Marketplace on Nuxt 4, Postgres (Neon) and Supabase Auth
Two-sided marketplace: seller profiles, a listings catalog, buyer orders with price capture, periodic seller payouts, and per-listing reviews.
79 files, 5 tables and 227 lines of schema, verified 2026-08-23 on Nuxt 4, Postgres (Neon) and Supabase Auth.
15 pinned upstream versions
request path. session validation runs in server components and route handlers, not at the edge
What you're getting
Nuxt 4 (framework mode): full-stack Vue SSR: client under app/ (Vite), server under server/ (Nitro), API as server/api/*.post.ts Nitro route handlers.
Postgres on Neon via Drizzle ORM and the postgres-js driver.
Supabase Auth: hosted identity (GoTrue) via the @supabase/ssr cookie client; email+password + OAuth.
Two-sided marketplace: seller profiles, a listings catalog, buyer orders with price capture, periodic seller payouts, and per-listing reviews.
Setup
bun add nuxt vue drizzle-orm postgres @supabase/ssr @supabase/supabase-jsDATABASE_URLNeon pooled (-pooler) connection stringNEXT_PUBLIC_SUPABASE_URLNext: your Supabase project URL (RR: VITE_SUPABASE_URL · Nuxt: NUXT_PUBLIC_SUPABASE_URL)NEXT_PUBLIC_SUPABASE_ANON_KEYNext: the project's anon/public key (RR: VITE_SUPABASE_ANON_KEY · Nuxt: NUXT_PUBLIC_SUPABASE_ANON_KEY)SUPABASE_URLReact Router server-side (loaders): same project URL, read off process.env — never inlined into the client bundleSUPABASE_ANON_KEYReact Router server-side: same anon keyApply the schema with bunx drizzle-kit push
Initialization
Database client
Two-sided marketplace schema: sellers, listings, orders, payouts & reviews
5 tables, 31 columns and 16 indexes and constraints, applied to a live Postgres (Neon) and asserted to materialize.
sellers6 columns · 3 indexedlistings7 columns · 3 indexedmarketplace_orders6 columns · 3 indexedpayouts6 columns · 4 indexedreviews6 columns · 3 indexedWhat this schema is built to answer
sellers.status is text under sellers_status_check (pending/active/suspended) with idx_seller_status over it, so the approval queue is one index scan; sellers_user_unique stops a single identity holding two profiles.
idx_listing_seller on listings.seller_id serves the seller's own page; idx_listing_status serves public browse filtered to 'active', both reading the same draft/active/sold/archived column.
marketplace_orders carries idx_order_buyer on buyer_id (a text FK to Better Auth's user.id) and idx_order_listing on listing_id, so reconciliation is an index lookup from either direction.
payouts_seller_period_unique on (seller_id, period) makes a rerun of the payout job collide on insert rather than remit June a second time, while idx_payout_status drains the scheduled and processing rows.
reviews_listing_reviewer_unique on (listing_id, reviewer_id) allows a reviewer exactly one review, idx_review_listing aggregates them for the listing page, and reviews_rating_check keeps rating inside 1–5.
Sellers & payout onboardingone seller profile per Better Auth user, holding payout-provider account id and an approval status (pending/active/suspended)
Listings catalog & pricingseller-owned items with integer priceCents and a draft/active/sold/archived lifecycle
Marketplace orders & buyersbuyer-to-listing purchase records with amount captured at creation and a 6-state fulfillment status
Seller payouts & settlement periodsnet-amount remittance rows keyed by seller + text period, one per settlement window with a 4-state processing status
Listing reviews & ratingsone review per reviewer per listing (unique constraint), with a CHECK enforcing rating between 1 and 5
Deploy targets
The app UI
Decisions and compatibility
Client/server split: the DB client, Drizzle schema, records, and webhooks are server-side (server/). The `@/` alias is the client root (app/); server code reaches shared modules via Nuxt's `~~` rootDir alias (e.g. `~~/server/db/schema`).
The API layer is Nitro, Nuxt's server engine: endpoints are server/api/*.post.ts route handlers, and auth mounts as a Nitro catch-all that delegates to the auth library's framework-agnostic web handler.
Nuxt auto-imports components and composables at runtime, but the emitted server code imports h3 helpers (defineEventHandler, toWebRequest) EXPLICITLY — the one deliberate idiom trade so the handlers type-check under standalone tsc instead of relying on the auto-import magic.
Session gating runs in a Nitro server middleware (server/middleware/), which fires on every SSR and API request — the true security boundary, and a real server-side session check rather than a cookie-existence peek.
prepare: false is mandatory — Neon's pooled endpoint is PgBouncer in transaction mode, where server-side prepared statements break across the pool.
Drizzle is paired here (not Prisma): Prisma's prepared-statement reliance is incompatible with transaction-mode pooling.
Hosted: Supabase owns identity in its managed auth.users. This stack emits a LOCAL `user` mirror (db/auth-schema.ts) so app-type schemas can foreign-key `user` directly — keep it in sync with a Supabase trigger on auth.users (insert/update → public.user). The drizzle migration only owns the mirror table's shape, not the trigger.
Sessions are cookie-based (@supabase/ssr): the proxy refreshes them on every request; Server Components read the user via supabase.auth.getUser().
Order amountCents is captured at purchase time independently of the listing's priceCents — editing a listing price later cannot corrupt historical order records.
Payouts enforce a unique constraint on (sellerId, period), so each seller gets exactly one settlement row per billing window; duplicate payout jobs are rejected at the DB level.
How this stack fits together
On Nuxt 4 this stack puts its Postgres (Neon) client at server/lib/db.ts and the Supabase Auth instance at app/middleware/auth.ts and session checks in server/middleware/supabase.ts. Those are the paths this framework's adapter actually emits, not a shared convention: the same Marketplace schema and the same Supabase Auth wiring land somewhere different on each of the other frameworks in the registry.
Supabase Auth owns its identity tables in the same database as sellers, listings, marketplace_orders, payouts and reviews, so the foreign keys reference the local user row directly and a delete cascades through them. No mirror, no webhook, and no window where the two stores disagree.
Postgres (Neon) stores those surrogate keys as uuid, so every foreign key across the 5 tables and 31 columns below is a uuid column. The migration was applied to a live Postgres (Neon) and the tables asserted, not just type-checked.
Marketplace
A marketplace has two sides and a fee in the middle, and the tables split along exactly that line. sellers is the supply side: one profile per identity, enforced by sellers_user_unique on user_id, holding a display_name, an opaque payout_account_id (Stripe Connect, PayPal — nullable until onboarding finishes) and a status of pending, active or suspended. The demand side has no table of its own; buyers are Better Auth users referenced straight from marketplace_orders.buyer_id and reviews.reviewer_id. That asymmetry is the design: selling is an application somebody approves, buying is just having an account. listings hangs off seller_id with ON DELETE CASCADE and carries price_cents plus a draft → active → sold → archived status.
marketplace_orders references its listing with no delete rule at all, which is deliberate — the database refuses to remove a listing that has been bought, and because listings cascade from sellers, deleting a seller who ever sold anything fails loudly instead of shredding order history. The order's amount_cents is captured at purchase, so a seller editing their price afterwards moves the storefront and never the receipt, and its status walks six values (pending, paid, shipped, completed, refunded, canceled) because a two-sided order can end in a refund as easily as in delivery. payouts is the leg most schemas of this shape get wrong.
It stores the net remitted to a seller — bigint cents, gross minus your fee — for a text period such as '2026-06', under a unique constraint on (seller_id, period). That constraint is the safety rail: a payout job rerunning after a crash collides on insert instead of paying June twice, which is the failure nobody notices until the money is gone. Its own status column (scheduled, processing, paid, failed) with idx_payout_status gives you a queue to drain. reviews is the trust layer, and it is constrained rather than trusted: one row per (listing_id, reviewer_id), and reviews_rating_check pins rating between 1 and 5 in the database rather than in a form validator.
Reviews attach to listings, not to sellers, so seller reputation is an aggregate you compute across a seller's catalog — a join, not a column.
Nuxt 4
Nuxt 4 in framework mode is the one stack here with two roots. Client code lives under app/ and is what `@/` points at (Vite, Vue single-file components); server code lives under server/ and is run by Nitro, Nuxt's server engine. The database layer is server-side, so initCode writes server/lib/db.ts and the schema, record modules and webhooks land under server/db/ and server/api/ — server modules reach each other through Nuxt's `~~` rootDir alias (`~~/server/lib/db`, `~~/server/db/schema`), never through `@/`. That split earns its keep with secrets: the Resend send client belongs to ~~/server/lib/email, and nothing under app/ can import it by accident. The API layer is Nitro rather than a React-shaped route file.
server/api/webhooks/polar.post.ts is a POST endpoint; auth mounts as the catch-all server/api/auth/[...all].ts, which adapts the H3 event with toWebRequest(event) and hands the resulting web Request to the auth library's framework-agnostic handler. Nuxt auto-imports defineEventHandler and its siblings at runtime, but the emitted server files import them from h3 explicitly — one deliberate idiom trade so every handler type-checks under standalone tsc. Session gating is a Nitro server middleware at server/middleware/auth.ts. It fires on every SSR render and every API request, filters on pathname prefixes (/dashboard, /settings), performs the real auth.api.getSession() lookup, and answers with sendRedirect(event, "/sign-in", 302). Because Nitro sits in front of both the rendered page and the endpoints, that is a genuine security boundary rather than a cheap pre-render bounce.
On the client, Vue does its own thing: the auth binding exposes signIn/signUp/useSession as Vue refs, screens are .vue components under app/pages/ (sign-in.vue, dashboard/[id].vue), chrome lives in app/components/ and app/layouts/, and SPA-side guards are app/middleware/*.ts. The design system is shadcn-vue on reka-ui — a real re-port, not the React components wearing new names — and it is checked with vue-tsc, since plain tsc cannot parse an SFC.
Postgres (Neon)
Postgres here is Neon reached through postgres-js, with Drizzle's pg-core dialect on top: drizzle({ client }) over a single module-level postgres(DATABASE_URL, { prepare: false }). That flag is not a preference. Neon's pooled (-pooler) endpoint is PgBouncer in transaction mode, where a backend is handed to a different session between statements, so server-side prepared statements break across the pool — and the same constraint is why this axis pairs with Drizzle rather than Prisma. One client per module is enough: PgBouncer and the runtime do the pooling, so there is no globalThis singleton dance. The schemas built on this dialect make three recurring type decisions. Primary keys are uuid(...).primaryKey().defaultRandom(), so ids come from the database. Timestamps are timestamp(..., { withTimezone: true }).defaultNow() — timestamptz, an absolute instant.
Closed value sets are text plus a CHECK constraint rather than pgEnum, so shipping a new role or subscription status is an ordinary constraint change instead of an ALTER TYPE migration. Counters are bigint({ mode: "number" }), and Better Auth's text user.id is referenced as text by the app tables rather than recast. Operationally, transaction-mode pooling forbids anything that spans statements on one backend: LISTEN/NOTIFY, session-scoped SET, advisory-lock sessions, WITH HOLD cursors. Those paths use Neon's direct endpoint instead. The connection client also changes with the deploy target — max: 1 per short-lived serverless instance, a real reused pool (max 10, idle_timeout 20) in a long-running Node process, and on Cloudflare Workers postgres-js is replaced outright by @neondatabase/serverless over HTTP, because Workers have no TCP sockets.
The capability that exists only on this side of the matrix is row-level security. Multi-tenant schemas ship ENABLE plus FORCE ROW LEVEL SECURITY with policies keyed on current_setting('app.current_org_id', true), which withTenant() sets per transaction — unset context yields no rows, so isolation fails closed inside the database rather than in application code. It requires a dedicated NOBYPASSRLS role: Neon's default neondb_owner carries BYPASSRLS, and connecting as it makes every policy silently inert.
Supabase Auth
Supabase Auth is a hosted service — GoTrue — that your app reaches over cookies rather than an SDK session object. Credentials and the canonical user records live in Supabase's managed auth.users schema. What lands in your own database is a mirror: db/auth-schema.ts declares user keyed by the Supabase auth uid (text; varchar(255) on MySQL) with email, full name, avatar URL and timestamps, so app-type schemas can foreign-key user exactly as they would under a self-hosted auth. Unlike the Clerk fragment, no sync webhook is emitted here, because Supabase's own trigger mechanism is the intended path: a trigger on auth.users writing into public.user lives in the Supabase project, not in the drizzle migration.
The migration owns the mirror's column shape and nothing else, so wiring that trigger is a step you take before those foreign keys mean anything. The mechanic that actually shapes this adapter is cookie refresh. @supabase/ssr rotates the auth token, and a rotated cookie only reaches the browser if something writes it onto the outgoing response — which is why every framework branch is built around the same getAll/setAll pair, wired to whatever that framework calls a cookie jar. Next's src/proxy.ts rebuilds the NextResponse inside setAll before calling getUser().
React Router has no middleware layer, so app/lib/supabase/server.ts constructs the client per request and returns { supabase, headers }, and the protected layout route attaches those headers to both exits — the redirect and the pass-through — so a refresh that happened during a guard is not lost. Nuxt's server/utils/supabase.ts binds the client to the h3 event and writes through setCookie, with a Nitro middleware doing the guard. Every decision point calls supabase.auth.getUser(), never getSession(): getSession reads whatever the cookie claims, getUser revalidates it against Supabase. Because a browser client is emitted alongside the server one, the auth screens are real forms calling supabase.auth.signInWithPassword rather than a hosted widget, and the sidebar's user menu subscribes to onAuthStateChange. Two consequences to plan around.
The anon key is public by design and is inlined into the client bundle under whichever prefix the framework demands (NEXT_PUBLIC_, VITE_, NUXT_PUBLIC_), so protection has to come from row-level security on Supabase's side, not from keeping the key quiet. And every guard is a network call to Supabase, not a local query — cheap, but not free, and on the path of every protected request.
