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KEY-WP-0013-T05's tenant blocker did not need the decision it was waiting on. The two proposed resolutions differ in where a human's tenant comes from -- the directory record, or the client registration -- and an implementation exists that is correct under either, so the choice can be made later without another migration. A client registration may now declare a tenant. humanTenant() resolves it by four rules: no declaration keeps the directory answer unchanged; a declared zone applies where the directory has placed the user nowhere; agreement passes; and a declared zone conflicting with a directory assignment refuses issuance rather than relabelling the user. The refusal is the design, not an edge case. A registration can bind a zone for unplaced users and can never move a placed one, so this gets the approval chain its tenant:platform without writing a general cross-tenant override into the issuer. It fails closed rather than picking a winner, because either answer would be a silent cross-tenant assertion, and it reports 403 with error_type: tenant_binding so an operator can tell a misconfigured registration from a rejected login. If the owners later populate directory tenants, the same code stops supplying the zone and starts enforcing agreement with it. Safe only because client registrations are static and deployment-owned. The tenant contract records that this rule must be revisited if dynamic client registration is ever admitted. Tests cover all four rules; neutering the conflict check fails the relabel test rather than passing silently. T05 now waits on one thing only: the client_id and callback URI from informed-decision once it has a deployed origin. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_016uV8zoCKpA1WRAxsKRYbdH Assistant: claude-code Assistant-Model: opus Assistant-Process: 1182213@bnt-lap001 Assistant-Session: 966597b9-ae61-46a4-8b9e-1594ab3ec4ad
549 lines
18 KiB
Go
549 lines
18 KiB
Go
package oidc
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import (
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"crypto"
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"crypto/rand"
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"crypto/rsa"
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"crypto/sha256"
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"crypto/subtle"
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"encoding/base64"
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"encoding/json"
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"fmt"
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"net/http"
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"net/url"
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"strings"
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"time"
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"keycape/internal/adapters/tenantengine"
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"keycape/internal/domain"
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profileerrors "keycape/internal/errors"
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"keycape/internal/server/telemetry"
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)
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// TokenHandler implements POST /token.
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type TokenHandler struct {
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ClientConfig map[string]*domain.Client
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Sessions *SessionStore
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Users domain.UserRepository
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SigningKey *rsa.PrivateKey
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Issuer string
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TokenLifetime time.Duration
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Emitter telemetry.Emitter
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// TenantEngine sources the optional tenant_roles claim (KEY-WP-0005-T02).
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// Nil disables it entirely -- token issuance never depends on it.
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TenantEngine *tenantengine.Client
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}
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// tokenResponse is the JSON body returned on a successful token exchange.
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type tokenResponse struct {
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AccessToken string `json:"access_token"`
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TokenType string `json:"token_type"`
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ExpiresIn int `json:"expires_in"`
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IDToken string `json:"id_token,omitempty"`
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}
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// ServeHTTP handles POST /token.
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func (h *TokenHandler) ServeHTTP(w http.ResponseWriter, r *http.Request) {
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ctx := r.Context()
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if err := r.ParseForm(); err != nil {
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http.Error(w, "invalid form body", http.StatusBadRequest)
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return
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}
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grantType := r.FormValue("grant_type")
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if grantType == "client_credentials" {
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h.serveClientCredentials(w, r)
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return
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}
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clientID := r.FormValue("client_id")
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code := r.FormValue("code")
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codeVerifier := r.FormValue("code_verifier")
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// 1. Validate grant_type.
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if grantType != "authorization_code" {
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profileerrors.FeatureNotSupported(
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"only grant_type=authorization_code is supported",
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"grant_type="+grantType,
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).Write(w, http.StatusBadRequest)
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return
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}
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// 2. Validate client exists and may use this grant.
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client, ok := h.ClientConfig[clientID]
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if !ok {
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profileerrors.InvalidProfileUsage("unknown client_id", "client_id").
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Write(w, http.StatusBadRequest)
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return
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}
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// Grant-type eligibility, enforced equivalently to the service path
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// (KEY-WP-0016-T02). An empty grantTypes is an implicit authorization-code
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// client, matching config validation; a client_credentials-only client must
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// not reach the browser path.
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if len(client.GrantTypes) > 0 && !containsString(client.GrantTypes, "authorization_code") {
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profileerrors.InvalidProfileUsage(
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"client is not registered for grant_type=authorization_code",
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"grant_type",
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).Write(w, http.StatusBadRequest)
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return
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}
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// Confidential authorization-code clients authenticate with their secret,
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// using the same credential sources as the service grant. A public client
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// must not be able to present a secret and be treated as authenticated.
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if client.ClientType == "confidential" {
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presentedID, secret, ok := basicClientCredentials(r)
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if !ok || presentedID != clientID || client.ClientSecret == "" ||
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!secretsEqual(secret, client.ClientSecret) {
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profileerrors.InvalidProfileUsage(
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"client authentication failed",
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"Authorization",
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).Write(w, http.StatusUnauthorized)
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return
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}
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}
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// 3. Consume the PKCE session. Single-use and atomic: see
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// SessionStore.Consume (KEY-WP-0016-T01).
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sess, ok := h.Sessions.Consume(code)
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if !ok {
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profileerrors.InvalidProfileUsage(
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"authorization code not found or expired",
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"code",
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).Write(w, http.StatusBadRequest)
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return
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}
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// Verify client_id matches the session.
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if sess.ClientID != clientID {
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profileerrors.InvalidProfileUsage(
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"client_id does not match the authorization code",
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"client_id",
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).Write(w, http.StatusBadRequest)
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return
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}
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// Bind the exchange to the redirect URI the code was issued for
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// (RFC 6749 section 4.1.3, KEY-WP-0016-T02). /authorize always records an
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// exactly-matched registered redirect, so the parameter is always required
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// here and must be identical.
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if redirectURI := r.FormValue("redirect_uri"); redirectURI != sess.RedirectURI {
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profileerrors.InvalidProfileUsage(
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"redirect_uri does not match the authorization request",
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"redirect_uri",
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).Write(w, http.StatusBadRequest)
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return
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}
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// Recheck grants in case the client registration changed after authorization.
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for _, scope := range sess.Scopes {
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if !containsString(h.ClientConfig[clientID].AllowedScopes, scope) {
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profileerrors.InvalidProfileUsage("requested scope is not allowed", "scope").Write(w, http.StatusBadRequest)
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return
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}
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}
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// 4. Verify PKCE code_verifier.
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if !verifyPKCE(codeVerifier, sess.PKCEChallenge) {
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profileerrors.InvalidProfileUsage(
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"code_verifier does not match code_challenge",
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"code_verifier",
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).Write(w, http.StatusBadRequest)
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return
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}
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// 5. Look up user.
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user, err := h.Users.LookupUser(ctx, sess.Username)
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if err != nil {
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http.Error(w, "user not found", http.StatusInternalServerError)
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return
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}
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if isSuspended(user) {
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profileerrors.RejectedForSafety(
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"account is suspended",
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"account_lifecycle",
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).Write(w, http.StatusForbidden)
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return
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}
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// 6. Build JWT claims.
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now := time.Now()
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exp := now.Add(h.TokenLifetime)
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claims := map[string]interface{}{
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"iss": h.Issuer,
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"sub": user.ID,
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"aud": clientID,
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"exp": exp.Unix(),
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"iat": now.Unix(),
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}
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if sess.Nonce != "" {
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claims["nonce"] = sess.Nonce
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}
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scopeSet := make(map[string]bool)
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for _, s := range sess.Scopes {
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scopeSet[s] = true
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}
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if scopeSet["profile"] {
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claims["preferred_username"] = user.Username
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}
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if scopeSet["email"] {
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claims["email"] = user.Email
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}
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// Core claims required by net-kingdom/canon/standards/iam-profile_v0.3.md
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// for every production token -- not scope-gated, unlike the recommended
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// human claims above (KEY-WP-0005-T01).
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tenant, err := humanTenant(h.ClientConfig[clientID], user)
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if err != nil {
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profileerrors.RejectedForSafety(
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"tenant binding conflict",
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"tenant_binding",
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).Write(w, http.StatusForbidden)
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return
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}
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claims["tenant"] = tenant
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claims["principal_type"] = "human"
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claims["groups"] = nonNilStrings(user.Groups)
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claims["roles"] = nonNilStrings(user.Roles)
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claims["assurance"] = assuranceClaim(sess.MFAVerified, sess.AuthTime, now)
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// Optional cached tenant_roles claim (KEY-WP-0005-T02). Fails open --
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// see internal/adapters/tenantengine's package doc for why this is the
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// one place in the whole tenant_roles design where that's correct.
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if roles, ok := h.TenantEngine.Roles(ctx, tenant); ok {
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claims["tenant_roles"] = roles
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}
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// 7. Sign JWT with RSA-SHA256.
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kid := "key-1" // static kid for v0.1
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jwtToken, err := buildJWT(claims, kid, h.SigningKey)
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if err != nil {
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http.Error(w, "failed to build JWT", http.StatusInternalServerError)
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return
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}
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// Access tokens target the statically registered resource server. ID tokens
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// remain bound to the OIDC relying party.
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if audience := h.ClientConfig[clientID].Audience; audience != "" {
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claims["aud"] = audience
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}
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claims["scope"] = strings.Join(sess.Scopes, " ")
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accessToken, err := buildJWT(claims, kid, h.SigningKey)
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if err != nil {
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http.Error(w, "failed to build JWT", http.StatusInternalServerError)
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return
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}
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// 8. Build response. The session was already consumed at lookup, so no
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// separate replay-prevention delete is needed here.
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resp := tokenResponse{
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AccessToken: accessToken,
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TokenType: "Bearer",
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ExpiresIn: int(h.TokenLifetime.Seconds()),
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IDToken: jwtToken,
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}
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// 10. Emit token_issued telemetry.
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h.Emitter.Emit(ctx, telemetry.Event{
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Timestamp: time.Now(),
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EventType: telemetry.EventTokenIssued,
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ClientID: clientID,
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Endpoint: "/token",
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Result: "success",
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Scopes: sess.Scopes,
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GrantType: grantType,
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})
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w.Header().Set("Content-Type", "application/json")
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w.WriteHeader(http.StatusOK)
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_ = json.NewEncoder(w).Encode(resp)
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}
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// basicClientCredentials reads client_secret_basic credentials, applying the
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// form-encoding decode RFC 6749 appendix B requires of both halves. Shared by
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// the service grant and confidential authorization-code client authentication.
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func basicClientCredentials(r *http.Request) (clientID, clientSecret string, ok bool) {
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clientID, clientSecret, ok = r.BasicAuth()
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if !ok {
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return "", "", false
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}
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decodedID, idErr := url.QueryUnescape(clientID)
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decodedSecret, secretErr := url.QueryUnescape(clientSecret)
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if idErr != nil || secretErr != nil {
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return "", "", false
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}
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return decodedID, decodedSecret, true
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}
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// secretsEqual compares two secrets in constant time. Digesting first keeps the
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// comparison length-independent, so a wrong-length secret is indistinguishable
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// from a wrong-value one.
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func secretsEqual(presented, expected string) bool {
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presentedDigest := sha256.Sum256([]byte(presented))
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expectedDigest := sha256.Sum256([]byte(expected))
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return subtle.ConstantTimeCompare(presentedDigest[:], expectedDigest[:]) == 1
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}
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func (h *TokenHandler) serveClientCredentials(w http.ResponseWriter, r *http.Request) {
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ctx := r.Context()
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clientID, clientSecret, ok := r.BasicAuth()
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if !ok {
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profileerrors.InvalidProfileUsage("client_secret_basic authentication required", "Authorization").
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Write(w, http.StatusUnauthorized)
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return
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}
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clientID, idErr := url.QueryUnescape(clientID)
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clientSecret, secretErr := url.QueryUnescape(clientSecret)
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if idErr != nil || secretErr != nil {
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profileerrors.InvalidProfileUsage("invalid client authentication encoding", "Authorization").Write(w, http.StatusUnauthorized)
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return
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}
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client, ok := h.ClientConfig[clientID]
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if !ok || client.ClientType != "confidential" || !containsString(client.GrantTypes, "client_credentials") {
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profileerrors.InvalidProfileUsage("invalid confidential client", "client_id").
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Write(w, http.StatusUnauthorized)
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return
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}
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presentedDigest := sha256.Sum256([]byte(clientSecret))
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expectedDigest := sha256.Sum256([]byte(client.ClientSecret))
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if client.ClientSecret == "" ||
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subtle.ConstantTimeCompare(presentedDigest[:], expectedDigest[:]) != 1 {
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profileerrors.InvalidProfileUsage("invalid client authentication", "Authorization").
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Write(w, http.StatusUnauthorized)
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return
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}
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requestedScopes := strings.Fields(r.FormValue("scope"))
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if len(requestedScopes) == 0 {
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requestedScopes = append([]string(nil), client.AllowedScopes...)
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}
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for _, scope := range requestedScopes {
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if !containsString(client.AllowedScopes, scope) {
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profileerrors.InvalidProfileUsage("requested scope is not allowed", "scope").
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Write(w, http.StatusBadRequest)
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return
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}
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}
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now := time.Now()
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tokenLifetime := h.TokenLifetime
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if client.TokenLifetime > 0 {
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tokenLifetime = client.TokenLifetime
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}
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claims := map[string]interface{}{
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"iss": h.Issuer,
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"sub": client.ServiceSubject,
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"aud": accessAudience(client),
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"exp": now.Add(tokenLifetime).Unix(),
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"iat": now.Unix(),
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"tenant": client.Tenant,
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"principal_type": "service",
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"groups": []string{},
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"roles": nonNilStrings(client.Roles),
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"scope": strings.Join(requestedScopes, " "),
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"assurance": map[string]interface{}{
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"level": "aal1", "methods": []string{"client_secret"},
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"mfa": false, "source": "key-cape", "at": now.Unix(),
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},
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}
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if roles, ok := h.TenantEngine.Roles(ctx, client.Tenant); ok {
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claims["tenant_roles"] = roles
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}
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jwtToken, err := buildJWT(claims, "key-1", h.SigningKey)
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if err != nil {
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http.Error(w, "failed to build JWT", http.StatusInternalServerError)
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return
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}
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h.Emitter.Emit(ctx, telemetry.Event{
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Timestamp: now, EventType: telemetry.EventTokenIssued, ClientID: clientID,
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Endpoint: "/token", Result: "success", Scopes: requestedScopes,
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GrantType: "client_credentials",
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})
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w.Header().Set("Content-Type", "application/json")
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w.WriteHeader(http.StatusOK)
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_ = json.NewEncoder(w).Encode(tokenResponse{
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AccessToken: jwtToken, TokenType: "Bearer",
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ExpiresIn: int(tokenLifetime.Seconds()),
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})
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}
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func containsString(values []string, wanted string) bool {
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for _, value := range values {
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if value == wanted {
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return true
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}
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}
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return false
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}
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func isSuspended(user *domain.User) bool {
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return containsString(user.Groups, "netkingdom-suspended")
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}
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// ---------------------------------------------------------------------------
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// IAM Profile core claims (KEY-WP-0005-T01)
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// ---------------------------------------------------------------------------
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// defaultTenant is the fallback tenant claim for users with no explicit
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// Tenant assignment yet. This workstation currently operates a single
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// tenant (tenant:coulomb, ADR-0006); later tenants (e.g. tenant:friendly:binky,
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// ADR-0013) require an explicit domain.User.Tenant value -- this default
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// never silently assigns a user to a tenant other than the platform's
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// original one.
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const defaultTenant = "tenant:coulomb"
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// effectiveTenant resolves the tenant claim for a user, falling back to
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// defaultTenant when the user has no explicit tenant assignment. The IAM
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// Profile requires a non-empty tenant claim on every token.
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func effectiveTenant(user *domain.User) string {
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if user.Tenant != "" {
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return user.Tenant
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}
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return defaultTenant
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}
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// humanTenant resolves the tenant claim for a human token (KEY-WP-0013-T05).
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//
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// A human's tenant is normally a property of the person, read from the
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// directory. But the approval chain is bound to the landlord zone by decision
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// 5ed3fb35-eca9-413a-82b9-95171ba85bf6, and approval-engine compares the claim
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// by exact string equality, so an approver client has to be able to state the
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// zone it issues into. Without this every human token fell back to
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// defaultTenant and would have been refused downstream -- as a failed approval
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// rather than as a registration defect.
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//
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// The rule is deliberately not an override:
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//
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// - no client tenant declared -> the directory answer, unchanged;
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// - declared, user unassigned -> the declared zone;
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// - declared and equal -> agreement, no ambiguity;
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// - declared and different -> refuse to issue.
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//
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// So a registration can bind a zone for users the directory has not placed, and
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// can never relabel a user the directory HAS placed into a different one. That
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// last case fails closed rather than picking a winner, because either answer
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// would be a silent cross-tenant assertion. It also means this stays correct if
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// the directory later populates Tenant: the same code turns from supplying the
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// zone into enforcing agreement with it, with no second migration.
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//
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// This is only safe because client registrations are static and
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// deployment-owned; KeyCape excludes dynamic client registration by design. A
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// self-service client that could name its users' tenant would be an escalation.
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func humanTenant(client *domain.Client, user *domain.User) (string, error) {
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if client == nil || client.Tenant == "" {
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return effectiveTenant(user), nil
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}
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if user.Tenant != "" && user.Tenant != client.Tenant {
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return "", fmt.Errorf("client %q binds tenant %q but the directory assigns this user a different tenant", client.ClientID, client.Tenant)
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}
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return client.Tenant, nil
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}
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// nonNilStrings returns s, or an empty (non-nil) slice if s is nil, so the
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// claim always serializes as `[]`, never `null` -- the profile requires
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// groups/roles to be present, "possibly empty", not absent.
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func nonNilStrings(s []string) []string {
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if s == nil {
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return []string{}
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}
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return s
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}
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// assuranceClaim builds the profile's `assurance` object from whether MFA
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// was actually verified during this authorization (session.MFAVerified),
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// not from static enrollment state -- a user who has MFA enrolled but
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// wasn't challenged for it in this particular flow gets aal1, not aal2.
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//
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// `at` is the time the user authenticated, not the time this token was
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// minted. Those differ whenever a browser session is reused, and the gap is
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// the whole point: approval-engine stores this object verbatim as the only
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// downstream record that MFA occurred (KEY-WP-0013-T05), so mint time would
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// overstate how recently the person proved anything. issuedAt is the
|
|
// fallback for a session predating this field.
|
|
func assuranceClaim(mfaVerified bool, authTime, issuedAt time.Time) map[string]interface{} {
|
|
at := authTime
|
|
if at.IsZero() {
|
|
at = issuedAt
|
|
}
|
|
level := "aal1"
|
|
methods := []string{"pwd"}
|
|
if mfaVerified {
|
|
level = "aal2"
|
|
methods = append(methods, "otp")
|
|
}
|
|
return map[string]interface{}{
|
|
"level": level,
|
|
"methods": methods,
|
|
"mfa": mfaVerified,
|
|
"source": "key-cape",
|
|
"at": at.Unix(),
|
|
}
|
|
}
|
|
|
|
// ---------------------------------------------------------------------------
|
|
// PKCE verification
|
|
// ---------------------------------------------------------------------------
|
|
|
|
// verifyPKCE checks BASE64URL(SHA256(verifier)) == challenge (S256 method).
|
|
func verifyPKCE(verifier, challenge string) bool {
|
|
h := sha256.New()
|
|
h.Write([]byte(verifier))
|
|
computed := base64.RawURLEncoding.EncodeToString(h.Sum(nil))
|
|
return computed == challenge
|
|
}
|
|
|
|
// ---------------------------------------------------------------------------
|
|
// JWT construction (stdlib only — no external JWT library)
|
|
// ---------------------------------------------------------------------------
|
|
|
|
type jwtHeader struct {
|
|
Alg string `json:"alg"`
|
|
Typ string `json:"typ"`
|
|
Kid string `json:"kid"`
|
|
}
|
|
|
|
// buildJWT constructs and signs a JWT using RSA-SHA256 with the standard library.
|
|
// Format: base64url(header) + "." + base64url(payload) + "." + base64url(signature)
|
|
func buildJWT(claims map[string]interface{}, kid string, key *rsa.PrivateKey) (string, error) {
|
|
// Header.
|
|
hdr := jwtHeader{Alg: "RS256", Typ: "JWT", Kid: kid}
|
|
hdrJSON, err := json.Marshal(hdr)
|
|
if err != nil {
|
|
return "", err
|
|
}
|
|
hdrB64 := base64.RawURLEncoding.EncodeToString(hdrJSON)
|
|
|
|
// Payload.
|
|
payloadJSON, err := json.Marshal(claims)
|
|
if err != nil {
|
|
return "", err
|
|
}
|
|
payloadB64 := base64.RawURLEncoding.EncodeToString(payloadJSON)
|
|
|
|
// Signing input.
|
|
signingInput := hdrB64 + "." + payloadB64
|
|
|
|
// Digest.
|
|
digest := sha256.Sum256([]byte(signingInput))
|
|
|
|
// Sign with PKCS1v15 / SHA256.
|
|
sig, err := rsa.SignPKCS1v15(rand.Reader, key, crypto.SHA256, digest[:])
|
|
if err != nil {
|
|
return "", err
|
|
}
|
|
sigB64 := base64.RawURLEncoding.EncodeToString(sig)
|
|
|
|
return strings.Join([]string{hdrB64, payloadB64, sigB64}, "."), nil
|
|
}
|
|
|
|
// accessAudience is configured by the issuer, never selected by request input.
|
|
func accessAudience(client *domain.Client) string {
|
|
if client.Audience != "" {
|
|
return client.Audience
|
|
}
|
|
return client.ClientID
|
|
}
|