Second correctness pass one271858found three ways an arch-only appliance could be written as a per-tooth job, plus a gap in the previous repair. 1. The deferred region check was never completed. A mixed-region category resolved with no region recorded, and nothing re-validated the leaf the clinician then picked — "پروتز متحرک برای دندون ۱۲" wrote a complete denture onto tooth 12, which the manual chart cannot produce and which task generation would expand as denture steps. Targets now resolve BEFORE types, so the target kind narrows a category's candidates and an impossible leaf is never offered. The deferral disappears with it. 2. `some` over the stack's regions let one legal code admit every other. `types: ['pfm_crown','night_guard_soft']` on tooth 12 passed, because `crown` suited the tooth, and wrote a night guard onto that tooth. Now every named code must suit the target. 3. `regions.size === 1` also deferred `implant`, whose leaves span root and crown — both tooth regions, so not a tooth/arch category at all. An implant aimed at a jaw resolved as a UA target. Narrowing by target kind rejects it instead. 4. Thee271858type-row lock ticked the row and the payload but not the count, so the sheet read "Apply 1 field" while two landed. One `effectiveSelection` now drives the count and the payload. Also narrows a `filter(Boolean)` in the disjointness test that left two implicit-any errors under the full tsconfig (nest build excludes specs, so the repo gate never saw them). Pre-existing at15ddb9a. Adds four resolver tests: candidate narrowing per target kind, a category with no usable leaf, a stack where only one code suits, and a legal stack. All three defects passed the previous 209 tests. Gates: backend 212 tests, nest build, ESLint clean on the voice module; frontend 37 Vitest tests, tsc --noEmit, ESLint clean. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Dyolink — Backend (NestJS)
Prerequisites
- Node.js 20+ and npm
- PostgreSQL reachable from your machine — either installed locally or run via Docker (see below)
First-time setup
-
Clone the monorepo and go to the backend app:
git clone <repository-url> dyolink cd dyolink/backend -
Install dependencies
npm install -
Environment
Copy
.env.exampleto.envand set at least:DATABASE_URL— PostgreSQL connection string for your dev databaseJWT_SECRET— strong secret for signing tokens
Do not commit.env.
-
Database for local dev
Option A — Postgres in Docker (no local install, e.g. Mac)
Frombackend/, with.envpresent (copy from.env.examplefirst):- Ensure
DATABASE_URLuseslocalhostas the host (notpostgres). Match user, password, and DB name toPOSTGRES_USER,POSTGRES_PASSWORD, andPOSTGRES_DBin the same file.
docker compose -f docker-compose.postgres.yml up -dWait until Postgres is healthy (
docker compose -f docker-compose.postgres.yml ps). The container creates the database on first start.To stop Postgres (data is kept in the named volume):
docker compose -f docker-compose.postgres.yml downOption B — Postgres installed on the machine
Create an empty database, then pointDATABASE_URLat it. - Ensure
-
Generate Prisma Client
npm run prisma:generate -
Apply migrations (creates/updates tables to match
prisma/schema.prisma)npm run prisma:migrateThis runs
prisma migrate dev. Use it during development when the schema changes. -
Seed (optional — reference data only)
npm run prisma:seedThis does not wipe your database. It only upserts lookup data: organization types (
CLINIC,LAB), subscription plans, and tab permissions. Existing users, organizations, memberships, patients, appointments, and links are left unchanged.To start from an empty database with fresh tables and reference data, see Reset database (clean slate) below.
Reset database (clean slate)
Use this when you want to delete all application data (users, organizations, patients, sessions, etc.) and rebuild the schema from migrations, then run the seed.
From backend/:
npx prisma migrate reset
Prisma will prompt for confirmation, drop the database, re-apply all migrations, and run prisma/seed.ts automatically.
What gets removed: everything in the database, including organizations and all related rows.
What the seed adds back: only reference data (types, plans, permissions) — not demo users or organizations. Register again or use your own test data after a reset.
Docker Postgres dev: if you also want to wipe the Docker volume (not only tables), stop the container and remove the volume:
docker compose -f docker-compose.postgres.yml down -v
docker compose -f docker-compose.postgres.yml up -d
npm run prisma:migrate
npm run prisma:seed
Do not run migrate reset against production or shared staging databases.
Run (development)
npm run start:dev
API listens on http://localhost:3000 by default (PORT in .env).
If the frontend runs on another origin (e.g. http://localhost:3001), set FRONTEND_URL in .env to that URL (CORS and invite links use it).
After pulling latest main
git pull
npm install
npm run prisma:generate
npm run prisma:migrate
If teammates added migrations, the migrate step above applies them. Resolve migration conflicts locally before pushing.
Useful commands
| Command | Purpose |
|---|---|
npm run prisma:generate |
Regenerate client after schema.prisma changes |
npm run prisma:migrate |
Dev migrations (migrate dev) |
npm run prisma:deploy |
Production-style apply (migrate deploy) — e.g. CI/containers |
npm run prisma:seed |
Upsert reference data only (does not clear existing rows) |
npx prisma migrate reset |
Drop DB, re-migrate, run seed — dev clean slate |
npm run build |
Compile Nest app |
npm run start:prod |
Run compiled app (node dist/main) |
Docker
| File | Purpose |
|---|---|
Dockerfile |
Production API image |
docker-compose.postgres.yml |
Local dev Postgres only (port mapped to host) |
For full-stack deployment and CI, see the repository root README.md.