Files
dyolink/backend
Amin Mousavi de6e259932 feat(backend): OpenRouter voice providers and per-locale registry
ASR and extraction are separate, independently swappable roles resolved per
locale from config. All three locales point at the same OpenRouter models today
(whisper-1, gemini-3.7-flash); the indirection stays because Persian ASR is the
weakest link and repointing only `fa` must not be a code change.

The model emits a deliberately flat wire shape rather than the internal
discriminated unions — strict json_schema mode has poor union support — and
toVoiceIntent narrows it. That normalizer is total: a missing or malformed
payload yields a shape the resolvers report as unresolved rather than one that
throws.

The prompt supplies catalog codes with labels in the actor's locale, so the
model matches spoken words rather than translating, and carries per-locale
tooth vocabulary. English gets an explicit warning that a bare two-digit number
is ambiguous under Universal numbering, and must not be treated as FDI unless
the speaker said so.

From review of this commit:
- only an actually FDI-shaped code takes the explicit branch; fdi:"6" alongside
  valid arch/side/position used to lose the tooth entirely
- an unrecognised due kind passes through to be flagged, instead of collapsing
  to null and looking like no deadline was ever spoken
- vendor error bodies stay out of the thrown message and the default log level;
  a 4xx can echo the request back, transcript included
- the chat call sets provider.require_parameters so OpenRouter only routes to
  endpoints that honour the JSON schema, rather than ones treating it as a hint
- an unknown locale in VOICE_ENABLED_LOCALES now fails at boot like an unknown
  provider id, instead of silently disabling the microphone everywhere

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-08-20 18:00:53 +03:30
..

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

  1. Clone the monorepo and go to the backend app:

    git clone <repository-url> dyolink
    cd dyolink/backend
    
  2. Install dependencies

    npm install
    
  3. Environment

    Copy .env.example to .env and set at least:

    • DATABASE_URL — PostgreSQL connection string for your dev database
    • JWT_SECRET — strong secret for signing tokens
      Do not commit .env.
  4. Database for local dev

    Option A — Postgres in Docker (no local install, e.g. Mac)
    From backend/, with .env present (copy from .env.example first):

    • Ensure DATABASE_URL uses localhost as the host (not postgres). Match user, password, and DB name to POSTGRES_USER, POSTGRES_PASSWORD, and POSTGRES_DB in the same file.
    docker compose -f docker-compose.postgres.yml up -d
    

    Wait 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 down

    Option B — Postgres installed on the machine
    Create an empty database, then point DATABASE_URL at it.

  5. Generate Prisma Client

    npm run prisma:generate
    
  6. Apply migrations (creates/updates tables to match prisma/schema.prisma)

    npm run prisma:migrate
    

    This runs prisma migrate dev. Use it during development when the schema changes.

  7. Seed (optional — reference data only)

    npm run prisma:seed
    

    This 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.