Files
OpenFrame/lib/auth.ts
T
yusufipek 1ec5c53802 fix(auth): start the cardless trial for social signups too
The trial is granted in the credentials signup route and on the
verification link, and an account created by Google or GitHub goes
through neither: the Prisma adapter writes it directly. Since checkout
no longer offers a trial either, such an account reached a locked
product and an immediate bill, which is the opposite of what the signup
page promised it.

The address is already proven at this point, because the signIn callback
turns away an OAuth profile that reports its email as unverified, and
the grant is idempotent, so nothing here can hand out a second trial.
2026-08-18 09:48:00 +03:00

437 lines
15 KiB
TypeScript

import NextAuth from 'next-auth';
import Credentials from 'next-auth/providers/credentials';
import Google from 'next-auth/providers/google';
import GitHub from 'next-auth/providers/github';
import { PrismaAdapter } from '@auth/prisma-adapter';
import bcrypt from 'bcryptjs';
import { db } from '@/lib/db';
import { ProjectMemberRole, WorkspaceMemberRole } from '@prisma/client';
import { hasBillingAccess, startCardlessTrial } from '@/lib/billing';
import { isInviteCodeRequired } from '@/lib/feature-flags';
import { isEmailVerificationEnabled } from '@/lib/email-verification';
// Dummy hash for timing-safe comparison when user doesn't exist
// This prevents user enumeration via timing attacks
const DUMMY_HASH = '$2a$12$000000000000000000000uGG3k3xK2CVTxXrT7VW2sGd1XrY6Ky';
export const { handlers, signIn, signOut, auth } = NextAuth({
// PrismaAdapter handles OAuth account linking and user creation in DB.
// JWT strategy is still used for sessions (no DB sessions table needed).
adapter: PrismaAdapter(db),
providers: [
Credentials({
name: 'credentials',
credentials: {
email: { label: 'Email', type: 'email' },
password: { label: 'Password', type: 'password' },
},
async authorize(credentials) {
if (!credentials?.email || !credentials?.password) {
return null;
}
const email = credentials.email as string;
const password = credentials.password as string;
// Find user by email
const user = await db.user.findUnique({
where: { email: email.toLowerCase() },
});
// Always perform bcrypt comparison to prevent timing attacks
// If user doesn't exist, compare against dummy hash
const hashToCompare = user?.password || DUMMY_HASH;
const isValidPassword = await bcrypt.compare(password, hashToCompare);
// Only return user if they exist AND password is valid
if (!user || !user.password || !isValidPassword) {
return null;
}
// Block sign-in when email verification is required but not yet completed
if (isEmailVerificationEnabled() && !user.emailVerified) {
return null;
}
return {
id: user.id,
name: user.name,
email: user.email,
image: user.image,
};
},
}),
...(process.env.GOOGLE_CLIENT_ID && process.env.GOOGLE_CLIENT_SECRET
? [
Google({
clientId: process.env.GOOGLE_CLIENT_ID,
clientSecret: process.env.GOOGLE_CLIENT_SECRET,
}),
]
: []),
...(process.env.GITHUB_CLIENT_ID && process.env.GITHUB_CLIENT_SECRET
? [
{
...GitHub({
clientId: process.env.GITHUB_CLIENT_ID,
clientSecret: process.env.GITHUB_CLIENT_SECRET,
}),
// GitHub sends iss=https://github.com/login/oauth in callbacks (RFC 9207).
// Auth.js v5 beta defaults to "https://authjs.dev" for OAuth providers, causing
// a mismatch. Setting the correct issuer here fixes the CallbackRouteError.
issuer: 'https://github.com/login/oauth',
},
]
: []),
],
session: {
strategy: 'jwt',
maxAge: 30 * 24 * 60 * 60, // 30 days
},
pages: {
signIn: '/login',
signOut: '/signout',
},
callbacks: {
async signIn({ account, profile }) {
// Credentials sign-in is handled by the authorize() function above
if (account?.provider === 'credentials') return true;
// Reject OAuth sign-ins where the provider email is not verified.
// Google always sets email_verified: true. GitHub does not guarantee it.
if (profile && profile.email_verified === false) {
return '/login?error=OAuthEmailNotVerified';
}
// OAuth sign-in: allow existing OAuth accounts regardless of invite setting
if (account?.providerAccountId && account?.provider) {
const existingAccount = await db.account.findUnique({
where: {
provider_providerAccountId: {
provider: account.provider,
providerAccountId: account.providerAccountId,
},
},
select: { id: true },
});
if (existingAccount) return true;
}
// New OAuth user: block when invite-only mode is active
if (isInviteCodeRequired()) {
return '/login?error=RegistrationClosed';
}
return true;
},
async session({ session, token }) {
if (token.sub && session.user) {
session.user.id = token.sub;
session.user.name = token.name || null;
session.user.isAdmin = token.isAdmin as boolean;
}
return session;
},
async jwt({ token, user }) {
if (user) {
token.sub = user.id;
token.name = user.name;
token.email = user.email; // explicitly ensure email is in the token
}
// Check if user is admin based on emails list on EVERY request to ensure env changes are picked up
if (token.email) {
const adminEmails = process.env.ADMIN_EMAILS
? process.env.ADMIN_EMAILS.split(',').map((e: string) => e.trim().toLowerCase())
: [];
token.isAdmin = adminEmails.includes((token.email as string).toLowerCase());
}
return token;
},
},
events: {
// The OAuth half of signup. Accounts created by Google or GitHub are written
// by the Prisma adapter and never reach app/api/auth/register, so recording
// the event only there would have made every social signup invisible in the
// funnel while looking like it worked.
async createUser({ user }) {
if (!user.id) return;
const { recordSignupCompleted, readVisitorContextFromHeaders } =
await import('@/lib/analytics/signup');
await recordSignupCompleted({
userId: user.id,
visitor: await readVisitorContextFromHeaders(),
});
// And the trial with it, for the same reason: the two places that grant it
// are the credentials signup route and the verification link, and a social
// signup goes through neither. Without this a Google account reaches a
// locked product and a checkout that no longer offers a trial, which is the
// opposite of what the signup page promised it. The address is already
// proven here: the signIn callback above turns away an OAuth profile that
// reports its email as unverified.
await startCardlessTrial(user.id);
},
},
});
// ---------------------------------------------------------------------------
// Fast-path: pre-fetch access data alongside any existing DB query so that
// computeProjectAccess() can resolve the result with zero extra round-trips.
// ---------------------------------------------------------------------------
/** Prisma include fragment to attach to any project fetch. */
export function projectAccessInclude(userId: string | undefined) {
return {
workspace: {
select: {
id: true,
ownerId: true,
owner: {
select: {
subscriptionStatus: true,
trialEndsAt: true,
stripeCurrentPeriodEnd: true,
billingAccessEndedAt: true,
},
},
members: userId
? {
where: { userId },
take: 1,
orderBy: { createdAt: 'asc' as const },
select: { role: true },
}
: { take: 0, select: { role: true } },
},
},
members: userId
? {
where: { userId },
take: 1,
orderBy: { createdAt: 'asc' as const },
select: { role: true },
}
: { take: 0, select: { role: true } },
};
}
type ProjectAccessIncludes = ReturnType<typeof projectAccessInclude>;
type WorkspaceForAccess = ProjectAccessIncludes['workspace']['select'] extends object
? {
id: string;
ownerId: string;
owner: Parameters<typeof hasBillingAccess>[0] | null;
members: Array<{ role: WorkspaceMemberRole }>;
}
: never;
export type EnrichedProjectForAccess = {
id: string;
ownerId: string;
workspaceId: string;
visibility: string;
workspace: WorkspaceForAccess;
members: Array<{ role: ProjectMemberRole }>;
};
/**
* The project permission formulas, in one place.
*
* Two functions resolve the same six inputs by different routes:
* `computeProjectAccess` reads them off a project that was fetched with
* `projectAccessInclude()`, and `checkProjectAccess` queries for each relation.
* They then have to agree on what those inputs mean. Both used to carry a
* verbatim copy of the three formulas below, which is a silent-divergence
* hazard rather than a style complaint: change an authorization rule in one
* copy and not the other and a page renders for somebody the API would refuse.
*/
function resolveProjectPermissions(input: {
isOwner: boolean;
isPublic: boolean;
isProjectMember: boolean;
isProjectAdmin: boolean;
workspaceRole: WorkspaceMemberRole | 'OWNER' | null;
ownerBillingActive: boolean;
}) {
const { isOwner, isPublic, isProjectMember, isProjectAdmin, workspaceRole, ownerBillingActive } =
input;
const isWorkspaceMember = !!workspaceRole;
const isWorkspaceAdmin = workspaceRole === WorkspaceMemberRole.ADMIN || workspaceRole === 'OWNER';
return {
isOwner,
isProjectMember,
isProjectAdmin,
isWorkspaceMember,
isWorkspaceAdmin,
hasAccess: ownerBillingActive && (isOwner || isProjectMember || isPublic || isWorkspaceMember),
canEdit: ownerBillingActive && (isOwner || isProjectAdmin || isWorkspaceAdmin),
canDelete: ownerBillingActive && (isOwner || workspaceRole === 'OWNER'),
ownerBillingActive,
};
}
/**
* The workspace permission formulas. Only one caller today, but it is kept
* beside its project twin and exported so it can be tested directly rather
* than only through whichever route happens to exercise it.
*/
export function resolveWorkspacePermissions(input: {
isOwner: boolean;
isMember: boolean;
isAdmin: boolean;
ownerBillingActive: boolean;
}) {
const { isOwner, isMember, isAdmin, ownerBillingActive } = input;
return {
isOwner,
isMember,
isAdmin,
hasAccess: ownerBillingActive && (isOwner || isMember),
canEdit: ownerBillingActive && (isOwner || isAdmin),
canDelete: ownerBillingActive && isOwner,
ownerBillingActive,
};
}
/**
* Pure access computation, no DB queries.
* Use after fetching a project with `projectAccessInclude(userId)`.
*/
export function computeProjectAccess(
project: EnrichedProjectForAccess,
userId: string | undefined
) {
const isOwner = userId === project.ownerId;
const isPublic = project.visibility === 'PUBLIC';
const projectMember = project.members[0] ?? null;
const isProjectMember = !!projectMember;
const isProjectAdmin = projectMember?.role === ProjectMemberRole.ADMIN;
const workspaceOwnerBillingAccess = project.workspace.owner
? hasBillingAccess(project.workspace.owner)
: false;
let workspaceRole: WorkspaceMemberRole | 'OWNER' | null = null;
if (userId === project.workspace.ownerId) {
workspaceRole = 'OWNER';
} else {
const wsMember = project.workspace.members[0] ?? null;
if (wsMember) workspaceRole = wsMember.role;
}
return resolveProjectPermissions({
isOwner,
isPublic,
isProjectMember,
isProjectAdmin,
workspaceRole,
ownerBillingActive: workspaceOwnerBillingAccess,
});
}
/**
* Helper to check project access including workspace membership.
*
* This used to take an `intent`, which skipped both workspace queries for an owner at
* `view` intent. That made it report `isWorkspaceMember: false, isWorkspaceAdmin: false`
* for the actor computeProjectAccess reports `true, true` for: the project owner who also
* owns the workspace, which is the shape every real signup produces. The two are meant to
* answer the same question, so they resolve their inputs the same way now and the option
* is gone rather than kept as a parameter that changes nothing.
*/
export async function checkProjectAccess(
project: { id: string; ownerId: string; workspaceId: string; visibility: string },
userId: string | undefined
) {
const isOwner = userId === project.ownerId;
const isPublic = project.visibility === 'PUBLIC';
// Get project membership
const projectMember = userId
? await db.projectMember.findUnique({
where: { projectId_userId: { projectId: project.id, userId } },
})
: null;
const isProjectMember = !!projectMember;
const isProjectAdmin = projectMember?.role === ProjectMemberRole.ADMIN;
// The workspace role decides `canEdit`/`isWorkspaceMember`, not just whether the viewer
// gets in at all, so it is resolved for every signed-in caller, owners included. The two
// queries run together, so this costs one extra indexed lookup and no extra latency.
const [wsMember, wsOwner] = await Promise.all([
userId
? db.workspaceMember.findUnique({
where: { workspaceId_userId: { workspaceId: project.workspaceId, userId } },
})
: null,
db.workspace.findUnique({
where: { id: project.workspaceId },
select: {
ownerId: true,
owner: {
select: {
subscriptionStatus: true,
trialEndsAt: true,
stripeCurrentPeriodEnd: true,
billingAccessEndedAt: true,
},
},
},
}),
]);
let workspaceRole: WorkspaceMemberRole | 'OWNER' | null = null;
if (userId && wsOwner?.ownerId === userId) {
workspaceRole = 'OWNER';
} else if (wsMember) {
workspaceRole = wsMember.role;
}
const workspaceOwnerBillingAccess = wsOwner?.owner ? hasBillingAccess(wsOwner.owner) : false;
return resolveProjectPermissions({
isOwner,
isPublic,
isProjectMember,
isProjectAdmin,
workspaceRole,
ownerBillingActive: workspaceOwnerBillingAccess,
});
}
// Helper to check workspace access
export async function checkWorkspaceAccess(
workspace: { id: string; ownerId: string },
userId: string | undefined
) {
const isOwner = userId === workspace.ownerId;
// Get workspace membership
const workspaceMember = userId
? await db.workspaceMember.findUnique({
where: { workspaceId_userId: { workspaceId: workspace.id, userId } },
})
: null;
const isMember = !!workspaceMember;
const isAdmin = workspaceMember?.role === WorkspaceMemberRole.ADMIN;
const owner = await db.user.findUnique({
where: { id: workspace.ownerId },
select: {
subscriptionStatus: true,
trialEndsAt: true,
stripeCurrentPeriodEnd: true,
billingAccessEndedAt: true,
},
});
const ownerBillingActive = owner ? hasBillingAccess(owner) : false;
return resolveWorkspacePermissions({ isOwner, isMember, isAdmin, ownerBillingActive });
}