}
export type ToolExecutor = (name: string, args: unknown) => Promise<unknown>
export interface AgentTurn {
content: string
steps: AgentStep[]
/** The full conversation including this turn's assistant/tool messages. */
messages: ChatMessage[]
}
const DEFAULT_MAX_STEPS = 4
function stringify(result: unknown): string {
return typeof result === 'string' ? result : JSON.stringify(result)
}
export async function runAgentTurn(opts: {
complete: (messages: ChatMessage[], tools?: ToolDecl[], onToken?: (delta: string) => void) => Promise<CompletionResult>
messages: ChatMessage[]
tools: ToolDecl[]
execute: ToolExecutor
maxSteps?: number
/** Streams content deltas as the model produces prose (final-answer streaming). */
onToken?: (delta: string) => void
}): Promise<AgentTurn> {
const maxSteps = opts.maxSteps ?? DEFAULT_MAX_STEPS
const convo: ChatMessage[] = [...opts.messages]
const steps: AgentStep[] = []
for (let step = 0; step < maxSteps; step++) {
const { content, toolCalls } = await opts.complete(convo, opts.tools, opts.onToken)
if (toolCalls.length === 0) {
convo.push({ role: 'assistant', content })
return { content, steps, messages: convo }
}
convo.push({ role: 'assistant', content, toolCalls })
for (const tc of toolCalls) {
let result: unknown
try {
const args = tc.arguments ? JSON.parse(tc.arguments) : {}
result = await opts.execute(tc.name, args)
} catch (e) {
result = { error: e instanceof Error ? e.message : String(e) }
}
const resultStr = stringify(result)
steps.push({ tool: tc.name, arguments: tc.arguments, result: resultStr })
convo.push({ role: 'tool', toolCallId: tc.id, name: tc.name, content: resultStr })
}
}
// Out of tool budget — force a final prose answer with tools withheld.
const final = await opts.complete(convo, [], opts.onToken)
convo.push({ role: 'assistant', content: final.content })
return { content: final.content, steps, messages: convo }
}

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/**
* Reginald's tool surface. v0 ships the one read tool (`query_project`); the
* three write tools (capture_work, apply_changes, record_directive) layer on
* later against the same loop. Few, fat tools so a small local model survives
* with one thing to reach for (docs/agent-tools.md).
*/
import type { ToolDecl } from './chat-client.js'
export const QUERY_PROJECT_TOOL: ToolDecl = {
name: 'query_project',
description:
'Read the current project state. A `view` selects the shape; deterministic code (scheduler, ' +
'lifecycle inference, calibration) backs every number — you report it, you never compute it.',
parameters: {
type: 'object',
properties: {
view: {
type: 'string',
enum: ['focus', 'board', 'calibration', 'issue', 'search'],
description:
'focus = Now/Next/Later; board = issues by lifecycle column; calibration = estimate-vs-actual; ' +
'issue = one issue (needs filters.issueId); search = issues matching filters.query.',
},
filters: {
type: 'object',
properties: {
issueId: { type: 'number' },
query: { type: 'string' },
limit: { type: 'number' },
},
},
},
required: ['view'],
},
}
export const PROPOSE_CHANGE_TOOL: ToolDecl = {
name: 'propose_change',
description:
"Propose an estimate and/or priority change to an issue. This does NOT apply anything — it shows the " +
'human a diff to approve. Use it whenever the user asks to re-estimate or reprioritize. After calling it, ' +
"tell the user you've *proposed* the change for approval — never say it is done.",
parameters: {
type: 'object',
properties: {
issue: { type: 'number', description: 'the issue number to change' },
estimate: { type: 'string', enum: ['est/1d', 'est/2d', 'est/3d', 'est/5d', 'est/8d'] },
priority: { type: 'string', enum: ['p/1', 'p/2', 'p/3', 'p/4'] },
},
required: ['issue'],
},
}
export const RECORD_DIRECTIVE_TOOL: ToolDecl = {
name: 'record_directive',
description:
'Log a standing instruction from the PM to the durable directive ledger — a reprioritization, ' +
'a re-estimate policy, a deadline, a scope or capacity call, or a plain note. Use it when the user ' +
'states intent that should persist ("pilots come first", "freeze scope for beta"). This records the ' +
'intent verbatim; the actual issue edits still go through propose_change.',
parameters: {
type: 'object',
properties: {
kind: { type: 'string', enum: ['reprioritize', 'reestimate', 'set-deadline', 'scope', 'capacity', 'note'] },
quote: { type: 'string', description: "the PM's own words, stored verbatim" },
target: {
type: 'object',
properties: {
issue: { type: 'number' },
milestone: { type: 'number' },
member: { type: 'string' },
},
},
rationale: { type: 'string', description: 'why (optional)' },
},
required: ['kind', 'quote'],
},
}
export const REGINALD_TOOLS: ToolDecl[] = [QUERY_PROJECT_TOOL, PROPOSE_CHANGE_TOOL, RECORD_DIRECTIVE_TOOL]
export const REGINALD_SYSTEM = [
'You are Reginald, the calm, dry project manager inside CommiTea — a tool that runs projects on Gitea.',
'Call query_project to ground every answer in the real project; never invent issues, numbers, or dates.',
'The scheduler and forecasts are deterministic code — report their output, do not recompute it.',
'To change an estimate or priority, call propose_change — it shows the human a diff to approve.',
'When the PM states standing intent ("pilots first", "freeze scope"), call record_directive to log it.',
'Never claim a change is applied; you propose, the human approves. Forecasts are ranges, never single dates.',
'Refer to issues as #<number>. Be brief and plain — a sentence or two. No preamble, no bullet dumps.',
].join(' ')

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import { describe, expect, it } from 'vitest'
import { extractLabelFacts } from '../labels/label-schema.js'
import type { GiteaIssue } from '../gitea/types.js'
import type { FetchLike } from '../gitea/types.js'
import { type ChatMessage, type CompletionResult, createChatClient, type ToolDecl } from './chat-client.js'
import { runAgentTurn } from './agent-loop.js'
import { pickModel } from './model-router.js'
import { buildProjectView, type ProjectSnapshot } from './query-project.js'
// ---- chat client ----
describe('createChatClient', () => {
function stub(body: unknown) {
const calls: { url: string; body: unknown }[] = []
const fetch: FetchLike = (url, init) => {
calls.push({ url, body: init?.body ? JSON.parse(init.body) : undefined })
return Promise.resolve({
ok: true,
status: 200,
json: () => Promise.resolve(body),
text: () => Promise.resolve(''),
})
}
return { fetch, calls }
}
function sseStub(chunks: string[]) {
const calls: { url: string; body: unknown }[] = []
const fetch: FetchLike = (url, init) => {
calls.push({ url, body: init?.body ? JSON.parse(init.body) : undefined })
const enc = new TextEncoder()
const body = new ReadableStream<Uint8Array>({
start(c) {
for (const ch of chunks) c.enqueue(enc.encode(ch))
c.close()
},
})
return Promise.resolve({ ok: true, status: 200, body, json: () => Promise.resolve({}), text: () => Promise.resolve('') })
}
return { fetch, calls }
}
it('streams content deltas via onToken and returns the assembled result', async () => {
const { fetch, calls } = sseStub([
'data: {"choices":[{"delta":{"content":"Right "}}]}\n\n',
'data: {"choices":[{"delta":{"content":"now: #2."}}]}\n\n',
'data: [DONE]\n\n',
])
const client = createChatClient({ baseUrl: 'http://x/v1', model: 'm' }, fetch)
const tokens: string[] = []
const res = await client.complete([{ role: 'user', content: 'now?' }], undefined, (d) => tokens.push(d))
expect(tokens).toEqual(['Right ', 'now: #2.'])
expect(res.content).toBe('Right now: #2.')
expect((calls[0].body as { stream?: boolean }).stream).toBe(true)
})
it('assembles a streamed tool call from argument deltas', async () => {
const { fetch } = sseStub([
'data: {"choices":[{"delta":{"tool_calls":[{"index":0,"id":"c1","function":{"name":"query_project","arguments":"{\\"view\\""}}]}}]}\n\n',
'data: {"choices":[{"delta":{"tool_calls":[{"index":0,"function":{"arguments":":\\"focus\\"}"}}]}}]}\n\n',
'data: [DONE]\n\n',
])
const client = createChatClient({ baseUrl: 'http://x/v1', model: 'm' }, fetch)
const res = await client.complete([{ role: 'user', content: 'x' }], [{ name: 'query_project', description: '', parameters: {} }], () => {})
expect(res.toolCalls).toEqual([{ id: 'c1', name: 'query_project', arguments: '{"view":"focus"}' }])
})
it('POSTs to /chat/completions and parses content', async () => {
const { fetch, calls } = stub({ choices: [{ message: { content: 'the focus is #2' } }] })
const client = createChatClient({ baseUrl: 'http://localhost:1234/v1', model: 'gemma' }, fetch)
const res = await client.complete([{ role: 'user', content: 'what now?' }])
expect(res.content).toBe('the focus is #2')
expect(res.toolCalls).toEqual([])
expect(calls[0].url).toBe('http://localhost:1234/v1/chat/completions')
expect((calls[0].body as { model: string }).model).toBe('gemma')
})
it('parses tool calls from the wire shape', async () => {
const { fetch } = stub({
choices: [
{
message: {
content: null,
tool_calls: [{ id: 'c1', function: { name: 'query_project', arguments: '{"view":"focus"}' } }],
},
},
],
})
const client = createChatClient({ baseUrl: 'http://x/v1', model: 'm' }, fetch)
const res = await client.complete([{ role: 'user', content: 'x' }], [{ name: 'query_project', description: '', parameters: {} }])
expect(res.toolCalls).toEqual([{ id: 'c1', name: 'query_project', arguments: '{"view":"focus"}' }])
})
it('serializes assistant tool_calls + tool results in the request', async () => {
const { fetch, calls } = stub({ choices: [{ message: { content: 'ok' } }] })
const client = createChatClient({ baseUrl: 'http://x/v1', model: 'm' }, fetch)
const convo: ChatMessage[] = [
{ role: 'user', content: 'hi' },
{ role: 'assistant', content: '', toolCalls: [{ id: 'c1', name: 'query_project', arguments: '{}' }] },
{ role: 'tool', toolCallId: 'c1', name: 'query_project', content: '{"now":null}' },
]
await client.complete(convo)
const sent = (calls[0].body as { messages: Record<string, unknown>[] }).messages
expect(sent[1].tool_calls).toBeDefined()
expect(sent[2]).toEqual({ role: 'tool', tool_call_id: 'c1', content: '{"now":null}' })
})
})
// ---- model router ----
describe('pickModel', () => {
const router = { small: { baseUrl: 'u', model: 'small' }, big: { baseUrl: 'u', model: 'big' } }
it('routes plan → big, everything else → small', () => {
expect(pickModel(router, 'plan').model).toBe('big')
expect(pickModel(router, 'ritual').model).toBe('small')
})
})
// ---- agent loop ----
describe('runAgentTurn', () => {
const tools: ToolDecl[] = [{ name: 'query_project', description: '', parameters: {} }]
it('runs a tool then returns the model prose, recording the step', async () => {
// first completion asks for a tool; second answers in prose
const scripted: CompletionResult[] = [
{ content: '', toolCalls: [{ id: 'c1', name: 'query_project', arguments: '{"view":"focus"}' }] },
{ content: 'Right now: #2.', toolCalls: [] },
]
let i = 0
const executed: { name: string; args: unknown }[] = []
const turn = await runAgentTurn({
complete: async () => scripted[i++],
messages: [{ role: 'user', content: 'what now?' }],
tools,
execute: async (name, args) => {
executed.push({ name, args })
return { now: { issue: 2 } }
},
})
expect(turn.content).toBe('Right now: #2.')
expect(turn.steps).toEqual([
{ tool: 'query_project', arguments: '{"view":"focus"}', result: '{"now":{"issue":2}}' },
])
expect(executed).toEqual([{ name: 'query_project', args: { view: 'focus' } }])
// conversation carries user → assistant(tool) → tool → assistant(prose)
expect(turn.messages.map((m) => m.role)).toEqual(['user', 'assistant', 'tool', 'assistant'])
})
it('answers directly when the model needs no tool', async () => {
const turn = await runAgentTurn({
complete: async () => ({ content: 'Hello.', toolCalls: [] }),
messages: [{ role: 'user', content: 'hi' }],
tools,
execute: async () => ({}),
})
expect(turn.content).toBe('Hello.')
expect(turn.steps).toEqual([])
})
it('captures a tool executor error as the tool result instead of throwing', async () => {
const scripted: CompletionResult[] = [
{ content: '', toolCalls: [{ id: 'c1', name: 'query_project', arguments: '{}' }] },
{ content: 'Something went wrong reading that.', toolCalls: [] },
]
let i = 0
const turn = await runAgentTurn({
complete: async () => scripted[i++],
messages: [{ role: 'user', content: 'x' }],
tools,
execute: async () => {
throw new Error('boom')
},
})
expect(turn.steps[0].result).toContain('boom')
expect(turn.content).toBe('Something went wrong reading that.')
})
it('forces a final prose answer when the step budget is exhausted', async () => {
// always asks for a tool; the loop must still terminate with prose
let toolRounds = 0
const turn = await runAgentTurn({
complete: async (_m, tls) => {
if (tls && tls.length) {
toolRounds++
return { content: '', toolCalls: [{ id: `c${toolRounds}`, name: 'query_project', arguments: '{}' }] }
}
return { content: 'final answer', toolCalls: [] } // called with tools withheld
},
messages: [{ role: 'user', content: 'x' }],
tools,
execute: async () => ({}),
maxSteps: 2,
})
expect(toolRounds).toBe(2)
expect(turn.content).toBe('final answer')
})
})
// ---- query_project view builder ----
describe('buildProjectView', () => {
const asOf = new Date('2026-02-01T00:00:00Z')
function issue(over: Partial<GiteaIssue>): GiteaIssue {
const labels = over.labels ?? []
return {
number: 1,
title: '#1',
body: '',
state: 'open',
labels,
facts: extractLabelFacts(labels),
milestone: null,
assignee: null,
assignees: [],
createdAt: '2026-01-05T09:00:00Z',
updatedAt: '2026-01-05T09:00:00Z',
closedAt: null,
url: '',
...over,
}
}
const snap: ProjectSnapshot = {
issues: [
issue({ number: 2, title: 'ChangeSource', labels: ['est/3d', 'p/1'] }),
issue({ number: 3, title: 'SQLite cache', labels: ['est/2d', 'p/1'] }),
issue({ number: 9, title: 'Done thing', state: 'closed', labels: ['est/2d'], closedAt: '2026-01-12T09:00:00Z' }),
],
timelines: { 9: [{ type: 'commit', at: '2026-01-07T09:00:00Z' }, { type: 'close', at: '2026-01-12T09:00:00Z' }] },
deps: [{ issue: 3, dependsOn: 2 }],
}
it('focus returns Now/Next/Later grounded in the scheduler', () => {
const v = buildProjectView('focus', undefined, snap, asOf) as {
now: { issue: number } | null
openCount: number
}
expect(v.now?.issue).toBe(2) // #3 depends on #2, so #2 comes first
expect(v.openCount).toBe(2)
})
it('board groups issues by lifecycle column', () => {
const v = buildProjectView('board', undefined, snap, asOf) as {
columns: { column: string; count: number }[]
}
const done = v.columns.find((c) => c.column === 'done')
expect(done?.count).toBe(1) // #9
const triage = v.columns.find((c) => c.column === 'triage')
expect(triage?.count).toBe(2) // #2, #3 labelled, no commits yet
})
it('calibration reports n + cold-start honestly', () => {
const v = buildProjectView('calibration', undefined, snap, asOf) as { n: number; coldStart: boolean }
expect(v.n).toBe(1) // one closed, estimated, with an actual
expect(v.coldStart).toBe(true)
})
it('issue returns intent + derived for a specific id', () => {
const v = buildProjectView('issue', { issueId: 3 }, snap, asOf) as {
issue: number
blockedBy: number[]
}
expect(v.issue).toBe(3)
expect(v.blockedBy).toEqual([2])
})
it('search matches title/labels', () => {
const v = buildProjectView('search', { query: 'sqlite' }, snap, asOf) as { results: { issue: number }[] }
expect(v.results.map((r) => r.issue)).toEqual([3])
})
it('unbuilt views return a notImplemented marker, not fabricated data', () => {
expect(buildProjectView('standup', undefined, snap, asOf)).toEqual({ notImplemented: 'standup' })
})
})

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import { describe, expect, it } from 'vitest'
import type { CompletionResult } from './chat-client.js'
import { captureWork, parseCaptureArgs } from './capture-work.js'
describe('parseCaptureArgs', () => {
it('validates issues and keeps only real titles + valid labels', () => {
const p = parseCaptureArgs({
issues: [
{ title: 'Fix token refresh', body: 'dies silently', estimate: 'est/2d', priority: 'p/1' },
{ title: ' ', body: 'blank title dropped' },
{ title: 'Docs', estimate: 'est/9d', priority: 'urgent' }, // invalid labels → dropped to undefined
],
consequence: 'Beta slips a day',
})
expect(p.issues).toHaveLength(2)
expect(p.issues[0]).toEqual({ title: 'Fix token refresh', body: 'dies silently', estimate: 'est/2d', priority: 'p/1' })
expect(p.issues[1]).toEqual({ title: 'Docs', body: '', estimate: undefined, priority: undefined })
expect(p.consequence).toBe('Beta slips a day')
})
it('tolerates a missing/!array issues field', () => {
expect(parseCaptureArgs({}).issues).toEqual([])
expect(parseCaptureArgs({ issues: 'nope' }).issues).toEqual([])
})
})
describe('captureWork', () => {
it('forces propose_issues and returns the validated set', async () => {
const result: CompletionResult = {
content: '',
toolCalls: [
{
id: 'c1',
name: 'propose_issues',
arguments: JSON.stringify({
issues: [{ title: 'Retry token refresh with backoff', body: '', estimate: 'est/2d', priority: 'p/2' }],
consequence: 'no material shift',
}),
},
],
}
let sawTool = ''
const proposal = await captureWork(async (_m, tools) => {
sawTool = tools?.[0]?.name ?? ''
return result
}, 'auth is flaky, token refresh dies')
expect(sawTool).toBe('propose_issues')
expect(proposal.issues[0].title).toBe('Retry token refresh with backoff')
expect(proposal.consequence).toBe('no material shift')
})
it('returns an empty set when the model answers without the tool', async () => {
const proposal = await captureWork(async () => ({ content: 'I need more detail.', toolCalls: [] }), 'vague')
expect(proposal.issues).toEqual([])
})
it('survives malformed tool arguments', async () => {
const proposal = await captureWork(
async () => ({ content: '', toolCalls: [{ id: 'c1', name: 'propose_issues', arguments: '{not json' }] }),
'x',
)
expect(proposal.issues).toEqual([])
})
})

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/**
* capture_work — braindump → a small set of concrete issues. This is the one
* place the big model earns its keep (decomposition + estimate negotiation).
* It returns a *proposal*; nothing is filed until the human approves it in the
* Capture tray and it goes through the create-issue write path. Pure
* orchestration over an injected `complete` — stubbable, so it's testable offline.
*/
import {
type EstimateLabel,
ESTIMATE_LABELS,
type PriorityLabel,
PRIORITY_LABELS,
} from '../labels/label-schema.js'
import type { ChatMessage, CompletionResult, ToolDecl } from './chat-client.js'
export interface ProposedIssue {
title: string
body: string
estimate?: EstimateLabel
priority?: PriorityLabel
}
export interface CaptureProposal {
issues: ProposedIssue[]
/** One-line schedule impact, if the model offered one. */
consequence?: string
}
export const PROPOSE_ISSUES_TOOL: ToolDecl = {
name: 'propose_issues',
description: 'Return the decomposed issue set for a braindump. Call this exactly once.',
parameters: {
type: 'object',
properties: {
issues: {
type: 'array',
items: {
type: 'object',
properties: {
title: { type: 'string', description: 'a clear imperative title' },
body: { type: 'string', description: 'one or two lines of detail' },
estimate: { type: 'string', enum: ['est/1d', 'est/2d', 'est/3d', 'est/5d', 'est/8d'] },
priority: { type: 'string', enum: ['p/1', 'p/2', 'p/3', 'p/4'] },
},
required: ['title'],
},
},
consequence: { type: 'string', description: 'one-line note on the schedule impact' },
},
required: ['issues'],
},
}
export const CAPTURE_SYSTEM = [
'You are Reginald, decomposing a rough braindump into a small set of concrete Gitea issues.',
'Call propose_issues exactly once. Split genuinely separate work; merge trivially-coupled work; invent no scope.',
'Each issue gets an imperative title, a one-line body, an estimate (est/1d…8d) and a priority (p/1…4).',
'Estimate honestly — a "quick" task is rarely one day. Keep the set tight; three good issues beat eight vague ones.',
].join(' ')
function isEstimate(v: unknown): v is EstimateLabel {
return typeof v === 'string' && (ESTIMATE_LABELS as readonly string[]).includes(v)
}
function isPriority(v: unknown): v is PriorityLabel {
return typeof v === 'string' && (PRIORITY_LABELS as readonly string[]).includes(v)
}
/** Coerce the model's raw propose_issues args into a validated proposal. */
export function parseCaptureArgs(args: unknown): CaptureProposal {
const a = (args ?? {}) as { issues?: unknown[]; consequence?: unknown }
const issues: ProposedIssue[] = []
for (const raw of Array.isArray(a.issues) ? a.issues : []) {
const r = (raw ?? {}) as Record<string, unknown>
const title = typeof r.title === 'string' ? r.title.trim() : ''
if (!title) continue
issues.push({
title,
body: typeof r.body === 'string' ? r.body : '',
estimate: isEstimate(r.estimate) ? r.estimate : undefined,
priority: isPriority(r.priority) ? r.priority : undefined,
})
}
return { issues, consequence: typeof a.consequence === 'string' ? a.consequence : undefined }
}
/**
* Run one decomposition turn. Forces the model to answer via propose_issues and
* returns the validated set. An empty set means the model declined to structure it.
*/
export async function captureWork(
complete: (messages: ChatMessage[], tools?: ToolDecl[]) => Promise<CompletionResult>,
braindump: string,
): Promise<CaptureProposal> {
const res = await complete(
[
{ role: 'system', content: CAPTURE_SYSTEM },
{ role: 'user', content: braindump },
],
[PROPOSE_ISSUES_TOOL],
)
const call = res.toolCalls.find((t) => t.name === 'propose_issues')
if (!call) return { issues: [] }
try {
return parseCaptureArgs(JSON.parse(call.arguments || '{}'))
} catch {
return { issues: [] }
}
}

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/**
* Reginald's model client — a thin OpenAI-wire chat-completions client over an
* injected fetch (the same seam the gitea client uses). `@commitea/core` stays
* pure: no network, no globals. The desktop main process passes the real
* `fetch`; tests pass a stub. Points at any OpenAI-compatible endpoint (LM
* Studio, Ollama, the OpenAI API) — the model router picks which.
*/
import type { FetchLike } from '../gitea/types.js'
/** Where a model lives + which model to ask for. */
export interface ModelConfig {
/** OpenAI-compatible base, including the version segment, e.g. `http://localhost:1234/v1`. */
baseUrl: string
model: string
/** Bearer key; omitted for local servers that don't check it. */
apiKey?: string
}
/** A model's request to run a tool. `arguments` is a raw JSON string (OpenAI shape). */
export interface ToolCall {
id: string
name: string
arguments: string
}
/** One turn in the conversation, in our normalized shape. */
export interface ChatMessage {
role: 'system' | 'user' | 'assistant' | 'tool'
content: string
/** assistant turns that requested tools. */
toolCalls?: ToolCall[]
/** tool turns: which call they answer. */
toolCallId?: string
/** tool turns: the function name. */
name?: string
}
/** A tool the model may call — name, description, and a JSON-Schema parameter spec. */
export interface ToolDecl {
name: string
description: string
parameters: object
}
export interface CompletionResult {
content: string
toolCalls: ToolCall[]
}
/** Called with each streamed content delta (final-prose streaming). */
export type OnToken = (delta: string) => void
export interface ChatClient {
/** When `onToken` is given, the response streams (SSE) and each content delta is emitted. */
complete(messages: ChatMessage[], tools?: ToolDecl[], onToken?: OnToken): Promise<CompletionResult>
}
/** Map our message shape to the OpenAI wire shape. */
function toWireMessage(m: ChatMessage): Record<string, unknown> {
if (m.role === 'assistant' && m.toolCalls?.length) {
return {
role: 'assistant',
content: m.content || null,
tool_calls: m.toolCalls.map((tc) => ({
id: tc.id,
type: 'function',
function: { name: tc.name, arguments: tc.arguments },
})),
}
}
if (m.role === 'tool') {
return { role: 'tool', tool_call_id: m.toolCallId, content: m.content }
}
return { role: m.role, content: m.content }
}
function toWireTool(t: ToolDecl): Record<string, unknown> {
return { type: 'function', function: { name: t.name, description: t.description, parameters: t.parameters } }
}
/** Shape of the one choice we read back. */
interface RawChoiceMessage {
content: string | null
tool_calls?: { id: string; function: { name: string; arguments: string } }[]
}
export function createChatClient(config: ModelConfig, fetchImpl: FetchLike): ChatClient {
const url = `${config.baseUrl.replace(/\/+$/, '')}/chat/completions`
return {
async complete(messages, tools, onToken) {
const body: Record<string, unknown> = {
model: config.model,
messages: messages.map(toWireMessage),
temperature: 0,
}
if (tools?.length) {
body.tools = tools.map(toWireTool)
body.tool_choice = 'auto'
}
const stream = !!onToken
if (stream) body.stream = true
const res = await fetchImpl(url, {
method: 'POST',
headers: {
'Content-Type': 'application/json',
Accept: stream ? 'text/event-stream' : 'application/json',
...(config.apiKey ? { Authorization: `Bearer ${config.apiKey}` } : {}),
},
body: JSON.stringify(body),
})
if (!res.ok) {
const text = await res.text().catch(() => '')
throw new Error(`model completion failed (${res.status}): ${text.slice(0, 200)}`)
}
if (stream && res.body) return readStream(res.body, onToken!)
const json = (await res.json()) as { choices?: { message: RawChoiceMessage }[] }
const msg = json.choices?.[0]?.message
return {
content: msg?.content ?? '',
toolCalls: (msg?.tool_calls ?? []).map((tc) => ({
id: tc.id,
name: tc.function.name,
arguments: tc.function.arguments,
})),
}
},
}
}
/** Streamed tool-call delta: name arrives first, arguments accumulate across chunks. */
interface RawToolDelta {
index: number
id?: string
function?: { name?: string; arguments?: string }
}
/** Parse an OpenAI SSE stream: emit content deltas via onToken, accumulate the final result. */
async function readStream(body: ReadableStream<Uint8Array>, onToken: OnToken): Promise<CompletionResult> {
const reader = body.getReader()
const decoder = new TextDecoder()
let buffer = ''
let content = ''
const toolAcc: { id: string; name: string; arguments: string }[] = []
const handle = (data: string) => {
if (data === '[DONE]') return
let chunk: { choices?: { delta?: { content?: string; tool_calls?: RawToolDelta[] } }[] }
try {
chunk = JSON.parse(data)
} catch {
return
}
const delta = chunk.choices?.[0]?.delta
if (!delta) return
if (delta.content) {
content += delta.content
onToken(delta.content)
}
for (const tc of delta.tool_calls ?? []) {
const slot = (toolAcc[tc.index] ??= { id: '', name: '', arguments: '' })
if (tc.id) slot.id = tc.id
if (tc.function?.name) slot.name = tc.function.name
if (tc.function?.arguments) slot.arguments += tc.function.arguments
}
}
for (;;) {
const { done, value } = await reader.read()
if (done) break
buffer += decoder.decode(value, { stream: true })
const lines = buffer.split('\n')
buffer = lines.pop() ?? ''
for (const line of lines) {
const t = line.trim()
if (t.startsWith('data:')) handle(t.slice(5).trim())
}
}
if (buffer.trim().startsWith('data:')) handle(buffer.trim().slice(5).trim())
return { content, toolCalls: toolAcc.filter((t) => t.name).map((t) => ({ id: t.id, name: t.name, arguments: t.arguments })) }
}

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/**
* Model router (per PLAN.md / decisions.md): prose + the read tool run on a
* small local model; decomposition/negotiation earns the big one. Reginald v0
* only exercises the small model (read + prose); the `big` slot is declared so
* `capture_work` / `record_directive` can route to it without a rewrite.
*/
import type { ModelConfig } from './chat-client.js'
export type TaskKind = 'ritual' | 'plan'
export interface ModelRouter {
/** Small local model — standups, focus prose, the read tool. */
small: ModelConfig
/** Big model — capture decomposition, directive negotiation. */
big: ModelConfig
}
/** `plan` → the big model; everything else → the small one. */
export function pickModel(router: ModelRouter, kind: TaskKind): ModelConfig {
return kind === 'plan' ? router.big : router.small
}

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/**
* `query_project` — Reginald's single read tool. It selects a compact,
* model-friendly view over the reconciled backlog. Every number comes from
* deterministic code (scheduler, lifecycle inference, calibration); the model
* only requests a shape and narrates it — it never computes (decisions.md).
*
* v0 serves focus / board / calibration / issue. The remaining views
* (milestone / runway / standup / search) return a `notImplemented` marker so
* the model degrades honestly instead of inventing data.
*/
import { fitCalibration, calibrationSamples } from '../calibration/calibration-v0.js'
import type { GiteaIssue } from '../gitea/types.js'
import { inferLifecycle, type LifecycleColumn, type LifecycleEvent } from '../lifecycle/lifecycle-v0.js'
import { type DependencyEdge, schedule, selectFocus } from '../scheduler/scheduler-v0.js'
export type ProjectView =
| 'focus'
| 'board'
| 'calibration'
| 'issue'
| 'milestone'
| 'runway'
| 'standup'
| 'search'
export interface QueryFilters {
issueId?: number
query?: string
limit?: number
}
/** The reconciled inputs a view is built from. */
export interface ProjectSnapshot {
issues: GiteaIssue[]
timelines: Record<number, LifecycleEvent[]>
deps: DependencyEdge[]
}
const COLUMN_ORDER: LifecycleColumn[] = ['diagnosis', 'triage', 'steeping', 'review', 'done']
function toSchedulable(issues: GiteaIssue[]) {
return issues
.filter((i) => i.state === 'open')
.map((i) => ({
number: i.number,
title: i.title,
labels: i.labels,
estimateDays: i.facts.estimateDays,
priority: i.facts.priority,
}))
}
function focusView(snap: ProjectSnapshot) {
const plan = schedule(toSchedulable(snap.issues), snap.deps)
const f = selectFocus(plan)
const slot = (item: (typeof plan.items)[number] | null) =>
item ? { issue: item.number, title: item.title, rationale: item.rationale } : null
return { now: slot(f.now), next: slot(f.next), later: slot(f.later), openCount: plan.items.length }
}
function boardView(snap: ProjectSnapshot, asOf: Date) {
const columns: Record<string, { issue: number; title: string; labels: string[] }[]> = {}
for (const key of COLUMN_ORDER) columns[key] = []
for (const issue of snap.issues) {
const inf = inferLifecycle(issue, snap.timelines[issue.number] ?? [], asOf)
columns[inf.column].push({ issue: issue.number, title: issue.title, labels: issue.labels })
}
return {
columns: COLUMN_ORDER.map((key) => ({ column: key, count: columns[key].length, issues: columns[key] })),
}
}
function calibrationView(snap: ProjectSnapshot, asOf: Date) {
const model = fitCalibration(calibrationSamples(snap.issues, snap.timelines, asOf))
return {
n: model.n,
coldStart: model.coldStart,
globalMultiplier: Number(Math.exp(model.global.mu).toFixed(2)),
byBucket: Object.entries(model.byBucket).map(([bucket, fit]) => ({
estimate: `est/${bucket}d`,
n: fit.n,
multiplier: Number(Math.exp(fit.mu).toFixed(2)),
})),
}
}
function issueView(snap: ProjectSnapshot, filters: QueryFilters, asOf: Date) {
const issue = snap.issues.find((i) => i.number === filters.issueId)
if (!issue) return { notFound: filters.issueId ?? null }
const inf = inferLifecycle(issue, snap.timelines[issue.number] ?? [], asOf)
const blockedBy = snap.deps.filter((d) => d.issue === issue.number).map((d) => d.dependsOn)
const blocks = snap.deps.filter((d) => d.dependsOn === issue.number).map((d) => d.issue)
return {
issue: issue.number,
title: issue.title,
state: issue.state,
column: inf.column,
labels: issue.labels,
assignee: issue.assignee,
milestone: issue.milestone?.title ?? null,
estimateDays: issue.facts.estimateDays,
priority: issue.facts.priority,
steepingDays: inf.steepingDays,
blockedBy,
blocks,
}
}
function searchView(snap: ProjectSnapshot, filters: QueryFilters) {
const q = (filters.query ?? '').toLowerCase().trim()
const limit = Math.min(filters.limit ?? 20, 100)
const hits = q
? snap.issues.filter(
(i) => i.title.toLowerCase().includes(q) || i.labels.some((l) => l.toLowerCase().includes(q)),
)
: []
return {
query: filters.query ?? '',
results: hits.slice(0, limit).map((i) => ({ issue: i.number, title: i.title, state: i.state, labels: i.labels })),
}
}
/** Build the compact payload for one view. Unknown/unbuilt views return a marker. */
export function buildProjectView(
view: ProjectView,
filters: QueryFilters | undefined,
snap: ProjectSnapshot,
asOf: Date,
): unknown {
const f = filters ?? {}
switch (view) {
case 'focus':
return focusView(snap)
case 'board':
return boardView(snap, asOf)
case 'calibration':
return calibrationView(snap, asOf)
case 'issue':
return issueView(snap, f, asOf)
case 'search':
return searchView(snap, f)
default:
return { notImplemented: view }
}
}

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import { describe, expect, it } from 'vitest'
import { extractLabelFacts } from '../labels/label-schema.js'
import type { LifecycleEvent } from '../lifecycle/lifecycle-v0.js'
import type { GiteaIssue } from '../gitea/types.js'
import {
CALIBRATION_BUCKET_FLOOR,
calibrationSamples,
type CalibrationSample,
COLD_START_THRESHOLD,
fitCalibration,
toDurationModel,
} from './calibration-v0.js'
function sample(over: Partial<CalibrationSample> = {}): CalibrationSample {
return { issue: 1, estimateDays: 2, actualWorkingDays: 2, bucket: 2, person: null, ...over }
}
describe('fitCalibration', () => {
it('is cold-start below the threshold and reports the honest n', () => {
const m = fitCalibration([sample(), sample({ actualWorkingDays: 4 })])
expect(m.n).toBe(2)
expect(m.coldStart).toBe(true)
})
it('flips off cold-start at the threshold', () => {
const many = Array.from({ length: COLD_START_THRESHOLD }, (_, i) =>
sample({ issue: i, estimateDays: 2, actualWorkingDays: 3, bucket: 2 }),
)
const m = fitCalibration(many)
expect(m.n).toBe(COLD_START_THRESHOLD)
expect(m.coldStart).toBe(false)
})
it('recovers the global median ratio (mu = mean log-ratio)', () => {
// every actual is exactly 2x its estimate → mu = ln 2
const m = fitCalibration(Array.from({ length: 25 }, (_, i) => sample({ issue: i, estimateDays: 2, actualWorkingDays: 4 })))
expect(m.global.mu).toBeCloseTo(Math.log(2), 6)
})
it('fits a bucket only once it clears the floor', () => {
const twos = Array.from({ length: CALIBRATION_BUCKET_FLOOR }, (_, i) =>
sample({ issue: i, estimateDays: 2, actualWorkingDays: 3, bucket: 2 }),
)
const oneThin = [sample({ issue: 99, estimateDays: 5, actualWorkingDays: 9, bucket: 5 })]
const m = fitCalibration([...twos, ...oneThin])
expect(m.byBucket[2]?.n).toBe(CALIBRATION_BUCKET_FLOOR)
expect(m.byBucket[5]).toBeUndefined() // only 1 sample, below floor
})
it('drops non-positive estimates/actuals', () => {
const m = fitCalibration([sample({ actualWorkingDays: 0 }), sample({ estimateDays: 0 }), sample()])
expect(m.n).toBe(1)
})
it('derives a per-person bias relative to global', () => {
// one person consistently runs longer than the mean
const base = Array.from({ length: 20 }, (_, i) => sample({ issue: i, actualWorkingDays: 2, person: 'ak' }))
const slow = Array.from({ length: 3 }, (_, i) => sample({ issue: 100 + i, actualWorkingDays: 6, person: 'sm' }))
const m = fitCalibration([...base, ...slow])
expect(m.byPerson['sm'].biasMu).toBeGreaterThan(0)
expect(m.byPerson['ak'].biasMu).toBeLessThan(0)
})
})
describe('toDurationModel', () => {
it('projects the fit down to the params forecast needs', () => {
const m = fitCalibration(
Array.from({ length: 25 }, (_, i) => sample({ issue: i, estimateDays: 2, actualWorkingDays: 3, bucket: 2 })),
)
const dm = toDurationModel(m)
expect(dm.coldStart).toBe(false)
expect(dm.byBucket[2].mu).toBeCloseTo(m.byBucket[2].mu, 6)
expect(dm.global.mu).toBeCloseTo(m.global.mu, 6)
})
})
describe('calibrationSamples', () => {
const asOf = new Date('2026-02-01T00:00:00Z')
function issue(over: Partial<GiteaIssue>): GiteaIssue {
const labels = over.labels ?? []
return {
number: 1,
title: '#1',
body: '',
state: 'closed',
labels,
facts: extractLabelFacts(labels),
milestone: null,
assignee: null,
assignees: [],
createdAt: '2026-01-05T09:00:00Z',
updatedAt: '2026-01-12T09:00:00Z',
closedAt: '2026-01-12T09:00:00Z',
url: '',
...over,
}
}
const events = (i: number): Record<number, LifecycleEvent[]> => ({
[i]: [{ type: 'commit', at: '2026-01-07T09:00:00Z' }, { type: 'close', at: '2026-01-12T09:00:00Z' }],
})
it('samples closed, estimated issues with a resolvable actual', () => {
const i = issue({ number: 7, labels: ['est/2d'], assignee: 'sm', closedAt: '2026-01-12T09:00:00Z' })
const [s] = calibrationSamples([i], events(7), asOf)
expect(s.issue).toBe(7)
expect(s.estimateDays).toBe(2)
expect(s.bucket).toBe(2)
expect(s.person).toBe('sm')
// Wed 2026-01-07 → Mon 2026-01-12 = Wed,Thu,Fri = 3 working days
expect(s.actualWorkingDays).toBe(3)
})
it('skips open issues and closed ones without an estimate', () => {
const open = issue({ number: 8, state: 'open', labels: ['est/2d'], closedAt: null })
const noEst = issue({ number: 9, labels: [] })
expect(calibrationSamples([open, noEst], { ...events(8), ...events(9) }, asOf)).toEqual([])
})
})

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/**
* Calibration, v0 — fit the team's own estimate-vs-actual history so the
* forecast stops guessing (D3). The "actual" is the working time lifecycle
* inference derives from git events (#5), never manual tracking. Fit a
* lognormal on log(actual / estimate) globally and per estimate bucket; until
* the sample clears the cold-start threshold, the forecast keeps using the
* code-resident priors and this model just reports progress toward it.
*/
import { type DurationModel, type LognormalPrior, nearestBucket } from '../forecast/forecast-v0.js'
import { inferLifecycle, type LifecycleEvent } from '../lifecycle/lifecycle-v0.js'
import type { GiteaIssue } from '../gitea/types.js'
/** Global sample size at which the fit takes over from the cold-start priors. */
export const COLD_START_THRESHOLD = 20
/** Minimum per-bucket sample before that bucket earns its own fit. */
export const CALIBRATION_BUCKET_FLOOR = 3
/** Fallback spread when a group is too small to estimate one. */
const DEFAULT_SIGMA = 0.4
/** One closed issue's estimate vs its inferred actual. */
export interface CalibrationSample {
issue: number
estimateDays: number
actualWorkingDays: number
bucket: number
person: string | null
}
export interface BucketFit extends LognormalPrior {
n: number
}
export interface PersonBias {
/** Additive to global mu (log space). */
biasMu: number
n: number
}
export interface CalibrationModel {
/** Closed issues with an estimate + a resolvable actual. */
n: number
/** true while n < COLD_START_THRESHOLD — forecast keeps the code priors. */
coldStart: boolean
global: LognormalPrior
byBucket: Record<number, BucketFit>
byPerson: Record<string, PersonBias>
}
function mean(xs: number[]): number {
return xs.reduce((a, b) => a + b, 0) / xs.length
}
/** Sample standard deviation; falls back to DEFAULT_SIGMA below 2 points. */
function stddev(xs: number[], mu: number): number {
if (xs.length < 2) return DEFAULT_SIGMA
const variance = xs.reduce((a, x) => a + (x - mu) ** 2, 0) / (xs.length - 1)
return Math.sqrt(variance) || DEFAULT_SIGMA
}
/** Fit a calibration model from estimate-vs-actual samples. Pure. */
export function fitCalibration(samples: CalibrationSample[]): CalibrationModel {
const usable = samples.filter((s) => s.estimateDays > 0 && s.actualWorkingDays > 0)
const n = usable.length
const coldStart = n < COLD_START_THRESHOLD
const logRatios = usable.map((s) => Math.log(s.actualWorkingDays / s.estimateDays))
const globalMu = n ? mean(logRatios) : 0
const global: LognormalPrior = { mu: globalMu, sigma: n ? stddev(logRatios, globalMu) : DEFAULT_SIGMA }
const byBucket: Record<number, BucketFit> = {}
const byPerson: Record<string, PersonBias> = {}
const groups = new Map<number, number[]>()
const people = new Map<string, number[]>()
for (const s of usable) {
const lr = Math.log(s.actualWorkingDays / s.estimateDays)
;(groups.get(s.bucket) ?? groups.set(s.bucket, []).get(s.bucket)!).push(lr)
if (s.person) (people.get(s.person) ?? people.set(s.person, []).get(s.person)!).push(lr)
}
for (const [bucket, lrs] of groups) {
if (lrs.length < CALIBRATION_BUCKET_FLOOR) continue
const mu = mean(lrs)
byBucket[bucket] = { mu, sigma: stddev(lrs, mu), n: lrs.length }
}
for (const [person, lrs] of people) {
if (lrs.length < CALIBRATION_BUCKET_FLOOR) continue
byPerson[person] = { biasMu: mean(lrs) - globalMu, n: lrs.length }
}
return { n, coldStart, global, byBucket, byPerson }
}
/** The subset of a model `forecast` consumes. */
export function toDurationModel(model: CalibrationModel): DurationModel {
const byBucket: Record<number, LognormalPrior> = {}
for (const [bucket, fit] of Object.entries(model.byBucket)) {
byBucket[Number(bucket)] = { mu: fit.mu, sigma: fit.sigma }
}
return { coldStart: model.coldStart, global: model.global, byBucket }
}
/**
* Extract calibration samples from the closed backlog: each closed issue that
* carries an estimate and yields an inferred actual working duration.
*/
export function calibrationSamples(
issues: GiteaIssue[],
timelines: Record<number, LifecycleEvent[]>,
asOf: Date,
): CalibrationSample[] {
const out: CalibrationSample[] = []
for (const issue of issues) {
if (issue.state !== 'closed') continue
const estimateDays = issue.facts.estimateDays
if (estimateDays == null) continue
const inf = inferLifecycle(issue, timelines[issue.number] ?? [], asOf)
if (inf.actualWorkingDays == null || inf.actualWorkingDays <= 0) continue
out.push({
issue: issue.number,
estimateDays,
actualWorkingDays: inf.actualWorkingDays,
bucket: nearestBucket(estimateDays),
person: issue.assignee,
})
}
return out
}

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import { describe, expect, it } from 'vitest'
import { type DependencyEdge, type SchedulableIssue } from '../scheduler/scheduler-v0.js'
import { makespan, scheduleWithCapacity, type Worker } from '../scheduler/scheduler-capacity-v0.js'
import { capacityPerWorkday, parseCapacityConfig } from './capacity-v0.js'
describe('capacity model', () => {
it('capacityPerWorkday = focusFactor × allocation', () => {
expect(capacityPerWorkday({ person: 'a', focusFactor: 0.8, allocation: 0.5 })).toBeCloseTo(0.4)
})
it('parses + clamps config, drops invalid members', () => {
const members = parseCapacityConfig({
members: [
{ person: 'christian', focusFactor: 0.8, allocation: 1 },
{ person: 'ak', focusFactor: 1.5, allocation: -1 }, // clamps to 1 / 0 → zero capacity → dropped
{ focusFactor: 0.8 }, // no person → dropped
],
})
expect(members).toEqual([{ person: 'christian', focusFactor: 0.8, allocation: 1 }])
})
it('returns [] for a non-array/absent members field', () => {
expect(parseCapacityConfig({})).toEqual([])
expect(parseCapacityConfig({ members: 'nope' })).toEqual([])
})
})
function issue(number: number, over: Partial<SchedulableIssue> = {}): SchedulableIssue {
return { number, title: `#${number}`, labels: [], estimateDays: 4, priority: 2, ...over }
}
describe('scheduleWithCapacity', () => {
it('with no workers, falls back to the single serial plan', () => {
const issues = [issue(1), issue(2)]
const plan = scheduleWithCapacity(issues, [], [])
expect(makespan(plan)).toBe(8) // 4 + 4 serial
})
it('parallelizes independent work across lanes (makespan shrinks)', () => {
const issues = [issue(1), issue(2), issue(3), issue(4)] // 4×4d = 16d serial
const one: Worker[] = [{ person: 'a', speed: 1 }]
const two: Worker[] = [
{ person: 'a', speed: 1 },
{ person: 'b', speed: 1 },
]
expect(makespan(scheduleWithCapacity(issues, [], one))).toBe(16)
expect(makespan(scheduleWithCapacity(issues, [], two))).toBe(8) // two lanes → half
})
it('scales duration by a lane speed (slower lane takes longer)', () => {
const plan = scheduleWithCapacity([issue(1, { estimateDays: 4 })], [], [{ person: 'a', speed: 0.5 }])
expect(plan.items[0].durationDays).toBe(8) // 4 / 0.5
expect(plan.items[0].worker).toBe('a')
})
it('routes an issue to its assignee lane', () => {
const issues = [issue(1, { assignee: 'ak' }), issue(2, { assignee: 'sm' })]
const workers: Worker[] = [
{ person: 'ak', speed: 1 },
{ person: 'sm', speed: 1 },
]
const plan = scheduleWithCapacity(issues, [], workers)
const byN = Object.fromEntries(plan.items.map((i) => [i.number, i]))
expect(byN[1].worker).toBe('ak')
expect(byN[2].worker).toBe('sm')
// both start at 0 (different lanes) → parallel
expect(byN[1].startDay).toBe(0)
expect(byN[2].startDay).toBe(0)
})
it('adds a lane for an assignee not in the config (mean speed)', () => {
const plan = scheduleWithCapacity([issue(1, { assignee: 'newbie' })], [], [{ person: 'a', speed: 0.5 }])
expect(plan.items[0].worker).toBe('newbie')
expect(plan.items[0].durationDays).toBe(8) // mean speed 0.5 → 4/0.5
})
it('respects dependencies across lanes (a blocker finishes before its dependent starts)', () => {
const edges: DependencyEdge[] = [{ issue: 2, dependsOn: 1 }]
const workers: Worker[] = [
{ person: 'a', speed: 1 },
{ person: 'b', speed: 1 },
]
const plan = scheduleWithCapacity([issue(1), issue(2)], edges, workers)
const byN = Object.fromEntries(plan.items.map((i) => [i.number, i]))
expect(byN[2].startDay).toBeGreaterThanOrEqual(byN[1].endDay) // #2 waits for #1 even on another lane
})
})

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/**
* Capacity model (#8). A member's throughput is `focusFactor × allocation` =
* ideal person-days of project work delivered per calendar working day. The
* scheduler treats each member as a lane whose task durations are scaled by that
* rate (a 0.5-capacity person takes twice as long on an est/2d task). Config
* lives in the pm-state repo (`capacity/members.yaml/json`, D4); estimates are
* in ideal person-days (pm-state.md).
*/
export interface CapacityMember {
/** gitea login. */
person: string
/** Productive fraction of a working day (0..1). */
focusFactor: number
/** Fraction of that allocated to this project (0..1). */
allocation: number
}
/** Ideal person-days delivered per calendar working day. */
export function capacityPerWorkday(m: CapacityMember): number {
return m.focusFactor * m.allocation
}
function clamp01(n: unknown, fallback: number): number {
return typeof n === 'number' && Number.isFinite(n) ? Math.min(1, Math.max(0, n)) : fallback
}
/**
* Validate a raw capacity config (`{ members: [...] }`) into members. Unknown
* shapes degrade to `[]` (→ the scheduler falls back to a single worker), never
* throw. focusFactor/allocation clamp to [0,1]; a member without a person is dropped.
*/
export function parseCapacityConfig(raw: unknown): CapacityMember[] {
const list = (raw as { members?: unknown })?.members
if (!Array.isArray(list)) return []
const out: CapacityMember[] = []
for (const m of list) {
const r = (m ?? {}) as Record<string, unknown>
const person = typeof r.person === 'string' ? r.person.trim() : ''
if (!person) continue
const member: CapacityMember = {
person,
focusFactor: clamp01(r.focusFactor, 0.8),
allocation: clamp01(r.allocation, 1),
}
if (capacityPerWorkday(member) > 0) out.push(member)
}
return out
}

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import { describe, expect, it } from 'vitest'
import { describeChange, type IssueChange, planIssueChange, proposalsFor } from './apply-changes-v0.js'
describe('planIssueChange', () => {
it('swaps the estimate label, keeping non-axis labels', () => {
const plan = planIssueChange(['est/2d', 'p/1', 'backend'], { kind: 'reestimate', issue: 1, estimate: 'est/5d' })
expect(plan.removed).toEqual(['est/2d'])
expect(plan.added).toEqual(['est/5d'])
expect(plan.labels).toEqual(['p/1', 'backend', 'est/5d'])
expect(plan.noop).toBe(false)
})
it('adds an estimate when none was set', () => {
const plan = planIssueChange(['p/2'], { kind: 'reestimate', issue: 1, estimate: 'est/1d' })
expect(plan.removed).toEqual([])
expect(plan.added).toEqual(['est/1d'])
expect(plan.labels).toEqual(['p/2', 'est/1d'])
})
it('clears the axis when the target is null', () => {
const plan = planIssueChange(['est/3d', 'p/1'], { kind: 'reprioritize', issue: 1, priority: null })
expect(plan.removed).toEqual(['p/1'])
expect(plan.added).toEqual([])
expect(plan.labels).toEqual(['est/3d'])
})
it('is a noop when the target already holds the axis alone', () => {
const plan = planIssueChange(['est/2d', 'p/1'], { kind: 'reestimate', issue: 1, estimate: 'est/2d' })
expect(plan.noop).toBe(true)
expect(plan.labels).toEqual(['p/1', 'est/2d'])
})
it('cleans up a duplicated axis down to the target', () => {
// two est/* labels — the change collapses to one
const plan = planIssueChange(['est/2d', 'est/5d', 'p/1'], { kind: 'reestimate', issue: 1, estimate: 'est/5d' })
expect(plan.removed).toEqual(['est/2d'])
expect(plan.added).toEqual([]) // est/5d already present
expect(plan.labels).toEqual(['p/1', 'est/5d'])
expect(plan.noop).toBe(false)
})
it('reprioritize only touches the priority axis', () => {
const plan = planIssueChange(['est/2d', 'p/3'], { kind: 'reprioritize', issue: 1, priority: 'p/1' })
expect(plan.labels).toEqual(['est/2d', 'p/1'])
})
it('describeChange renders the diff', () => {
const change: IssueChange = { kind: 'reestimate', issue: 1, estimate: 'est/5d' }
expect(describeChange(planIssueChange(['est/2d'], change))).toBe('est/2d → est/5d')
expect(describeChange(planIssueChange(['p/1'], { kind: 'reprioritize', issue: 1, priority: null }))).toBe('p/1 → ∅')
expect(describeChange(planIssueChange(['est/5d'], change))).toBe('no change')
})
})
describe('proposalsFor', () => {
it('builds one proposal per changed axis, carrying the concrete change + diff', () => {
const props = proposalsFor({ issue: 2, estimate: 'est/5d', priority: 'p/1' }, ['est/2d', 'p/3'], 'ChangeSource')
expect(props).toHaveLength(2)
expect(props[0].change).toEqual({ kind: 'reestimate', issue: 2, estimate: 'est/5d' })
expect(describeChange(props[0].plan)).toBe('est/2d → est/5d')
expect(props[1].change).toEqual({ kind: 'reprioritize', issue: 2, priority: 'p/1' })
expect(props[0].issueTitle).toBe('ChangeSource')
})
it('drops a noop axis (already at the requested value)', () => {
const props = proposalsFor({ issue: 2, estimate: 'est/2d', priority: 'p/1' }, ['est/2d', 'p/3'])
expect(props.map((p) => p.change.kind)).toEqual(['reprioritize']) // estimate unchanged
})
it('ignores invalid label values from the model', () => {
const props = proposalsFor({ issue: 2, estimate: 'est/4d' as never, priority: 'high' as never }, [])
expect(props).toEqual([])
})
it('returns nothing when no axis is provided', () => {
expect(proposalsFor({ issue: 2 }, ['est/2d'])).toEqual([])
})
})

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/**
* Apply-changes, v0 — the write path's planning half. Estimates and priority
* live as exclusive label axes (`est/*`, `p/*`); a change swaps the axis label.
* This computes the resulting label set + a human-readable diff *purely*, so the
* UI can show a propose-approve consequence before the write and tests can pin
* the semantics. The actual PUT (name→id resolution + network) is the bridge's
* job — additive here, never assumed.
*/
import {
type EstimateLabel,
ESTIMATE_LABELS,
type PriorityLabel,
PRIORITY_LABELS,
} from '../labels/label-schema.js'
export type IssueChange =
| { kind: 'reestimate'; issue: number; estimate: EstimateLabel | null }
| { kind: 'reprioritize'; issue: number; priority: PriorityLabel | null }
export interface LabelPlan {
/** The full resulting label-name set (order: kept labels, then the new axis label). */
labels: string[]
/** Axis labels being added (0 or 1). */
added: string[]
/** Axis labels being removed (includes clearing a duplicated axis). */
removed: string[]
/** true when the change would leave the labels unchanged. */
noop: boolean
}
function axisFor(change: IssueChange): { labels: readonly string[]; target: string | null } {
return change.kind === 'reestimate'
? { labels: ESTIMATE_LABELS, target: change.estimate }
: { labels: PRIORITY_LABELS, target: change.priority }
}
/**
* Plan the label mutation for a single change. Removes every label on the
* change's axis except the target, adds the target if absent. Setting the axis
* to null clears it. Cleans up a duplicated axis (two `est/*`) as a side effect.
*/
export function planIssueChange(current: string[], change: IssueChange): LabelPlan {
const { labels: axis, target } = axisFor(change)
const onAxis = current.filter((l) => axis.includes(l))
const removed = onAxis.filter((l) => l !== target)
const added = target && !current.includes(target) ? [target] : []
const kept = current.filter((l) => !axis.includes(l))
const labels = target ? [...kept, target] : kept
return { labels, added, removed, noop: added.length === 0 && removed.length === 0 }
}
/** A short "est/2d → est/3d" (or "+p/1" / "est/5d") summary for the confirm UI. */
export function describeChange(plan: LabelPlan): string {
if (plan.noop) return 'no change'
const from = plan.removed.length ? plan.removed.join(', ') : '∅'
const to = plan.added.length ? plan.added.join(', ') : '∅'
return `${from}${to}`
}
/** A change the agent proposes: the concrete op + its diff, ready for approve-then-apply. */
export interface ChangeProposal {
change: IssueChange
plan: LabelPlan
issueTitle?: string
}
/** What the `propose_change` tool accepts — a target issue and the axes to set. */
export interface ProposeChangeArgs {
issue: number
estimate?: EstimateLabel
priority?: PriorityLabel
}
function isEstimate(v: unknown): v is EstimateLabel {
return typeof v === 'string' && (ESTIMATE_LABELS as readonly string[]).includes(v)
}
function isPriority(v: unknown): v is PriorityLabel {
return typeof v === 'string' && (PRIORITY_LABELS as readonly string[]).includes(v)
}
/**
* Build the concrete, non-noop proposals for a `propose_change` request against
* an issue's current labels. Invalid or unchanged axes are dropped — the agent
* proposes only real changes, and never a label outside the est/* · p/* axes.
*/
export function proposalsFor(
args: ProposeChangeArgs,
currentLabels: string[],
issueTitle?: string,
): ChangeProposal[] {
const out: ChangeProposal[] = []
if (isEstimate(args.estimate)) {
const change: IssueChange = { kind: 'reestimate', issue: args.issue, estimate: args.estimate }
const plan = planIssueChange(currentLabels, change)
if (!plan.noop) out.push({ change, plan, issueTitle })
}
if (isPriority(args.priority)) {
const change: IssueChange = { kind: 'reprioritize', issue: args.issue, priority: args.priority }
const plan = planIssueChange(currentLabels, change)
if (!plan.noop) out.push({ change, plan, issueTitle })
}
return out
}

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import { describe, expect, it } from 'vitest'
import {
appendDirective,
makeDirectiveEntry,
parseDirectiveLog,
serializeDirective,
toDirectiveInput,
} from './record-directive-v0.js'
describe('toDirectiveInput', () => {
it('keeps a valid kind + target and drops an empty target', () => {
const input = toDirectiveInput({ kind: 'reprioritize', quote: 'pilots first', target: { issue: 87 }, rationale: 'blocked' })
expect(input).toEqual({ kind: 'reprioritize', quote: 'pilots first', target: { issue: 87 }, params: undefined, rationale: 'blocked' })
expect(toDirectiveInput({ kind: 'note', quote: 'x', target: {} }).target).toBeUndefined()
})
it('falls back to note for an unknown kind', () => {
expect(toDirectiveInput({ kind: 'nonsense', quote: 'hmm' }).kind).toBe('note')
})
})
describe('serialize + parse round-trip', () => {
const entry = makeDirectiveEntry(
{ kind: 'reprioritize', quote: 'pilots come first', target: { issue: 87 } },
'id-1',
'2026-02-01T09:00:00Z',
)
it('serializes to one JSON line', () => {
const line = serializeDirective(entry)
expect(line).not.toContain('\n')
expect(JSON.parse(line)).toMatchObject({ id: 'id-1', kind: 'reprioritize', status: 'accepted' })
})
it('parses a log, orders by ts, and assigns a 1-based seq', () => {
const a = serializeDirective(makeDirectiveEntry({ kind: 'note', quote: 'later' }, 'b', '2026-02-02T00:00:00Z'))
const b = serializeDirective(makeDirectiveEntry({ kind: 'note', quote: 'earlier' }, 'a', '2026-02-01T00:00:00Z'))
const records = parseDirectiveLog(`${a}\n${b}\n`)
expect(records.map((r) => r.quote)).toEqual(['earlier', 'later'])
expect(records.map((r) => r.seq)).toEqual([1, 2])
})
it('skips blank and corrupt lines without losing the rest', () => {
const good = serializeDirective(entry)
const records = parseDirectiveLog(`\n{not json\n${good}\n\n`)
expect(records).toHaveLength(1)
expect(records[0].id).toBe('id-1')
})
})
describe('appendDirective', () => {
it('concatenates a newline-terminated entry, normalizing a missing trailing newline', () => {
const e1 = makeDirectiveEntry({ kind: 'note', quote: 'one' }, 'i1', '2026-01-01T00:00:00Z')
const e2 = makeDirectiveEntry({ kind: 'note', quote: 'two' }, 'i2', '2026-01-02T00:00:00Z')
let log = appendDirective('', e1)
log = appendDirective(log, e2)
expect(parseDirectiveLog(log).map((r) => r.quote)).toEqual(['one', 'two'])
expect(log.endsWith('\n')).toBe(true)
})
it('handles existing text without a trailing newline', () => {
const e = makeDirectiveEntry({ kind: 'note', quote: 'x' }, 'i', '2026-01-01T00:00:00Z')
expect(appendDirective('{"id":"prev","ts":"2025-01-01T00:00:00Z"}', e).split('\n').filter(Boolean)).toHaveLength(2)
})
})

View File

@@ -0,0 +1,106 @@
/**
* record_directive — the PM's standing instructions ("pilots come first"),
* appended to an append-only JSONL ledger in the pm-state repo (decisions.md D4,
* pm-state.md). A directive is *intent*: it's logged verbatim; its effects land
* later through apply_changes. Merge is concatenation — order derives from `ts`
* at read time, so two writers never conflict. `seq` is a display ordinal
* computed on read, never stored. This module is pure serialize/parse; the
* append (read → concat → write) is the bridge's job.
*/
export type DirectiveKind = 'reprioritize' | 'reestimate' | 'set-deadline' | 'scope' | 'capacity' | 'note'
export type DirectiveStatus = 'proposed' | 'accepted' | 'amended' | 'withdrawn'
export interface DirectiveTarget {
issue?: number
milestone?: number
member?: string
}
/** What the record_directive tool captures. */
export interface DirectiveInput {
kind: DirectiveKind
/** Verbatim PM words, shown in the ledger. */
quote: string
target?: DirectiveTarget
/** Structured effect the scheduler applies, e.g. { priority: 1 }. */
params?: Record<string, unknown>
rationale?: string
}
/** A ledger entry — an input plus its durable id/ts/status. */
export interface DirectiveEntry extends DirectiveInput {
id: string
ts: string
status: DirectiveStatus
}
/** A ledger entry as read back, with a computed display ordinal. */
export interface DirectiveRecord extends DirectiveEntry {
seq: number
}
const DIRECTIVE_KINDS: readonly DirectiveKind[] = [
'reprioritize',
'reestimate',
'set-deadline',
'scope',
'capacity',
'note',
]
/** Normalize a raw tool payload into a DirectiveInput (unknown kind → note). */
export function toDirectiveInput(raw: unknown): DirectiveInput {
const r = (raw ?? {}) as Record<string, unknown>
const kind = DIRECTIVE_KINDS.includes(r.kind as DirectiveKind) ? (r.kind as DirectiveKind) : 'note'
const target = (r.target ?? undefined) as DirectiveTarget | undefined
return {
kind,
quote: typeof r.quote === 'string' ? r.quote : '',
target: target && (target.issue || target.milestone || target.member) ? target : undefined,
params: (r.params && typeof r.params === 'object' ? (r.params as Record<string, unknown>) : undefined),
rationale: typeof r.rationale === 'string' ? r.rationale : undefined,
}
}
/** Build a full entry from an input + externally-supplied id/ts (Date/uuid live in the caller). */
export function makeDirectiveEntry(
input: DirectiveInput,
id: string,
ts: string,
status: DirectiveStatus = 'accepted',
): DirectiveEntry {
return { ...input, id, ts, status }
}
/** One JSONL line (no trailing newline — the caller joins). */
export function serializeDirective(entry: DirectiveEntry): string {
return JSON.stringify(entry)
}
/**
* Parse a JSONL log into records ordered by `ts` (then id for stability), with a
* 1-based `seq` assigned on read. Blank/corrupt lines are skipped, not fatal.
*/
export function parseDirectiveLog(text: string): DirectiveRecord[] {
const entries: DirectiveEntry[] = []
for (const line of text.split('\n')) {
const trimmed = line.trim()
if (!trimmed) continue
try {
const e = JSON.parse(trimmed) as DirectiveEntry
if (e && typeof e.id === 'string' && typeof e.ts === 'string') entries.push(e)
} catch {
// skip a corrupt line rather than lose the whole ledger
}
}
entries.sort((a, b) => (a.ts === b.ts ? a.id.localeCompare(b.id) : a.ts.localeCompare(b.ts)))
return entries.map((e, i) => ({ ...e, seq: i + 1 }))
}
/** Append a serialized entry to existing log text (concatenation merge). */
export function appendDirective(existing: string, entry: DirectiveEntry): string {
const base = existing.endsWith('\n') || existing === '' ? existing : existing + '\n'
return `${base}${serializeDirective(entry)}\n`
}

View File

@@ -97,4 +97,43 @@ describe('forecast', () => {
expect(f.scope).toBe(2) expect(f.scope).toBe(2)
expect(f.p50Day).toBeGreaterThan(0) expect(f.p50Day).toBeGreaterThan(0)
}) })
it('a cold-start model changes nothing — the code priors still drive it', () => {
const priors = forecast(scope, [], { trials: 1000, seed: 7 })
const cold = forecast(scope, [], {
trials: 1000,
seed: 7,
model: { coldStart: true, global: { mu: 5, sigma: 0.1 }, byBucket: {} },
})
expect(cold.coldStart).toBe(true)
expect(cold.p50Day).toBeCloseTo(priors.p50Day, 6)
})
it('a fitted model drives the sim once past cold-start', () => {
// an optimistic fit (mu < 0, tight sigma) should land the scope sooner than the pessimistic priors
const priors = forecast(scope, [], { trials: 2000, seed: 7 })
const fitted = forecast(scope, [], {
trials: 2000,
seed: 7,
model: { coldStart: false, global: { mu: -0.2, sigma: 0.1 }, byBucket: {} },
})
expect(fitted.coldStart).toBe(false)
expect(fitted.p50Day).toBeLessThan(priors.p50Day)
})
it('capacity lanes parallelize the sim — the makespan shrinks with more workers', () => {
const independent = [issue(1), issue(2), issue(3), issue(4)] // no deps → fully parallelizable
const serial = forecast(independent, [], { trials: 2000, seed: 7 })
const twoLanes = forecast(independent, [], {
trials: 2000,
seed: 7,
workers: [
{ person: 'a', speed: 1 },
{ person: 'b', speed: 1 },
],
})
// two equal lanes ≈ half the serial landing (independent work)
expect(twoLanes.p80Day).toBeLessThan(serial.p80Day)
expect(twoLanes.p80Day).toBeLessThan(serial.p80Day * 0.7)
})
}) })

View File

@@ -18,6 +18,7 @@ import {
schedule, schedule,
type SchedulableIssue, type SchedulableIssue,
} from '../scheduler/scheduler-v0.js' } from '../scheduler/scheduler-v0.js'
import { type LaneInputs, layoutOnLanes, resolveLanes, type Worker } from '../scheduler/scheduler-capacity-v0.js'
export interface LognormalPrior { export interface LognormalPrior {
/** Median log-ratio: sampled median duration = estimate * e^mu. */ /** Median log-ratio: sampled median duration = estimate * e^mu. */
@@ -41,15 +42,29 @@ export const COLD_START_PRIORS: Record<number, LognormalPrior> = {
8: { mu: 0.16, sigma: 0.36 }, 8: { mu: 0.16, sigma: 0.36 },
} }
const PRIOR_BUCKETS = [1, 2, 3, 5, 8] export const PRIOR_BUCKETS = [1, 2, 3, 5, 8]
/** Nearest estimate bucket (ties resolve to the smaller bucket). */ /** Nearest estimate bucket (ties resolve to the smaller bucket). */
export function priorForEstimate(days: number): LognormalPrior { export function nearestBucket(days: number): number {
let best = PRIOR_BUCKETS[0] let best = PRIOR_BUCKETS[0]
for (const b of PRIOR_BUCKETS) { for (const b of PRIOR_BUCKETS) {
if (Math.abs(b - days) < Math.abs(best - days)) best = b if (Math.abs(b - days) < Math.abs(best - days)) best = b
} }
return COLD_START_PRIORS[best] return best
}
/** The cold-start prior for the bucket nearest to `days`. */
export function priorForEstimate(days: number): LognormalPrior {
return COLD_START_PRIORS[nearestBucket(days)]
}
/** The lognormal parameters `forecast` needs, per estimate bucket. */
export interface DurationModel {
coldStart: boolean
/** Fallback params (used when a bucket lacks its own fit). */
global: LognormalPrior
/** Per-bucket fitted params; missing buckets fall back to `global`. */
byBucket: Record<number, LognormalPrior>
} }
export interface ForecastOptions { export interface ForecastOptions {
@@ -57,6 +72,25 @@ export interface ForecastOptions {
trials?: number trials?: number
/** PRNG seed. Fixed by default so a forecast is reproducible. */ /** PRNG seed. Fixed by default so a forecast is reproducible. */
seed?: number seed?: number
/**
* Fitted duration model. When present and not cold-start, its params drive
* the sim; otherwise the code-resident cold-start priors do.
*/
model?: DurationModel
/**
* Capacity lanes. When provided, each trial lays sampled durations across the
* lanes (parallel) instead of a single serial worker — the makespan shrinks
* toward the critical path. Empty/absent → single serial worker.
*/
workers?: Worker[]
}
/** Resolve the lognormal params for an estimate, preferring a fitted model. */
export function durationParams(days: number, model?: DurationModel): LognormalPrior {
if (model && !model.coldStart) {
return model.byBucket[nearestBucket(days)] ?? model.global
}
return priorForEstimate(days)
} }
export interface BurnUpPoint { export interface BurnUpPoint {
@@ -121,24 +155,42 @@ export function forecast(
): Forecast { ): Forecast {
const trials = options.trials ?? DEFAULT_TRIALS const trials = options.trials ?? DEFAULT_TRIALS
const seed = options.seed ?? DEFAULT_SEED const seed = options.seed ?? DEFAULT_SEED
const coldStart = options.model ? options.model.coldStart : true
const order = schedule(issues, edges).items // empty when a dependency cycle exists const order = schedule(issues, edges).items // empty when a dependency cycle exists
const n = order.length const n = order.length
if (n === 0) { if (n === 0) {
return { scope: 0, trials, coldStart: true, p50Day: 0, p80Day: 0, p95Day: 0, curve: [] } return { scope: 0, trials, coldStart, p50Day: 0, p80Day: 0, p95Day: 0, curve: [] }
} }
const priors = order.map((it) => priorForEstimate(it.durationDays)) const priors = order.map((it) => durationParams(it.durationDays, options.model))
const rng = mulberry32(seed) const rng = mulberry32(seed)
// endByRank[k][t] = working day the (k+1)-th scheduled issue completes on trial t. // Capacity lanes, when configured — the per-trial layout goes parallel.
const laneInputs: LaneInputs = {
order: order.map((it) => it.number),
blockedBy: new Map(order.map((it) => [it.number, it.blockedBy])),
assignee: new Map(issues.map((i) => [i.number, i.assignee ?? null])),
}
const lanes =
options.workers && options.workers.length ? resolveLanes(options.workers, [...laneInputs.assignee.values()]) : null
// endByRank[k][t] = working day the (k+1)-th issue *to finish* completes on trial t.
const endByRank: number[][] = Array.from({ length: n }, () => new Array<number>(trials)) const endByRank: number[][] = Array.from({ length: n }, () => new Array<number>(trials))
for (let t = 0; t < trials; t++) { for (let t = 0; t < trials; t++) {
let cursor = 0 const sampled = order.map((it, k) => it.durationDays * Math.exp(priors[k].mu + priors[k].sigma * standardNormal(rng)))
for (let k = 0; k < n; k++) { if (lanes) {
const p = priors[k] // parallel: lay the sampled durations across lanes, then sort finish days
const sampled = order[k].durationDays * Math.exp(p.mu + p.sigma * standardNormal(rng)) const byNumber = new Map(order.map((it, k) => [it.number, sampled[k]]))
cursor += sampled const { finishAt } = layoutOnLanes(laneInputs, lanes, (num) => byNumber.get(num)!)
endByRank[k][t] = cursor const finishes = order.map((it) => finishAt.get(it.number)!).sort((a, b) => a - b)
for (let k = 0; k < n; k++) endByRank[k][t] = finishes[k]
} else {
// single serial worker: cumulative sum (already sorted ascending)
let cursor = 0
for (let k = 0; k < n; k++) {
cursor += sampled[k]
endByRank[k][t] = cursor
}
} }
} }
@@ -156,7 +208,7 @@ export function forecast(
return { return {
scope: n, scope: n,
trials, trials,
coldStart: true, coldStart,
p50Day: percentile(total, 0.5), p50Day: percentile(total, 0.5),
p80Day: percentile(total, 0.8), p80Day: percentile(total, 0.8),
p95Day: percentile(total, 0.95), p95Day: percentile(total, 0.95),

View File

@@ -1,6 +1,6 @@
import { describe, expect, it } from 'vitest' import { describe, expect, it } from 'vitest'
import { createGiteaClient, normalizeIssue } from './client.js' import { createGiteaClient, normalizeIssue, normalizeTimeline } from './client.js'
import { GiteaApiError, type FetchLike, type GiteaConfig, type GiteaRequestInit } from './types.js' import { GiteaApiError, type FetchLike, type GiteaConfig, type GiteaRequestInit } from './types.js'
const CONFIG: GiteaConfig = { const CONFIG: GiteaConfig = {
@@ -44,6 +44,31 @@ function stubFetch(body: unknown, status = 200): {
return { fetch, calls } return { fetch, calls }
} }
describe('normalizeTimeline', () => {
it('maps known gitea event types to lifecycle signals and drops the rest', () => {
const events = normalizeTimeline([
{ type: 'label', created_at: '2026-01-06T09:00:00Z' },
{ type: 'milestone', created_at: '2026-01-06T09:05:00Z' },
{ type: 'commit_ref', created_at: '2026-01-07T12:00:00Z' },
{ type: 'pull_ref', created_at: '2026-01-08T12:00:00Z' },
{ type: 'comment', created_at: '2026-01-08T13:00:00Z' }, // dropped
{ type: 'add_dependency', created_at: '2026-01-08T14:00:00Z' }, // dropped
{ type: 'close', created_at: '2026-01-12T09:00:00Z' },
])
expect(events).toEqual([
{ type: 'triage', at: '2026-01-06T09:00:00Z' },
{ type: 'triage', at: '2026-01-06T09:05:00Z' },
{ type: 'commit', at: '2026-01-07T12:00:00Z' },
{ type: 'pull', at: '2026-01-08T12:00:00Z' },
{ type: 'close', at: '2026-01-12T09:00:00Z' },
])
})
it('skips events missing a timestamp', () => {
expect(normalizeTimeline([{ type: 'commit_ref', created_at: '' }])).toEqual([])
})
})
describe('createGiteaClient.getIssue', () => { describe('createGiteaClient.getIssue', () => {
it('returns a normalized, typed issue from canned JSON', async () => { it('returns a normalized, typed issue from canned JSON', async () => {
const { fetch } = stubFetch(RAW_ISSUE) const { fetch } = stubFetch(RAW_ISSUE)
@@ -98,6 +123,63 @@ describe('createGiteaClient.getIssue', () => {
) )
}) })
it('setIssueLabels PUTs the label ids to the issue labels endpoint', async () => {
const { fetch, calls } = stubFetch(null, 204)
await createGiteaClient(CONFIG, fetch).setIssueLabels(9, [3, 7])
expect(calls).toHaveLength(1)
expect(calls[0].url).toBe('https://gitea.stephenmann.io/api/v1/repos/christian/commitea/issues/9/labels')
expect(calls[0].init?.method).toBe('PUT')
expect(calls[0].init?.headers?.['Content-Type']).toBe('application/json')
expect(JSON.parse(calls[0].init?.body ?? '{}')).toEqual({ labels: [3, 7] })
})
it('listLabels returns id+name pairs', async () => {
const { fetch } = stubFetch([
{ id: 3, name: 'est/2d', color: 'fff' },
{ id: 7, name: 'p/1', color: '000' },
])
const labels = await createGiteaClient(CONFIG, fetch).listLabels()
expect(labels).toEqual([
{ id: 3, name: 'est/2d' },
{ id: 7, name: 'p/1' },
])
})
it('getFile returns null on 404 and content+sha on hit', async () => {
const miss = stubFetch('nope', 404)
expect(await createGiteaClient(CONFIG, miss.fetch).getFile('directives/log.jsonl')).toBeNull()
const hit = stubFetch({ content: 'aGVsbG8=\n', sha: 'abc123' })
const file = await createGiteaClient(CONFIG, hit.fetch).getFile('directives/log.jsonl')
expect(file).toEqual({ contentBase64: 'aGVsbG8=', sha: 'abc123' })
expect(hit.calls[0].url).toContain('/contents/directives/log.jsonl')
})
it('putFile POSTs to create and PUTs to update (with sha)', async () => {
const create = stubFetch({}, 201)
await createGiteaClient(CONFIG, create.fetch).putFile('directives/log.jsonl', { contentBase64: 'eA==', message: 'seed' })
expect(create.calls[0].init?.method).toBe('POST')
expect(JSON.parse(create.calls[0].init?.body ?? '{}')).toEqual({ content: 'eA==', message: 'seed' })
const update = stubFetch({}, 200)
await createGiteaClient(CONFIG, update.fetch).putFile('directives/log.jsonl', { contentBase64: 'eQ==', message: 'append', sha: 's1' })
expect(update.calls[0].init?.method).toBe('PUT')
expect(JSON.parse(update.calls[0].init?.body ?? '{}')).toEqual({ content: 'eQ==', message: 'append', sha: 's1' })
})
it('createIssue POSTs title/body/labels and returns a normalized issue', async () => {
const created = { ...RAW_ISSUE, number: 44, title: 'Retry token refresh', labels: [{ name: 'est/2d' }, { name: 'p/2' }] }
const { fetch, calls } = stubFetch(created, 201)
const issue = await createGiteaClient(CONFIG, fetch).createIssue({ title: 'Retry token refresh', body: 'backoff', labelIds: [3, 7] })
expect(calls[0].url).toBe('https://gitea.stephenmann.io/api/v1/repos/christian/commitea/issues')
expect(calls[0].init?.method).toBe('POST')
expect(JSON.parse(calls[0].init?.body ?? '{}')).toEqual({ title: 'Retry token refresh', body: 'backoff', labels: [3, 7] })
expect(issue.number).toBe(44)
expect(issue.labels).toEqual(['est/2d', 'p/2'])
})
it('throws GiteaApiError carrying status + body on a non-2xx response', async () => { it('throws GiteaApiError carrying status + body on a non-2xx response', async () => {
const { fetch } = stubFetch('not found', 404) const { fetch } = stubFetch('not found', 404)
const client = createGiteaClient(CONFIG, fetch) const client = createGiteaClient(CONFIG, fetch)

View File

@@ -6,12 +6,14 @@
* get the full set. * get the full set.
*/ */
import { type LifecycleEvent, type LifecycleEventType } from '../lifecycle/lifecycle-v0.js'
import { extractLabelFacts } from '../labels/label-schema.js' import { extractLabelFacts } from '../labels/label-schema.js'
import { import {
GiteaApiError, GiteaApiError,
type FetchLike, type FetchLike,
type GiteaConfig, type GiteaConfig,
type GiteaIssue, type GiteaIssue,
type GiteaLabel,
type GiteaMilestone, type GiteaMilestone,
type GiteaMilestoneRef, type GiteaMilestoneRef,
} from './types.js' } from './types.js'
@@ -54,6 +56,33 @@ interface RawMilestoneFull {
closed_issues: number closed_issues: number
} }
/** The subset of a gitea timeline comment we read. */
interface RawTimelineComment {
type: string
created_at: string
}
/** gitea timeline `type` → our lifecycle signal. Unmapped types are dropped. */
const TIMELINE_TYPE_MAP: Record<string, LifecycleEventType> = {
label: 'triage',
milestone: 'triage',
assignees: 'triage',
commit_ref: 'commit',
pull_ref: 'pull',
close: 'close',
reopen: 'reopen',
}
/** Map a raw gitea timeline to normalized lifecycle events. Pure. */
export function normalizeTimeline(raw: RawTimelineComment[]): LifecycleEvent[] {
const out: LifecycleEvent[] = []
for (const c of raw) {
const type = TIMELINE_TYPE_MAP[c.type]
if (type && c.created_at) out.push({ type, at: c.created_at })
}
return out
}
export interface ListIssuesOptions { export interface ListIssuesOptions {
/** @default 'all' */ /** @default 'all' */
state?: 'open' | 'closed' | 'all' state?: 'open' | 'closed' | 'all'
@@ -68,6 +97,18 @@ export interface GiteaClient {
listMilestones(): Promise<GiteaMilestone[]> listMilestones(): Promise<GiteaMilestone[]>
/** The issue indices this issue depends on (its blockers). */ /** The issue indices this issue depends on (its blockers). */
getIssueDependencies(index: number): Promise<number[]> getIssueDependencies(index: number): Promise<number[]>
/** Normalized lifecycle events for one issue (all pages of its timeline). */
getIssueTimeline(index: number): Promise<LifecycleEvent[]>
/** Every label defined on the repo (id + name), for name→id resolution. */
listLabels(): Promise<GiteaLabel[]>
/** Replace an issue's entire label set with the given label ids. Write. */
setIssueLabels(index: number, labelIds: number[]): Promise<void>
/** Open a new issue with a title, optional body, and label ids. Write. */
createIssue(input: { title: string; body?: string; labelIds?: number[] }): Promise<GiteaIssue>
/** Read a repo file's base64 content + blob sha; null if it (or the repo) is absent. */
getFile(path: string): Promise<{ contentBase64: string; sha: string } | null>
/** Create or update a repo file with base64 content (pass `sha` to update). Write. */
putFile(path: string, input: { contentBase64: string; message: string; sha?: string }): Promise<void>
} }
/** Map raw gitea issue JSON to the normalized domain shape. Pure. */ /** Map raw gitea issue JSON to the normalized domain shape. Pure. */
@@ -114,18 +155,24 @@ export function createGiteaClient(config: GiteaConfig, fetchImpl: FetchLike): Gi
const apiBase = `${config.baseUrl.replace(/\/+$/, '')}/api/v1` const apiBase = `${config.baseUrl.replace(/\/+$/, '')}/api/v1`
const repoBase = `${apiBase}/repos/${config.owner}/${config.repo}` const repoBase = `${apiBase}/repos/${config.owner}/${config.repo}`
async function request(path: string): Promise<unknown> { async function request(path: string, init?: { method?: string; body?: unknown }): Promise<unknown> {
const method = init?.method ?? 'GET'
const hasBody = init?.body !== undefined
const res = await fetchImpl(`${repoBase}${path}`, { const res = await fetchImpl(`${repoBase}${path}`, {
method,
headers: { headers: {
Authorization: `token ${config.token}`, Authorization: `token ${config.token}`,
Accept: 'application/json', Accept: 'application/json',
...(hasBody ? { 'Content-Type': 'application/json' } : {}),
}, },
body: hasBody ? JSON.stringify(init!.body) : undefined,
}) })
if (!res.ok) { if (!res.ok) {
const body = await res.text().catch(() => '') const body = await res.text().catch(() => '')
throw new GiteaApiError(res.status, `GET ${path} failed (${res.status})`, body) throw new GiteaApiError(res.status, `${method} ${path} failed (${res.status})`, body)
} }
return res.json() // writes may reply 204 No Content
return res.status === 204 ? null : res.json()
} }
/** Follow gitea's page-limit pagination until a short page is returned. */ /** Follow gitea's page-limit pagination until a short page is returned. */
@@ -163,5 +210,51 @@ export function createGiteaClient(config: GiteaConfig, fetchImpl: FetchLike): Gi
const raw = (await request(`/issues/${index}/dependencies`)) as { number: number }[] const raw = (await request(`/issues/${index}/dependencies`)) as { number: number }[]
return raw.map((d) => d.number) return raw.map((d) => d.number)
}, },
async getIssueTimeline(index) {
const raw = await requestAll<RawTimelineComment>(
(page) => `/issues/${index}/timeline?page=${page}&limit=${PAGE_LIMIT}`,
)
return normalizeTimeline(raw)
},
async listLabels() {
const raw = await requestAll<{ id: number; name: string }>(
(page) => `/labels?page=${page}&limit=${PAGE_LIMIT}`,
)
return raw.map((l) => ({ id: l.id, name: l.name }))
},
async setIssueLabels(index, labelIds) {
await request(`/issues/${index}/labels`, { method: 'PUT', body: { labels: labelIds } })
},
async createIssue(input) {
const raw = (await request('/issues', {
method: 'POST',
body: { title: input.title, body: input.body ?? '', labels: input.labelIds ?? [] },
})) as RawIssue
return normalizeIssue(raw)
},
async getFile(path) {
const res = await fetchImpl(`${repoBase}/contents/${path}`, {
headers: { Authorization: `token ${config.token}`, Accept: 'application/json' },
})
if (res.status === 404) return null
if (!res.ok) {
const body = await res.text().catch(() => '')
throw new GiteaApiError(res.status, `GET contents/${path} failed (${res.status})`, body)
}
const json = (await res.json()) as { content?: string; sha: string }
return { contentBase64: (json.content ?? '').replace(/\n/g, ''), sha: json.sha }
},
async putFile(path, input) {
await request(`/contents/${path}`, {
method: input.sha ? 'PUT' : 'POST',
body: { content: input.contentBase64, message: input.message, ...(input.sha ? { sha: input.sha } : {}) },
})
},
} }
} }

View File

@@ -31,10 +31,18 @@ export interface GiteaHttpResponse {
status: number status: number
json(): Promise<unknown> json(): Promise<unknown>
text(): Promise<string> text(): Promise<string>
/** Present on the real fetch Response; used for SSE streaming (chat). */
body?: ReadableStream<Uint8Array> | null
} }
export type FetchLike = (url: string, init?: GiteaRequestInit) => Promise<GiteaHttpResponse> export type FetchLike = (url: string, init?: GiteaRequestInit) => Promise<GiteaHttpResponse>
/** A repo label — just the id + name we need for name→id resolution. */
export interface GiteaLabel {
id: number
name: string
}
/** Milestone as referenced from an issue (not the full milestone resource). */ /** Milestone as referenced from an issue (not the full milestone resource). */
export interface GiteaMilestoneRef { export interface GiteaMilestoneRef {
id: number id: number

View File

@@ -9,7 +9,7 @@ export {
} from './labels/label-schema.js' } from './labels/label-schema.js'
export type { EstimateLabel, LabelFacts, PriorityLabel } from './labels/label-schema.js' export type { EstimateLabel, LabelFacts, PriorityLabel } from './labels/label-schema.js'
export { createGiteaClient, normalizeIssue, normalizeMilestone } from './gitea/client.js' export { createGiteaClient, normalizeIssue, normalizeMilestone, normalizeTimeline } from './gitea/client.js'
export type { GiteaClient, ListIssuesOptions } from './gitea/client.js' export type { GiteaClient, ListIssuesOptions } from './gitea/client.js'
export { GiteaApiError } from './gitea/types.js' export { GiteaApiError } from './gitea/types.js'
export type { export type {
@@ -17,13 +17,28 @@ export type {
GiteaConfig, GiteaConfig,
GiteaHttpResponse, GiteaHttpResponse,
GiteaIssue, GiteaIssue,
GiteaLabel,
GiteaMilestone, GiteaMilestone,
GiteaMilestoneRef, GiteaMilestoneRef,
GiteaRequestInit, GiteaRequestInit,
} from './gitea/types.js' } from './gitea/types.js'
export { inferColumnV0, LIFECYCLE_COLUMNS } from './lifecycle/lifecycle-v0.js' export { describeChange, planIssueChange, proposalsFor } from './changes/apply-changes-v0.js'
export type { LifecycleColumn } from './lifecycle/lifecycle-v0.js' export type { ChangeProposal, IssueChange, LabelPlan, ProposeChangeArgs } from './changes/apply-changes-v0.js'
export {
inferColumnV0,
inferLifecycle,
LIFECYCLE_COLUMNS,
workingDaysBetween,
} from './lifecycle/lifecycle-v0.js'
export type {
LifecycleColumn,
LifecycleEvent,
LifecycleEventType,
LifecycleInference,
LifecycleStages,
} from './lifecycle/lifecycle-v0.js'
export { DEFAULT_ESTIMATE_DAYS, schedule, selectFocus } from './scheduler/scheduler-v0.js' export { DEFAULT_ESTIMATE_DAYS, schedule, selectFocus } from './scheduler/scheduler-v0.js'
export type { export type {
@@ -34,5 +49,72 @@ export type {
SchedulePlan, SchedulePlan,
} from './scheduler/scheduler-v0.js' } from './scheduler/scheduler-v0.js'
export { COLD_START_PRIORS, forecast, priorForEstimate } from './forecast/forecast-v0.js' export { makespan, scheduleWithCapacity } from './scheduler/scheduler-capacity-v0.js'
export type { BurnUpPoint, Forecast, ForecastOptions, LognormalPrior } from './forecast/forecast-v0.js' export type { Worker } from './scheduler/scheduler-capacity-v0.js'
export { capacityPerWorkday, parseCapacityConfig } from './capacity/capacity-v0.js'
export type { CapacityMember } from './capacity/capacity-v0.js'
export {
COLD_START_PRIORS,
durationParams,
forecast,
nearestBucket,
PRIOR_BUCKETS,
priorForEstimate,
} from './forecast/forecast-v0.js'
export type {
BurnUpPoint,
DurationModel,
Forecast,
ForecastOptions,
LognormalPrior,
} from './forecast/forecast-v0.js'
export {
CALIBRATION_BUCKET_FLOOR,
calibrationSamples,
COLD_START_THRESHOLD,
fitCalibration,
toDurationModel,
} from './calibration/calibration-v0.js'
export type {
BucketFit,
CalibrationModel,
CalibrationSample,
PersonBias,
} from './calibration/calibration-v0.js'
export { createChatClient } from './agent/chat-client.js'
export type { ChatClient, ChatMessage, CompletionResult, ModelConfig, OnToken, ToolCall, ToolDecl } from './agent/chat-client.js'
export { pickModel } from './agent/model-router.js'
export type { ModelRouter, TaskKind } from './agent/model-router.js'
export { runAgentTurn } from './agent/agent-loop.js'
export type { AgentStep, AgentTurn, ToolExecutor } from './agent/agent-loop.js'
export {
PROPOSE_CHANGE_TOOL,
QUERY_PROJECT_TOOL,
RECORD_DIRECTIVE_TOOL,
REGINALD_SYSTEM,
REGINALD_TOOLS,
} from './agent/agent-tools.js'
export { buildProjectView } from './agent/query-project.js'
export type { ProjectSnapshot, ProjectView, QueryFilters } from './agent/query-project.js'
export { CAPTURE_SYSTEM, captureWork, parseCaptureArgs, PROPOSE_ISSUES_TOOL } from './agent/capture-work.js'
export type { CaptureProposal, ProposedIssue } from './agent/capture-work.js'
export {
appendDirective,
makeDirectiveEntry,
parseDirectiveLog,
serializeDirective,
toDirectiveInput,
} from './directives/record-directive-v0.js'
export type {
DirectiveEntry,
DirectiveInput,
DirectiveKind,
DirectiveRecord,
DirectiveStatus,
DirectiveTarget,
} from './directives/record-directive-v0.js'

View File

@@ -1,6 +1,11 @@
import { describe, expect, it } from 'vitest' import { describe, expect, it } from 'vitest'
import { inferColumnV0 } from './lifecycle-v0.js' import {
inferColumnV0,
inferLifecycle,
type LifecycleEvent,
workingDaysBetween,
} from './lifecycle-v0.js'
const base = { state: 'open' as const, labels: [] as string[], milestone: null } const base = { state: 'open' as const, labels: [] as string[], milestone: null }
@@ -27,3 +32,93 @@ describe('inferColumnV0', () => {
expect(['steeping', 'review']).not.toContain(col) expect(['steeping', 'review']).not.toContain(col)
}) })
}) })
describe('workingDaysBetween', () => {
it('counts weekdays in [start, end), excluding weekends', () => {
// Mon 2026-01-05 → Mon 2026-01-12 spans a full week = 5 working days
expect(workingDaysBetween(new Date('2026-01-05'), new Date('2026-01-12'))).toBe(5)
})
it('is 0 for same day or reversed', () => {
expect(workingDaysBetween(new Date('2026-01-05'), new Date('2026-01-05'))).toBe(0)
expect(workingDaysBetween(new Date('2026-01-12'), new Date('2026-01-05'))).toBe(0)
})
it('skips a weekend inside the interval', () => {
// Fri 2026-01-09 → Mon 2026-01-12: only Fri counts (Sat/Sun excluded) = 1
expect(workingDaysBetween(new Date('2026-01-09'), new Date('2026-01-12'))).toBe(1)
})
})
describe('inferLifecycle', () => {
const openBase = { ...base, createdAt: '2026-01-05T09:00:00Z', closedAt: null }
const asOf = new Date('2026-01-14T09:00:00Z')
const ev = (type: LifecycleEvent['type'], at: string): LifecycleEvent => ({ type, at })
it('bare open issue with no events is diagnosis', () => {
const inf = inferLifecycle(openBase, [], asOf)
expect(inf.column).toBe('diagnosis')
expect(inf.stages.opened).toBe(openBase.createdAt)
expect(inf.actualWorkingDays).toBeNull()
expect(inf.steepingDays).toBeNull()
})
it('a triage event (or a current label) moves it to triage', () => {
expect(inferLifecycle(openBase, [ev('triage', '2026-01-06T09:00:00Z')], asOf).column).toBe('triage')
expect(inferLifecycle({ ...openBase, labels: ['p/1'] }, [], asOf).column).toBe('triage')
})
it('a commit ref moves an open issue to steeping and counts its working age', () => {
const inf = inferLifecycle(
{ ...openBase, labels: ['est/2d'] },
[ev('triage', '2026-01-05T10:00:00Z'), ev('commit', '2026-01-07T12:00:00Z')],
asOf,
)
expect(inf.column).toBe('steeping')
expect(inf.stages.steeping).toBe('2026-01-07T12:00:00Z')
// Wed 2026-01-07 → Wed 2026-01-14 = 5 working days
expect(inf.steepingDays).toBe(5)
})
it('a pull ref outranks a commit ref → review', () => {
const inf = inferLifecycle(
openBase,
[ev('commit', '2026-01-07T12:00:00Z'), ev('pull', '2026-01-08T12:00:00Z')],
asOf,
)
expect(inf.column).toBe('review')
expect(inf.steepingDays).toBeNull() // only steeping issues carry an age
})
it('closed → done, with actual working time from work-start to close', () => {
const inf = inferLifecycle(
{ ...openBase, state: 'closed', closedAt: '2026-01-12T09:00:00Z' },
[ev('commit', '2026-01-07T09:00:00Z'), ev('pull', '2026-01-08T09:00:00Z'), ev('close', '2026-01-12T09:00:00Z')],
asOf,
)
expect(inf.column).toBe('done')
expect(inf.stages.done).toBe('2026-01-12T09:00:00Z')
// Wed 2026-01-07 → Mon 2026-01-12 = Wed,Thu,Fri = 3 working days
expect(inf.actualWorkingDays).toBe(3)
})
it('takes the earliest event of each kind for stage timestamps', () => {
const inf = inferLifecycle(
openBase,
[ev('commit', '2026-01-09T09:00:00Z'), ev('commit', '2026-01-07T09:00:00Z')],
asOf,
)
expect(inf.stages.steeping).toBe('2026-01-07T09:00:00Z')
})
it('falls back to opened when a closed issue has no work-start signal', () => {
const inf = inferLifecycle(
{ ...openBase, state: 'closed', closedAt: '2026-01-08T09:00:00Z' },
[ev('close', '2026-01-08T09:00:00Z')],
asOf,
)
// Mon 2026-01-05 → Thu 2026-01-08 = Mon,Tue,Wed = 3 working days
expect(inf.actualWorkingDays).toBe(3)
})
})

View File

@@ -1,12 +1,10 @@
/** /**
* Lifecycle inference, v0 — the coarse column an issue sits in, derived from * Lifecycle inference.
* *only* what a single issues-list read gives us (state, labels, milestone).
* *
* The real five-column inference (P1-5) needs the issue timeline: first * `inferColumnV0` places the coarse three columns from a single issues-list
* branch/commit ref → Steeping, PR opened → In review, PR merged → Deploy. * read (state/labels/milestone). `inferLifecycle` (#5) adds the issue timeline:
* Until that lands, v0 can only place three columns honestly; `steeping` and * first commit ref → Steeping, first PR ref → In review, close → Done — and
* `review` stay empty rather than guess. Board renders all five columns and * derives the estimate-vs-actual working time that feeds calibration (D3).
* fills the middle two once the event stream is available.
*/ */
import type { GiteaIssue } from '../gitea/types.js' import type { GiteaIssue } from '../gitea/types.js'
@@ -23,10 +21,109 @@ export const LIFECYCLE_COLUMNS: readonly LifecycleColumn[] = [
/** /**
* Closed → done. Open with any human intent applied (a label or a milestone) * Closed → done. Open with any human intent applied (a label or a milestone)
* → triage. Open and bare → diagnosis. Never returns steeping/review in v0. * → triage. Open and bare → diagnosis. Never returns steeping/review — that's
* `inferLifecycle`, which reads the event stream.
*/ */
export function inferColumnV0(issue: Pick<GiteaIssue, 'state' | 'labels' | 'milestone'>): LifecycleColumn { export function inferColumnV0(issue: Pick<GiteaIssue, 'state' | 'labels' | 'milestone'>): LifecycleColumn {
if (issue.state === 'closed') return 'done' if (issue.state === 'closed') return 'done'
const hasIntent = issue.labels.length > 0 || issue.milestone !== null const hasIntent = issue.labels.length > 0 || issue.milestone !== null
return hasIntent ? 'triage' : 'diagnosis' return hasIntent ? 'triage' : 'diagnosis'
} }
/** A timeline signal, normalized from gitea's raw event stream. */
export type LifecycleEventType = 'triage' | 'commit' | 'pull' | 'close' | 'reopen'
export interface LifecycleEvent {
type: LifecycleEventType
/** ISO timestamp. */
at: string
}
/** Timestamps for the stages an issue has reached (absent = not yet reached). */
export interface LifecycleStages {
opened: string
/** First label / milestone / assignment. */
triaged?: string
/** First commit referencing the issue — work began. */
steeping?: string
/** First PR referencing the issue — in review. */
review?: string
/** Closed. */
done?: string
}
export interface LifecycleInference {
column: LifecycleColumn
stages: LifecycleStages
/**
* Working days from work-start (steeping → triaged → opened, first available)
* to done. Only for closed issues — this is the "actual" calibration learns
* from. null while open.
*/
actualWorkingDays: number | null
/** Working days the issue has been steeping (first commit → asOf); null unless currently steeping. */
steepingDays: number | null
}
const DAY_MS = 86_400_000
/**
* Whole working days (MonFri) in the half-open interval [start, end). Same day
* or reversed → 0. Day-granular by design — estimates are in days.
*/
export function workingDaysBetween(start: Date, end: Date): number {
const s = Date.UTC(start.getUTCFullYear(), start.getUTCMonth(), start.getUTCDate())
const e = Date.UTC(end.getUTCFullYear(), end.getUTCMonth(), end.getUTCDate())
if (e <= s) return 0
let count = 0
for (let t = s; t < e; t += DAY_MS) {
const dow = new Date(t).getUTCDay()
if (dow !== 0 && dow !== 6) count += 1
}
return count
}
/**
* The five-column inference. Column reflects the furthest stage still in play:
* closed → done; else an open PR ref → review; else a commit ref → steeping;
* else any triage signal (or a current label/milestone) → triage; else
* diagnosis. Stage timestamps are the earliest event of each kind.
*/
export function inferLifecycle(
issue: Pick<GiteaIssue, 'state' | 'labels' | 'milestone' | 'createdAt' | 'closedAt'>,
events: LifecycleEvent[],
asOf: Date,
): LifecycleInference {
const sorted = [...events].sort((a, b) => a.at.localeCompare(b.at))
const firstOf = (type: LifecycleEventType) => sorted.find((e) => e.type === type)?.at
const stages: LifecycleStages = { opened: issue.createdAt }
const triagedAt = firstOf('triage')
const steepingAt = firstOf('commit')
const reviewAt = firstOf('pull')
if (triagedAt) stages.triaged = triagedAt
if (steepingAt) stages.steeping = steepingAt
if (reviewAt) stages.review = reviewAt
const doneAt = issue.state === 'closed' ? (issue.closedAt ?? firstOf('close')) : undefined
if (doneAt) stages.done = doneAt
let column: LifecycleColumn
if (issue.state === 'closed') column = 'done'
else if (reviewAt) column = 'review'
else if (steepingAt) column = 'steeping'
else if (triagedAt || issue.labels.length > 0 || issue.milestone !== null) column = 'triage'
else column = 'diagnosis'
let actualWorkingDays: number | null = null
if (stages.done) {
const start = stages.steeping ?? stages.triaged ?? stages.opened
actualWorkingDays = workingDaysBetween(new Date(start), new Date(stages.done))
}
let steepingDays: number | null = null
if (column === 'steeping' && stages.steeping) {
steepingDays = workingDaysBetween(new Date(stages.steeping), asOf)
}
return { column, stages, actualWorkingDays, steepingDays }
}

View File

@@ -0,0 +1,119 @@
/**
* Capacity-aware scheduler (#8). Reuses the single-worker scheduler's topological
* order + critical-path marking, then re-lays the work across lanes: an issue
* runs on its assignee's lane (or the earliest-free lane when unassigned), its
* duration scaled by that lane's speed (ideal person-days/workday). Makespan
* shrinks toward the critical path as lanes are added. Deterministic; falls back
* to the single serial worker when no capacity is configured. The lane layout is
* factored so the Monte Carlo forecast reuses it per trial with sampled durations.
*/
import {
type DependencyEdge,
schedule,
type SchedulableIssue,
type SchedulePlan,
} from './scheduler-v0.js'
/** A scheduling lane: a person and their throughput (ideal person-days / workday). */
export interface Worker {
person: string
speed: number
}
/** The topological order + per-issue relations the layout needs (from the base plan). */
export interface LaneInputs {
order: number[]
blockedBy: Map<number, number[]>
assignee: Map<number, string | null>
}
/** Ensure a lane exists for every assignee; unconfigured assignees get the mean speed. */
export function resolveLanes(workers: Worker[], assignees: (string | null)[]): Worker[] {
const lanes = [...workers]
const known = new Set(lanes.map((w) => w.person))
const meanSpeed = lanes.length ? lanes.reduce((s, w) => s + w.speed, 0) / lanes.length : 1
for (const a of assignees) {
if (a && !known.has(a)) {
lanes.push({ person: a, speed: meanSpeed })
known.add(a)
}
}
return lanes
}
function pickWorker(lanes: Worker[], freeAt: Map<string, number>, assignee: string | null | undefined): Worker {
if (assignee) {
const own = lanes.find((w) => w.person === assignee)
if (own) return own
}
let best = lanes[0]
for (const w of lanes) if (freeAt.get(w.person)! < freeAt.get(best.person)!) best = w
return best
}
/**
* Lay a topologically-ordered set out across lanes. `duration(n)` supplies each
* issue's duration for this layout (estimate, or a sampled value in a MC trial).
* Returns each issue's finish day + the lane it ran on. Order guarantees a
* dependency is always laid out before its dependents.
*/
export function layoutOnLanes(
inputs: LaneInputs,
lanes: Worker[],
duration: (n: number) => number,
): { finishAt: Map<number, number>; startAt: Map<number, number>; laneOf: Map<number, string> } {
const freeAt = new Map(lanes.map((w) => [w.person, 0]))
const finishAt = new Map<number, number>()
const startAt = new Map<number, number>()
const laneOf = new Map<number, string>()
for (const n of inputs.order) {
const worker = pickWorker(lanes, freeAt, inputs.assignee.get(n))
const blockers = inputs.blockedBy.get(n) ?? []
const depFinish = blockers.length ? Math.max(...blockers.map((d) => finishAt.get(d) ?? 0)) : 0
const start = Math.max(freeAt.get(worker.person)!, depFinish)
const end = start + duration(n) / worker.speed
startAt.set(n, start)
finishAt.set(n, end)
laneOf.set(n, worker.person)
freeAt.set(worker.person, end)
}
return { finishAt, startAt, laneOf }
}
/**
* Capacity-aware plan. An empty `workers` means no capacity is configured → the
* single-worker plan verbatim.
*/
export function scheduleWithCapacity(
issues: SchedulableIssue[],
edges: DependencyEdge[],
workers: Worker[],
): SchedulePlan {
if (workers.length === 0) return schedule(issues, edges)
const base = schedule(issues, edges)
if (base.cycle || base.items.length === 0) return base
const inputs: LaneInputs = {
order: base.items.map((it) => it.number),
blockedBy: new Map(base.items.map((it) => [it.number, it.blockedBy])),
assignee: new Map(issues.map((i) => [i.number, i.assignee ?? null])),
}
const lanes = resolveLanes(workers, [...inputs.assignee.values()])
const durationOf = new Map(base.items.map((it) => [it.number, it.durationDays]))
const { finishAt, startAt, laneOf } = layoutOnLanes(inputs, lanes, (n) => durationOf.get(n)!)
const items = base.items.map((it) => ({
...it,
startDay: startAt.get(it.number)!,
endDay: finishAt.get(it.number)!,
durationDays: finishAt.get(it.number)! - startAt.get(it.number)!,
worker: laneOf.get(it.number),
}))
return { items, cycle: null }
}
/** Makespan (last finish) of a plan — the project's landing day. */
export function makespan(plan: SchedulePlan): number {
return plan.items.reduce((m, it) => Math.max(m, it.endDay), 0)
}

View File

@@ -21,6 +21,8 @@ export interface SchedulableIssue {
estimateDays: number | null estimateDays: number | null
/** 1 (most urgent) … 4; null when unset. */ /** 1 (most urgent) … 4; null when unset. */
priority: number | null priority: number | null
/** gitea assignee login, for capacity-aware lane routing; optional. */
assignee?: string | null
} }
export interface DependencyEdge { export interface DependencyEdge {
@@ -45,6 +47,8 @@ export interface ScheduledItem {
/** On a longest-duration dependency chain. */ /** On a longest-duration dependency chain. */
critical: boolean critical: boolean
rationale: string rationale: string
/** Lane it's scheduled on, when capacity-aware; absent for the single-worker plan. */
worker?: string
} }
export interface SchedulePlan { export interface SchedulePlan {