SaaS on Next.js 16 (App Router), MySQL 8 and Supabase Auth
Multi-tenant SaaS: organizations, role-based memberships, plans/subscriptions, and credit metering.
63 files, 4 tables and 303 lines of schema, verified 2026-08-23 on Next.js 16 (App Router), MySQL 8 and Supabase Auth.
17 pinned upstream versions
request path. session validation runs in server components and route handlers, not at the edge
What you're getting
Next.js 16 App Router: file-based routing, server components, and the Edge proxy (Next 16's renamed middleware).
MySQL 8 via Drizzle ORM and the mysql2 driver.
Supabase Auth: hosted identity (GoTrue) via the @supabase/ssr cookie client; email+password + OAuth.
Multi-tenant SaaS: organizations, role-based memberships, plans/subscriptions, and credit metering.
Setup
bun add next react react-dom drizzle-orm mysql2 @supabase/ssr @supabase/supabase-jsDATABASE_URLMySQL connection string (mysql://…)NEXT_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
Multi-tenant SaaS schema: organizations, billing & usage metering
8 tables, 53 columns and 23 indexes and constraints, applied to a live MySQL 8 and asserted to materialize.
organizations4 columns · 3 indexedmemberships5 columns · 3 indexedinvitations10 columns · 4 indexedaudit_log7 columns · 2 indexedapi_keys9 columns · 3 indexedplans5 columns · 2 indexedsubscriptions8 columns · 4 indexedapi_usage5 columns · 2 indexedWhat this schema is built to answer
memberships is indexed by idx_membership_user on user_id, but the RLS policies key on organization_id alone, so the org switcher goes through organizations_for_user(text) — a SECURITY DEFINER function pinned with SET search_path = public and granted to the application role only.
api_usage is append-only and read over idx_usage_org_time (organization_id, created_at): a range scan summing credits_used against the monthly_credits on the plan reached through the organization's single subscriptions row.
The accept path hashes the token it was handed and looks it up under invitations_token_hash_unique — one row, carrying status, role and expires_at. invitations_org_email_unique means a re-invite updates that row instead of leaving a second live token behind.
subscriptions.provider_sub_id is UNIQUE, which is the idempotency key a redelivered event collides on, and provider_event_at rejects an out-of-order one; subscriptions_org_unique keeps exactly one live row per organization for the metering layer to read.
rate_limits is keyed on bucket as its primary key ('signup:203.0.113.4'), sits outside RLS on purpose, and is checked with a single upsert whose CASE both resets an expired window and increments a live one — no select-then-update race.
Organizations & multi-tenancythe tenant boundary every billable and metered row hangs off
Memberships & role-based accessorg↔user join carrying owner/admin/member roles, unique per pair, plus the token-based invitations that create them
Plans & subscription billing tablesthe billable plan catalog and each org's current subscription state
API usage & credit/token meteringhashed API keys plus append-only usage rows that drive quota checks and usage billing
Verified billing (Polar)
Verified tenant scoping
Deploy targets
The app UI
Decisions and compatibility
Auth runs in proxy.ts (Next 16's renamed middleware) on the Edge runtime: it gates on the session cookie's presence only — full session validation happens in Server Components and route handlers, not in the proxy.
mysql2's pool multiplexes connections; drizzle-orm/mysql2 wraps it. One module-level pool is right for a serverless/edge app — the runtime and the pool handle concurrency.
MySQL has no row-level security: multi-tenant isolation is enforced in application code via the forOrg helper (src/lib/tenant.ts), not by the database. See the tenant-scoping section on SaaS pages.
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().
One active subscription per organization (unique on organization_id) — the metering layer reads exactly one.
Usage is an append-only meter (api_usage): roll up by organization + time window for quota and billing rather than mutating a running total.
Rate limits, the super-admin log and the waitlist are deliberately NOT org-scoped: the callers most worth limiting have no organization yet, super-admin actions must outlive the organizations they concern, and a waitlist exists before anyone signs up.
organizations_for_user() is a SECURITY DEFINER function — the only way to answer "which organizations does this user belong to" under policies keyed solely on organization_id. It is granted to the application role alone and must be called with a user id taken from the session, never from a request.
API keys store a SHA-256 of the key and a non-secret prefix — the key itself is shown once, at creation, and cannot be recovered. Revoking sets revoked_at rather than deleting, so a revoked key's usage rows still resolve.
The audit log is append-only at the DATABASE level: RLS scopes it per organization, and the application role has UPDATE and DELETE revoked on it, so the app cannot rewrite its own history.
Invitations store a SHA-256 of the invite token, never the token itself — a database dump cannot be replayed into org access. One row per (organization, email), so re-inviting updates the pending row instead of accumulating dead ones.
MySQL provides no row-level security. On MySQL, multi-tenant isolation is APP-ENFORCED via the forOrg helper (src/lib/tenant.ts), not database-enforced like Postgres RLS. Every org-scoped query MUST go through forOrg — a missed query leaks across tenants. Postgres cells enforce this in the database itself (RLS), so it holds even for a query that forgets to scope.
How this stack fits together
Supabase Auth owns its identity tables in the same database as organizations, memberships, invitations, audit_log, api_keys, plans, subscriptions and api_usage, 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.
MySQL 8 stores those surrogate keys as varchar(36), so every foreign key across the 8 tables and 53 columns below is a varchar(36) column. The migration was applied to a live MySQL 8 and the tables asserted, not just type-checked.
SaaS
organizations is the boundary, and nearly everything else is downstream of it. memberships joins an organization to a Better Auth user with a role — owner, admin or member, text plus memberships_role_check — under a composite unique on (organization_id, user_id), so the pair is the membership's identity and a duplicate seat is a constraint violation rather than a second row. invitations is how somebody with no account yet arrives: it stores a SHA-256 under invitations_token_hash_unique and never the token, so a database dump is not a pile of working invite links, and one row per (organization, email) makes 'resend' and 'invite again' the same statement. Billing hangs off the same key.
plans is a shared catalog — slug, price_cents, monthly_credits — left outside the tenant boundary on purpose, because every organization reads the same rows. subscriptions holds one row per organization (subscriptions_org_unique) mirroring the provider's state, with provider_sub_id UNIQUE as the webhook idempotency key and provider_event_at as a staleness guard; the billing fragment maps events onto those two columns instead of declaring a table of its own. api_usage is the meter: append-only rows of credits_used rolled up over idx_usage_org_time, never a decremented balance, so a lost write costs you an entry rather than a wrong total. On Postgres the isolation is not advisory.
Each org-scoped table gets ENABLE plus FORCE ROW LEVEL SECURITY and a policy comparing its organization_id against current_setting('app.current_org_id'), reached through a dedicated NOBYPASSRLS role — Neon's default owner carries BYPASSRLS and would make the whole arrangement silently inert. Unset context reads as NULL, which matches nothing, so the failure mode is no rows rather than every row. audit_log is scoped the same way and additionally has UPDATE and DELETE revoked from the application role, which is the difference between a log and evidence. MySQL has no RLS, so that dialect ships forOrg() instead: fail-closed, app-enforced, and disclosed as the weaker guarantee. Three tables sit outside all of it deliberately.
rate_limits is keyed on an opaque bucket string because the callers worth throttling have no organization yet, waitlist predates signup entirely, and admin_audit stores an organization_id carrying no foreign key, so the entry recording a deletion outlives what it deleted.
Next.js 16 (App Router)
Next 16's App Router keeps the whole application under src/: the scaffold runs create-next-app with --src-dir and --import-alias @/*, so `@/` resolves to src/* and the verified files land on top of a stock project rather than replacing it. initCode writes the database client to src/lib/db.ts, then appends the auth fragment's own files — identity tables at src/db/auth-schema.ts, the auth instance at src/lib/auth.ts, a catch-all handler under src/app/api/auth/, and src/proxy.ts. Each file has exactly one owner; the framework never re-emits the ones auth brought. Server code has two shapes here and they are not interchangeable. A Server Component runs on the server and imports { db } from "@/lib/db" directly, so a page can await a Drizzle query with no API route in between.
Anything that needs a URL — an OAuth callback, a Polar or Clerk webhook, a mutation posted from the client — is a route handler at src/app/api/<path>/route.ts exporting GET or POST. Session checking is split across two tiers on purpose. src/proxy.ts (Next 16's rename of middleware.ts; under --src-dir it must sit beside src/app or Next silently ignores it) runs on the Edge runtime with a config.matcher listing the guarded prefixes — /dashboard/:path* and /settings/:path* out of the box. It only asks whether a session cookie exists and redirects to /sign-in when it does not: no database round trip at the edge. The authoritative check is auth.api.getSession() inside the Server Component or route handler that actually reads rows.
What that means when you build on it: widening the protected surface is a one-line change to the matcher array, but the proxy is not the security boundary — a request carrying any session cookie reaches the page, and the page decides. Keep the real check next to the data. The UI overlay follows the same split, with auth screens under src/app/(auth)/ and the shell and dashboard under src/app/(app)/.
MySQL 8
MySQL 8 here is the mysql2 driver under Drizzle's mysql-core dialect: drizzle({ client: pool }) over one module-level mysql.createPool(DATABASE_URL). mysql2's pool multiplexes connections itself, so a single pool per module is the right shape — the runtime and the pool handle concurrency, with no globalThis singleton needed. The framework decides where that file lands (src/lib/db.ts on Next, app/lib/db.ts on React Router, server/lib/db.ts on Nuxt); the client text is the same in all three. The dialect's constraints show up directly in the column types.
MySQL cannot index a TEXT column without a prefix length, so anything that is a primary key, a UNIQUE, an index or a CHECK target is varchar with a declared length: ids are varchar(36) with no database default — the application generates them with crypto.randomUUID(), since there is no uuid type and no defaultRandom() — Better Auth's user.id and every FK pointing at it are varchar(255), an email or slug is varchar(255), a role or status varchar(32), a SHA-256 hex digest varchar(64). Free-form columns nobody indexes stay text. Timestamps are plain timestamp().defaultNow() without the withTimezone flag the Postgres bodies carry, and counters are bigint({ mode: "number" }). The operational difference that matters most: MySQL has no row-level security.
There is no policy layer to fall back on, so multi-tenant isolation is enforced in application code by forOrg(db, orgId) in src/lib/tenant.ts, which wraps each org-owned table's select/update/delete with a where on organization_id and throws on a missing orgId instead of quietly running unscoped. It is a real boundary only while every read and write goes through it — the shared plans catalog sits deliberately outside — and it is app-enforced, not database-enforced. Connections change with the deploy target: connectionLimit 2 per short-lived serverless instance, 10 in a long-running Node process, and on Cloudflare Workers mysql2 cannot run at all — there are no TCP sockets — so the edge client swaps to @planetscale/database over HTTP with drizzle-orm/planetscale-serverless.
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.
