Files
fusion/packages/dashboard/app/api/projects.ts
gsxdsm e9e63d8e0f consolidate/capacity: --strict was red on main (my #2621), 14 stale baselines, routines seeding a deleted column, worktrees-off audit (#2652)
Capacity unit consolidation. Three coherent themes, small commits
inside.

## Census before/after (`node scripts/lifecycle-column-census.mjs`)

| | before | after |
|---|---:|---:|
| triage column guards (the bar) | 10 | **10** |
| `--strict` on main | ❌ **RED** | ✅ green |
| baseline staleness | 14 files stale | **0** |

This branch does **not** move the triage bar — its remaining 10 are
moves.ts (dies with the flag), the dashboard cluster, and one deliberate
site. It fixes the instrument that measures the bar, plus a live defect
the comparison count cannot see.

---

## 1. `--strict` was RED on clean `origin/main`, and it was my fault

```
packages/dashboard/src/routes/register-task-workflow-routes.ts: 22 -> 23
```

My merged #2621 added a v1-IR pre-WIP fallback answering a greptile P1
and shipped no marker or baseline update, so the program's measuring
instrument has been failing on main since it landed.

Fixed **at the site** with a `DELIBERATE-LITERAL` marker, not by bumping
the baseline. That branch runs only when the IR declares no columns and
no nodes, so there is no role to resolve — `resolveLifecycleColumns`
returns nothing and the legacy pre-implementation ids are the only
pre-WIP signal that exists there. It is *unconvertible*, not unfinished;
the sibling `else` two lines down is the trait path for every IR that
can answer. A rise that is genuinely correct belongs where a reader will
see it.

## 2. The baseline was stale for 14 files — a hole, not cosmetics

A stale allowance lets converted guards return while the check stays
green. Measured gaps:

```
self-healing.ts          allows 126, tree has 111
executor.ts              allows 112, tree has 104
moves.ts                 allows  44, tree has  39
default-workflow-hooks   allows  25, tree has   7
mission-feature-sync     allows   5, tree has   0
MissionControlPanel      allows   4, tree has   0        (+8 more)
```

**Only two of the fourteen are mine.** The other twelve are
already-merged conversions by other workers where nobody re-recorded.
Re-recorded all fourteen here rather than waiting for twelve PRs,
because until it happens the ratchet is not holding the 779 it exists to
hold. Flagging it plainly: those drops are other people's work being
locked in, not mine being claimed.

## 3. Routines created tasks into the column U11 deleted

The routine editor's "Target Column" defaulted to `triage`. That value
is submitted as the create step's `taskColumn`, and an **explicit**
column bypasses the workflow entry-column resolution added for
column-less creates (#2589) — so every routine saved with the untouched
default seeded its tasks into a column the board does not declare.

Defaulting to `todo` would be the same mistake one column over: a custom
workflow declaring no `todo` is seeded into an undeclared column just as
surely, because an explicit column overrides entry resolution whatever
its value. So the default sends **nothing** and each workflow's own
intake resolution decides.

The `triage` **option** is removed too, not merely un-defaulted — fixing
the initializer alone left the operator able to pick the deleted column
one click away, and it was the option labelled "Planning", the name the
merged `todo` column now displays. Removing it retires that label
inversion as well.

Found by scanning **membership** forms rather than comparisons: the
comparison census cannot see a `?? "triage"` default, so no count showed
this and nobody was looking. Revert-proof — restoring the default fails
with *"the default must not name a column at all"*.

## 4. "Worktrees off is INERT" had one unaudited reader

The constraint was that `maxWorktrees` become genuinely inert, "not set
very high and not skipped by convention". `resolveWorktreeCapacityLimit`
returns `null` for that, and its unit tests can only prove the
**resolver** is right — they cannot see a second reader, which is the
only way the constraint breaks.

Audited every `maxWorktrees` read that bounds anything. **Exactly two:**
`scheduler.ts` (the admission gate, via the resolver, single call site,
optional gate snapshot) and `self-healing.ts`'s `enforceWorktreeCap` —
`(settings.maxWorktrees ?? 4) * 2`, a **raw** read.

The second is **not a bug** and is left alone: it bounds worktree
*directories on disk* and only removes *idle* ones. Worktrees still
exist in OFF mode, so that bound must keep applying or idle directories
accumulate unbounded. Recorded consequence: in OFF mode the number still
governs disk retention while gating no admission — an edge you scoped
out. The note says explicitly **not** to unify the two readers: routing
hygiene through the resolver returns `null` in OFF mode and silently
removes the disk bound, which is a leak dressed as a simplification.

New ratchet requires every file bounding on `maxWorktrees` to be named
with a reason, and rejects a **stale** allowlist entry. Proven by
injecting `active >= (settings.maxWorktrees ?? 4)` into
`hybrid-executor.ts`.

---

## Deliberately NOT included

- **My own census script.** #2633 landed the canonical one, and it is
better than mine — an AST classifier *plus* an independent text
classifier with `--compare`, and a baseline that fails on unrecorded
**drops** as well as rises. Mine only caught rises. I deleted mine
rather than ship a second measuring instrument; three copies of "strip
comments" is the drift shape this program keeps paying for, so the
worktree ratchet now imports #2633's `stripComments`.
- **My TaskContextMenu fix.** Superseded, and by a better answer: main's
`isPureIntakeColumn` (intake *without* hold) keeps the merged Planning
column shown and suppresses only a bare Ideas capture, which resolves
the exact hold-lane objection coderabbit raised against my version. I
briefly clobbered that merged work by checking my old file out
wholesale, caught it in the diff, and reverted.

## Verification

`pnpm lint` clean · core + dashboard `tsc` clean · census suite 23/23 ·
worktree ratchet 8/8 · RoutineEditor 49/49 ·
`routes-task-retry-planning-column` 16/16 · `lifecycle-column-census
--strict` exits 0.

🤖 Generated with [Claude Code](https://claude.com/claude-code)

---

## Added after review (all four greptile threads were real, and two of
them mattered)

**The routine fix was half a fix.** `routine-runner.ts:515` *and*
`cron-runner.ts:982` both did `column: (step.taskColumn as Column) ||
"triage"` **after** the step is read, so every routine — including ones
saved through the fixed editor — still created tasks into the deleted
column. Both now omit it.

**The advanced steps editor MANUFACTURED the defect.**
`ScheduleStepsEditor.tsx` had three `triage` defaults: the new-step
template (`:64`), the per-step initializer (`:95`), and the select still
offering it (`:344`). So the path I had *not* fixed produced the bug by
default, on fresh data. Template names no column; initializer coerces a
persisted `triage`; `triage` removed from the options; empty submits
`undefined`.

**Four pre-existing tests pinned the defect** and are rewritten to the
corrected invariant rather than appeased:

| test | asserted |
|---|---|
| `cron-runner`: "defaults column to triage when taskColumn is not set"
| `column: "triage"` |
| `ScheduleStepsEditor`: "adds a create-task step..." | `taskColumn`
toBe `"triage"` |
| `ScheduleStepsEditor`: "allows saving create-task step..." | the
legacy column is **resubmitted** |
| plus the explicit-column case added beside each, so the fix cannot
swallow a deliberate choice |

**The allowlist hole was the worst finding.** `AUDITED_BOUNDS` was keyed
by FILE, so every bounding expression in an allowlisted file was exempt
— a second raw bound in `scheduler.ts` stayed green, the one case that
ratchet exists for. Per-expression now, and making it so **immediately
surfaced a real second bound the file-level version was hiding**
(`maxWorktreesGate.used >= maxWorktreesGate.limit`, safe by construction
since the snapshot is `undefined` in OFF mode). Proven by injection.

## Found while re-reading my own deletion, not reported

A **rendered tooltip** still named a deleted cap. The "Queued to plan"
badge read *"planning starts when a concurrency slot frees up
(maxConcurrent / globalMaxConcurrent)"*. The cross-project cap is gone —
capacity is two numbers per project — so it told operators their
planning waited on a limiter they can no longer find a setting for.
Names the surviving dimension only now.

## Coding (Ideas): enforcing #2651 rather than repeating it

I took the unowned coding-ideas IR merge, concluded it must not be done,
then found **#2651 had already implemented, reverted and documented
exactly that** — with better grounding than my own argument. It added no
test, so nothing stops the next person reaching the same dead end.

So this ships their reasoning as a ratchet, not a second opinion: triage
discovery keys on the column's `autoTriage`, so a merged column is
either never scanned (cards sit on a bootstrap stub until the **capacity
hold** releases them, sending **unplanned** work into in-progress —
worse than stalling) or scanning wins and the manual gate is gone. Their
scope caveat is kept: `autoTriage` is a general trait field, so only
*this preset's* collapse is dead, not manual intake as a concept. The
registry does not reject the merged shape, which is why prose was not
enough.

## Verification (re-run)

`pnpm lint` clean · core + engine + dashboard-app `tsc` clean ·
`lifecycle-column-census --strict` exits 0 ("every file matches its
baseline exactly") · routine-runner 24/24 · cron-runner 156/156 ·
ScheduleStepsEditor 41/41 · RoutineEditor 49/49 · worktree +
coding-ideas 12/12. TaskCard has 2 failures **pre-existing on main** —
confirmed identical with my changes stashed.

---

## Bears directly on the closing bar: this PR already removes the
67-guard ratchet slack

Measured on current `origin/main` with the census itself:

```
tree total: 787   baseline total: 854   SLACK: 67

FILES ABOVE BASELINE (1):
   +1  packages/dashboard/src/routes/register-task-workflow-routes.ts  (22 -> 23)

FILES BELOW BASELINE: 13, totalling 68 unrecorded conversions
   -18  core/default-workflow-hooks.ts (25->7)   -15  engine/self-healing.ts (126->111)
    -8  engine/executor.ts (112->104)             -5  core/task-store/moves.ts (44->39)
    -5  engine/mission-feature-sync.ts (5->0)     -4  core/live-agent-count.ts (10->6)
```

**The slack is not regression — it is 13 files of merged conversions
nobody re-recorded**, against exactly **one** rise. This PR re-records
the baseline **854 → 782 across 140 files**, which closes it.

**And the "+3 that slipped in" is +1, and it is mine.**
`register-task-workflow-routes.ts 22 → 23` is the v1-IR pre-WIP fallback
my #2621 added; it is justified (that branch runs only when the IR
declares no columns or nodes, so there is no role to resolve) but it
shipped with no marker and no baseline update — which is why `--strict`
has been **red on main since it merged**. Fixed here at the site with a
`DELIBERATE-LITERAL` marker rather than by bumping the baseline, because
a rise that is genuinely correct belongs where a reader will see it.

Sequencing note for the auto-lowering change: if this lands first, that
work is purely the mechanism (auto-lower, or fail with tighten
instructions) rather than a cleanup, and the two re-records will not
collide in the same file.

Also worth carrying into that mechanism, from building the same guard
here: **`--update` must refuse to RAISE.** An earlier version of mine
wrote current counts verbatim, so a developer who added a literal and
ran the documented update command locked the regression in as the new
ceiling — the mirror of the high-water problem. Lowering can be
unattended; raising should be a hand edit with the reason recorded.

## Third piece of residue from my own deletion

`updateGlobalConcurrency` in the dashboard API client PUT to
`/api/global-concurrency`, a route removed when the machine-wide cap
went. Zero callers; the only reference was the `legacy.ts` barrel
re-export. Deleted both. `fetchGlobalConcurrency` **survives on
purpose** — the GET route remains and serves live utilization telemetry
to the footer and Command Center; nothing gates on it.

That is the third: after the second raw `maxWorktrees` reader and the
"Queued to plan" tooltip. A deletion is not finished when the
enforcement goes — the client, the label and the tooltip outlive it.

---

## Re-greened the dashboard API tests: 117 failures on main, ONE root
cause

These would have polluted the closing verification pass, and nobody
owned them.

`api()` builds headers via `new Headers(...)` and returns
`Object.fromEntries(headers.entries())` — and `Headers.entries()`
**lowercases every key**, so the object reaching `fetch` is
`content-type`, not `Content-Type`. `ab87d0d80` then added
`x-fusion-client: dashboard-ui` for run-audit attribution. Both changes
are correct; neither is visible at a call site, so **114 assertions
across 7 files** kept asserting the old shape and went red together.

Fixed by naming the shape **once** in `app/test/apiRequestHeaders.ts`
rather than patching 114 literals — restating a shared fact 114 times is
what made a two-line client change look like 117 failures. Deliberately
not a loose `objectContaining`: these tests are the only thing pinning
that the attribution header is sent *at all*.

**117 → 4.** The remaining 4 are unrelated pre-existing CSS failures
(`task-detail-modal-tablet-width` ×3, `space-token-defined` ×1) —
confirmed identical on clean main with my changes stashed.

### A gap this surfaced, recorded not papered over

Three routes failed in the *opposite* direction — they send the old
shape because they call `fetch()` **directly**, bypassing `api()`, so
they never get the attribution header. `client.ts` claims the opposite:

> "Applied once here rather than per-call so no future mutation route
has to remember it."

That does not hold for a route that bypasses the helper it is applied
in. **Measured in `app/api/`: 8 files make direct `fetch()` calls and 7
include mutations (POST/DELETE)** — among them `ai-sessions.ts`'s
DELETE, which is the same class as the four-delete incident the header
was added for. So the attribution fix has a hole in exactly its
motivating case.

Not fixed here: routing those onto `api()` is a behaviour change across
the API layer and belongs to its owner, not to a test re-green. Those
assertions use a separate `API_JSON_HEADERS_NO_ATTRIBUTION` constant so
the gap stays **visible** — if a route is later moved onto `api()`, its
test fails and points at the note explaining why.

---

## This branch takes the triage bar 10 → 5, and makes `--strict` green

`node scripts/lifecycle-column-census.mjs` on this branch reports
**triage 5**, against **10** on `origin/main`. The five removed are the
ScheduleStepsEditor template/initializer/option and the RoutineEditor
default/option — the automation paths that were creating tasks into the
deleted column.

**`--strict` was also RED on clean main, twice over, and both causes
were the same mistake:** a thorough written rationale the tool cannot
read, because the marker was not where the census looks. The census
reads a comparison node's **leading comments**; a `DELIBERATE-LITERAL`
in the JSDoc above the enclosing function or declaration does not reach
the comparison inside it.

| site | why it is legitimate | why the tool could not see it |
|---|---|---|
| `columnRoles.ts:80` `isHoldColumnRole` | degrades to `columnId ===
"todo"` only when a column has **no resolved traits** — identical in
kind to `LEGACY_PRE_IMPLEMENTATION_COLUMN_IDS` directly above, which
escapes counting only because a Set is a membership form | rationale
written, **no marker token** |
| `MissionControlPanel.tsx` ×3 | the SDLC funnel **alias table** — maps
`to-do`/`ready`/`review`/`shipped` onto one display stage with an
explicit `other` bucket, and nothing branches on it | marker in the
JSDoc; the comparisons are arrow bodies **inside the array literal**,
which it does not reach |

The second only surfaced because converting the `triage` stage to a Set
removed its count and exposed the siblings — red gate, justification
sitting three lines above, unreachable.

Both are markers, no behaviour change. Neither is a conversion
candidate: resolving the funnel table to traits would **drop the
non-column aliases it exists to accept**.

**For the auto-lowering work:** the marker-placement rule is now the
recurring trap — three instances, three different authors, including me.
A marker that does not register is indistinguishable from no marker, and
the failure mode is a red gate with a written explanation nobody can act
on. If the census accepted a marker anywhere in the enclosing
declaration's comments, none of the three would have happened.

Baseline re-recorded per the tool's own instruction ("Re-record the
baseline in the SAME PR that lowered the count").


<!-- This is an auto-generated comment: release notes by coderabbit.ai
-->
## Summary by CodeRabbit

- **Bug Fixes**
- Task “Actions” menus no longer appear on bare cards in the Planning
column.
- Routines, scheduled tasks, and create-task steps now respect each
board’s configured workflow intake column instead of using a retired
default.
- Legacy tasks saved with the retired intake column are migrated to
automatic workflow resolution.
- Target-column selection now offers only “Automatic (workflow intake)”
and “Planning,” removing the obsolete option.
- Capacity/planning messaging and related UI tooltip text were
clarified; concurrency cap updates are managed per project.

- **Tests**
- Added/updated coverage for workflow intake resolution, create-task
target column behavior (including legacy coercion), capacity safeguards,
and API request consistency.
<!-- end of auto-generated comment: release notes by coderabbit.ai -->

---------

Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-07-30 03:10:35 -07:00

910 lines
29 KiB
TypeScript

/**
* FNXC:CodeOrganization 2026-07-19-12:00:
* Multi-project management client API peeled from legacy.ts.
*/
import type {
NodeConfig,
NodeStatus,
MeshClusterSnapshot,
SystemMetrics,
DiscoveryConfig,
DockerNodeConfig,
ManagedDockerNodeInput,
DockerHostConfig,
DockerResourceSizing,
DockerVolumeMount,
DockerExtraCli,
DockerNodeStatus,
ProjectNodePathMapping,
ActivityEventType,
Task,
} from "@fusion/core";
import { api, proxyApi } from "./client.js";
import { withProjectId } from "./health.js";
import { getAuthToken } from "../auth";
import { dedupe } from "./dedupe.js";
// ── Project Management API (Multi-Project Support) ───────────────────────
/** Project information returned by project endpoints */
export interface ProjectInfo {
id: string;
name: string;
path: string;
status: "active" | "paused" | "errored" | "initializing";
isolationMode: "in-process" | "child-process";
nodeId?: string;
createdAt: string;
updatedAt: string;
lastActivityAt?: string;
}
/** Project health metrics */
export interface CodebaseMetrics {
tokenEstimate: number;
sourceFileCount: number;
sourceByteCount: number;
diskBytes: number;
diskFileCount: number;
method: string;
truncated: boolean;
}
export interface ProjectHealth {
projectId: string;
status: "active" | "paused" | "errored" | "initializing";
activeTaskCount: number;
inFlightAgentCount: number;
lastActivityAt?: string;
lastErrorAt?: string;
lastErrorMessage?: string;
totalTasksCompleted: number;
totalTasksFailed: number;
averageTaskDurationMs?: number;
updatedAt: string;
}
/**
* Executor state values.
*
* FNXC:EngineControls 2026-06-22-00:00:
* A globally stopped AI engine (`globalPause`) is an operator action, not idleness; the footer must expose it as "Stopped" in error red with the stop-rectangle icon.
*/
export type ExecutorState = "idle" | "running" | "paused" | "stopped";
/** Aggregated executor statistics for the status bar.
*
* Counts (runningTaskCount, blockedTaskCount, queuedTaskCount, inReviewCount, stuckTaskCount)
* are derived client-side from the same tasks array shared with the board, ensuring
* the footer counts always match the active work states displayed on screen. Queued covers
* todo plus planning/triage work; Done is intentionally not exposed unless a footer Done
* segment is added.
* The API returns settings-based values (globalPause, enginePaused, maxConcurrent) and
* lastActivityAt from the activity log.
*
* The executorState is derived from:
* - "stopped": globalPause is true
* - "paused": enginePaused is true (regardless of runningTaskCount)
* - "running": globalPause is false AND enginePaused is false AND runningTaskCount > 0
* - "idle": nothing paused and nothing running
*
* FNXC:EngineControls 2026-07-24-18:35: pause state dominates run state so a paused
* engine never reads "Idle" once in-flight work drains. See deriveExecutorState in
* app/hooks/useExecutorStats.ts for the rationale.
*/
export interface ExecutorStats {
/** Number of tasks currently in "in-progress" column */
runningTaskCount: number;
/** Number of tasks with blockedBy field set (waiting on file overlap) */
blockedTaskCount: number;
/** Number of "in-progress" tasks with no activity for > 10 minutes */
stuckTaskCount: number;
/** Number of tasks in "todo" plus planning/triage work states */
queuedTaskCount: number;
/** Number of tasks in "in-review" column */
inReviewCount: number;
/** Derived executor state: "idle", "running", "paused", or "stopped" */
executorState: ExecutorState;
/** Maximum concurrent tasks allowed from settings */
maxConcurrent: number;
/** ISO timestamp of most recent task event from activity log */
lastActivityAt?: string;
}
/** Unified activity feed entry */
export interface ActivityFeedEntry {
id: string;
timestamp: string;
type: ActivityEventType;
projectId: string;
projectName: string;
taskId?: string;
taskTitle?: string;
details: string;
metadata?: Record<string, unknown>;
}
/** Input for creating a new project */
export interface ProjectCreateInput {
name: string;
path: string;
isolationMode?: "in-process" | "child-process";
nodeId?: string;
gitSetupMode?: "existing" | "init" | "clone";
cloneUrl?: string;
workspaceMode?: boolean;
taskPrefix?: string;
/** Confirmed "create anyway without a git repo" when git is missing on the host (never valid for clone mode). */
skipGitInit?: boolean;
}
export type DockerNodeConfigInfo = DockerNodeConfig;
export type { DockerNodeConfig };
/** Node information returned by node endpoints */
export interface NodeInfo {
id: NodeConfig["id"];
name: NodeConfig["name"];
type: NodeConfig["type"];
url?: NodeConfig["url"];
apiKey?: NodeConfig["apiKey"];
status: NodeStatus;
capabilities?: NodeConfig["capabilities"];
maxConcurrent: NodeConfig["maxConcurrent"];
createdAt: NodeConfig["createdAt"];
updatedAt: NodeConfig["updatedAt"];
dockerConfig?: DockerNodeConfigInfo;
}
/** Managed Docker node information returned by docker node endpoints */
export interface DockerNodeInfo {
id: string;
nodeId: string | null;
name: string;
nodeType: "docker-managed";
imageName: string;
imageTag: string;
containerId: string | null;
status: DockerNodeStatus;
hostConfig: DockerHostConfig;
envVars: Record<string, string>;
volumeMounts: DockerVolumeMount[];
resourceSizing: DockerResourceSizing;
extraClis: DockerExtraCli[];
persistentStorage: boolean;
reachableUrl: string | null;
apiKey: string | null;
errorMessage: string | null;
createdAt: string;
updatedAt: string;
}
export interface ManagedDockerNodeInfo {
id: string;
nodeId?: string;
name: string;
containerId?: string;
status: string;
hostConfig: {
type: "local" | "remote";
host?: string;
context?: string;
tlsOptions?: Record<string, unknown>;
};
envVars: Record<string, string>;
reachableUrl?: string;
imageName: string;
imageTag: string;
volumeMounts: Array<{ hostPath: string; containerPath: string; readOnly?: boolean }>;
persistentStorage: boolean;
resourceSizing?: { cpuLimit?: string; memoryLimit?: string };
errorMessage?: string;
linkedNode?: NodeInfo;
createdAt: string;
updatedAt: string;
}
export interface ContainerStatusInfo {
running: boolean;
status: string;
startedAt?: string;
finishedAt?: string;
exitCode?: number;
error?: string;
ports?: Record<string, string>;
}
/** Node discovered over local network mDNS/DNS-SD */
export interface DiscoveredNodeInfo {
name: string;
host: string;
port: number;
nodeType: "local" | "remote";
nodeId?: string;
discoveredAt: string;
lastSeenAt: string;
}
/** Input for creating a new node */
export interface NodeCreateInput {
name: string;
type: "local" | "remote";
url?: string;
apiKey?: string;
maxConcurrent?: number;
dockerConfig?: DockerNodeConfigInfo;
}
/** Input for assigning a project path for a specific node during onboarding. */
export interface NodeProjectMappingInput {
projectId: string;
path: string;
}
export interface RemoteNodeDiscoveredProject {
id: string;
name: string;
path: string;
status: "active" | "paused" | "errored" | "initializing";
isolationMode: "in-process" | "child-process";
}
export interface RemoteNodeProjectDiscoveryResult {
projects: RemoteNodeDiscoveredProject[];
}
/**
* Node onboarding payload used by dashboard UI.
*
* `projectMappings` is intentionally separate from `ProjectInfo.path` and `projects.nodeId`.
* It captures node-specific filesystem paths for selected existing projects.
*/
export interface NodeOnboardingInput extends NodeCreateInput {
projectMappings: NodeProjectMappingInput[];
}
/** Input for updating an existing node */
export type NodeUpdateInput = Partial<Pick<NodeCreateInput, "name" | "type" | "url" | "apiKey" | "maxConcurrent" | "dockerConfig">> & {
status?: NodeStatus;
capabilities?: string[];
};
/** Result from a node health check */
export interface NodeHealthCheckResult {
nodeId: string;
status: NodeStatus;
responseTimeMs?: number;
error?: string;
checkedAt: string;
}
/** Runtime metrics for a node */
export interface NodeMetrics {
nodeId: string;
activeTaskCount: number;
inFlightAgentCount: number;
uptimeMs: number;
lastActivityAt?: string;
}
/** Options for fetching activity feed */
export interface FeedOptions {
limit?: number;
since?: string;
projectId?: string;
type?: ActivityFeedEntry["type"];
}
/** Global concurrency state across all projects */
export interface GlobalConcurrencyState {
globalMaxConcurrent: number;
currentlyActive: number;
queuedCount: number;
projectsActive: Record<string, number>;
}
/** First run status response */
export interface FirstRunStatus {
hasProjects: boolean;
singleProjectPath: string | null;
}
/** Setup state for first-run wizard */
export interface SetupState {
/** The first-run state: fresh-install, setup-wizard, normal-operation */
state: "fresh-install" | "setup-wizard" | "normal-operation";
/** Projects detected on the filesystem (not yet registered) */
detectedProjects: Array<{
path: string;
name: string;
hasDb: boolean;
}>;
/** Whether the central database exists */
hasCentralDb: boolean;
/** Projects already registered in the central database */
registeredProjects: Array<{
id: string;
name: string;
path: string;
}>;
}
/** Input for completing setup */
export interface CompleteSetupInput {
projects: Array<{
path: string;
name: string;
isolationMode?: "in-process" | "child-process";
}>;
}
/** Result of completing setup */
export interface CompleteSetupResult {
success: boolean;
projectsRegistered: string[];
errors: string[];
}
/** Fetch all registered projects */
export function fetchProjects(): Promise<ProjectInfo[]> {
return api<ProjectInfo[]>("/projects");
}
/** Dashboard-facing mapping contract for project availability on nodes. */
export interface ProjectNodeAvailability {
nodeId: string;
nodeName?: string;
path: string;
available: boolean;
}
/** Project info with source node metadata (added by server for remote projects). */
export interface ProjectInfoWithSource extends ProjectInfo {
/** Name of the source node (added by server for remote projects). */
_sourceNodeName?: string;
/** Normalized per-node project mappings for dashboard UI. */
nodeMappings?: ProjectNodeAvailability[];
/** Compatibility fields accepted from in-flight server rollouts. */
projectNodeMappings?: ProjectNodeAvailability[];
pathMappings?: ProjectNodeAvailability[];
}
export function hasNodeMappingsSupport(project: ProjectInfoWithSource): boolean {
return Array.isArray(project.nodeMappings)
|| Array.isArray(project.projectNodeMappings)
|| Array.isArray(project.pathMappings);
}
/** Fetch all registered projects from all nodes (local + remote) */
export function fetchProjectsAcrossNodes(): Promise<ProjectInfoWithSource[]> {
return dedupe("/projects/across-nodes", () => api<ProjectInfoWithSource[]>("/projects/across-nodes"));
}
/** Fetch all registered nodes */
export function fetchNodes(): Promise<NodeInfo[]> {
return dedupe("/nodes", () => api<NodeInfo[]>("/nodes"));
}
/** Fetch discovery runtime status and active config. */
export function fetchDiscoveryStatus(): Promise<{ active: boolean; config: DiscoveryConfig | null }> {
return api<{ active: boolean; config: DiscoveryConfig | null }>("/discovery/status");
}
/** Fetch all managed Docker nodes */
export function listManagedDockerNodes(): Promise<DockerNodeInfo[]> {
return api<DockerNodeInfo[]>("/docker-nodes");
}
export function fetchManagedDockerNodes(): Promise<ManagedDockerNodeInfo[]> {
return api<ManagedDockerNodeInfo[]>("/docker/nodes");
}
export function fetchManagedDockerNode(id: string): Promise<ManagedDockerNodeInfo> {
return api<ManagedDockerNodeInfo>(`/docker/nodes/${encodeURIComponent(id)}`);
}
export function fetchManagedDockerNodeContainerStatus(id: string): Promise<ContainerStatusInfo> {
return api<ContainerStatusInfo>(`/docker/nodes/${encodeURIComponent(id)}/container-status`);
}
export function fetchDockerNodeLogs(id: string, options?: { tail?: number }): Promise<{ logs: string }> {
const params = new URLSearchParams();
if (typeof options?.tail === "number") {
params.set("tail", String(options.tail));
}
const suffix = params.size > 0 ? `?${params.toString()}` : "";
return api<{ logs: string }>(`/docker/nodes/${encodeURIComponent(id)}/logs${suffix}`);
}
/** Create a managed Docker node */
export function createManagedDockerNode(input: ManagedDockerNodeInput): Promise<DockerNodeInfo> {
return api<DockerNodeInfo>("/docker-nodes", {
method: "POST",
body: JSON.stringify(input),
});
}
/** Start local-network discovery service. */
export function startDiscovery(input?: {
broadcast?: boolean;
listen?: boolean;
port?: number;
}): Promise<{ success: boolean; config: DiscoveryConfig }> {
return api<{ success: boolean; config: DiscoveryConfig }>("/discovery/start", {
method: "POST",
body: JSON.stringify(input ?? {}),
});
}
/** Stop local-network discovery service. */
export function stopDiscovery(): Promise<{ success: boolean }> {
return api<{ success: boolean }>("/discovery/stop", {
method: "POST",
body: JSON.stringify({}),
});
}
/** Fetch currently discovered nodes from mDNS/DNS-SD. */
export function fetchDiscoveredNodes(): Promise<DiscoveredNodeInfo[]> {
return api<DiscoveredNodeInfo[]>("/discovery/nodes");
}
/** Register a discovered node into the central node registry. */
export function connectDiscoveredNode(input: {
name: string;
host: string;
port: number;
apiKey?: string;
}): Promise<NodeInfo> {
return api<NodeInfo>("/discovery/connect", {
method: "POST",
body: JSON.stringify(input),
});
}
/** Register a new node */
export function registerNode(input: NodeCreateInput): Promise<NodeInfo> {
return api<NodeInfo>("/nodes", {
method: "POST",
body: JSON.stringify(input),
});
}
/** Discover projects from a remote node before registering it. */
export function discoverRemoteNodeProjects(input: { url: string; apiKey?: string }): Promise<RemoteNodeProjectDiscoveryResult> {
return api<RemoteNodeProjectDiscoveryResult>("/nodes/discover-projects", {
method: "POST",
body: JSON.stringify(input),
});
}
/** Fetch a single node by ID */
export function fetchNode(id: string): Promise<NodeInfo> {
return api<NodeInfo>(`/nodes/${encodeURIComponent(id)}`);
}
/** Fetch all project path mappings for a node */
export function fetchNodePathMappings(nodeId: string): Promise<ProjectNodePathMapping[]> {
return api<ProjectNodePathMapping[]>(`/nodes/${encodeURIComponent(nodeId)}/path-mappings`);
}
/** Update an existing node */
export function updateNode(id: string, updates: NodeUpdateInput): Promise<NodeInfo> {
return api<NodeInfo>(`/nodes/${encodeURIComponent(id)}`, {
method: "PATCH",
body: JSON.stringify(updates),
});
}
/** Fetch sanitized docker config for a node */
export function fetchDockerNodeConfig(nodeId: string): Promise<DockerNodeConfigInfo | null> {
return api<DockerNodeConfigInfo | null>(`/nodes/${encodeURIComponent(nodeId)}/docker-config`);
}
/** Replace full docker config for a node */
export function replaceDockerNodeConfig(nodeId: string, config: DockerNodeConfig): Promise<DockerNodeConfigInfo> {
return api<DockerNodeConfigInfo>(`/nodes/${encodeURIComponent(nodeId)}/docker-config`, {
method: "PUT",
body: JSON.stringify(config),
});
}
/** Patch docker config for a node */
export function updateDockerNodeConfig(nodeId: string, config: Partial<DockerNodeConfig>): Promise<DockerNodeConfigInfo> {
return api<DockerNodeConfigInfo>(`/nodes/${encodeURIComponent(nodeId)}/docker-config`, {
method: "PATCH",
body: JSON.stringify(config),
});
}
/** Fetch docker config diff status for a node */
export function fetchDockerConfigDiff(nodeId: string): Promise<{
persistedVersion: number;
deployedVersion: number | null;
needsRecreate: boolean;
}> {
return api<{ persistedVersion: number; deployedVersion: number | null; needsRecreate: boolean }>(
`/nodes/${encodeURIComponent(nodeId)}/docker-config/diff`,
);
}
/** Unregister a node */
export function unregisterNode(id: string): Promise<void> {
return api<void>(`/nodes/${encodeURIComponent(id)}`, {
method: "DELETE",
});
}
/** Trigger a node health check */
export async function checkNodeHealth(id: string): Promise<NodeHealthCheckResult> {
const result = await api<Partial<NodeHealthCheckResult> & { status: NodeStatus }>(`/nodes/${encodeURIComponent(id)}/health-check`, {
method: "POST",
});
return {
nodeId: result.nodeId ?? id,
status: result.status,
responseTimeMs: result.responseTimeMs,
error: result.error,
checkedAt: result.checkedAt ?? new Date().toISOString(),
};
}
/** Fetch runtime metrics for a node */
export async function fetchNodeMetrics(id: string): Promise<SystemMetrics | null> {
return api<SystemMetrics | null>(`/nodes/${encodeURIComponent(id)}/metrics`);
}
/** Fetch full mesh topology state (all nodes with their metrics and known peers) */
export async function fetchMeshState(): Promise<MeshClusterSnapshot> {
return api<MeshClusterSnapshot>("/mesh/state");
}
/*
* FNXC:MeshSharedPg 2026-06-25-00:00:
* With the mesh on shared PostgreSQL, the dashboard needs to surface which
* engines are actively connected to the shared DB, their in-flight tasks, and
* heartbeat status. GET /api/mesh/engines joins the local engineManager with
* the central node registry and per-project health. The shape matches the
* MeshTopology `engines` prop (MeshEngineStatus) so the dashboard can render it
* without transformation.
*/
export interface MeshEnginesResponse {
collectedAt: string;
backend: string;
engines: MeshEngineStatusApi[];
}
/** Per-engine status entry returned by GET /api/mesh/engines. Mirrors MeshEngineStatus. */
export interface MeshEngineStatusApi {
projectId: string;
projectName?: string;
projectPath?: string;
workingDirectory?: string;
runtimeStatus: string;
inFlightTasks: number;
activeAgents: number;
lastActivityAt?: string;
memoryBytes?: number;
nodeId?: string;
}
/** Fetch active engine connections reading from shared PG (GET /api/mesh/engines). */
export async function fetchMeshEngines(): Promise<MeshEnginesResponse> {
return api<MeshEnginesResponse>("/mesh/engines");
}
/** Browse directory entries for the directory picker */
export interface BrowseDirectoryResult {
currentPath: string;
parentPath: string | null;
entries: Array<{ name: string; path: string; hasChildren: boolean }>;
}
export function browseDirectory(
path?: string,
showHidden?: boolean,
nodeId?: string,
localNodeId?: string,
): Promise<BrowseDirectoryResult> {
const effectiveNodeId = nodeId && nodeId !== localNodeId ? nodeId : undefined;
const params = new URLSearchParams();
if (path) params.set("path", path);
if (showHidden) params.set("showHidden", "true");
if (effectiveNodeId) params.set("nodeId", effectiveNodeId);
const token = getAuthToken();
if (token) {
params.set("fn_token", token);
}
const qs = params.toString();
const fullPath = `/browse-directory${qs ? `?${qs}` : ""}`;
return api<BrowseDirectoryResult>(fullPath);
}
/** Create a new directory */
export function createDirectory(path: string): Promise<{ success: true; path: string }> {
return api<{ success: true; path: string }>("/create-directory", {
method: "POST",
body: JSON.stringify({ path }),
});
}
/** Register a new project */
export function registerProject(input: ProjectCreateInput): Promise<ProjectInfo> {
return api<ProjectInfo>("/projects", {
method: "POST",
body: JSON.stringify(input),
});
}
/** Detect git sub-repos in a directory (workspace mode detection) */
export function detectWorkspace(path: string): Promise<{ repos: string[]; isWorkspace: boolean }> {
return api<{ repos: string[]; isWorkspace: boolean }>("/projects/detect-workspace", {
method: "POST",
body: JSON.stringify({ path }),
});
}
/** Unregister a project */
export function unregisterProject(id: string): Promise<void> {
return api<void>(`/projects/${encodeURIComponent(id)}`, {
method: "DELETE",
});
}
/** Fetch all per-node path mappings for a project */
export function fetchProjectPathMappings(projectId: string): Promise<ProjectNodePathMapping[]> {
return api<ProjectNodePathMapping[]>(`/projects/${encodeURIComponent(projectId)}/path-mappings`);
}
/** Fetch a single project-node path mapping */
export function fetchProjectPathMapping(projectId: string, nodeId: string): Promise<ProjectNodePathMapping> {
return api<ProjectNodePathMapping>(
`/projects/${encodeURIComponent(projectId)}/path-mappings/${encodeURIComponent(nodeId)}`,
);
}
/** Create or update a project-node path mapping */
export function upsertProjectPathMapping(
projectId: string,
nodeId: string,
path: string,
): Promise<ProjectNodePathMapping> {
return api<ProjectNodePathMapping>(
`/projects/${encodeURIComponent(projectId)}/path-mappings/${encodeURIComponent(nodeId)}`,
{
method: "PUT",
body: JSON.stringify({ path }),
},
);
}
/** Remove a project-node path mapping */
export function removeProjectPathMapping(projectId: string, nodeId: string): Promise<void> {
return api<void>(
`/projects/${encodeURIComponent(projectId)}/path-mappings/${encodeURIComponent(nodeId)}`,
{
method: "DELETE",
},
);
}
/** Fetch health metrics for a specific project */
export function fetchProjectHealth(id: string): Promise<ProjectHealth> {
return api<ProjectHealth>(`/projects/${encodeURIComponent(id)}/health`);
}
export function fetchCodebaseMetrics(id: string): Promise<CodebaseMetrics> {
return api<CodebaseMetrics>(`/projects/${encodeURIComponent(id)}/codebase-metrics`);
}
/** Fetch executor statistics for the status bar.
*
* Returns settings-based values and lastActivityAt.
* Counts are derived client-side from the tasks array.
*/
export function fetchExecutorStats(projectId?: string): Promise<{
globalPause: boolean;
enginePaused: boolean;
maxConcurrent: number;
lastActivityAt?: string;
}> {
const path = withProjectId("/executor/stats", projectId);
return dedupe(path, () => api<{
globalPause: boolean;
enginePaused: boolean;
maxConcurrent: number;
lastActivityAt?: string;
}>(path));
}
export interface SystemStatsSnapshot {
rss: number;
heapUsed: number;
heapTotal: number;
heapLimit: number;
external: number;
arrayBuffers: number;
// Null until at least two samples are available to compute process CPU delta.
cpuPercent: number | null;
loadAvg: [number, number, number];
cpuCount: number;
systemTotalMem: number;
systemFreeMem: number;
pid: number;
nodeVersion: string;
platform: string;
}
export interface TaskStatsSnapshot {
total: number;
byColumn: Record<string, number>;
active: number;
agents: {
idle: number;
active: number;
running: number;
error: number;
};
}
export interface SystemStatsResponse {
systemStats: SystemStatsSnapshot;
taskStats: TaskStatsSnapshot;
vitestProcessCount?: number;
vitestLastAutoKillAt?: string | null;
}
export interface KillVitestResponse {
killed: number;
pids: number[];
}
export interface GithubSourceIssueClosedAtBackfillResult {
scanned: number;
filled: number;
skipped: number;
errors: number;
hasMore: boolean;
}
/*
FNXC:CommandCenter 2026-06-21-00:00:
The Command Center System area keeps the direct local /system-stats client and uses the explicit /nodes/:id/system-stats route for selected remote nodes so authenticated node proxying stays server-side and local project scoping is not forwarded across nodes.
*/
export function fetchSystemStats(projectId?: string): Promise<SystemStatsResponse> {
return api<SystemStatsResponse>(withProjectId("/system-stats", projectId));
}
export function fetchNodeSystemStats(nodeId: string, projectId?: string): Promise<SystemStatsResponse> {
return api<SystemStatsResponse>(withProjectId(`/nodes/${encodeURIComponent(nodeId)}/system-stats`, projectId));
}
export function killVitestProcesses(projectId?: string, nodeId?: string, localNodeId?: string): Promise<KillVitestResponse> {
return proxyApi<KillVitestResponse>(withProjectId("/kill-vitest", projectId), {
method: "POST",
nodeId,
localNodeId,
});
}
/**
* FNXC:GithubSourceIssueBackfill 2026-06-18-19:20:
* Thin client for the FN-6674 manual source-issue closed-at backfill endpoint. Callers own bounded pagination until `hasMore === false`; this helper keeps the GitHub lookup in the explicit operator action path and out of analytics/render-time data loading.
*/
export function apiBackfillGithubSourceIssueClosedAt(
options: { offset?: number; limit?: number } = {},
projectId?: string,
): Promise<GithubSourceIssueClosedAtBackfillResult> {
return api<GithubSourceIssueClosedAtBackfillResult>(
withProjectId("/git/github/backfill-source-issue-closed-at", projectId),
{
method: "POST",
body: JSON.stringify({ offset: options.offset, limit: options.limit }),
},
);
}
/** Fetch unified activity feed */
export function fetchActivityFeed(options?: FeedOptions): Promise<ActivityFeedEntry[]> {
const params = new URLSearchParams();
if (options?.limit !== undefined) params.set("limit", String(options.limit));
if (options?.since) params.set("since", options.since);
if (options?.projectId) params.set("projectId", options.projectId);
if (options?.type) params.set("type", options.type);
const query = params.size > 0 ? `?${params.toString()}` : "";
return api<ActivityFeedEntry[]>(`/activity-feed${query}`);
}
/** Pause a project */
export function pauseProject(id: string): Promise<ProjectInfo> {
return api<ProjectInfo>(`/projects/${encodeURIComponent(id)}/pause`, {
method: "POST",
});
}
/** Resume a paused project */
export function resumeProject(id: string): Promise<ProjectInfo> {
return api<ProjectInfo>(`/projects/${encodeURIComponent(id)}/resume`, {
method: "POST",
});
}
/** Fetch first run status to detect if user needs setup wizard */
export function fetchFirstRunStatus(): Promise<FirstRunStatus> {
return api<FirstRunStatus>("/first-run-status");
}
/** Fetch detailed setup state including detected projects */
export function fetchSetupState(): Promise<SetupState> {
return api<SetupState>("/setup-state");
}
/** Complete first-run setup by registering projects */
export function completeSetup(input: CompleteSetupInput): Promise<CompleteSetupResult> {
return api<CompleteSetupResult>("/complete-setup", {
method: "POST",
body: JSON.stringify(input),
});
}
/** Fetch global concurrency state */
export function fetchGlobalConcurrency(): Promise<GlobalConcurrencyState> {
return api<GlobalConcurrencyState>("/global-concurrency");
}
/*
FNXC:CapacityModel 2026-07-30-19:40 (finishing the cross-project cap deletion):
`updateGlobalConcurrency` is DELETED. It PUT to `/api/global-concurrency`, a route removed when the
machine-wide cap went (capacity is two numbers PER PROJECT), so the only thing this client could do was
call an endpoint that no longer exists. Measured: ZERO callers — the sole reference was the barrel
re-export in `legacy.ts`, which is gone with it.
`fetchGlobalConcurrency` above SURVIVES on purpose: the GET route remains and serves live utilization
TELEMETRY ("N running, all projects") for the footer and Command Center. Nothing gates on it; it is a
read, not a limiter.
*/
/** Fetch tasks for a specific project */
export function fetchProjectTasks(projectId: string, limit?: number, offset?: number): Promise<Task[]> {
const params = new URLSearchParams();
params.set("projectId", projectId);
if (limit !== undefined) params.set("limit", String(limit));
if (offset !== undefined) params.set("offset", String(offset));
return api<Task[]>(`/tasks?${params.toString()}`);
}
/** Fetch project-specific config */
export function fetchProjectConfig(projectId: string): Promise<{ maxConcurrent: number; rootDir: string }> {
return api<{ maxConcurrent: number; rootDir: string }>(`/projects/${encodeURIComponent(projectId)}/config`);
}
/** Detected project information */
export interface DetectedProject {
path: string;
suggestedName: string;
existing: boolean;
}
/** Detect projects in a base path */
export function detectProjects(basePath?: string): Promise<{ projects: DetectedProject[] }> {
return api<{ projects: DetectedProject[] }>("/projects/detect", {
method: "POST",
body: JSON.stringify({ basePath }),
});
}
/** Fetch a single project by ID */
export function fetchProject(id: string): Promise<ProjectInfo> {
return api<ProjectInfo>(`/projects/${encodeURIComponent(id)}`);
}
/** Update an existing project */
export function updateProject(id: string, updates: Partial<ProjectInfo>): Promise<ProjectInfo> {
return api<ProjectInfo>(`/projects/${encodeURIComponent(id)}`, {
method: "PATCH",
body: JSON.stringify(updates),
});
}