Companion to [PRODUCT-PLAN-v3.1-DELIVERY-PLAN.md](../PRODUCT-PLAN-v3.1-DELIVERY-PLAN.md) Phase 8 (Sprints 8.1–8.5). Covers plan §2.9, §3.4, and all of §14 (the v3.1-only addition).
**Status: ready to build. Sprint order fixed by Sprint 0.1 decision: VK ID first, then everything else** ("do all after vk"). Sequence below follows that: identity core → VK ID → email/phone OTP → MAX/Telegram → Notification Orchestrator.
---
## 1. Entities
```ts
interface Customer {
id: string;
marketplaceId: string; // or global identity strategy, tenant-configurable
Telegram is demoted from sole identity to one `ExternalIdentity` provider among several — it must remain fully functional, just no longer the only path.
## 2. Sprint 8.2 — Social identity: VK ID first, Yandex ID second
Rewritten 2026-08-21 (FH-4.1–FH-4.5). Previously this section specified a VK-only pair of endpoints where the callback took `{ code, codeVerifier }` from the browser. Two changes: the surface is provider-agnostic, and the PKCE verifier stops travelling through the client.
### 2.1 Surface
```
GET /api/identity/v1/{provider}/authorize?returnTo= -> { url } (or 302)
GET /api/identity/v1/{provider}/callback?code=&state=[&device_id=]
POST /api/identity/v1/{provider}/unlink (authenticated)
GET /api/identity/v1/me/identities (authenticated) -> ExternalIdentity[]
```
`{provider}` is `vk` or `yandex` today; `telegram` and `max` join it when §4 migrates them onto `ExternalIdentity`. One controller, one strategy object per provider. The frontend gateway is a single interface (`src/app/core/identity/services/social-identity-gateway.interface.ts`) — providers differ only in a path segment, because everything that actually differs between them is backend-side.
### 2.2 The backend owns state and the code verifier
`/authorize` generates `state` and `code_verifier`, stores `{ state, codeVerifier, marketplaceId, returnTo, expiresAt }` server-side or in a signed `HttpOnly` cookie, TTL 10 minutes, **single use — deleted on first presentation**. It returns (or redirects to) the provider URL carrying `code_challenge` (S256) and `state`.
`/callback` validates `state`, exchanges the code using the stored verifier, fetches the profile, resolves or links the `ExternalIdentity`, issues the customer session cookie ([Track S §2.1](TRACK-S-SECURITY-RBAC-CONTRACT.md)), and redirects to `returnTo`.
- The client never sees a client secret, an access token, or a code verifier. We are a confidential client; a browser-held verifier buys nothing and adds a place to steal it from.
- An unknown, expired, or replayed `state` is a generic error. Do not distinguish the cases to the caller.
-`returnTo` is validated against the tenant's own verified origin. It is an open redirect otherwise.
### 2.3 Identity resolution
- A repeat login for the same `providerUserId` resolves to the same `Customer`, never a duplicate.
-`UNIQUE (provider, providerUserId)`. If a provider account is already bound to a *different*`Customer`, that is an identity conflict — route to controlled resolution, never silently rebind (plan §14.3). The unique index is what enforces this; a service-layer check is not sufficient.
- Whether one VK account across two of our storefronts is one `Customer` or two is a **product decision that must be made before implementation** (FH-0.1). `Customer.marketplaceId` currently implies two, and two is the safer default for data protection.
- Email is optional on `Customer`. Yandex returns one in most cases; VK frequently does not.
### 2.4 Per-tenant OAuth applications
Client id and secret are per marketplace, stored with the [Track S §4.2](TRACK-S-SECURITY-RBAC-CONTRACT.md) envelope: `{ clientId, clientSecret, scopes[], redirectUri }`. Never returned by any endpoint.
**The redirect_uri problem, which must be solved before any code is written.** Both providers validate `redirect_uri` against an exact registered list. We cannot register one per tenant domain and we cannot let tenants supply their own. Resolution: one **central identity host** as the sole registered callback, the origin tenant carried inside the signed `state`, then a 302 back to the tenant domain with a short-lived signed one-time handoff token that the tenant API exchanges for its session cookie. This is a one-way door — retrofitting it after the first provider is live is expensive.
### 2.5 Provider notes
Confirm exact parameter and scope names against live provider documentation before implementing; both providers have revised their flows recently.
logout https://id.vk.com/oauth2/logout (call on unlink)
```
**The callback returns `device_id` alongside `code`, and the token exchange fails without it.** This is the single most common VK ID integration bug; it is in this contract so it is not rediscovered at debugging time.
**Yandex ID** — OAuth 2.0, PKCE supported; use it.
Implements the already-approved [email/phone login spec](../superpowers/specs/2026-08-15-email-phone-login-design.md). Per v3.1 §14, position this as **recovery/fallback** when a messenger channel is unavailable — not the primary login path. No new contract beyond that spec; this section exists only to fix its place in the build order relative to VK ID.
## 4. Sprint 8.4 — MAX + Telegram bot channels
```ts
interface BotConversationBinding {
customerId: string;
marketplaceId: string;
provider: 'telegram' | 'max';
chatId: string;
state: string; // see §5 state machine
orderId?: string;
lastMessageAt: string;
}
```
MAX linking flow (bot-assisted, one-time code):
```
POST /api/identity/v1/max/link-code -> { code, expiresAt } (TTL, single-use, bound to marketplace + browser session)
```
User opens the MAX bot, sends the code; a confirmed bot update on the backend calls:
```
POST /api/providers/v1/max/bot-webhook -- idempotent; a repeated update must not create a duplicate binding
```
which links the pending `Customer` session to the MAX `chatId`.
All three providers' incoming bot updates (VK, MAX, Telegram) normalize into one shape:
```ts
interface MessagingEvent {
provider: 'telegram' | 'vk' | 'max';
chatId: string;
orderId?: string;
text?: string;
receivedAt: string;
}
```
Provider bot tokens/secrets never reach the frontend, ever — only the backend calls each provider's Bot API.
On `order.paid` (Phase 2 event bus), the orchestrator picks the customer's chosen channel (captured at checkout, see [Phase 6](PHASE-6-CART-CHECKOUT-CONTRACT.md) and `OrderContactSnapshot` in [Phase 2](PHASE-2-ORDERS-NOTIFICATIONS-CONTRACT.md)) and drives:
- **The bot never changes financial statuses.** It can only write `DeliveryDetailsSnapshot` fields via a dedicated Delivery Service — no bot code path touches `Order.paymentStatus`/`orderStatus`.
- The backoffice `Notification` (Phase 2 §6) fires unconditionally on `order.paid`, independent of whether the customer's messenger channel is reachable.
- If the chosen channel is unavailable, log a `DeliveryAttempt` error (Phase 2 §6) and fall back per tenant-configured policy (e.g. email/SMS) — never block the order itself.
- Follow-up messages are rate-limited per tenant policy; after the configured attempt limit, hand off to a human manager instead of continuing to message.
```
POST /api/providers/v1/{provider}/bot-webhook -- generic entrypoint for all three providers
GET /api/admin/v2/orders/{orderId}/conversation -- message history + current state, for manager handoff
POST /api/admin/v2/orders/{orderId}/conversation/handoff
```
## 6. What the frontend will start doing once this ships
- VK ID and Yandex ID login buttons on the storefront. The client half already exists and is provider-agnostic: `SocialLoginButtonComponent` behind `SOCIAL_IDENTITY_GATEWAY`, with a real HTTP gateway waiting on §2.1's endpoints. Adding Yandex once VK works is a `provider` input, not new code.
- Account linking screen (`GET /me/identities`, link/unlink), including the identity-conflict resolution path from §2.3.