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453 changed files with 2081 additions and 72253 deletions
-1
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@@ -8,7 +8,6 @@ coverage
.env.local
*.tsbuildinfo
.pnpm-store
__pycache__/
docs/reports/
# Step-CA dev password — real file is gitignored; commit only the .example
+1 -1
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@@ -1 +1 @@
pnpm preflight && pnpm typecheck && pnpm lint && pnpm format:check
pnpm typecheck && pnpm lint && pnpm format:check
+4 -4
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@@ -1,5 +1,5 @@
@mosaicstack:registry=https://git.mosaicstack.dev/api/packages/mosaicstack/npm/
# HOME resolves to /root in the ci-base image, preserving its warmed-store path.
# Non-root checkouts use their own HOME. Override without editing this file via
# NPM_CONFIG_STORE_DIR (pnpm's environment form of the store-dir setting).
store-dir=${HOME}/.local/share/pnpm/store
# Pin the pnpm store to the same path the ci-base image warms (Dockerfile.ci),
# so the pipeline `pnpm install --prefer-offline` consumes the baked store
# instead of repopulating a fresh one.
store-dir=/root/.local/share/pnpm/store
-9
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@@ -4,15 +4,6 @@ pnpm-lock.yaml
**/node_modules
**/drizzle
**/.next
# Python build/test artifacts — same category as node_modules/dist/.next above.
# Prettier must never scan generated trees; without these a local venv poisons
# `pnpm format:check` with thousands of third-party files.
**/venv
**/__pycache__
**/.mypy_cache
**/.pytest_cache
**/htmlcov
.claude/
docs/tess/TASKS.md
docs/scratchpads/
packages/mosaic/src/fleet/testdata/documentation-publication-v1/inline-migration-v1.json
-21
View File
@@ -41,11 +41,6 @@ steps:
# (Constitution + dispatcher + each RUNTIME.md slice). See DESIGN §7 / R9.
- bash packages/mosaic/framework/tools/quality/scripts/check-resident-budget.sh --self-test
- bash packages/mosaic/framework/tools/quality/scripts/check-resident-budget.sh
# Test-membership guard (#1017): also first link of test:framework-shell.
# Invoked from BOTH surfaces it audits (F2, PR #1018) — the guard is link
# [0] of the pnpm chain, so severing that chain would silence it together
# with everything it guards; this direct line keeps one instrument running.
- bash packages/mosaic/framework/tools/quality/scripts/check-test-enumeration.sh
# Blocking gate (#791): a framework upgrade must never write or delete an
# operator-owned path. The HARD GATE proves an unanticipated operator sentinel
@@ -103,22 +98,6 @@ steps:
DATABASE_URL: postgresql://mosaic:mosaic@ci-postgres:5432/mosaic
commands:
- *enable_pnpm
# openssl (#912) is the wake HMAC signer: the digest H1/H2, beacon B12,
# and install I8 legs hard-require it in CI. It is baked into ci-base via
# Dockerfile.ci, but ci-base only rebuilds on push-to-main/tag — this
# `apk add` guarantees openssl is present on PR pipelines too (and is a
# fast no-op once the rebuilt image already ships it).
- apk add --no-cache openssl
# Pi runtime (Invariant R): invariant_r_unittest.py hard-requires an
# installed `pi` binary at exactly this measured version — the test
# boots Pi's real tool registry to prove the read-only carve-out
# resolves to real, unshadowed builtins, and fails loud (by design)
# when the runtime is absent or drifts. The canonical Pi is
# @earendil-works/[email protected] exactly (@mariozechner/* is
# embedded-legacy). Step-level install because ci-base image publishes
# are currently blocked on registry auth; fold into Dockerfile.ci once
# that is fixed, keeping this as a fast no-op guard.
- npm install -g @earendil-works/[email protected]
# postgresql-client (pg_isready) is baked into ci-base.
# Wait up to 60s for CI postgres to be ready; fail fast if it never comes up.
- |
+5 -104
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@@ -1,5 +1,5 @@
# Build, publish npm packages, and push Docker images
# Runs on main for stable publishes and on next for integration-line prereleases/images
# Runs only on main branch push/tag
variables:
# Pre-baked CI base (see .woodpecker/ci-image.yml): node:24-alpine +
@@ -23,21 +23,9 @@ variables:
- 'docs/**'
- '**/*.md'
- '.woodpecker/**'
- event: [push, manual]
branch: next
- &main_image_build_when
- event: tag
- event: [push, manual]
branch: main
path:
exclude:
- 'packages/mosaic/**'
- 'docs/**'
- '**/*.md'
- '.woodpecker/**'
when:
- branch: [main, next]
- branch: [main]
event: [push, manual, tag]
steps:
@@ -115,84 +103,6 @@ steps:
depends_on:
- build
publish-next-npm:
image: *node_image
# Durable @next integration-line publish. Runs only on next; never writes
# the latest dist-tag and never commits the computed prerelease versions.
when:
- event: [push, manual]
branch: next
environment:
NPM_TOKEN:
from_secret: gitea_token
CI_COMMIT_BRANCH: ${CI_COMMIT_BRANCH}
CI_PIPELINE_NUMBER: ${CI_PIPELINE_NUMBER}
commands:
- *enable_pnpm
- |
if [ "$CI_COMMIT_BRANCH" != "next" ]; then
echo "[publish-next] FATAL: publish-next-npm may only run on next (got '$CI_COMMIT_BRANCH')" >&2
exit 1
fi
if [ -z "$CI_PIPELINE_NUMBER" ]; then
echo "[publish-next] FATAL: CI_PIPELINE_NUMBER is required for prerelease versioning" >&2
exit 1
fi
echo "//git.mosaicstack.dev/api/packages/mosaicstack/npm/:_authToken=$NPM_TOKEN" > ~/.npmrc
echo "@mosaicstack:registry=https://git.mosaicstack.dev/api/packages/mosaicstack/npm/" >> ~/.npmrc
DIST_TAGS_JSON="$(npm view @mosaicstack/mosaic dist-tags --registry https://git.mosaicstack.dev/api/packages/mosaicstack/npm/ --json)"
DIST_TAGS_JSON="$DIST_TAGS_JSON" node -e 'const tags = JSON.parse(process.env.DIST_TAGS_JSON || "{}"); if (!tags || typeof tags !== "object" || !Object.hasOwn(tags, "latest")) { throw new Error("Gitea npm registry did not return a usable dist-tags object"); } console.log("[publish-next] registry dist-tags OK: latest=" + tags.latest);'
node <<'NODE'
const fs = require('node:fs');
const path = require('node:path');
const pipelineNumber = process.env.CI_PIPELINE_NUMBER;
const roots = ['apps', 'packages', 'plugins'];
const updated = [];
function walk(dir) {
if (!fs.existsSync(dir)) return;
for (const entry of fs.readdirSync(dir, { withFileTypes: true })) {
if (entry.name === 'node_modules' || entry.name === 'dist' || entry.name === '.turbo') continue;
const fullPath = path.join(dir, entry.name);
if (entry.isDirectory()) {
const packagePath = path.join(fullPath, 'package.json');
if (fs.existsSync(packagePath)) updatePackage(packagePath);
walk(fullPath);
}
}
}
function updatePackage(packagePath) {
const manifest = JSON.parse(fs.readFileSync(packagePath, 'utf8'));
if (!manifest.name?.startsWith('@mosaicstack/') || manifest.private) return;
const stableMatch = /^(\d+)\.(\d+)\.(\d+)(?:[-+].*)?$/.exec(manifest.version);
if (!stableMatch) {
throw new Error(manifest.name + " has unsupported semver version '" + manifest.version + "'");
}
const [, major, minor, patch] = stableMatch;
const oldVersion = manifest.version;
manifest.version = major + '.' + minor + '.' + (Number(patch) + 1) + '-next.' + pipelineNumber;
fs.writeFileSync(packagePath, JSON.stringify(manifest, null, 2) + '\n');
updated.push(manifest.name + ' ' + oldVersion + ' -> ' + manifest.version);
}
for (const root of roots) walk(root);
if (updated.length === 0) throw new Error('No publishable @mosaicstack/* packages found');
console.log('[publish-next] computed prerelease versions for ' + updated.length + ' packages:');
for (const line of updated) console.log('[publish-next] ' + line);
NODE
pnpm --filter "@mosaicstack/*" --filter "!@mosaicstack/web" --filter "!@mosaicstack/mosaic-as" publish --no-git-checks --access public --tag next
EXPECTED_VERSION="$(node -p "require('./packages/mosaic/package.json').version")"
RESOLVED_VERSION="$(npm view @mosaicstack/mosaic@next version --registry https://git.mosaicstack.dev/api/packages/mosaicstack/npm/)"
if [ "$RESOLVED_VERSION" != "$EXPECTED_VERSION" ]; then
echo "[publish-next] FATAL: @mosaicstack/mosaic@next resolved '$RESOLVED_VERSION', expected '$EXPECTED_VERSION'" >&2
exit 1
fi
echo "[publish-next] @mosaicstack/mosaic@next resolves to $RESOLVED_VERSION"
depends_on:
- build
# TODO: Uncomment when ready to publish to npmjs.org
# publish-npmjs:
# image: *node_image
@@ -224,17 +134,8 @@ steps:
- echo "{\"auths\":{\"git.mosaicstack.dev\":{\"username\":\"$REGISTRY_USER\",\"password\":\"$REGISTRY_PASS\"}}}" > /kaniko/.docker/config.json
- |
DESTINATIONS="--destination git.mosaicstack.dev/mosaicstack/stack/gateway:sha-${CI_COMMIT_SHA:0:7}"
if [ "$CI_COMMIT_BRANCH" = "next" ]; then
if [ -n "$CI_COMMIT_TAG" ]; then
echo "[publish] FATAL: next gateway publish must be sha-only; refusing tag '$CI_COMMIT_TAG'" >&2
exit 1
fi
echo "[publish] next gateway publish is sha-only"
elif [ "$CI_COMMIT_BRANCH" = "main" ]; then
if [ "$CI_COMMIT_BRANCH" = "main" ]; then
DESTINATIONS="$DESTINATIONS --destination git.mosaicstack.dev/mosaicstack/stack/gateway:latest"
elif [ -z "$CI_COMMIT_TAG" ]; then
echo "[publish] FATAL: gateway image publish may only run for main, next, or tag events" >&2
exit 1
fi
if [ -n "$CI_COMMIT_TAG" ]; then
DESTINATIONS="$DESTINATIONS --destination git.mosaicstack.dev/mosaicstack/stack/gateway:$CI_COMMIT_TAG"
@@ -245,7 +146,7 @@ steps:
build-appservice:
image: gcr.io/kaniko-project/executor:debug
when: *main_image_build_when
when: *image_build_when
environment:
REGISTRY_USER:
from_secret: gitea_username
@@ -271,7 +172,7 @@ steps:
build-web:
image: gcr.io/kaniko-project/executor:debug
when: *main_image_build_when
when: *image_build_when
environment:
REGISTRY_USER:
from_secret: gitea_username
+31 -70
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@@ -11,87 +11,48 @@
## Project Context
Mosaic Stack is a self-hosted, multi-user AI agent platform. It is a TypeScript monorepo with a NestJS gateway, Next.js dashboard, Pi SDK agent runtime, and Discord/Telegram plugin architecture.
Mosaic Stack is a self-hosted, multi-user AI agent platform. TypeScript monorepo with NestJS gateway, Next.js web dashboard, Pi SDK agent runtime, and plugin architecture for Discord/Telegram.
### Stack
## Package Map
- **API:** NestJS with Fastify (`apps/gateway`)
- **Web:** Next.js 16 with React 19 (`apps/web`)
- **ORM and database:** Drizzle ORM, PostgreSQL 17, and pgvector (`packages/db`)
- **Authentication:** BetterAuth (`packages/auth`)
- **Agent runtime:** Pi SDK (`apps/gateway`, `packages/mosaic`)
- **Queue:** Valkey 8 (`packages/queue`)
- **Build:** pnpm workspaces and Turborepo
- **CI:** Woodpecker CI
- **Observability:** OpenTelemetry and Jaeger
| Package | Purpose | Key Dependencies |
| ------------------ | ------------------------------- | -------------------------------- |
| `apps/gateway` | NestJS API + WebSocket hub | Fastify, Socket.IO, Pi SDK, OTEL |
| `apps/web` | Next.js dashboard | React 19, Tailwind |
| `packages/types` | Shared TypeScript contracts | class-validator |
| `packages/db` | Drizzle ORM schema + migrations | drizzle-orm, postgres |
| `packages/auth` | BetterAuth configuration | better-auth, @mosaicstack/db |
| `packages/brain` | Data layer (PG-backed) | @mosaicstack/db |
| `packages/queue` | Valkey task queue + MCP | ioredis |
| `packages/coord` | Mission coordination | @mosaicstack/queue |
| `packages/mosaic` | Unified `mosaic` CLI + TUI | Ink, Pi SDK, commander |
| `plugins/discord` | Discord channel plugin | discord.js |
| `plugins/telegram` | Telegram channel plugin | Telegraf |
### Package Map
## Architecture Rules
| Package | Purpose | Key Dependencies |
| ------------------ | ----------------------------- | -------------------------------- |
| `apps/gateway` | NestJS API + WebSocket hub | Fastify, Socket.IO, Pi SDK, OTEL |
| `apps/web` | Next.js dashboard | React 19, Tailwind |
| `packages/types` | Shared TypeScript contracts | class-validator |
| `packages/db` | Drizzle schema and migrations | drizzle-orm, postgres |
| `packages/auth` | BetterAuth configuration | better-auth, @mosaicstack/db |
| `packages/brain` | Structured data layer | @mosaicstack/db |
| `packages/queue` | Valkey task queue and MCP | ioredis |
| `packages/coord` | Mission coordination | @mosaicstack/queue |
| `packages/mosaic` | Unified `mosaic` CLI and TUI | Ink, Pi SDK, commander |
| `plugins/discord` | Discord channel plugin | discord.js |
| `plugins/telegram` | Telegram channel plugin | Telegraf |
## Architecture and Code Conventions
1. Gateway is the single API surface; all clients connect through it.
2. Pi SDK is ESM-only; gateway and CLI code must remain ESM.
3. Use `"type": "module"`, NodeNext module resolution, and `.js` extensions in imports.
4. Keep typed Socket.IO events in `@mosaicstack/types` to enforce client/server contracts.
5. Import OTEL tracing before NestJS bootstrap (`import './tracing.js'`).
6. Use explicit `@Inject()` decorators in NestJS because tsx/esbuild does not emit decorator metadata.
7. Keep DTOs in `*.dto.ts` files at module boundaries.
8. BetterAuth owns authentication tables; their schema is defined in `@mosaicstack/db`.
9. Create a task-specific scratchpad for non-trivial work.
1. Gateway is the single API surface — all clients connect through it
2. Pi SDK is ESM-only — gateway and CLI must use ESM
3. Socket.IO typed events defined in `@mosaicstack/types` enforce compile-time contracts
4. OTEL auto-instrumentation loads before NestJS bootstrap
5. BetterAuth manages auth tables; schema defined in `@mosaicstack/db`
6. Docker Compose provides PG (5433), Valkey (6380), OTEL Collector (4317/4318), Jaeger (16686)
7. Explicit `@Inject()` decorators required in NestJS (tsx/esbuild doesn't emit decorator metadata)
## Development Workflow
Requirements: Node.js 20+, pnpm 10.6.2, and Docker Compose when optional local services are needed.
```bash
pnpm install --frozen-lockfile
pnpm preflight
# Optional local queue service only; do not start the full Compose stack.
docker compose up -d valkey
docker compose up -d # Infrastructure
pnpm install # Dependencies
pnpm typecheck && pnpm lint && pnpm format:check # Quality gates
```
The pre-push hook requires:
## Repo-Specific Notes
```bash
pnpm preflight && pnpm typecheck && pnpm lint && pnpm format:check
```
Software delivery also requires the applicable tests. Common repository commands are:
```bash
pnpm typecheck # TypeScript checks across the workspace
pnpm lint # ESLint across the workspace
pnpm test # Checkout tests and package Vitest suites
pnpm format:check # Prettier check
pnpm build # Build all packages and applications
```
## Database and Local Runtime Safety
- Current local data-layer work uses in-process PGlite; leave `DATABASE_URL` unset.
- PostgreSQL execution is held until KBN-101-00, KBN-101-03, and KBN-101-05 land.
- Do not invoke a migration runner, initialization SQL, or the Compose PostgreSQL service from this checkout.
- Do not start Gateway/Web or run root `pnpm dev` as a local PGlite route. The current dotenv loader can inherit a daemon PostgreSQL DSN; KBN-101-02 must make that path fail closed first.
- Migration artifact generation is offline and does not authorize PostgreSQL access:
```bash
pnpm --filter @mosaicstack/db db:generate
```
- DTOs in `*.dto.ts` files at module boundaries
- ESM everywhere (`"type": "module"`, `.js` extensions in imports)
- NodeNext module resolution in all tsconfigs
- Scratchpads are mandatory for non-trivial tasks
## docs/TASKS.md — Schema (CANONICAL)
+44 -3
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@@ -1,5 +1,46 @@
# Claude Compatibility Pointer
# CLAUDE.md — Mosaic Stack
@AGENTS.md
## Project
Do not add project guidance here. Keep `AGENTS.md` authoritative so every agent runtime receives the same instructions.
Self-hosted, multi-user AI agent platform. TypeScript monorepo.
## Stack
- **API**: NestJS + Fastify adapter (`apps/gateway`)
- **Web**: Next.js 16 + React 19 (`apps/web`)
- **ORM**: Drizzle ORM + PostgreSQL 17 + pgvector (`packages/db`)
- **Auth**: BetterAuth (`packages/auth`)
- **Agent**: Pi SDK (`packages/agent`, `packages/mosaic`)
- **Queue**: Valkey 8 (`packages/queue`)
- **Build**: pnpm workspaces + Turborepo
- **CI**: Woodpecker CI
- **Observability**: OpenTelemetry → Jaeger
## Commands
```bash
pnpm typecheck # TypeScript check (all packages)
pnpm lint # ESLint (all packages)
pnpm format:check # Prettier check
pnpm test # Vitest (all packages)
pnpm build # Build all packages
# Database
pnpm --filter @mosaicstack/db db:generate # Offline migration artifact generation only
# PostgreSQL execution is held until KBN-101-00/-03/-05 land. Do not invoke a runner,
# init SQL, or Compose PostgreSQL service from this checkout.
# Dev: local PGlite data-layer work needs no PostgreSQL. Optional local queue service only:
docker compose up -d valkey
# Do not start Gateway/Web or root pnpm dev as a local PGlite route: the current unguarded dotenv
# loader can inherit a daemon PostgreSQL DSN. KBN-101-02 must make that state fail closed first.
```
## Conventions
- ESM everywhere (`"type": "module"`, `.js` extensions in imports)
- NodeNext module resolution
- Explicit `@Inject()` decorators in NestJS (tsx/esbuild doesn't support emitDecoratorMetadata)
- DTOs in `*.dto.ts` files at module boundaries
- OTEL tracing imported before NestJS bootstrap (`import './tracing.js'`)
- All three gates must pass before push: typecheck, lint, format:check
+1 -4
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@@ -25,10 +25,7 @@ FROM node:24-alpine
# postgresql-client used by the test step's pg_isready readiness probe. `bash`,
# `git`, and `jq` are baked here too — framework shell tests and the shipped
# Codex review wrappers require them without per-run installation in ci.yml.
# `openssl` (#912) is the non-circular HMAC signer for the wake trust layer:
# the digest H1/H2, beacon B12, and install I8 legs hard-require it in CI so the
# §4 G6 evidence comes from an actually-run HMAC leg, not a skipped one.
RUN apk add --no-cache python3 make g++ postgresql-client bash git jq openssl
RUN apk add --no-cache python3 make g++ postgresql-client bash git jq
# Pin pnpm to the repo's packageManager version via corepack.
RUN corepack enable && corepack prepare [email protected] --activate
+4 -34
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@@ -30,16 +30,6 @@ This installs both components:
| **Framework** | Bash launcher, guides, runtime configs, tools, skills | `~/.config/mosaic/` |
| **@mosaicstack/mosaic** | Unified `mosaic` CLI — TUI, gateway client, wizard, auto-updater | `~/.npm-global/bin/` |
### Install lanes
| Lane | Command | Use when | Source |
| ------------------------ | ------------------------------------- | ----------------------------------------------------- | ----------------------------------------------------------------------- |
| Stable | `bash tools/install.sh` | You want the released Mosaic CLI/framework | npm registry `@mosaicstack/mosaic@latest` + framework archive at `main` |
| Prerelease integration | `bash tools/install.sh --next` | You want the current `next` integration branch | Build-from-source at `next` |
| Contributor/source build | `bash tools/install.sh --dev --ref X` | You are testing a branch before release; `--ref` wins | Build-from-source at the requested ref |
`--next` is shorthand for the prerelease integration lane: it enables source-build mode and uses `next` unless an explicit `--ref` or `MOSAIC_REF` is provided.
After install, the wizard runs automatically or you can invoke it manually:
```bash
@@ -48,13 +38,9 @@ mosaic wizard # Full guided setup (gateway install → verify)
### Requirements
- Node.js ≥ 22
- Node.js ≥ 20
- npm (for global @mosaicstack/mosaic install)
- One or more runtimes:
- [Claude Code](https://docs.anthropic.com/en/docs/claude-code)
- [Codex](https://github.com/openai/codex)
- [OpenCode](https://opencode.ai)
- [Pi](https://pi.dev)
- One or more runtimes: [Claude Code](https://docs.anthropic.com/en/docs/claude-code), [Codex](https://github.com/openai/codex), [OpenCode](https://opencode.ai), or [Pi](https://github.com/mariozechner/pi-coding-agent)
## Usage
@@ -204,7 +190,7 @@ Consent state is persisted in config. Remote upload is a no-op until you run `mo
### Prerequisites
- Node.js ≥ 22
- Node.js ≥ 20
- pnpm 10.6+
- Docker & Docker Compose
@@ -215,21 +201,8 @@ git clone [email protected]:mosaicstack/stack.git
cd stack
# Install dependencies. The local tier uses in-process PGlite; leave DATABASE_URL unset.
# The pnpm store defaults to $HOME/.local/share/pnpm/store. Override it without
# editing the checkout with NPM_CONFIG_STORE_DIR=$HOME/another-store if needed.
pnpm install
# Verify dependencies and generated state before running source-quality gates.
# Missing dependencies exit 42; stale/foreign apps/web/.next state exits 43.
# The web build certifies its exact standalone symlink manifest; added, removed,
# retargeted, or manifest-only-tampered generated links also exit 43. This detects
# accidental, independent, stale, and foreign-residue mutation—the class exposed by
# a five-month-stale .next that produced 19 phantom TS2307 errors.
# It does NOT defend against a same-UID actor that can rewrite both manifest and
# marker consistently (CWE-345). RM-59 tracks the required executor/spine-side
# trust anchor outside worktree authority.
pnpm preflight
# Optional local queue service only. This does not start PostgreSQL.
docker compose up -d valkey
@@ -257,7 +230,6 @@ Gateway start command until KBN-101-02 makes that state fail closed.
### Quality Gates
```bash
pnpm preflight # Checkout/dependency/generated-state validation
pnpm typecheck # TypeScript type checking (all packages)
pnpm lint # ESLint (all packages)
pnpm test # Vitest (all packages)
@@ -375,9 +347,7 @@ The CLI also performs a background update check on every invocation (cached for
bash tools/install.sh --check # Version check only
bash tools/install.sh --framework # Framework only (skip npm CLI)
bash tools/install.sh --cli # npm CLI only (skip framework)
bash tools/install.sh --next # Prerelease lane: source build from next
bash tools/install.sh --dev # Contributor lane: source build at --ref/main
bash tools/install.sh --ref v1.0 # Install from a specific git ref (--ref wins over --next)
bash tools/install.sh --ref v1.0 # Install from a specific git ref
bash tools/install.sh --yes # Non-interactive, accept all defaults
bash tools/install.sh --no-auto-launch # Skip auto-launch of wizard
```
@@ -417,7 +417,7 @@ describe('ConversationsController — search endpoint', () => {
},
];
brain = createMockBrain({ searchResults });
controller = new ConversationsController(brain as never, { runtimeMode: 'legacy' });
controller = new ConversationsController(brain as never);
});
it('returns matching messages for a valid search query', async () => {
@@ -479,7 +479,7 @@ describe('ConversationsController — search endpoint', () => {
describe('ConversationsController — message CRUD', () => {
it('listMessages returns 404 when conversation is not owned by user', async () => {
const brain = createMockBrain({ conversation: undefined });
const controller = new ConversationsController(brain as never, { runtimeMode: 'legacy' });
const controller = new ConversationsController(brain as never);
await expect(controller.listMessages(CONV_ID, { id: USER_ID })).rejects.toBeInstanceOf(
NotFoundException,
@@ -489,7 +489,7 @@ describe('ConversationsController — message CRUD', () => {
it('listMessages returns the messages for an owned conversation', async () => {
const msgs = [makeMessage('user', 'Test message'), makeMessage('assistant', 'Test reply')];
const brain = createMockBrain({ conversation: makeConversation(), messages: msgs });
const controller = new ConversationsController(brain as never, { runtimeMode: 'legacy' });
const controller = new ConversationsController(brain as never);
const result = await controller.listMessages(CONV_ID, { id: USER_ID });
@@ -500,7 +500,7 @@ describe('ConversationsController — message CRUD', () => {
it('addMessage returns the persisted message', async () => {
const brain = createMockBrain({ conversation: makeConversation() });
const controller = new ConversationsController(brain as never, { runtimeMode: 'legacy' });
const controller = new ConversationsController(brain as never);
const result = await controller.addMessage(
CONV_ID,
@@ -1,519 +0,0 @@
/**
* Federation M3 single-gateway integration tests (FED-M3-10).
*
* Covers MILESTONES.md M3 acceptance:
* - #6: malformed certificate OIDs fail with 401; valid cert + revoked grant fails with 403.
* - #7: max_rows_per_query caps list results.
*
* Strategy:
* - Real PostgreSQL via @mosaicstack/db.
* - Mocked TLS context/Fastify request shim for FederationAuthGuard.
* - Direct controller calls using the real POST /api/federation/v1/list/:resource contract.
*
* Run:
* FEDERATED_INTEGRATION=1 pnpm --filter @mosaicstack/gateway test -- \
* src/__tests__/integration/federation-m3-list.integration.test.ts
*/
import 'reflect-metadata';
import * as crypto from 'node:crypto';
import type { ExecutionContext } from '@nestjs/common';
import { Test, type TestingModule } from '@nestjs/testing';
import type { FastifyReply, FastifyRequest } from 'fastify';
import {
and,
createDb,
eq,
federationGrants,
federationPeers,
inArray,
missionTasks,
missions,
projects,
tasks,
teamMembers,
teams,
type Db,
type DbHandle,
users,
} from '@mosaicstack/db';
import { afterAll, beforeAll, describe, expect, it } from 'vitest';
import { DB } from '../../database/database.module.js';
import { GrantsService } from '../../federation/grants.service.js';
import { FederationAuthGuard } from '../../federation/server/federation-auth.guard.js';
import { FederationScopeService } from '../../federation/server/scope.service.js';
import { FederationListQueryService } from '../../federation/server/verbs/list-query.service.js';
import { ListController } from '../../federation/server/verbs/list.controller.js';
import {
makeMosaicIssuedCert,
makeSelfSignedCert,
} from '../../federation/__tests__/helpers/test-cert.js';
const run = process.env['FEDERATED_INTEGRATION'] === '1';
const PG_URL = process.env['DATABASE_URL'] ?? 'postgresql://mosaic:mosaic@localhost:5433/mosaic';
const RUN_ID = `fed-m3-10-${crypto.randomUUID()}`;
const CERT_SERIAL_HEX = crypto.randomUUID().replace(/-/g, '').toUpperCase();
interface TestIds {
readonly subjectUserId: string;
readonly otherUserId: string;
readonly peerId: string;
readonly revokedPeerId: string;
readonly activeGrantId: string;
readonly revokedGrantId: string;
readonly subjectProjectId: string;
readonly subjectMissionId: string;
readonly otherProjectId: string;
readonly teamId: string;
readonly unauthorizedTeamId: string;
readonly teamProjectId: string;
readonly taskIds: readonly string[];
readonly excludedTaskIds: readonly string[];
readonly subjectNoteId: string;
readonly otherUserNoteId: string;
}
function pemToDer(pem: string): Buffer {
return Buffer.from(
pem
.replace(/-----BEGIN CERTIFICATE-----/, '')
.replace(/-----END CERTIFICATE-----/, '')
.replace(/\s+/g, ''),
'base64',
);
}
function makeFederationRequest(certPem: string): FastifyRequest {
return {
raw: {
socket: {
getPeerCertificate: () => ({
raw: pemToDer(certPem),
serialNumber: CERT_SERIAL_HEX,
}),
},
},
} as unknown as FastifyRequest;
}
function makeGuardContext(request: FastifyRequest): {
readonly context: ExecutionContext;
readonly sent: { statusCode?: number; payload?: unknown };
} {
const sent: { statusCode?: number; payload?: unknown } = {};
const reply = {
status: (statusCode: number) => {
sent.statusCode = statusCode;
return {
header: () => ({
send: (payload: unknown) => {
sent.payload = payload;
},
}),
};
},
} as unknown as FastifyReply;
const context = {
switchToHttp: () => ({
getRequest: () => request,
getResponse: () => reply,
}),
} as unknown as ExecutionContext;
return { context, sent };
}
async function insertUser(db: Db, id: string, label: string): Promise<void> {
await db.insert(users).values({
id,
name: `${RUN_ID}-${label}`,
email: `${RUN_ID}-${label}@federation-test.invalid`,
emailVerified: false,
});
}
async function seedFixtures(db: Db): Promise<TestIds> {
const subjectUserId = `${RUN_ID}-subject`;
const otherUserId = `${RUN_ID}-other`;
const peerId = crypto.randomUUID();
const revokedPeerId = crypto.randomUUID();
const activeGrantId = crypto.randomUUID();
const revokedGrantId = crypto.randomUUID();
const subjectProjectId = crypto.randomUUID();
const subjectMissionId = crypto.randomUUID();
const otherProjectId = crypto.randomUUID();
const teamId = crypto.randomUUID();
const unauthorizedTeamId = crypto.randomUUID();
const teamProjectId = crypto.randomUUID();
const taskIds = [crypto.randomUUID(), crypto.randomUUID(), crypto.randomUUID()] as const;
const excludedTaskIds = [crypto.randomUUID(), crypto.randomUUID()] as const;
const subjectNoteId = crypto.randomUUID();
const otherUserNoteId = crypto.randomUUID();
await insertUser(db, subjectUserId, 'subject');
await insertUser(db, otherUserId, 'other');
await db.insert(teams).values([
{
id: teamId,
name: `${RUN_ID} allowed team`,
slug: `${RUN_ID}-allowed-team`,
ownerId: subjectUserId,
managerId: subjectUserId,
},
{
id: unauthorizedTeamId,
name: `${RUN_ID} unauthorized team`,
slug: `${RUN_ID}-unauthorized-team`,
ownerId: otherUserId,
managerId: otherUserId,
},
]);
await db.insert(teamMembers).values([
{ teamId, userId: subjectUserId, role: 'member' },
{ teamId: unauthorizedTeamId, userId: subjectUserId, role: 'member' },
]);
await db.insert(projects).values([
{
id: subjectProjectId,
name: `${RUN_ID} subject personal project`,
ownerType: 'user',
ownerId: subjectUserId,
},
{
id: otherProjectId,
name: `${RUN_ID} other personal project`,
ownerType: 'user',
ownerId: otherUserId,
},
{
id: teamProjectId,
name: `${RUN_ID} unauthorized team project`,
ownerType: 'team',
teamId: unauthorizedTeamId,
},
]);
await db.insert(missions).values({
id: subjectMissionId,
name: `${RUN_ID} subject mission`,
projectId: subjectProjectId,
userId: subjectUserId,
});
await db.insert(tasks).values([
{
id: taskIds[0],
title: `${RUN_ID} visible task 1`,
missionId: subjectMissionId,
createdAt: new Date('2026-06-25T03:00:00.000Z'),
updatedAt: new Date('2026-06-25T03:00:00.000Z'),
},
{
id: taskIds[1],
title: `${RUN_ID} visible task 2`,
projectId: subjectProjectId,
createdAt: new Date('2026-06-25T02:00:00.000Z'),
updatedAt: new Date('2026-06-25T02:00:00.000Z'),
},
{
id: taskIds[2],
title: `${RUN_ID} visible task 3`,
projectId: subjectProjectId,
createdAt: new Date('2026-06-25T01:00:00.000Z'),
updatedAt: new Date('2026-06-25T01:00:00.000Z'),
},
{
id: excludedTaskIds[0],
title: `${RUN_ID} other user task`,
projectId: otherProjectId,
createdAt: new Date('2026-06-25T04:00:00.000Z'),
updatedAt: new Date('2026-06-25T04:00:00.000Z'),
},
{
id: excludedTaskIds[1],
title: `${RUN_ID} unauthorized team task`,
projectId: teamProjectId,
createdAt: new Date('2026-06-25T05:00:00.000Z'),
updatedAt: new Date('2026-06-25T05:00:00.000Z'),
},
]);
await db.insert(missionTasks).values([
{
id: subjectNoteId,
missionId: subjectMissionId,
userId: subjectUserId,
notes: `${RUN_ID} subject visible note`,
createdAt: new Date('2026-06-25T03:30:00.000Z'),
updatedAt: new Date('2026-06-25T03:30:00.000Z'),
},
{
id: otherUserNoteId,
missionId: subjectMissionId,
userId: otherUserId,
notes: `${RUN_ID} other user note on subject mission`,
createdAt: new Date('2026-06-25T04:30:00.000Z'),
updatedAt: new Date('2026-06-25T04:30:00.000Z'),
},
]);
await db.insert(federationPeers).values([
{
id: peerId,
commonName: `${RUN_ID}-active-peer`,
displayName: `${RUN_ID} Active Peer`,
certPem: '-----BEGIN CERTIFICATE-----\nMOCK\n-----END CERTIFICATE-----\n',
certSerial: CERT_SERIAL_HEX,
certNotAfter: new Date(Date.now() + 86_400_000),
state: 'active',
},
{
id: revokedPeerId,
commonName: `${RUN_ID}-revoked-peer`,
displayName: `${RUN_ID} Revoked Peer`,
certPem: '-----BEGIN CERTIFICATE-----\nMOCK\n-----END CERTIFICATE-----\n',
certSerial: `${CERT_SERIAL_HEX}${RUN_ID.replace(/-/g, '').slice(0, 8).toUpperCase()}`,
certNotAfter: new Date(Date.now() + 86_400_000),
state: 'active',
},
]);
await db.insert(federationGrants).values([
{
id: activeGrantId,
peerId,
subjectUserId,
status: 'active',
scope: {
resources: ['tasks', 'notes'],
excluded_resources: [],
filters: {
tasks: { include_personal: true, include_teams: [] },
notes: { include_personal: true, include_teams: [] },
},
max_rows_per_query: 2,
},
},
{
id: revokedGrantId,
peerId,
subjectUserId,
status: 'revoked',
revokedAt: new Date(),
revokedReason: `${RUN_ID} revoked grant fixture`,
scope: {
resources: ['tasks'],
excluded_resources: [],
max_rows_per_query: 2,
},
},
]);
return {
subjectUserId,
otherUserId,
peerId,
revokedPeerId,
activeGrantId,
revokedGrantId,
subjectProjectId,
subjectMissionId,
otherProjectId,
teamId,
unauthorizedTeamId,
teamProjectId,
taskIds,
excludedTaskIds,
subjectNoteId,
otherUserNoteId,
};
}
async function cleanupFixtures(db: Db, ids: TestIds | undefined): Promise<void> {
if (!ids) {
return;
}
await db
.delete(missionTasks)
.where(inArray(missionTasks.id, [ids.subjectNoteId, ids.otherUserNoteId]))
.catch(() => {});
await db
.delete(tasks)
.where(inArray(tasks.id, [...ids.taskIds, ...ids.excludedTaskIds]))
.catch(() => {});
await db
.delete(missions)
.where(eq(missions.id, ids.subjectMissionId))
.catch(() => {});
await db
.delete(projects)
.where(inArray(projects.id, [ids.subjectProjectId, ids.otherProjectId, ids.teamProjectId]))
.catch(() => {});
await db
.delete(teamMembers)
.where(
and(
eq(teamMembers.userId, ids.subjectUserId),
inArray(teamMembers.teamId, [ids.teamId, ids.unauthorizedTeamId]),
),
)
.catch(() => {});
await db
.delete(teams)
.where(inArray(teams.id, [ids.teamId, ids.unauthorizedTeamId]))
.catch(() => {});
await db
.delete(federationGrants)
.where(inArray(federationGrants.id, [ids.activeGrantId, ids.revokedGrantId]))
.catch(() => {});
await db
.delete(federationPeers)
.where(inArray(federationPeers.id, [ids.peerId, ids.revokedPeerId]))
.catch(() => {});
await db
.delete(users)
.where(inArray(users.id, [ids.subjectUserId, ids.otherUserId]))
.catch(() => {});
}
describe.skipIf(!run)('federation M3 list verb — single-gateway integration', () => {
let handle: DbHandle;
let db: Db;
let moduleRef: TestingModule;
let guard: FederationAuthGuard;
let listController: ListController;
let ids: TestIds | undefined;
beforeAll(async () => {
handle = createDb(PG_URL);
db = handle.db;
ids = await seedFixtures(db);
moduleRef = await Test.createTestingModule({
controllers: [ListController],
providers: [
{ provide: DB, useValue: db },
GrantsService,
FederationAuthGuard,
FederationScopeService,
FederationListQueryService,
],
}).compile();
guard = moduleRef.get(FederationAuthGuard);
listController = moduleRef.get(ListController);
}, 30_000);
afterAll(async () => {
await moduleRef?.close().catch((e: unknown) => console.error('[fed-m3-10 cleanup]', e));
await cleanupFixtures(db, ids).catch((e: unknown) => console.error('[fed-m3-10 cleanup]', e));
await handle?.close().catch((e: unknown) => console.error('[fed-m3-10 cleanup]', e));
});
it('#6 — rejects a client cert with malformed/missing Mosaic OIDs with 401', async () => {
const malformedOidCert = await makeSelfSignedCert();
const request = makeFederationRequest(malformedOidCert);
const { context, sent } = makeGuardContext(request);
await expect(guard.canActivate(context)).resolves.toBe(false);
expect(sent.statusCode).toBe(401);
expect(sent.payload).toMatchObject({
error: {
code: 'unauthorized',
message: expect.stringContaining('missing required OID'),
},
});
expect(request.federationContext).toBeUndefined();
});
it('#6 — rejects a valid client cert when its grant is revoked with 403', async () => {
expect(ids).toBeDefined();
const revokedCert = await makeMosaicIssuedCert({
grantId: ids!.revokedGrantId,
subjectUserId: ids!.subjectUserId,
});
const request = makeFederationRequest(revokedCert);
const { context, sent } = makeGuardContext(request);
await expect(guard.canActivate(context)).resolves.toBe(false);
expect(sent.statusCode).toBe(403);
expect(sent.payload).toMatchObject({
error: {
code: 'forbidden',
message: 'Federation access denied',
},
});
expect(request.federationContext).toBeUndefined();
});
it('#7 — enforces max_rows_per_query on POST /api/federation/v1/list/:resource', async () => {
expect(ids).toBeDefined();
const activeCert = await makeMosaicIssuedCert({
grantId: ids!.activeGrantId,
subjectUserId: ids!.subjectUserId,
});
const request = makeFederationRequest(activeCert);
const { context } = makeGuardContext(request);
await expect(guard.canActivate(context)).resolves.toBe(true);
const response = await listController.list('tasks', request, { limit: 100 });
const returnedIds = response.items.map((item) => item['id']);
expect(response.items).toHaveLength(2);
expect(response._truncated).toBe(true);
expect(response.nextCursor).toEqual(expect.any(String));
expect(returnedIds).toEqual([ids!.taskIds[0], ids!.taskIds[1]]);
expect(returnedIds).not.toContain(ids!.taskIds[2]);
for (const excludedId of ids!.excludedTaskIds) {
expect(returnedIds).not.toContain(excludedId);
}
expect(response.items.every((item) => item._source === 'local')).toBe(true);
});
it('excludes another user mission task notes on the same authorized mission', async () => {
expect(ids).toBeDefined();
const activeCert = await makeMosaicIssuedCert({
grantId: ids!.activeGrantId,
subjectUserId: ids!.subjectUserId,
});
const request = makeFederationRequest(activeCert);
const { context } = makeGuardContext(request);
await expect(guard.canActivate(context)).resolves.toBe(true);
const response = await listController.list('notes', request, { limit: 10 });
const returnedIds = response.items.map((item) => item['id']);
expect(returnedIds).toEqual([ids!.subjectNoteId]);
expect(returnedIds).not.toContain(ids!.otherUserNoteId);
expect(response.items.every((item) => item._source === 'local')).toBe(true);
});
it('fails closed for unsupported list resources', async () => {
expect(ids).toBeDefined();
const activeCert = await makeMosaicIssuedCert({
grantId: ids!.activeGrantId,
subjectUserId: ids!.subjectUserId,
});
const request = makeFederationRequest(activeCert);
const { context } = makeGuardContext(request);
await expect(guard.canActivate(context)).resolves.toBe(true);
await expect(listController.list('widgets', request, {})).rejects.toMatchObject({
response: {
error: {
code: 'scope_violation',
message: 'Requested federation resource is not supported',
},
},
status: 403,
});
});
});
@@ -35,25 +35,6 @@ function payload(content: string, messageId: string, correlationId: string): Dis
};
}
/**
* The chat runtime router must never be exercised on the Discord approval/stop control paths —
* those paths run entirely through the command-authorization, runtime-provider and durable-session
* dependencies. Placed in the gateway's chat-runtime-router slot (the former direct `AgentService`
* slot) so any accidental chat-runtime dispatch throws loudly instead of silently passing. Because
* approval/stop never resolve a chat runtime, this fixture is never triggered and the integration
* stays a GREEN cross-surface control.
*/
function failIfUsedChatRuntimeRouter() {
return {
onModuleInit: () => {
throw new Error('chat runtime router must not initialise on the Discord control path');
},
get active(): never {
throw new Error('chat runtime must not be resolved on the Discord approval/stop path');
},
};
}
function authorization(): CommandAuthorizationService {
const entries = new Map<string, string>();
return new CommandAuthorizationService(
@@ -132,7 +113,7 @@ describe('interaction Discord/CLI durable-session integration', () => {
},
);
const gateway = new ChatGateway(
failIfUsedChatRuntimeRouter() as never,
{} as never,
{} as never,
{} as never,
{} as never,
@@ -60,7 +60,7 @@ describe('Resource ownership checks', () => {
// The repo enforces ownership via the WHERE clause; it returns undefined when the
// conversation does not belong to the requesting user.
brain.conversations.findById.mockResolvedValue(undefined);
const controller = new ConversationsController(brain as never, { runtimeMode: 'legacy' });
const controller = new ConversationsController(brain as never);
await expect(controller.findOne('conv-1', { id: 'user-1' })).rejects.toBeInstanceOf(
NotFoundException,
@@ -1,11 +1,9 @@
import { Controller, Get, Inject, Optional, UseGuards } from '@nestjs/common';
import { Controller, Get, Inject, UseGuards } from '@nestjs/common';
import { sql, type Db } from '@mosaicstack/db';
import { createQueue } from '@mosaicstack/queue';
import type { MosaicConfig } from '@mosaicstack/config';
import { DB } from '../database/database.module.js';
import { AgentService } from '../agent/agent.service.js';
import { ProviderService } from '../agent/provider.service.js';
import { MOSAIC_CONFIG } from '../config/config.module.js';
import { AdminGuard } from './admin.guard.js';
import type { HealthStatusDto, ServiceStatusDto } from './admin.dto.js';
@@ -16,9 +14,6 @@ export class AdminHealthController {
@Inject(DB) private readonly db: Db,
@Inject(AgentService) private readonly agentService: AgentService,
@Inject(ProviderService) private readonly providerService: ProviderService,
@Optional()
@Inject(MOSAIC_CONFIG)
private readonly mosaicConfig: MosaicConfig | null,
) {}
@Get()
@@ -60,14 +55,6 @@ export class AdminHealthController {
}
private async checkCache(): Promise<ServiceStatusDto> {
// On Local tier there is no Redis. The cache is intentionally absent, which
// is a healthy state for this tier — report 'ok' rather than opening a new
// ioredis connection on every admin health check (which would spam
// ECONNREFUSED and create/destroy a connection per request). latencyMs 0
// signals "no cache backend to measure" for this tier.
if (this.mosaicConfig?.queue?.type === 'local') {
return { status: 'ok', latencyMs: 0 };
}
const start = Date.now();
const handle = createQueue();
try {
@@ -1,8 +1,6 @@
import 'reflect-metadata';
import { readFileSync } from 'node:fs';
import { resolve } from 'node:path';
import { ForbiddenException, NotFoundException } from '@nestjs/common';
import { Test, type TestingModule } from '@nestjs/testing';
import { describe, expect, it, vi } from 'vitest';
vi.mock('../agent.service.js', () => ({ AgentService: class AgentService {} }));
@@ -14,25 +12,10 @@ vi.mock('../routing/routing-engine.service.js', () => ({
}));
import { SessionsController } from '../sessions.controller.js';
import { AgentService } from '../agent.service.js';
import { ChatController } from '../../chat/chat.controller.js';
import { ChatGateway } from '../../chat/chat.gateway.js';
import type { AgentSession } from '../agent.service.js';
import type { SessionInfoDto } from '../session.dto.js';
import type { HarnessAdapter, HarnessConversationService } from '@mosaicstack/types';
import { AuthGuard } from '../../auth/auth.guard.js';
import { AUTH } from '../../auth/auth.tokens.js';
import { BRAIN } from '../../brain/brain.tokens.js';
import { CommandRegistryService } from '../../commands/command-registry.service.js';
import { CommandExecutorService } from '../../commands/command-executor.service.js';
import { RoutingEngineService } from '../routing/routing-engine.service.js';
import { ChatRuntimeRouter } from '../../chat/chat-runtime-router.js';
import { EmbeddedChatRuntime } from '../../chat/embedded-chat.runtime.js';
import { ownConversation } from '../../chat/chat-runtime.js';
import type { LegacyRuntimeStream } from '../../chat/chat-runtime.js';
import { HarnessChatRuntime } from '../../chat/harness-chat.runtime.js';
import { HarnessRegistry } from '../../harness/harness.registry.js';
import { HARNESS_CONVERSATION_SERVICE_UNAVAILABLE } from '../../harness/harness.tokens.js';
const USER_A = { id: 'user-a', tenantId: 'tenant-a' };
const USER_B = { id: 'user-b', tenantId: 'tenant-b' };
@@ -91,12 +74,6 @@ function makeAgentSession(owner = USER_A): AgentSession {
};
}
/**
* A shape-complete, non-throwing AgentService fake scoped so that USER_B (a foreign owner guessing
* USER_A's conversation id) is never granted the session. Because every method exists and no method
* throws for a wrong shape, production runs to its real ownership decision — the RED never comes from
* a `getSession is not a function` TypeError, only from a router-boundary/scope assertion mismatch.
*/
function makeScopedAgentService() {
const foreign = makeAgentSession(USER_A);
return {
@@ -110,7 +87,7 @@ function makeScopedAgentService() {
getSession: vi.fn((_id: string, scope?: { userId: string; tenantId?: string }) =>
scope?.userId === USER_B.id ? undefined : foreign,
),
createSession: vi.fn().mockRejectedValue(new NotFoundException('Session scope mismatch')),
createSession: vi.fn().mockRejectedValue(new ForbiddenException('Session scope mismatch')),
onEvent: vi.fn(() => vi.fn()),
addChannel: vi.fn(),
removeChannel: vi.fn(),
@@ -119,201 +96,6 @@ function makeScopedAgentService() {
};
}
type ScopedAgentService = ReturnType<typeof makeScopedAgentService>;
/**
* A structurally-complete harness conversation service that throws if any method is invoked.
* Fronted behind the legacy runtime's harness slot: the legacy path must never reach it.
*/
const failIfUsedConversationService = {
attach: () => {
throw new Error('harness conversation service must not be reached on the legacy path');
},
detach: () => {
throw new Error('harness conversation service must not be reached on the legacy path');
},
send: () => {
throw new Error('harness conversation service must not be reached on the legacy path');
},
subscribeFrom: async function* () {
throw new Error('harness conversation service must not be reached on the legacy path');
},
} as unknown as HarnessConversationService;
/** A structurally-complete, non-sentinel conversation service used to satisfy the pi-rpc readiness gate. */
const boundConversationService = {
attach: () => Promise.reject(new Error('unused')),
detach: () => Promise.reject(new Error('unused')),
send: () => Promise.reject(new Error('unused')),
subscribeFrom: async function* () {
throw new Error('unused');
},
} as unknown as HarnessConversationService;
function registryWith(adapterIds: readonly string[]): HarnessRegistry {
const registry = new HarnessRegistry();
for (const id of adapterIds) {
registry.register({
id,
describe: () => Promise.reject(new Error('unused')),
catalog: () => Promise.reject(new Error('unused')),
create: () => Promise.reject(new Error('unused')),
resume: () => Promise.reject(new Error('unused')),
} as HarnessAdapter);
}
return registry;
}
/**
* Build the real legacy-mode {@link ChatRuntimeRouter} fronting a real {@link EmbeddedChatRuntime}
* that holds the scoped AgentService fake. This is the ONLY path server-derived scope may travel to
* reach an AgentService: controller/gateway → ChatRuntimeRouter → EmbeddedChatRuntime → AgentService.
* The `embeddedAgentService` handed here is a SEPARATE instance from the directly-injected fake, so a
* call landing on it proves the router-delegation redesign is live rather than the old direct path.
*/
function legacyRouterFronting(agentService: unknown): ChatRuntimeRouter {
const embedded = new EmbeddedChatRuntime(agentService as never);
const harness = new HarnessChatRuntime(failIfUsedConversationService);
const router = new ChatRuntimeRouter(
new HarnessRegistry(),
HARNESS_CONVERSATION_SERVICE_UNAVAILABLE,
embedded,
harness,
'legacy',
);
router.onModuleInit();
return router;
}
/**
* The AgentService method names the controller/gateway must NEVER drive on the runtime at the
* delegation boundary. An AgentService-shaped router shim (a method-for-method mirror) would record
* one of these instead of the frozen legacy op, so asserting their ABSENCE from the observed runtime
* call set defeats the shim on INVOCATION evidence — never satisfiable by dead source text.
*/
const FORBIDDEN_AGENT_OPS = [
'getSession',
'createSession',
'onEvent',
'addChannel',
'prompt',
'setThinking',
'abort',
] as const;
/**
* Wrap a real {@link ChatRuntimeRouter} in a call-recording Proxy. Every property access that yields
* an OWN/inherited callable is returned as a thin wrapper that appends the method name to `calls` at
* INVOCATION time and forwards to the real method (bound to the real target, so the router's internal
* delegation to the embedded runtime runs untouched below this boundary). Non-function and MISSING
* properties are returned verbatim via Reflect.get — the observer NEVER fabricates a value, returns a
* canned outcome, or delegates a not-yet-implemented named op, so it cannot itself become a shim.
*
* The result is a RUNTIME call set of exactly the methods the controller/gateway invoke ON the router
* at the delegation seam. Only an actual call can enter it; a dead method, comment, or string in the
* production source cannot. This replaces the earlier `source.toContain('<frozen op>')` proof — which
* a dead declaration could satisfy while production still executed a shim — with invocation evidence.
*/
function makeRecordingRouter(target: ChatRuntimeRouter, calls: string[]): ChatRuntimeRouter {
return new Proxy(target, {
get(t, prop) {
const value = Reflect.get(t, prop);
if (typeof value === 'function' && typeof prop === 'string') {
return (...args: unknown[]) => {
calls.push(prop);
return (value as (...a: unknown[]) => unknown).apply(t, args);
};
}
return value;
},
}) as ChatRuntimeRouter;
}
/**
* Real Nest DI dual-provider fixture (mirrors the blessed group-3 pattern in chat-security.test.ts).
*
* BOTH an `AgentService` provider (the FORBIDDEN direct dependency) and a `ChatRuntimeRouter` provider
* (fronting a real EmbeddedChatRuntime over a SEPARATE scoped AgentService) are registered. Production
* resolves whichever its constructor declares:
* - RED today: the controller/gateway `@Inject(AgentService)` → the direct fake is consulted, the
* router (and its embedded fake) is never reached.
* - GREEN later: the controller/gateway inject `ChatRuntimeRouter` → the direct fake is never
* touched (stays at zero) and scope is observed inside the embedded fake behind the router.
* The SAME test body reds today and greens later; a method-for-method AgentService shim on the router
* records a FORBIDDEN op (and never the frozen legacy op) in the observed runtime call set, and
* restoring the direct injection cannot satisfy the "direct fake at zero" / "embedded fake observed
* scope" / "frozen op invoked on the router" anchors. The router is wrapped by {@link
* makeRecordingRouter} so those anchors are runtime invocation evidence, not source substrings.
*/
function buildRestModule(
directAgentService: ScopedAgentService,
embeddedAgentService: ScopedAgentService,
routerCalls: string[],
): Promise<TestingModule> {
return (
Test.createTestingModule({
controllers: [ChatController],
providers: [
{ provide: AgentService, useValue: directAgentService },
{
provide: ChatRuntimeRouter,
useFactory: () =>
makeRecordingRouter(legacyRouterFronting(embeddedAgentService), routerCalls),
},
],
})
// ChatController's @UseGuards(AuthGuard) is resolved during instance loading; AuthGuard injects
// AUTH, an HTTP-only concern never exercised by a direct handler call. Stub it so the graph
// resolves and the test reds on BEHAVIOUR, not on a DI collection error.
.overrideGuard(AuthGuard)
.useValue({ canActivate: () => true })
.compile()
);
}
function buildGatewayModule(
directAgentService: ScopedAgentService,
embeddedAgentService: ScopedAgentService,
routerCalls: string[],
): Promise<TestingModule> {
const brain = {
conversations: {
// The sender OWNS this durable conversation, so the browser-send admission gate lets the turn
// reach the router seam. Foreignness is asserted downstream at the in-memory agent session
// (getSession({USER_B}) -> undefined), not at durable admission — the admission-rejection
// property has its own dedicated coverage.
findById: vi.fn().mockResolvedValue({ id: CONVERSATION_ID, userId: USER_B.id }),
create: vi.fn().mockResolvedValue(undefined),
update: vi.fn().mockResolvedValue(undefined),
findMessages: vi.fn().mockResolvedValue([]),
addMessage: vi.fn().mockResolvedValue({ id: 'persisted-turn' }),
},
};
return Test.createTestingModule({
providers: [
ChatGateway,
{ provide: AgentService, useValue: directAgentService },
{ provide: AUTH, useValue: { api: { getSession: vi.fn().mockResolvedValue(null) } } },
{ provide: BRAIN, useValue: brain },
{ provide: CommandRegistryService, useValue: { getManifest: vi.fn().mockReturnValue([]) } },
{ provide: CommandExecutorService, useValue: { execute: vi.fn() } },
{
provide: RoutingEngineService,
useValue: {
resolve: vi.fn().mockResolvedValue({ provider: 'test', model: 'test-model' }),
},
},
{
provide: ChatRuntimeRouter,
useFactory: () =>
makeRecordingRouter(legacyRouterFronting(embeddedAgentService), routerCalls),
},
],
}).compile();
}
describe('TESS-M1-SEC-002 AgentService ownership boundary', () => {
it('requires explicit owner+tenant scope on protected session operations', () => {
const source = readFileSync(resolve('src/agent/agent.service.ts'), 'utf8');
@@ -370,66 +152,50 @@ describe('TESS-M1-SEC-002 REST session ownership and tenant binding', () => {
});
});
describe('TESS-M1-SEC-002 REST chat send ownership and tenant binding (router-delegated legacy runtime)', () => {
// TESS test A — REST /api/chat send. The genuine RED is the router-delegation redesign, not a slot
// swap: the forbidden directly-injected AgentService must go UNtouched while the server-derived
// scope is observed inside the real ChatRuntimeRouter → EmbeddedChatRuntime → AgentService path.
it('routes a REST send through completeLegacyRestTurn and never the directly-injected AgentService', async () => {
const directAgentService = makeScopedAgentService(); // FORBIDDEN direct dependency
const embeddedAgentService = makeScopedAgentService(); // reached ONLY via router → embedded delegation
const routerCalls: string[] = []; // runtime call set observed AT the controller → router seam
const moduleRef = await buildRestModule(directAgentService, embeddedAgentService, routerCalls);
try {
const controller = moduleRef.get(ChatController, { strict: false });
describe('TESS-M1-SEC-002 REST chat send ownership and tenant binding', () => {
it('does not send a prompt into another owner/tenant session by guessed conversationId', async () => {
const agentService = makeScopedAgentService();
const controller = new ChatController(agentService as never);
// Foreign ownership is denied (never resolves) — a control that holds today AND at GREEN.
await expect(
controller.chat({ conversationId: CONVERSATION_ID, content: 'take over' }, USER_B),
).rejects.toBeDefined();
await expect(
controller.chat({ conversationId: CONVERSATION_ID, content: 'take over' }, USER_B),
).rejects.toMatchObject({ status: 404 });
// Soft anchors so EVERY anchor is evaluated under each mutation, not just the first to fail.
// RUNTIME anchor A1 — delegation: the controller must INVOKE the frozen legacy op on the router.
// Only an actual call enters routerCalls; a dead method/comment/string cannot. RED today (the
// controller @Inject(AgentService) and never calls the router). GREEN once it drives the op.
expect
.soft(routerCalls, 'controller must invoke completeLegacyRestTurn on the router')
.toContain('completeLegacyRestTurn');
// RUNTIME anchor A2 — nondelegation: the controller must not drive any AgentService-shaped op on
// the router. An AgentService-shaped router shim records one of these → RED, defeating the shim
// on invocation evidence (not source text). A dead named method added alongside the shim does not
// help: it is never invoked, so it never enters routerCalls while a forbidden op still does.
for (const op of FORBIDDEN_AGENT_OPS) {
expect
.soft(routerCalls, `router seam must not invoke AgentService.${op}`)
.not.toContain(op);
}
// RUNTIME anchor A3 — the forbidden directly-injected AgentService stays at zero (fails today;
// restoring the direct injection keeps it failing).
expect.soft(directAgentService.getSession).not.toHaveBeenCalled();
// RUNTIME anchor A4 — server-derived scope observed INSIDE the separate embedded fake behind the
// router (fails today; the router path is never taken).
expect.soft(embeddedAgentService.getSession).toHaveBeenCalledWith(CONVERSATION_ID, {
userId: USER_B.id,
tenantId: USER_B.tenantId,
});
// Zero foreign mutation on either path (holds today and at GREEN).
expect.soft(directAgentService.prompt).not.toHaveBeenCalled();
expect.soft(embeddedAgentService.prompt).not.toHaveBeenCalled();
// Defense-in-depth (NOT load-bearing; the runtime anchors above carry the anti-mask): the
// controller no longer declares the direct embedded AgentService dependency. A negative source
// check cannot be satisfied by dead text — it only fails when the injection is present.
const controllerSource = readFileSync(resolve('src/chat/chat.controller.ts'), 'utf8');
expect.soft(controllerSource).not.toContain('@Inject(AgentService)');
} finally {
await moduleRef.close();
}
expect(agentService.getSession).toHaveBeenCalledWith(CONVERSATION_ID, {
userId: USER_B.id,
tenantId: USER_B.tenantId,
});
expect(agentService.prompt).not.toHaveBeenCalled();
});
});
describe('TESS-M1-SEC-002 WebSocket session ownership and tenant binding (router-delegated legacy runtime)', () => {
describe('TESS-M1-SEC-002 WebSocket session ownership and tenant binding', () => {
function makeGateway(agentService = makeScopedAgentService()) {
const brain = {
conversations: {
findById: vi.fn().mockResolvedValue(undefined),
create: vi.fn().mockResolvedValue(undefined),
update: vi.fn().mockResolvedValue(undefined),
findMessages: vi.fn().mockResolvedValue([]),
addMessage: vi.fn().mockResolvedValue(undefined),
},
};
const commandRegistry = { getManifest: vi.fn().mockReturnValue([]) };
const commandExecutor = { execute: vi.fn() };
const routingEngine = {
resolve: vi.fn().mockResolvedValue({ provider: 'test', model: 'test-model' }),
};
const gateway = new ChatGateway(
agentService as never,
{} as never,
brain as never,
commandRegistry as never,
commandExecutor as never,
routingEngine as never,
);
return { gateway, agentService };
}
function makeSocket() {
return {
id: 'socket-b',
@@ -440,427 +206,57 @@ describe('TESS-M1-SEC-002 WebSocket session ownership and tenant binding (router
};
}
// TESS test B — WebSocket send/attach.
it('routes a WebSocket send through prepareLegacySocketTurn and never the directly-injected AgentService', async () => {
const directAgentService = makeScopedAgentService();
const embeddedAgentService = makeScopedAgentService();
const routerCalls: string[] = [];
const moduleRef = await buildGatewayModule(
directAgentService,
embeddedAgentService,
routerCalls,
);
try {
const gateway = moduleRef.get(ChatGateway, { strict: false });
const socket = makeSocket();
it('does not attach or send to another owner/tenant session by guessed conversationId', async () => {
const { gateway, agentService } = makeGateway();
const socket = makeSocket();
await Promise.resolve(
gateway.handleMessage(socket as never, {
conversationId: CONVERSATION_ID,
content: 'attach to foreign session',
}),
).catch(() => undefined);
// RUNTIME anchor B1 — delegation: the gateway must invoke the frozen socket op on the router.
expect
.soft(routerCalls, 'gateway must invoke prepareLegacySocketTurn on the router')
.toContain('prepareLegacySocketTurn');
// RUNTIME anchor B2 — nondelegation: no AgentService-shaped op on the router (defeats the shim).
for (const op of FORBIDDEN_AGENT_OPS) {
expect
.soft(routerCalls, `router seam must not invoke AgentService.${op}`)
.not.toContain(op);
}
// RED anchor B3 — forbidden direct AgentService untouched (fails today, gateway injects it).
expect.soft(directAgentService.getSession).not.toHaveBeenCalled();
// RED anchor B4 — scope observed inside router → embedded delegation (fails today, never reached).
expect.soft(embeddedAgentService.getSession).toHaveBeenCalledWith(CONVERSATION_ID, {
userId: USER_B.id,
tenantId: USER_B.tenantId,
});
// Foreign session gets zero lease/listener/channel/prompt on EITHER path (holds today and GREEN).
expect.soft(directAgentService.onEvent).not.toHaveBeenCalled();
expect.soft(directAgentService.addChannel).not.toHaveBeenCalled();
expect.soft(directAgentService.prompt).not.toHaveBeenCalled();
expect.soft(embeddedAgentService.onEvent).not.toHaveBeenCalled();
expect.soft(embeddedAgentService.addChannel).not.toHaveBeenCalled();
expect.soft(embeddedAgentService.prompt).not.toHaveBeenCalled();
expect
.soft(socket.emit)
.toHaveBeenCalledWith(
'error',
expect.objectContaining({ conversationId: CONVERSATION_ID }),
);
// Defense-in-depth (NOT load-bearing): gateway no longer declares the direct dependency.
const gatewaySource = readFileSync(resolve('src/chat/chat.gateway.ts'), 'utf8');
expect.soft(gatewaySource).not.toContain('@Inject(AgentService)');
} finally {
await moduleRef.close();
}
});
// TESS test C — WebSocket set:thinking.
it('routes set:thinking through setLegacyThinking and never the directly-injected AgentService', async () => {
const directAgentService = makeScopedAgentService();
const embeddedAgentService = makeScopedAgentService();
const routerCalls: string[] = [];
const moduleRef = await buildGatewayModule(
directAgentService,
embeddedAgentService,
routerCalls,
);
try {
const gateway = moduleRef.get(ChatGateway, { strict: false });
const socket = makeSocket();
await Promise.resolve(
gateway.handleSetThinking(socket as never, {
conversationId: CONVERSATION_ID,
level: 'high',
}),
).catch(() => undefined);
// RUNTIME anchor C1 — delegation: the gateway must invoke the frozen thinking op on the router.
expect
.soft(routerCalls, 'gateway must invoke setLegacyThinking on the router')
.toContain('setLegacyThinking');
// RUNTIME anchor C2 — nondelegation: no AgentService-shaped op on the router (defeats the shim).
for (const op of FORBIDDEN_AGENT_OPS) {
expect
.soft(routerCalls, `router seam must not invoke AgentService.${op}`)
.not.toContain(op);
}
expect.soft(directAgentService.getSession).not.toHaveBeenCalled();
expect.soft(embeddedAgentService.getSession).toHaveBeenCalledWith(CONVERSATION_ID, {
userId: USER_B.id,
tenantId: USER_B.tenantId,
});
expect
.soft(socket.emit)
.toHaveBeenCalledWith(
'error',
expect.objectContaining({ conversationId: CONVERSATION_ID }),
);
} finally {
await moduleRef.close();
}
});
// TESS test D — WebSocket abort.
it('routes abort through abortLegacyTurn and never the directly-injected AgentService', async () => {
const directAgentService = makeScopedAgentService();
const embeddedAgentService = makeScopedAgentService();
const routerCalls: string[] = [];
const moduleRef = await buildGatewayModule(
directAgentService,
embeddedAgentService,
routerCalls,
);
try {
const gateway = moduleRef.get(ChatGateway, { strict: false });
const socket = makeSocket();
await Promise.resolve(
gateway.handleAbort(socket as never, { conversationId: CONVERSATION_ID }),
).catch(() => undefined);
// RUNTIME anchor D1 — delegation: the gateway must invoke the frozen abort op on the router.
expect
.soft(routerCalls, 'gateway must invoke abortLegacyTurn on the router')
.toContain('abortLegacyTurn');
// RUNTIME anchor D2 — nondelegation: no AgentService-shaped op on the router (defeats the shim).
for (const op of FORBIDDEN_AGENT_OPS) {
expect
.soft(routerCalls, `router seam must not invoke AgentService.${op}`)
.not.toContain(op);
}
expect.soft(directAgentService.getSession).not.toHaveBeenCalled();
expect.soft(embeddedAgentService.getSession).toHaveBeenCalledWith(CONVERSATION_ID, {
userId: USER_B.id,
tenantId: USER_B.tenantId,
});
expect
.soft(socket.emit)
.toHaveBeenCalledWith(
'error',
expect.objectContaining({ conversationId: CONVERSATION_ID }),
);
} finally {
await moduleRef.close();
}
});
// TESS test E (genuine, unchanged) — pi-rpc browser-legacy refusal.
it('rejects a browser legacy raw message in pi-rpc mode with a fixed typed unsupported and executes nothing', async () => {
// pi-rpc: the harness runtime is live. The browser legacy `message` path is unsupported and
// must be refused with a fixed typed code, touching neither the embedded AgentService nor the
// harness conversation service.
const agentService = makeScopedAgentService();
const embedded = new EmbeddedChatRuntime(agentService as never);
const harnessConversation = {
attach: vi.fn(),
detach: vi.fn(),
send: vi.fn(),
subscribeFrom: vi.fn(),
};
const harness = new HarnessChatRuntime(harnessConversation as never);
const router = new ChatRuntimeRouter(
registryWith(['pi']),
boundConversationService,
embedded,
harness,
'pi-rpc',
);
router.onModuleInit();
const brain = {
conversations: {
findById: vi.fn().mockResolvedValue(undefined),
create: vi.fn().mockResolvedValue(undefined),
update: vi.fn().mockResolvedValue(undefined),
findMessages: vi.fn().mockResolvedValue([]),
addMessage: vi.fn().mockResolvedValue(undefined),
},
};
const gateway = new ChatGateway(
router as never,
{} as never,
brain as never,
{ getManifest: vi.fn().mockReturnValue([]) } as never,
{ execute: vi.fn() } as never,
{ resolve: vi.fn() } as never,
);
const socket = {
id: 'socket-b',
connected: true,
data: { user: USER_B, session: { id: 'auth-session-b', userId: USER_B.id } },
emit: vi.fn(),
disconnect: vi.fn(),
};
await Promise.resolve(
gateway.handleMessage(socket as never, {
conversationId: CONVERSATION_ID,
content: 'route me',
}),
).catch(() => undefined);
await gateway.handleMessage(socket as never, {
conversationId: CONVERSATION_ID,
content: 'attach to foreign session',
});
expect(agentService.getSession).toHaveBeenCalledWith(CONVERSATION_ID, {
userId: USER_B.id,
tenantId: USER_B.tenantId,
});
expect(agentService.onEvent).not.toHaveBeenCalled();
expect(agentService.addChannel).not.toHaveBeenCalled();
expect(agentService.prompt).not.toHaveBeenCalled();
expect(socket.emit).toHaveBeenCalledWith(
'error',
expect.objectContaining({ code: 'runtime_unsupported' }),
expect.objectContaining({ conversationId: CONVERSATION_ID }),
);
expect(agentService.getSession).not.toHaveBeenCalled();
expect(agentService.prompt).not.toHaveBeenCalled();
expect(harnessConversation.attach).not.toHaveBeenCalled();
expect(harnessConversation.send).not.toHaveBeenCalled();
});
});
// ---------------------------------------------------------------------------
// Task-5 AMEND — embedded runtime lease lifecycle (G1) + ownership collapse (G5).
// These drive the real EmbeddedChatRuntime directly over a shape-complete AgentService
// fake (every touched method exists, so a RED can only come from behavior, never a
// `getSession is not a function` TypeError). Ownership context is minted through the
// real `ownConversation` factory — the only sanctioned way to reach a port op.
// ---------------------------------------------------------------------------
const EMBEDDED_SCOPE = { userId: USER_A.id, tenantId: USER_A.tenantId };
const CONVERSATION_UNAVAILABLE_RESULT = {
ok: false,
code: 'conversation_unavailable',
retryable: false,
} as const;
/** A stream sink; `channelId` is server-derived, `onEvent` records nothing here. */
function makeStream(): LegacyRuntimeStream {
return { channelId: 'websocket:test-1', onEvent: vi.fn() };
}
/**
* getSession → undefined (session missing), createSession → rejects with `err`. Exercises the
* `resolveOrCreate` collapse branch. `prompt` exists so its ABSENCE from the call record proves
* the turn short-circuited before any dispatch.
*/
function makeCollapsingAgentService(err: Error) {
return {
getSession: vi.fn(() => undefined),
createSession: vi.fn().mockRejectedValue(err),
onEvent: vi.fn(() => vi.fn()),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt: vi.fn().mockResolvedValue(undefined),
recordTokenUsage: vi.fn(),
};
}
/** getSession → a live owned session, so `resolveOrCreate` succeeds and a lease is built. */
function makeLeaseAgentService() {
const session = makeAgentSession(USER_A);
const unsubscribe = vi.fn();
const svc = {
getSession: vi.fn(() => session),
createSession: vi.fn(),
onEvent: vi.fn(() => unsubscribe),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt: vi.fn().mockResolvedValue(undefined),
recordTokenUsage: vi.fn(),
};
return { svc, unsubscribe, session };
}
/**
* getSession → a live owned session (REST resolveOrCreate succeeds), onEvent returns a `detach`
* spy, and `prompt` REJECTS with a non-timeout error. Drives the REST-turn catch path so the single
* idempotent teardown must clear the 120s timeout and detach the listener exactly once.
*/
function makeRejectingPromptAgentService() {
const session = makeAgentSession(USER_A);
const detach = vi.fn();
const svc = {
getSession: vi.fn(() => session),
createSession: vi.fn(),
onEvent: vi.fn(() => detach),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt: vi.fn().mockRejectedValue(new Error('agent backend exploded')),
recordTokenUsage: vi.fn(),
};
return { svc, detach };
}
describe('TESS Task-5 embedded ownership collapse (missing and foreign are indistinguishable, never throw)', () => {
const ctx = ownConversation(CONVERSATION_ID, EMBEDDED_SCOPE);
it('collapses a foreign (Forbidden) create to conversation_unavailable and never throws', async () => {
const svc = makeCollapsingAgentService(new ForbiddenException('foreign owner'));
const runtime = new EmbeddedChatRuntime(svc as never);
const result = await runtime.completeLegacyRestTurn(ctx, { content: 'take over' });
expect(result).toEqual(CONVERSATION_UNAVAILABLE_RESULT);
expect(svc.prompt).not.toHaveBeenCalled();
});
it('collapses a missing (NotFound) create to conversation_unavailable and never throws', async () => {
const svc = makeCollapsingAgentService(new NotFoundException('no such conversation'));
const runtime = new EmbeddedChatRuntime(svc as never);
it('does not mutate thinking level on another owner/tenant session', () => {
const { gateway, agentService } = makeGateway();
const socket = makeSocket();
const result = await runtime.completeLegacyRestTurn(ctx, { content: 'hello' });
gateway.handleSetThinking(socket as never, { conversationId: CONVERSATION_ID, level: 'high' });
expect(result).toEqual(CONVERSATION_UNAVAILABLE_RESULT);
expect(svc.prompt).not.toHaveBeenCalled();
});
it('returns the IDENTICAL collapse for foreign and missing so neither can be distinguished', async () => {
const foreign = new EmbeddedChatRuntime(
makeCollapsingAgentService(new ForbiddenException('foreign owner')) as never,
);
const missing = new EmbeddedChatRuntime(
makeCollapsingAgentService(new NotFoundException('no such conversation')) as never,
);
const foreignResult = await foreign.completeLegacyRestTurn(ctx, { content: 'x' });
const missingResult = await missing.completeLegacyRestTurn(ctx, { content: 'x' });
expect(foreignResult).toEqual(missingResult);
expect(foreignResult).toEqual(CONVERSATION_UNAVAILABLE_RESULT);
});
});
describe('TESS Task-5 embedded socket lease lifecycle (one-shot dispatch, idempotent dispose, partial-setup rollback)', () => {
const ctx = ownConversation(CONVERSATION_ID, EMBEDDED_SCOPE);
it('dispatches the turn exactly once; a second dispatch is a no-op turn_already_dispatched', async () => {
const { svc } = makeLeaseAgentService();
const runtime = new EmbeddedChatRuntime(svc as never);
const prepared = await runtime.prepareLegacySocketTurn(ctx, { content: 'first' }, makeStream());
expect(prepared.ok).toBe(true);
if (!prepared.ok) throw new Error('prepareLegacySocketTurn should succeed');
const lease = prepared.value;
const first = await lease.dispatch();
expect(first).toEqual({ ok: true, value: undefined });
expect(svc.prompt).toHaveBeenCalledTimes(1);
const second = await lease.dispatch();
expect(second).toEqual({ ok: false, code: 'turn_already_dispatched', retryable: false });
// Zero additional effect — the second dispatch must not prompt again.
expect(svc.prompt).toHaveBeenCalledTimes(1);
});
it('disposes once; a second dispose is a silent no-op that never re-detaches or destroys the session', async () => {
const { svc, unsubscribe, session } = makeLeaseAgentService();
const runtime = new EmbeddedChatRuntime(svc as never);
const prepared = await runtime.prepareLegacySocketTurn(ctx, { content: 'x' }, makeStream());
expect(prepared.ok).toBe(true);
if (!prepared.ok) throw new Error('prepareLegacySocketTurn should succeed');
const lease = prepared.value;
await lease.dispose();
await lease.dispose();
// Listener + channel torn down exactly once across two dispose calls.
expect(unsubscribe).toHaveBeenCalledTimes(1);
expect(svc.removeChannel).toHaveBeenCalledTimes(1);
// Disposal never terminates the underlying session or process.
expect(session.piSession.abort).not.toHaveBeenCalled();
expect(session.piSession.dispose).not.toHaveBeenCalled();
});
it('rolls back the acquired listener and returns a total safe failure when channel attach fails mid-setup', async () => {
const { svc, unsubscribe } = makeLeaseAgentService();
svc.addChannel = vi.fn(() => {
throw new Error('channel attach failed');
expect(agentService.getSession).toHaveBeenCalledWith(CONVERSATION_ID, {
userId: USER_B.id,
tenantId: USER_B.tenantId,
});
const runtime = new EmbeddedChatRuntime(svc as never);
expect(socket.emit).toHaveBeenCalledWith(
'error',
expect.objectContaining({ conversationId: CONVERSATION_ID }),
);
});
// Must NOT throw out of the port — a partial setup collapses to a total safe failure.
const prepared = await runtime.prepareLegacySocketTurn(ctx, { content: 'x' }, makeStream());
expect(prepared.ok).toBe(false);
// Exactly what was acquired (the event listener) is rolled back.
expect(unsubscribe).toHaveBeenCalledTimes(1);
});
});
describe('TESS Task-5 embedded REST turn teardown (a prompt rejection frees the timer + listener exactly once)', () => {
const ctx = ownConversation(CONVERSATION_ID, EMBEDDED_SCOPE);
it('clears the 120s timeout and detaches the listener exactly once when prompt() rejects, leaving no timer to reject the abandoned done-promise later (Task 5 finding 6)', async () => {
const { svc, detach } = makeRejectingPromptAgentService();
const runtime = new EmbeddedChatRuntime(svc as never);
// A rejected `done` promise firing after completeLegacyRestTurn has already returned would
// surface as an unhandledRejection — the leak this test fences. Capture any that escape.
const unhandled: unknown[] = [];
const onUnhandled = (reason: unknown): void => {
unhandled.push(reason);
};
process.on('unhandledRejection', onUnhandled);
vi.useFakeTimers();
try {
const result = await runtime.completeLegacyRestTurn(ctx, {
content: 'trigger a backend failure',
});
// The rejection collapses to a total safe failure (not a timeout) — never throws out of the port.
expect(result).toEqual({ ok: false, code: 'operation_failed', retryable: false });
// The single idempotent dispose ran in the catch: listener detached exactly once.
expect(detach).toHaveBeenCalledTimes(1);
// dispose() cleared the REST timeout, so advancing far past it (120s) fires nothing: no second
// detach, and — the actual leak — no live timer left to reject the now-abandoned `done` promise.
vi.advanceTimersByTime(600_000);
expect(detach).toHaveBeenCalledTimes(1);
} finally {
vi.useRealTimers();
}
// Let any scheduled rejection surface on a real macrotask, then confirm none did.
await new Promise((resolve) => setTimeout(resolve, 0));
process.off('unhandledRejection', onUnhandled);
expect(unhandled).toHaveLength(0);
it('does not terminate another owner/tenant session over WebSocket abort', async () => {
const { gateway, agentService } = makeGateway();
const socket = makeSocket();
await gateway.handleAbort(socket as never, { conversationId: CONVERSATION_ID });
expect(agentService.getSession).toHaveBeenCalledWith(CONVERSATION_ID, {
userId: USER_B.id,
tenantId: USER_B.tenantId,
});
expect(socket.emit).toHaveBeenCalledWith(
'error',
expect.objectContaining({ conversationId: CONVERSATION_ID }),
);
});
});
@@ -8,7 +8,6 @@
* to avoid real I/O — they verify the complete classify → match → decide path.
*/
import { describe, it, expect, vi } from 'vitest';
import type { ProviderHealthStatus } from '@mosaicstack/types';
import { RoutingEngineService } from './routing-engine.service.js';
import { DEFAULT_ROUTING_RULES } from '../routing/default-rules.js';
import type { RoutingRule } from './routing.types.js';
@@ -18,7 +17,7 @@ import type { RoutingRule } from './routing.types.js';
/** Build a RoutingEngineService backed by the given rule set and health map. */
function makeService(
rules: RoutingRule[],
healthMap: Record<string, { status: ProviderHealthStatus }>,
healthMap: Record<string, { status: string }>,
): RoutingEngineService {
const mockDb = {
select: vi.fn().mockReturnValue({
@@ -68,11 +67,11 @@ function defaultRules(): RoutingRule[] {
}
/** A health map where anthropic, openai, and zai are all healthy. */
const allHealthy: Record<string, { status: ProviderHealthStatus }> = {
anthropic: { status: 'healthy' },
openai: { status: 'healthy' },
zai: { status: 'healthy' },
ollama: { status: 'healthy' },
const allHealthy: Record<string, { status: string }> = {
anthropic: { status: 'up' },
openai: { status: 'up' },
zai: { status: 'up' },
ollama: { status: 'up' },
};
// ─── M4-013 E2E tests ─────────────────────────────────────────────────────────
@@ -213,10 +212,10 @@ describe('M4-013: routing end-to-end pipeline', () => {
// Let's use a simple coding message to target Simple coding → Codex (openai)
const message = 'implement a sort function';
const unhealthyHealth: Record<string, { status: ProviderHealthStatus }> = {
const unhealthyHealth = {
anthropic: { status: 'down' },
openai: { status: 'healthy' },
zai: { status: 'healthy' },
openai: { status: 'up' },
zai: { status: 'up' },
ollama: { status: 'down' },
};
@@ -1,6 +1,5 @@
import { Inject, Injectable, Logger } from '@nestjs/common';
import { routingRules, type Db, and, asc, eq, or } from '@mosaicstack/db';
import type { ProviderHealthStatus } from '@mosaicstack/types';
import { DB } from '../../database/database.module.js';
import { ProviderService } from '../provider.service.js';
import { classifyTask } from './task-classifier.js';
@@ -50,7 +49,7 @@ export class RoutingEngineService {
async resolve(
message: string,
userId?: string,
availableProviders?: Record<string, { status: ProviderHealthStatus }>,
availableProviders?: Record<string, { status: string }>,
): Promise<RoutingDecision> {
const classification = classifyTask(message);
this.logger.debug(
@@ -70,8 +69,9 @@ export class RoutingEngineService {
if (!this.matchConditions(rule, classification)) continue;
const providerStatus = health[rule.action.provider]?.status;
const isHealthy = providerStatus === 'up' || providerStatus === 'ok';
if (!this.isRoutable(providerStatus)) {
if (!isHealthy) {
this.logger.debug(
`Rule "${rule.name}" matched but provider "${rule.action.provider}" is unhealthy (status: ${providerStatus ?? 'unknown'})`,
);
@@ -111,10 +111,6 @@ export class RoutingEngineService {
// ─── Private helpers ───────────────────────────────────────────────────────
private isRoutable(status: ProviderHealthStatus | undefined): boolean {
return status === 'healthy' || status === 'degraded';
}
private evaluateCondition(
condition: RoutingCondition,
classification: TaskClassification,
@@ -190,12 +186,11 @@ export class RoutingEngineService {
* Walk the fallback chain and return the first healthy provider/model pair.
* If none are healthy, return the first entry unconditionally (last resort).
*/
private applyFallbackChain(
health: Record<string, { status: ProviderHealthStatus }>,
): RoutingDecision {
private applyFallbackChain(health: Record<string, { status: string }>): RoutingDecision {
for (const candidate of FALLBACK_CHAIN) {
const providerStatus = health[candidate.provider]?.status;
if (this.isRoutable(providerStatus)) {
const isHealthy = providerStatus === 'up' || providerStatus === 'ok';
if (isHealthy) {
this.logger.debug(`Fallback resolved: ${candidate.provider}/${candidate.model}`);
return {
provider: candidate.provider,
@@ -1,5 +1,4 @@
import { describe, it, expect, vi, beforeEach } from 'vitest';
import type { ProviderHealthStatus } from '@mosaicstack/types';
import { RoutingEngineService } from './routing-engine.service.js';
import type { RoutingRule, TaskClassification } from './routing.types.js';
@@ -30,7 +29,7 @@ function makeClassification(overrides: Partial<TaskClassification> = {}): TaskCl
/** Build a minimal RoutingEngineService with mocked DB and ProviderService. */
function makeService(
rules: RoutingRule[] = [],
healthMap: Record<string, { status: ProviderHealthStatus }> = {},
healthMap: Record<string, { status: string }> = {},
): RoutingEngineService {
const mockDb = {
select: vi.fn().mockReturnValue({
@@ -218,10 +217,7 @@ describe('RoutingEngineService.resolve — priority ordering', () => {
}),
];
const service = makeService(rules, {
anthropic: { status: 'healthy' },
openai: { status: 'healthy' },
});
const service = makeService(rules, { anthropic: { status: 'up' }, openai: { status: 'up' } });
const decision = await service.resolve('implement a function');
expect(decision.ruleName).toBe('high priority');
@@ -245,10 +241,7 @@ describe('RoutingEngineService.resolve — priority ordering', () => {
}),
];
const service = makeService(rules, {
anthropic: { status: 'healthy' },
openai: { status: 'healthy' },
});
const service = makeService(rules, { anthropic: { status: 'up' }, openai: { status: 'up' } });
const decision = await service.resolve('implement a function');
expect(decision.ruleName).toBe('coding rule');
@@ -277,7 +270,7 @@ describe('RoutingEngineService.resolve — unhealthy provider handling', () => {
const service = makeService(rules, {
anthropic: { status: 'down' }, // primary is unhealthy
openai: { status: 'healthy' },
openai: { status: 'up' },
});
const decision = await service.resolve('implement a function');
@@ -297,7 +290,7 @@ describe('RoutingEngineService.resolve — unhealthy provider handling', () => {
];
const service2 = makeService(unhealthyRules, {
anthropic: { status: 'healthy' },
anthropic: { status: 'up' },
openai: { status: 'down' },
});
@@ -313,7 +306,7 @@ describe('RoutingEngineService.resolve — unhealthy provider handling', () => {
const service = makeService(rules, {
anthropic: { status: 'down' }, // Sonnet is on anthropic — down
ollama: { status: 'healthy' }, // Haiku is also on anthropic — use Ollama as next
ollama: { status: 'up' }, // Haiku is also on anthropic — use Ollama as next
});
const decision = await service.resolve('hello there');
@@ -352,7 +345,7 @@ describe('RoutingEngineService.resolve — empty conditions (fallback rule)', ()
}),
];
const service = makeService(rules, { anthropic: { status: 'healthy' } });
const service = makeService(rules, { anthropic: { status: 'up' } });
const decision = await service.resolve('completely unrelated message xyz');
expect(decision.ruleName).toBe('catch-all');
@@ -376,7 +369,7 @@ describe('RoutingEngineService.resolve — empty conditions (fallback rule)', ()
}),
];
const service = makeService(rules, { anthropic: { status: 'healthy' } });
const service = makeService(rules, { anthropic: { status: 'up' } });
const codingDecision = await service.resolve('implement a function');
expect(codingDecision.ruleName).toBe('specific coding rule');
@@ -408,7 +401,7 @@ describe('RoutingEngineService.resolve — disabled rules', () => {
}),
];
const service = makeService(rules, { anthropic: { status: 'healthy' } });
const service = makeService(rules, { anthropic: { status: 'up' } });
const decision = await service.resolve('implement a function');
expect(decision.ruleName).toBe('enabled fallback');
@@ -459,45 +452,9 @@ describe('RoutingEngineService.resolve — availableProviders override', () => {
ps: unknown,
) => RoutingEngineService)(mockDb, mockProviderService);
const preSupplied: Record<string, { status: ProviderHealthStatus }> = {
anthropic: { status: 'healthy' },
};
const preSupplied = { anthropic: { status: 'up' } };
await service.resolve('implement a function', undefined, preSupplied);
expect(mockHealthCheckAll).not.toHaveBeenCalled();
});
});
// ─── resolve — canonical ProviderHealthStatus values ──────────────────────────
describe('RoutingEngineService.resolve — canonical health status routing', () => {
it('routes healthy and degraded providers by rule, and falls through to fallback when down', async () => {
const codingRule = makeRule({
name: 'coding rule',
priority: 1,
conditions: [{ field: 'taskType', operator: 'eq', value: 'coding' }],
action: { provider: 'openai', model: 'gpt-4o' },
});
// healthy → selected by its own rule, not the fallback chain
const healthyService = makeService([codingRule], { openai: { status: 'healthy' } });
const healthyDecision = await healthyService.resolve('implement a function');
expect(healthyDecision.ruleName).toBe('coding rule');
expect(healthyDecision.provider).toBe('openai');
// down → rule is skipped as unroutable, falls through to the fallback chain
const downService = makeService([codingRule], {
openai: { status: 'down' },
anthropic: { status: 'healthy' },
});
const downDecision = await downService.resolve('implement a function');
expect(downDecision.ruleName).toBe('fallback');
expect(downDecision.provider).toBe('anthropic');
// degraded → still routable, selected by its own rule, not the fallback chain
const degradedService = makeService([codingRule], { openai: { status: 'degraded' } });
const degradedDecision = await degradedService.resolve('implement a function');
expect(degradedDecision.ruleName).toBe('coding rule');
expect(degradedDecision.provider).toBe('openai');
});
});
-624
View File
@@ -1,624 +0,0 @@
import 'reflect-metadata';
import { mkdtemp, mkdir, readFile, rm, writeFile } from 'node:fs/promises';
import * as nodeOs from 'node:os';
import { dirname, isAbsolute, join, relative, resolve } from 'node:path';
import * as nodeUrl from 'node:url';
import { MODULE_METADATA } from '@nestjs/common/constants.js';
import { describe, expect, it, vi } from 'vitest';
import type { MosaicConfig } from '@mosaicstack/config';
interface ComposedModuleGraph {
imports: readonly unknown[];
federationModule: unknown;
bootLogLines: readonly string[];
mosaicConfig: MosaicConfig;
resolvedConfigPath: string;
}
type StorageTier = 'local' | 'standalone' | 'federated';
interface ModuleGraphFixture {
tempRoot: string;
anchor: string;
homePath: string;
cwdPath: string;
monorepoRootEnvPath: string;
gatewayLocalEnvPath: string;
daemonEnvPath: string;
monorepoRootConfigPath: string;
gatewayLocalConfigPath: string;
}
interface ModuleGraphFixtureOptions {
rootEnvMode?: 'present' | 'absent';
rootTier?: StorageTier;
rootEnvContents?: string;
redactionMarker?: string;
gatewayLocalTier?: StorageTier;
gatewayLocalEnvContents?: string;
daemonEnvContents?: string;
inheritedTier?: StorageTier;
expectedProcessTier?: string;
setup?: (fixture: ModuleGraphFixture) => Promise<void>;
}
// Each case uses vi.resetModules() and re-imports the full gateway graph for distinct ambient FS/env; CI needs headroom, while this still guards genuine hangs.
const MODULE_IMPORT_TIMEOUT_MS = 120_000;
const MONOREPO_ROOT_DOTENV_LABEL = 'monorepo-root .env';
const DAEMON_DOTENV_LABEL = 'daemon .env';
function configJson(tier: StorageTier): string {
if (tier === 'local') {
return JSON.stringify({
tier,
storage: { type: 'pglite', dataDir: '.mosaic/storage-pglite' },
queue: { type: 'local', dataDir: '.mosaic/queue' },
memory: { type: 'keyword' },
});
}
return JSON.stringify({
tier,
storage: { type: 'postgres', url: 'postgresql://fixture.invalid/mosaic' },
queue: { type: 'bullmq' },
memory: { type: tier === 'federated' ? 'pgvector' : 'keyword' },
});
}
function snapshotProcessEnv(): Record<string, string | undefined> {
return { ...process.env };
}
function restoreProcessEnv(snapshot: Record<string, string | undefined>): void {
for (const key of Object.keys(process.env)) {
if (!(key in snapshot)) {
delete process.env[key];
}
}
for (const [key, value] of Object.entries(snapshot)) {
if (value === undefined) {
delete process.env[key];
continue;
}
process.env[key] = value;
}
}
function expectPathUnderTempRoot(path: string, tempRoot: string): void {
const relativePath = relative(tempRoot, path);
expect(relativePath === '' || (!relativePath.startsWith('..') && !isAbsolute(relativePath))).toBe(
true,
);
}
async function writeFixture(path: string, contents: string, tempRoot: string): Promise<void> {
expectPathUnderTempRoot(path, tempRoot);
await mkdir(dirname(path), { recursive: true });
await writeFile(path, contents, 'utf8');
}
interface ConfigModuleProvider {
provide: string;
useFactory: () => MosaicConfig;
}
function isConfigModuleProvider(value: unknown): value is ConfigModuleProvider {
if (typeof value !== 'object' || value === null) {
return false;
}
if (!('provide' in value) || typeof value.provide !== 'string') {
return false;
}
return 'useFactory' in value && typeof value.useFactory === 'function';
}
function singleBootLogLine(bootLogLines: readonly string[]): string {
expect(bootLogLines).toHaveLength(1);
const [bootLogLine] = bootLogLines;
if (bootLogLine === undefined) {
throw new Error('Expected a single boot log line');
}
return bootLogLine;
}
function expectBootLogLine(
bootLogLines: readonly string[],
tier: StorageTier,
source: string,
): void {
const bootLogLine = singleBootLogLine(bootLogLines);
expect(bootLogLine).toContain(`storage tier=${tier}`);
expect(bootLogLine).toContain(`source=${source}`);
}
async function loadModuleGraphFromDotenv(
options: ModuleGraphFixtureOptions,
): Promise<ComposedModuleGraph> {
const originalEnv = snapshotProcessEnv();
const tempRoot = await mkdtemp(join(nodeOs.tmpdir(), 'mosaic-gateway-module-'));
let consoleInfoSpy: ReturnType<typeof vi.spyOn> | undefined;
let cwdSpy: ReturnType<typeof vi.spyOn> | undefined;
try {
const anchor = join(tempRoot, 'anchored', 'apps', 'gateway', 'src');
const homePath = join(tempRoot, 'home');
const cwdPath = join(tempRoot, 'ambient', 'parent', 'cwd');
const fixture: ModuleGraphFixture = {
tempRoot,
anchor,
homePath,
cwdPath,
monorepoRootEnvPath: resolve(anchor, '../../..', '.env'),
gatewayLocalEnvPath: resolve(anchor, '..', '.env'),
daemonEnvPath: join(homePath, '.config', 'mosaic', 'gateway', '.env'),
monorepoRootConfigPath: resolve(anchor, '../../..', 'mosaic.config.json'),
gatewayLocalConfigPath: resolve(anchor, '..', 'mosaic.config.json'),
};
consoleInfoSpy = vi.spyOn(console, 'info').mockImplementation((): void => undefined);
for (const path of Object.values(fixture)) {
expectPathUnderTempRoot(path, tempRoot);
}
await mkdir(anchor, { recursive: true });
await mkdir(cwdPath, { recursive: true });
if ((options.rootEnvMode ?? 'present') === 'absent') {
if (
options.rootEnvContents !== undefined ||
options.rootTier !== undefined ||
options.redactionMarker !== undefined
) {
throw new Error('Expected no root env fixture values when rootEnvMode is absent');
}
} else {
if (options.rootEnvContents === undefined && options.rootTier === undefined) {
throw new Error('Expected rootTier or rootEnvContents');
}
const rootFixture = options.rootEnvContents ?? `MOSAIC_STORAGE_TIER=${options.rootTier}\n`;
const rootFixtureWithMarker = options.redactionMarker
? `${rootFixture}BETTER_AUTH_SECRET=${options.redactionMarker}\n`
: rootFixture;
await writeFixture(fixture.monorepoRootEnvPath, rootFixtureWithMarker, tempRoot);
}
if (options.daemonEnvContents !== undefined) {
await writeFixture(fixture.daemonEnvPath, options.daemonEnvContents, tempRoot);
}
if (options.gatewayLocalEnvContents !== undefined) {
await writeFixture(fixture.gatewayLocalEnvPath, options.gatewayLocalEnvContents, tempRoot);
} else if (options.gatewayLocalTier !== undefined) {
await writeFixture(
fixture.gatewayLocalEnvPath,
`MOSAIC_STORAGE_TIER=${options.gatewayLocalTier}\n`,
tempRoot,
);
}
process.env['HOME'] = homePath;
delete process.env['MOSAIC_STORAGE_TIER'];
delete process.env['DATABASE_URL'];
delete process.env['VALKEY_URL'];
delete process.env['MOSAIC_GATEWAY_HOME'];
await options.setup?.(fixture);
if (options.inheritedTier !== undefined) {
process.env['MOSAIC_STORAGE_TIER'] = options.inheritedTier;
}
vi.resetModules();
vi.doMock('node:os', () => ({ ...nodeOs, homedir: (): string => homePath }));
vi.doMock('node:url', () => ({
...nodeUrl,
fileURLToPath: (url: string | URL): string => {
const actualPath = nodeUrl.fileURLToPath(url);
if (
actualPath.endsWith('/apps/gateway/src/env.ts') ||
actualPath.endsWith('/apps/gateway/src/env.js')
) {
return join(anchor, 'env.ts');
}
return actualPath;
},
}));
cwdSpy = vi.spyOn(process, 'cwd').mockReturnValue(cwdPath);
if (options.inheritedTier === undefined) {
expect(process.env['MOSAIC_STORAGE_TIER']).toBeUndefined();
} else {
expect(process.env['MOSAIC_STORAGE_TIER']).toBe(options.inheritedTier);
}
const envModule = await import('./env.js');
expect(process.env['MOSAIC_STORAGE_TIER']).toBe(
options.expectedProcessTier ?? options.rootTier,
);
const { AppModule } = await import('./app.module.js');
const { FederationModule } = await import('./federation/federation.module.js');
const imports: unknown = Reflect.getMetadata(MODULE_METADATA.IMPORTS, AppModule);
if (!Array.isArray(imports)) {
throw new Error('AppModule imports metadata is not an array');
}
const { ConfigModule, MOSAIC_CONFIG } = await import('./config/config.module.js');
const providers: unknown = Reflect.getMetadata(MODULE_METADATA.PROVIDERS, ConfigModule);
if (!Array.isArray(providers)) {
throw new Error('ConfigModule providers metadata is not an array');
}
const configProvider = providers
.filter(isConfigModuleProvider)
.find((provider: ConfigModuleProvider): boolean => provider.provide === MOSAIC_CONFIG);
if (!configProvider) {
throw new Error('MOSAIC_CONFIG provider factory not found');
}
return {
imports,
federationModule: FederationModule,
bootLogLines: consoleInfoSpy.mock.calls.map((args: readonly unknown[]): string =>
args.map((value: unknown): string => String(value)).join(' '),
),
mosaicConfig: configProvider.useFactory(),
resolvedConfigPath: envModule.resolveGatewayConfigPath(),
};
} finally {
cwdSpy?.mockRestore();
vi.doUnmock('node:url');
vi.doUnmock('node:os');
vi.resetModules();
consoleInfoSpy?.mockRestore();
restoreProcessEnv(originalEnv);
await rm(tempRoot, { recursive: true, force: true });
}
}
describe('AppModule federation gating', (): void => {
it('loads dotenv before tracing and AppModule evaluation', async (): Promise<void> => {
const mainSource = await readFile(new URL('./main.ts', import.meta.url), 'utf8');
const envImportIndex = mainSource.indexOf("import './env.js';");
const tracingImportIndex = mainSource.indexOf("import './tracing.js';");
const appModuleImportIndex = mainSource.indexOf("import { AppModule } from './app.module.js';");
expect(envImportIndex).toBeGreaterThan(-1);
expect(envImportIndex).toBeLessThan(tracingImportIndex);
expect(envImportIndex).toBeLessThan(appModuleImportIndex);
});
it(
'ignores ambient cwd/.env and cwd/../.env files',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootTier: 'local',
setup: async (fixture: ModuleGraphFixture): Promise<void> => {
await writeFixture(
join(fixture.cwdPath, '.env'),
'MOSAIC_STORAGE_TIER=federated\n',
fixture.tempRoot,
);
await writeFixture(
resolve(fixture.cwdPath, '..', '.env'),
'MOSAIC_STORAGE_TIER=federated\n',
fixture.tempRoot,
);
},
});
expect(graph.imports).not.toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'local', MONOREPO_ROOT_DOTENV_LABEL);
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'ignores an ambient cwd/mosaic.config.json federated config',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootTier: 'local',
setup: async (fixture: ModuleGraphFixture): Promise<void> => {
await writeFixture(
join(fixture.cwdPath, 'mosaic.config.json'),
configJson('federated'),
fixture.tempRoot,
);
},
});
expect(graph.imports).not.toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'local', MONOREPO_ROOT_DOTENV_LABEL);
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'ignores an ambient cwd/../../mosaic.config.json federated config',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootTier: 'local',
setup: async (fixture: ModuleGraphFixture): Promise<void> => {
await writeFixture(
resolve(fixture.cwdPath, '../..', 'mosaic.config.json'),
configJson('federated'),
fixture.tempRoot,
);
},
});
expect(graph.imports).not.toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'local', MONOREPO_ROOT_DOTENV_LABEL);
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'anchored gateway-local config wins monorepo-root config and registers FederationModule',
async (): Promise<void> => {
let gatewayLocalConfigPath = '';
const graph = await loadModuleGraphFromDotenv({
rootTier: 'local',
setup: async (fixture: ModuleGraphFixture): Promise<void> => {
gatewayLocalConfigPath = fixture.gatewayLocalConfigPath;
await writeFixture(
fixture.gatewayLocalConfigPath,
configJson('federated'),
fixture.tempRoot,
);
await writeFixture(fixture.monorepoRootConfigPath, configJson('local'), fixture.tempRoot);
},
});
expect(graph.resolvedConfigPath).toBe(gatewayLocalConfigPath);
expect(graph.mosaicConfig.tier).toBe('federated');
expect(graph.imports).toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'federated', 'mosaic.config.json');
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'resolves the daemon-installed GATEWAY_HOME/mosaic.config.json ahead of gateway-local and monorepo-root configs',
async (): Promise<void> => {
let daemonConfigPath = '';
const graph = await loadModuleGraphFromDotenv({
rootEnvMode: 'absent',
setup: async (fixture: ModuleGraphFixture): Promise<void> => {
const externalGatewayHome = join(fixture.tempRoot, 'external-gateway-home');
daemonConfigPath = join(externalGatewayHome, 'mosaic.config.json');
await writeFixture(daemonConfigPath, configJson('federated'), fixture.tempRoot);
await writeFixture(
fixture.gatewayLocalConfigPath,
configJson('standalone'),
fixture.tempRoot,
);
await writeFixture(fixture.monorepoRootConfigPath, configJson('local'), fixture.tempRoot);
process.env['MOSAIC_GATEWAY_HOME'] = externalGatewayHome;
process.env['DATABASE_URL'] = 'postgresql://fixture.invalid/mosaic';
},
});
expect(graph.resolvedConfigPath).toBe(daemonConfigPath);
expect(graph.mosaicConfig.tier).toBe('federated');
expect(graph.imports).toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'federated', 'mosaic.config.json');
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'logs mosaic.config.json when anchored config and env tiers are both federated',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootTier: 'federated',
setup: async (fixture: ModuleGraphFixture): Promise<void> => {
await writeFixture(
fixture.monorepoRootConfigPath,
configJson('federated'),
fixture.tempRoot,
);
},
});
expect(graph.imports).toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'federated', 'mosaic.config.json');
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'logs standalone from a monorepo-root .env DATABASE_URL fallback',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootEnvContents: 'DATABASE_URL=fixture-database-url\n',
});
expect(graph.imports).not.toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'standalone', MONOREPO_ROOT_DOTENV_LABEL);
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'attributes an invalid monorepo-root dotenv tier to the default',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootEnvContents: 'MOSAIC_STORAGE_TIER=invalid\n',
expectedProcessTier: 'invalid',
});
expect(graph.imports).not.toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'local', 'default');
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'attributes DATABASE_URL fallback to daemon .env ahead of inherited local tier',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootEnvMode: 'absent',
daemonEnvContents: 'DATABASE_URL=fixture-database-url\n',
inheritedTier: 'local',
expectedProcessTier: 'local',
});
expect(graph.imports).not.toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'standalone', DAEMON_DOTENV_LABEL);
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'daemon .env wins over monorepo-root and gateway-local tier values',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootTier: 'local',
gatewayLocalTier: 'federated',
daemonEnvContents: 'MOSAIC_STORAGE_TIER=standalone\n',
expectedProcessTier: 'standalone',
});
expect(graph.imports).not.toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'standalone', DAEMON_DOTENV_LABEL);
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'inherits process.env.MOSAIC_STORAGE_TIER over daemon, monorepo-root, and gateway-local dotenv values',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootTier: 'local',
gatewayLocalTier: 'federated',
daemonEnvContents: 'MOSAIC_STORAGE_TIER=federated\n',
inheritedTier: 'standalone',
expectedProcessTier: 'standalone',
});
expect(graph.imports).not.toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'standalone', 'process environment');
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'gateway-local .env configures the tier and source when the monorepo-root .env is absent',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootEnvMode: 'absent',
gatewayLocalTier: 'federated',
expectedProcessTier: 'federated',
});
expect(graph.imports).toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'federated', 'gateway-local .env');
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'monorepo-root .env wins over gateway-local tier values',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootTier: 'standalone',
gatewayLocalTier: 'federated',
});
expect(graph.imports).not.toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'standalone', MONOREPO_ROOT_DOTENV_LABEL);
},
MODULE_IMPORT_TIMEOUT_MS,
);
it.each(['local', 'standalone'] as const)(
'does not register FederationModule for the %s tier',
async (tier): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({ rootTier: tier });
expect(graph.imports).not.toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, tier, MONOREPO_ROOT_DOTENV_LABEL);
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'registers FederationModule when federated tier is supplied by the anchored monorepo root .env',
async (): Promise<void> => {
const redactionMarker = 'redaction-fixture-marker';
const graph = await loadModuleGraphFromDotenv({
rootTier: 'federated',
redactionMarker,
});
expect(graph.imports).toContain(graph.federationModule);
expectBootLogLine(graph.bootLogLines, 'federated', MONOREPO_ROOT_DOTENV_LABEL);
expect(singleBootLogLine(graph.bootLogLines)).not.toContain(redactionMarker);
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'MOSAIC_CONFIG provider ignores an ambient cwd/mosaic.config.json config',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootTier: 'local',
setup: async (fixture: ModuleGraphFixture): Promise<void> => {
await writeFixture(
join(fixture.cwdPath, 'mosaic.config.json'),
JSON.stringify({
tier: 'federated',
storage: {
type: 'postgres',
url: 'postgresql://ambient-attacker.invalid/mosaic',
enableVector: true,
},
queue: { type: 'bullmq' },
memory: { type: 'pgvector' },
}),
fixture.tempRoot,
);
},
});
expect(graph.mosaicConfig.tier).toBe('local');
expect(graph.mosaicConfig.storage).not.toEqual(
expect.objectContaining({ url: 'postgresql://ambient-attacker.invalid/mosaic' }),
);
},
MODULE_IMPORT_TIMEOUT_MS,
);
it(
'MOSAIC_CONFIG provider resolves from the anchored monorepo-root mosaic.config.json',
async (): Promise<void> => {
const graph = await loadModuleGraphFromDotenv({
rootTier: 'local',
setup: async (fixture: ModuleGraphFixture): Promise<void> => {
await writeFixture(
fixture.monorepoRootConfigPath,
configJson('federated'),
fixture.tempRoot,
);
},
});
expect(graph.mosaicConfig.tier).toBe('federated');
expect(graph.mosaicConfig.storage).toEqual(
expect.objectContaining({ url: 'postgresql://fixture.invalid/mosaic' }),
);
},
MODULE_IMPORT_TIMEOUT_MS,
);
});
+1 -13
View File
@@ -21,22 +21,11 @@ import { AdminModule } from './admin/admin.module.js';
import { CommandsModule } from './commands/commands.module.js';
import { PreferencesModule } from './preferences/preferences.module.js';
import { GCModule } from './gc/gc.module.js';
import { HarnessModule } from './harness/harness.module.js';
import { ReloadModule } from './reload/reload.module.js';
import { WorkspaceModule } from './workspace/workspace.module.js';
import { QueueModule } from './queue/queue.module.js';
import { FederationModule } from './federation/federation.module.js';
import { ThrottlerGuard, ThrottlerModule } from '@nestjs/throttler';
import { loadConfig } from '@mosaicstack/config';
import { resolveGatewayConfigPath } from './env.js';
// Federation (step-ca client, enrollment, federation verbs) is only wired for
// tier 'federated' — CaService hard-requires STEP_CA_* at construction, which
// must not gate standalone/local boots (docker-compose.federated.yml: the
// federation profile "must not start in non-federated dev"). The gateway
// entrypoint loads env.ts before evaluating this module so dotenv-backed tier
// configuration is visible here.
const federationEnabled = loadConfig(resolveGatewayConfigPath()).tier === 'federated';
@Module({
imports: [
@@ -61,11 +50,10 @@ const federationEnabled = loadConfig(resolveGatewayConfigPath()).tier === 'feder
PreferencesModule,
CommandsModule,
GCModule,
HarnessModule,
QueueModule,
ReloadModule,
WorkspaceModule,
...(federationEnabled ? [FederationModule] : []),
FederationModule,
],
controllers: [HealthController],
providers: [
@@ -1,24 +1,10 @@
import 'reflect-metadata';
import { readFileSync } from 'node:fs';
import { resolve } from 'node:path';
import { ValidationPipe, type ArgumentMetadata } from '@nestjs/common';
import { Test } from '@nestjs/testing';
import { validateSync, type ValidationError } from 'class-validator';
import { beforeEach, afterEach, describe, expect, it, vi } from 'vitest';
import type { HarnessAdapter, HarnessConversationService } from '@mosaicstack/types';
import { AgentService } from '../../agent/agent.service.js';
import { AuthGuard } from '../../auth/auth.guard.js';
import { HarnessRegistry } from '../../harness/harness.registry.js';
import { HARNESS_REGISTRY } from '../../harness/harness.tokens.js';
import type { AuthenticatedUserLike } from '../../auth/session-scope.js';
import { validateSync } from 'class-validator';
import { describe, expect, it, vi } from 'vitest';
import { SendMessageDto } from '../../conversations/conversations.dto.js';
import { ChatController } from '../chat.controller.js';
import { ChatGateway } from '../chat.gateway.js';
import { ChatRuntimeRouter } from '../chat-runtime-router.js';
import { EmbeddedChatRuntime } from '../embedded-chat.runtime.js';
import { HarnessChatRuntime } from '../harness-chat.runtime.js';
import type { ChatRuntime } from '../chat-runtime.js';
import { ChatRequestDto, HarnessTurnSendDto } from '../chat.dto.js';
import { ChatRequestDto } from '../chat.dto.js';
import { validateSocketSession } from '../chat.gateway-auth.js';
describe('Chat controller source hardening', () => {
@@ -31,328 +17,6 @@ describe('Chat controller source hardening', () => {
});
});
describe('Chat runtime routing hardening (Task Five)', () => {
it('routes /api/chat through the exclusive ChatRuntimeRouter, never the embedded AgentService', () => {
const source = readFileSync(resolve('src/chat/chat.controller.ts'), 'utf8');
// pi-rpc /api/chat must resolve execution through the one runtime router and never
// reach into embedded agent execution. Legacy embedded behaviour lives behind
// EmbeddedChatRuntime, reachable only via the router in legacy mode.
expect(source).toContain('ChatRuntimeRouter');
expect(source).not.toContain('@Inject(AgentService)');
expect(source).not.toContain("from '../agent/agent.service.js'");
});
it('gateway no longer injects the embedded AgentService or RoutingEngineService', () => {
const source = readFileSync(resolve('src/chat/chat.gateway.ts'), 'utf8');
expect(source).toContain('ChatRuntimeRouter');
expect(source).not.toContain('@Inject(AgentService)');
expect(source).not.toContain('@Inject(RoutingEngineService)');
});
});
describe('Harness turn:send DTO validation (Task Five, group 2 — frozen wire contract, production pipe)', () => {
// Correction #2 (Scrappy fe3e02): drive PLAIN wire payloads through the EXACT production
// validation the gateway applies to inbound bodies — the global ValidationPipe in
// apps/gateway/src/main.ts: { whitelist, forbidNonWhitelisted, transform }. This exercises
// the real plainToInstance transform, nested @Type/@ValidateNested recursion, and whitelist
// stripping — the path a turn:send actually travels — rather than a hand-built class instance
// fed to validateSync (which never runs @Type and is masked green by class-validator's
// empty-metadata unknownValue behaviour). Anti-masking: every VALUE-rule red asserts the field
// carries a REAL value constraint (not `whitelistValidation`/`unknownValue`), which the
// decorator-less stub can NEVER produce; every authority-field red asserts the forbidden field
// is rejected while a valid field is NOT — false against the stub, which over-rejects everything.
const PRODUCTION_PIPE = () =>
new ValidationPipe({ whitelist: true, forbidNonWhitelisted: true, transform: true });
// Same production configuration, but hand back the raw ValidationError[] instead of throwing a
// BadRequestException, so the test can inspect per-field constraint keys and nested children.
const failPipe = new ValidationPipe({
whitelist: true,
forbidNonWhitelisted: true,
transform: true,
exceptionFactory: (errs: ValidationError[]) => errs as unknown as Error,
});
const asBody = (metatype: ArgumentMetadata['metatype']): ArgumentMetadata => ({
type: 'body',
metatype,
data: '',
});
const UUID_V4 = '11111111-1111-4111-8111-111111111111';
const validSelection = () => ({ harnessId: 'pi', providerId: 'anthropic', modelId: 'claude' });
const validPayload = () => ({
conversationId: UUID_V4,
content: 'hello there',
selection: validSelection(),
idempotencyKey: UUID_V4,
});
// Constraint keys that mean "the field was rejected for existing", NOT "its VALUE failed a real
// rule". The decorator-less RED stub can only ever emit these (or nothing), so requiring a REAL
// value constraint on a field is unmaskable until Step Three attaches the decorators.
const NON_VALUE = new Set(['whitelistValidation', 'unknownValue']);
// Flatten the error tree to `dotted.path -> Set<constraintKey>` (parent + nested children).
const collect = (errors: ValidationError[], prefix = ''): Map<string, Set<string>> => {
const map = new Map<string, Set<string>>();
const add = (path: string, keys: Iterable<string>): void => {
const set = map.get(path) ?? new Set<string>();
for (const key of keys) set.add(key);
map.set(path, set);
};
for (const error of errors) {
const path = prefix ? `${prefix}.${error.property}` : error.property;
if (error.constraints) add(path, Object.keys(error.constraints));
if (error.children?.length) for (const [p, s] of collect(error.children, path)) add(p, s);
}
return map;
};
// Run the production pipe over a plain payload; return the ValidationError[] it raised (empty
// when the payload is accepted).
const errorsFor = async (
payload: unknown,
metatype: ArgumentMetadata['metatype'] = HarnessTurnSendDto,
): Promise<ValidationError[]> => {
try {
await failPipe.transform(payload, asBody(metatype));
return [];
} catch (thrown) {
return thrown as ValidationError[];
}
};
// True when `path` is rejected by a REAL value rule (IsUUID, IsNotEmpty, MaxLength, …), i.e. a
// constraint that is not a mere existence/whitelist rejection.
const hasValueConstraint = async (
payload: unknown,
path: string,
metatype: ArgumentMetadata['metatype'] = HarnessTurnSendDto,
): Promise<boolean> => {
const keys = collect(await errorsFor(payload, metatype)).get(path);
return keys ? [...keys].some((key) => !NON_VALUE.has(key)) : false;
};
// Paths rejected purely for existing outside the whitelist (authority / unknown-field defence).
const forbiddenFields = async (payload: unknown): Promise<string[]> => {
const out: string[] = [];
for (const [path, keys] of collect(await errorsFor(payload))) {
if (keys.has('whitelistValidation')) out.push(path);
}
return out;
};
// --- GREEN controls: prove the production pipe machinery genuinely accepts a well-formed,
// already-decorated DTO AND enforces its constraints — so the group's reds below are the
// STUB's missing decorators, not a broken harness. Both pass today. ---
it('GREEN control: the production pipe accepts a well-formed, decorated ChatRequestDto', async () => {
await expect(
PRODUCTION_PIPE().transform({ content: 'hello there' }, asBody(ChatRequestDto)),
).resolves.toBeTruthy();
});
it('GREEN control: the same production pipe rejects over-long ChatRequestDto content (engine truly enforces)', async () => {
expect(
await hasValueConstraint({ content: 'x'.repeat(10_001) }, 'content', ChatRequestDto),
).toBe(true);
});
// --- RED value-rule fence: each asserts the turn:send field is rejected by a REAL value rule.
// All fail against the decorator-less stub; they go green when Step Three adds the decorators.
// No validation implementation is permitted during RED collection. ---
it('requires a conversation id (rejects a missing conversationId)', async () => {
expect(
await hasValueConstraint({ ...validPayload(), conversationId: undefined }, 'conversationId'),
).toBe(true);
});
it('requires a UUID conversation id (rejects a non-UUID conversationId)', async () => {
expect(
await hasValueConstraint(
{ ...validPayload(), conversationId: 'not-a-uuid' },
'conversationId',
),
).toBe(true);
});
it('rejects empty / whitespace-only content (content is trimmed 1..10000)', async () => {
expect(await hasValueConstraint({ ...validPayload(), content: ' ' }, 'content')).toBe(true);
});
it('rejects content above 10000 characters', async () => {
expect(
await hasValueConstraint({ ...validPayload(), content: 'x'.repeat(10_001) }, 'content'),
).toBe(true);
});
it('requires the nested selection triple (rejects a missing selection)', async () => {
expect(await hasValueConstraint({ ...validPayload(), selection: undefined }, 'selection')).toBe(
true,
);
});
it('rejects malformed selection nesting (a non-object selection)', async () => {
expect(
await hasValueConstraint(
{ ...validPayload(), selection: 'pi/anthropic/claude' },
'selection',
),
).toBe(true);
});
it('rejects a selection with a blank harnessId (each id must be non-empty)', async () => {
const payload = {
...validPayload(),
selection: { harnessId: '', providerId: 'anthropic', modelId: 'claude' },
};
expect(await hasValueConstraint(payload, 'selection.harnessId')).toBe(true);
});
it('rejects a selection missing the modelId', async () => {
const payload = { ...validPayload(), selection: { harnessId: 'pi', providerId: 'anthropic' } };
expect(await hasValueConstraint(payload, 'selection.modelId')).toBe(true);
});
it('requires a UUID-v4 idempotency key (rejects a missing key)', async () => {
expect(
await hasValueConstraint({ ...validPayload(), idempotencyKey: undefined }, 'idempotencyKey'),
).toBe(true);
});
it('rejects a non-UUID-v4 idempotency key', async () => {
expect(
await hasValueConstraint(
{ ...validPayload(), idempotencyKey: 'not-a-key' },
'idempotencyKey',
),
).toBe(true);
});
// --- RED authority/unknown-field fence: the forbidden field is rejected while a valid field is
// NOT spuriously rejected. False against the stub (which over-rejects every field, including
// `content`); true only once Step Three whitelists the legitimate fields. ---
it('rejects a top-level authority field (provider) without flagging valid fields', async () => {
const forbidden = await forbiddenFields({ ...validPayload(), provider: 'openai' });
expect(forbidden).toContain('provider');
expect(forbidden).not.toContain('content');
});
it('rejects a top-level modelId authority field without flagging valid fields', async () => {
const forbidden = await forbiddenFields({ ...validPayload(), modelId: 'gpt-5' });
expect(forbidden).toContain('modelId');
expect(forbidden).not.toContain('content');
});
it('rejects an attachments field (not part of the frozen turn:send contract)', async () => {
const forbidden = await forbiddenFields({ ...validPayload(), attachments: [{ id: 'a1' }] });
expect(forbidden).toContain('attachments');
expect(forbidden).not.toContain('content');
});
});
describe('Chat runtime routing — behavioural /api/chat fence (Task Five, group 3)', () => {
// The router's own runtime tokens. The controller must reach chat execution ONLY through the
// router; the embedded AgentService below is the forbidden path proven untouched.
const embedded: ChatRuntime = { kind: 'embedded' };
const harness: ChatRuntime = { kind: 'harness' };
// Structurally-complete, non-sentinel conversation service; its methods are never invoked here.
const boundConversationService = {
attach: () => Promise.reject(new Error('unused')),
detach: () => Promise.reject(new Error('unused')),
send: () => Promise.reject(new Error('unused')),
subscribeFrom: async function* () {
throw new Error('unused');
},
} as unknown as HarnessConversationService;
it('handles an /api/chat turn without invoking the embedded AgentService (behavioural, zero calls)', async () => {
const calls = { getSession: 0, createSession: 0, onEvent: 0, prompt: 0 };
// A spy standing in for the forbidden embedded runtime. `createSession` rejects so today's
// controller bails immediately (never reaching the 120s agent-response wait) while still
// recording that it reached into the embedded path — the RED anchor. Under Step Three the
// router owns execution and this spy is never touched, so every counter stays 0 (GREEN).
// Any masking mutation that re-enters embedded execution flips a counter and re-reds the test.
const agentSpy = {
getSession: () => {
calls.getSession += 1;
return undefined;
},
createSession: () => {
calls.createSession += 1;
return Promise.reject(new Error('spy: embedded AgentService must not be used'));
},
onEvent: () => {
calls.onEvent += 1;
return () => {};
},
prompt: () => {
calls.prompt += 1;
return Promise.resolve();
},
};
const moduleRef = await Test.createTestingModule({
controllers: [ChatController],
providers: [
{ provide: AgentService, useValue: agentSpy },
{
// Provided so the Step-Three controller (which injects the router) still resolves here;
// the real, empty registry seeded with a pi adapter keeps the router pi-rpc-ready.
provide: HARNESS_REGISTRY,
useFactory: () => {
const registry = new HarnessRegistry();
registry.register({
id: 'pi',
describe: () => Promise.reject(new Error('unused')),
catalog: () => Promise.reject(new Error('unused')),
create: () => Promise.reject(new Error('unused')),
resume: () => Promise.reject(new Error('unused')),
} as HarnessAdapter);
return registry;
},
},
{
provide: ChatRuntimeRouter,
useFactory: (registry: HarnessRegistry) =>
new ChatRuntimeRouter(registry, boundConversationService, embedded, harness, 'pi-rpc'),
inject: [HARNESS_REGISTRY],
},
],
})
// ChatController's @UseGuards(AuthGuard) is resolved during instance loading; AuthGuard
// injects AUTH, an HTTP-only concern never exercised by a direct handler call. Stub it so
// the graph resolves and the test reds on BEHAVIOUR, not on a DI collection error.
.overrideGuard(AuthGuard)
.useValue({ canActivate: () => true })
.compile();
try {
const controller = moduleRef.get(ChatController, { strict: false });
const user = { id: 'user-1' } as AuthenticatedUserLike;
try {
await controller.chat({ content: 'route me' } as ChatRequestDto, user);
} catch {
// Today: SERVICE_UNAVAILABLE from the rejecting spy. Under Step Three: the router path may
// reject on the deliberately-unbound fake conversation service. Either way the
// embedded-call counters below are the contract, not the handler's return value.
}
expect(calls).toEqual({ getSession: 0, createSession: 0, onEvent: 0, prompt: 0 });
} finally {
await moduleRef.close();
}
});
it('wires the exclusive ChatRuntimeRouter into the chat module graph (defense-in-depth source check)', () => {
const source = readFileSync(resolve('src/chat/chat.module.ts'), 'utf8');
// The controller can only inject the router if the module actually provides it. RED today:
// ChatModule provides only ChatGateway. GREEN once Step Three registers ChatRuntimeRouter.
expect(source).toContain('ChatRuntimeRouter');
});
});
describe('WebSocket session authentication', () => {
it('returns null when the handshake does not resolve to a session', async () => {
const result = await validateSocketSession(
@@ -383,634 +47,6 @@ describe('WebSocket session authentication', () => {
});
});
describe('Non-Discord ("Telegram-equivalent") socket ingress rejection (Task Five, both runtime modes)', () => {
// Scrappy C adjudication regression: a non-Discord service socket — modelled as a "Telegram"
// client presenting a handshake token the gateway does NOT honour and carrying no Better-Auth
// session — must be DISCONNECTED at handleConnection, never gain the `discordService` trust flag
// or any user scope, receive no manifest and no ack, and reach NEITHER the embedded runtime NOR
// the harness. This must hold in BOTH legacy and pi-rpc modes: introducing the exclusive
// ChatRuntimeRouter / pi-rpc path must not open a second, non-Discord service ingress. This is a
// GREEN control (it holds on this branch and must keep holding through Step Three); no Telegram
// production route or plugin exists or is added — the assertion is that no such surface is
// reachable. The runtime slot is fronted with a REAL, ready ChatRuntimeRouter over
// EmbeddedChatRuntime + HarnessChatRuntime so that any accidental dispatch would flip a spy
// rather than silently pass; the router is never resolved because the socket is rejected first.
let priorMode: string | undefined;
beforeEach(() => {
priorMode = process.env['CHAT_HARNESS_RUNTIME'];
});
afterEach(() => {
if (priorMode === undefined) delete process.env['CHAT_HARNESS_RUNTIME'];
else process.env['CHAT_HARNESS_RUNTIME'] = priorMode;
});
// A pi-ready registry so a pi-rpc router resolves the harness cleanly at onModuleInit — modelling
// the hostile condition where the harness is live yet the non-Discord socket is still rejected.
const readyPiRegistry = (): HarnessRegistry => {
const registry = new HarnessRegistry();
registry.register({
id: 'pi',
describe: () => Promise.reject(new Error('unused')),
catalog: () => Promise.reject(new Error('unused')),
create: () => Promise.reject(new Error('unused')),
resume: () => Promise.reject(new Error('unused')),
} as HarnessAdapter);
return registry;
};
// Non-sentinel conversation service so pi-rpc onModuleInit resolves the harness (does not throw
// conversation_service_unavailable); its methods must never be invoked on the rejection path.
const availableConversationService = {
attach: () => Promise.reject(new Error('unused')),
detach: () => Promise.reject(new Error('unused')),
send: () => Promise.reject(new Error('unused')),
subscribeFrom: async function* () {
throw new Error('unused');
},
} as unknown as HarnessConversationService;
const readyRouter = (
mode: 'legacy' | 'pi-rpc',
agentService: unknown,
harnessConversations: unknown,
): ChatRuntimeRouter => {
const embedded = new EmbeddedChatRuntime(agentService as never);
const harness = new HarnessChatRuntime(harnessConversations as never);
const router = new ChatRuntimeRouter(
readyPiRegistry(),
availableConversationService,
embedded,
harness,
mode,
);
router.onModuleInit();
return router;
};
it.each(['legacy', 'pi-rpc'] as const)(
'disconnects a Telegram-shaped unauthenticated socket and dispatches to no runtime (%s mode)',
async (mode) => {
process.env['CHAT_HARNESS_RUNTIME'] = mode;
const agentService = {
getSession: vi.fn().mockReturnValue(undefined),
createSession: vi.fn(),
recordMessage: vi.fn(),
onEvent: vi.fn().mockReturnValue((): void => undefined),
addChannel: vi.fn(),
prompt: vi.fn().mockResolvedValue(undefined),
};
const harnessConversations = { append: vi.fn() };
// Auth stub that resolves NO session for the Telegram socket's headers — the sole gate a
// non-Discord client must pass, and does not.
const auth = { api: { getSession: vi.fn().mockResolvedValue(null) } };
const gateway = new ChatGateway(
readyRouter(mode, agentService, harnessConversations) as never,
auth as never,
{ conversations: { addMessage: vi.fn().mockResolvedValue(undefined) } } as never,
{} as never,
{} as never,
{} as never,
);
const client = {
id: `telegram-raw-${mode}`,
// A non-Discord service handshake: the gateway only honours `discordServiceToken`, so this
// token is ignored, and there is no session cookie for validateSocketSession to resolve.
handshake: { auth: { telegramServiceToken: 'ignored-non-discord-token' }, headers: {} },
data: {} as Record<string, unknown>,
emit: vi.fn(),
disconnect: vi.fn(),
};
await gateway.handleConnection(client as never);
// Rejected at the door: disconnected, no trust flag, no user scope, no manifest, and — the
// Task 5 send-capability rule — no send-protocol advertisement to an unauthenticated socket.
expect(client.disconnect).toHaveBeenCalled();
expect(client.data.discordService).not.toBe(true);
expect(client.data.user).toBeUndefined();
expect(client.emit).not.toHaveBeenCalledWith('commands:manifest', expect.anything());
expect(client.emit).not.toHaveBeenCalledWith('chat:send-capability', expect.anything());
// Even if the ignored socket then attempts a message, it carries no scope, so the send path
// never begins and no runtime is dispatched.
await gateway.handleMessage(
client as never,
{
conversationId: 'Nova:telegram:chat-1',
content: 'via telegram',
} as never,
);
expect(client.emit).not.toHaveBeenCalledWith('message:ack', expect.anything());
expect(agentService.createSession).not.toHaveBeenCalled();
expect(agentService.prompt).not.toHaveBeenCalled();
expect(harnessConversations.append).not.toHaveBeenCalled();
},
);
// A minimal authenticated-browser connection harness for the send-capability advertisement.
const connectAuthedBrowser = async (
mode: 'legacy' | 'pi-rpc',
clientId: string,
): Promise<{ emit: ReturnType<typeof vi.fn>; disconnect: ReturnType<typeof vi.fn> }> => {
process.env['CHAT_HARNESS_RUNTIME'] = mode;
const agentService = {
getSession: vi.fn().mockReturnValue(undefined),
createSession: vi.fn(),
recordMessage: vi.fn(),
onEvent: vi.fn().mockReturnValue((): void => undefined),
addChannel: vi.fn(),
prompt: vi.fn().mockResolvedValue(undefined),
};
const harnessConversations = { append: vi.fn() };
const auth = {
api: {
getSession: vi
.fn()
.mockResolvedValue({ user: { id: 'user-a' }, session: { id: 'session-a' } }),
},
};
const gateway = new ChatGateway(
readyRouter(mode, agentService, harnessConversations) as never,
auth as never,
{ conversations: { addMessage: vi.fn().mockResolvedValue(undefined) } } as never,
{ getManifest: vi.fn().mockReturnValue({ commands: [] }) } as never,
{} as never,
{} as never,
);
const client = {
id: clientId,
handshake: { auth: {}, headers: { cookie: 'session=abc' } },
data: {} as Record<string, unknown>,
emit: vi.fn(),
disconnect: vi.fn(),
};
await gateway.handleConnection(client as never);
return client as never;
};
it('advertises legacy-message exactly once to an authenticated browser in legacy mode (Task 5 MAJOR-1)', async () => {
const client = await connectAuthedBrowser('legacy', 'browser-cap-legacy');
// Legacy mode: the connected Gateway handles the `message` event, so it advertises
// `legacy-message` — targeted, connection-bound, exactly once.
expect(client.emit).toHaveBeenCalledWith('chat:send-capability', {
protocol: 'legacy-message',
connectionId: 'browser-cap-legacy',
});
const capabilityCalls = client.emit.mock.calls.filter(
(call: unknown[]) => call[0] === 'chat:send-capability',
);
expect(capabilityCalls).toHaveLength(1);
expect(client.disconnect).not.toHaveBeenCalled();
});
it('advertises unavailable (never turn-send) to an authenticated browser in pi-rpc mode (Task 5 MAJOR-1)', async () => {
const client = await connectAuthedBrowser('pi-rpc', 'browser-cap-pirpc');
// pi-rpc mode: the legacy `message` handler fails closed and the authenticated `turn:send`
// handler lands in Task 15, so Task 5 advertises `unavailable` — never `turn-send`.
expect(client.emit).toHaveBeenCalledWith('chat:send-capability', {
protocol: 'unavailable',
connectionId: 'browser-cap-pirpc',
});
const capabilityCalls = client.emit.mock.calls.filter(
(call: unknown[]) => call[0] === 'chat:send-capability',
);
expect(capabilityCalls).toHaveLength(1);
expect(capabilityCalls[0]?.[1]).not.toMatchObject({ protocol: 'turn-send' });
});
it.each(['legacy', 'pi-rpc'] as const)(
'never advertises send-capability to a Discord service socket (%s mode, Task 5 MAJOR-1)',
async (mode) => {
process.env['CHAT_HARNESS_RUNTIME'] = mode;
process.env['DISCORD_SERVICE_TOKEN'] = 'super-secret-discord-token';
const agentService = {
getSession: vi.fn().mockReturnValue(undefined),
createSession: vi.fn(),
recordMessage: vi.fn(),
onEvent: vi.fn().mockReturnValue((): void => undefined),
addChannel: vi.fn(),
prompt: vi.fn().mockResolvedValue(undefined),
};
const gateway = new ChatGateway(
readyRouter(mode, agentService, { append: vi.fn() }) as never,
{ api: { getSession: vi.fn() } } as never,
{ conversations: { addMessage: vi.fn().mockResolvedValue(undefined) } } as never,
{} as never,
{} as never,
{} as never,
);
const client = {
id: `discord-service-${mode}`,
handshake: { auth: { discordServiceToken: 'super-secret-discord-token' }, headers: {} },
data: {} as Record<string, unknown>,
emit: vi.fn(),
disconnect: vi.fn(),
};
await gateway.handleConnection(client as never);
// The trusted Discord service socket is not a browser; it never receives a browser
// send-protocol advertisement.
expect(client.data.discordService).toBe(true);
expect(client.emit).not.toHaveBeenCalledWith('chat:send-capability', expect.anything());
delete process.env['DISCORD_SERVICE_TOKEN'];
},
);
// Record-and-forward instrumentation at the REAL returned-lease boundary: wrap the lease's own
// dispatch/dispose so the test observes the Gateway's invocation counts through the real
// ChatRuntimeRouter -> EmbeddedChatRuntime path — no canned lease, synthesized method, or shim.
const instrumentLease = (
router: ChatRuntimeRouter,
order: string[],
counters: { dispatch: number; dispose: number },
): void => {
const realPrepare = router.prepareLegacySocketTurn.bind(router) as (
...args: unknown[]
) => Promise<{ ok: boolean; value?: { dispatch: () => unknown; dispose: () => unknown } }>;
vi.spyOn(router, 'prepareLegacySocketTurn').mockImplementation((async (...args: unknown[]) => {
const result = await realPrepare(...args);
if (result.ok && result.value) {
const lease = result.value;
const realDispatch = lease.dispatch.bind(lease);
const realDispose = lease.dispose.bind(lease);
lease.dispatch = (): unknown => {
counters.dispatch += 1;
order.push('dispatch');
return realDispatch();
};
lease.dispose = (): unknown => {
counters.dispose += 1;
return realDispose();
};
}
return result;
}) as never);
};
it('orders a legacy browser turn persist -> ack -> lease.dispatch -> prompt, each exactly once (Task 5 G2)', async () => {
process.env['CHAT_HARNESS_RUNTIME'] = 'legacy';
const order: string[] = [];
const counters = { dispatch: 0, dispose: 0 };
const session = {
provider: 'configured-provider',
modelId: 'configured-model',
piSession: {
thinkingLevel: 'medium',
getAvailableThinkingLevels: (): string[] => ['medium'],
},
};
const agentService = {
getSession: vi.fn().mockReturnValue(undefined),
createSession: vi.fn().mockResolvedValue(session),
recordMessage: vi.fn(),
onEvent: vi.fn().mockReturnValue((): void => undefined),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt: vi.fn().mockImplementation(async (): Promise<void> => {
order.push('prompt');
}),
};
const harnessConversations = { append: vi.fn() };
const brain = {
conversations: {
findById: vi.fn().mockResolvedValue({ id: 'conversation-order-1' }),
findMessages: vi.fn().mockResolvedValue([]),
create: vi.fn().mockResolvedValue(undefined),
update: vi.fn().mockResolvedValue(undefined),
addMessage: vi.fn().mockImplementation(async (): Promise<{ id: string }> => {
order.push('persist');
return { id: 'message-order-1' };
}),
},
};
const router = readyRouter('legacy', agentService, harnessConversations);
instrumentLease(router, order, counters);
const gateway = new ChatGateway(
router as never,
{ api: { getSession: vi.fn() } } as never,
brain as never,
{} as never,
{} as never,
{} as never,
);
const client = {
id: 'browser-order-1',
data: { user: { id: 'user-a' } },
emit: vi.fn().mockImplementation((event: string): void => {
if (event === 'message:ack') order.push('ack');
}),
};
await gateway.handleMessage(
client as never,
{
conversationId: 'conversation-order-1',
content: 'ordered hello',
} as never,
);
// The Gateway persists the user turn, THEN acks, THEN invokes the one-shot lease dispatch which
// finally prompts. Observed at the real lease boundary: dispatch is invoked exactly once and the
// runtime prompts exactly once.
expect(order).toEqual(['persist', 'ack', 'dispatch', 'prompt']);
expect(counters.dispatch).toBe(1);
expect(agentService.prompt).toHaveBeenCalledTimes(1);
expect(harnessConversations.append).not.toHaveBeenCalled();
});
it('drops a legacy browser turn on persistence failure: zero info/ack/dispatch/prompt, one clean disposal (Task 5 G2)', async () => {
process.env['CHAT_HARNESS_RUNTIME'] = 'legacy';
const order: string[] = [];
const counters = { dispatch: 0, dispose: 0 };
const unsub = vi.fn();
const session = {
provider: 'configured-provider',
modelId: 'configured-model',
piSession: {
thinkingLevel: 'medium',
getAvailableThinkingLevels: (): string[] => ['medium'],
},
};
const agentService = {
getSession: vi.fn().mockReturnValue(undefined),
createSession: vi.fn().mockResolvedValue(session),
recordMessage: vi.fn(),
onEvent: vi.fn().mockReturnValue(unsub),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt: vi.fn().mockResolvedValue(undefined),
};
const harnessConversations = { append: vi.fn() };
const brain = {
conversations: {
findById: vi.fn().mockResolvedValue({ id: 'conversation-fail-1' }),
findMessages: vi.fn().mockResolvedValue([]),
create: vi.fn().mockResolvedValue(undefined),
update: vi.fn().mockResolvedValue(undefined),
addMessage: vi.fn().mockRejectedValue(new Error('persistence unavailable')),
},
};
const router = readyRouter('legacy', agentService, harnessConversations);
instrumentLease(router, order, counters);
const gateway = new ChatGateway(
router as never,
{ api: { getSession: vi.fn() } } as never,
brain as never,
{} as never,
{} as never,
{} as never,
);
const client = {
id: 'browser-fail-1',
data: { user: { id: 'user-a' } },
emit: vi.fn(),
};
await gateway.handleMessage(
client as never,
{
conversationId: 'conversation-fail-1',
content: 'will fail persistence',
} as never,
);
// A failed user-message persistence aborts the turn with no accept-then-lose: no session:info,
// no ack, the lease never dispatches or prompts, and the just-prepared lease is disposed exactly
// once (listener/channel cleanup) without throwing. The fixed safe error is surfaced.
expect(client.emit).not.toHaveBeenCalledWith('session:info', expect.anything());
expect(client.emit).not.toHaveBeenCalledWith('message:ack', expect.anything());
expect(counters.dispatch).toBe(0);
expect(agentService.prompt).not.toHaveBeenCalled();
expect(counters.dispose).toBe(1);
expect(unsub).toHaveBeenCalledTimes(1);
expect(client.emit).toHaveBeenCalledWith(
'error',
expect.objectContaining({ code: 'persist_failed' }),
);
expect(harnessConversations.append).not.toHaveBeenCalled();
});
it('drops a legacy browser turn when persistence RESOLVES nullish (not only on rejection): zero info/ack/dispatch/prompt, one clean disposal (Task 5 finding 2)', async () => {
// Companion to the rejected-promise case above. A brain adapter that resolves `undefined`/`null`
// instead of throwing must be treated as a persistence FAILURE, never as a saved message — the
// pre-fix code accepted a nullish resolve and dispatched a turn whose user message was never
// durably stored. RED before finding-2: the turn acks + dispatches + prompts on a phantom persist.
process.env['CHAT_HARNESS_RUNTIME'] = 'legacy';
const order: string[] = [];
const counters = { dispatch: 0, dispose: 0 };
const unsub = vi.fn();
const session = {
provider: 'configured-provider',
modelId: 'configured-model',
piSession: {
thinkingLevel: 'medium',
getAvailableThinkingLevels: (): string[] => ['medium'],
},
};
const agentService = {
getSession: vi.fn().mockReturnValue(undefined),
createSession: vi.fn().mockResolvedValue(session),
recordMessage: vi.fn(),
onEvent: vi.fn().mockReturnValue(unsub),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt: vi.fn().mockResolvedValue(undefined),
};
const harnessConversations = { append: vi.fn() };
const brain = {
conversations: {
findById: vi.fn().mockResolvedValue({ id: 'conversation-nullish-1' }),
findMessages: vi.fn().mockResolvedValue([]),
create: vi.fn().mockResolvedValue(undefined),
update: vi.fn().mockResolvedValue(undefined),
// Resolves nullish rather than throwing: the fix must still fail the turn closed.
addMessage: vi.fn().mockResolvedValue(undefined),
},
};
const router = readyRouter('legacy', agentService, harnessConversations);
instrumentLease(router, order, counters);
const gateway = new ChatGateway(
router as never,
{ api: { getSession: vi.fn() } } as never,
brain as never,
{} as never,
{} as never,
{} as never,
);
const client = {
id: 'browser-nullish-1',
data: { user: { id: 'user-a' } },
emit: vi.fn(),
};
await gateway.handleMessage(
client as never,
{
conversationId: 'conversation-nullish-1',
content: 'persist resolves undefined',
} as never,
);
expect(client.emit).not.toHaveBeenCalledWith('session:info', expect.anything());
expect(client.emit).not.toHaveBeenCalledWith('message:ack', expect.anything());
expect(counters.dispatch).toBe(0);
expect(agentService.prompt).not.toHaveBeenCalled();
expect(counters.dispose).toBe(1);
expect(unsub).toHaveBeenCalledTimes(1);
expect(client.emit).toHaveBeenCalledWith(
'error',
expect.objectContaining({ code: 'persist_failed' }),
);
expect(harnessConversations.append).not.toHaveBeenCalled();
});
it("fails a legacy browser send closed when the supplied conversationId is not the sender's: conversation_unavailable, zero persist/mint/dispatch/prompt (Task 5 finding 1)", async () => {
// A browser socket that supplies a conversationId it does not own must be refused at admission,
// BEFORE any runtime effect. Pre-fix, an unresolved/foreign id fell through to session mint +
// dispatch, letting a caller attach to (or resurrect) a conversation outside their scope.
process.env['CHAT_HARNESS_RUNTIME'] = 'legacy';
const order: string[] = [];
const counters = { dispatch: 0, dispose: 0 };
const agentService = {
getSession: vi.fn().mockReturnValue(undefined),
createSession: vi.fn().mockResolvedValue(undefined),
recordMessage: vi.fn(),
onEvent: vi.fn().mockReturnValue((): void => undefined),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt: vi.fn().mockResolvedValue(undefined),
};
const harnessConversations = { append: vi.fn() };
const addMessage = vi.fn().mockResolvedValue({ id: 'must-not-persist' });
const brain = {
conversations: {
// Scoped lookup: the sender does not own this id, so admission resolves undefined.
findById: vi.fn().mockResolvedValue(undefined),
findMessages: vi.fn().mockResolvedValue([]),
create: vi.fn().mockResolvedValue(undefined),
update: vi.fn().mockResolvedValue(undefined),
addMessage,
},
};
const router = readyRouter('legacy', agentService, harnessConversations);
instrumentLease(router, order, counters);
const gateway = new ChatGateway(
router as never,
{ api: { getSession: vi.fn() } } as never,
brain as never,
{} as never,
{} as never,
{} as never,
);
const client = {
id: 'browser-foreign-1',
data: { user: { id: 'user-a' } },
emit: vi.fn(),
};
await gateway.handleMessage(
client as never,
{
conversationId: 'conversation-foreign-1',
content: 'let me into a conversation I do not own',
} as never,
);
// Admission consults the scoped durable record with the SENDER's id, then fails closed: no
// persist, no session mint, no lease dispatch/dispose, no prompt, no ack — only the typed refusal.
expect(brain.conversations.findById).toHaveBeenCalledWith('conversation-foreign-1', 'user-a');
expect(addMessage).not.toHaveBeenCalled();
expect(brain.conversations.create).not.toHaveBeenCalled();
expect(agentService.createSession).not.toHaveBeenCalled();
expect(agentService.onEvent).not.toHaveBeenCalled();
expect(agentService.addChannel).not.toHaveBeenCalled();
expect(agentService.prompt).not.toHaveBeenCalled();
expect(counters.dispatch).toBe(0);
expect(counters.dispose).toBe(0);
expect(client.emit).not.toHaveBeenCalledWith('message:ack', expect.anything());
expect(client.emit).toHaveBeenCalledWith(
'error',
expect.objectContaining({ code: 'conversation_unavailable' }),
);
expect(harnessConversations.append).not.toHaveBeenCalled();
});
it('admits a legacy browser send with NO conversationId by minting a scoped durable record first, then dispatches once (Task 5 finding 1)', async () => {
// The distinct server-minted-new path: a client that omits conversationId is a brand-new
// conversation. Admission must CREATE the durable record (scoped to the sender) before the turn
// persists/dispatches, and must not consult the ownership lookup (there is nothing to authorize
// yet). This guards the fix from over-reaching and breaking new-conversation creation.
process.env['CHAT_HARNESS_RUNTIME'] = 'legacy';
const order: string[] = [];
const counters = { dispatch: 0, dispose: 0 };
const session = {
provider: 'configured-provider',
modelId: 'configured-model',
piSession: {
thinkingLevel: 'medium',
getAvailableThinkingLevels: (): string[] => ['medium'],
},
};
const agentService = {
getSession: vi.fn().mockReturnValue(undefined),
createSession: vi.fn().mockResolvedValue(session),
recordMessage: vi.fn(),
onEvent: vi.fn().mockReturnValue((): void => undefined),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt: vi.fn().mockResolvedValue(undefined),
};
const harnessConversations = { append: vi.fn() };
const create = vi.fn().mockResolvedValue(undefined);
const brain = {
conversations: {
findById: vi.fn().mockResolvedValue(undefined),
findMessages: vi.fn().mockResolvedValue([]),
create,
update: vi.fn().mockResolvedValue(undefined),
addMessage: vi.fn().mockResolvedValue({ id: 'persisted-new' }),
},
};
const router = readyRouter('legacy', agentService, harnessConversations);
instrumentLease(router, order, counters);
const gateway = new ChatGateway(
router as never,
{ api: { getSession: vi.fn() } } as never,
brain as never,
{} as never,
{} as never,
{} as never,
);
const client = {
id: 'browser-new-1',
data: { user: { id: 'user-a' } },
emit: vi.fn(),
};
await gateway.handleMessage(
client as never,
{
content: 'first message with no conversationId',
} as never,
);
// The durable record is minted for the sender (create with the same server id the turn persists
// under), and the admitted new-conversation turn dispatches exactly once.
expect(create).toHaveBeenCalledWith(
expect.objectContaining({ id: expect.any(String), userId: 'user-a' }),
);
expect(counters.dispatch).toBe(1);
expect(agentService.prompt).toHaveBeenCalledTimes(1);
expect(harnessConversations.append).not.toHaveBeenCalled();
});
});
describe('Chat DTO validation', () => {
it('rejects unsupported message roles', () => {
const dto = Object.assign(new SendMessageDto(), {
@@ -1,920 +0,0 @@
import 'reflect-metadata';
import { Global, Module } from '@nestjs/common';
import { Test, type TestingModule } from '@nestjs/testing';
import { afterAll, afterEach, beforeAll, describe, expect, it } from 'vitest';
import type { HarnessAdapter, HarnessConversationService } from '@mosaicstack/types';
import { AgentService } from '../agent/agent.service.js';
import { AuthGuard } from '../auth/auth.guard.js';
import { CommandsModule } from '../commands/commands.module.js';
import { HarnessModule } from '../harness/harness.module.js';
import { ChatModule } from './chat.module.js';
import { ChatGateway } from './chat.gateway.js';
import { HarnessRegistry } from '../harness/harness.registry.js';
import {
HARNESS_CONVERSATION_SERVICE,
HARNESS_CONVERSATION_SERVICE_UNAVAILABLE,
HARNESS_REGISTRY,
type HarnessConversationServiceBinding,
} from '../harness/harness.tokens.js';
import { ChatRuntimeRouter } from './chat-runtime-router.js';
import {
ChatRuntimeUnavailableError,
ownConversation,
type ChatRuntime,
type ChatRuntimeMode,
type LegacyEmbeddedChatPort,
type LegacyRuntimeStream,
type LegacySessionPresentation,
type LegacySocketTurnLease,
type OwnedConversationContext,
} from './chat-runtime.js';
import { AppModule } from '../app.module.js';
import { ProviderService } from '../agent/provider.service.js';
/**
* Task Five, Step One (router). Proves the `ChatRuntimeRouter` resolves exactly one
* runtime by mode, fails closed at init when `pi-rpc` preconditions are unmet, and
* never downgrades `pi-rpc` to embedded execution. Red-first: the router is an
* unimplemented stub, so every behavioural assertion below fails until Step Three.
*/
const embedded: ChatRuntime = { kind: 'embedded' };
const harness: ChatRuntime = { kind: 'harness' };
/** A structurally-complete, non-sentinel conversation service. Its methods are never invoked here. */
const boundConversationService = {
attach: () => Promise.reject(new Error('unused')),
detach: () => Promise.reject(new Error('unused')),
send: () => Promise.reject(new Error('unused')),
subscribeFrom: async function* () {
throw new Error('unused');
},
} as unknown as HarnessConversationService;
function registryWith(adapterIds: readonly string[]): HarnessRegistry {
const registry = new HarnessRegistry();
for (const id of adapterIds) {
registry.register({
id,
describe: () => Promise.reject(new Error('unused')),
catalog: () => Promise.reject(new Error('unused')),
create: () => Promise.reject(new Error('unused')),
resume: () => Promise.reject(new Error('unused')),
} as HarnessAdapter);
}
return registry;
}
function buildRouter(
mode: ChatRuntimeMode,
opts: { adapters: readonly string[]; service: HarnessConversationServiceBinding },
): ChatRuntimeRouter {
return new ChatRuntimeRouter(registryWith(opts.adapters), opts.service, embedded, harness, mode);
}
/**
* Tear down a module that was deliberately driven to a fail-closed init.
* `NestApplicationContext.close()` re-awaits the module's `initializationPromise` before disposing
* (nest-application-context.js:127); when `init()` rejected, that await re-throws the SAME typed
* startup error, this time into teardown. Each caller here has already captured and asserted that
* exact `ChatRuntimeUnavailableError` via `initError`, so the re-throw is expected teardown noise —
* swallow ONLY that error, and surface anything else so a genuine teardown fault still fails loudly.
*/
async function closeIgnoringFailedInit(moduleRef: TestingModule): Promise<void> {
await moduleRef.close().catch((err: unknown) => {
if (err instanceof ChatRuntimeUnavailableError) return;
throw err;
});
}
describe('ChatRuntimeRouter', () => {
it('resolves only the harness runtime in pi-rpc mode when pi adapter and conversation service are present', () => {
const router = buildRouter('pi-rpc', {
adapters: ['pi'],
service: boundConversationService,
});
expect(() => router.onModuleInit()).not.toThrow();
expect(router.active).toBe(harness);
expect(router.active.kind).toBe('harness');
});
it('resolves only the embedded runtime in legacy mode and skips the pi preconditions', () => {
// Empty registry + unavailable service: legacy must ignore both and still start.
const router = buildRouter('legacy', {
adapters: [],
service: HARNESS_CONVERSATION_SERVICE_UNAVAILABLE,
});
expect(() => router.onModuleInit()).not.toThrow();
expect(router.active).toBe(embedded);
expect(router.active.kind).toBe('embedded');
});
it('fails closed at init when pi-rpc mode has no registered pi adapter', () => {
const router = buildRouter('pi-rpc', {
adapters: [],
service: boundConversationService,
});
expect(() => router.onModuleInit()).toThrow(ChatRuntimeUnavailableError);
try {
router.onModuleInit();
expect.unreachable('onModuleInit must throw when the pi adapter is absent');
} catch (err) {
expect(err).toBeInstanceOf(ChatRuntimeUnavailableError);
expect((err as ChatRuntimeUnavailableError).reason).toBe('adapter_unavailable');
expect((err as ChatRuntimeUnavailableError).code).toBe('runtime_unsupported');
}
});
it('fails closed at init when pi-rpc mode has the unavailable conversation-service sentinel', () => {
const router = buildRouter('pi-rpc', {
adapters: ['pi'],
service: HARNESS_CONVERSATION_SERVICE_UNAVAILABLE,
});
try {
router.onModuleInit();
expect.unreachable('onModuleInit must throw when the conversation service is unbound');
} catch (err) {
expect(err).toBeInstanceOf(ChatRuntimeUnavailableError);
expect((err as ChatRuntimeUnavailableError).reason).toBe('conversation_service_unavailable');
expect((err as ChatRuntimeUnavailableError).code).toBe('runtime_unsupported');
}
});
it('never falls back to embedded execution when pi-rpc preconditions are unmet', () => {
const router = buildRouter('pi-rpc', {
adapters: [],
service: HARNESS_CONVERSATION_SERVICE_UNAVAILABLE,
});
expect(() => router.onModuleInit()).toThrow(ChatRuntimeUnavailableError);
// A failed pi-rpc init must not silently expose the embedded runtime.
expect(() => router.active).toThrow();
let leaked: ChatRuntime | undefined;
try {
leaked = router.active;
} catch {
leaked = undefined;
}
expect(leaked).not.toBe(embedded);
});
it('exposes only fixed, browser-safe failure text (no raw provider or exception detail)', () => {
const router = buildRouter('pi-rpc', {
adapters: [],
service: boundConversationService,
});
try {
router.onModuleInit();
expect.unreachable('onModuleInit must throw');
} catch (err) {
const message = (err as ChatRuntimeUnavailableError).message;
expect(message).toBe(
'The pi-rpc chat runtime is unavailable: no "pi" harness adapter is registered.',
);
expect(message).not.toMatch(/Error:|\bat \b|node_modules|Symbol\(/);
}
});
});
/**
* Task Five, Step Three — legacy port operations fail closed under pi-rpc (direct valid-input).
*
* The unit suite above constructs the router but never invokes a legacy port operation, so the
* six per-operation inner `if (this.mode === 'pi-rpc')` guards are unexercised — a mutation that
* deletes one of them SURVIVES for lack of a test that drives that operation. This group closes
* that gap the right way: it drives each of the six operations DIRECTLY, in pi-rpc mode, with a
* valid branded {@link OwnedConversationContext} and valid input, against a recording embedded
* stub whose method returns a distinguishable `ok:true` success and increments a per-op counter.
*
* For each operation:
* - pi-rpc test asserts the exact frozen `{ ok:false, code:'runtime_unsupported', retryable:false }`
* result AND that the embedded stub was touched zero times (no effects);
* - the paired legacy test proves that same stub method IS reached and returns its distinguishable
* success when the mode does not refuse — so the pi-rpc zero-invocation assertion is meaningful,
* not vacuously true because the stub could never be called.
*
* Deleting ONLY one operation's inner guard makes THAT operation's pi-rpc test behaviorally RED
* (the router returns the embedded `ok:true` value and records the call), with every outer guard
* and the other five inner guards intact. `next` is untouched; nothing here changes production.
*/
describe('ChatRuntimeRouter — legacy port ops fail closed under pi-rpc (Task Five, Step Three)', () => {
const RUNTIME_UNSUPPORTED = {
ok: false,
code: 'runtime_unsupported',
retryable: false,
} as const;
const PRESENTATION: LegacySessionPresentation = {
provider: 'embedded-provider',
modelId: 'embedded-model',
thinkingLevel: 'low',
availableThinkingLevels: ['low', 'high'],
};
const stream: LegacyRuntimeStream = {
channelId: 'websocket:test-socket',
onEvent: () => {},
};
const ctx = (): OwnedConversationContext =>
ownConversation('conversation-1', { userId: 'user-1', tenantId: 'tenant-1' });
/**
* Per-operation invocation counters with declared keys (not an index signature) so each
* `calls.<op>` is definitely `number` under `noUncheckedIndexedAccess`.
*/
type LegacyPortCallCounts = {
completeLegacyRestTurn: number;
prepareLegacySocketTurn: number;
setLegacyThinking: number;
abortLegacyTurn: number;
applyLegacyModelOverride: number;
readLegacySessionPresentation: number;
dispatchVerifiedDiscordIngress: number;
};
/**
* An embedded port that records every invocation and returns a distinguishable `ok:true`
* value per operation. If a router op reaches it (its guard removed), both the recorded call
* count and the returned `ok:true` value diverge from the frozen `runtime_unsupported` result.
*/
function recordingEmbeddedPort(): {
port: ChatRuntime & LegacyEmbeddedChatPort;
calls: LegacyPortCallCounts;
} {
const calls: LegacyPortCallCounts = {
completeLegacyRestTurn: 0,
prepareLegacySocketTurn: 0,
setLegacyThinking: 0,
abortLegacyTurn: 0,
applyLegacyModelOverride: 0,
readLegacySessionPresentation: 0,
dispatchVerifiedDiscordIngress: 0,
};
const lease: LegacySocketTurnLease = {
presentation: PRESENTATION,
dispatch: () => Promise.resolve({ ok: true, value: undefined }),
dispose: () => Promise.resolve(),
};
const port: ChatRuntime & LegacyEmbeddedChatPort = {
kind: 'embedded',
completeLegacyRestTurn: () => {
calls.completeLegacyRestTurn += 1;
return Promise.resolve({
ok: true,
value: { text: 'EMBEDDED-REST', presentation: PRESENTATION },
});
},
prepareLegacySocketTurn: () => {
calls.prepareLegacySocketTurn += 1;
return Promise.resolve({ ok: true, value: lease });
},
setLegacyThinking: () => {
calls.setLegacyThinking += 1;
return { ok: true, value: PRESENTATION };
},
abortLegacyTurn: () => {
calls.abortLegacyTurn += 1;
return Promise.resolve({ ok: true, value: undefined });
},
applyLegacyModelOverride: () => {
calls.applyLegacyModelOverride += 1;
return { ok: true, value: PRESENTATION };
},
readLegacySessionPresentation: () => {
calls.readLegacySessionPresentation += 1;
return { ok: true, value: PRESENTATION };
},
dispatchVerifiedDiscordIngress: () => {
calls.dispatchVerifiedDiscordIngress += 1;
return Promise.resolve({
ok: true,
value: {
presentation: PRESENTATION,
dispatch: () => Promise.resolve({ ok: true, value: undefined }),
dispose: () => Promise.resolve(),
},
});
},
};
return { port, calls };
}
function piRouter(port: ChatRuntime & LegacyEmbeddedChatPort): ChatRuntimeRouter {
return new ChatRuntimeRouter(
registryWith(['pi']),
boundConversationService,
port,
harness,
'pi-rpc',
);
}
function legacyRouter(port: ChatRuntime & LegacyEmbeddedChatPort): ChatRuntimeRouter {
return new ChatRuntimeRouter(
registryWith([]),
boundConversationService,
port,
harness,
'legacy',
);
}
// completeLegacyRestTurn ---------------------------------------------------
it('completeLegacyRestTurn refuses with runtime_unsupported and never touches embedded under pi-rpc', async () => {
const { port, calls } = recordingEmbeddedPort();
const result = await piRouter(port).completeLegacyRestTurn(ctx(), { content: 'hello' });
expect(result).toEqual(RUNTIME_UNSUPPORTED);
expect(calls.completeLegacyRestTurn).toBe(0);
});
it('completeLegacyRestTurn delegates to embedded under legacy (guard is the sole gate)', async () => {
const { port, calls } = recordingEmbeddedPort();
const result = await legacyRouter(port).completeLegacyRestTurn(ctx(), { content: 'hello' });
expect(result.ok).toBe(true);
expect(calls.completeLegacyRestTurn).toBe(1);
});
// prepareLegacySocketTurn --------------------------------------------------
it('prepareLegacySocketTurn refuses with runtime_unsupported and never touches embedded under pi-rpc', async () => {
const { port, calls } = recordingEmbeddedPort();
const result = await piRouter(port).prepareLegacySocketTurn(
ctx(),
{ content: 'hello' },
stream,
);
expect(result).toEqual(RUNTIME_UNSUPPORTED);
expect(calls.prepareLegacySocketTurn).toBe(0);
});
it('prepareLegacySocketTurn delegates to embedded under legacy (guard is the sole gate)', async () => {
const { port, calls } = recordingEmbeddedPort();
const result = await legacyRouter(port).prepareLegacySocketTurn(
ctx(),
{ content: 'hello' },
stream,
);
expect(result.ok).toBe(true);
expect(calls.prepareLegacySocketTurn).toBe(1);
});
// setLegacyThinking (sync) -------------------------------------------------
it('setLegacyThinking refuses with runtime_unsupported and never touches embedded under pi-rpc', () => {
const { port, calls } = recordingEmbeddedPort();
const result = piRouter(port).setLegacyThinking(ctx(), 'high');
expect(result).toEqual(RUNTIME_UNSUPPORTED);
expect(calls.setLegacyThinking).toBe(0);
});
it('setLegacyThinking delegates to embedded under legacy (guard is the sole gate)', () => {
const { port, calls } = recordingEmbeddedPort();
const result = legacyRouter(port).setLegacyThinking(ctx(), 'high');
expect(result.ok).toBe(true);
expect(calls.setLegacyThinking).toBe(1);
});
// abortLegacyTurn ----------------------------------------------------------
it('abortLegacyTurn refuses with runtime_unsupported and never touches embedded under pi-rpc', async () => {
const { port, calls } = recordingEmbeddedPort();
const result = await piRouter(port).abortLegacyTurn(ctx());
expect(result).toEqual(RUNTIME_UNSUPPORTED);
expect(calls.abortLegacyTurn).toBe(0);
});
it('abortLegacyTurn delegates to embedded under legacy (guard is the sole gate)', async () => {
const { port, calls } = recordingEmbeddedPort();
const result = await legacyRouter(port).abortLegacyTurn(ctx());
expect(result.ok).toBe(true);
expect(calls.abortLegacyTurn).toBe(1);
});
// applyLegacyModelOverride (sync) ------------------------------------------
it('applyLegacyModelOverride refuses with runtime_unsupported and never touches embedded under pi-rpc', () => {
const { port, calls } = recordingEmbeddedPort();
const result = piRouter(port).applyLegacyModelOverride(ctx(), 'model-x');
expect(result).toEqual(RUNTIME_UNSUPPORTED);
expect(calls.applyLegacyModelOverride).toBe(0);
});
it('applyLegacyModelOverride delegates to embedded under legacy (guard is the sole gate)', () => {
const { port, calls } = recordingEmbeddedPort();
const result = legacyRouter(port).applyLegacyModelOverride(ctx(), 'model-x');
expect(result.ok).toBe(true);
expect(calls.applyLegacyModelOverride).toBe(1);
});
// readLegacySessionPresentation (sync) -------------------------------------
it('readLegacySessionPresentation refuses with runtime_unsupported and never touches embedded under pi-rpc', () => {
const { port, calls } = recordingEmbeddedPort();
const result = piRouter(port).readLegacySessionPresentation(ctx());
expect(result).toEqual(RUNTIME_UNSUPPORTED);
expect(calls.readLegacySessionPresentation).toBe(0);
});
it('readLegacySessionPresentation delegates to embedded under legacy (guard is the sole gate)', () => {
const { port, calls } = recordingEmbeddedPort();
const result = legacyRouter(port).readLegacySessionPresentation(ctx());
expect(result.ok).toBe(true);
expect(calls.readLegacySessionPresentation).toBe(1);
});
// dispatchVerifiedDiscordIngress delegates in BOTH modes (embedded-only, no guard) ---------
it('dispatchVerifiedDiscordIngress delegates to embedded under pi-rpc (embedded-only, no mode guard)', async () => {
const { port, calls } = recordingEmbeddedPort();
const discordCtx = ctx() as unknown as Parameters<
ChatRuntimeRouter['dispatchVerifiedDiscordIngress']
>[0];
const result = await piRouter(port).dispatchVerifiedDiscordIngress(discordCtx, stream);
expect(result.ok).toBe(true);
expect(calls.dispatchVerifiedDiscordIngress).toBe(1);
});
});
/**
* Task Five, Step Two — group 1 (real Nest module-graph readiness).
*
* The unit suite above constructs the router directly. This group drives the SAME contract
* through a real NestJS graph: it imports the production `HarnessModule` (the proven-booting
* idiom from harness.controller.spec.ts) so the router resolves the REAL, empty `HarnessRegistry`
* via the real `HARNESS_REGISTRY` token, then runs the router's `OnModuleInit` through the Nest
* lifecycle (`moduleRef.init()`). Red-first: the router is an unimplemented stub whose
* `onModuleInit` throws a generic Error, so:
* - readiness cases fail because the graph never comes up (init rejects), and
* - fail-closed cases fail because a generic stub throw is NOT the SPECIFIC typed
* `ChatRuntimeUnavailableError` (reason/code) the contract demands — a stub that
* "throws anything" cannot mask these greens.
* The router is NOT wired into a production module yet, so it is provided here via a factory
* over the real registry token. Importing the real `ChatModule` bare is deliberately avoided:
* it injects `AgentService` without importing `AgentModule`, so its graph fails to RESOLVE — a
* collection/DI error, not a behavioural red. `next` is untouched; nothing here implements the router.
*/
describe('ChatRuntimeRouter — real Nest module-graph readiness (Task Five, Step Two group 1)', () => {
async function bootRouterGraph(
mode: ChatRuntimeMode,
opts: { adapters: readonly string[]; service: HarnessConversationServiceBinding },
) {
const moduleRef = await Test.createTestingModule({
imports: [HarnessModule],
providers: [
{
provide: ChatRuntimeRouter,
useFactory: (registry: HarnessRegistry) =>
new ChatRuntimeRouter(registry, opts.service, embedded, harness, mode),
inject: [HARNESS_REGISTRY],
},
],
})
// The imported HarnessModule's controllers reference AuthGuard (an HTTP-only concern,
// never exercised here); stub it so the graph resolves. The registry is NOT overridden —
// group 1 asserts against the genuine production HarnessRegistry.
.overrideGuard(AuthGuard)
.useValue({ canActivate: () => true })
.compile();
// Resolve the production registry singleton and register the requested adapters ON IT, so
// the router (which injects the same singleton) sees them when its lifecycle hook runs.
const registry = moduleRef.get<HarnessRegistry>(HARNESS_REGISTRY, { strict: false });
for (const id of opts.adapters) {
registry.register({
id,
describe: () => Promise.reject(new Error('unused')),
catalog: () => Promise.reject(new Error('unused')),
create: () => Promise.reject(new Error('unused')),
resume: () => Promise.reject(new Error('unused')),
} as HarnessAdapter);
}
return moduleRef;
}
// Capture an init rejection without letting a resolved init masquerade as success.
const initError = (moduleRef: { init(): Promise<unknown> }): Promise<unknown> =>
moduleRef.init().then(
() => new Error('module init resolved but the contract requires it to reject'),
(err: unknown) => err,
);
it('brings the graph up and resolves only the harness runtime in pi-rpc mode (pi adapter + bound service)', async () => {
const moduleRef = await bootRouterGraph('pi-rpc', {
adapters: ['pi'],
service: boundConversationService,
});
try {
await moduleRef.init();
const router = moduleRef.get(ChatRuntimeRouter, { strict: false });
expect(router.active).toBe(harness);
expect(router.active.kind).toBe('harness');
} finally {
await moduleRef.close();
}
});
it('brings the graph up in legacy mode over the REAL empty HarnessRegistry and resolves only the embedded runtime', async () => {
const moduleRef = await bootRouterGraph('legacy', {
adapters: [],
service: HARNESS_CONVERSATION_SERVICE_UNAVAILABLE,
});
try {
// Defense-in-depth: the production module wires the genuine registry, empty by default —
// guards against a test-double registry silently satisfying the readiness check.
const registry = moduleRef.get<HarnessRegistry>(HARNESS_REGISTRY, { strict: false });
expect(registry).toBeInstanceOf(HarnessRegistry);
expect(registry.list()).toHaveLength(0);
await moduleRef.init();
const router = moduleRef.get(ChatRuntimeRouter, { strict: false });
expect(router.active).toBe(embedded);
expect(router.active.kind).toBe('embedded');
} finally {
await moduleRef.close();
}
});
it('fails closed at module init when pi-rpc mode has no registered pi adapter (specific typed error, not a stub throw)', async () => {
const moduleRef = await bootRouterGraph('pi-rpc', {
adapters: [],
service: boundConversationService,
});
try {
const err = await initError(moduleRef);
expect(err).toBeInstanceOf(ChatRuntimeUnavailableError);
expect((err as ChatRuntimeUnavailableError).reason).toBe('adapter_unavailable');
expect((err as ChatRuntimeUnavailableError).code).toBe('runtime_unsupported');
} finally {
await closeIgnoringFailedInit(moduleRef);
}
});
it('fails closed at module init when pi-rpc mode has the unavailable conversation-service sentinel', async () => {
const moduleRef = await bootRouterGraph('pi-rpc', {
adapters: ['pi'],
service: HARNESS_CONVERSATION_SERVICE_UNAVAILABLE,
});
try {
const err = await initError(moduleRef);
expect(err).toBeInstanceOf(ChatRuntimeUnavailableError);
expect((err as ChatRuntimeUnavailableError).reason).toBe('conversation_service_unavailable');
expect((err as ChatRuntimeUnavailableError).code).toBe('runtime_unsupported');
} finally {
await closeIgnoringFailedInit(moduleRef);
}
});
it('surfaces only fixed, browser-safe failure text when the graph fails closed (no stub/exception detail)', async () => {
const moduleRef = await bootRouterGraph('pi-rpc', {
adapters: [],
service: boundConversationService,
});
try {
const err = await initError(moduleRef);
expect(err).toBeInstanceOf(ChatRuntimeUnavailableError);
const message = (err as ChatRuntimeUnavailableError).message;
expect(message).toBe(
'The pi-rpc chat runtime is unavailable: no "pi" harness adapter is registered.',
);
expect(message).not.toMatch(/Error:|\bat \b|node_modules|Symbol\(|not implemented/);
} finally {
await closeIgnoringFailedInit(moduleRef);
}
});
});
/**
* Task Five, Step Two — group 1b (production ChatModule wiring, declaration proof).
*
* Correction #1 (Scrappy fe3e02) asked for a red that imports the real `ChatModule` and calls
* `module.init()`. Investigated and found impractical/masking-prone: `ChatModule` provides
* `ChatGateway`, whose 10-argument constructor injects app-global providers (AgentService, AUTH,
* BRAIN, RoutingEngineService) plus the Commands/GC/Mcp/Reload subsystems across a forwardRef
* cycle. Booting it in isolation is a full-app integration boot — "override only unrelated
* dependencies" balloons into faking ~4 subsystems, and `overrideProvider` cannot even grant the
* cross-module export-scope visibility ChatGateway needs (probe: `ChatGateway` unresolved at
* `CommandExecutorService`). That is exactly the STOP-and-return branch of the directive.
*
* The faithful, unmaskable cover instead of a fragile boot: read the PRODUCTION `ChatModule`'s own
* Nest `@Module` metadata to prove it DECLARES the exclusive router provider and imports the real
* `HarnessModule` (the genuine registry source). This inspects the actual module object — not
* source text, not a test factory — so nothing can mask it. Group 1 above separately proves the
* router RESOLVES against the real, empty `HarnessRegistry` through the Nest lifecycle; the union
* of the two covers "the router is wired through ChatModule to the real registry" without the
* impractical single-graph boot. RED today (ChatModule provides only ChatGateway and imports only
* CommandsModule); GREEN once Step Three registers the router and imports HarnessModule.
*/
describe('ChatModule production wiring (Task Five, Step Two group 1b — declaration proof)', () => {
// Unwrap a forwardRef(() => Module) import to the module it references; pass others through.
const resolveImport = (imp: unknown): unknown =>
imp &&
typeof imp === 'object' &&
typeof (imp as { forwardRef?: unknown }).forwardRef === 'function'
? (imp as { forwardRef: () => unknown }).forwardRef()
: imp;
// A provider entry is either a class (shorthand) or a { provide, ... } object; take its token.
const providerToken = (provider: unknown): unknown =>
typeof provider === 'function' ? provider : (provider as { provide?: unknown })?.provide;
it('declares the exclusive ChatRuntimeRouter as a provider on the production ChatModule', () => {
const providers: unknown[] = Reflect.getMetadata('providers', ChatModule) ?? [];
expect(providers.map(providerToken)).toContain(ChatRuntimeRouter);
});
it('imports the real HarnessModule into the production ChatModule (registry source, not a test double)', () => {
const imports: unknown[] = Reflect.getMetadata('imports', ChatModule) ?? [];
expect(imports.map(resolveImport)).toContain(HarnessModule);
});
});
/**
* Task Five, Step Two — group 1c (bounded real-`ChatModule` boot).
*
* Scrappy adjudication d67d2b (option c): boot the ACTUAL production `ChatModule` as the SUT and
* assert the exclusive router resolves THROUGH it — the single-graph proof group 1 (router over the
* real registry) and group 1b (production-module metadata) each cover only a half of. The heavy,
* UNRELATED cycle is the only thing bounded away, per the established isolation pattern in
* `apps/gateway/src/agent/hermes-runtime-reachability.e2e.test.ts`:
* - `CommandsModule` (drags the Commands <-> Reload <-> Chat forwardRef cycle plus GC/Mcp/queue)
* is replaced wholesale with an empty module via `.overrideModule(...).useModule(...)`;
* - `ChatGateway` (10-arg constructor, an HTTP/socket concern never exercised here) is replaced
* with an inert value;
* - the sole legacy-controller dependency, `AgentService`, is supplied by a tiny `@Global()` stub;
* - the HTTP-only `AuthGuard` is stubbed.
* Nothing about the router, `HarnessModule`, the registry, or the conversation-service binding is
* faked in the production-legacy case — those are retrieved from the REAL `ChatModule` graph. Mode
* is driven only through the production `CHAT_HARNESS_RUNTIME` env contract (`resolveChatRuntimeMode`).
*
* Red-first: today `ChatModule` neither imports `HarnessModule` nor provides `ChatRuntimeRouter`, so
* the booted graph contains no router/registry/conversation-service tokens. `init()` may resolve
* (there is no router lifecycle hook yet to reject), so every case fails on the MISSING actual
* router/registry/service wiring — not on unrelated DI, which is bounded away. GREEN at Step Three
* once `ChatModule` imports `HarnessModule`, provides the exclusive router, and binds the
* conversation-service token (defaulting to the unavailable sentinel).
*/
describe('ChatModule bounded real boot (Task Five, Step Two group 1c)', () => {
// The unrelated heavy cycle, replaced wholesale — not stubbed provider-by-provider.
@Module({})
class EmptyCommandsModule {}
// The ONLY genuine legacy dependency of the real ChatController, supplied inertly and globally so
// the pre-refactor controller instantiates without dragging AgentModule into the graph.
@Global()
@Module({
providers: [{ provide: AgentService, useValue: {} }],
exports: [AgentService],
})
class LegacyControllerDepsModule {}
const ORIGINAL_RUNTIME_ENV = process.env['CHAT_HARNESS_RUNTIME'];
afterEach(() => {
if (ORIGINAL_RUNTIME_ENV === undefined) delete process.env['CHAT_HARNESS_RUNTIME'];
else process.env['CHAT_HARNESS_RUNTIME'] = ORIGINAL_RUNTIME_ENV;
});
/**
* Boot the real ChatModule with only the unrelated cycle bounded away. `mode` is set through the
* genuine production env contract before providers instantiate. The optional overrides replace
* the registry / conversation-service the router injects, exercising the pi-rpc precondition
* branches through the ACTUAL module (they are no-ops today because those tokens are not yet in
* the graph — which is exactly why the router-retrieval assertions go red).
*/
async function bootChatModule(
mode: ChatRuntimeMode,
overrides: {
registryAdapters?: readonly string[];
conversationService?: HarnessConversationServiceBinding;
} = {},
): Promise<TestingModule> {
if (mode === 'pi-rpc') process.env['CHAT_HARNESS_RUNTIME'] = 'pi-rpc';
else delete process.env['CHAT_HARNESS_RUNTIME'];
let builder = Test.createTestingModule({
imports: [LegacyControllerDepsModule, ChatModule],
})
.overrideModule(CommandsModule)
.useModule(EmptyCommandsModule)
.overrideProvider(ChatGateway)
.useValue({})
.overrideGuard(AuthGuard)
.useValue({ canActivate: () => true });
if (overrides.registryAdapters) {
builder = builder
.overrideProvider(HARNESS_REGISTRY)
.useValue(registryWith(overrides.registryAdapters));
}
if (overrides.conversationService !== undefined) {
builder = builder
.overrideProvider(HARNESS_CONVERSATION_SERVICE)
.useValue(overrides.conversationService);
}
return builder.compile();
}
// Capture an init rejection without letting a resolved init masquerade as success.
const initError = (moduleRef: TestingModule): Promise<unknown> =>
moduleRef.init().then(
() => new Error('module init resolved but the contract requires it to reject'),
(err: unknown) => err,
);
it('legacy mode: the actual router resolves the embedded runtime, the actual registry is empty, and the conversation-service token is the unavailable sentinel', async () => {
const moduleRef = await bootChatModule('legacy');
try {
await moduleRef.init();
const router = moduleRef.get(ChatRuntimeRouter, { strict: false });
expect(router.active.kind).toBe('embedded');
const registry = moduleRef.get<HarnessRegistry>(HARNESS_REGISTRY, { strict: false });
expect(registry).toBeInstanceOf(HarnessRegistry);
expect(registry.list()).toHaveLength(0);
const service = moduleRef.get<HarnessConversationServiceBinding>(
HARNESS_CONVERSATION_SERVICE,
{
strict: false,
},
);
expect(service).toBe(HARNESS_CONVERSATION_SERVICE_UNAVAILABLE);
} finally {
await moduleRef.close();
}
});
it('pi-rpc mode over the REAL empty registry fails closed at init with the typed adapter-unavailable error', async () => {
const moduleRef = await bootChatModule('pi-rpc');
try {
const err = await initError(moduleRef);
expect(err).toBeInstanceOf(ChatRuntimeUnavailableError);
expect((err as ChatRuntimeUnavailableError).reason).toBe('adapter_unavailable');
expect((err as ChatRuntimeUnavailableError).code).toBe('runtime_unsupported');
} finally {
await closeIgnoringFailedInit(moduleRef);
}
});
it('pi-rpc mode with a pi adapter present but the sentinel conversation service fails closed with the typed conversation-service-unavailable error', async () => {
const moduleRef = await bootChatModule('pi-rpc', {
registryAdapters: ['pi'],
conversationService: HARNESS_CONVERSATION_SERVICE_UNAVAILABLE,
});
try {
const err = await initError(moduleRef);
expect(err).toBeInstanceOf(ChatRuntimeUnavailableError);
expect((err as ChatRuntimeUnavailableError).reason).toBe('conversation_service_unavailable');
expect((err as ChatRuntimeUnavailableError).code).toBe('runtime_unsupported');
} finally {
await closeIgnoringFailedInit(moduleRef);
}
});
it('pi-rpc mode with a pi adapter and a bound conversation service: the actual router selects the harness runtime', async () => {
const moduleRef = await bootChatModule('pi-rpc', {
registryAdapters: ['pi'],
conversationService: boundConversationService,
});
try {
await moduleRef.init();
const router = moduleRef.get(ChatRuntimeRouter, { strict: false });
expect(router.active.kind).toBe('harness');
} finally {
await moduleRef.close();
}
});
});
/**
* Task Five, Step Two — group 2 (WHOLE production `AppModule` boot, legacy end-to-end wiring).
*
* The groups above bound away the heavy cycle to isolate the router. This group instead boots the
* ACTUAL production `AppModule` (the exact graph `main.ts` runs) in the default LEGACY chat-runtime
* mode, overriding ONLY the storage/network side-effect adapters so the boot is bounded and offline
* — never the chat/router/harness/reload/commands surface under test. The bounded fakes are exactly
* the disk/network leaves:
* - `ProviderService` (the #1 hang risk: its real `onModuleInit` starts an unref'd health-check
* `setInterval` and fetches Ollama over HTTP) → inert no-op instance;
* - `DB_HANDLE`/`DB` → a fake Drizzle-shaped handle that satisfies `runPgliteMigrations` (the local
* tier's `DatabaseModule.onModuleInit`) AND `DefaultRoutingRulesSeed.onModuleInit` (which reads a
* system-rule count — the fake reports rules already present so the seed insert is skipped),
* opening no real database;
* - `STORAGE_ADAPTER`/`MEMORY`/`MEMORY_ADAPTER`/`AUTH`/`BRAIN`/`LOG_SERVICE` → inert fakes so no
* storage/auth/log backend is contacted.
* Local tier (the repo's `mosaic.config.json`) already disables BullMQ/Redis and the queue handles;
* Discord/Telegram/MCP plugins are env-gated and disarmed by deleting their tokens. Nothing about the
* router, `ChatModule`, `HarnessModule`, or `ChatGateway` is faked — those come from the REAL graph.
*
* The boot+init MUST SUCCEED cleanly (proven by `beforeAll` completing and the ChatGateway test
* passing). Red-first: on this branch `ChatRuntimeRouter` is registered in NO module (ChatModule
* provides only ChatGateway), so `moduleRef.get(ChatRuntimeRouter)` throws `UnknownElementException`
* — a WIRING gap, NOT an init failure. That single retrieval is the intended behavioural red; it
* flips green once Step Three registers the exclusive router. The ChatGateway retrieval and its
* browser-facing method surface are asserted alongside and pass today, pinning that the boot itself
* is healthy so the router failure cannot be mistaken for a mis-shaped fake or an unbounded side
* effect.
*/
describe('AppModule production boot — legacy ChatRuntimeRouter wiring (Task Five, Step Two group 2)', () => {
// A Drizzle-shaped fake that satisfies both DB consumers reached during a local-tier init:
// • runPgliteMigrations(): reads handle.db.$client.exec + handle.db.execute(SELECT hashes);
// exec is a no-op and execute yields an empty ledger, so migration statements no-op through.
// • DefaultRoutingRulesSeed.seedDefaultRules(): db.select().from().where() must resolve to a
// row set — we report a non-zero system-rule count so the seeding INSERT branch is skipped.
const fakeDb = {
$client: { exec: async (): Promise<void> => {} },
execute: async (): Promise<{ rows: unknown[] }> => ({ rows: [] }),
select: () => ({
from: () => ({
where: async (): Promise<Array<{ count: number }>> => [{ count: 1 }],
}),
}),
insert: () => ({ values: async (): Promise<void> => {} }),
};
const fakeDbHandle = { db: fakeDb, close: async (): Promise<void> => {} };
const fakeStorageAdapter = {
name: 'fake',
migrate: async (): Promise<void> => {},
close: async (): Promise<void> => {},
};
// Inert stand-in for the real ProviderService: no health-check interval, no Ollama fetch.
const fakeProviderService = {
onModuleInit: async (): Promise<void> => {},
onModuleDestroy: (): void => {},
getRegistry: () => ({
getAvailable: () => [],
getAll: () => [],
find: () => undefined,
}),
getDefaultModel: () => undefined,
listAvailableModels: () => [],
listProviders: () => [],
getAdapter: () => undefined,
getProvidersHealth: () => [],
};
const fakeBrain = { conversations: {}, agents: {} };
const BOOT_TIMEOUT_MS = 120_000;
let moduleRef: TestingModule;
let envSnapshot: Record<string, string | undefined>;
beforeAll(async () => {
envSnapshot = { ...process.env };
// Env hygiene: disarm the network-facing plugins/adapters and pin the legacy runtime mode.
delete process.env['DATABASE_URL'];
delete process.env['DISCORD_BOT_TOKEN'];
delete process.env['TELEGRAM_BOT_TOKEN'];
delete process.env['MCP_SERVERS'];
delete process.env['CHAT_HARNESS_RUNTIME']; // resolveChatRuntimeMode → 'legacy'
process.env['MOSAIC_STORAGE_TIER'] = 'local';
moduleRef = await Test.createTestingModule({ imports: [AppModule] })
// Storage/network side-effect adapters ONLY — never the router/chat/harness surface under test.
.overrideProvider('DB_HANDLE')
.useValue(fakeDbHandle)
.overrideProvider('DB')
.useValue(fakeDb)
.overrideProvider('STORAGE_ADAPTER')
.useValue(fakeStorageAdapter)
.overrideProvider('AUTH')
.useValue({})
.overrideProvider('BRAIN')
.useValue(fakeBrain)
.overrideProvider('LOG_SERVICE')
.useValue({})
.overrideProvider('MEMORY')
.useValue({})
.overrideProvider('MEMORY_ADAPTER')
.useValue({})
.overrideProvider(ProviderService)
.useValue(fakeProviderService)
.compile();
// The boot itself MUST succeed cleanly — a rejection here is a bounding failure, not the red.
await moduleRef.init();
}, BOOT_TIMEOUT_MS);
afterAll(async () => {
if (moduleRef) await moduleRef.close();
for (const key of Object.keys(process.env)) {
if (!(key in envSnapshot)) delete process.env[key];
}
for (const [key, value] of Object.entries(envSnapshot)) {
if (value === undefined) delete process.env[key];
else process.env[key] = value;
}
});
// Passes TODAY: the real ChatGateway is provided by the real ChatModule and its browser-facing
// surface exists. This pins that the whole-AppModule boot came up healthy, so the router failure
// below is unambiguously a wiring gap and not a mis-shaped fake or an unbounded side effect.
it('boots the whole AppModule and exposes the real ChatGateway with its browser-facing methods', () => {
const gateway = moduleRef.get(ChatGateway, { strict: false });
expect(typeof gateway.broadcastReload).toBe('function');
expect(typeof gateway.getModelOverride).toBe('function');
expect(typeof gateway.setModelOverride).toBe('function');
expect(typeof gateway.broadcastSessionInfo).toBe('function');
});
// RED TODAY: ChatRuntimeRouter is registered in no module on this branch, so this retrieval throws
// UnknownElementException — the intended red-first wiring failure. GREEN once Step Three registers
// the exclusive router in the production graph, where legacy mode resolves the embedded runtime.
it('resolves the exclusive ChatRuntimeRouter to the embedded runtime in legacy mode', () => {
const router = moduleRef.get(ChatRuntimeRouter, { strict: false });
expect(router.active.kind).toBe('embedded');
});
});
@@ -1,173 +0,0 @@
import { Injectable, type OnModuleInit } from '@nestjs/common';
import { HarnessRegistry } from '../harness/harness.registry.js';
import {
isHarnessConversationServiceAvailable,
type HarnessConversationServiceBinding,
} from '../harness/harness.tokens.js';
import type {
ChatRuntime,
ChatRuntimeMode,
LegacyBrowserMessagePayload,
LegacyEmbeddedChatPort,
LegacyRuntimeResult,
LegacyRuntimeStream,
LegacySessionPresentation,
LegacySocketTurnLease,
OwnedConversationContext,
VerifiedDiscordIngressContext,
VerifiedDiscordTurnLease,
} from './chat-runtime.js';
import { ChatRuntimeUnavailableError, resolveChatRuntimeMode } from './chat-runtime.js';
/** The fixed fail-closed result for a legacy browser operation issued under `pi-rpc`. */
const RUNTIME_UNSUPPORTED = {
ok: false as const,
code: 'runtime_unsupported' as const,
retryable: false as const,
};
/**
* Resolves the one live {@link ChatRuntime} for this process and enforces the
* `pi-rpc` readiness preconditions at module init — before the gateway accepts
* traffic. It never falls back from `pi-rpc` to embedded execution: an unmet
* `pi-rpc` precondition is a typed startup failure ({@link ChatRuntimeUnavailableError}),
* and until `onModuleInit` selects a runtime, {@link active} throws rather than
* exposing any runtime — a failed `pi-rpc` init can never leak the embedded one.
*/
@Injectable()
export class ChatRuntimeRouter implements OnModuleInit, LegacyEmbeddedChatPort {
private readonly mode: ChatRuntimeMode;
/** The single resolved runtime. Undefined until a successful `onModuleInit`. */
private resolved: ChatRuntime | undefined;
constructor(
private readonly harnessRegistry: HarnessRegistry,
private readonly conversationService: HarnessConversationServiceBinding,
private readonly embedded: ChatRuntime,
private readonly harness: ChatRuntime,
mode: ChatRuntimeMode = resolveChatRuntimeMode(),
) {
this.mode = mode;
}
onModuleInit(): void {
if (this.mode === 'legacy') {
// Legacy ignores the pi-rpc preconditions entirely and always runs embedded.
this.resolved = this.embedded;
return;
}
// pi-rpc: both preconditions are hard startup failures, checked in a fixed order.
if (!this.harnessRegistry.has('pi')) {
this.resolved = undefined;
throw new ChatRuntimeUnavailableError('adapter_unavailable');
}
if (!isHarnessConversationServiceAvailable(this.conversationService)) {
this.resolved = undefined;
throw new ChatRuntimeUnavailableError('conversation_service_unavailable');
}
this.resolved = this.harness;
}
get active(): ChatRuntime {
if (this.resolved === undefined) {
// Reached only if init has not run or failed closed; never expose a runtime here.
throw new Error('The chat runtime is not available: startup did not resolve a runtime.');
}
return this.resolved;
}
/**
* The process-wide mode, available before {@link onModuleInit}. Production handlers read
* this to fail a legacy browser turn closed under `pi-rpc` *before* parsing the payload as
* either browser-legacy input or a Discord envelope — never to branch into a fallback.
*/
get runtimeMode(): ChatRuntimeMode {
return this.mode;
}
/**
* The embedded runtime narrowed to its port. Only reached on the legacy path (and for the
* verified-Discord op in both modes), where the injected runtime is always a real
* `EmbeddedChatRuntime`. The router spec constructs the router with a bare `{ kind }` stub
* but never invokes a port op, so this narrowing is never exercised against the stub.
*/
private get embeddedPort(): LegacyEmbeddedChatPort {
return this.embedded as unknown as LegacyEmbeddedChatPort;
}
// --- LegacyEmbeddedChatPort: legacy browser operations fail closed under pi-rpc ---
completeLegacyRestTurn(
context: OwnedConversationContext,
input: Readonly<{ content: string }>,
): Promise<
LegacyRuntimeResult<Readonly<{ text: string; presentation: LegacySessionPresentation }>>
> {
if (this.mode === 'pi-rpc') {
return Promise.resolve(RUNTIME_UNSUPPORTED);
}
return this.embeddedPort.completeLegacyRestTurn(context, input);
}
prepareLegacySocketTurn(
context: OwnedConversationContext,
input: LegacyBrowserMessagePayload,
stream: LegacyRuntimeStream,
): Promise<LegacyRuntimeResult<LegacySocketTurnLease>> {
if (this.mode === 'pi-rpc') {
return Promise.resolve(RUNTIME_UNSUPPORTED);
}
return this.embeddedPort.prepareLegacySocketTurn(context, input, stream);
}
setLegacyThinking(
context: OwnedConversationContext,
level: string,
): LegacyRuntimeResult<LegacySessionPresentation> {
if (this.mode === 'pi-rpc') {
return RUNTIME_UNSUPPORTED;
}
return this.embeddedPort.setLegacyThinking(context, level);
}
abortLegacyTurn(context: OwnedConversationContext): Promise<LegacyRuntimeResult<void>> {
if (this.mode === 'pi-rpc') {
return Promise.resolve(RUNTIME_UNSUPPORTED);
}
return this.embeddedPort.abortLegacyTurn(context);
}
applyLegacyModelOverride(
context: OwnedConversationContext,
modelId: string,
): LegacyRuntimeResult<LegacySessionPresentation> {
if (this.mode === 'pi-rpc') {
return RUNTIME_UNSUPPORTED;
}
return this.embeddedPort.applyLegacyModelOverride(context, modelId);
}
readLegacySessionPresentation(
context: OwnedConversationContext,
): LegacyRuntimeResult<LegacySessionPresentation> {
if (this.mode === 'pi-rpc') {
return RUNTIME_UNSUPPORTED;
}
return this.embeddedPort.readLegacySessionPresentation(context);
}
/**
* Verified Discord ingress bypasses browser mode: it is embedded-only in BOTH modes and
* never reaches the harness or routing-engine selection. It is reached only through a
* {@link VerifiedDiscordIngressContext}, which exists only after every ingress check.
*/
dispatchVerifiedDiscordIngress(
context: VerifiedDiscordIngressContext,
stream: LegacyRuntimeStream,
): Promise<LegacyRuntimeResult<VerifiedDiscordTurnLease>> {
return this.embeddedPort.dispatchVerifiedDiscordIngress(context, stream);
}
}
-273
View File
@@ -1,273 +0,0 @@
import type { ChannelAttachmentDto, RoutingDecisionInfo } from '@mosaicstack/types';
/**
* The single chat execution strategy resolved by {@link ChatRuntimeRouter}.
*
* Exactly one runtime is live per process. There is no union that lets a
* `pi-rpc` deployment silently fall back to embedded execution: an unmet
* `pi-rpc` precondition is a typed startup failure, never a downgrade.
*/
export type ChatRuntimeMode = 'legacy' | 'pi-rpc';
export type ChatRuntimeKind = 'embedded' | 'harness';
/** The resolved runtime. Slice Zero exposes only its immutable {@link ChatRuntimeKind}. */
export interface ChatRuntime {
readonly kind: ChatRuntimeKind;
}
/** Why the `pi-rpc` runtime could not be made ready. Both are hard startup failures. */
export type ChatRuntimeUnavailableReason =
| 'adapter_unavailable'
| 'conversation_service_unavailable';
/**
* Raised at module init when `pi-rpc` mode is selected but its preconditions are
* unmet. Carries only fixed, browser-safe text — never a raw exception message,
* stack, or provider detail — and reports the frozen ack code `runtime_unsupported`.
*/
export class ChatRuntimeUnavailableError extends Error {
readonly code = 'runtime_unsupported' as const;
readonly reason: ChatRuntimeUnavailableReason;
constructor(reason: ChatRuntimeUnavailableReason) {
super(
reason === 'adapter_unavailable'
? 'The pi-rpc chat runtime is unavailable: no "pi" harness adapter is registered.'
: 'The pi-rpc chat runtime is unavailable: the harness conversation service is not bound.',
);
this.name = 'ChatRuntimeUnavailableError';
this.reason = reason;
}
}
/**
* Resolves the process-wide chat runtime mode from the environment. Anything other
* than the exact opt-in token `pi-rpc` keeps the legacy embedded runtime.
*/
export function resolveChatRuntimeMode(
env: Record<string, string | undefined> = process.env,
): ChatRuntimeMode {
return env['CHAT_HARNESS_RUNTIME'] === 'pi-rpc' ? 'pi-rpc' : 'legacy';
}
// ---------------------------------------------------------------------------
// Transitional embedded chat port (Task Five).
//
// The legacy embedded browser behaviour is moved behind this exact interface so
// neither the controller nor the gateway retains AgentService, RoutingEngine,
// session, `piSession`, metric, listener, or channel access. `EmbeddedChatRuntime`
// implements the port; `ChatRuntimeRouter` exposes the same narrowly named
// operations and returns `runtime_unsupported` before touching Embedded for legacy
// browser operations when the mode is `pi-rpc`.
//
// The names are frozen (spec jarvis-brain@1c629b06). Legacy REST completion,
// legacy Socket streaming, P3 harness turns, and verified Discord are distinct
// transport/trust capabilities — there is deliberately no generic
// `sendConversationTurn` nor an AgentService-shaped mirror on the router.
// ---------------------------------------------------------------------------
/**
* Phantom brand keeping {@link OwnedConversationContext} nominally distinct so browser
* DTOs are never structurally assignable to it. The factory that mints one may be called
* only after authentication with `scopeFromUser(...)`, never with payload authority fields.
*/
declare const ownedConversationContextBrand: unique symbol;
/** Gateway-only ownership context. Embedded rechecks owner+tenant on every operation. */
export interface OwnedConversationContext {
readonly [ownedConversationContextBrand]: true;
readonly conversationId: string;
readonly scope: Readonly<{ userId: string; tenantId: string }>;
}
/**
* Every non-`ok` legacy runtime outcome. Missing, foreign, and no-longer-owned
* conversations all collapse to `conversation_unavailable`. Ownership/mode/validation
* failures are total results and never throw.
*/
export type LegacyRuntimeFailure =
| { readonly ok: false; readonly code: 'runtime_unsupported'; readonly retryable: false }
| { readonly ok: false; readonly code: 'conversation_unavailable'; readonly retryable: false }
| { readonly ok: false; readonly code: 'request_invalid'; readonly retryable: false }
| {
readonly ok: false;
readonly code: 'thinking_level_invalid';
readonly retryable: false;
readonly availableThinkingLevels: readonly string[];
}
| { readonly ok: false; readonly code: 'runtime_unavailable'; readonly retryable: true }
| { readonly ok: false; readonly code: 'turn_already_dispatched'; readonly retryable: false }
| { readonly ok: false; readonly code: 'operation_failed'; readonly retryable: boolean }
| { readonly ok: false; readonly code: 'timeout'; readonly retryable: true };
/** Total result: an `ok` value or one of the fixed {@link LegacyRuntimeFailure} codes. */
export type LegacyRuntimeResult<T> =
| { readonly ok: true; readonly value: T }
| LegacyRuntimeFailure;
/** User-facing session projection. Carries no session object, handle, or credential path. */
export interface LegacySessionPresentation {
readonly provider: string;
readonly modelId: string;
readonly thinkingLevel: string;
readonly availableThinkingLevels: readonly string[];
readonly agentName?: string;
readonly routingDecision?: RoutingDecisionInfo;
}
/** Terminal usage stats, normalized by Embedded from AgentService metrics. */
export interface LegacyUsage {
readonly provider: string;
readonly modelId: string;
readonly thinkingLevel: string;
readonly tokens: Readonly<{
input: number;
output: number;
cacheRead: number;
cacheWrite: number;
total: number;
}>;
readonly cost: number;
readonly context: Readonly<{ percent: number | null; window: number }>;
}
/**
* Normalized stream event. Exposes no `AgentSession`, `piSession`, native handle, raw
* exception, tool arguments, or credential-bearing path — the gateway sees only these.
*/
export type LegacyRuntimeEvent =
| { readonly type: 'started' }
| { readonly type: 'text_delta'; readonly text: string }
| { readonly type: 'thinking_delta'; readonly text: string }
| {
readonly type: 'tool_started';
readonly toolCallId: string;
readonly toolName: string;
}
| {
readonly type: 'tool_finished';
readonly toolCallId: string;
readonly toolName: string;
readonly isError: boolean;
}
| { readonly type: 'settled'; readonly usage?: LegacyUsage };
/** Legacy browser message input. Authority fields are advisory only; scope comes from the context. */
export interface LegacyBrowserMessagePayload {
readonly content: string;
readonly provider?: string;
readonly modelId?: string;
readonly agentId?: string;
readonly attachments?: readonly ChannelAttachmentDto[];
}
/** A prepared-but-not-yet-dispatched legacy socket turn. */
export interface LegacySocketTurnLease {
readonly presentation: LegacySessionPresentation;
/**
* Atomically one-shot and scope-rechecking. A second call returns
* `turn_already_dispatched` and performs zero prompt/tool effects.
*/
dispatch(): Promise<LegacyRuntimeResult<void>>;
/** Idempotent, non-throwing. Removes listener and channel, including partial setup. */
dispose(): Promise<void>;
}
/**
* Phantom brand for {@link VerifiedDiscordIngressContext}. Minted only after service-token
* auth plus signature, allowlist, binding, expected-route, replay, configured-agent,
* forced-scope, and attachment-normalization checks.
*/
declare const verifiedDiscordIngressContextBrand: unique symbol;
/** Fully-verified Discord ingress. Contains no socket, envelope, signature, token, or escape hatch. */
export interface VerifiedDiscordIngressContext {
readonly [verifiedDiscordIngressContextBrand]: true;
readonly conversationId: string;
readonly scope: Readonly<{ userId: string; tenantId: string }>;
readonly configuredAgent: Readonly<{ agentConfigId: string; instanceId: string }>;
readonly content: string;
readonly attachments?: readonly ChannelAttachmentDto[];
readonly correlationId: string;
readonly discordMessageId: string;
readonly discordUserId: string;
}
/** Verified-Discord turn lease. Same atomic one-shot dispatch and idempotent dispose rules. */
export interface VerifiedDiscordTurnLease {
readonly presentation: LegacySessionPresentation;
dispatch(): Promise<LegacyRuntimeResult<void>>;
dispose(): Promise<void>;
}
/** Server-owned egress projection the runtime pushes normalized events into. */
export interface LegacyRuntimeStream {
/** Server-derived, e.g. `websocket:<socket-id>`. Never client-supplied. */
readonly channelId: string;
onEvent(event: LegacyRuntimeEvent): void;
}
/**
* The exact transitional port. `EmbeddedChatRuntime` implements it; `ChatRuntimeRouter`
* mirrors the operation names and fails closed with `runtime_unsupported` for legacy
* browser operations under `pi-rpc`.
*/
export interface LegacyEmbeddedChatPort {
completeLegacyRestTurn(
context: OwnedConversationContext,
input: Readonly<{ content: string }>,
): Promise<
LegacyRuntimeResult<Readonly<{ text: string; presentation: LegacySessionPresentation }>>
>;
prepareLegacySocketTurn(
context: OwnedConversationContext,
input: LegacyBrowserMessagePayload,
stream: LegacyRuntimeStream,
): Promise<LegacyRuntimeResult<LegacySocketTurnLease>>;
setLegacyThinking(
context: OwnedConversationContext,
level: string,
): LegacyRuntimeResult<LegacySessionPresentation>;
abortLegacyTurn(context: OwnedConversationContext): Promise<LegacyRuntimeResult<void>>;
applyLegacyModelOverride(
context: OwnedConversationContext,
modelId: string,
): LegacyRuntimeResult<LegacySessionPresentation>;
readLegacySessionPresentation(
context: OwnedConversationContext,
): LegacyRuntimeResult<LegacySessionPresentation>;
dispatchVerifiedDiscordIngress(
context: VerifiedDiscordIngressContext,
stream: LegacyRuntimeStream,
): Promise<LegacyRuntimeResult<VerifiedDiscordTurnLease>>;
}
/**
* Mints an {@link OwnedConversationContext} from a server-derived scope. Callers must pass
* a scope produced by `scopeFromUser(...)` after authentication — never a client-supplied
* authority field. The brand is phantom, so this is the only way to obtain the branded type.
*/
export function ownConversation(
conversationId: string,
scope: Readonly<{ userId: string; tenantId: string }>,
): OwnedConversationContext {
return { conversationId, scope } as unknown as OwnedConversationContext;
}
/**
* Mints a {@link VerifiedDiscordIngressContext}. Callers must have already completed every
* ingress check (service-token auth, signature, allowlist, binding, expected-route, replay,
* configured-agent, forced-scope, attachment normalization) before calling this.
*/
export function verifyDiscordIngress(
fields: Omit<VerifiedDiscordIngressContext, typeof verifiedDiscordIngressContextBrand>,
): VerifiedDiscordIngressContext {
return { ...fields } as unknown as VerifiedDiscordIngressContext;
}
+63 -32
View File
@@ -3,20 +3,21 @@ import {
Post,
Body,
Logger,
ForbiddenException,
HttpException,
HttpStatus,
NotFoundException,
Inject,
UseGuards,
} from '@nestjs/common';
import type { AgentSessionEvent } from '@mariozechner/pi-coding-agent';
import { Throttle } from '@nestjs/throttler';
import { AgentService } from '../agent/agent.service.js';
import { AuthGuard } from '../auth/auth.guard.js';
import { CurrentUser } from '../auth/current-user.decorator.js';
import { scopeFromUser, type AuthenticatedUserLike } from '../auth/session-scope.js';
import { v4 as uuid } from 'uuid';
import { ChatRequestDto } from './chat.dto.js';
import { ChatRuntimeRouter } from './chat-runtime-router.js';
import { ownConversation } from './chat-runtime.js';
import type { LegacyRuntimeFailure } from './chat-runtime.js';
interface ChatResponse {
conversationId: string;
@@ -28,7 +29,7 @@ interface ChatResponse {
export class ChatController {
private readonly logger = new Logger(ChatController.name);
constructor(private readonly runtime: ChatRuntimeRouter) {}
constructor(@Inject(AgentService) private readonly agentService: AgentService) {}
@Post()
@Throttle({ default: { limit: 10, ttl: 60_000 } })
@@ -39,38 +40,68 @@ export class ChatController {
const conversationId = body.conversationId ?? uuid();
const scope = scopeFromUser(user);
try {
let agentSession = this.agentService.getSession(conversationId, scope);
if (!agentSession) {
agentSession = await this.agentService.createSession(conversationId, {
userId: scope.userId,
tenantId: scope.tenantId,
});
}
} catch (err) {
if (err instanceof ForbiddenException) {
throw new NotFoundException('Session not found');
}
this.logger.error(
`Session creation failed for conversation=${conversationId}`,
err instanceof Error ? err.stack : String(err),
);
throw new HttpException('Agent session unavailable', HttpStatus.SERVICE_UNAVAILABLE);
}
this.logger.debug(`Handling chat request for user=${user.id}, conversation=${conversationId}`);
// The one exclusive runtime owns execution. In legacy mode this reaches the embedded runtime;
// in pi-rpc it fails closed with `runtime_unsupported` before ever touching embedded execution.
const result = await this.runtime.completeLegacyRestTurn(
ownConversation(conversationId, scope),
{ content: body.content },
);
let responseText = '';
if (result.ok) {
return { conversationId, text: result.value.text };
const done = new Promise<void>((resolve, reject) => {
const timer = setTimeout(() => {
cleanup();
this.logger.error(`Agent response timed out after 120s for conversation=${conversationId}`);
reject(new Error('Agent response timed out'));
}, 120_000);
const cleanup = this.agentService.onEvent(
conversationId,
(event: AgentSessionEvent) => {
if (
event.type === 'message_update' &&
event.assistantMessageEvent.type === 'text_delta'
) {
responseText += event.assistantMessageEvent.delta;
}
if (event.type === 'agent_end') {
clearTimeout(timer);
cleanup();
resolve();
}
},
scope,
);
});
try {
await this.agentService.prompt(conversationId, body.content, scope);
await done;
} catch (err) {
if (err instanceof HttpException) throw err;
const message = err instanceof Error ? err.message : String(err);
if (message.includes('timed out')) {
throw new HttpException('Agent response timed out', HttpStatus.GATEWAY_TIMEOUT);
}
this.logger.error(`Chat prompt failed for conversation=${conversationId}`, String(err));
throw new HttpException('Agent processing failed', HttpStatus.INTERNAL_SERVER_ERROR);
}
throw this.toHttpException(result, conversationId);
}
/** Maps a total {@link LegacyRuntimeFailure} to the fixed browser-safe HTTP surface. */
private toHttpException(failure: LegacyRuntimeFailure, conversationId: string): HttpException {
switch (failure.code) {
case 'conversation_unavailable':
return new NotFoundException('Session not found');
case 'request_invalid':
case 'thinking_level_invalid':
return new HttpException('Invalid chat request', HttpStatus.BAD_REQUEST);
case 'timeout':
return new HttpException('Agent response timed out', HttpStatus.GATEWAY_TIMEOUT);
case 'runtime_unsupported':
case 'runtime_unavailable':
return new HttpException('Agent runtime unavailable', HttpStatus.SERVICE_UNAVAILABLE);
default:
this.logger.error(`Chat turn failed for conversation=${conversationId}: ${failure.code}`);
return new HttpException('Agent processing failed', HttpStatus.INTERNAL_SERVER_ERROR);
}
return { conversationId, text: responseText };
}
}
+1 -63
View File
@@ -1,14 +1,5 @@
import type { ChannelAttachmentDto } from '@mosaicstack/types';
import { Transform, Type } from 'class-transformer';
import {
IsNotEmpty,
IsObject,
IsOptional,
IsString,
IsUUID,
MaxLength,
ValidateNested,
} from 'class-validator';
import { IsOptional, IsString, IsUUID, MaxLength } from 'class-validator';
export class ChatRequestDto {
@IsOptional()
@@ -46,56 +37,3 @@ export class ChatSocketMessageDto {
/** Validated channel attachment references; binary content is not embedded. */
attachments?: readonly ChannelAttachmentDto[];
}
/**
* Task Five, group 2 — the frozen pi-rpc `turn:send` selection triple.
*
* Each id is a required, non-empty, bounded string. There is no `@IsOptional` and no extra
* field: under `forbidNonWhitelisted` an unknown selection key is rejected, and a missing id
* fails `@IsString` (undefined is not a string) rather than silently passing.
*/
export class HarnessTurnSelectionDto {
@IsString()
@IsNotEmpty()
@MaxLength(255)
harnessId!: string;
@IsString()
@IsNotEmpty()
@MaxLength(255)
providerId!: string;
@IsString()
@IsNotEmpty()
@MaxLength(255)
modelId!: string;
}
/**
* Task Five, group 2 — the frozen wire contract for a pi-rpc `turn:send`.
*
* Validated through the production `ValidationPipe({ whitelist, forbidNonWhitelisted, transform })`:
* a UUID conversation id; `content` trimmed then bounded to 1..10_000 characters (whitespace-only
* collapses to empty and fails `@IsNotEmpty`); a nested `selection` object recursed with an
* explicit `@Type` (a bare `@ValidateNested` is masked green by class-validator's empty-metadata
* `unknownValue`); and a UUID-v4 idempotency key. No `provider`/`modelId`/`attachments` or other
* authority field is declared, so `forbidNonWhitelisted` rejects every unknown top-level key.
*/
export class HarnessTurnSendDto {
@IsUUID()
conversationId!: string;
@Transform(({ value }) => (typeof value === 'string' ? value.trim() : value))
@IsString()
@IsNotEmpty()
@MaxLength(10_000)
content!: string;
@IsObject()
@ValidateNested()
@Type(() => HarnessTurnSelectionDto)
selection!: HarnessTurnSelectionDto;
@IsUUID('4')
idempotencyKey!: string;
}
@@ -8,31 +8,12 @@ const payload: SlashCommandPayload = {
approvalId: 'approval-1',
};
/**
* Task 5 fence (F, existing control): gateway-owned command authorization/approval must
* cause ZERO chat-runtime dispatch. Placed in the gateway's chat-runtime-router slot (the
* former direct `AgentService` slot) so any accidental chat-runtime resolution throws
* loudly instead of silently passing. Because execute/approval run entirely through the
* command executor dependency and never resolve a chat runtime, this fixture is never
* triggered and the ingress stays a GREEN control.
*/
function failIfUsedChatRuntimeRouter() {
return {
onModuleInit: () => {
throw new Error('chat runtime router must not initialise on the command approval path');
},
get active(): never {
throw new Error('chat runtime must not be resolved on the command approval path');
},
};
}
function buildGateway(commandExecutor: {
execute: ReturnType<typeof vi.fn>;
createApproval: ReturnType<typeof vi.fn>;
}): ChatGateway {
return new ChatGateway(
failIfUsedChatRuntimeRouter() as never,
{} as never,
{} as never,
{} as never,
{} as never,
@@ -91,114 +72,3 @@ describe('ChatGateway command approval ingress', () => {
});
});
});
/**
* Task 5 (G3) command runtime fence. Under pi-rpc there is no embedded chat session, so
* embedded slash-commands (/model, /agent, and every other non-audited command) are fixed
* "unsupported" and MUST fail closed BEFORE reaching the command executor — never a silent
* fall-through to embedded execution. Only runtime-independent audited system commands
* (/reload) pass through as a positive control, and the approval path stays runtime-independent.
* The router stub here carries `runtimeMode: 'pi-rpc'` and throws if any runtime is resolved, so
* a fence bypass surfaces as a thrown error rather than a silent embedded dispatch.
*/
function buildPiRpcGateway(commandExecutor: {
execute: ReturnType<typeof vi.fn>;
createApproval: ReturnType<typeof vi.fn>;
}): ChatGateway {
const piRpcRouter = {
runtimeMode: 'pi-rpc' as const,
onModuleInit: () => {
throw new Error('chat runtime router must not initialise on the pi-rpc command path');
},
get active(): never {
throw new Error('chat runtime must not be resolved on the pi-rpc command path');
},
};
return new ChatGateway(
piRpcRouter as never,
{} as never,
{} as never,
{} as never,
commandExecutor as never,
{} as never,
);
}
describe('ChatGateway command runtime fence (Task 5 G3, pi-rpc)', () => {
const UNSUPPORTED = 'Slash commands are not available on this deployment.';
it.each(['model', 'agent', 'gc'])(
'fails /%s closed before the executor under pi-rpc (execute never called)',
async (command): Promise<void> => {
const commandExecutor = {
execute: vi
.fn()
.mockResolvedValue({ command, conversationId: 'conversation-1', success: true }),
createApproval: vi.fn(),
};
const gateway = buildPiRpcGateway(commandExecutor);
const client = { data: { user: { id: 'admin-1' } }, emit: vi.fn() };
await gateway.handleCommandExecute(client as never, {
command,
conversationId: 'conversation-1',
});
expect(commandExecutor.execute).toHaveBeenCalledTimes(0);
expect(client.emit).toHaveBeenCalledWith('command:result', {
command,
conversationId: 'conversation-1',
success: false,
message: UNSUPPORTED,
});
},
);
it('passes the audited /reload system command through as a positive control under pi-rpc', async (): Promise<void> => {
const reloadResult = { command: 'reload', conversationId: 'conversation-1', success: true };
const commandExecutor = {
execute: vi.fn().mockResolvedValue(reloadResult),
createApproval: vi.fn(),
};
const gateway = buildPiRpcGateway(commandExecutor);
const client = { data: { user: { id: 'admin-1' } }, emit: vi.fn() };
await gateway.handleCommandExecute(client as never, {
command: 'reload',
conversationId: 'conversation-1',
});
expect(commandExecutor.execute).toHaveBeenCalledTimes(1);
expect(commandExecutor.execute).toHaveBeenCalledWith(
{ command: 'reload', conversationId: 'conversation-1' },
{ userId: 'admin-1', tenantId: 'admin-1' },
);
expect(client.emit).toHaveBeenCalledWith('command:result', reloadResult);
});
it('keeps command approval runtime-independent under pi-rpc (createApproval still runs)', async (): Promise<void> => {
const commandExecutor = {
execute: vi.fn(),
createApproval: vi.fn().mockResolvedValue({
approvalId: 'approval-1',
expiresAt: '2026-07-12T00:05:00.000Z',
}),
};
const gateway = buildPiRpcGateway(commandExecutor);
const client = { data: { user: { id: 'admin-1' } }, emit: vi.fn() };
await gateway.handleCommandApproval(client as never, {
command: 'gc',
conversationId: 'conversation-1',
});
expect(commandExecutor.createApproval).toHaveBeenCalledWith(
{ command: 'gc', conversationId: 'conversation-1' },
{ userId: 'admin-1', tenantId: 'admin-1' },
);
expect(client.emit).toHaveBeenCalledWith(
'command:approval',
expect.objectContaining({ success: true, approvalId: 'approval-1' }),
);
});
});
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@@ -1,59 +1,12 @@
import { forwardRef, Module } from '@nestjs/common';
import { CommandsModule } from '../commands/commands.module.js';
import { HarnessModule } from '../harness/harness.module.js';
import { HarnessRegistry } from '../harness/harness.registry.js';
import {
HARNESS_CONVERSATION_SERVICE,
HARNESS_REGISTRY,
type HarnessConversationServiceBinding,
} from '../harness/harness.tokens.js';
import type { HarnessConversationService } from '@mosaicstack/types';
import { ChatGateway } from './chat.gateway.js';
import { ChatController } from './chat.controller.js';
import { ChatRuntimeRouter } from './chat-runtime-router.js';
import { EmbeddedChatRuntime } from './embedded-chat.runtime.js';
import { HarnessChatRuntime } from './harness-chat.runtime.js';
/**
* Task Five wiring. The exclusive {@link ChatRuntimeRouter} is the single chat-execution
* authority: the controller and gateway inject only the router, never `AgentService`,
* `RoutingEngineService`, or a session/`piSession` handle. The router resolves exactly one
* runtime at module init {@link EmbeddedChatRuntime} in legacy mode, {@link HarnessChatRuntime}
* in `pi-rpc` over the REAL {@link HarnessModule} registry and conversation-service binding.
*
* The router and the harness runtime are constructed through factories because their
* dependencies are interface/union types with no runtime injection token (the registry and
* conversation-service arrive via the string tokens exported by `HarnessModule`); the embedded
* runtime injects the class-typed `AgentService` and is provided directly.
*/
@Module({
imports: [forwardRef(() => CommandsModule), HarnessModule],
imports: [forwardRef(() => CommandsModule)],
controllers: [ChatController],
providers: [
ChatGateway,
EmbeddedChatRuntime,
{
provide: HarnessChatRuntime,
useFactory: (conversationService: HarnessConversationServiceBinding) =>
new HarnessChatRuntime(conversationService as HarnessConversationService),
inject: [HARNESS_CONVERSATION_SERVICE],
},
{
provide: ChatRuntimeRouter,
useFactory: (
registry: HarnessRegistry,
conversationService: HarnessConversationServiceBinding,
embedded: EmbeddedChatRuntime,
harness: HarnessChatRuntime,
) => new ChatRuntimeRouter(registry, conversationService, embedded, harness),
inject: [
HARNESS_REGISTRY,
HARNESS_CONVERSATION_SERVICE,
EmbeddedChatRuntime,
HarnessChatRuntime,
],
},
],
exports: [ChatGateway, ChatRuntimeRouter],
providers: [ChatGateway],
exports: [ChatGateway],
})
export class ChatModule {}
@@ -1,515 +0,0 @@
import { ForbiddenException, Injectable, Logger, NotFoundException } from '@nestjs/common';
import type { AgentSessionEvent } from '@mariozechner/pi-coding-agent';
import { AgentService, type AgentSession } from '../agent/agent.service.js';
import type { ActorTenantScope } from '../auth/session-scope.js';
import type {
ChatRuntime,
LegacyBrowserMessagePayload,
LegacyEmbeddedChatPort,
LegacyRuntimeEvent,
LegacyRuntimeResult,
LegacySessionPresentation,
LegacySocketTurnLease,
LegacyUsage,
OwnedConversationContext,
VerifiedDiscordIngressContext,
VerifiedDiscordTurnLease,
LegacyRuntimeStream,
} from './chat-runtime.js';
/** Fixed timeout for a synchronous REST turn, matching the historical controller budget. */
const REST_TURN_TIMEOUT_MS = 120_000;
/**
* The `legacy` chat runtime and the sole implementation of {@link LegacyEmbeddedChatPort}.
*
* It owns the embedded in-process execution path the `AgentService` stack that the
* `ChatController` and `ChatGateway` drove directly before Task Five. Once the
* {@link import('./chat-runtime-router.js').ChatRuntimeRouter} fronts it, the browser
* HTTP/WebSocket legacy path and verified-Discord ingress route through THIS runtime, so
* neither the controller nor the gateway retains `AgentService`, `piSession`, session,
* listener, channel, or metric access. Ownership (`userId`/`tenantId`) is re-checked by
* `AgentService` on every operation; a missing, foreign, or no-longer-owned conversation
* collapses to `conversation_unavailable` and never throws out of the port.
*/
@Injectable()
export class EmbeddedChatRuntime implements ChatRuntime, LegacyEmbeddedChatPort {
readonly kind = 'embedded' as const;
private readonly logger = new Logger(EmbeddedChatRuntime.name);
constructor(readonly agentService: AgentService) {}
// -------------------------------------------------------------------------
// Legacy REST completion (op A)
// -------------------------------------------------------------------------
async completeLegacyRestTurn(
context: OwnedConversationContext,
input: Readonly<{ content: string }>,
): Promise<
LegacyRuntimeResult<Readonly<{ text: string; presentation: LegacySessionPresentation }>>
> {
const scope = toScope(context.scope);
const { conversationId } = context;
const resolved = await this.resolveOrCreate(conversationId, scope, {});
if (!resolved.ok) return resolved;
let responseText = '';
let timer: ReturnType<typeof setTimeout> | undefined;
let detach: (() => void) | undefined;
let disposed = false;
// One idempotent teardown owned OUTSIDE the completion promise: it clears the timeout and
// detaches the event listener exactly once, whichever of agent_end, timeout, or a prompt
// rejection fires first. Without this, a prompt() rejection surfaced through the catch below
// would return while leaving the listener attached (free to consume a later turn's events) and
// the 120s timer live (its rejection later going unobserved).
const dispose = (): void => {
if (disposed) return;
disposed = true;
if (timer !== undefined) clearTimeout(timer);
detach?.();
};
const done = new Promise<void>((resolve, reject) => {
timer = setTimeout(() => {
dispose();
reject(new Error('Agent response timed out'));
}, REST_TURN_TIMEOUT_MS);
detach = this.agentService.onEvent(
conversationId,
(event: AgentSessionEvent) => {
if (
event.type === 'message_update' &&
event.assistantMessageEvent.type === 'text_delta'
) {
responseText += event.assistantMessageEvent.delta;
}
if (event.type === 'agent_end') {
dispose();
resolve();
}
},
scope,
);
});
try {
await this.agentService.prompt(conversationId, input.content, scope);
await done;
} catch (err) {
dispose();
const message = err instanceof Error ? err.message : String(err);
if (message.includes('timed out')) {
return { ok: false, code: 'timeout', retryable: true };
}
this.logger.error(`Legacy REST turn failed for conversation=${conversationId}`, message);
return { ok: false, code: 'operation_failed', retryable: false };
}
const presentation = this.presentationFor(conversationId, scope) ?? resolved.presentation;
return { ok: true, value: { text: responseText, presentation } };
}
// -------------------------------------------------------------------------
// Legacy Socket streaming (op B)
// -------------------------------------------------------------------------
async prepareLegacySocketTurn(
context: OwnedConversationContext,
input: LegacyBrowserMessagePayload,
stream: LegacyRuntimeStream,
): Promise<LegacyRuntimeResult<LegacySocketTurnLease>> {
const scope = toScope(context.scope);
const { conversationId } = context;
const resolved = await this.resolveOrCreate(conversationId, scope, {
...(input.provider ? { provider: input.provider } : {}),
...(input.modelId ? { modelId: input.modelId } : {}),
...(input.agentId ? { agentConfigId: input.agentId } : {}),
});
if (!resolved.ok) return resolved;
let detach: () => void;
try {
detach = this.subscribe(conversationId, scope, stream);
} catch (err) {
// A partial listener/channel setup rolled itself back inside subscribe(); surface a total
// safe failure instead of throwing out of the port. Retryable — the attach is transient.
this.logger.error(
`Embedded socket subscription failed for conversation=${conversationId}`,
err instanceof Error ? err.message : String(err),
);
return { ok: false, code: 'runtime_unavailable', retryable: true };
}
return {
ok: true,
value: this.buildLease(
conversationId,
scope,
input.content,
input.attachments,
detach,
resolved.presentation,
),
};
}
// -------------------------------------------------------------------------
// Thinking level (op C) — synchronous, total
// -------------------------------------------------------------------------
setLegacyThinking(
context: OwnedConversationContext,
level: string,
): LegacyRuntimeResult<LegacySessionPresentation> {
const scope = toScope(context.scope);
const session = this.agentService.getSession(context.conversationId, scope);
if (!session) return CONVERSATION_UNAVAILABLE;
const availableThinkingLevels = session.piSession.getAvailableThinkingLevels();
if (!(availableThinkingLevels as readonly string[]).includes(level)) {
return {
ok: false,
code: 'thinking_level_invalid',
retryable: false,
availableThinkingLevels,
};
}
session.piSession.setThinkingLevel(level as never);
return { ok: true, value: this.presentationForSession(session) };
}
// -------------------------------------------------------------------------
// Abort (op D)
// -------------------------------------------------------------------------
async abortLegacyTurn(context: OwnedConversationContext): Promise<LegacyRuntimeResult<void>> {
const scope = toScope(context.scope);
const session = this.agentService.getSession(context.conversationId, scope);
if (!session) return CONVERSATION_UNAVAILABLE;
try {
await session.piSession.abort();
} catch (err) {
this.logger.error(
`Legacy abort failed for conversation=${context.conversationId}`,
err instanceof Error ? err.message : String(err),
);
return { ok: false, code: 'operation_failed', retryable: false };
}
return { ok: true, value: undefined };
}
// -------------------------------------------------------------------------
// Model override (synchronous, total)
// -------------------------------------------------------------------------
applyLegacyModelOverride(
context: OwnedConversationContext,
modelId: string,
): LegacyRuntimeResult<LegacySessionPresentation> {
const scope = toScope(context.scope);
const session = this.agentService.getSession(context.conversationId, scope);
if (!session) return CONVERSATION_UNAVAILABLE;
this.agentService.updateSessionModel(context.conversationId, modelId, scope);
const refreshed = this.agentService.getSession(context.conversationId, scope) ?? session;
return { ok: true, value: this.presentationForSession(refreshed) };
}
// -------------------------------------------------------------------------
// Presentation read (synchronous, total)
// -------------------------------------------------------------------------
readLegacySessionPresentation(
context: OwnedConversationContext,
): LegacyRuntimeResult<LegacySessionPresentation> {
const scope = toScope(context.scope);
const session = this.agentService.getSession(context.conversationId, scope);
if (!session) return CONVERSATION_UNAVAILABLE;
return { ok: true, value: this.presentationForSession(session) };
}
// -------------------------------------------------------------------------
// Verified Discord ingress (embedded-only in both modes)
// -------------------------------------------------------------------------
async dispatchVerifiedDiscordIngress(
context: VerifiedDiscordIngressContext,
stream: LegacyRuntimeStream,
): Promise<LegacyRuntimeResult<VerifiedDiscordTurnLease>> {
const scope = toScope(context.scope);
const { conversationId } = context;
const resolved = await this.resolveOrCreate(
conversationId,
scope,
{ agentConfigId: context.configuredAgent.agentConfigId },
{
agentConfigId: context.configuredAgent.agentConfigId,
instanceId: context.configuredAgent.instanceId,
},
);
if (!resolved.ok) return resolved;
let detach: () => void;
try {
detach = this.subscribe(conversationId, scope, stream);
} catch (err) {
// A partial listener/channel setup rolled itself back inside subscribe(); surface a total
// safe failure instead of throwing out of the port. Retryable — the attach is transient.
this.logger.error(
`Embedded Discord subscription failed for conversation=${conversationId}`,
err instanceof Error ? err.message : String(err),
);
return { ok: false, code: 'runtime_unavailable', retryable: true };
}
return {
ok: true,
value: this.buildLease(
conversationId,
scope,
context.content,
context.attachments,
detach,
resolved.presentation,
),
};
}
// -------------------------------------------------------------------------
// Shared helpers
// -------------------------------------------------------------------------
/**
* Resolves the owned session, creating it on first use. Ownership/scope rejections
* (`Forbidden`/`NotFound`) collapse to `conversation_unavailable`; any other creation
* failure surfaces as the retryable `runtime_unavailable`. On success returns the
* session presentation so callers avoid a redundant `getSession`.
*/
private async resolveOrCreate(
conversationId: string,
scope: ActorTenantScope,
extraOptions: Readonly<{ provider?: string; modelId?: string; agentConfigId?: string }>,
expectedAgent?: Readonly<{ agentConfigId: string; instanceId: string }>,
): Promise<
| { readonly ok: true; readonly presentation: LegacySessionPresentation }
| Exclude<LegacyRuntimeResult<never>, { ok: true }>
> {
let session = this.agentService.getSession(conversationId, scope);
if (session && expectedAgent) {
// A verified-Discord turn reuses an existing in-process session only when its configured
// identity still matches the reconciled agent record. A pre-existing same-scope session
// carrying a different configured agent (config id or resolved name) is rejected rather than
// executed under the verified label — never silently run a different prompt/model/tool policy.
if (
session.agentConfigId !== expectedAgent.agentConfigId ||
session.agentName !== expectedAgent.instanceId
) {
return CONVERSATION_UNAVAILABLE;
}
}
if (!session) {
try {
session = await this.agentService.createSession(conversationId, {
userId: scope.userId,
tenantId: scope.tenantId,
...extraOptions,
});
} catch (err) {
if (err instanceof ForbiddenException || err instanceof NotFoundException) {
return CONVERSATION_UNAVAILABLE;
}
this.logger.error(
`Embedded session creation failed for conversation=${conversationId}`,
err instanceof Error ? err.stack : String(err),
);
return { ok: false, code: 'runtime_unavailable', retryable: true };
}
}
return { ok: true, presentation: this.presentationForSession(session) };
}
/** Installs a normalizing event listener that forwards to the server-owned stream. */
private subscribe(
conversationId: string,
scope: ActorTenantScope,
stream: LegacyRuntimeStream,
): () => void {
const unsubscribe = this.agentService.onEvent(
conversationId,
(event: AgentSessionEvent) => {
const normalized = this.normalizeEvent(conversationId, scope, event);
if (normalized) stream.onEvent(normalized);
},
scope,
);
try {
this.agentService.addChannel(conversationId, stream.channelId, scope);
} catch (err) {
// Partial setup: the listener was acquired but the channel attach failed. Roll back
// exactly what was acquired (the listener) before the failure escapes, so no leaked
// subscription survives; the caller converts the rethrow into a total safe failure.
try {
unsubscribe();
} catch {
/* idempotent teardown */
}
throw err;
}
return () => {
try {
unsubscribe();
} catch {
/* idempotent teardown */
}
try {
this.agentService.removeChannel(conversationId, stream.channelId, scope);
} catch {
/* idempotent teardown */
}
};
}
/** Builds an atomically one-shot, scope-rechecking dispatch lease. */
private buildLease(
conversationId: string,
scope: ActorTenantScope,
content: string,
attachments: VerifiedDiscordIngressContext['attachments'],
detach: () => void,
presentation: LegacySessionPresentation,
): LegacySocketTurnLease & VerifiedDiscordTurnLease {
let dispatched = false;
let disposed = false;
return {
presentation,
dispatch: async (): Promise<LegacyRuntimeResult<void>> => {
if (dispatched) {
return { ok: false, code: 'turn_already_dispatched', retryable: false };
}
dispatched = true;
try {
await this.agentService.prompt(conversationId, content, scope, attachments);
} catch (err) {
this.logger.error(
`Legacy dispatch failed for conversation=${conversationId}`,
err instanceof Error ? err.message : String(err),
);
return { ok: false, code: 'operation_failed', retryable: false };
}
return { ok: true, value: undefined };
},
dispose: async (): Promise<void> => {
if (disposed) return;
disposed = true;
detach();
},
};
}
/** Normalizes a raw agent event into the redaction-agnostic transport event, or drops it. */
private normalizeEvent(
conversationId: string,
scope: ActorTenantScope,
event: AgentSessionEvent,
): LegacyRuntimeEvent | undefined {
switch (event.type) {
case 'agent_start':
return { type: 'started' };
case 'agent_end':
return { type: 'settled', ...this.usageFor(conversationId, scope) };
case 'message_update': {
const assistant = event.assistantMessageEvent;
if (assistant.type === 'text_delta') return { type: 'text_delta', text: assistant.delta };
if (assistant.type === 'thinking_delta') {
return { type: 'thinking_delta', text: assistant.delta };
}
return undefined;
}
case 'tool_execution_start':
return { type: 'tool_started', toolCallId: event.toolCallId, toolName: event.toolName };
case 'tool_execution_end':
return {
type: 'tool_finished',
toolCallId: event.toolCallId,
toolName: event.toolName,
isError: event.isError,
};
default:
return undefined;
}
}
/**
* Gathers terminal usage from the Pi session and records it into session metrics.
* Embedded owns AgentService metrics; the gateway never touches `piSession` stats.
*/
private usageFor(conversationId: string, scope: ActorTenantScope): { usage?: LegacyUsage } {
const session = this.agentService.getSession(conversationId, scope);
const piSession = session?.piSession;
const stats = piSession?.getSessionStats();
if (!session || !stats) return {};
const contextUsage = piSession?.getContextUsage();
const tokens = {
input: stats.tokens?.input ?? 0,
output: stats.tokens?.output ?? 0,
cacheRead: stats.tokens?.cacheRead ?? 0,
cacheWrite: stats.tokens?.cacheWrite ?? 0,
total: stats.tokens?.total ?? 0,
};
this.agentService.recordTokenUsage(conversationId, { ...tokens });
return {
usage: {
provider: session.provider,
modelId: session.modelId,
thinkingLevel: piSession?.thinkingLevel ?? 'off',
tokens,
cost: stats.cost ?? 0,
context: {
percent: contextUsage?.percent ?? null,
window: contextUsage?.contextWindow ?? 0,
},
},
};
}
/** Presentation from a live session id, or undefined when no owned session exists. */
private presentationFor(
conversationId: string,
scope: ActorTenantScope,
): LegacySessionPresentation | undefined {
const session = this.agentService.getSession(conversationId, scope);
return session ? this.presentationForSession(session) : undefined;
}
/** User-facing projection carrying no session handle, credential, or raw stats. */
private presentationForSession(session: AgentSession): LegacySessionPresentation {
return {
provider: session.provider,
modelId: session.modelId,
thinkingLevel: session.piSession.thinkingLevel,
availableThinkingLevels: session.piSession.getAvailableThinkingLevels(),
...(session.agentName ? { agentName: session.agentName } : {}),
};
}
}
/** The shared terminal `conversation_unavailable` failure (missing/foreign/lost ownership). */
const CONVERSATION_UNAVAILABLE = {
ok: false as const,
code: 'conversation_unavailable' as const,
retryable: false as const,
};
/** Narrows a branded context scope to the `AgentService` actor/tenant scope (identical shape). */
function toScope(scope: Readonly<{ userId: string; tenantId: string }>): ActorTenantScope {
return { userId: scope.userId, tenantId: scope.tenantId };
}
@@ -1,170 +0,0 @@
import { describe, expect, it } from 'vitest';
import type {
AttachConversation,
ConversationSnapshot,
DetachConversation,
HarnessActorContext,
HarnessConversationService,
HarnessEventEnvelope,
HarnessSelection,
SendHarnessTurn,
TurnReceipt,
} from '@mosaicstack/types';
import { HarnessChatRuntime } from './harness-chat.runtime.js';
/**
* Task Five, Step One (harness runtime). Proves the `pi-rpc` runtime executes
* exclusively through the {@link HarnessConversationService} RPC boundary and
* forwards the caller's exact selection tuple and idempotency key without
* substitution. Red-first: the runtime is an unimplemented stub, so every
* delegation assertion fails until Step Three.
*/
const context: HarnessActorContext = {
actorId: 'actor-1',
tenantId: 'tenant-1',
seatId: 'seat-1',
correlationId: 'corr-1',
};
const selection: HarnessSelection = {
harnessId: 'pi',
providerId: 'anthropic',
modelId: 'claude-opus-4-8',
};
const conversationId = '11111111-1111-4111-8111-111111111111';
const idempotencyKey = '22222222-2222-4222-8222-222222222222';
const sendInput: SendHarnessTurn & { idempotencyKey: string } = {
context,
conversationId,
selection,
turnId: 'turn-abc',
correlationId: 'corr-1',
content: 'hello',
idempotencyKey,
};
const attachInput: AttachConversation & { afterSequence?: number } = {
context,
conversationId,
clientId: 'client-1',
selection,
afterSequence: 0,
};
const detachInput: DetachConversation = {
context,
conversationId,
clientId: 'client-1',
};
interface RecordedCalls {
attach: (AttachConversation & { afterSequence?: number })[];
detach: DetachConversation[];
send: (SendHarnessTurn & { idempotencyKey: string })[];
subscribeFrom: { conversationId: string; afterSequence: number }[];
}
const snapshot: ConversationSnapshot = {
session: {
conversationId,
nativeSessionId: 'native-1',
seatId: 'seat-1',
selection,
state: 'idle',
attachedClientIds: ['client-1'],
},
lastSequence: 0,
replay: [],
};
function build(): { runtime: HarnessChatRuntime; calls: RecordedCalls } {
const calls: RecordedCalls = { attach: [], detach: [], send: [], subscribeFrom: [] };
const service: HarnessConversationService = {
attach: (input) => {
calls.attach.push(input);
return Promise.resolve(snapshot);
},
detach: (input) => {
calls.detach.push(input);
return Promise.resolve();
},
send: (input) => {
calls.send.push(input);
// The service echoes only the requested tuple; there is no representable substitute.
const receipt: TurnReceipt = {
conversationId: input.conversationId,
turnId: 'turn-server',
correlationId: input.correlationId,
state: 'accepted',
selection: input.selection,
};
return Promise.resolve(receipt);
},
subscribeFrom: (id, afterSequence) => {
calls.subscribeFrom.push({ conversationId: id, afterSequence });
return (async function* (): AsyncIterable<HarnessEventEnvelope> {
return;
})();
},
};
return { runtime: new HarnessChatRuntime(service), calls };
}
describe('HarnessChatRuntime', () => {
it('is the harness runtime kind and needs only a HarnessConversationService', () => {
const { runtime } = build();
expect(runtime.kind).toBe('harness');
});
it('delegates send to the conversation service with the exact tuple and idempotency key', async () => {
const { runtime, calls } = build();
const receipt = await runtime.send(sendInput);
expect(calls.send).toHaveLength(1);
const firstSend = calls.send[0]!;
expect(firstSend).toEqual(sendInput);
expect(firstSend.idempotencyKey).toBe(idempotencyKey);
expect(firstSend.selection).toEqual(selection);
// The runtime must not substitute an effective tuple onto the receipt.
expect(receipt.selection).toEqual(selection);
});
it('delegates attach to the conversation service and returns its snapshot', async () => {
const { runtime, calls } = build();
const result = await runtime.attach(attachInput);
expect(calls.attach).toHaveLength(1);
expect(calls.attach[0]).toEqual(attachInput);
expect(result).toBe(snapshot);
});
it('delegates detach to the conversation service', async () => {
const { runtime, calls } = build();
await runtime.detach(detachInput);
expect(calls.detach).toHaveLength(1);
expect(calls.detach[0]).toEqual(detachInput);
});
it('delegates subscribeFrom to the conversation service journal replay', async () => {
const { runtime, calls } = build();
const iterable = runtime.subscribeFrom(conversationId, 7);
// Drain to prove it is the service-backed async iterable, not a fabricated one.
const drained: unknown[] = [];
for await (const event of iterable) {
drained.push(event);
}
expect(drained).toHaveLength(0);
expect(calls.subscribeFrom).toHaveLength(1);
expect(calls.subscribeFrom[0]).toEqual({ conversationId, afterSequence: 7 });
});
});
@@ -1,47 +0,0 @@
import type {
AttachConversation,
ConversationSnapshot,
DetachConversation,
HarnessConversationService,
HarnessEventEnvelope,
SendHarnessTurn,
TurnReceipt,
} from '@mosaicstack/types';
import type { ChatRuntime } from './chat-runtime.js';
/**
* The `pi-rpc` chat runtime. It executes browser chat exclusively through the
* harness-neutral {@link HarnessConversationService} RPC boundary it never
* touches the embedded `AgentService`/`ProviderService`/`RoutingEngineService`
* stack, and it forwards the caller's exact selection tuple and idempotency key
* without substitution.
*
* It owns no state and adds no policy: every method forwards the caller's exact
* argument to the injected {@link HarnessConversationService} and returns its
* result unchanged, so the requested selection tuple and idempotency key can
* never be substituted on the way through.
*/
export class HarnessChatRuntime implements ChatRuntime {
readonly kind = 'harness' as const;
constructor(private readonly conversations: HarnessConversationService) {}
attach(input: AttachConversation & { afterSequence?: number }): Promise<ConversationSnapshot> {
return this.conversations.attach(input);
}
detach(input: DetachConversation): Promise<void> {
return this.conversations.detach(input);
}
send(input: SendHarnessTurn & { idempotencyKey: string }): Promise<TurnReceipt> {
return this.conversations.send(input);
}
subscribeFrom(
conversationId: string,
afterSequence: number,
): AsyncIterable<HarnessEventEnvelope> {
return this.conversations.subscribeFrom(conversationId, afterSequence);
}
}
@@ -1,4 +1,3 @@
import { Logger } from '@nestjs/common';
import { describe, it, expect, vi, beforeEach } from 'vitest';
import { CommandExecutorService } from './command-executor.service.js';
import type { SlashCommandPayload } from '@mosaicstack/types';
@@ -13,7 +12,6 @@ const mockRegistry = {
{ name: 'agent', aliases: ['a'], scope: 'agent', execution: 'socket', available: true },
{ name: 'prdy', aliases: [], scope: 'agent', execution: 'socket', available: true },
{ name: 'tools', aliases: [], scope: 'agent', execution: 'socket', available: true },
{ name: 'mcp', aliases: [], scope: 'agent', execution: 'socket', available: true },
],
skills: [],
})),
@@ -74,30 +72,17 @@ const mockChatGateway = {
broadcastSessionInfo: vi.fn(),
};
const mockMcpClient = {
reconnectServer: vi.fn().mockResolvedValue(undefined),
getServerStatuses: vi.fn(() => []),
getToolDefinitions: vi.fn(() => []),
};
function buildService(
redis: typeof mockRedis | null = mockRedis,
mcpClient: {
reconnectServer: ReturnType<typeof vi.fn>;
getServerStatuses: ReturnType<typeof vi.fn>;
getToolDefinitions: ReturnType<typeof vi.fn>;
} = mockMcpClient,
): CommandExecutorService {
function buildService(): CommandExecutorService {
return new CommandExecutorService(
mockRegistry as never,
mockAgentService as never,
mockSystemOverride as never,
mockSessionGC as never,
redis as never,
mockRedis as never,
mockBrain as never,
null,
mockChatGateway as never,
mcpClient as never,
null,
);
}
@@ -146,22 +131,6 @@ describe('CommandExecutorService — P8-012 commands', () => {
expect(ttl).toBe(300);
});
it('/provider login remains available without Redis on the local tier', async () => {
const localService = buildService(null);
const payload: SlashCommandPayload = {
command: 'provider',
args: 'login anthropic',
conversationId,
};
const result = await localService.execute(payload, userScope);
expect(result.success).toBe(true);
expect(result.message).not.toContain('token=');
expect(result.data).toEqual({ provider: 'anthropic' });
expect(mockRedis.set).not.toHaveBeenCalled();
});
// /provider with no args — returns usage
it('/provider with no args returns usage message', async () => {
const payload: SlashCommandPayload = { command: 'provider', conversationId };
@@ -273,124 +242,4 @@ describe('CommandExecutorService — P8-012 commands', () => {
expect(result.command).toBe('tools');
expect(result.message).toContain('tools');
});
// Top-level catch sanitization (P3-4 re-review finding #1): a rejected
// Redis `set` inside /provider login is the only reachable path into the
// top-level catch in `execute()`. The raw exception must be logged
// server-side but never handed back to the socket client.
it('sanitizes the top-level command catch, logging the raw exception but never returning it to the client', async () => {
const distinctiveRawFailure = 'ECONNREFUSED distinctive-raw-redis-failure-token-9f31';
const rawError = new Error(distinctiveRawFailure);
const failingRedis = {
set: vi.fn().mockRejectedValue(rawError),
get: vi.fn(),
del: vi.fn(),
};
const failingService = buildService(failingRedis as unknown as typeof mockRedis);
const loggerErrorSpy = vi.spyOn(Logger.prototype, 'error').mockImplementation(() => undefined);
const payload: SlashCommandPayload = {
command: 'provider',
args: 'login anthropic',
conversationId,
};
const result = await failingService.execute(payload, userScope);
expect(result.success).toBe(false);
expect(result.command).toBe('provider');
expect(result.message).toBe('Command failed due to an internal error.');
expect(result.message).not.toContain(distinctiveRawFailure);
expect(result.message).not.toContain('ECONNREFUSED');
// The real exception is still logged server-side, as the raw Error
// object itself (not stringified/interpolated into the log message).
expect(loggerErrorSpy).toHaveBeenCalled();
const loggedRawError = loggerErrorSpy.mock.calls.some((call) => call.includes(rawError));
expect(loggedRawError).toBe(true);
loggerErrorSpy.mockRestore();
});
// Inner catch sanitization (P3-5 operator ruling): every catch in
// command-executor.service.ts that returns a SlashCommandResultPayload
// must sanitize the client-facing message the same way the top-level
// catch does, while still logging the raw exception server-side.
it('/agent new sanitizes agent-creation failures, logging the raw exception but never returning it to the client', async () => {
const marker = new Error('distinctive-agent-create-failure-token-A17f');
mockBrain.agents.create.mockRejectedValueOnce(marker);
const loggerErrorSpy = vi.spyOn(Logger.prototype, 'error').mockImplementation(() => undefined);
const payload: SlashCommandPayload = {
command: 'agent',
args: 'new my-new-agent',
conversationId,
};
const result = await service.execute(payload, userScope);
expect(result.success).toBe(false);
expect(result.command).toBe('agent');
expect(result.message).toBe('Failed to create agent due to an internal error.');
expect(result.message).not.toContain('distinctive-agent-create-failure-token-A17f');
expect(loggerErrorSpy).toHaveBeenCalled();
const loggedRawError = loggerErrorSpy.mock.calls.some((call) => call.includes(marker));
expect(loggedRawError).toBe(true);
loggerErrorSpy.mockRestore();
});
it('/agent <name> switch sanitizes agent-lookup failures, logging the raw exception but never returning it to the client', async () => {
const marker = new Error('distinctive-agent-switch-failure-token-B29c');
mockBrain.agents.findByName.mockRejectedValueOnce(marker);
const loggerErrorSpy = vi.spyOn(Logger.prototype, 'error').mockImplementation(() => undefined);
const payload: SlashCommandPayload = {
command: 'agent',
args: 'some-other-agent',
conversationId,
};
const result = await service.execute(payload, userScope);
expect(result.success).toBe(false);
expect(result.command).toBe('agent');
expect(result.message).toBe('Failed to switch agent due to an internal error.');
expect(result.message).not.toContain('distinctive-agent-switch-failure-token-B29c');
expect(loggerErrorSpy).toHaveBeenCalled();
const loggedRawError = loggerErrorSpy.mock.calls.some((call) => call.includes(marker));
expect(loggedRawError).toBe(true);
loggerErrorSpy.mockRestore();
});
it('/mcp reconnect sanitizes MCP client failures, logging the raw exception but never returning it to the client', async () => {
const marker = new Error('distinctive-mcp-reconnect-failure-token-C33e');
const mockMcpClient = {
reconnectServer: vi.fn().mockRejectedValue(marker),
getServerStatuses: vi.fn(() => []),
getToolDefinitions: vi.fn(() => []),
};
const mcpService = buildService(mockRedis, mockMcpClient);
const loggerErrorSpy = vi.spyOn(Logger.prototype, 'error').mockImplementation(() => undefined);
const payload: SlashCommandPayload = {
command: 'mcp',
args: 'reconnect my-server',
conversationId,
};
const result = await mcpService.execute(payload, userScope);
expect(result.success).toBe(false);
expect(result.command).toBe('mcp');
expect(result.message).toBe(
'Failed to reconnect MCP server "my-server" due to an internal error.',
);
expect(result.message).not.toContain('distinctive-mcp-reconnect-failure-token-C33e');
expect(loggerErrorSpy).toHaveBeenCalled();
const loggedRawError = loggerErrorSpy.mock.calls.some((call) => call.includes(marker));
expect(loggedRawError).toBe(true);
loggerErrorSpy.mockRestore();
});
});
@@ -36,12 +36,6 @@ const authorization = {
),
};
const mockMcpClient = {
getServerStatuses: vi.fn(() => []),
getToolDefinitions: vi.fn(() => []),
reconnectServer: vi.fn().mockResolvedValue(undefined),
};
function buildExecutor(authorizationService: unknown = authorization): CommandExecutorService {
return new CommandExecutorService(
registry as never,
@@ -52,7 +46,7 @@ function buildExecutor(authorizationService: unknown = authorization): CommandEx
{ agents: {} } as never,
null,
null,
mockMcpClient as never,
null,
authorizationService as never,
);
}
@@ -23,10 +23,7 @@ export class CommandExecutorService {
@Inject(AgentService) private readonly agentService: AgentService,
@Inject(SystemOverrideService) private readonly systemOverride: SystemOverrideService,
@Inject(SessionGCService) private readonly sessionGC: SessionGCService,
// On Local tier COMMANDS_REDIS is null — provider login caching is skipped.
@Optional()
@Inject(COMMANDS_REDIS)
private readonly redis: QueueHandle['redis'] | null,
@Inject(COMMANDS_REDIS) private readonly redis: QueueHandle['redis'],
@Inject(BRAIN) private readonly brain: Brain,
@Optional()
@Inject(forwardRef(() => ReloadService))
@@ -34,7 +31,9 @@ export class CommandExecutorService {
@Optional()
@Inject(forwardRef(() => ChatGateway))
private readonly chatGateway: ChatGateway | null,
@Inject(McpClientService) private readonly mcpClient: McpClientService,
@Optional()
@Inject(McpClientService)
private readonly mcpClient: McpClientService | null,
@Optional()
@Inject(CommandAuthorizationService)
private readonly authorization: CommandAuthorizationService | null = null,
@@ -157,13 +156,8 @@ export class CommandExecutorService {
};
}
} catch (err) {
this.logger.error(`Command /${command} failed`, err);
return {
command,
conversationId,
success: false,
message: 'Command failed due to an internal error.',
};
this.logger.error(`Command /${command} failed: ${err}`);
return { command, conversationId, success: false, message: String(err) };
}
}
@@ -339,11 +333,11 @@ export class CommandExecutorService {
data: { agentId: newAgent.id, agentName: newAgent.name },
};
} catch (err) {
this.logger.error(`Failed to create agent "${namePart}" for user ${userId}`, err);
this.logger.error(`Failed to create agent: ${err}`);
return {
command: 'agent',
success: false,
message: 'Failed to create agent due to an internal error.',
message: `Failed to create agent: ${String(err)}`,
conversationId,
};
}
@@ -394,11 +388,11 @@ export class CommandExecutorService {
data: { agentId: agentConfig.id, agentName: agentConfig.name, model: agentConfig.model },
};
} catch (err) {
this.logger.error(`Failed to switch agent "${agentName}"`, err);
this.logger.error(`Failed to switch agent "${agentName}": ${err}`);
return {
command: 'agent',
success: false,
message: 'Failed to switch agent due to an internal error.',
message: `Failed to switch agent: ${String(err)}`,
conversationId,
};
}
@@ -449,16 +443,14 @@ export class CommandExecutorService {
byte.toString(16).padStart(2, '0'),
).join('');
const key = `mosaic:auth:poll:${tokenHash}`;
if (this.redis) {
// Persist only a short-lived token digest. The raw token is delivered only by
// the authenticated dashboard flow, never in chat output or command metadata.
await this.redis.set(
key,
JSON.stringify({ status: 'pending', provider: providerName, userId }),
'EX',
300,
);
}
// Persist only a short-lived token digest. The raw token is delivered only by
// the authenticated dashboard flow, never in chat output or command metadata.
await this.redis.set(
key,
JSON.stringify({ status: 'pending', provider: providerName, userId }),
'EX',
300,
);
return {
command: 'provider',
success: true,
@@ -546,6 +538,15 @@ export class CommandExecutorService {
args: string | null,
conversationId: string,
): Promise<SlashCommandResultPayload> {
if (!this.mcpClient) {
return {
command: 'mcp',
conversationId,
success: false,
message: 'MCP client service is not available.',
};
}
const action = args?.trim().split(/\s+/)[0] ?? 'status';
switch (action) {
@@ -602,12 +603,11 @@ export class CommandExecutorService {
message: `MCP server "${serverName}" reconnected successfully.`,
};
} catch (err) {
this.logger.error(`Failed to reconnect MCP server "${serverName}"`, err);
return {
command: 'mcp',
conversationId,
success: false,
message: `Failed to reconnect MCP server "${serverName}" due to an internal error.`,
message: `Failed to reconnect MCP server "${serverName}": ${err instanceof Error ? err.message : String(err)}`,
};
}
}
@@ -11,8 +11,6 @@
* - Unknown command returns descriptive error
*/
import { describe, it, expect, vi, beforeEach } from 'vitest';
import { CommandsModule } from './commands.module.js';
import { McpClientModule } from '../mcp-client/mcp-client.module.js';
import { CommandRegistryService } from './command-registry.service.js';
import { CommandExecutorService } from './command-executor.service.js';
import type { SlashCommandPayload } from '@mosaicstack/types';
@@ -49,12 +47,6 @@ const mockBrain = {
},
};
const mockMcpClient = {
getServerStatuses: vi.fn(() => []),
getToolDefinitions: vi.fn(() => []),
reconnectServer: vi.fn().mockResolvedValue(undefined),
};
// ─── Helpers ─────────────────────────────────────────────────────────────────
function buildRegistry(): CommandRegistryService {
@@ -73,7 +65,7 @@ function buildExecutor(registry: CommandRegistryService): CommandExecutorService
mockBrain as never,
null, // reloadService (optional)
null, // chatGateway (optional)
mockMcpClient as never,
null, // mcpClient (optional)
);
}
@@ -161,15 +153,6 @@ describe('CommandRegistryService — integration', () => {
}
});
// ─── Module Wiring Tests ──────────────────────────────────────────────────────
describe('CommandsModule — Nest wiring', () => {
it('CommandsModule imports McpClientModule in its Nest metadata', () => {
const imports = Reflect.getMetadata('imports', CommandsModule) ?? [];
expect(imports).toContain(McpClientModule);
});
});
// ─── Executor Tests ───────────────────────────────────────────────────────────
describe('CommandExecutorService — integration', () => {
@@ -276,14 +259,4 @@ describe('CommandExecutorService — integration', () => {
expect(result.command).toBe(cmd);
});
}
// /mcp status reaches the required McpClientService and never reports it unavailable
it('/mcp status calls the wired McpClientService and reports the no-servers message', async () => {
const payload: SlashCommandPayload = { command: 'mcp', conversationId };
const result = await executor.execute(payload, userScope);
expect(mockMcpClient.getServerStatuses).toHaveBeenCalledOnce();
expect(result.success).toBe(true);
expect(result.message).toContain('No MCP servers configured.');
expect(result.message).not.toBe('MCP client service is not available.');
});
});
+6 -22
View File
@@ -1,10 +1,7 @@
import { forwardRef, Inject, Module, Optional, type OnApplicationShutdown } from '@nestjs/common';
import { forwardRef, Inject, Module, type OnApplicationShutdown } from '@nestjs/common';
import { createQueue, type QueueHandle } from '@mosaicstack/queue';
import type { MosaicConfig } from '@mosaicstack/config';
import { MOSAIC_CONFIG } from '../config/config.module.js';
import { ChatModule } from '../chat/chat.module.js';
import { GCModule } from '../gc/gc.module.js';
import { McpClientModule } from '../mcp-client/mcp-client.module.js';
import { ReloadModule } from '../reload/reload.module.js';
import { CommandAuthorizationService } from './command-authorization.service.js';
import { CommandExecutorService } from './command-executor.service.js';
@@ -15,26 +12,17 @@ import { COMMANDS_REDIS } from './commands.tokens.js';
const COMMANDS_QUEUE_HANDLE = 'COMMANDS_QUEUE_HANDLE';
@Module({
imports: [
GCModule,
McpClientModule,
forwardRef(() => ReloadModule),
forwardRef(() => ChatModule),
],
imports: [GCModule, forwardRef(() => ReloadModule), forwardRef(() => ChatModule)],
providers: [
{
provide: COMMANDS_QUEUE_HANDLE,
useFactory: (config: MosaicConfig | null): QueueHandle | null => {
// On Local tier there is no Redis — skip the ioredis connection.
// CommandExecutorService falls back to no-cache for /provider login on local.
if (config?.queue?.type === 'local') return null;
useFactory: (): QueueHandle => {
return createQueue();
},
inject: [MOSAIC_CONFIG],
},
{
provide: COMMANDS_REDIS,
useFactory: (handle: QueueHandle | null) => handle?.redis ?? null,
useFactory: (handle: QueueHandle) => handle.redis,
inject: [COMMANDS_QUEUE_HANDLE],
},
CommandRegistryService,
@@ -50,13 +38,9 @@ const COMMANDS_QUEUE_HANDLE = 'COMMANDS_QUEUE_HANDLE';
],
})
export class CommandsModule implements OnApplicationShutdown {
constructor(
@Optional()
@Inject(COMMANDS_QUEUE_HANDLE)
private readonly handle: QueueHandle | null,
) {}
constructor(@Inject(COMMANDS_QUEUE_HANDLE) private readonly handle: QueueHandle) {}
async onApplicationShutdown(): Promise<void> {
await this.handle?.close().catch(() => {});
await this.handle.close().catch(() => {});
}
}
+1 -2
View File
@@ -1,6 +1,5 @@
import { Global, Module } from '@nestjs/common';
import { loadConfig, type MosaicConfig } from '@mosaicstack/config';
import { resolveGatewayConfigPath } from '../env.js';
export const MOSAIC_CONFIG = 'MOSAIC_CONFIG';
@@ -9,7 +8,7 @@ export const MOSAIC_CONFIG = 'MOSAIC_CONFIG';
providers: [
{
provide: MOSAIC_CONFIG,
useFactory: (): MosaicConfig => loadConfig(resolveGatewayConfigPath()),
useFactory: (): MosaicConfig => loadConfig(),
},
],
exports: [MOSAIC_CONFIG],
@@ -1,116 +0,0 @@
import { afterEach, beforeEach, describe, expect, it, vi } from 'vitest';
import type { ChatRuntimeMode } from '../chat/chat-runtime.js';
import { ConversationsController } from './conversations.controller.js';
/**
* Task 5 harness fence for the conversations REST write path.
*
* Under `pi-rpc` the durable/harness conversation path (Task 15) owns message persistence, so the
* legacy direct-repository write via `POST /api/conversations/:id/messages` must be refused with a
* fixed typed `runtime_unsupported` BEFORE the repository is touched never a duplicate write.
* Under `legacy` the endpoint keeps its current behaviour and writes through `brain.conversations`.
*
* Item 3 (single runtime-mode source of truth): the mode is the router's ONE init-time resolution,
* injected into the controller and read as `router.runtimeMode`. It is NOT re-derived from
* `process.env` at request time. The two "env is flipped after construction" tests below are the
* load-bearing guard: they pass only because the controller reads the fixed injected mode, and turn
* RED the instant the fence is reverted to `resolveChatRuntimeMode(process.env)`.
*/
const CONVERSATION_ID = '22222222-2222-4222-8222-222222222222';
const USER = { id: 'user-1' };
function sendMessageDto() {
return {
role: 'user' as const,
content: 'hello from the legacy REST write path',
metadata: undefined,
};
}
function brainWithMessageSpy() {
const addMessage = vi.fn().mockResolvedValue({
id: 'message-1',
conversationId: CONVERSATION_ID,
role: 'user',
content: 'hello from the legacy REST write path',
});
return {
brain: { conversations: { addMessage } } as never,
addMessage,
};
}
/** The controller only needs the router's immutable `runtimeMode`; supply exactly that. */
function routerFixedTo(mode: ChatRuntimeMode) {
return { runtimeMode: mode };
}
let priorMode: string | undefined;
describe('conversations REST write path — Task 5 harness fence', () => {
beforeEach(() => {
priorMode = process.env['CHAT_HARNESS_RUNTIME'];
});
afterEach(() => {
if (priorMode === undefined) delete process.env['CHAT_HARNESS_RUNTIME'];
else process.env['CHAT_HARNESS_RUNTIME'] = priorMode;
});
it('refuses the legacy repository write when the router resolved pi-rpc, before any write', async () => {
const { brain, addMessage } = brainWithMessageSpy();
const controller = new ConversationsController(brain, routerFixedTo('pi-rpc'));
await expect(
controller.addMessage(CONVERSATION_ID, sendMessageDto(), USER),
).rejects.toMatchObject({ code: 'runtime_unsupported' });
// Load-bearing: the durable/harness path owns pi-rpc persistence — the legacy repo must not be
// written, so no duplicate message can be produced.
expect(addMessage).not.toHaveBeenCalled();
});
it('writes through the repository when the router resolved legacy (GREEN control)', async () => {
const { brain, addMessage } = brainWithMessageSpy();
const controller = new ConversationsController(brain, routerFixedTo('legacy'));
const result = await controller.addMessage(CONVERSATION_ID, sendMessageDto(), USER);
expect(addMessage).toHaveBeenCalledWith(
{
conversationId: CONVERSATION_ID,
role: 'user',
content: 'hello from the legacy REST write path',
metadata: undefined,
},
USER.id,
);
expect(result).toMatchObject({ id: 'message-1', conversationId: CONVERSATION_ID });
});
it('keeps refusing under a pi-rpc router even when CHAT_HARNESS_RUNTIME is flipped to legacy after startup', async () => {
// The runtime mode is fixed at module init. A later env mutation must not reopen the fence:
// a request-time `resolveChatRuntimeMode(process.env)` read would see `legacy` and wrongly write.
process.env['CHAT_HARNESS_RUNTIME'] = 'legacy';
const { brain, addMessage } = brainWithMessageSpy();
const controller = new ConversationsController(brain, routerFixedTo('pi-rpc'));
await expect(
controller.addMessage(CONVERSATION_ID, sendMessageDto(), USER),
).rejects.toMatchObject({ code: 'runtime_unsupported' });
expect(addMessage).not.toHaveBeenCalled();
});
it('keeps writing under a legacy router even when CHAT_HARNESS_RUNTIME is flipped to pi-rpc after startup', async () => {
// Symmetric guard: a legacy-resolved router must keep writing regardless of the live env, so a
// request-time env read of `pi-rpc` cannot spuriously refuse a legitimate legacy write.
process.env['CHAT_HARNESS_RUNTIME'] = 'pi-rpc';
const { brain, addMessage } = brainWithMessageSpy();
const controller = new ConversationsController(brain, routerFixedTo('legacy'));
await controller.addMessage(CONVERSATION_ID, sendMessageDto(), USER);
expect(addMessage).toHaveBeenCalledTimes(1);
});
});
@@ -6,7 +6,6 @@ import {
ForbiddenException,
Get,
HttpCode,
HttpException,
HttpStatus,
Inject,
NotFoundException,
@@ -20,7 +19,6 @@ import type { Brain } from '@mosaicstack/brain';
import { BRAIN } from '../brain/brain.tokens.js';
import { AuthGuard } from '../auth/auth.guard.js';
import { CurrentUser } from '../auth/current-user.decorator.js';
import { ChatRuntimeRouter } from '../chat/chat-runtime-router.js';
import {
CreateConversationDto,
UpdateConversationDto,
@@ -28,41 +26,10 @@ import {
SearchMessagesDto,
} from './conversations.dto.js';
/**
* Under `pi-rpc` the durable/harness conversation path (Task 15) owns message persistence, so the
* legacy direct-repository write must fail closed with a fixed typed `runtime_unsupported` before
* the repository is touched never a duplicate write. The `code` field is exposed at the top level
* so callers can discriminate the refusal while the 503 status carries the browser-safe surface.
*/
class HarnessRuntimeWriteUnsupportedException extends HttpException {
readonly code = 'runtime_unsupported' as const;
constructor() {
super(
{
code: 'runtime_unsupported',
message:
'Conversation message writes are handled by the harness runtime on this deployment.',
},
HttpStatus.SERVICE_UNAVAILABLE,
);
}
}
@Controller('api/conversations')
@UseGuards(AuthGuard)
export class ConversationsController {
/**
* `router` supplies the ONE immutable runtime mode resolved at module init (Task 5, item 3).
* The pre-write fence reads `router.runtimeMode`, never `resolveChatRuntimeMode(process.env)` at
* request time a single source of truth, so the controller cannot disagree with the router
* about the live runtime if the environment is mutated after startup. Narrowed to `runtimeMode`
* so this class depends on nothing else the router exposes.
*/
constructor(
@Inject(BRAIN) private readonly brain: Brain,
@Inject(ChatRuntimeRouter) private readonly router: Pick<ChatRuntimeRouter, 'runtimeMode'>,
) {}
constructor(@Inject(BRAIN) private readonly brain: Brain) {}
@Get()
async list(@CurrentUser() user: { id: string }) {
@@ -127,13 +94,6 @@ export class ConversationsController {
@Body() dto: SendMessageDto,
@CurrentUser() user: { id: string },
) {
// Fail the legacy repository write closed under pi-rpc BEFORE touching the repository — the
// harness path owns persistence there, so a direct write would duplicate the message. The mode
// comes from the router's init-time resolution, not a request-time env read.
if (this.router.runtimeMode === 'pi-rpc') {
throw new HarnessRuntimeWriteUnsupportedException();
}
const message = await this.brain.conversations.addMessage(
{
conversationId: id,
@@ -1,14 +1,7 @@
import { Module } from '@nestjs/common';
import { ChatModule } from '../chat/chat.module.js';
import { ConversationsController } from './conversations.controller.js';
/**
* Imports {@link ChatModule} solely to inject its exported {@link ChatRuntimeRouter} into
* {@link ConversationsController}, so the REST write fence reads the same init-time runtime mode the
* router resolved one source of truth, no duplicate provider, no global token, no AppModule edit.
*/
@Module({
imports: [ChatModule],
controllers: [ConversationsController],
})
export class ConversationsModule {}
@@ -1,19 +0,0 @@
import 'reflect-metadata';
import { Test } from '@nestjs/testing';
import { describe, expect, it } from 'vitest';
import { CoordModule } from './coord.module.js';
import { InteractionCoordinationService } from './interaction-coordination.service.js';
import { AuthGuard } from '../auth/auth.guard.js';
describe('CoordModule DI (compiled-metadata boot)', () => {
it('resolves InteractionCoordinationService through Nest DI', async () => {
const moduleRef = await Test.createTestingModule({ imports: [CoordModule] })
.overrideGuard(AuthGuard)
.useValue({ canActivate: (): boolean => true })
.compile();
expect(moduleRef.get(InteractionCoordinationService)).toBeInstanceOf(
InteractionCoordinationService,
);
await moduleRef.close();
});
});
@@ -1,4 +1,4 @@
import { Inject, Injectable, Optional } from '@nestjs/common';
import { Inject, Injectable } from '@nestjs/common';
import {
InteractionCoordinationClient,
type CoordinationObservation,
@@ -13,7 +13,6 @@ import type { CreateHandoffDto } from './interaction-coordination.dto.js';
export const COORDINATION_PORT = Symbol('COORDINATION_PORT');
export const COORDINATION_CONFIG = Symbol('COORDINATION_CONFIG');
export const HANDOFF_ID_FACTORY = Symbol('HANDOFF_ID_FACTORY');
const HANDOFF_TRACKING_TTL_MS = 60 * 60 * 1_000;
const MAX_TRACKED_HANDOFFS = 1_000;
@@ -61,8 +60,6 @@ export class InteractionCoordinationService {
constructor(
@Inject(COORDINATION_PORT) private readonly port: InteractionCoordinationPort,
@Inject(COORDINATION_CONFIG) private readonly config: InteractionCoordinationConfig,
@Optional()
@Inject(HANDOFF_ID_FACTORY)
private readonly handoffIdFactory: () => string = (): string => crypto.randomUUID(),
) {}
-133
View File
@@ -1,133 +0,0 @@
import { config } from 'dotenv';
import { existsSync } from 'node:fs';
import { homedir } from 'node:os';
import { dirname, join, resolve } from 'node:path';
import { fileURLToPath } from 'node:url';
import { detectFromEnv, loadConfig } from '@mosaicstack/config';
type TierSource =
| 'process environment'
| 'daemon .env'
| 'monorepo-root .env'
| 'gateway-local .env'
| 'default';
type BootSource = TierSource | 'mosaic.config.json';
export interface GatewayDotenvPaths {
daemonEnv: string;
monorepoRootEnv: string;
gatewayLocalEnv: string;
}
const here = dirname(fileURLToPath(import.meta.url));
export function resolveGatewayDotenvPaths(
anchor: string = here,
homeBase: string = homedir(),
): GatewayDotenvPaths {
return {
daemonEnv: join(homeBase, '.config', 'mosaic', 'gateway', '.env'),
monorepoRootEnv: resolve(anchor, '../../..', '.env'),
gatewayLocalEnv: resolve(anchor, '..', '.env'),
};
}
export function resolveGatewayConfigPath(anchor: string = here): string {
// GATEWAY_HOME is daemon-created 0700; its env override adds no authority because env can set MOSAIC_STORAGE_TIER.
const gatewayHome = resolve(
process.env['MOSAIC_GATEWAY_HOME'] ?? join(homedir(), '.config', 'mosaic', 'gateway'),
);
const daemonConfig = join(gatewayHome, 'mosaic.config.json');
const gatewayLocalConfig = resolve(anchor, '..', 'mosaic.config.json');
const monorepoRootConfig = resolve(anchor, '../../..', 'mosaic.config.json');
if (existsSync(daemonConfig)) {
return daemonConfig;
}
if (existsSync(gatewayLocalConfig)) {
return gatewayLocalConfig;
}
if (existsSync(monorepoRootConfig)) {
return monorepoRootConfig;
}
return monorepoRootConfig;
}
export function loadGatewayEnv(anchor: string = here, homeBase: string = homedir()): void {
const { daemonEnv, monorepoRootEnv, gatewayLocalEnv } = resolveGatewayDotenvPaths(
anchor,
homeBase,
);
const inheritedTier = process.env['MOSAIC_STORAGE_TIER'];
let tierSource: TierSource = inheritedTier === undefined ? 'default' : 'process environment';
const inheritedDatabaseUrl = process.env['DATABASE_URL'];
let databaseUrlSource: TierSource =
inheritedDatabaseUrl === undefined ? 'default' : 'process environment';
function loadAnchoredDotenv(
path: string,
sourceLabel: Exclude<TierSource, 'process environment' | 'default'>,
): void {
if (!existsSync(path)) {
return;
}
const beforeTier = process.env['MOSAIC_STORAGE_TIER'];
const beforeDatabaseUrl = process.env['DATABASE_URL'];
config({ path, quiet: true });
if (
beforeTier === undefined &&
process.env['MOSAIC_STORAGE_TIER'] !== undefined &&
tierSource === 'default'
) {
tierSource = sourceLabel;
}
if (
beforeDatabaseUrl === undefined &&
process.env['DATABASE_URL'] !== undefined &&
databaseUrlSource === 'default'
) {
databaseUrlSource = sourceLabel;
}
}
// Load .env from daemon config dir (global install / daemon mode) first.
// It takes precedence over file-based local-dev configuration.
loadAnchoredDotenv(daemonEnv, 'daemon .env');
// Load .env from the anchored monorepo root, then fill any remaining values
// from apps/gateway/.env when present.
loadAnchoredDotenv(monorepoRootEnv, 'monorepo-root .env');
loadAnchoredDotenv(gatewayLocalEnv, 'gateway-local .env');
const envOnlyTier = detectFromEnv().tier;
const configPath = resolveGatewayConfigPath(anchor);
const anchoredConfigExists = existsSync(configPath);
const resolvedTier = loadConfig(configPath).tier;
const configuredTier = process.env['MOSAIC_STORAGE_TIER'];
const databaseUrlDeterminesTier = envOnlyTier === 'standalone' && configuredTier !== 'standalone';
const recognizedTierDeterminesTier =
(configuredTier === 'federated' ||
configuredTier === 'standalone' ||
configuredTier === 'local') &&
configuredTier === envOnlyTier;
let source: BootSource;
if (anchoredConfigExists) {
source = 'mosaic.config.json';
} else if (databaseUrlDeterminesTier && databaseUrlSource !== 'default') {
source = databaseUrlSource;
} else if (recognizedTierDeterminesTier && tierSource !== 'default') {
source = tierSource;
} else {
source = 'default';
}
console.info(`[gateway env] storage tier=${resolvedTier} source=${source}`);
}
loadGatewayEnv();
@@ -5,8 +5,6 @@ import { EnrollmentController } from './enrollment.controller.js';
import { EnrollmentService } from './enrollment.service.js';
import { FederationController } from './federation.controller.js';
import { CapabilitiesController } from './server/verbs/capabilities.controller.js';
import { GetController } from './server/verbs/get.controller.js';
import { FederationGetQueryService } from './server/verbs/get-query.service.js';
import { GrantsService } from './grants.service.js';
import { FederationClientService, QuerySourceService } from './client/index.js';
import { FederationAuthGuard, FederationScopeService } from './server/index.js';
@@ -14,13 +12,7 @@ import { ListController } from './server/verbs/list.controller.js';
import { FederationListQueryService } from './server/verbs/list-query.service.js';
@Module({
controllers: [
EnrollmentController,
FederationController,
CapabilitiesController,
ListController,
GetController,
],
controllers: [EnrollmentController, FederationController, CapabilitiesController, ListController],
providers: [
AdminGuard,
CaService,
@@ -31,7 +23,6 @@ import { FederationListQueryService } from './server/verbs/list-query.service.js
FederationAuthGuard,
FederationScopeService,
FederationListQueryService,
FederationGetQueryService,
],
exports: [
CaService,
@@ -42,7 +33,6 @@ import { FederationListQueryService } from './server/verbs/list-query.service.js
FederationAuthGuard,
FederationScopeService,
FederationListQueryService,
FederationGetQueryService,
],
})
export class FederationModule {}
@@ -1,348 +0,0 @@
import { afterAll, beforeAll, describe, expect, it, vi } from 'vitest';
import {
createPgliteDb,
missionTasks,
missions,
projects,
runPgliteMigrations,
teams,
users,
type Db,
type DbHandle,
} from '@mosaicstack/db';
import type { FederationScopeQueryFilter } from '../../scope.service.js';
import { FederationGetQueryService } from '../get-query.service.js';
const CREDENTIAL_FILTER: FederationScopeQueryFilter = {
resource: 'credentials',
subjectUserId: 'user-1',
includePersonal: true,
teamIds: [],
limit: 1,
maxRowsPerQuery: 25,
};
const SUBJECT_USER_ID = 'fed-m3-06-subject';
const OTHER_USER_ID = 'fed-m3-06-other';
const TEAM_ID = '06000000-0000-4000-8000-000000000001';
const UNAUTHORIZED_TEAM_ID = '06000000-0000-4000-8000-000000000002';
const PERSONAL_PROJECT_ID = '06000000-0000-4000-8000-000000000101';
const TEAM_PROJECT_ID = '06000000-0000-4000-8000-000000000102';
const UNAUTHORIZED_PROJECT_ID = '06000000-0000-4000-8000-000000000103';
const PERSONAL_MISSION_ID = '06000000-0000-4000-8000-000000000201';
const TEAM_MISSION_ID = '06000000-0000-4000-8000-000000000202';
const UNAUTHORIZED_MISSION_ID = '06000000-0000-4000-8000-000000000203';
const SUBJECT_TEAM_NOTE_ID = '06000000-0000-4000-8000-000000000301';
const OTHER_TEAM_NOTE_ID = '06000000-0000-4000-8000-000000000302';
const SUBJECT_PERSONAL_NOTE_ID = '06000000-0000-4000-8000-000000000303';
const SUBJECT_UNAUTHORIZED_NOTE_ID = '06000000-0000-4000-8000-000000000304';
let dbHandle: DbHandle | undefined;
function makeService() {
return new FederationGetQueryService({} as Db);
}
function makeDbService() {
if (!dbHandle) {
throw new Error('test DB not initialized');
}
return new FederationGetQueryService(dbHandle.db);
}
async function seedNotesFixture() {
if (!dbHandle) {
throw new Error('test DB not initialized');
}
await dbHandle.db.insert(users).values([
{
id: SUBJECT_USER_ID,
name: 'Federation Subject',
email: `${SUBJECT_USER_ID}@example.test`,
emailVerified: false,
},
{
id: OTHER_USER_ID,
name: 'Federation Other',
email: `${OTHER_USER_ID}@example.test`,
emailVerified: false,
},
]);
await dbHandle.db.insert(teams).values([
{
id: TEAM_ID,
name: 'FED-M3-06 Team',
slug: 'fed-m3-06-team',
ownerId: SUBJECT_USER_ID,
managerId: SUBJECT_USER_ID,
},
{
id: UNAUTHORIZED_TEAM_ID,
name: 'FED-M3-06 Unauthorized Team',
slug: 'fed-m3-06-unauthorized-team',
ownerId: OTHER_USER_ID,
managerId: OTHER_USER_ID,
},
]);
await dbHandle.db.insert(projects).values([
{
id: PERSONAL_PROJECT_ID,
name: 'FED-M3-06 Personal Project',
ownerId: SUBJECT_USER_ID,
ownerType: 'user',
},
{
id: TEAM_PROJECT_ID,
name: 'FED-M3-06 Team Project',
teamId: TEAM_ID,
ownerType: 'team',
},
{
id: UNAUTHORIZED_PROJECT_ID,
name: 'FED-M3-06 Unauthorized Project',
teamId: UNAUTHORIZED_TEAM_ID,
ownerType: 'team',
},
]);
await dbHandle.db.insert(missions).values([
{
id: PERSONAL_MISSION_ID,
name: 'FED-M3-06 Personal Mission',
projectId: PERSONAL_PROJECT_ID,
userId: SUBJECT_USER_ID,
},
{
id: TEAM_MISSION_ID,
name: 'FED-M3-06 Team Mission',
projectId: TEAM_PROJECT_ID,
userId: SUBJECT_USER_ID,
},
{
id: UNAUTHORIZED_MISSION_ID,
name: 'FED-M3-06 Unauthorized Mission',
projectId: UNAUTHORIZED_PROJECT_ID,
userId: SUBJECT_USER_ID,
},
]);
await dbHandle.db.insert(missionTasks).values([
{
id: SUBJECT_TEAM_NOTE_ID,
missionId: TEAM_MISSION_ID,
userId: SUBJECT_USER_ID,
notes: 'subject note on team mission',
createdAt: new Date('2026-06-24T03:00:00.000Z'),
updatedAt: new Date('2026-06-24T03:00:00.000Z'),
},
{
id: OTHER_TEAM_NOTE_ID,
missionId: TEAM_MISSION_ID,
userId: OTHER_USER_ID,
notes: 'other user note on team mission',
createdAt: new Date('2026-06-24T02:00:00.000Z'),
updatedAt: new Date('2026-06-24T02:00:00.000Z'),
},
{
id: SUBJECT_PERSONAL_NOTE_ID,
missionId: PERSONAL_MISSION_ID,
userId: SUBJECT_USER_ID,
notes: 'subject note on personal mission',
createdAt: new Date('2026-06-24T01:00:00.000Z'),
updatedAt: new Date('2026-06-24T01:00:00.000Z'),
},
{
id: SUBJECT_UNAUTHORIZED_NOTE_ID,
missionId: UNAUTHORIZED_MISSION_ID,
userId: SUBJECT_USER_ID,
notes: 'subject note outside grant-visible missions',
createdAt: new Date('2026-06-24T04:00:00.000Z'),
updatedAt: new Date('2026-06-24T04:00:00.000Z'),
},
]);
}
describe('FederationGetQueryService', () => {
beforeAll(async () => {
dbHandle = createPgliteDb(`memory://fed-m3-06-get-${Date.now()}`);
await runPgliteMigrations(dbHandle);
await seedNotesFixture();
});
afterAll(async () => {
await dbHandle?.close();
dbHandle = undefined;
});
it('denies sensitive resources in native RBAC for M3 get reads', async () => {
const service = makeService();
await expect(
service.evaluateReadAccess({
grantId: 'grant-1',
peerId: 'peer-1',
subjectUserId: 'user-1',
resource: 'credentials',
}),
).resolves.toMatchObject({
allowed: false,
reason: 'credentials federation get access is not implemented in M3',
});
});
it('allows personal memory reads without requiring team lookup', async () => {
const service = makeService();
await expect(
service.evaluateReadAccess({
grantId: 'grant-1',
peerId: 'peer-1',
subjectUserId: 'user-1',
resource: 'memory',
}),
).resolves.toEqual({
allowed: true,
access: { includePersonal: true, teamIds: [] },
});
});
it('uses subject team membership as the native RBAC upper bound for task and note reads', async () => {
const service = makeService();
const listSubjectTeamIds = vi.fn().mockResolvedValue(['team-1', 'team-2']);
(
service as unknown as {
listSubjectTeamIds: (subjectUserId: string) => Promise<string[]>;
}
).listSubjectTeamIds = listSubjectTeamIds;
await expect(
service.evaluateReadAccess({
grantId: 'grant-1',
peerId: 'peer-1',
subjectUserId: 'user-1',
resource: 'tasks',
}),
).resolves.toEqual({
allowed: true,
access: { includePersonal: true, teamIds: ['team-1', 'team-2'] },
});
expect(listSubjectTeamIds).toHaveBeenCalledWith('user-1');
});
it('does not query storage for sensitive get resources even if scope allowed them', async () => {
const service = makeService();
await expect(service.get({ filter: CREDENTIAL_FILTER, id: 'cred-1' })).resolves.toEqual({
status: 'denied',
reason: 'credentials federation get is not implemented',
});
});
it('fails closed for unsupported resources instead of returning undefined', async () => {
const service = makeService();
await expect(
service.get({
filter: {
...CREDENTIAL_FILTER,
resource: 'unknown-resource' as FederationScopeQueryFilter['resource'],
},
id: 'row-1',
}),
).resolves.toEqual({
status: 'denied',
reason: 'Unsupported federation get resource: unknown-resource',
});
});
it('does not leak another user mission task note through team-scoped get reads', async () => {
const service = makeDbService();
await expect(
service.get({
filter: {
resource: 'notes',
subjectUserId: SUBJECT_USER_ID,
includePersonal: false,
teamIds: [TEAM_ID],
limit: 1,
maxRowsPerQuery: 10,
},
id: OTHER_TEAM_NOTE_ID,
}),
).resolves.toEqual({
status: 'denied',
reason: 'Note is outside the federated scope',
});
});
it('does not return subject notes from missions outside the grant-visible project set', async () => {
const service = makeDbService();
await expect(
service.get({
filter: {
resource: 'notes',
subjectUserId: SUBJECT_USER_ID,
includePersonal: true,
teamIds: [TEAM_ID],
limit: 1,
maxRowsPerQuery: 10,
},
id: SUBJECT_UNAUTHORIZED_NOTE_ID,
}),
).resolves.toEqual({
status: 'denied',
reason: 'Note is outside the federated scope',
});
});
it('returns a subject note only when subject ownership and authorized mission intersect', async () => {
const service = makeDbService();
await expect(
service.get({
filter: {
resource: 'notes',
subjectUserId: SUBJECT_USER_ID,
includePersonal: false,
teamIds: [TEAM_ID],
limit: 1,
maxRowsPerQuery: 10,
},
id: SUBJECT_TEAM_NOTE_ID,
}),
).resolves.toMatchObject({
status: 'found',
item: {
id: SUBJECT_TEAM_NOTE_ID,
missionId: TEAM_MISSION_ID,
content: 'subject note on team mission',
},
});
});
it('does not return subject personal notes when includePersonal is false', async () => {
const service = makeDbService();
await expect(
service.get({
filter: {
resource: 'notes',
subjectUserId: SUBJECT_USER_ID,
includePersonal: false,
teamIds: [TEAM_ID],
limit: 1,
maxRowsPerQuery: 10,
},
id: SUBJECT_PERSONAL_NOTE_ID,
}),
).resolves.toEqual({
status: 'denied',
reason: 'Note is outside the federated scope',
});
});
});
@@ -1,207 +0,0 @@
import 'reflect-metadata';
import { RequestMethod } from '@nestjs/common';
import type { FastifyRequest } from 'fastify';
import { beforeEach, describe, expect, it, vi } from 'vitest';
import { FederationAuthGuard } from '../../federation-auth.guard.js';
import type {
FederationScopeEvaluationResult,
FederationScopeQueryFilter,
} from '../../scope.service.js';
import { GetController } from '../get.controller.js';
import type { FederationGetQueryResult } from '../get-query.service.js';
const FEDERATION_CONTEXT = {
grantId: 'grant-1',
peerId: 'peer-1',
subjectUserId: 'user-1',
scope: { resources: ['tasks'], max_rows_per_query: 25 },
};
const TASK_FILTER: FederationScopeQueryFilter = {
resource: 'tasks',
subjectUserId: 'user-1',
includePersonal: true,
teamIds: ['team-1'],
limit: 1,
maxRowsPerQuery: 25,
};
function makeRequest(): FastifyRequest {
return { federationContext: FEDERATION_CONTEXT } as unknown as FastifyRequest;
}
function allowedScope(
filter: FederationScopeQueryFilter = TASK_FILTER,
): FederationScopeEvaluationResult {
return { allowed: true, filter };
}
function makeController(opts?: {
scopeResult?: FederationScopeEvaluationResult;
queryResult?: FederationGetQueryResult;
}) {
const scope = {
evaluateAccess: vi.fn().mockResolvedValue(opts?.scopeResult ?? allowedScope()),
};
const query = {
evaluateReadAccess: vi.fn(),
get: vi.fn().mockResolvedValue(
opts?.queryResult ?? {
status: 'found',
item: {
id: 'task-1',
title: 'Federated task',
createdAt: new Date('2026-06-24T00:00:00.000Z'),
},
},
),
};
return {
controller: new GetController(scope as never, query as never),
scope,
query,
};
}
describe('GetController', () => {
beforeEach(() => {
vi.clearAllMocks();
});
it('declares POST /api/federation/v1/get/:resource/:id protected only by FederationAuthGuard', () => {
expect(Reflect.getMetadata('path', GetController)).toBe('api/federation/v1/get');
expect(Reflect.getMetadata('path', GetController.prototype.get)).toBe(':resource/:id');
expect(Reflect.getMetadata('method', GetController.prototype.get)).toBe(RequestMethod.POST);
expect(Reflect.getMetadata('__guards__', GetController)).toEqual([FederationAuthGuard]);
});
it('runs AuthGuard context through ScopeService and returns one local-source tagged row', async () => {
const { controller, scope, query } = makeController();
const response = await controller.get('tasks', 'task-1', makeRequest());
expect(scope.evaluateAccess).toHaveBeenCalledWith({
context: FEDERATION_CONTEXT,
resource: 'tasks',
requestedLimit: 1,
nativeRbac: query,
});
expect(query.get).toHaveBeenCalledWith({ filter: TASK_FILTER, id: 'task-1' });
expect(response).toEqual({
item: {
id: 'task-1',
title: 'Federated task',
createdAt: new Date('2026-06-24T00:00:00.000Z'),
_source: 'local',
},
});
});
it('returns a federation error envelope when auth guard context is missing', async () => {
const { controller, scope, query } = makeController();
await expect(
controller.get('tasks', 'task-1', {} as unknown as FastifyRequest),
).rejects.toMatchObject({
response: {
error: {
code: 'unauthorized',
message: 'Federation context missing',
},
},
status: 401,
});
expect(scope.evaluateAccess).not.toHaveBeenCalled();
expect(query.get).not.toHaveBeenCalled();
});
it('returns a federation error envelope when scope evaluation denies access', async () => {
const { controller, query } = makeController({
scopeResult: {
allowed: false,
deny: {
code: 'resource_excluded',
stage: 'resource_exclusion',
statusCode: 403,
message: 'Requested federation resource is explicitly excluded by grant scope',
grantId: 'grant-1',
peerId: 'peer-1',
subjectUserId: 'user-1',
resource: 'credentials',
},
},
});
await expect(controller.get('credentials', 'cred-1', makeRequest())).rejects.toMatchObject({
response: {
error: {
code: 'scope_violation',
message: 'Requested federation resource is explicitly excluded by grant scope',
},
},
status: 403,
});
expect(query.get).not.toHaveBeenCalled();
});
it('returns 404 when the scoped query layer cannot find the resource id', async () => {
const { controller } = makeController({ queryResult: { status: 'not_found' } });
await expect(controller.get('tasks', 'missing-task', makeRequest())).rejects.toMatchObject({
response: { error: { code: 'not_found' } },
status: 404,
});
});
it('returns 403 when the resource exists outside the RBAC/scope intersection', async () => {
const { controller } = makeController({
queryResult: { status: 'denied', reason: 'Task is outside the federated scope' },
});
await expect(controller.get('tasks', 'task-2', makeRequest())).rejects.toMatchObject({
response: {
error: {
code: 'scope_violation',
message: 'Task is outside the federated scope',
},
},
status: 403,
});
});
it('fails closed when the query layer denies an unsupported resource', async () => {
const unsupportedFilter: FederationScopeQueryFilter = {
...TASK_FILTER,
resource: 'unknown-resource' as FederationScopeQueryFilter['resource'],
};
const { controller } = makeController({
scopeResult: allowedScope(unsupportedFilter),
queryResult: {
status: 'denied',
reason: 'Unsupported federation get resource: unknown-resource',
},
});
await expect(controller.get('unknown-resource', 'row-1', makeRequest())).rejects.toMatchObject({
response: {
error: {
code: 'scope_violation',
message: 'Unsupported federation get resource: unknown-resource',
},
},
status: 403,
});
});
it('rejects empty ids before evaluating scope', async () => {
const { controller, scope, query } = makeController();
await expect(controller.get('tasks', ' ', makeRequest())).rejects.toMatchObject({
response: { error: { code: 'invalid_request' } },
status: 400,
});
expect(scope.evaluateAccess).not.toHaveBeenCalled();
expect(query.get).not.toHaveBeenCalled();
});
});
@@ -1,311 +0,0 @@
/**
* Federation get query layer (FED-M3-06).
*
* Read-only DB adapter used by GetController after FederationAuthGuard and
* FederationScopeService have established the subject user, allowed resource,
* native-RBAC intersection, and row cap. Audit writes are intentionally
* deferred to M4.
*/
import { Inject, Injectable } from '@nestjs/common';
import {
and,
eq,
inArray,
insights,
or,
missionTasks,
missions,
preferences,
projects,
tasks,
teamMembers,
type Db,
} from '@mosaicstack/db';
import { DB } from '../../../database/database.module.js';
import type {
FederationNativeRbacEvaluator,
FederationNativeRbacRequest,
FederationNativeRbacResult,
FederationScopeQueryFilter,
} from '../scope.service.js';
export interface FederationGetQueryRequest {
readonly filter: FederationScopeQueryFilter;
readonly id: string;
}
export interface FederationGetQueryFoundResult<T extends object = Record<string, unknown>> {
readonly status: 'found';
readonly item: T;
}
export interface FederationGetQueryNotFoundResult {
readonly status: 'not_found';
}
export interface FederationGetQueryDeniedResult {
readonly status: 'denied';
readonly reason: string;
}
export type FederationGetQueryResult<T extends object = Record<string, unknown>> =
| FederationGetQueryFoundResult<T>
| FederationGetQueryNotFoundResult
| FederationGetQueryDeniedResult;
type RowObject = Record<string, unknown>;
function firstRow<T>(rows: T[]): T | undefined {
return rows[0];
}
function rowBelongsToAccessibleProjectOrMission(
row: { projectId?: string | null; missionId?: string | null },
projectIds: readonly string[],
missionIds: readonly string[],
): boolean {
return (
(typeof row.projectId === 'string' && projectIds.includes(row.projectId)) ||
(typeof row.missionId === 'string' && missionIds.includes(row.missionId))
);
}
@Injectable()
export class FederationGetQueryService implements FederationNativeRbacEvaluator {
constructor(@Inject(DB) private readonly db: Db) {}
async evaluateReadAccess(
request: FederationNativeRbacRequest,
): Promise<FederationNativeRbacResult> {
if (request.resource === 'credentials' || request.resource === 'api_keys') {
return {
allowed: false,
reason: `${request.resource} federation get access is not implemented in M3`,
details: { resource: request.resource },
};
}
if (request.resource === 'memory') {
return { allowed: true, access: { includePersonal: true, teamIds: [] } };
}
const teamIds = await this.listSubjectTeamIds(request.subjectUserId);
return { allowed: true, access: { includePersonal: true, teamIds } };
}
async get<T extends RowObject = RowObject>(
request: FederationGetQueryRequest,
): Promise<FederationGetQueryResult<T>> {
return this.getByResource(request.filter, request.id) as Promise<FederationGetQueryResult<T>>;
}
private async getByResource(
filter: FederationScopeQueryFilter,
id: string,
): Promise<FederationGetQueryResult> {
switch (filter.resource) {
case 'tasks':
return this.getTask(filter, id);
case 'notes':
return this.getNote(filter, id);
case 'memory':
return this.getMemory(filter, id);
case 'credentials':
case 'api_keys':
return { status: 'denied', reason: `${filter.resource} federation get is not implemented` };
default:
return {
status: 'denied',
reason: `Unsupported federation get resource: ${String(filter.resource)}`,
};
}
}
private async listSubjectTeamIds(subjectUserId: string): Promise<string[]> {
const rows = await this.db
.select({ teamId: teamMembers.teamId })
.from(teamMembers)
.where(eq(teamMembers.userId, subjectUserId));
return rows.map((row) => row.teamId);
}
private async listAccessibleProjectIds(filter: FederationScopeQueryFilter): Promise<string[]> {
const clauses = [];
if (filter.includePersonal) {
clauses.push(and(eq(projects.ownerType, 'user'), eq(projects.ownerId, filter.subjectUserId)));
}
if (filter.teamIds.length > 0) {
// Project team ownership follows TeamsService.canAccessProject: team-owned
// rows are authorized through projects.teamId, while ownerId remains the
// user who created/bootstrapped the project.
clauses.push(
and(eq(projects.ownerType, 'team'), inArray(projects.teamId, [...filter.teamIds])),
);
}
if (clauses.length === 0) {
return [];
}
const rows = await this.db
.select({ id: projects.id })
.from(projects)
.where(clauses.length === 1 ? clauses[0] : or(...clauses));
return rows.map((row) => row.id);
}
private async listMissionIds(projectIds: readonly string[]): Promise<string[]> {
if (projectIds.length === 0) {
return [];
}
const rows = await this.db
.select({ id: missions.id })
.from(missions)
.where(inArray(missions.projectId, [...projectIds]));
return rows.map((row) => row.id);
}
private async getTask(
filter: FederationScopeQueryFilter,
id: string,
): Promise<FederationGetQueryResult> {
const row = firstRow(
await this.db
.select({
id: tasks.id,
title: tasks.title,
description: tasks.description,
status: tasks.status,
priority: tasks.priority,
projectId: tasks.projectId,
missionId: tasks.missionId,
assignee: tasks.assignee,
tags: tasks.tags,
dueDate: tasks.dueDate,
metadata: tasks.metadata,
createdAt: tasks.createdAt,
updatedAt: tasks.updatedAt,
})
.from(tasks)
.where(eq(tasks.id, id))
.limit(1),
);
if (!row) {
return { status: 'not_found' };
}
const projectIds = await this.listAccessibleProjectIds(filter);
const missionIds = await this.listMissionIds(projectIds);
if (!rowBelongsToAccessibleProjectOrMission(row, projectIds, missionIds)) {
return { status: 'denied', reason: 'Task is outside the federated scope' };
}
return { status: 'found', item: row as RowObject };
}
private async getNote(
filter: FederationScopeQueryFilter,
id: string,
): Promise<FederationGetQueryResult> {
const row = firstRow(
await this.db
.select({
id: missionTasks.id,
missionId: missionTasks.missionId,
taskId: missionTasks.taskId,
userId: missionTasks.userId,
status: missionTasks.status,
content: missionTasks.notes,
createdAt: missionTasks.createdAt,
updatedAt: missionTasks.updatedAt,
})
.from(missionTasks)
.where(eq(missionTasks.id, id))
.limit(1),
);
if (!row || row.content === null || row.content === '') {
return { status: 'not_found' };
}
const projectIds = await this.listAccessibleProjectIds(filter);
const missionIds = await this.listMissionIds(projectIds);
// mission_tasks rows are user-scoped even when the mission belongs to a team.
// Scope-visible missions must intersect with subject ownership; team scope
// narrows mission IDs but never widens note reads to another user's rows.
if (row.userId !== filter.subjectUserId || !missionIds.includes(row.missionId)) {
return { status: 'denied', reason: 'Note is outside the federated scope' };
}
const item = { ...row } as RowObject;
delete item['userId'];
return { status: 'found', item };
}
private async getMemory(
filter: FederationScopeQueryFilter,
id: string,
): Promise<FederationGetQueryResult> {
const [insightRow, preferenceRow] = await Promise.all([
this.db
.select({
id: insights.id,
userId: insights.userId,
kind: insights.source,
content: insights.content,
category: insights.category,
relevanceScore: insights.relevanceScore,
metadata: insights.metadata,
createdAt: insights.createdAt,
updatedAt: insights.updatedAt,
})
.from(insights)
.where(eq(insights.id, id))
.limit(1)
.then(firstRow),
this.db
.select({
id: preferences.id,
userId: preferences.userId,
kind: preferences.category,
key: preferences.key,
value: preferences.value,
source: preferences.source,
mutable: preferences.mutable,
createdAt: preferences.createdAt,
updatedAt: preferences.updatedAt,
})
.from(preferences)
.where(eq(preferences.id, id))
.limit(1)
.then(firstRow),
]);
const candidates = [insightRow, preferenceRow].filter(
(row): row is NonNullable<typeof row> => row !== undefined,
);
if (candidates.length === 0) {
return { status: 'not_found' };
}
if (!filter.includePersonal) {
return { status: 'denied', reason: 'Memory personal rows are outside the federated scope' };
}
const accessible = candidates.find((row) => row.userId === filter.subjectUserId);
if (!accessible) {
return { status: 'denied', reason: 'Memory row belongs to another subject user' };
}
const item = { ...accessible } as RowObject;
delete item['userId'];
return { status: 'found', item };
}
}
@@ -1,100 +0,0 @@
/**
* Federation get verb (FED-M3-06).
*
* POST /api/federation/v1/get/:resource/:id
*
* Pipeline: FederationAuthGuard attaches the active grant context, then
* FederationScopeService enforces grant scope + native RBAC intersection, then
* the read-only query layer fetches one local row and tags it with `_source`.
* Read audit-log writes are deferred to M4; this controller does not persist
* request or response bodies.
*/
import { Controller, HttpException, Inject, Param, Post, Req, UseGuards } from '@nestjs/common';
import type { FastifyRequest } from 'fastify';
import {
FederationInvalidRequestError,
FederationNotFoundError,
FederationScopeViolationError,
FederationUnauthorizedError,
SOURCE_LOCAL,
type FederationGetResponse,
type SourceTag,
} from '@mosaicstack/types';
import { FederationAuthGuard } from '../federation-auth.guard.js';
import '../federation-context.js';
import { FederationScopeService } from '../scope.service.js';
import { FederationGetQueryService } from './get-query.service.js';
type FederatedRow = Record<string, unknown> & SourceTag;
function scopeDenyToHttpException(deny: {
readonly statusCode: 400 | 403;
readonly message: string;
}): HttpException {
const ErrorClass =
deny.statusCode === 400 ? FederationInvalidRequestError : FederationScopeViolationError;
return new HttpException(new ErrorClass(deny.message, deny).toEnvelope(), deny.statusCode);
}
@Controller('api/federation/v1/get')
@UseGuards(FederationAuthGuard)
export class GetController {
constructor(
@Inject(FederationScopeService) private readonly scope: FederationScopeService,
@Inject(FederationGetQueryService) private readonly query: FederationGetQueryService,
) {}
@Post(':resource/:id')
async get(
@Param('resource') resource: string,
@Param('id') id: string,
@Req() request: FastifyRequest,
): Promise<FederationGetResponse<FederatedRow>> {
if (!request.federationContext) {
throw new HttpException(
new FederationUnauthorizedError('Federation context missing').toEnvelope(),
401,
);
}
if (id.trim().length === 0) {
throw new HttpException(
new FederationInvalidRequestError('Federation get id must not be empty').toEnvelope(),
400,
);
}
const scopeResult = await this.scope.evaluateAccess({
context: request.federationContext,
resource,
requestedLimit: 1,
nativeRbac: this.query,
});
if (!scopeResult.allowed) {
throw scopeDenyToHttpException(scopeResult.deny);
}
const result = await this.query.get({ filter: scopeResult.filter, id });
if (result.status === 'not_found') {
throw new HttpException(
new FederationNotFoundError('Requested federation resource was not found').toEnvelope(),
404,
);
}
if (result.status === 'denied') {
throw new HttpException(
new FederationScopeViolationError(result.reason, {
resource,
id,
grantId: request.federationContext.grantId,
peerId: request.federationContext.peerId,
subjectUserId: request.federationContext.subjectUserId,
}).toEnvelope(),
403,
);
}
return { item: { ...result.item, _source: SOURCE_LOCAL } };
}
}
+5 -15
View File
@@ -1,7 +1,5 @@
import { Module, type OnApplicationShutdown, Inject, Optional } from '@nestjs/common';
import { Module, type OnApplicationShutdown, Inject } from '@nestjs/common';
import { createQueue, type QueueHandle } from '@mosaicstack/queue';
import type { MosaicConfig } from '@mosaicstack/config';
import { MOSAIC_CONFIG } from '../config/config.module.js';
import { SessionGCService } from './session-gc.service.js';
import { REDIS } from './gc.tokens.js';
@@ -11,17 +9,13 @@ const GC_QUEUE_HANDLE = 'GC_QUEUE_HANDLE';
providers: [
{
provide: GC_QUEUE_HANDLE,
useFactory: (config: MosaicConfig | null): QueueHandle | null => {
// On Local tier there is no Redis — skip the ioredis connection entirely.
// The Valkey GC sweep is a no-op on Local (no session keys stored there).
if (config?.queue?.type === 'local') return null;
useFactory: (): QueueHandle => {
return createQueue();
},
inject: [MOSAIC_CONFIG],
},
{
provide: REDIS,
useFactory: (handle: QueueHandle | null) => handle?.redis ?? null,
useFactory: (handle: QueueHandle) => handle.redis,
inject: [GC_QUEUE_HANDLE],
},
SessionGCService,
@@ -29,13 +23,9 @@ const GC_QUEUE_HANDLE = 'GC_QUEUE_HANDLE';
exports: [SessionGCService],
})
export class GCModule implements OnApplicationShutdown {
constructor(
@Optional()
@Inject(GC_QUEUE_HANDLE)
private readonly handle: QueueHandle | null,
) {}
constructor(@Inject(GC_QUEUE_HANDLE) private readonly handle: QueueHandle) {}
async onApplicationShutdown(): Promise<void> {
await this.handle?.close().catch(() => {});
await this.handle.close().catch(() => {});
}
}
@@ -119,19 +119,6 @@ describe('SessionGCService', () => {
).resolves.toEqual({ allowed: true });
});
it('collect() skips Valkey but still demotes only the requested session on local tier', async () => {
const localService = new SessionGCService(null, mockLogService as unknown as LogService);
const result = await localService.collect('local-session');
expect(result.sessionId).toBe('local-session');
expect(result.cleaned.valkeyKeys).toBeUndefined();
expect(mockLogService.logs.promoteSessionToWarm).toHaveBeenCalledWith(
'local-session',
expect.any(Date),
);
});
it('collect() returns sessionId in result', async () => {
const result = await service.collect('test-session-id');
expect(result.sessionId).toBe('test-session-id');
+8 -15
View File
@@ -1,4 +1,4 @@
import { Inject, Injectable, Optional } from '@nestjs/common';
import { Inject, Injectable } from '@nestjs/common';
import type { QueueHandle } from '@mosaicstack/queue';
import type { LogService } from '@mosaicstack/log';
import { LOG_SERVICE } from '../log/log.tokens.js';
@@ -21,10 +21,7 @@ function escapeRedisGlobLiteral(value: string): string {
@Injectable()
export class SessionGCService {
constructor(
// Local tier has no Redis; lifecycle cleanup still demotes this session's logs.
@Optional()
@Inject(REDIS)
private readonly redis: QueueHandle['redis'] | null,
@Inject(REDIS) private readonly redis: QueueHandle['redis'],
@Inject(LOG_SERVICE) private readonly logService: LogService,
) {}
@@ -32,10 +29,8 @@ export class SessionGCService {
* Scan Valkey for all keys matching a pattern using SCAN (non-blocking).
* KEYS is avoided because it blocks the Valkey event loop for the full scan
* duration, which can cause latency spikes under production key volumes.
* Returns an empty population on the Local tier where Redis is disabled.
*/
private async scanKeys(pattern: string): Promise<string[]> {
if (!this.redis) return [];
const collected: string[] = [];
let cursor = '0';
do {
@@ -52,14 +47,12 @@ export class SessionGCService {
async collect(sessionId: string): Promise<GCResult> {
const result: GCResult = { sessionId, cleaned: {} };
// 1. Valkey: delete all session-scoped keys (skipped on Local tier).
if (this.redis) {
const pattern = `mosaic:session:${escapeRedisGlobLiteral(sessionId)}:*`;
const valkeyKeys = await this.scanKeys(pattern);
if (valkeyKeys.length > 0) {
await this.redis.del(...valkeyKeys);
result.cleaned.valkeyKeys = valkeyKeys.length;
}
// 1. Valkey: delete all session-scoped keys
const pattern = `mosaic:session:${escapeRedisGlobLiteral(sessionId)}:*`;
const valkeyKeys = await this.scanKeys(pattern);
if (valkeyKeys.length > 0) {
await this.redis.del(...valkeyKeys);
result.cleaned.valkeyKeys = valkeyKeys.length;
}
// 2. PG: demote hot-tier agent logs for this session only.
@@ -1,164 +0,0 @@
import 'reflect-metadata';
import {
type CanActivate,
type ExecutionContext,
type INestApplication,
ValidationPipe,
} from '@nestjs/common';
import { FastifyAdapter, type NestFastifyApplication } from '@nestjs/platform-fastify';
import { Test } from '@nestjs/testing';
import request from 'supertest';
import { afterAll, beforeAll, beforeEach, describe, expect, it } from 'vitest';
import { AuthGuard } from '../auth/auth.guard.js';
import { HarnessRegistry } from './harness.registry.js';
import { HARNESS_REGISTRY } from './harness.tokens.js';
import { HarnessSelectionRepository } from './harness-selection.repository.js';
import { FakeHarnessAdapter } from './testing/fake-harness.adapter.js';
// Import the REAL module (not a hand-listed controllers+mocks list) so an
// unresolved provider fails at app.init() — the #1145-class DI-boot guard.
import { HarnessModule } from './harness.module.js';
// A known-available tuple from the fake adapter's default catalog.
const VALID = { harnessId: 'fake', providerId: 'fake-openai', modelId: 'fake-mini' };
// A tuple whose provider/model are not in any catalog.
const UNKNOWN = { harnessId: 'fake', providerId: 'ghost-provider', modelId: 'ghost-model' };
// A tuple that is known in the catalog but flagged unavailable.
const UNAVAILABLE = { harnessId: 'fake', providerId: 'fake-openai', modelId: 'fake-legacy' };
const authGuard: CanActivate = {
canActivate(context: ExecutionContext): boolean {
const requestContext = context.switchToHttp().getRequest<{ user?: { id: string } }>();
requestContext.user = { id: 'user-1' };
return true;
},
};
function registryWithFake(): HarnessRegistry {
const registry = new HarnessRegistry();
registry.register(new FakeHarnessAdapter({ id: 'fake' }));
return registry;
}
describe('Harness selection HTTP surface', () => {
let app: INestApplication;
let repository: HarnessSelectionRepository;
beforeAll(async () => {
const moduleRef = await Test.createTestingModule({
imports: [HarnessModule],
})
.overrideGuard(AuthGuard)
.useValue(authGuard)
.overrideProvider(HARNESS_REGISTRY)
.useValue(registryWithFake())
.compile();
// Real in-memory repository from the module graph — proves the module wired it.
repository = moduleRef.get(HarnessSelectionRepository);
app = moduleRef.createNestApplication<NestFastifyApplication>(new FastifyAdapter());
app.useGlobalPipes(
new ValidationPipe({ whitelist: true, forbidNonWhitelisted: true, transform: true }),
);
await app.init();
await app.getHttpAdapter().getInstance().ready();
});
beforeEach(() => {
// Reset owner-scoped state between tests via the public API surface.
repository.set({ userId: 'user-1', tenantId: 'user-1' }, VALID);
});
afterAll(async () => {
await app.close();
});
it('GET selection is server-scoped and ignores caller-supplied scope in the query', async () => {
const response = await request(app.getHttpServer())
.get('/api/chat/preferences/selection')
.query({ userId: 'attacker', tenantId: 'attacker-tenant', seatId: 'attacker-seat' });
expect(response.status).toBe(200);
// The returned selection is user-1's (guard-derived scope), not the query's.
expect(response.body.selection).toEqual(VALID);
});
it('PUT with a valid structured tuple persists and round-trips via GET', async () => {
const next = { harnessId: 'fake', providerId: 'fake-openai', modelId: 'fake-pro' };
const put = await request(app.getHttpServer())
.put('/api/chat/preferences/selection')
.send(next)
.set('Content-Type', 'application/json');
expect(put.status).toBe(200);
expect(put.body.selection).toEqual(next);
const get = await request(app.getHttpServer()).get('/api/chat/preferences/selection');
expect(get.status).toBe(200);
expect(get.body.selection).toEqual(next);
});
it('PUT with FREE TEXT is rejected 400 and does not mutate the stored selection', async () => {
const response = await request(app.getHttpServer())
.put('/api/chat/preferences/selection')
.send({ selection: 'gpt-4o' })
.set('Content-Type', 'application/json');
expect(response.status).toBe(400);
const get = await request(app.getHttpServer()).get('/api/chat/preferences/selection');
expect(get.body.selection).toEqual(VALID);
});
it.each([
['seatId', { ...VALID, seatId: 'attacker-seat' }],
['tenantId', { ...VALID, tenantId: 'attacker-tenant' }],
['userId', { ...VALID, userId: 'attacker' }],
['nativeSessionPath', { ...VALID, nativeSessionPath: '/var/native/x.jsonl' }],
['executable', { ...VALID, executable: '/usr/bin/evil' }],
['home', { ...VALID, home: '/home/attacker' }],
['cwd', { ...VALID, cwd: '/tmp/attacker' }],
])(
'PUT with an extra authority-bearing field (%s) is rejected 400 and does not mutate stored selection',
async (_name, body) => {
const response = await request(app.getHttpServer())
.put('/api/chat/preferences/selection')
.send(body)
.set('Content-Type', 'application/json');
expect(response.status).toBe(400);
const get = await request(app.getHttpServer()).get('/api/chat/preferences/selection');
expect(get.body.selection).toEqual(VALID);
},
);
it('PUT with an UNKNOWN tuple returns selection_invalid, unchanged and echoed unchanged (no fallback)', async () => {
const response = await request(app.getHttpServer())
.put('/api/chat/preferences/selection')
.send(UNKNOWN)
.set('Content-Type', 'application/json');
expect(response.status).toBe(422);
expect(response.body.code).toBe('selection_invalid');
// Echoed back unchanged: no first-row / first-provider substitution.
expect(response.body.selection).toEqual(UNKNOWN);
const get = await request(app.getHttpServer()).get('/api/chat/preferences/selection');
expect(get.body.selection).toEqual(VALID);
});
it('PUT with a KNOWN-but-UNAVAILABLE tuple returns model_unavailable, unchanged (distinct from selection_invalid)', async () => {
const response = await request(app.getHttpServer())
.put('/api/chat/preferences/selection')
.send(UNAVAILABLE)
.set('Content-Type', 'application/json');
expect(response.status).toBe(422);
expect(response.body.code).toBe('model_unavailable');
expect(response.body.selection).toEqual(UNAVAILABLE);
const get = await request(app.getHttpServer()).get('/api/chat/preferences/selection');
expect(get.body.selection).toEqual(VALID);
});
});
@@ -1,46 +0,0 @@
import { Body, Controller, Get, HttpException, HttpStatus, Put, UseGuards } from '@nestjs/common';
import { AuthGuard } from '../auth/auth.guard.js';
import { CurrentUser } from '../auth/current-user.decorator.js';
import { scopeFromUser, type AuthenticatedUserLike } from '../auth/session-scope.js';
import { HarnessOperationError } from './harness.registry.js';
import { HarnessSelectionService } from './harness-selection.service.js';
import { HarnessSelectionInputDto, type SelectionResponseDto } from './harness.dto.js';
/**
* Chat-preferences selection surface. The scope is ALWAYS derived on the server
* from the authenticated user (`scopeFromUser(CurrentUser)`); the request body and
* query string can never name another user, tenant, or seat. A typed selection
* failure (unknown tuple `selection_invalid`, known-but-unavailable
* `model_unavailable`) is returned as 422 with the requested tuple echoed back
* unchanged, and never mutates the stored selection.
*/
@Controller('api/chat/preferences/selection')
@UseGuards(AuthGuard)
export class HarnessSelectionController {
constructor(private readonly selection: HarnessSelectionService) {}
@Get()
get(@CurrentUser() user: AuthenticatedUserLike): SelectionResponseDto {
return { selection: this.selection.getSelection(scopeFromUser(user)) };
}
@Put()
async put(
@CurrentUser() user: AuthenticatedUserLike,
@Body() dto: HarnessSelectionInputDto,
): Promise<SelectionResponseDto> {
try {
const stored = await this.selection.setSelection(scopeFromUser(user), {
harnessId: dto.harnessId,
providerId: dto.providerId,
modelId: dto.modelId,
});
return { selection: stored };
} catch (error) {
if (error instanceof HarnessOperationError) {
throw new HttpException(error.dto, HttpStatus.UNPROCESSABLE_ENTITY);
}
throw error;
}
}
}
@@ -1,90 +0,0 @@
import { randomUUID } from 'node:crypto';
import { Inject, Injectable } from '@nestjs/common';
import type { HarnessSelection } from '@mosaicstack/types';
import type { ActorTenantScope } from '../auth/session-scope.js';
import {
HarnessAdapterUnavailableError,
HarnessRegistry,
operationError,
} from './harness.registry.js';
import { HARNESS_REGISTRY } from './harness.tokens.js';
import { readContextFromScope } from './harness.dto.js';
import { HarnessSelectionRepository } from './harness-selection.repository.js';
/**
* Selection logic for the Slice-Zero chat-preferences surface. It validates the
* requested harness/provider/model tuple against the live catalog with NO
* fallback substitution, then persists it owner-scoped. The stored selection is
* only ever mutated when the tuple is valid AND available.
*/
@Injectable()
export class HarnessSelectionService {
constructor(
@Inject(HARNESS_REGISTRY) private readonly registry: HarnessRegistry,
private readonly repository: HarnessSelectionRepository,
) {}
getSelection(scope: ActorTenantScope): HarnessSelection | null {
return this.repository.get(scope);
}
async setSelection(
scope: ActorTenantScope,
selection: HarnessSelection,
): Promise<HarnessSelection> {
// Throws HarnessOperationError (selection_invalid / model_unavailable) with the
// requested tuple echoed back unchanged. The store is untouched on any throw.
await this.assertSelectionAvailable(scope, selection);
return this.repository.set(scope, selection);
}
private async assertSelectionAvailable(
scope: ActorTenantScope,
selection: HarnessSelection,
): Promise<void> {
const correlationId = randomUUID();
let adapter;
try {
adapter = this.registry.get(selection.harnessId);
} catch (error) {
if (error instanceof HarnessAdapterUnavailableError) {
// An unknown harness makes the whole tuple invalid — no fallback adapter.
throw operationError(
'selection_invalid',
'The requested harness/provider/model tuple is not in the catalog.',
selection,
correlationId,
);
}
throw error;
}
const catalog = await adapter.catalog(readContextFromScope(scope));
const entry = catalog.models.find(
(candidate) =>
candidate.harnessId === selection.harnessId &&
candidate.providerId === selection.providerId &&
candidate.modelId === selection.modelId,
);
if (!entry) {
// No first-row / first-provider fallback: reject the requested tuple unchanged.
throw operationError(
'selection_invalid',
'The requested harness/provider/model tuple is not in the catalog.',
selection,
correlationId,
);
}
if (entry.availability === 'unavailable') {
throw operationError(
'model_unavailable',
'The requested model is currently unavailable.',
selection,
correlationId,
true,
);
}
}
}
@@ -1,138 +0,0 @@
import 'reflect-metadata';
import {
type CanActivate,
type ExecutionContext,
type INestApplication,
ValidationPipe,
} from '@nestjs/common';
import { FastifyAdapter, type NestFastifyApplication } from '@nestjs/platform-fastify';
import { Test } from '@nestjs/testing';
import request from 'supertest';
import { afterAll, beforeAll, describe, expect, it } from 'vitest';
import { AuthGuard } from '../auth/auth.guard.js';
import { HarnessRegistry } from './harness.registry.js';
import { HARNESS_REGISTRY } from './harness.tokens.js';
import { FakeHarnessAdapter } from './testing/fake-harness.adapter.js';
// The real module under test — importing it (not a hand-listed controllers/mocks
// list) is what makes an unresolved provider fail loudly at app.init() (#1145 guard).
import { HarnessModule } from './harness.module.js';
// Fields that must NEVER surface on a browser-facing catalog/list response.
const FORBIDDEN_KEYS = [
'executable',
'executablePath',
'home',
'homeDir',
'cwd',
'workingDir',
'workingDirectory',
'nativeSessionPath',
'sessionPath',
'env',
'secret',
'secrets',
'token',
'apiKey',
];
function assertNoForbiddenLeak(payload: unknown): void {
const serialized = JSON.stringify(payload).toLowerCase();
for (const key of FORBIDDEN_KEYS) {
expect(serialized).not.toContain(key.toLowerCase());
}
}
const authGuard: CanActivate = {
canActivate(context: ExecutionContext): boolean {
const requestContext = context.switchToHttp().getRequest<{ user?: { id: string } }>();
requestContext.user = { id: 'user-1' };
return true;
},
};
function registryWithFake(): HarnessRegistry {
const registry = new HarnessRegistry();
registry.register(new FakeHarnessAdapter({ id: 'fake' }));
return registry;
}
describe('Harness catalog HTTP surface', () => {
let app: INestApplication;
beforeAll(async () => {
const moduleRef = await Test.createTestingModule({
imports: [HarnessModule],
})
.overrideGuard(AuthGuard)
.useValue(authGuard)
.overrideProvider(HARNESS_REGISTRY)
.useValue(registryWithFake())
.compile();
app = moduleRef.createNestApplication<NestFastifyApplication>(new FastifyAdapter());
app.useGlobalPipes(
new ValidationPipe({ whitelist: true, forbidNonWhitelisted: true, transform: true }),
);
await app.init();
await app.getHttpAdapter().getInstance().ready();
});
afterAll(async () => {
await app.close();
});
it('boots the real HarnessModule so all providers resolve at app.init()', () => {
// If HarnessModule failed to resolve a provider, beforeAll's app.init() would
// have thrown and this suite would never reach here.
expect(app).toBeDefined();
});
it('GET /api/harnesses returns 200 with safe fields only', async () => {
const response = await request(app.getHttpServer()).get('/api/harnesses');
expect(response.status).toBe(200);
expect(Array.isArray(response.body)).toBe(true);
expect(response.body.length).toBeGreaterThan(0);
const summary = response.body[0];
expect(Object.keys(summary).sort()).toEqual(['capabilities', 'displayName', 'id']);
expect(summary.id).toBe('fake');
expect(typeof summary.displayName).toBe('string');
expect(Array.isArray(summary.capabilities)).toBe(true);
assertNoForbiddenLeak(response.body);
});
it('GET /api/harnesses/:harnessId/catalog returns 200 with safe catalog fields only', async () => {
const response = await request(app.getHttpServer()).get('/api/harnesses/fake/catalog');
expect(response.status).toBe(200);
expect(response.body.harnessId).toBe('fake');
expect(typeof response.body.version).toBe('string');
expect(typeof response.body.fingerprint).toBe('string');
expect(Array.isArray(response.body.models)).toBe(true);
expect(response.body.models.length).toBeGreaterThan(0);
const entry = response.body.models[0];
// Whitelisted catalog-entry fields only (no executables/paths/secrets).
expect(Object.keys(entry).sort()).toEqual(
[
'authState',
'availability',
'displayName',
'harnessId',
'inputTypes',
'modelId',
'providerId',
'reasoningCapability',
].sort(),
);
assertNoForbiddenLeak(response.body);
});
it('GET catalog for an unknown harnessId returns a typed adapter_unavailable error, never a fallback catalog', async () => {
const response = await request(app.getHttpServer()).get('/api/harnesses/ghost-harness/catalog');
expect(response.status).toBe(404);
expect(response.body.code).toBe('adapter_unavailable');
// A fallback catalog would carry a models array; a typed error must not.
expect(response.body.models).toBeUndefined();
});
});
@@ -1,65 +0,0 @@
import {
Controller,
Get,
HttpException,
HttpStatus,
Inject,
Param,
UseGuards,
} from '@nestjs/common';
import { AuthGuard } from '../auth/auth.guard.js';
import { CurrentUser } from '../auth/current-user.decorator.js';
import { scopeFromUser, type AuthenticatedUserLike } from '../auth/session-scope.js';
import { HarnessAdapterUnavailableError, HarnessRegistry } from './harness.registry.js';
import { HARNESS_REGISTRY } from './harness.tokens.js';
import {
readContextFromScope,
toHarnessSummary,
toSafeCatalog,
type HarnessCatalogDto,
type HarnessSummaryDto,
} from './harness.dto.js';
/**
* Generic harness catalog surface. It exposes only harness-neutral, browser-safe
* fields (identity, capabilities, provider/model catalog) never executables,
* native paths, home/cwd, env, or secrets. There is NO provider-probe route here;
* `/api/providers` and `POST /api/providers/test` are intentionally out of scope.
*/
@Controller('api/harnesses')
@UseGuards(AuthGuard)
export class HarnessController {
constructor(@Inject(HARNESS_REGISTRY) private readonly registry: HarnessRegistry) {}
@Get()
async list(@CurrentUser() user: AuthenticatedUserLike): Promise<HarnessSummaryDto[]> {
const context = readContextFromScope(scopeFromUser(user));
const summaries: HarnessSummaryDto[] = [];
for (const adapter of this.registry.list()) {
summaries.push(toHarnessSummary(await adapter.describe(context)));
}
return summaries;
}
@Get(':harnessId/catalog')
async catalog(
@CurrentUser() user: AuthenticatedUserLike,
@Param('harnessId') harnessId: string,
): Promise<HarnessCatalogDto> {
const context = readContextFromScope(scopeFromUser(user));
let adapter;
try {
adapter = this.registry.get(harnessId);
} catch (error) {
if (error instanceof HarnessAdapterUnavailableError) {
// Typed failure — NEVER a fallback catalog for an unknown harness id.
throw new HttpException(
{ code: error.code, message: error.message, harnessId },
HttpStatus.NOT_FOUND,
);
}
throw error;
}
return toSafeCatalog(await adapter.catalog(context));
}
}
-116
View File
@@ -1,116 +0,0 @@
import { randomUUID } from 'node:crypto';
import { IsNotEmpty, IsString } from 'class-validator';
import type {
HarnessActorContext,
HarnessAuthState,
HarnessCapability,
HarnessCatalog,
HarnessCatalogEntry,
HarnessDescriptor,
HarnessInputType,
HarnessModelAvailability,
HarnessSelection,
} from '@mosaicstack/types';
import type { ActorTenantScope } from '../auth/session-scope.js';
/**
* Structured selection tuple accepted on `PUT /api/chat/preferences/selection`.
*
* The body is a STRUCTURED tuple (harness + provider + model), never a free-text
* model string. With `ValidationPipe({ whitelist: true, forbidNonWhitelisted: true })`
* any extra property including smuggled server-authority fields such as
* `seatId`, `tenantId`, `userId`, `nativeSessionPath`, `executable`, `home`, `cwd`
* is rejected with 400. There is deliberately no field through which a caller can
* name a scope; scope is derived on the server from the authenticated session.
*/
export class HarnessSelectionInputDto {
@IsString()
@IsNotEmpty()
harnessId!: string;
@IsString()
@IsNotEmpty()
providerId!: string;
@IsString()
@IsNotEmpty()
modelId!: string;
}
/** Browser-safe harness summary — identity and capabilities only. */
export interface HarnessSummaryDto {
readonly id: string;
readonly displayName: string;
readonly capabilities: readonly HarnessCapability[];
}
/** Browser-safe catalog entry — no executables, paths, secrets, or env. */
export interface HarnessCatalogEntryDto {
readonly harnessId: string;
readonly providerId: string;
readonly modelId: string;
readonly displayName: string;
readonly reasoningCapability: boolean;
readonly inputTypes: readonly HarnessInputType[];
readonly authState: HarnessAuthState;
readonly availability: HarnessModelAvailability;
}
/** Browser-safe catalog envelope. */
export interface HarnessCatalogDto {
readonly harnessId: string;
readonly version: string;
readonly fingerprint: string;
readonly models: readonly HarnessCatalogEntryDto[];
}
/** Response envelope for the caller's current selection (null when unset). */
export interface SelectionResponseDto {
readonly selection: HarnessSelection | null;
}
/**
* Derive a server-trusted {@link HarnessActorContext} for read operations from the
* session-derived {@link ActorTenantScope}. All authority originates on the server;
* nothing here is caller-supplied. A fresh correlation id is minted per call.
*/
export function readContextFromScope(scope: ActorTenantScope): HarnessActorContext {
return {
actorId: scope.userId,
tenantId: scope.tenantId,
seatId: scope.userId,
correlationId: randomUUID(),
};
}
/** Project a descriptor onto the browser-safe summary shape (whitelist by construction). */
export function toHarnessSummary(descriptor: HarnessDescriptor): HarnessSummaryDto {
return {
id: descriptor.id,
displayName: descriptor.displayName,
capabilities: [...descriptor.capabilities],
};
}
/** Project a catalog onto the browser-safe shape (whitelist by construction). */
export function toSafeCatalog(catalog: HarnessCatalog): HarnessCatalogDto {
return {
harnessId: catalog.harnessId,
version: catalog.version,
fingerprint: catalog.fingerprint,
models: catalog.models.map(toSafeCatalogEntry),
};
}
function toSafeCatalogEntry(entry: HarnessCatalogEntry): HarnessCatalogEntryDto {
return {
harnessId: entry.harnessId,
providerId: entry.providerId,
modelId: entry.modelId,
displayName: entry.displayName,
reasoningCapability: entry.reasoningCapability,
inputTypes: [...entry.inputTypes],
authState: entry.authState,
availability: entry.availability,
};
}
@@ -1,37 +0,0 @@
import { Module } from '@nestjs/common';
import { HarnessRegistry } from './harness.registry.js';
import { HarnessService } from './harness.service.js';
import {
HARNESS_CONVERSATION_SERVICE,
HARNESS_CONVERSATION_SERVICE_UNAVAILABLE,
HARNESS_REGISTRY,
HARNESS_SERVICE,
} from './harness.tokens.js';
import { HarnessController } from './harness.controller.js';
import { HarnessSelectionController } from './harness-selection.controller.js';
import { HarnessSelectionService } from './harness-selection.service.js';
import { HarnessSelectionRepository } from './harness-selection.repository.js';
/**
* Wires the harness-neutral registry/service (Task Two) together with the
* Slice-Zero catalog and selection HTTP surfaces (Task Three).
*
* The registry is provided empty here; real harness adapters are registered in a
* later task. Because the controllers/services resolve their collaborators through
* this real module graph, an unresolved provider fails loudly at `app.init()`.
*/
@Module({
controllers: [HarnessController, HarnessSelectionController],
providers: [
{ provide: HARNESS_REGISTRY, useFactory: () => new HarnessRegistry() },
{ provide: HARNESS_SERVICE, useClass: HarnessService },
// Task Five: bind the conversation-service token to its explicit "not yet bound"
// sentinel. The pi-rpc router treats this as a hard, typed startup failure; Task 14
// replaces it with a real service. Exported so ChatModule's router can inject it.
{ provide: HARNESS_CONVERSATION_SERVICE, useValue: HARNESS_CONVERSATION_SERVICE_UNAVAILABLE },
HarnessSelectionRepository,
HarnessSelectionService,
],
exports: [HARNESS_REGISTRY, HARNESS_SERVICE, HARNESS_CONVERSATION_SERVICE],
})
export class HarnessModule {}
@@ -1,69 +0,0 @@
import { describe, expect, it } from 'vitest';
import {
HarnessAdapterUnavailableError,
HarnessRegistrationError,
HarnessRegistry,
} from './harness.registry.js';
import { FakeHarnessAdapter } from './testing/fake-harness.adapter.js';
describe('HarnessRegistry', () => {
it('registers and looks up an adapter by harness id', () => {
const registry = new HarnessRegistry();
const adapter = new FakeHarnessAdapter({ id: 'fake' });
registry.register(adapter);
expect(registry.get('fake')).toBe(adapter);
expect(registry.has('fake')).toBe(true);
expect(registry.list().map((entry) => entry.id)).toEqual(['fake']);
});
it('rejects a blank adapter id', () => {
const registry = new HarnessRegistry();
let error: unknown;
try {
registry.register(new FakeHarnessAdapter({ id: ' ' }));
} catch (caught) {
error = caught;
}
expect(error).toBeInstanceOf(HarnessRegistrationError);
expect((error as HarnessRegistrationError).reason).toBe('blank_id');
expect(registry.list()).toEqual([]);
});
it('rejects a duplicate adapter id', () => {
const registry = new HarnessRegistry();
registry.register(new FakeHarnessAdapter({ id: 'fake' }));
let error: unknown;
try {
registry.register(new FakeHarnessAdapter({ id: 'fake' }));
} catch (caught) {
error = caught;
}
expect(error).toBeInstanceOf(HarnessRegistrationError);
expect((error as HarnessRegistrationError).reason).toBe('duplicate_id');
expect((error as HarnessRegistrationError).harnessId).toBe('fake');
// The original registration is untouched.
expect(registry.list()).toHaveLength(1);
});
it('returns adapter_unavailable for an unknown harness id', () => {
const registry = new HarnessRegistry();
let error: unknown;
try {
registry.get('missing');
} catch (caught) {
error = caught;
}
expect(error).toBeInstanceOf(HarnessAdapterUnavailableError);
expect((error as HarnessAdapterUnavailableError).code).toBe('adapter_unavailable');
expect((error as HarnessAdapterUnavailableError).harnessId).toBe('missing');
expect(registry.has('missing')).toBe(false);
});
});
@@ -1,100 +0,0 @@
import { Injectable } from '@nestjs/common';
import type {
HarnessAdapter,
HarnessErrorCode,
HarnessErrorDto,
HarnessSelection,
} from '@mosaicstack/types';
/**
* A typed harness operation failure that carries a fully-formed, browser-safe
* {@link HarnessErrorDto}. The DTO's `selection` is always the exact requested
* tuple there is no field through which a substituted "effective" selection
* could ever be reported.
*/
export class HarnessOperationError extends Error {
readonly code: HarnessErrorCode;
readonly dto: HarnessErrorDto;
constructor(dto: HarnessErrorDto) {
super(dto.message);
this.name = 'HarnessOperationError';
this.code = dto.code;
this.dto = dto;
}
}
/** Build a {@link HarnessOperationError} that echoes the requested selection unchanged. */
export function operationError(
code: HarnessErrorCode,
message: string,
selection: HarnessSelection,
correlationId: string,
retryable = false,
): HarnessOperationError {
return new HarnessOperationError({ code, message, retryable, correlationId, selection });
}
/** Raised when an unknown harness id is looked up. Discriminated by `code`. */
export class HarnessAdapterUnavailableError extends Error {
readonly code = 'adapter_unavailable' as const satisfies HarnessErrorCode;
constructor(readonly harnessId: string) {
super(`No harness adapter is registered for id "${harnessId}".`);
this.name = 'HarnessAdapterUnavailableError';
}
}
export type HarnessRegistrationFailure = 'blank_id' | 'duplicate_id';
/** Raised when an adapter cannot be registered (blank or duplicate id). */
export class HarnessRegistrationError extends Error {
constructor(
readonly reason: HarnessRegistrationFailure,
readonly harnessId: string,
) {
super(
reason === 'blank_id'
? 'A harness adapter id must be a non-empty string.'
: `A harness adapter is already registered for id "${harnessId}".`,
);
this.name = 'HarnessRegistrationError';
}
}
/**
* Harness-neutral adapter registry. Adapters are keyed by their harness id.
* Registration rejects blank and duplicate ids; lookup of an unknown id fails
* with {@link HarnessAdapterUnavailableError} (`adapter_unavailable`).
*/
@Injectable()
export class HarnessRegistry {
private readonly adapters = new Map<string, HarnessAdapter>();
register(adapter: HarnessAdapter): void {
const id = adapter.id;
if (typeof id !== 'string' || id.trim().length === 0) {
throw new HarnessRegistrationError('blank_id', id ?? '');
}
if (this.adapters.has(id)) {
throw new HarnessRegistrationError('duplicate_id', id);
}
this.adapters.set(id, adapter);
}
get(harnessId: string): HarnessAdapter {
const adapter = this.adapters.get(harnessId);
if (!adapter) {
throw new HarnessAdapterUnavailableError(harnessId);
}
return adapter;
}
has(harnessId: string): boolean {
return this.adapters.has(harnessId);
}
list(): readonly HarnessAdapter[] {
return [...this.adapters.values()];
}
}
@@ -1,227 +0,0 @@
import { describe, expect, it } from 'vitest';
import type { HarnessActorContext, HarnessCapability, HarnessSelection } from '@mosaicstack/types';
import { HARNESS_CAPABILITIES } from '@mosaicstack/types';
import { HarnessOperationError, HarnessRegistry } from './harness.registry.js';
import {
HarnessScopeViolationError,
HarnessService,
type TrustedGatewayScope,
} from './harness.service.js';
import { FakeHarnessAdapter } from './testing/fake-harness.adapter.js';
const SCOPE: TrustedGatewayScope = {
actorId: 'actor-trusted',
tenantId: 'tenant-trusted',
seatId: 'seat-trusted',
correlationId: 'correlation-trusted',
};
const READ_CONTEXT: HarnessActorContext = {
actorId: SCOPE.actorId,
tenantId: SCOPE.tenantId,
seatId: SCOPE.seatId,
correlationId: SCOPE.correlationId,
};
function setup(capabilities?: readonly HarnessCapability[]) {
const registry = new HarnessRegistry();
const adapter = new FakeHarnessAdapter({ id: 'fake', capabilities });
registry.register(adapter);
const service = new HarnessService(registry);
return { registry, adapter, service };
}
async function availableSelection(adapter: FakeHarnessAdapter): Promise<HarnessSelection> {
const catalog = await adapter.catalog(READ_CONTEXT);
const entry = catalog.models.find((model) => model.availability === 'available');
if (!entry) {
throw new Error('fixture requires an available model');
}
return { harnessId: entry.harnessId, providerId: entry.providerId, modelId: entry.modelId };
}
describe('HarnessService', () => {
it('derives the actor context from trusted scope on create', async () => {
const { service, adapter } = setup();
const selection = await availableSelection(adapter);
const snapshot = await service.createSession(SCOPE, {
conversationId: 'conversation-1',
selection,
});
expect(snapshot.seatId).toBe(SCOPE.seatId);
expect(snapshot.state).toBe('idle');
expect(snapshot.selection).toEqual(selection);
expect(snapshot.nativeSessionId).toBeTruthy();
});
it('rejects server-authority fields supplied by an external caller', async () => {
const { service, adapter } = setup();
const selection = await availableSelection(adapter);
const hostile = {
conversationId: 'conversation-1',
selection,
seatId: 'attacker-seat',
executablePath: '/usr/bin/evil',
home: '/home/attacker',
cwd: '/tmp/attacker',
nativeSessionPath: '/var/native/attacker.jsonl',
} as unknown as Parameters<HarnessService['createSession']>[1];
let error: unknown;
try {
await service.createSession(SCOPE, hostile);
} catch (caught) {
error = caught;
}
expect(error).toBeInstanceOf(HarnessScopeViolationError);
expect((error as HarnessScopeViolationError).field).toBe('seatId');
});
it('returns adapter_unavailable for an unknown harness id, echoing the requested tuple', async () => {
const { service } = setup();
const selection: HarnessSelection = {
harnessId: 'ghost-harness',
providerId: 'p',
modelId: 'm',
};
let error: unknown;
try {
await service.createSession(SCOPE, { conversationId: 'conversation-1', selection });
} catch (caught) {
error = caught;
}
expect(error).toBeInstanceOf(HarnessOperationError);
const dto = (error as HarnessOperationError).dto;
expect(dto.code).toBe('adapter_unavailable');
expect(dto.selection).toEqual(selection);
expect(dto.correlationId).toBe(SCOPE.correlationId);
});
it('returns selection_invalid for an unknown provider/model tuple, unchanged', async () => {
const { service } = setup();
const selection: HarnessSelection = {
harnessId: 'fake',
providerId: 'ghost-provider',
modelId: 'ghost-model',
};
let error: unknown;
try {
await service.createSession(SCOPE, { conversationId: 'conversation-1', selection });
} catch (caught) {
error = caught;
}
expect(error).toBeInstanceOf(HarnessOperationError);
const dto = (error as HarnessOperationError).dto;
expect(dto.code).toBe('selection_invalid');
expect(dto.selection).toEqual(selection);
});
it('returns model_unavailable without falling back for a known unavailable model', async () => {
const { service, adapter } = setup();
const catalog = await adapter.catalog(READ_CONTEXT);
const unavailable = catalog.models.find((entry) => entry.availability === 'unavailable');
expect(unavailable).toBeDefined();
const selection: HarnessSelection = {
harnessId: unavailable!.harnessId,
providerId: unavailable!.providerId,
modelId: unavailable!.modelId,
};
let error: unknown;
try {
await service.createSession(SCOPE, { conversationId: 'conversation-1', selection });
} catch (caught) {
error = caught;
}
expect(error).toBeInstanceOf(HarnessOperationError);
const dto = (error as HarnessOperationError).dto;
expect(dto.code).toBe('model_unavailable');
// No substitution: the DTO tuple is exactly what was requested.
expect(dto.selection).toEqual(selection);
});
it('gives create, resume, detach, evict, and end distinct observable effects', async () => {
const { service, adapter } = setup();
const selection = await availableSelection(adapter);
const created = await service.createSession(SCOPE, {
conversationId: 'conversation-create',
selection,
});
expect(created.state).toBe('idle');
expect(created.processId).toBeTruthy();
expect(created.attachedClientIds).toEqual([]);
const resumed = await service.resumeSession(SCOPE, {
conversationId: 'conversation-resume',
nativeSessionId: 'native-preexisting-123',
selection,
});
// Resume binds the supplied native session; create mints a fresh one.
expect(resumed.nativeSessionId).toBe('native-preexisting-123');
expect(resumed.nativeSessionId).not.toBe(created.nativeSessionId);
await service.attach(SCOPE, {
conversationId: 'conversation-create',
clientId: 'browser-1',
});
const afterAttach = await service.snapshot(SCOPE, 'conversation-create');
expect(afterAttach.attachedClientIds).toEqual(['browser-1']);
const afterDetach = await service.detach(SCOPE, {
conversationId: 'conversation-create',
clientId: 'browser-1',
});
// Detach removes the browser attachment only; the process stays alive.
expect(afterDetach.attachedClientIds).toEqual([]);
expect(afterDetach.state).toBe('idle');
expect(afterDetach.processId).toBeTruthy();
const afterEvict = await service.evict(SCOPE, {
conversationId: 'conversation-create',
reason: 'idle_timeout',
});
// Evict stops the process but retains the resumable native session.
expect(afterEvict.state).toBe('evicted');
expect(afterEvict.processId).toBeUndefined();
expect(afterEvict.nativeSessionId).toBe(created.nativeSessionId);
const afterEnd = await service.end(SCOPE, {
conversationId: 'conversation-create',
reason: 'session_ended',
});
// End destructively terminates the native session.
expect(afterEnd.state).toBe('ended');
});
it('fails typed when an unsupported capability is exercised', async () => {
const withoutExtensionUi = HARNESS_CAPABILITIES.filter(
(capability) => capability !== 'extensionUi',
);
const { service, adapter } = setup(withoutExtensionUi);
const selection = await availableSelection(adapter);
await service.createSession(SCOPE, { conversationId: 'conversation-1', selection });
let error: unknown;
try {
await service.respondInteraction(SCOPE, {
conversationId: 'conversation-1',
response: { requestId: 'interaction-1', type: 'confirm', accepted: true },
});
} catch (caught) {
error = caught;
}
expect(error).toBeInstanceOf(HarnessOperationError);
expect((error as HarnessOperationError).dto.code).toBe('interaction_unsupported');
});
});
-285
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@@ -1,285 +0,0 @@
import { Inject, Injectable } from '@nestjs/common';
import type {
HarnessActorContext,
HarnessAdapter,
HarnessCatalog,
HarnessCloseReason,
HarnessInteractionResponse,
HarnessSelection,
HarnessSessionHandle,
HarnessSessionSnapshot,
} from '@mosaicstack/types';
import {
HarnessAdapterUnavailableError,
HarnessRegistry,
operationError,
} from './harness.registry.js';
import { HARNESS_REGISTRY } from './harness.tokens.js';
/**
* Trusted, server-derived authority. In production this is produced by the
* Gateway from the authenticated session never from a browser/caller DTO.
*/
export interface TrustedGatewayScope {
readonly actorId: string;
readonly tenantId: string;
readonly seatId: string;
readonly correlationId: string;
}
/** Server-authority fields that must never arrive from an external request DTO. */
const FORBIDDEN_REQUEST_FIELDS = [
'actorId',
'tenantId',
'correlationId',
'seatId',
'seat',
'executable',
'executablePath',
'home',
'homeDir',
'cwd',
'workingDir',
'workingDirectory',
'nativeSessionPath',
'sessionPath',
] as const;
/** Raised when an external request DTO smuggles a server-authority field. */
export class HarnessScopeViolationError extends Error {
constructor(readonly field: string) {
super(`External request supplied server-authority field "${field}".`);
this.name = 'HarnessScopeViolationError';
}
}
export interface CreateHarnessSessionRequest {
readonly conversationId: string;
readonly selection: HarnessSelection;
}
export interface ResumeHarnessSessionRequest {
readonly conversationId: string;
readonly nativeSessionId: string;
readonly selection: HarnessSelection;
}
export interface AttachClientRequest {
readonly conversationId: string;
readonly clientId: string;
}
export interface DetachClientRequest {
readonly conversationId: string;
readonly clientId: string;
}
export interface EvictSessionRequest {
readonly conversationId: string;
readonly reason: HarnessCloseReason;
}
export interface EndSessionRequest {
readonly conversationId: string;
readonly reason: HarnessCloseReason;
}
export interface RespondInteractionRequest {
readonly conversationId: string;
readonly response: HarnessInteractionResponse;
}
interface ActiveSession {
readonly harnessId: string;
readonly handle: HarnessSessionHandle;
readonly correlationId: string;
}
/**
* Harness-neutral service. It derives the {@link HarnessActorContext} strictly
* from trusted Gateway scope, validates the selected provider/model tuple with
* NO fallback substitution, and exposes distinct create/resume/detach/evict/end
* lifecycle operations.
*/
@Injectable()
export class HarnessService {
private readonly sessions = new Map<string, ActiveSession>();
constructor(@Inject(HARNESS_REGISTRY) private readonly registry: HarnessRegistry) {}
async createSession(
scope: TrustedGatewayScope,
request: CreateHarnessSessionRequest,
): Promise<HarnessSessionSnapshot> {
assertTrustedRequest(request);
const { conversationId, selection } = request;
const adapter = this.resolveAdapter(scope, selection);
const context = deriveActorContext(scope);
await this.assertSelectionAvailable(scope, adapter.catalog(context), selection);
const handle = await adapter.create({ context, conversationId, selection });
this.sessions.set(conversationId, {
harnessId: selection.harnessId,
handle,
correlationId: scope.correlationId,
});
return handle.snapshot();
}
async resumeSession(
scope: TrustedGatewayScope,
request: ResumeHarnessSessionRequest,
): Promise<HarnessSessionSnapshot> {
assertTrustedRequest(request);
const { conversationId, nativeSessionId, selection } = request;
const adapter = this.resolveAdapter(scope, selection);
const context = deriveActorContext(scope);
await this.assertSelectionAvailable(scope, adapter.catalog(context), selection);
const handle = await adapter.resume({ context, conversationId, nativeSessionId, selection });
this.sessions.set(conversationId, {
harnessId: selection.harnessId,
handle,
correlationId: scope.correlationId,
});
return handle.snapshot();
}
async attach(
scope: TrustedGatewayScope,
request: AttachClientRequest,
): Promise<HarnessSessionSnapshot> {
assertTrustedRequest(request);
const handle = this.requireHandle(scope, request.conversationId);
await handle.attach({ clientId: request.clientId });
return handle.snapshot();
}
async detach(
scope: TrustedGatewayScope,
request: DetachClientRequest,
): Promise<HarnessSessionSnapshot> {
assertTrustedRequest(request);
const handle = this.requireHandle(scope, request.conversationId);
await handle.detach(request.clientId);
return handle.snapshot();
}
async evict(
scope: TrustedGatewayScope,
request: EvictSessionRequest,
): Promise<HarnessSessionSnapshot> {
assertTrustedRequest(request);
const handle = this.requireHandle(scope, request.conversationId);
await handle.evictProcess(request.reason);
return handle.snapshot();
}
async end(
scope: TrustedGatewayScope,
request: EndSessionRequest,
): Promise<HarnessSessionSnapshot> {
assertTrustedRequest(request);
const handle = this.requireHandle(scope, request.conversationId);
await handle.endSession(request.reason);
const snapshot = await handle.snapshot();
this.sessions.delete(request.conversationId);
return snapshot;
}
async respondInteraction(
scope: TrustedGatewayScope,
request: RespondInteractionRequest,
): Promise<void> {
assertTrustedRequest(request);
const handle = this.requireHandle(scope, request.conversationId);
await handle.respondInteraction(request.response);
}
async snapshot(
scope: TrustedGatewayScope,
conversationId: string,
): Promise<HarnessSessionSnapshot> {
const handle = this.requireHandle(scope, conversationId);
return handle.snapshot();
}
private resolveAdapter(scope: TrustedGatewayScope, selection: HarnessSelection): HarnessAdapter {
try {
return this.registry.get(selection.harnessId);
} catch (error) {
if (error instanceof HarnessAdapterUnavailableError) {
throw operationError('adapter_unavailable', error.message, selection, scope.correlationId);
}
throw error;
}
}
private async assertSelectionAvailable(
scope: TrustedGatewayScope,
catalogPromise: Promise<HarnessCatalog>,
selection: HarnessSelection,
): Promise<void> {
const catalog = await catalogPromise;
const entry = catalog.models.find(
(candidate) =>
candidate.harnessId === selection.harnessId &&
candidate.providerId === selection.providerId &&
candidate.modelId === selection.modelId,
);
if (!entry) {
// No first-row fallback: reject the requested tuple unchanged.
throw operationError(
'selection_invalid',
'The requested harness/provider/model tuple is not in the catalog.',
selection,
scope.correlationId,
);
}
if (entry.availability === 'unavailable') {
throw operationError(
'model_unavailable',
'The requested model is currently unavailable.',
selection,
scope.correlationId,
true,
);
}
}
private requireHandle(scope: TrustedGatewayScope, conversationId: string): HarnessSessionHandle {
const active = this.sessions.get(conversationId);
if (!active) {
throw operationError(
'session_not_found',
`No active harness session for conversation "${conversationId}".`,
{ harnessId: '', providerId: '', modelId: '' },
scope.correlationId,
);
}
return active.handle;
}
}
/** Build the actor context strictly from trusted scope. No caller data leaks in. */
export function deriveActorContext(scope: TrustedGatewayScope): HarnessActorContext {
return {
actorId: scope.actorId,
tenantId: scope.tenantId,
seatId: scope.seatId,
correlationId: scope.correlationId,
};
}
/** Reject any request object that carries a server-authority field. */
function assertTrustedRequest(request: object): void {
for (const field of FORBIDDEN_REQUEST_FIELDS) {
if (Object.prototype.hasOwnProperty.call(request, field)) {
throw new HarnessScopeViolationError(field);
}
}
}
// Re-export the typed operation error so callers importing from the service
// have the discriminated failure type without reaching into the registry.
export { HarnessOperationError } from './harness.registry.js';
@@ -1,45 +0,0 @@
/**
* Nest dependency-injection tokens for the harness-neutral registry and service.
*
* String tokens follow the existing Gateway convention (see `memory/memory.tokens.ts`)
* and remain valid Nest `InjectionToken`s for `@Inject(...)`.
*/
import type { HarnessConversationService } from '@mosaicstack/types';
export const HARNESS_REGISTRY = 'HARNESS_REGISTRY' as const;
export const HARNESS_SERVICE = 'HARNESS_SERVICE' as const;
export type HarnessRegistryToken = typeof HARNESS_REGISTRY;
export type HarnessServiceToken = typeof HARNESS_SERVICE;
/**
* Token for the {@link HarnessConversationService} that {@link HarnessChatRuntime}
* depends on. Until Task 14 provides a real implementation, `HarnessModule` binds
* the {@link HARNESS_CONVERSATION_SERVICE_UNAVAILABLE} sentinel here, and the
* `pi-rpc` router treats that sentinel as a hard, typed startup failure.
*/
export const HARNESS_CONVERSATION_SERVICE = 'HARNESS_CONVERSATION_SERVICE' as const;
export type HarnessConversationServiceToken = typeof HARNESS_CONVERSATION_SERVICE;
/**
* Explicit "not yet bound" value for {@link HARNESS_CONVERSATION_SERVICE}. It is a
* distinct sentinel never `null`/`undefined` so an unbound service is an
* intentional, checkable state rather than an accidental nil that could read as
* "present". Replaced by a real service in Task 14.
*/
export const HARNESS_CONVERSATION_SERVICE_UNAVAILABLE: unique symbol = Symbol(
'HARNESS_CONVERSATION_SERVICE_UNAVAILABLE',
);
/** A binding for {@link HARNESS_CONVERSATION_SERVICE}: a real service or the sentinel. */
export type HarnessConversationServiceBinding =
| HarnessConversationService
| typeof HARNESS_CONVERSATION_SERVICE_UNAVAILABLE;
/** Narrows a binding to a usable service, excluding the unavailable sentinel. */
export function isHarnessConversationServiceAvailable(
binding: HarnessConversationServiceBinding,
): binding is HarnessConversationService {
return binding !== HARNESS_CONVERSATION_SERVICE_UNAVAILABLE;
}
@@ -1,107 +0,0 @@
import { describe, expect, it } from 'vitest';
import type { HarnessActorContext, HarnessSelection } from '@mosaicstack/types';
import { HarnessOperationError } from '../harness.registry.js';
import { FakeHarnessAdapter } from './fake-harness.adapter.js';
import { runHarnessAdapterContract } from './harness-adapter.contract.js';
const CONTEXT: HarnessActorContext = {
actorId: 'actor-1',
tenantId: 'tenant-1',
seatId: 'seat-1',
correlationId: 'correlation-1',
};
// The reusable conformance suite. Task 13 re-runs it against the native Pi adapter.
runHarnessAdapterContract('FakeHarnessAdapter', () => new FakeHarnessAdapter({ id: 'fake' }));
describe('FakeHarnessAdapter no-substitution', () => {
it('never substitutes the first catalog row when a bogus selection is requested', async () => {
const adapter = new FakeHarnessAdapter({ id: 'fake' });
const catalog = await adapter.catalog(CONTEXT);
const firstRow = catalog.models[0];
if (!firstRow) {
throw new Error('fixture requires a catalog model');
}
const available = catalog.models.find(
(entry) => entry.availability === 'available' && entry.modelId !== firstRow.modelId,
);
expect(available).toBeDefined();
const selected: HarnessSelection = {
harnessId: available!.harnessId,
providerId: available!.providerId,
modelId: available!.modelId,
};
const handle = await adapter.create({
context: CONTEXT,
conversationId: 'conversation-1',
selection: selected,
});
const bogus: HarnessSelection = {
harnessId: 'fake',
providerId: 'ghost-provider',
modelId: 'ghost-model',
};
let error: unknown;
try {
await handle.setModel(bogus);
} catch (caught) {
error = caught;
}
expect(error).toBeInstanceOf(HarnessOperationError);
const dto = (error as HarnessOperationError).dto;
expect(dto.code).toBe('selection_invalid');
// The DTO echoes the exact requested tuple, unchanged.
expect(dto.selection).toEqual(bogus);
// No substitution to the first catalog row.
expect(dto.selection).not.toEqual({
harnessId: firstRow.harnessId,
providerId: firstRow.providerId,
modelId: firstRow.modelId,
});
// The active selection is untouched by the rejected request.
expect((await handle.snapshot()).selection).toEqual(selected);
});
it('reports model_unavailable with the unchanged tuple for a known but unavailable model', async () => {
const adapter = new FakeHarnessAdapter({ id: 'fake' });
const catalog = await adapter.catalog(CONTEXT);
const unavailable = catalog.models.find((entry) => entry.availability === 'unavailable');
const available = catalog.models.find((entry) => entry.availability === 'available');
expect(unavailable).toBeDefined();
expect(available).toBeDefined();
const startingSelection: HarnessSelection = {
harnessId: available!.harnessId,
providerId: available!.providerId,
modelId: available!.modelId,
};
const handle = await adapter.create({
context: CONTEXT,
conversationId: 'conversation-2',
selection: startingSelection,
});
const requested: HarnessSelection = {
harnessId: unavailable!.harnessId,
providerId: unavailable!.providerId,
modelId: unavailable!.modelId,
};
let error: unknown;
try {
await handle.setModel(requested);
} catch (caught) {
error = caught;
}
expect(error).toBeInstanceOf(HarnessOperationError);
const dto = (error as HarnessOperationError).dto;
expect(dto.code).toBe('model_unavailable');
expect(dto.selection).toEqual(requested);
expect((await handle.snapshot()).selection).toEqual(startingSelection);
});
});
@@ -1,248 +0,0 @@
import type {
AttachClient,
CreateHarnessSession,
HarnessAdapter,
HarnessActorContext,
HarnessCapability,
HarnessCatalog,
HarnessCatalogEntry,
HarnessCloseReason,
HarnessDescriptor,
HarnessEvent,
HarnessInteractionResponse,
HarnessPrompt,
HarnessPromptReceipt,
HarnessSelection,
HarnessSessionHandle,
HarnessSessionSnapshot,
HarnessSessionState,
ResumeHarnessSession,
} from '@mosaicstack/types';
import { HARNESS_CAPABILITIES } from '@mosaicstack/types';
import { operationError } from '../harness.registry.js';
export interface FakeHarnessAdapterOptions {
readonly id: string;
readonly capabilities?: readonly HarnessCapability[];
readonly catalog?: readonly HarnessCatalogEntry[];
}
const FAKE_PROVIDER = 'fake-openai';
function defaultCatalog(harnessId: string): readonly HarnessCatalogEntry[] {
return [
{
harnessId,
providerId: FAKE_PROVIDER,
modelId: 'fake-mini',
displayName: 'Fake Mini',
reasoningCapability: false,
inputTypes: ['text'],
authState: 'ready',
availability: 'available',
},
{
harnessId,
providerId: FAKE_PROVIDER,
modelId: 'fake-pro',
displayName: 'Fake Pro',
reasoningCapability: true,
inputTypes: ['text', 'image'],
authState: 'ready',
availability: 'available',
},
{
harnessId,
providerId: FAKE_PROVIDER,
modelId: 'fake-legacy',
displayName: 'Fake Legacy',
reasoningCapability: false,
inputTypes: ['text'],
authState: 'unavailable',
availability: 'unavailable',
},
];
}
function matches(entry: HarnessCatalogEntry, selection: HarnessSelection): boolean {
return (
entry.harnessId === selection.harnessId &&
entry.providerId === selection.providerId &&
entry.modelId === selection.modelId
);
}
/**
* In-memory harness session handle used by the fake adapter and by the shared
* conformance suite. It enforces the two invariants the real adapters must also
* honor: model selection is validated against the catalog and is NEVER
* substituted, and unsupported capabilities fail with a typed error.
*/
export class FakeHarnessSessionHandle implements HarnessSessionHandle {
private state: HarnessSessionState = 'idle';
private processId: string | undefined;
private readonly attachedClientIds = new Set<string>();
private readonly listeners = new Set<(event: HarnessEvent) => void>();
constructor(
private readonly conversationId: string,
private readonly nativeSessionId: string,
private readonly seatId: string,
private selection: HarnessSelection,
private readonly correlationId: string,
private readonly capabilities: readonly HarnessCapability[],
private readonly catalog: readonly HarnessCatalogEntry[],
) {
this.processId = `process-${nativeSessionId}`;
}
async snapshot(): Promise<HarnessSessionSnapshot> {
return {
conversationId: this.conversationId,
nativeSessionId: this.nativeSessionId,
processId: this.processId,
seatId: this.seatId,
selection: this.selection,
state: this.state,
attachedClientIds: [...this.attachedClientIds],
};
}
async attach(input: AttachClient): Promise<void> {
this.attachedClientIds.add(input.clientId);
}
async detach(clientId: string): Promise<void> {
// Removes the browser attachment only; the process and native session persist.
this.attachedClientIds.delete(clientId);
}
async prompt(input: HarnessPrompt & { idempotencyKey: string }): Promise<HarnessPromptReceipt> {
return {
conversationId: this.conversationId,
turnId: input.turnId,
correlationId: input.correlationId,
state: 'accepted',
selection: this.selection,
};
}
async setModel(selection: HarnessSelection): Promise<HarnessSelection> {
const entry = this.catalog.find((candidate) => matches(candidate, selection));
if (!entry) {
// No fallback to the first catalog row: reject with the requested tuple, unchanged.
throw operationError(
'selection_invalid',
'The requested harness/provider/model tuple is not in the catalog.',
selection,
this.correlationId,
);
}
if (entry.availability === 'unavailable') {
throw operationError(
'model_unavailable',
'The requested model is currently unavailable.',
selection,
this.correlationId,
true,
);
}
this.selection = selection;
return this.selection;
}
async abort(_turnId: string): Promise<void> {
// No active turn machinery in the fake; abort is a no-op acknowledgement.
}
async respondInteraction(_input: HarnessInteractionResponse): Promise<void> {
if (!this.capabilities.includes('extensionUi')) {
throw operationError(
'interaction_unsupported',
'This harness does not support interactive responses.',
this.selection,
this.correlationId,
);
}
}
events(listener: (event: HarnessEvent) => void): () => void {
this.listeners.add(listener);
return () => {
this.listeners.delete(listener);
};
}
async evictProcess(_reason: HarnessCloseReason): Promise<void> {
// Stop the process but keep the resumable native session.
this.processId = undefined;
this.state = 'evicted';
}
async endSession(_reason: HarnessCloseReason): Promise<void> {
// Destructively end the native session.
this.processId = undefined;
this.state = 'ended';
}
}
/**
* Minimal in-memory {@link HarnessAdapter} for Slice Zero. It mints a fresh
* native session id on `create` and binds the supplied one on `resume`, so the
* two paths are observably distinct.
*/
export class FakeHarnessAdapter implements HarnessAdapter {
readonly id: string;
private readonly capabilities: readonly HarnessCapability[];
private readonly catalogEntries: readonly HarnessCatalogEntry[];
private createdCount = 0;
constructor(options: FakeHarnessAdapterOptions) {
this.id = options.id;
this.capabilities = options.capabilities ?? [...HARNESS_CAPABILITIES];
this.catalogEntries = options.catalog ?? defaultCatalog(options.id);
}
async describe(_context: HarnessActorContext): Promise<HarnessDescriptor> {
return {
id: this.id,
displayName: `Fake harness (${this.id})`,
capabilities: this.capabilities,
};
}
async catalog(_context: HarnessActorContext): Promise<HarnessCatalog> {
return {
harnessId: this.id,
version: '1.0.0',
fingerprint: `fake-${this.id}-${this.catalogEntries.length}`,
models: this.catalogEntries,
};
}
async create(input: CreateHarnessSession): Promise<HarnessSessionHandle> {
this.createdCount += 1;
const nativeSessionId = `native-${input.conversationId}-${this.createdCount}`;
return new FakeHarnessSessionHandle(
input.conversationId,
nativeSessionId,
input.context.seatId,
input.selection,
input.context.correlationId,
this.capabilities,
this.catalogEntries,
);
}
async resume(input: ResumeHarnessSession): Promise<HarnessSessionHandle> {
return new FakeHarnessSessionHandle(
input.conversationId,
input.nativeSessionId,
input.context.seatId,
input.selection,
input.context.correlationId,
this.capabilities,
this.catalogEntries,
);
}
}
@@ -1,157 +0,0 @@
import { describe, expect, it } from 'vitest';
import type {
HarnessActorContext,
HarnessAdapter,
HarnessCatalogEntry,
HarnessSelection,
} from '@mosaicstack/types';
import { HarnessOperationError } from '../harness.registry.js';
const CONTEXT: HarnessActorContext = {
actorId: 'contract-actor',
tenantId: 'contract-tenant',
seatId: 'contract-seat',
correlationId: 'contract-correlation',
};
function toSelection(entry: HarnessCatalogEntry): HarnessSelection {
return { harnessId: entry.harnessId, providerId: entry.providerId, modelId: entry.modelId };
}
function pickAvailable(models: readonly HarnessCatalogEntry[]): HarnessCatalogEntry {
const entry = models.find((candidate) => candidate.availability === 'available') ?? models[0];
if (!entry) {
throw new Error('contract fixture requires at least one catalog model');
}
return entry;
}
async function captureError(run: () => Promise<unknown>): Promise<unknown> {
try {
await run();
return undefined;
} catch (caught) {
return caught;
}
}
/**
* Shared conformance suite every {@link HarnessAdapter} must pass. Slice Zero
* runs it against the fake adapter; Task 13 re-runs the identical suite against
* the native Pi adapter so both share one behavioral contract.
*/
export function runHarnessAdapterContract(
label: string,
createAdapter: () => HarnessAdapter,
): void {
describe(`harness adapter contract: ${label}`, () => {
it('mints a fresh native session on create and binds the supplied one on resume', async () => {
const adapter = createAdapter();
const catalog = await adapter.catalog(CONTEXT);
const selection = toSelection(pickAvailable(catalog.models));
const created = await (
await adapter.create({ context: CONTEXT, conversationId: 'conv-create', selection })
).snapshot();
const resumed = await (
await adapter.resume({
context: CONTEXT,
conversationId: 'conv-resume',
nativeSessionId: 'native-supplied-1',
selection,
})
).snapshot();
expect(created.nativeSessionId).toBeTruthy();
expect(resumed.nativeSessionId).toBe('native-supplied-1');
expect(created.nativeSessionId).not.toBe(resumed.nativeSessionId);
expect(created.seatId).toBe(CONTEXT.seatId);
});
it('gives detach, evict, and end distinct effects (not aliases)', async () => {
const adapter = createAdapter();
const catalog = await adapter.catalog(CONTEXT);
const selection = toSelection(pickAvailable(catalog.models));
const handle = await adapter.create({
context: CONTEXT,
conversationId: 'conv-lifecycle',
selection,
});
await handle.attach({ clientId: 'browser-1' });
await handle.detach('browser-1');
const afterDetach = await handle.snapshot();
expect(afterDetach.attachedClientIds).toEqual([]);
expect(afterDetach.state).not.toBe('evicted');
expect(afterDetach.state).not.toBe('ended');
await handle.evictProcess('idle_timeout');
const afterEvict = await handle.snapshot();
expect(afterEvict.state).toBe('evicted');
// The native session survives eviction (resumable); the process does not.
expect(afterEvict.nativeSessionId).toBe(afterDetach.nativeSessionId);
expect(afterEvict.processId).toBeUndefined();
await handle.endSession('session_ended');
const afterEnd = await handle.snapshot();
expect(afterEnd.state).toBe('ended');
// End is not an alias of evict.
expect(afterEnd.state).not.toBe(afterEvict.state);
});
it('never substitutes the first catalog row for an unknown selection', async () => {
const adapter = createAdapter();
const catalog = await adapter.catalog(CONTEXT);
const firstRow = catalog.models[0];
if (!firstRow) {
throw new Error('contract fixture requires a catalog model');
}
const start = toSelection(pickAvailable(catalog.models));
const handle = await adapter.create({
context: CONTEXT,
conversationId: 'conv-nosub',
selection: start,
});
const bogus: HarnessSelection = {
harnessId: adapter.id,
providerId: 'contract-ghost-provider',
modelId: 'contract-ghost-model',
};
const error = await captureError(() => handle.setModel(bogus));
expect(error).toBeInstanceOf(HarnessOperationError);
const dto = (error as HarnessOperationError).dto;
expect(dto.code).toBe('selection_invalid');
expect(dto.selection).toEqual(bogus);
expect(dto.selection).not.toEqual(toSelection(firstRow));
expect((await handle.snapshot()).selection).toEqual(start);
});
it('validates capability-gated interactions with a typed error, not a silent no-op', async () => {
const adapter = createAdapter();
const descriptor = await adapter.describe(CONTEXT);
const catalog = await adapter.catalog(CONTEXT);
const selection = toSelection(pickAvailable(catalog.models));
const handle = await adapter.create({
context: CONTEXT,
conversationId: 'conv-interaction',
selection,
});
const response = {
requestId: 'interaction-1',
type: 'confirm',
accepted: true,
} as const;
if (descriptor.capabilities.includes('extensionUi')) {
await expect(handle.respondInteraction(response)).resolves.toBeUndefined();
} else {
const error = await captureError(() => handle.respondInteraction(response));
expect(error).toBeInstanceOf(HarnessOperationError);
expect((error as HarnessOperationError).dto.code).toBe('interaction_unsupported');
}
});
});
}
+3 -9
View File
@@ -18,7 +18,7 @@ import type { MosaicJobData } from '../queue/queue.service.js';
@Injectable()
export class CronService implements OnModuleInit, OnModuleDestroy {
private readonly logger = new Logger(CronService.name);
private readonly registeredWorkers: Array<Worker<MosaicJobData>> = [];
private readonly registeredWorkers: Worker<MosaicJobData>[] = [];
constructor(
@Inject(SummarizationService) private readonly summarization: SummarizationService,
@@ -26,12 +26,6 @@ export class CronService implements OnModuleInit, OnModuleDestroy {
) {}
async onModuleInit(): Promise<void> {
// Local tier deliberately has no BullMQ consumers or repeatable jobs.
if (!this.queueService.isEnabled()) {
this.logger.log('CronService: BullMQ disabled on local tier — no jobs will be scheduled');
return;
}
const summarizationSchedule = process.env['SUMMARIZATION_CRON'] ?? '0 */6 * * *'; // every 6 hours
const tierManagementSchedule = process.env['TIER_MANAGEMENT_CRON'] ?? '0 3 * * *'; // daily at 3am
@@ -45,7 +39,7 @@ export class CronService implements OnModuleInit, OnModuleDestroy {
const summarizationWorker = this.queueService.registerWorker(QUEUE_SUMMARIZATION, async () => {
await this.summarization.runSummarization();
});
if (summarizationWorker) this.registeredWorkers.push(summarizationWorker);
this.registeredWorkers.push(summarizationWorker);
// M6-005: Tier management repeatable job
await this.queueService.addRepeatableJob(
@@ -57,7 +51,7 @@ export class CronService implements OnModuleInit, OnModuleDestroy {
const tierWorker = this.queueService.registerWorker(QUEUE_TIER_MANAGEMENT, async () => {
await this.summarization.runTierManagement();
});
if (tierWorker) this.registeredWorkers.push(tierWorker);
this.registeredWorkers.push(tierWorker);
// Retire any repeatable global GC schedule created by older deployments.
// Session cleanup is now triggered only by an authorized session lifecycle operation.
-164
View File
@@ -1,164 +0,0 @@
import 'reflect-metadata';
import { mkdir, mkdtemp, rm, writeFile } from 'node:fs/promises';
import * as nodeOs from 'node:os';
import { dirname, isAbsolute, join, relative, resolve } from 'node:path';
import * as nodeUrl from 'node:url';
import type { MosaicConfig } from '@mosaicstack/config';
import type * as MosaicStorage from '@mosaicstack/storage';
import { describe, expect, it, vi, type MockInstance } from 'vitest';
// Each case uses vi.resetModules() and re-imports the full gateway graph for distinct ambient FS/env; CI needs headroom, while this still guards genuine hangs.
const MODULE_IMPORT_TIMEOUT_MS = 120_000;
function snapshotProcessEnv(): Record<string, string | undefined> {
return { ...process.env };
}
function restoreProcessEnv(snapshot: Record<string, string | undefined>): void {
for (const key of Object.keys(process.env)) {
if (!(key in snapshot)) {
delete process.env[key];
}
}
for (const [key, value] of Object.entries(snapshot)) {
if (value === undefined) {
delete process.env[key];
continue;
}
process.env[key] = value;
}
}
function expectPathUnderTempRoot(path: string, tempRoot: string): void {
const relativePath = relative(tempRoot, path);
expect(relativePath === '' || (!relativePath.startsWith('..') && !isAbsolute(relativePath))).toBe(
true,
);
}
async function writeFixture(path: string, contents: string, tempRoot: string): Promise<void> {
expectPathUnderTempRoot(path, tempRoot);
await mkdir(dirname(path), { recursive: true });
await writeFile(path, contents, 'utf8');
}
interface BootstrapPreflightResult {
capturedConfig: MosaicConfig | undefined;
}
async function runBootstrapPreflight(
anchoredConfigContents: string,
ambientConfigContents: string,
): Promise<BootstrapPreflightResult> {
const originalEnv = snapshotProcessEnv();
const tempRoot = await mkdtemp(join(nodeOs.tmpdir(), 'mosaic-gateway-main-preflight-'));
let cwdSpy: ReturnType<typeof vi.spyOn> | undefined;
let exitSpy: MockInstance<typeof process.exit> | undefined;
let consoleInfoSpy: ReturnType<typeof vi.spyOn> | undefined;
let capturedConfig: MosaicConfig | undefined;
try {
const anchor = join(tempRoot, 'anchored', 'apps', 'gateway', 'src');
const homePath = join(tempRoot, 'home');
const cwdPath = join(tempRoot, 'ambient', 'cwd');
const monorepoRootConfigPath = resolve(anchor, '../../..', 'mosaic.config.json');
await mkdir(anchor, { recursive: true });
await mkdir(cwdPath, { recursive: true });
await writeFixture(monorepoRootConfigPath, anchoredConfigContents, tempRoot);
await writeFixture(join(cwdPath, 'mosaic.config.json'), ambientConfigContents, tempRoot);
process.env['HOME'] = homePath;
process.env['BETTER_AUTH_SECRET'] = 'fixture-secret';
delete process.env['MOSAIC_STORAGE_TIER'];
delete process.env['DATABASE_URL'];
delete process.env['VALKEY_URL'];
consoleInfoSpy = vi.spyOn(console, 'info').mockImplementation((): void => undefined);
const exitMock = vi.fn<typeof process.exit>();
exitSpy = vi.spyOn(process, 'exit').mockImplementation(exitMock);
vi.resetModules();
vi.doMock('node:os', () => ({ ...nodeOs, homedir: (): string => homePath }));
vi.doMock('node:url', () => ({
...nodeUrl,
fileURLToPath: (url: string | URL): string => {
const actualPath = nodeUrl.fileURLToPath(url);
if (
actualPath.endsWith('/apps/gateway/src/env.ts') ||
actualPath.endsWith('/apps/gateway/src/env.js')
) {
return join(anchor, 'env.ts');
}
return actualPath;
},
}));
cwdSpy = vi.spyOn(process, 'cwd').mockReturnValue(cwdPath);
vi.doMock('./tracing.js', () => ({}));
const preflightSentinel = new Error('preflight-capture-sentinel');
vi.doMock('@mosaicstack/storage', async () => {
const actual = await vi.importActual<typeof MosaicStorage>('@mosaicstack/storage');
return {
...actual,
detectAndAssertTier: vi.fn((config: MosaicConfig): Promise<void> => {
capturedConfig = config;
throw preflightSentinel;
}),
};
});
await import('./main.js');
await vi.waitFor((): void => {
expect(exitSpy).toHaveBeenCalled();
});
return { capturedConfig };
} finally {
cwdSpy?.mockRestore();
exitSpy?.mockRestore();
consoleInfoSpy?.mockRestore();
vi.doUnmock('@mosaicstack/storage');
vi.doUnmock('./tracing.js');
vi.doUnmock('node:url');
vi.doUnmock('node:os');
vi.resetModules();
restoreProcessEnv(originalEnv);
await rm(tempRoot, { recursive: true, force: true });
}
}
describe('main bootstrap preflight config anchoring', (): void => {
it(
'passes the anchored monorepo-root config to detectAndAssertTier, not an ambient cwd config',
async (): Promise<void> => {
const anchoredConfig = JSON.stringify({
tier: 'local',
storage: { type: 'pglite', dataDir: '.mosaic/storage-pglite' },
queue: { type: 'local', dataDir: '.mosaic/queue' },
memory: { type: 'keyword' },
});
const ambientConfig = JSON.stringify({
tier: 'federated',
storage: {
type: 'postgres',
url: 'postgresql://ambient-attacker.invalid/mosaic',
enableVector: true,
},
queue: { type: 'bullmq' },
memory: { type: 'pgvector' },
});
const { capturedConfig } = await runBootstrapPreflight(anchoredConfig, ambientConfig);
expect(capturedConfig?.tier).toBe('local');
expect(capturedConfig?.storage).not.toEqual(
expect.objectContaining({ url: 'postgresql://ambient-attacker.invalid/mosaic' }),
);
},
MODULE_IMPORT_TIMEOUT_MS,
);
});
+15 -3
View File
@@ -1,5 +1,18 @@
#!/usr/bin/env node
import './env.js';
import { config } from 'dotenv';
import { existsSync } from 'node:fs';
import { resolve, join } from 'node:path';
import { homedir } from 'node:os';
// Load .env from daemon config dir (global install / daemon mode).
// Loaded first so monorepo .env can override for local dev.
const daemonEnv = join(homedir(), '.config', 'mosaic', 'gateway', '.env');
if (existsSync(daemonEnv)) config({ path: daemonEnv });
// Load .env from monorepo root (cwd is apps/gateway when run via pnpm filter)
config({ path: resolve(process.cwd(), '../../.env') });
config(); // Also load apps/gateway/.env if present (overrides)
import './tracing.js';
import 'reflect-metadata';
import { NestFactory } from '@nestjs/core';
@@ -13,7 +26,6 @@ import { mountAuthHandler } from './auth/auth.controller.js';
import { mountMcpHandler } from './mcp/mcp.controller.js';
import { McpService } from './mcp/mcp.service.js';
import { detectAndAssertTier, TierDetectionError } from '@mosaicstack/storage';
import { resolveGatewayConfigPath } from './env.js';
async function bootstrap(): Promise<void> {
const logger = new Logger('Bootstrap');
@@ -25,7 +37,7 @@ async function bootstrap(): Promise<void> {
// Pre-flight: assert all external services required by the configured tier
// are reachable. Runs before NestFactory.create() so failures are visible
// immediately with actionable remediation hints.
const mosaicConfig = loadConfig(resolveGatewayConfigPath());
const mosaicConfig = loadConfig();
try {
await detectAndAssertTier(mosaicConfig);
} catch (err) {
@@ -1,44 +0,0 @@
import { Logger } from '@nestjs/common';
import { Client } from '@modelcontextprotocol/sdk/client/index.js';
import { afterEach, beforeEach, describe, expect, it, vi } from 'vitest';
import { McpClientService } from './mcp-client.service.js';
const MCP_LEAK_MARKER = 'MCP_LEAK_MARKER /srv/secret';
describe('McpClientService — failed connect error sanitization', () => {
const originalMcpServers = process.env['MCP_SERVERS'];
beforeEach(() => {
process.env['MCP_SERVERS'] = JSON.stringify([
{ name: 'leaky-server', url: 'http://localhost:9999/mcp' },
]);
});
afterEach(() => {
vi.restoreAllMocks();
if (originalMcpServers === undefined) {
delete process.env['MCP_SERVERS'];
} else {
process.env['MCP_SERVERS'] = originalMcpServers;
}
});
it('stores a generic serverEntry.error while logging the raw exception server-side', async () => {
vi.spyOn(Client.prototype, 'connect').mockRejectedValue(new Error(MCP_LEAK_MARKER));
const errorSpy = vi.spyOn(Logger.prototype, 'error').mockImplementation(() => undefined);
const service = new McpClientService();
await service.onModuleInit();
const statuses = service.getServerStatuses();
expect(statuses).toHaveLength(1);
expect(statuses[0]?.connected).toBe(false);
expect(statuses[0]?.error).toBe('Connection failed (see server logs).');
expect(statuses[0]?.error).not.toContain(MCP_LEAK_MARKER);
const loggedRawMarker = errorSpy.mock.calls.some((call) =>
call.some((arg) => typeof arg === 'string' && arg.includes(MCP_LEAK_MARKER)),
);
expect(loggedRawMarker).toBe(true);
});
});
@@ -189,7 +189,7 @@ export class McpClientService implements OnModuleInit, OnModuleDestroy {
);
} catch (err) {
const message = err instanceof Error ? err.message : String(err);
serverEntry.error = 'Connection failed (see server logs).';
serverEntry.error = message;
serverEntry.connected = false;
this.logger.error(`Failed to connect to MCP server "${config.name}": ${message}`);
}
@@ -12,10 +12,6 @@ import { RuntimeProviderService } from '../agent/runtime-provider-registry.servi
import { ChatGateway } from '../chat/chat.gateway.js';
import { CommandAuthorizationService } from '../commands/command-authorization.service.js';
import { validateDiscordServiceToken } from '../chat/chat.gateway-auth.js';
import { ChatRuntimeRouter } from '../chat/chat-runtime-router.js';
import { EmbeddedChatRuntime } from '../chat/embedded-chat.runtime.js';
import { HarnessChatRuntime } from '../chat/harness-chat.runtime.js';
import { HarnessRegistry } from '../harness/harness.registry.js';
import { DiscordReplayProtector } from './discord-replay-protector.js';
const SERVICE_TOKEN = 'test-service-token';
@@ -29,7 +25,6 @@ const ENV_KEYS = [
'DISCORD_ALLOWED_USER_IDS',
'MOSAIC_AGENT_NAME',
'MOSAIC_AGENT_CONFIG_ID',
'CHAT_HARNESS_RUNTIME',
] as const;
const savedEnv = new Map<string, string | undefined>();
@@ -155,57 +150,6 @@ function createPayload(overrides: Partial<DiscordIngressPayload> = {}): DiscordI
};
}
/**
* Task 5 fence (C): the Discord SEND path runs through the exclusive {@link ChatRuntimeRouter},
* constructed here in `pi-rpc` mode with a fully-resolved runtime (`active` = harness). A verified
* Discord *service* turn must nonetheless execute on the {@link EmbeddedChatRuntime} never the
* harness, never the routing engine per the Q1/Q2 adjudication: the router owns a dedicated
* verified-ingress dispatch that delegates to embedded regardless of mode, with zero harness
* fallback. The gateway is given the router in the former direct-`AgentService` constructor slot.
*
* RED today: production still reads that slot as a bare `AgentService`, so `this.agentService`
* resolves to the router, `getSession(...)` is not a function, the send path throws and is caught
* (an `error` is emitted and the handler returns) BEFORE it ever reaches the embedded runtime. The
* failure is behavioural wiring collection, DI, and `onModuleInit` all succeed. GREEN re-routes
* the verified Discord dispatch through the router into the embedded runtime, satisfying the
* preserved create/prompt assertions without weakening any control. `harnessConversations.append`
* proves the harness path is never touched even though the pi-rpc router resolved it as `active`.
*
* Correction #4 is proved behaviourally, not by naming an accessor: the verified-ingress dispatch
* is reachable only from the fully-verified `discordService` branch (the create/prompt tests below)
* and never from a browser-emittable socket event (the browser-forgery refusal test).
*/
function readyPiRpcRegistry(): HarnessRegistry {
const registry = new HarnessRegistry();
// A registered 'pi' adapter + an available (non-sentinel) conversation service let the pi-rpc
// router resolve `active` = harness instead of failing closed at init, so these tests model the
// real hostile condition — the harness runtime IS live — rather than a degraded router.
registry.register({ id: 'pi' } as never);
return registry;
}
function piRpcRouterFronting(
agentService: unknown,
harnessConversations: { append: ReturnType<typeof vi.fn> },
): ChatRuntimeRouter {
const routerConversationServiceTripwire = {
append: () => {
throw new Error('router conversation service must not be resolved on the Discord path');
},
};
const embedded = new EmbeddedChatRuntime(agentService as never);
const harness = new HarnessChatRuntime(harnessConversations as never);
const router = new ChatRuntimeRouter(
readyPiRpcRegistry(),
routerConversationServiceTripwire as never,
embedded,
harness,
'pi-rpc',
);
router.onModuleInit();
return router;
}
describe('Discord ingress security', () => {
it('keeps legacy role-only bindings valid while withholding privileged actor identity', () => {
const [binding] = parseDiscordInteractionBindings(
@@ -489,7 +433,6 @@ describe('Discord ingress security', () => {
it("selects each binding's trusted logical-agent config when creating Discord sessions", async () => {
configureDiscordEnv();
process.env['CHAT_HARNESS_RUNTIME'] = 'pi-rpc';
process.env['DISCORD_ALLOWED_CHANNEL_IDS'] = 'channel-001,channel-002';
process.env['DISCORD_INTERACTION_BINDINGS'] = JSON.stringify([
{
@@ -546,9 +489,8 @@ describe('Discord ingress security', () => {
},
};
const routingEngine = { resolve: vi.fn() };
const harnessConversations = { append: vi.fn() };
const gateway = new ChatGateway(
piRpcRouterFronting(agentService, harnessConversations) as never,
agentService as never,
{} as never,
brain as never,
{} as never,
@@ -589,378 +531,6 @@ describe('Discord ingress security', () => {
expect.objectContaining({ agentConfigId: 'agent-config-orion' }),
);
expect(routingEngine.resolve).not.toHaveBeenCalled();
// Even though the pi-rpc router resolved the harness as `active`, verified Discord ingress must
// never touch it — the create path stays on the embedded runtime.
expect(harnessConversations.append).not.toHaveBeenCalled();
});
it('dispatches a verified Discord SEND once and drops a byte-identical replay with zero additional dispatch/persist/ack (Task 5 G4)', async () => {
configureDiscordEnv();
process.env['CHAT_HARNESS_RUNTIME'] = 'pi-rpc';
process.env['DISCORD_ALLOWED_CHANNEL_IDS'] = 'channel-001';
process.env['DISCORD_INTERACTION_BINDINGS'] = JSON.stringify([
{
instanceId: 'Nova',
agentConfigId: 'agent-config-nova',
guildId: 'guild-001',
channelId: 'channel-001',
pairedUsers: {
'user-001': { role: 'operator', mosaicUserId: 'mosaic-operator-001' },
},
},
]);
const session = {
provider: 'configured-provider',
modelId: 'configured-model',
piSession: {
thinkingLevel: 'medium',
getAvailableThinkingLevels: (): string[] => ['medium'],
},
};
const createSession = vi.fn().mockResolvedValue(session);
const prompt = vi.fn().mockResolvedValue(undefined);
const agentService = {
getSession: vi.fn().mockReturnValue(undefined),
createSession,
recordMessage: vi.fn(),
onEvent: vi.fn().mockReturnValue((): void => undefined),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt,
};
const addMessage = vi.fn().mockResolvedValue({ id: 'discord-persisted-message' });
const brain = {
agents: { findById: vi.fn((id: string) => Promise.resolve({ id, name: 'Nova' })) },
conversations: {
findById: vi.fn().mockResolvedValue({ id: 'Nova:discord:channel-001' }),
findMessages: vi.fn().mockResolvedValue([]),
create: vi.fn().mockResolvedValue(undefined),
update: vi.fn().mockResolvedValue(undefined),
addMessage,
},
};
const harnessConversations = { append: vi.fn() };
const gateway = new ChatGateway(
piRpcRouterFronting(agentService, harnessConversations) as never,
{} as never,
brain as never,
{} as never,
{} as never,
{ resolve: vi.fn() } as never,
);
const client = {
id: 'discord-client-replay',
data: { discordService: true },
emit: vi.fn(),
};
const ackCount = (): number =>
client.emit.mock.calls.filter((call) => call[0] === 'message:ack').length;
// One fully-valid signed envelope; the replay reuses the SAME object (same messageId).
const envelope = ingressEnvelope('verified once', 'discord-replay-001', {
conversationId: 'Nova:discord:channel-001',
});
// First delivery: the verified-Discord SEND runs the full embedded dispatch exactly once.
await gateway.handleMessage(client as never, envelope);
expect(createSession).toHaveBeenCalledTimes(1);
expect(prompt).toHaveBeenCalledTimes(1);
expect(addMessage).toHaveBeenCalledTimes(1);
expect(ackCount()).toBe(1);
// Byte-identical replay: the messageId is already claimed, so resolveDiscordIngress returns
// null and the SEND handler bails before dispatch/persist/ack. Every effect stays at exactly one.
await gateway.handleMessage(client as never, envelope);
expect(createSession).toHaveBeenCalledTimes(1);
expect(prompt).toHaveBeenCalledTimes(1);
expect(addMessage).toHaveBeenCalledTimes(1);
expect(ackCount()).toBe(1);
// The harness runtime is never touched on either delivery.
expect(harnessConversations.append).not.toHaveBeenCalled();
});
it('a verified SEND that fails the configured service identity consumes no replay claim, so a corrected byte-identical retry dispatches/persists/acks exactly once and a later duplicate stays fail-closed (Task 5 item 4 — claim ordering)', async () => {
configureDiscordEnv();
process.env['CHAT_HARNESS_RUNTIME'] = 'pi-rpc';
process.env['DISCORD_ALLOWED_CHANNEL_IDS'] = 'channel-001';
process.env['DISCORD_INTERACTION_BINDINGS'] = JSON.stringify([
{
instanceId: 'Nova',
agentConfigId: 'agent-config-nova',
guildId: 'guild-001',
channelId: 'channel-001',
pairedUsers: {
'user-001': { role: 'operator', mosaicUserId: 'mosaic-operator-001' },
},
},
]);
const session = {
provider: 'configured-provider',
modelId: 'configured-model',
piSession: {
thinkingLevel: 'medium',
getAvailableThinkingLevels: (): string[] => ['medium'],
},
};
const createSession = vi.fn().mockResolvedValue(session);
const prompt = vi.fn().mockResolvedValue(undefined);
const agentService = {
getSession: vi.fn().mockReturnValue(undefined),
createSession,
recordMessage: vi.fn(),
onEvent: vi.fn().mockReturnValue((): void => undefined),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt,
};
const addMessage = vi.fn().mockResolvedValue({ id: 'discord-persisted-message' });
const brain = {
agents: { findById: vi.fn((id: string) => Promise.resolve({ id, name: 'Nova' })) },
conversations: {
findById: vi.fn().mockResolvedValue({ id: 'Nova:discord:channel-001' }),
findMessages: vi.fn().mockResolvedValue([]),
create: vi.fn().mockResolvedValue(undefined),
update: vi.fn().mockResolvedValue(undefined),
addMessage,
},
};
const harnessConversations = { append: vi.fn() };
const gateway = new ChatGateway(
piRpcRouterFronting(agentService, harnessConversations) as never,
{} as never,
brain as never,
{} as never,
{} as never,
{ resolve: vi.fn() } as never,
);
const client = {
id: 'discord-client-claim-ordering',
data: { discordService: true },
emit: vi.fn(),
};
const ackCount = (): number =>
client.emit.mock.calls.filter((call) => call[0] === 'message:ack').length;
// A single fully-valid signed envelope, reused byte-for-byte across all three deliveries.
const envelope = ingressEnvelope('verified once with late identity', 'discord-order-001', {
conversationId: 'Nova:discord:channel-001',
});
// (1) Configured service identity is MISSING. The envelope is validly signed and passes the
// binding + route checks, but the SEND must refuse at the identity gate BEFORE any claim
// or effect. If the claim fires ahead of that gate, this delivery silently burns the
// replay claim for `discord-order-001` even though nothing dispatched.
delete process.env['DISCORD_SERVICE_USER_ID'];
await gateway.handleMessage(client as never, envelope);
expect(createSession).toHaveBeenCalledTimes(0);
expect(prompt).toHaveBeenCalledTimes(0);
expect(addMessage).toHaveBeenCalledTimes(0);
expect(ackCount()).toBe(0);
// (2) Identity is now configured; the operator resends the SAME envelope byte-for-byte. Because
// step (1) consumed no claim, this corrected retry claims once and runs the full embedded
// dispatch exactly once. (Under the pre-fix ordering the claim was already spent in step (1),
// so this retry is dropped as a replay and never dispatches — the RED this test drives.)
process.env['DISCORD_SERVICE_USER_ID'] = 'discord-service';
await gateway.handleMessage(client as never, envelope);
expect(createSession).toHaveBeenCalledTimes(1);
expect(prompt).toHaveBeenCalledTimes(1);
expect(addMessage).toHaveBeenCalledTimes(1);
expect(ackCount()).toBe(1);
// (3) A genuine duplicate after a committed turn stays fail-closed: the claim taken in step (2)
// blocks it, so every effect remains at exactly one.
await gateway.handleMessage(client as never, envelope);
expect(createSession).toHaveBeenCalledTimes(1);
expect(prompt).toHaveBeenCalledTimes(1);
expect(addMessage).toHaveBeenCalledTimes(1);
expect(ackCount()).toBe(1);
expect(harnessConversations.append).not.toHaveBeenCalled();
});
it('a verified SEND whose configured agent record fails reconciliation consumes no replay claim, so a corrected byte-identical retry dispatches/persists/acks exactly once (Task 5 finding 3)', async () => {
configureDiscordEnv();
process.env['CHAT_HARNESS_RUNTIME'] = 'pi-rpc';
process.env['DISCORD_ALLOWED_CHANNEL_IDS'] = 'channel-001';
process.env['DISCORD_INTERACTION_BINDINGS'] = JSON.stringify([
{
instanceId: 'Nova',
agentConfigId: 'agent-config-nova',
guildId: 'guild-001',
channelId: 'channel-001',
pairedUsers: {
'user-001': { role: 'operator', mosaicUserId: 'mosaic-operator-001' },
},
},
]);
const session = {
provider: 'configured-provider',
modelId: 'configured-model',
piSession: {
thinkingLevel: 'medium',
getAvailableThinkingLevels: (): string[] => ['medium'],
},
};
const createSession = vi.fn().mockResolvedValue(session);
const prompt = vi.fn().mockResolvedValue(undefined);
const agentService = {
getSession: vi.fn().mockReturnValue(undefined),
createSession,
recordMessage: vi.fn(),
onEvent: vi.fn().mockReturnValue((): void => undefined),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt,
};
const addMessage = vi.fn().mockResolvedValue({ id: 'discord-persisted-message' });
// The durable agent record does not reconcile on the first delivery (its name no longer matches
// the verified binding's instance id), then reconciles cleanly on the corrected retry.
const findAgent = vi
.fn()
.mockResolvedValueOnce({ id: 'agent-config-nova', name: 'Renamed-Away' })
.mockResolvedValue({ id: 'agent-config-nova', name: 'Nova' });
const brain = {
agents: { findById: findAgent },
conversations: {
findById: vi.fn().mockResolvedValue({ id: 'Nova:discord:channel-001' }),
findMessages: vi.fn().mockResolvedValue([]),
create: vi.fn().mockResolvedValue(undefined),
update: vi.fn().mockResolvedValue(undefined),
addMessage,
},
};
const harnessConversations = { append: vi.fn() };
const gateway = new ChatGateway(
piRpcRouterFronting(agentService, harnessConversations) as never,
{} as never,
brain as never,
{} as never,
{} as never,
{ resolve: vi.fn() } as never,
);
const client = {
id: 'discord-client-reconcile',
data: { discordService: true },
emit: vi.fn(),
};
const ackCount = (): number =>
client.emit.mock.calls.filter((call) => call[0] === 'message:ack').length;
const envelope = ingressEnvelope(
'verified once with stale agent record',
'discord-reconcile-001',
{
conversationId: 'Nova:discord:channel-001',
},
);
// (1) The configured-agent reconcile runs BEFORE the replay claim. A mismatch refuses the turn
// and, crucially, consumes no claim for discord-reconcile-001 — nothing dispatches.
await gateway.handleMessage(client as never, envelope);
expect(createSession).toHaveBeenCalledTimes(0);
expect(prompt).toHaveBeenCalledTimes(0);
expect(addMessage).toHaveBeenCalledTimes(0);
expect(ackCount()).toBe(0);
// (2) The record now reconciles; because step (1) took no claim, this byte-identical retry claims
// once and runs the full embedded dispatch exactly once. (Pre-fix, the claim was spent ahead
// of the reconcile in step (1), so this retry was dropped as a replay — the RED this drives.)
await gateway.handleMessage(client as never, envelope);
expect(createSession).toHaveBeenCalledTimes(1);
expect(prompt).toHaveBeenCalledTimes(1);
expect(addMessage).toHaveBeenCalledTimes(1);
expect(ackCount()).toBe(1);
// (3) A genuine duplicate after the committed turn stays fail-closed.
await gateway.handleMessage(client as never, envelope);
expect(createSession).toHaveBeenCalledTimes(1);
expect(prompt).toHaveBeenCalledTimes(1);
expect(addMessage).toHaveBeenCalledTimes(1);
expect(ackCount()).toBe(1);
expect(harnessConversations.append).not.toHaveBeenCalled();
});
it('a verified SEND refuses to reuse a same-scope embedded session minted under a different configured identity, with zero prompt/persist/ack (Task 5 finding 3)', async () => {
configureDiscordEnv();
process.env['CHAT_HARNESS_RUNTIME'] = 'pi-rpc';
process.env['DISCORD_ALLOWED_CHANNEL_IDS'] = 'channel-001';
process.env['DISCORD_INTERACTION_BINDINGS'] = JSON.stringify([
{
instanceId: 'Nova',
agentConfigId: 'agent-config-nova',
guildId: 'guild-001',
channelId: 'channel-001',
pairedUsers: {
'user-001': { role: 'operator', mosaicUserId: 'mosaic-operator-001' },
},
},
]);
// A live session already exists for this conversation/scope, but it was minted under a DIFFERENT
// configured agent (Orion). The verified binding reconciles to Nova, so reusing this session would
// execute one agent's turn under another agent's verified label — the reuse guard must refuse it.
const foreignIdentitySession = {
provider: 'configured-provider',
modelId: 'configured-model',
agentConfigId: 'agent-config-orion',
agentName: 'Orion',
piSession: {
thinkingLevel: 'medium',
getAvailableThinkingLevels: (): string[] => ['medium'],
},
};
const prompt = vi.fn().mockResolvedValue(undefined);
const createSession = vi.fn().mockResolvedValue(foreignIdentitySession);
const agentService = {
getSession: vi.fn().mockReturnValue(foreignIdentitySession),
createSession,
recordMessage: vi.fn(),
onEvent: vi.fn().mockReturnValue((): void => undefined),
addChannel: vi.fn(),
removeChannel: vi.fn(),
prompt,
};
const addMessage = vi.fn().mockResolvedValue({ id: 'discord-persisted-message' });
const brain = {
agents: { findById: vi.fn((id: string) => Promise.resolve({ id, name: 'Nova' })) },
conversations: {
findById: vi.fn().mockResolvedValue({ id: 'Nova:discord:channel-001' }),
findMessages: vi.fn().mockResolvedValue([]),
create: vi.fn().mockResolvedValue(undefined),
update: vi.fn().mockResolvedValue(undefined),
addMessage,
},
};
const harnessConversations = { append: vi.fn() };
const gateway = new ChatGateway(
piRpcRouterFronting(agentService, harnessConversations) as never,
{} as never,
brain as never,
{} as never,
{} as never,
{ resolve: vi.fn() } as never,
);
const client = {
id: 'discord-client-identity-swap',
data: { discordService: true },
emit: vi.fn(),
};
await gateway.handleMessage(
client as never,
ingressEnvelope('reuse under a different identity', 'discord-identity-swap-001', {
conversationId: 'Nova:discord:channel-001',
}),
);
// Refused at the embedded reuse guard: no prompt, no persist, no ack — only a typed refusal.
expect(prompt).not.toHaveBeenCalled();
expect(addMessage).not.toHaveBeenCalled();
expect(client.emit).not.toHaveBeenCalledWith('message:ack', expect.anything());
expect(client.emit).toHaveBeenCalledWith(
'error',
expect.objectContaining({ conversationId: 'Nova:discord:channel-001' }),
);
expect(harnessConversations.append).not.toHaveBeenCalled();
});
it('retains validated persisted attachments in resumed conversation history', async () => {
@@ -1023,16 +593,11 @@ describe('Discord ingress security', () => {
it('preserves authenticated attachment metadata through persistence and agent dispatch', async () => {
configureDiscordEnv();
process.env['CHAT_HARNESS_RUNTIME'] = 'pi-rpc';
const prompt = vi.fn().mockResolvedValue(undefined);
const addMessage = vi.fn().mockResolvedValue({ id: 'discord-persisted-message' });
const addMessage = vi.fn().mockResolvedValue(undefined);
const session = {
provider: 'test-provider',
modelId: 'test-model',
// The reused embedded session carries the SAME reconciled identity as the verified binding,
// so the finding-3 session-reuse guard admits it rather than refusing an identity swap.
agentConfigId: 'agent-config-nova',
agentName: 'Nova',
piSession: {
thinkingLevel: 'medium',
getAvailableThinkingLevels: (): string[] => ['medium'],
@@ -1046,7 +611,6 @@ describe('Discord ingress security', () => {
prompt,
};
const brain = {
agents: { findById: vi.fn((id: string) => Promise.resolve({ id, name: 'Nova' })) },
conversations: {
findById: vi.fn().mockResolvedValue({ id: 'Nova:discord:channel-001' }),
create: vi.fn().mockResolvedValue(undefined),
@@ -1054,9 +618,8 @@ describe('Discord ingress security', () => {
addMessage,
},
};
const harnessConversations = { append: vi.fn() };
const gateway = new ChatGateway(
piRpcRouterFronting(agentService, harnessConversations) as never,
agentService as never,
{} as never,
brain as never,
{} as never,
@@ -1104,66 +667,6 @@ describe('Discord ingress security', () => {
}),
'discord-service',
);
// The verified Discord prompt dispatch stays on the embedded runtime; the pi-rpc harness that
// the router resolved as `active` is never reached.
expect(harnessConversations.append).not.toHaveBeenCalled();
});
it('refuses a browser-forged Discord ingress envelope in pi-rpc with a fixed typed refusal and zero dispatch', async () => {
// Correction #2 + #4 (behavioural). A browser socket is never `discordService` (that flag is
// set only on a valid service-token handshake), so it cannot forge the trusted Discord path by
// emitting an envelope-shaped payload. In pi-rpc it must receive a FIXED TYPED refusal
// (`runtime_unsupported`, the same typed code the sibling harness-fence uses) and reach neither
// the forced Discord service scope, the verified Discord operation, the embedded runtime, nor
// the harness. There is no dedicated socket event for verified ingress — the only ingress
// surface is the generic `message` handler, and a non-service client is refused there.
//
// RED today: a non-service client emitting an envelope-shaped payload falls to the browser
// branch, fails the chat-message shape check, and is dropped SILENTLY (a warn + return) with no
// typed refusal emitted — so the refusal assertion fails. Collection and construction succeed;
// the gap is behavioural. GREEN emits the fixed typed refusal before any dispatch.
configureDiscordEnv();
process.env['CHAT_HARNESS_RUNTIME'] = 'pi-rpc';
const agentService = {
getSession: vi.fn().mockReturnValue(undefined),
createSession: vi.fn(),
recordMessage: vi.fn(),
onEvent: vi.fn().mockReturnValue((): void => undefined),
addChannel: vi.fn(),
prompt: vi.fn().mockResolvedValue(undefined),
};
const harnessConversations = { append: vi.fn() };
const routingEngine = { resolve: vi.fn() };
const gateway = new ChatGateway(
piRpcRouterFronting(agentService, harnessConversations) as never,
{} as never,
{ conversations: { addMessage: vi.fn().mockResolvedValue(undefined) } } as never,
{} as never,
{} as never,
routingEngine as never,
);
const client = {
id: 'browser-forging-discord',
data: { discordService: false },
emit: vi.fn(),
};
await gateway.handleMessage(
client as never,
ingressEnvelope('forged from a browser', 'browser-forgery-001', {
conversationId: 'Nova:discord:channel-001',
}),
);
const refusal = client.emit.mock.calls.find(
([, payload]) => (payload as { code?: string } | undefined)?.code === 'runtime_unsupported',
);
expect(refusal).toBeDefined();
expect(client.emit).not.toHaveBeenCalledWith('message:ack', expect.anything());
expect(agentService.createSession).not.toHaveBeenCalled();
expect(agentService.prompt).not.toHaveBeenCalled();
expect(harnessConversations.append).not.toHaveBeenCalled();
expect(routingEngine.resolve).not.toHaveBeenCalled();
});
it('accepts a thread message through its allowed bound parent channel', () => {
@@ -1,23 +0,0 @@
import { describe, expect, it } from 'vitest';
import type { MosaicConfig } from '@mosaicstack/config';
import { SystemOverrideService } from './system-override.service.js';
const localConfig = { queue: { type: 'local' } } as MosaicConfig;
describe('SystemOverrideService local tier', () => {
it('keeps ephemeral overrides isolated by tenant and user scope', async () => {
const service = new SystemOverrideService(localConfig);
const firstScope = { tenantId: 'tenant-a', userId: 'user-a' };
const secondScope = { tenantId: 'tenant-b', userId: 'user-b' };
await service.set('shared-session', 'first override', firstScope);
await service.set('shared-session', 'second override', secondScope);
await expect(service.get('shared-session', firstScope)).resolves.toBe('first override');
await expect(service.get('shared-session', secondScope)).resolves.toBe('second override');
await service.clear('shared-session', firstScope);
await expect(service.get('shared-session', firstScope)).resolves.toBeNull();
await expect(service.get('shared-session', secondScope)).resolves.toBe('second override');
});
});
@@ -1,8 +1,6 @@
import { Inject, Injectable, Logger, Optional, type OnApplicationShutdown } from '@nestjs/common';
import { Injectable, Logger } from '@nestjs/common';
import { createQueue, type QueueHandle } from '@mosaicstack/queue';
import type { MosaicConfig } from '@mosaicstack/config';
import type { ActorTenantScope } from '../auth/session-scope.js';
import { MOSAIC_CONFIG } from '../config/config.module.js';
const scopedSessionId = (sessionId: string, scope: ActorTenantScope) =>
`${scope.tenantId}:${scope.userId}:${sessionId}`;
@@ -17,45 +15,16 @@ interface OverrideFragment {
addedAt: number;
}
interface LocalOverrideEntry {
condensed: string;
fragments: OverrideFragment[];
}
@Injectable()
export class SystemOverrideService implements OnApplicationShutdown {
export class SystemOverrideService {
private readonly logger = new Logger(SystemOverrideService.name);
private readonly handle: QueueHandle | null;
/** Local-tier fallback, keyed by the same tenant/user/session scope as Redis. */
private readonly localStore = new Map<string, LocalOverrideEntry>();
private readonly handle: QueueHandle;
constructor(
@Optional()
@Inject(MOSAIC_CONFIG)
private readonly mosaicConfig: MosaicConfig | null,
) {
this.handle = this.mosaicConfig?.queue?.type === 'local' ? null : createQueue();
}
async onApplicationShutdown(): Promise<void> {
await this.handle?.close().catch(() => {});
constructor() {
this.handle = createQueue();
}
async set(sessionId: string, override: string, scope: ActorTenantScope): Promise<void> {
if (!this.handle) {
const key = scopedSessionId(sessionId, scope);
const entry = this.localStore.get(key) ?? { condensed: '', fragments: [] };
entry.fragments.push({ text: override, addedAt: Date.now() });
entry.condensed = await this.condenseOverrides(
entry.fragments.map((fragment) => fragment.text),
);
this.localStore.set(key, entry);
this.logger.debug(
`Set system override for session ${sessionId} (local, ${entry.fragments.length} fragment(s))`,
);
return;
}
// Load existing fragments
const existing = await this.handle.redis.get(SESSION_SYSTEM_FRAGMENTS_KEY(sessionId, scope));
const fragments: OverrideFragment[] = existing
@@ -85,14 +54,10 @@ export class SystemOverrideService implements OnApplicationShutdown {
}
async get(sessionId: string, scope: ActorTenantScope): Promise<string | null> {
if (!this.handle) {
return this.localStore.get(scopedSessionId(sessionId, scope))?.condensed ?? null;
}
return this.handle.redis.get(SESSION_SYSTEM_KEY(sessionId, scope));
}
async renew(sessionId: string, scope: ActorTenantScope): Promise<void> {
if (!this.handle) return;
const pipeline = this.handle.redis.pipeline();
pipeline.expire(SESSION_SYSTEM_KEY(sessionId, scope), SYSTEM_OVERRIDE_TTL_SECONDS);
pipeline.expire(SESSION_SYSTEM_FRAGMENTS_KEY(sessionId, scope), SYSTEM_OVERRIDE_TTL_SECONDS);
@@ -100,11 +65,6 @@ export class SystemOverrideService implements OnApplicationShutdown {
}
async clear(sessionId: string, scope: ActorTenantScope): Promise<void> {
if (!this.handle) {
this.localStore.delete(scopedSessionId(sessionId, scope));
this.logger.debug(`Cleared system override for session ${sessionId} (local)`);
return;
}
await this.handle.redis.del(
SESSION_SYSTEM_KEY(sessionId, scope),
SESSION_SYSTEM_FRAGMENTS_KEY(sessionId, scope),
@@ -1,36 +0,0 @@
import { describe, expect, it, vi } from 'vitest';
import type { MosaicConfig } from '@mosaicstack/config';
import { QueueService } from './queue.service.js';
const localConfig = {
queue: { type: 'local' },
} as MosaicConfig;
describe('QueueService local tier', () => {
it('disables BullMQ and treats queue operations as local no-ops', async () => {
const service = new QueueService(null, localConfig);
expect(service.isEnabled()).toBe(false);
expect(service.getQueue('mosaic-test')).toBeNull();
expect(service.registerWorker('mosaic-test', vi.fn())).toBeNull();
await expect(
service.addRepeatableJob('mosaic-test', 'local-noop', {}, '* * * * *'),
).resolves.toBeUndefined();
await expect(service.removeRepeatableJobs('mosaic-test', 'local-noop')).resolves.toBe(0);
await expect(service.getHealthStatus()).resolves.toEqual({ queues: {}, healthy: true });
await expect(service.listJobs()).resolves.toEqual([]);
await expect(service.retryJob('mosaic-test__1')).resolves.toEqual({
ok: false,
message: 'BullMQ is disabled on local tier.',
});
await expect(service.pauseQueue('mosaic-test')).resolves.toEqual({
ok: false,
message: 'BullMQ is disabled on local tier.',
});
await expect(service.resumeQueue('mosaic-test')).resolves.toEqual({
ok: false,
message: 'BullMQ is disabled on local tier.',
});
});
});
+6 -65
View File
@@ -8,9 +8,7 @@ import {
} from '@nestjs/common';
import { Queue, Worker, type Job, type ConnectionOptions } from 'bullmq';
import type { LogService } from '@mosaicstack/log';
import type { MosaicConfig } from '@mosaicstack/config';
import { LOG_SERVICE } from '../log/log.tokens.js';
import { MOSAIC_CONFIG } from '../config/config.module.js';
import type { JobDto, JobStatus } from './queue-admin.dto.js';
// ---------------------------------------------------------------------------
@@ -110,42 +108,21 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
private readonly connection: ConnectionOptions;
private readonly queues = new Map<string, Queue<MosaicJobData>>();
private readonly workers = new Map<string, Worker<MosaicJobData>>();
/** False on Local tier — BullMQ/Redis operations become no-ops. */
private readonly enabled: boolean;
constructor(
@Optional()
@Inject(LOG_SERVICE)
private readonly logService: LogService | null,
@Optional()
@Inject(MOSAIC_CONFIG)
private readonly mosaicConfig: MosaicConfig | null,
) {
this.enabled = this.mosaicConfig?.queue?.type !== 'local';
this.connection = this.enabled
? getConnection()
: ({ host: '127.0.0.1', port: 6380 } as ConnectionOptions);
}
/** Returns true when BullMQ/Redis is active (Standalone and Federated tiers). */
isEnabled(): boolean {
return this.enabled;
this.connection = getConnection();
}
onModuleInit(): void {
if (this.enabled) {
this.logger.log('QueueService initialised (BullMQ)');
} else {
this.logger.log(
'QueueService: BullMQ disabled for local tier — no Redis connections will be opened',
);
}
this.logger.log('QueueService initialised (BullMQ)');
}
async onModuleDestroy(): Promise<void> {
if (this.enabled) {
await this.closeAll();
}
await this.closeAll();
}
// -------------------------------------------------------------------------
@@ -154,10 +131,8 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
/**
* Get or create a BullMQ Queue for the given queue name.
* Returns null on Local tier where BullMQ is disabled.
*/
getQueue<T extends MosaicJobData = MosaicJobData>(name: string): Queue<T> | null {
if (!this.enabled) return null;
getQueue<T extends MosaicJobData = MosaicJobData>(name: string): Queue<T> {
let queue = this.queues.get(name) as Queue<T> | undefined;
if (!queue) {
queue = new Queue<T>(name, { connection: this.connection });
@@ -169,7 +144,6 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
/**
* Add a BullMQ repeatable job (cron-style).
* Uses `jobId` as a deterministic key so duplicate registrations are idempotent.
* No-op on Local tier.
*/
async addRepeatableJob<T extends MosaicJobData>(
queueName: string,
@@ -177,13 +151,7 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
data: T,
cronExpression: string,
): Promise<void> {
if (!this.enabled) {
this.logger.debug(
`Skipping repeatable job "${jobName}" on "${queueName}" (local tier — BullMQ disabled)`,
);
return;
}
const queue = this.getQueue<T>(queueName)!;
const queue = this.getQueue<T>(queueName);
// eslint-disable-next-line @typescript-eslint/no-explicit-any
await (queue as Queue<any>).add(jobName, data, {
repeat: { pattern: cronExpression },
@@ -199,14 +167,7 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
* safe retirement of previously registered system-wide jobs.
*/
async removeRepeatableJobs(queueName: string, jobName: string): Promise<number> {
if (!this.enabled) {
this.logger.debug(
`Skipping repeatable-job removal for "${jobName}" on "${queueName}" (local tier — BullMQ disabled)`,
);
return 0;
}
const queue = this.getQueue(queueName);
if (!queue) return 0;
const jobs = await queue.getRepeatableJobs();
const matchingJobs = jobs.filter((job) => job.name === jobName);
await Promise.all(matchingJobs.map((job) => queue.removeRepeatableByKey(job.key)));
@@ -221,18 +182,8 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
/**
* Register a Worker for the given queue name with error handling and
* exponential backoff.
* Returns null on Local tier where BullMQ is disabled.
*/
registerWorker<T extends MosaicJobData>(
queueName: string,
handler: JobHandler<T>,
): Worker<T> | null {
if (!this.enabled) {
this.logger.debug(
`Skipping worker registration for "${queueName}" (local tier — BullMQ disabled)`,
);
return null;
}
registerWorker<T extends MosaicJobData>(queueName: string, handler: JobHandler<T>): Worker<T> {
const worker = new Worker<T>(
queueName,
async (job) => {
@@ -289,12 +240,8 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
/**
* Return queue health statistics for all managed queues.
* Returns an empty healthy result on Local tier.
*/
async getHealthStatus(): Promise<QueueHealthStatus> {
if (!this.enabled) {
return { queues: {}, healthy: true };
}
const queues: QueueHealthStatus['queues'] = {};
let healthy = true;
@@ -325,10 +272,8 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
/**
* List jobs across all managed queues, optionally filtered by status.
* BullMQ jobs are fetched by state type from each queue.
* Returns empty array on Local tier.
*/
async listJobs(status?: JobStatus): Promise<JobDto[]> {
if (!this.enabled) return [];
const jobs: JobDto[] = [];
const states: JobStatus[] = status
? [status]
@@ -355,10 +300,8 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
* Retry a specific failed job by its BullMQ job ID (format: "queueName:id").
* The caller passes "<queueName>__<jobId>" as the composite ID because BullMQ
* job IDs are not globally unique they are scoped to their queue.
* Returns an error on Local tier.
*/
async retryJob(compositeId: string): Promise<{ ok: boolean; message: string }> {
if (!this.enabled) return { ok: false, message: 'BullMQ is disabled on local tier.' };
const sep = compositeId.lastIndexOf('__');
if (sep === -1) {
return { ok: false, message: 'Invalid job id format. Expected "<queue>__<jobId>".' };
@@ -390,7 +333,6 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
* Pause a queue by name.
*/
async pauseQueue(name: string): Promise<{ ok: boolean; message: string }> {
if (!this.enabled) return { ok: false, message: 'BullMQ is disabled on local tier.' };
const queue = this.queues.get(name);
if (!queue) return { ok: false, message: `Queue "${name}" not found.` };
await queue.pause();
@@ -402,7 +344,6 @@ export class QueueService implements OnModuleInit, OnModuleDestroy {
* Resume a paused queue by name.
*/
async resumeQueue(name: string): Promise<{ ok: boolean; message: string }> {
if (!this.enabled) return { ok: false, message: 'BullMQ is disabled on local tier.' };
const queue = this.queues.get(name);
if (!queue) return { ok: false, message: `Queue "${name}" not found.` };
await queue.resume();
@@ -1,8 +1,5 @@
import { Logger } from '@nestjs/common';
import { describe, expect, it, vi } from 'vitest';
import type { SlashCommandPayload, SystemReloadPayload } from '@mosaicstack/types';
import { ReloadService } from './reload.service.js';
import { CommandExecutorService } from '../commands/command-executor.service.js';
function createMockCommandRegistry() {
return {
@@ -107,85 +104,3 @@ describe('ReloadService', () => {
expect(() => service.registerPlugin('my-plugin', {})).not.toThrow();
});
});
describe('ReloadService — /reload command sanitizes plugin errors', () => {
it('generic per-plugin errors reach the chat surface while raw markers stay server-side only', async () => {
const registry = {
getManifest: vi.fn().mockReturnValue({
version: 1,
commands: [
{ name: 'reload', aliases: [], scope: 'core', execution: 'socket', available: true },
],
skills: [],
}),
};
const reloadService = new ReloadService(registry as never);
const RELOAD_LOAD_LEAK_MARKER = 'RELOAD_LOAD_LEAK_MARKER /srv/load-secret';
const RELOAD_UNLOAD_LEAK_MARKER = 'RELOAD_UNLOAD_LEAK_MARKER /srv/unload-secret';
reloadService.registerPlugin('unload-fails', {
pluginName: 'unload-fails',
onLoad: vi.fn().mockResolvedValue(undefined),
onUnload: vi.fn().mockRejectedValue(new Error(RELOAD_UNLOAD_LEAK_MARKER)),
});
reloadService.registerPlugin('load-fails', {
pluginName: 'load-fails',
onLoad: vi.fn().mockRejectedValue(new Error(RELOAD_LOAD_LEAK_MARKER)),
onUnload: vi.fn().mockResolvedValue(undefined),
});
const errorSpy = vi.spyOn(Logger.prototype, 'error').mockImplementation(() => undefined);
const broadcastReload = vi.fn();
const mockChatGateway = { broadcastReload };
const mockAgentService = { getSession: vi.fn(), applyAgentConfig: vi.fn() };
const mockSystemOverride = { set: vi.fn(), get: vi.fn(), clear: vi.fn() };
const mockSessionGC = { sweepOrphans: vi.fn() };
const mockBrain = { agents: { findByName: vi.fn(), findById: vi.fn(), create: vi.fn() } };
const mockMcpClient = {
getServerStatuses: vi.fn(() => []),
getToolDefinitions: vi.fn(() => []),
reconnectServer: vi.fn().mockResolvedValue(undefined),
};
const executor = new CommandExecutorService(
registry as never,
mockAgentService as never,
mockSystemOverride as never,
mockSessionGC as never,
null,
mockBrain as never,
reloadService,
mockChatGateway as never,
mockMcpClient as never,
);
const payload: SlashCommandPayload = { command: 'reload', conversationId: 'conv-1' };
const result = await executor.execute(payload, { userId: 'user-1', tenantId: 'user-1' });
expect(result.success).toBe(true);
expect(result.message).toContain('unload-fails: unload failed (internal error)');
expect(result.message).toContain('load-fails: load failed (internal error)');
expect(result.message).not.toContain(RELOAD_UNLOAD_LEAK_MARKER);
expect(result.message).not.toContain(RELOAD_LOAD_LEAK_MARKER);
expect(broadcastReload).toHaveBeenCalledOnce();
const broadcastPayload = broadcastReload.mock.calls[0]?.[0] as SystemReloadPayload;
expect(broadcastPayload.message).toContain('unload-fails: unload failed (internal error)');
expect(broadcastPayload.message).toContain('load-fails: load failed (internal error)');
expect(broadcastPayload.message).not.toContain(RELOAD_UNLOAD_LEAK_MARKER);
expect(broadcastPayload.message).not.toContain(RELOAD_LOAD_LEAK_MARKER);
const loggedUnloadMarker = errorSpy.mock.calls.some((call) =>
call.some((arg) => typeof arg === 'string' && arg.includes(RELOAD_UNLOAD_LEAK_MARKER)),
);
const loggedLoadMarker = errorSpy.mock.calls.some((call) =>
call.some((arg) => typeof arg === 'string' && arg.includes(RELOAD_LOAD_LEAK_MARKER)),
);
expect(loggedUnloadMarker).toBe(true);
expect(loggedLoadMarker).toBe(true);
errorSpy.mockRestore();
});
});
+2 -4
View File
@@ -58,8 +58,7 @@ export class ReloadService implements OnApplicationBootstrap, OnApplicationShutd
await plugin.onUnload();
reloaded.push(name);
} catch (err) {
this.logger.error(`Plugin "${name}" failed during onUnload: ${err}`);
errors.push(`${name}: unload failed (internal error)`);
errors.push(`${name}: unload failed — ${err}`);
}
}
}
@@ -70,8 +69,7 @@ export class ReloadService implements OnApplicationBootstrap, OnApplicationShutd
try {
await plugin.onLoad();
} catch (err) {
this.logger.error(`Plugin "${name}" failed during onLoad: ${err}`);
errors.push(`${name}: load failed (internal error)`);
errors.push(`${name}: load failed ${err}`);
}
}
}
@@ -1,104 +0,0 @@
import 'reflect-metadata';
import {
type CanActivate,
type ExecutionContext,
type INestApplication,
ValidationPipe,
} from '@nestjs/common';
import { FastifyAdapter, type NestFastifyApplication } from '@nestjs/platform-fastify';
import { Test } from '@nestjs/testing';
import request from 'supertest';
import { afterAll, beforeAll, beforeEach, describe, expect, it, vi } from 'vitest';
import { AuthGuard } from '../auth/auth.guard.js';
import { ProjectBootstrapService } from './project-bootstrap.service.js';
import { WorkspaceController } from './workspace.controller.js';
const bootstrapMock = vi.fn(() =>
Promise.resolve({
projectId: 'project-1',
workspacePath: '/opt/mosaic/.workspaces/users/user-1/project-1',
}),
);
const authGuard: CanActivate = {
canActivate(context: ExecutionContext): boolean {
const requestContext = context.switchToHttp().getRequest<{ user?: { id: string } }>();
requestContext.user = { id: 'user-1' };
return true;
},
};
describe('POST /api/workspaces repoUrl validation', () => {
let app: INestApplication;
beforeAll(async () => {
const moduleRef = await Test.createTestingModule({
controllers: [WorkspaceController],
providers: [
{
provide: ProjectBootstrapService,
useValue: { bootstrap: bootstrapMock },
},
],
})
.overrideGuard(AuthGuard)
.useValue(authGuard)
.compile();
app = moduleRef.createNestApplication<NestFastifyApplication>(new FastifyAdapter());
app.useGlobalPipes(
new ValidationPipe({
whitelist: true,
forbidNonWhitelisted: true,
transform: true,
}),
);
await app.init();
await app.getHttpAdapter().getInstance().ready();
});
beforeEach(() => {
bootstrapMock.mockClear();
});
afterAll(async () => {
await app.close();
});
it.each([
['a leading-dash value', '--upload-pack=sh -c id'],
['an ext remote helper', 'ext::sh -c id'],
['a file URL', 'file:///tmp/repository'],
['an unparseable value', 'not a url'],
['an SSH shorthand', '[email protected]:acme/repository.git'],
['a scheme without //', 'https:example.com/acme/repository.git'],
['a hostless git URL', 'git:///tmp/repository'],
])('returns 400 for %s', async (_description, repoUrl) => {
const response = await request(app.getHttpServer())
.post('/api/workspaces')
.send({ name: 'Example', repoUrl })
.set('Content-Type', 'application/json');
expect(response.status).toBe(400);
expect(bootstrapMock).not.toHaveBeenCalled();
});
it.each([
['a plain HTTPS repository URL', 'https://example.com/acme/repository.git'],
['a git protocol repository URL', 'git://example.com/acme/repository.git'],
])('accepts %s', async (_description, repoUrl) => {
const response = await request(app.getHttpServer())
.post('/api/workspaces')
.send({ name: 'Example', repoUrl })
.set('Content-Type', 'application/json');
expect(response.status).toBe(201);
expect(bootstrapMock).toHaveBeenCalledWith({
name: 'Example',
description: undefined,
userId: 'user-1',
teamId: undefined,
repoUrl,
});
});
});
@@ -1,11 +1,7 @@
import { Body, Controller, Post, UseGuards } from '@nestjs/common';
import { AuthGuard } from '../auth/auth.guard.js';
import { CurrentUser } from '../auth/current-user.decorator.js';
import {
ProjectBootstrapService,
type BootstrapProjectResult,
} from './project-bootstrap.service.js';
import { CreateWorkspaceDto } from './workspace.dto.js';
import { ProjectBootstrapService } from './project-bootstrap.service.js';
@Controller('api/workspaces')
@UseGuards(AuthGuard)
@@ -15,14 +11,20 @@ export class WorkspaceController {
@Post()
async create(
@CurrentUser() user: { id: string },
@Body() dto: CreateWorkspaceDto,
): Promise<BootstrapProjectResult> {
@Body()
body: {
name: string;
description?: string;
teamId?: string;
repoUrl?: string;
},
) {
return this.bootstrap.bootstrap({
name: dto.name,
description: dto.description,
name: body.name,
description: body.description,
userId: user.id,
teamId: dto.teamId,
repoUrl: dto.repoUrl,
teamId: body.teamId,
repoUrl: body.repoUrl,
});
}
}
@@ -1,33 +0,0 @@
import { IsOptional, IsString, IsUrl, Matches, MaxLength } from 'class-validator';
export class CreateWorkspaceDto {
@IsString()
@MaxLength(255)
name!: string;
@IsOptional()
@IsString()
@MaxLength(10_000)
description?: string;
@IsOptional()
@IsString()
teamId?: string;
@IsOptional()
@IsString()
@Matches(/^(?:https|git):\/\//i, {
message: 'repoUrl must be a valid https:// or git:// URL',
})
@IsUrl(
{
protocols: ['https', 'git'],
require_host: true,
require_protocol: true,
require_tld: false,
require_valid_protocol: true,
},
{ message: 'repoUrl must be a valid https:// or git:// URL' },
)
repoUrl?: string;
}
@@ -1,33 +1,11 @@
import { BadRequestException } from '@nestjs/common';
import fs from 'node:fs/promises';
import os from 'node:os';
import path from 'node:path';
import { afterEach, beforeEach, describe, expect, it, vi } from 'vitest';
import { describe, it, expect, beforeEach } from 'vitest';
import { WorkspaceService } from './workspace.service.js';
type ExecFileMock = (
command: string,
args: readonly string[],
options: { cwd: string },
callback: (error: Error | null, stdout: string, stderr: string) => void,
) => void;
const { execFileMock } = vi.hoisted(() => ({
execFileMock: vi.fn<ExecFileMock>(),
}));
vi.mock('node:child_process', () => ({
execFile: execFileMock,
}));
import path from 'node:path';
describe('WorkspaceService', () => {
let service: WorkspaceService;
beforeEach(() => {
execFileMock.mockReset();
execFileMock.mockImplementation((_command, _args, _options, callback) => {
callback(null, '', '');
});
service = new WorkspaceService();
});
@@ -98,69 +76,4 @@ describe('WorkspaceService', () => {
}
});
});
describe('create', () => {
const project = {
id: 'project-1',
ownerType: 'user',
userId: 'user-1',
teamId: null,
} as const;
let originalRoot: string | undefined;
let temporaryRoot: string;
beforeEach(async () => {
originalRoot = process.env['MOSAIC_ROOT'];
temporaryRoot = await fs.mkdtemp(path.join(os.tmpdir(), 'mosaic-workspace-'));
process.env['MOSAIC_ROOT'] = temporaryRoot;
service = new WorkspaceService();
});
afterEach(async () => {
if (originalRoot === undefined) {
delete process.env['MOSAIC_ROOT'];
} else {
process.env['MOSAIC_ROOT'] = originalRoot;
}
await fs.rm(temporaryRoot, { recursive: true, force: true });
});
it.each([
['a leading-dash URL', '--upload-pack=sh -c id'],
['an ext remote helper', 'ext::sh -c id'],
['a file URL', 'file:///tmp/repository'],
['an unparseable value', 'not a url'],
['an SSH shorthand', '[email protected]:acme/repository.git'],
['a scheme without //', 'https:example.com/acme/repository.git'],
['a hostless git URL', 'git:///tmp/repository'],
])('rejects %s before invoking git', async (_description, repoUrl) => {
await expect(service.create(project, repoUrl)).rejects.toBeInstanceOf(BadRequestException);
expect(execFileMock).not.toHaveBeenCalled();
});
it.each([
['an HTTPS URL', 'https://example.com/acme/repository.git'],
['a git protocol URL', 'git://example.com/acme/repository.git'],
])('accepts %s and invokes hardened git clone arguments', async (_description, repoUrl) => {
const workspacePath = await service.create(project, repoUrl);
expect(execFileMock).toHaveBeenCalledOnce();
expect(execFileMock).toHaveBeenCalledWith(
'git',
[
'-c',
'protocol.ext.allow=never',
'-c',
'protocol.file.allow=never',
'clone',
'--',
repoUrl,
'.',
],
{ cwd: workspacePath },
expect.any(Function),
);
});
});
});
@@ -1,30 +1,10 @@
import { BadRequestException, Injectable, Logger } from '@nestjs/common';
import { Injectable, Logger } from '@nestjs/common';
import fs from 'node:fs/promises';
import path from 'node:path';
import { execFile } from 'node:child_process';
import { promisify } from 'node:util';
const execFileAsync = promisify(execFile);
const allowedRepositoryProtocols = new Set(['https:', 'git:']);
const repositoryUrlPrefixPattern = /^(?:https|git):\/\//i;
const repositoryUrlError = 'repoUrl must be a valid https:// or git:// URL';
function assertAllowedRepositoryUrl(repoUrl: string): void {
if (repoUrl.startsWith('-') || !repositoryUrlPrefixPattern.test(repoUrl)) {
throw new BadRequestException(repositoryUrlError);
}
let parsedUrl: URL;
try {
parsedUrl = new URL(repoUrl);
} catch {
throw new BadRequestException(repositoryUrlError);
}
if (!allowedRepositoryProtocols.has(parsedUrl.protocol) || parsedUrl.hostname.length === 0) {
throw new BadRequestException(repositoryUrlError);
}
}
export interface WorkspaceProject {
id: string;
@@ -59,32 +39,14 @@ export class WorkspaceService {
* If repoUrl is provided, clone instead of init.
*/
async create(project: WorkspaceProject, repoUrl?: string): Promise<string> {
if (repoUrl !== undefined) {
assertAllowedRepositoryUrl(repoUrl);
}
const workspacePath = this.resolvePath(project);
// Create directory
await fs.mkdir(workspacePath, { recursive: true });
if (repoUrl !== undefined) {
// Clone existing repo. Defense in depth keeps dangerous local helpers
// disabled and terminates option parsing before positional arguments.
await execFileAsync(
'git',
[
'-c',
'protocol.ext.allow=never',
'-c',
'protocol.file.allow=never',
'clone',
'--',
repoUrl,
'.',
],
{ cwd: workspacePath },
);
if (repoUrl) {
// Clone existing repo
await execFileAsync('git', ['clone', repoUrl, '.'], { cwd: workspacePath });
this.logger.log(`Cloned ${repoUrl} into workspace ${workspacePath}`);
} else {
// Init new git repo
-30
View File
@@ -1,30 +0,0 @@
<!doctype html>
<html lang="en">
<head>
<meta charset="UTF-8" />
<meta name="viewport" content="width=device-width, initial-scale=1.0" />
<title>Mosaic</title>
<meta name="description" content="Mosaic Stack Dashboard" />
<link rel="preconnect" href="https://fonts.googleapis.com" />
<link rel="preconnect" href="https://fonts.gstatic.com" crossorigin />
<link
rel="stylesheet"
href="https://fonts.googleapis.com/css2?family=Outfit:wght@300;400;500;600;700&family=Fira+Code:wght@400;500&display=swap"
/>
<script>
// set data-theme before first paint so the stored theme never flashes
(function () {
try {
var theme = window.localStorage.getItem('mosaic-theme') || 'dark';
document.documentElement.setAttribute('data-theme', theme === 'light' ? 'light' : 'dark');
} catch (error) {
document.documentElement.setAttribute('data-theme', 'dark');
}
})();
</script>
</head>
<body>
<div id="root"></div>
<script type="module" src="/src/main.tsx"></script>
</body>
</html>
+4 -10
View File
@@ -3,26 +3,22 @@
"version": "0.0.2",
"private": true,
"scripts": {
"build": "node ../../scripts/build-web.mjs",
"build:vite": "vite build",
"dev": "next dev -p 3101",
"dev:vite": "vite",
"build": "next build",
"dev": "next dev",
"lint": "eslint src",
"typecheck": "tsc --noEmit",
"test": "vitest run --passWithNoTests",
"test:e2e": "playwright test",
"start": "next start -p 3101"
"start": "next start"
},
"dependencies": {
"@mosaicstack/design-tokens": "workspace:^",
"@mosaicstack/types": "workspace:^",
"better-auth": "^1.5.5",
"clsx": "^2.1.0",
"next": "^16.0.0",
"react": "^19.0.0",
"react-dom": "^19.0.0",
"react-markdown": "^10.1.0",
"react-router-dom": "^7.18.2",
"socket.io-client": "^4.8.0",
"tailwind-merge": "^3.5.0"
},
@@ -32,11 +28,9 @@
"@types/node": "^22.0.0",
"@types/react": "^19.0.0",
"@types/react-dom": "^19.0.0",
"@vitejs/plugin-react": "^6.0.5",
"jsdom": "^29.0.0",
"tailwindcss": "^4.0.0",
"typescript": "^5.8.0",
"vite": "^8.2.1",
"vitest": "^3.2.7"
"vitest": "^2.0.0"
}
}
@@ -3,56 +3,41 @@
import Link from 'next/link';
import { useEffect, useState } from 'react';
import { useParams, useSearchParams } from 'next/navigation';
import { api } from '@/lib/api';
import { resolveAuthCallbackURL } from '@/lib/auth-redirect';
import { signIn } from '@/lib/auth-client';
import type { SsoProviderDiscovery } from '@/lib/sso';
import { getSsoProvider } from '@/lib/sso-providers';
export default function AuthProviderRedirectPage(): React.ReactElement {
const params = useParams<{ provider: string }>();
const searchParams = useSearchParams();
const providerId = typeof params.provider === 'string' ? params.provider : '';
const requestedCallbackURL = searchParams.get('callbackURL');
const [providerName, setProviderName] = useState<string | null>(null);
const provider = getSsoProvider(providerId);
const callbackURL = searchParams.get('callbackURL') ?? '/chat';
const [error, setError] = useState<string | null>(null);
useEffect(() => {
const currentProvider = provider;
if (!currentProvider) {
setError('Unknown SSO provider.');
return;
}
if (!currentProvider.enabled) {
setError(`${currentProvider.buttonLabel} is not enabled in this deployment.`);
return;
}
const activeProvider = currentProvider;
let cancelled = false;
async function redirectToProvider(): Promise<void> {
try {
const callbackURL = resolveAuthCallbackURL(requestedCallbackURL, window.location.origin);
const providers = await api<SsoProviderDiscovery[]>('/api/sso/providers');
if (cancelled) return;
const result = await signIn.oauth2({
providerId: activeProvider.id,
callbackURL,
});
const provider = providers.find((candidate) => candidate.id === providerId);
if (!provider) {
setError('Unknown SSO provider.');
return;
}
setProviderName(provider.name);
if (!provider.configured) {
setError(`${provider.name} is not enabled in this deployment.`);
return;
}
if (provider.loginMode !== 'oidc') {
setError(`${provider.name} is not available for OIDC sign in.`);
return;
}
const result = await signIn.oauth2({
providerId: provider.id,
callbackURL,
});
if (!cancelled && result?.error) {
setError(result.error.message ?? `${provider.name} sign in failed.`);
}
} catch (caught: unknown) {
if (!cancelled) {
setError(caught instanceof Error ? caught.message : 'Unable to start single sign-on.');
}
if (!cancelled && result?.error) {
setError(result.error.message ?? `${activeProvider.buttonLabel} sign in failed.`);
}
}
@@ -61,22 +46,19 @@ export default function AuthProviderRedirectPage(): React.ReactElement {
return () => {
cancelled = true;
};
}, [providerId, requestedCallbackURL]);
}, [callbackURL, provider]);
return (
<div className="mx-auto flex min-h-[50vh] max-w-md flex-col justify-center">
<h1 className="text-2xl font-semibold text-text-primary">Single sign-on</h1>
<p className="mt-2 text-sm text-text-secondary">
{providerName
? `Redirecting you to ${providerName}...`
{provider
? `Redirecting you to ${provider.buttonLabel.replace('Continue with ', '')}...`
: 'Preparing your sign-in request...'}
</p>
{error ? (
<div
role="alert"
className="mt-6 rounded-lg border border-error/30 bg-error/10 px-4 py-3 text-sm text-error"
>
<div className="mt-6 rounded-lg border border-error/30 bg-error/10 px-4 py-3 text-sm text-error">
<p>{error}</p>
<Link
href="/login"
-57
View File
@@ -1,57 +0,0 @@
import { afterEach, describe, expect, it, vi } from 'vitest';
import { api } from './api';
describe('api', () => {
afterEach(() => {
vi.unstubAllGlobals();
});
it('fetches the supplied relative path with credentials and a JSON body', async () => {
const fetchMock = vi.fn<typeof fetch>();
fetchMock.mockResolvedValue(
new Response(JSON.stringify({ ok: true }), {
status: 200,
headers: { 'Content-Type': 'application/json' },
}),
);
vi.stubGlobal('fetch', fetchMock);
await expect(
api<{ ok: boolean }>('/api/projects', {
method: 'POST',
body: { name: 'Mosaic' },
}),
).resolves.toEqual({ ok: true });
expect(fetchMock).toHaveBeenCalledOnce();
expect(fetchMock).toHaveBeenCalledWith(
'/api/projects',
expect.objectContaining({
method: 'POST',
credentials: 'include',
body: JSON.stringify({ name: 'Mosaic' }),
headers: expect.objectContaining({
Accept: 'application/json',
'Content-Type': 'application/json',
}),
}),
);
});
it('throws the gateway JSON error with its statusCode', async () => {
const fetchMock = vi.fn<typeof fetch>();
fetchMock.mockResolvedValue(
new Response(JSON.stringify({ statusCode: 403, message: 'Forbidden' }), {
status: 403,
headers: { 'Content-Type': 'application/json' },
}),
);
vi.stubGlobal('fetch', fetchMock);
await expect(api('/api/admin/users')).rejects.toMatchObject({
name: 'Error',
message: 'Forbidden',
statusCode: 403,
});
});
});
+3 -1
View File
@@ -1,3 +1,5 @@
const GATEWAY_URL = process.env['NEXT_PUBLIC_GATEWAY_URL'] ?? 'http://localhost:14242';
export interface ApiRequestInit extends Omit<RequestInit, 'body'> {
body?: unknown;
}
@@ -23,7 +25,7 @@ export async function api<T>(path: string, init?: ApiRequestInit): Promise<T> {
headers['Content-Type'] = 'application/json';
}
const res = await fetch(path, {
const res = await fetch(`${GATEWAY_URL}${path}`, {
credentials: 'include',
...rest,
headers,
-29
View File
@@ -1,29 +0,0 @@
import { afterEach, describe, expect, it, vi } from 'vitest';
describe('auth client origin contract', () => {
afterEach(() => {
vi.unstubAllGlobals();
vi.resetModules();
});
it('uses the same-origin BetterAuth mount at /api/auth', async () => {
const fetchMock = vi.fn<typeof fetch>();
fetchMock.mockResolvedValue(
new Response(JSON.stringify({ session: null, user: null }), {
status: 200,
headers: { 'Content-Type': 'application/json' },
}),
);
vi.stubGlobal('fetch', fetchMock);
const { authClient } = await import('./auth-client');
await authClient.getSession();
expect(fetchMock).toHaveBeenCalledOnce();
const firstCall = fetchMock.mock.calls.at(0);
expect(firstCall).toBeDefined();
const requestURL = new URL(String(firstCall?.[0]), window.location.origin);
expect(requestURL.origin).toBe(window.location.origin);
expect(requestURL.pathname).toBe('/api/auth/get-session');
});
});
+1 -2
View File
@@ -1,9 +1,8 @@
import { createAuthClient } from 'better-auth/react';
import { adminClient, genericOAuthClient } from 'better-auth/client/plugins';
// The gateway and BetterAuth client both use /api/auth. Omitting baseURL keeps
// every browser request on the current origin in development and production.
export const authClient = createAuthClient({
baseURL: process.env['NEXT_PUBLIC_GATEWAY_URL'] ?? 'http://localhost:14242',
plugins: [adminClient(), genericOAuthClient()],
});
-30
View File
@@ -1,30 +0,0 @@
import { describe, expect, it } from 'vitest';
import { resolveAuthCallbackURL } from './auth-redirect';
const CURRENT_ORIGIN = 'https://mosaic.example';
describe('resolveAuthCallbackURL', () => {
it('preserves a canonical same-origin path with search and hash', () => {
expect(resolveAuthCallbackURL('/projects?view=active#current', CURRENT_ORIGIN)).toBe(
'/projects?view=active#current',
);
});
it.each([
null,
'chat',
'//evil.example',
'/..//evil.com',
'/..//evil.com/x',
'/./..//evil.com',
'/../..//evil.com',
'/foo/..//evil.com',
'/\\evil.example',
'/\n//evil.example',
'/\r//evil.example',
'/\t//evil.example',
'https://evil.example/phish',
])('falls back to chat for an unsafe callback target %#', (candidate) => {
expect(resolveAuthCallbackURL(candidate, CURRENT_ORIGIN)).toBe('/chat');
});
});
-23
View File
@@ -1,23 +0,0 @@
const DEFAULT_AUTH_CALLBACK_URL = '/chat';
/**
* Return a canonical same-origin path for post-auth navigation.
*
* Parsing before comparing origins rejects protocol-relative URLs, backslash
* variants, and control characters that the WHATWG parser normalizes away.
*/
export function resolveAuthCallbackURL(candidate: string | null, currentOrigin: string): string {
if (!candidate?.startsWith('/')) return DEFAULT_AUTH_CALLBACK_URL;
try {
const expectedOrigin = new URL(currentOrigin).origin;
const resolved = new URL(candidate, expectedOrigin);
if (resolved.origin !== expectedOrigin || resolved.pathname.startsWith('//')) {
return DEFAULT_AUTH_CALLBACK_URL;
}
return `${resolved.pathname}${resolved.search}${resolved.hash}`;
} catch {
return DEFAULT_AUTH_CALLBACK_URL;
}
}
-71
View File
@@ -1,71 +0,0 @@
// Centralizes the type-only import of the shared `/chat` Socket.IO contract from
// the public `@mosaicstack/types` package. `import type` is erased at compile
// time, so this introduces no runtime dependency — it only reuses the exact
// payload shapes instead of redeclaring them.
import type { Socket } from 'socket.io-client';
import type {
AbortPayload,
AgentEndPayload,
AgentStartPayload,
AgentTextPayload,
AgentThinkingPayload,
ChatMessagePayload,
ChatSendCapabilityPayload,
ChatSendProtocol,
ClientToServerEvents,
CommandDef,
CommandManifest,
CommandManifestPayload,
ErrorPayload,
HarnessSelection,
HarnessTurnAckPayload,
HarnessTurnSendPayload,
MessageAckPayload,
RoutingDecisionInfo,
ServerToClientEvents,
SessionInfoPayload,
SessionUsagePayload,
SetThinkingPayload,
SkillCommandDef,
SlashCommandApprovalResultPayload,
SlashCommandPayload,
SlashCommandResultPayload,
SystemReloadPayload,
ToolEndPayload,
ToolStartPayload,
} from '@mosaicstack/types';
export type {
AbortPayload,
AgentEndPayload,
AgentStartPayload,
AgentTextPayload,
AgentThinkingPayload,
ChatMessagePayload,
ChatSendCapabilityPayload,
ChatSendProtocol,
ClientToServerEvents,
CommandDef,
CommandManifest,
CommandManifestPayload,
ErrorPayload,
HarnessSelection,
HarnessTurnAckPayload,
HarnessTurnSendPayload,
MessageAckPayload,
RoutingDecisionInfo,
ServerToClientEvents,
SessionInfoPayload,
SessionUsagePayload,
SetThinkingPayload,
SkillCommandDef,
SlashCommandApprovalResultPayload,
SlashCommandPayload,
SlashCommandResultPayload,
SystemReloadPayload,
ToolEndPayload,
ToolStartPayload,
};
/** The `/chat` namespace socket, narrowed to the exact typed event contract. */
export type ChatSocket = Socket<ServerToClientEvents, ClientToServerEvents>;
-98
View File
@@ -1,98 +0,0 @@
import { afterEach, beforeEach, describe, expect, it, vi } from 'vitest';
const { ioMock } = vi.hoisted(() => ({
ioMock: vi.fn(),
}));
vi.mock('socket.io-client', () => ({
io: ioMock,
}));
import { destroySocket, getSocket } from './socket';
interface MockChatSocket {
on: ReturnType<typeof vi.fn>;
offAny: ReturnType<typeof vi.fn>;
disconnect: ReturnType<typeof vi.fn>;
/** Test-only helper: fires every handler registered for `event` via
* `.on`, mirroring how a real socket.io-client instance invokes its own
* listeners (e.g. calling the registered `disconnect` handler(s) on a
* real transient disconnect). */
trigger(event: string): void;
}
function createMockSocket(): MockChatSocket {
const handlers = new Map<string, Set<() => void>>();
const mockSocket: MockChatSocket = {
on: vi.fn((event: string, handler: () => void) => {
if (!handlers.has(event)) handlers.set(event, new Set());
handlers.get(event)?.add(handler);
return mockSocket;
}),
offAny: vi.fn(() => mockSocket),
disconnect: vi.fn(() => mockSocket),
trigger(event: string): void {
for (const handler of handlers.get(event) ?? []) handler();
},
};
return mockSocket;
}
let currentMock!: MockChatSocket;
describe('chat socket', () => {
beforeEach(() => {
ioMock.mockReset();
// A fresh object per io() call so identity assertions (same singleton vs.
// a genuinely new instance) are meaningful.
ioMock.mockImplementation(() => {
currentMock = createMockSocket();
return currentMock;
});
});
afterEach(() => {
destroySocket();
});
it('creates one same-origin /chat namespace socket', () => {
const first = getSocket();
const second = getSocket();
expect(first).toBe(second);
expect(ioMock).toHaveBeenCalledOnce();
expect(ioMock).toHaveBeenCalledWith('/chat', {
withCredentials: true,
autoConnect: false,
transports: ['websocket', 'polling'],
});
});
it('keeps the same singleton instance across a transient disconnect', () => {
const first = getSocket();
// socket.ts must not react to a real socket's `disconnect` event by
// nulling the singleton — it registers no such handler at all now.
// Actually fire every handler registered via `.on('disconnect', ...)`
// (mirroring a real socket.io-client reconnect) instead of merely
// calling getSocket() again: this is what makes the test fail if
// production reintroduces `socket.on('disconnect', () => { socket =
// null; })`, since that handler would run here and null the singleton
// before the next getSocket() call.
currentMock.trigger('disconnect');
const second = getSocket();
expect(second).toBe(first);
expect(ioMock).toHaveBeenCalledOnce();
});
it('only creates a new singleton after an explicit destroySocket()', () => {
const first = getSocket();
destroySocket();
const second = getSocket();
expect(second).not.toBe(first);
expect(ioMock).toHaveBeenCalledTimes(2);
});
});
+13 -17
View File
@@ -1,27 +1,23 @@
import { io } from 'socket.io-client';
import type { ChatSocket } from './chat-contract';
import { io, type Socket } from 'socket.io-client';
let socket: ChatSocket | null = null;
const GATEWAY_URL = process.env['NEXT_PUBLIC_GATEWAY_URL'] ?? 'http://localhost:14242';
export function getSocket(): ChatSocket {
let socket: Socket | null = null;
export function getSocket(): Socket {
if (!socket) {
// socket.io-client 4.8.3's `io()` factory declaration always returns the
// default unparameterized Socket (it accepts no <ListenEvents, EmitEvents>
// generics), so this one cast is the unavoidable boundary between that and the
// typed `/chat` contract. Every other call site uses the resulting ChatSocket
// with no further assertions.
socket = io('/chat', {
socket = io(`${GATEWAY_URL}/chat`, {
withCredentials: true,
autoConnect: false,
transports: ['websocket', 'polling'],
}) as unknown as ChatSocket;
});
// A transient `disconnect` (network blip, server restart) must NOT null
// the singleton: socket.io-client auto-reconnects this same instance,
// and its listeners stay registered across that reconnect. Nulling here
// previously orphaned those listeners on the next getSocket() call by
// handing back a brand-new, unconnected instance. Only destroySocket()
// (an explicit, intentional teardown) may reset the singleton.
// Reset singleton reference when socket is fully closed so the next
// getSocket() call creates a fresh instance instead of returning a
// closed/dead socket.
socket.on('disconnect', () => {
socket = null;
});
}
return socket;
}
+48
View File
@@ -0,0 +1,48 @@
import { afterEach, describe, expect, it, vi } from 'vitest';
import { getEnabledSsoProviders, getSsoProvider } from './sso-providers';
describe('sso-providers', () => {
afterEach(() => {
vi.unstubAllEnvs();
});
it('returns the enabled providers in login button order', () => {
vi.stubEnv('NEXT_PUBLIC_WORKOS_ENABLED', 'true');
vi.stubEnv('NEXT_PUBLIC_KEYCLOAK_ENABLED', 'true');
expect(getEnabledSsoProviders()).toEqual([
{
id: 'workos',
buttonLabel: 'Continue with WorkOS',
description: 'Enterprise SSO via WorkOS',
enabled: true,
href: '/auth/provider/workos',
},
{
id: 'keycloak',
buttonLabel: 'Continue with Keycloak',
description: 'Enterprise SSO via Keycloak',
enabled: true,
href: '/auth/provider/keycloak',
},
]);
});
it('marks disabled providers without exposing them in the enabled list', () => {
vi.stubEnv('NEXT_PUBLIC_WORKOS_ENABLED', 'true');
vi.stubEnv('NEXT_PUBLIC_KEYCLOAK_ENABLED', 'false');
expect(getEnabledSsoProviders().map((provider) => provider.id)).toEqual(['workos']);
expect(getSsoProvider('keycloak')).toEqual({
id: 'keycloak',
buttonLabel: 'Continue with Keycloak',
description: 'Enterprise SSO via Keycloak',
enabled: false,
href: '/auth/provider/keycloak',
});
});
it('returns null for unknown providers', () => {
expect(getSsoProvider('authentik')).toBeNull();
});
});

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