Files
Niklas Ye 5b4683febf Let each team name its own OIDC group, not a global mapping
Team membership from single sign-on used to come from one env var,
TERDUT_OIDC_GROUP_MAPPINGS, matched against a team by name and creating
the team if none existed. That put the decision in the server's
environment rather than the team's own hands, needed a restart to
change, and let a typo in a team name silently create a stray team.

Each team now carries its own oidc_member_group and oidc_owner_group,
set by its owner (or an administrator) from the Members tab, or PUT
/api/teams/{teamID}/oidc-groups. The "highest role wins" rule
TERDUT_OIDC_GROUP_MAPPINGS used to apply across mappings now applies
across one team's own two fields: being in both makes somebody an
owner. The sync no longer creates a team by name; a group only ever
grants into a team that already exists.

This is a breaking change for anyone already using
TERDUT_OIDC_GROUP_MAPPINGS, deliberately not auto-migrated: an
OIDC-sourced membership is dropped at a user's next sign-in until its
team's owner re-sets the group. The README's OIDC section spells out
the migration and the risk of a visible access gap during it.

TERDUT_OIDC_ADMIN_GROUP and TERDUT_OIDC_ALLOWED_GROUPS are untouched --
only team membership moved. terdut-tui needs no change: it only reads
GET /api/teams and GET /api/teams/{id}/members, and neither response
shape moved.
2026-09-27 11:43:57 +02:00

219 lines
10 KiB
Go

package api
import (
"database/sql"
"net/http"
"git.ryuvia.com/niklas/terdut-server/internal/config"
"git.ryuvia.com/niklas/terdut-server/internal/oidc"
"git.ryuvia.com/niklas/terdut-server/internal/web"
"github.com/go-chi/chi/v5"
"github.com/go-chi/chi/v5/middleware"
)
// NewRouter builds the HTTP surface. notify is passed through to the webhook,
// the only handler that has to decide where a new incident's page goes; a zero
// notify disables notifications. Dead man's switches are per team and read from
// the database, so nothing about them is wired in here.
func NewRouter(db *sql.DB, notify NotifyConfig, cfg config.Config) http.Handler {
// One limiter each, both process-wide for the life of the router: login
// counts failed passwords, sign-up counts account creation, and mixing the
// two would let a burst of sign-ups lock somebody out of logging in.
loginLimit := newLoginLimiter()
signupLimiter := newLoginLimiter()
oidcLimit := newLoginLimiter()
r := chi.NewRouter()
r.Use(middleware.Logger)
r.Use(middleware.Recoverer)
r.Get("/healthz", func(w http.ResponseWriter, r *http.Request) {
respond(w, http.StatusOK, map[string]string{"status": "ok"})
})
// Unauthenticated: bootstrap, the Alertmanager webhook receiver, and the
// Acknowledge button in a push notification. The last one is authorised by
// the scoped token in its path rather than an API key, and has to stay
// reachable from outside the cluster for the button to work.
r.Post("/api/bootstrap", handleBootstrap(db))
r.Post("/api/notify/ack/{token}", handleNotifyAck(db))
// Alert ingestion. The key in the path says both that the sender may post
// and which team the alerts belong to, which is why it needs no session.
//
// This is the only way in. The pre-teams /api/alertmanager/webhook, which
// took no credential at all, was removed in v0.13.0 once the cluster's
// Alertmanager had moved onto a key; a sender still posting there gets the
// JSON 404 every unknown /api path gets.
r.Post("/api/integrations/{key}/alertmanager", handleIntegrationWebhook(db, notify))
// Signing up. Both are unauthenticated by necessity: the caller has no
// account yet. The info endpoint says whether the door is open and whether
// an invite link is good, so the form can say so before somebody picks a
// password.
r.Get("/api/signup", handleSignupInfo(db))
r.With(passwordLoginOnly(!cfg.DisablePasswordLogin)).
Post("/api/signup", handleSignup(db, signupLimiter, notify.PublicURL))
// How to sign in: what the login form and the TUI offer before anybody types.
r.Get("/api/auth/config", handleAuthConfig(cfg))
// Signing in to the web UI. Login trades a password for a session cookie,
// which AuthMiddleware accepts in place of an API key.
r.With(passwordLoginOnly(!cfg.DisablePasswordLogin)).
Post("/api/login", handleLogin(db, loginLimit, notify.PublicURL))
r.Post("/api/logout", handleLogout(db, notify.PublicURL))
// Single sign-on. Both routes are navigations the browser makes, to and from
// the provider, so they answer with redirects rather than JSON.
if cfg.OIDC.Enabled() {
prov := oidc.New(cfg.OIDC, notify.PublicURL)
r.Get("/api/oidc/login", handleOIDCLogin(db, prov, oidcLimit, notify.PublicURL))
r.Get("/api/oidc/callback", handleOIDCCallback(db, prov, notify.PublicURL))
// Device login, for a client with no browser of its own. Both are
// unauthenticated: the device code in the body is the credential.
r.Post("/api/oidc/device", handleDeviceStart(db, oidcLimit, notify.PublicURL))
r.Post("/api/oidc/device/token", handleDeviceToken(db, cfg.OIDC.SessionMaxAge, notify.PublicURL))
}
// All other /api routes require a valid API key.
r.Group(func(r chi.Router) {
r.Use(AuthMiddleware(db))
r.Get("/api/me", handleMe(db))
// Approving or refusing a device login is done by somebody signed in
// to a browser, and needs the same SSO configuration the flow does.
if cfg.OIDC.Enabled() {
r.Post("/api/oidc/device/approve", handleDeviceDecision(db, true))
r.Post("/api/oidc/device/deny", handleDeviceDecision(db, false))
}
r.Put("/api/me/onboarding", handleDismissOnboarding(db))
// Proves the topic works, which is the only part of "notifications are
// set up" that the person holding the phone can confirm.
r.Post("/api/me/notify/test", handleTestNotification(notify, db))
// Readable by anyone signed in: the queue's assignment control and the
// on-call schedule both need to name people.
r.Get("/api/users", handleListUsers(db))
// Your own account, or anybody's if you are an admin. The handlers call
// requireSelfOrAdmin rather than sitting behind AdminOnly, because
// which rule applies depends on the {id} in the path.
r.Get("/api/users/{id}/teams", handleUserTeams(db))
r.Put("/api/users/{id}/notify", handleSetNotifyTarget(db))
r.Put("/api/users/{id}/password", handleSetPassword(db))
r.Post("/api/users/{id}/api-keys", handleCreateAPIKey(db))
r.Delete("/api/users/{id}/api-keys/{keyID}", handleDeleteAPIKey(db))
// Administration: who exists, and who is an administrator. Until #3
// these were open to any authenticated caller, which meant every user
// could delete every other one.
r.Group(func(r chi.Router) {
r.Use(AdminOnly)
r.Post("/api/users", handleCreateUser(db))
r.Delete("/api/users/{id}", handleDeleteUser(db))
r.Put("/api/users/{id}/admin", handleSetAdmin(db))
r.Put("/api/users/{id}/disabled", handleSetUserDisabled(db))
// What exists on this server, and how it behaves. /api/teams
// answers "what am I in"; this one answers "what is there".
r.Get("/api/admin/teams", handleAdminListTeams(db))
// One team and who is in it. The member list under
// /api/teams/{id}/members stays member-only and still 404s
// an administrator from outside; this is a different
// question, so it is a different endpoint.
r.Get("/api/admin/teams/{teamID}", handleAdminGetTeam(db))
r.Get("/api/admin/settings", handleGetSettings(db, cfg))
r.Put("/api/admin/settings", handleSetSettings(db))
})
// Alerts are read-only: they are Alertmanager's record, not a work
// queue. Everything a person does happens on the incident instead.
r.Get("/api/alerts", handleListAlerts(db))
r.Get("/api/alerts/{id}", handleGetAlert(db))
r.Get("/api/incidents", handleListIncidents(db))
r.Get("/api/incidents/{id}", handleGetIncident(db))
r.Get("/api/incidents/{id}/alerts", handleIncidentAlerts(db))
r.Get("/api/incidents/{id}/timeline", handleIncidentTimeline(db))
r.Get("/api/incidents/{id}/similar", handleIncidentSimilar(db))
r.Post("/api/incidents/{id}/acknowledge", handleIncidentAcknowledge(db))
r.Delete("/api/incidents/{id}/acknowledge", handleIncidentUnacknowledge(db))
r.Post("/api/incidents/{id}/resolve", handleIncidentResolve(db))
r.Post("/api/incidents/{id}/assign", handleIncidentAssign(db))
r.Post("/api/incidents/{id}/snooze", handleIncidentSnooze(db))
r.Delete("/api/incidents/{id}/snooze", handleIncidentUnsnooze(db))
r.Post("/api/incidents/{id}/archive", handleIncidentArchive(db))
r.Delete("/api/incidents/{id}/archive", handleIncidentUnarchive(db))
r.Post("/api/incidents/{id}/notes", handleCreateNote(db))
r.Delete("/api/incidents/{id}/notes/{eventID}", handleDeleteNote(db))
// Teams. A user sees the teams they belong to; an owner configures one.
r.Get("/api/teams", handleListTeams(db))
r.Post("/api/teams", handleCreateTeam(db))
r.Put("/api/teams/{teamID}", handleRenameTeam(db))
r.Delete("/api/teams/{teamID}", handleDeleteTeam(db))
r.Get("/api/teams/{teamID}/members", handleListTeamMembers(db))
r.Post("/api/teams/{teamID}/members", handleAddTeamMember(db))
r.Delete("/api/teams/{teamID}/members/{userID}", handleRemoveTeamMember(db))
// A team's own OIDC group binding: which provider groups grant member
// and owner access to it.
r.Get("/api/teams/{teamID}/oidc-groups", handleGetTeamOIDCGroups(db))
r.Put("/api/teams/{teamID}/oidc-groups", handleSetTeamOIDCGroups(db))
// Invite links into this team.
r.Get("/api/teams/{teamID}/invites", handleListInvites(db))
r.Post("/api/teams/{teamID}/invites", handleCreateInvite(db, notify.PublicURL))
r.Delete("/api/teams/{teamID}/invites/{inviteID}", handleRevokeInvite(db))
// A team's escalation ladder: who is paged when nobody answers.
r.Get("/api/teams/{teamID}/escalation", handleGetEscalation(db))
r.Put("/api/teams/{teamID}/escalation", handleSetEscalation(db))
// A team's own dead man's switches: which of its alerts are heartbeats,
// and how long a silence has to last before somebody is paged.
r.Get("/api/teams/{teamID}/deadman/switches", handleListTeamDeadman(db))
r.Post("/api/teams/{teamID}/deadman/switches", handleCreateTeamDeadman(db))
r.Delete("/api/teams/{teamID}/deadman/switches/{switchID}", handleDeleteTeamDeadman(db))
// Integrations: where a team's alerts come in, and the key that says so.
r.Get("/api/teams/{teamID}/integrations", handleListIntegrations(db))
r.Post("/api/teams/{teamID}/integrations", handleCreateIntegration(db, notify.PublicURL))
r.Patch("/api/teams/{teamID}/integrations/{integrationID}", handleRenameIntegration(db))
r.Delete("/api/teams/{teamID}/integrations/{integrationID}", handleDeleteIntegration(db))
// The rota is per team. /api/schedule/current is the exception: it
// answers across every team the caller is in, which is what somebody on
// two rotas wants to see.
r.Get("/api/schedule/current", handleCurrentSchedule(db))
r.Post("/api/teams/{teamID}/schedule", handleCreateSchedule(db))
r.Get("/api/teams/{teamID}/schedule", handleListSchedule(db))
r.Delete("/api/teams/{teamID}/schedule/{id}", handleDeleteSchedule(db))
r.Get("/api/stats/incidents", handleStatsIncidents(db))
r.Get("/api/stats/alerts", handleStatsAlerts(db))
r.Get("/api/stats/alerts/top", handleStatsTop(db))
r.Get("/api/stats/alerts/by-hour", handleStatsByHour(db))
r.Get("/api/stats/alerts/by-day", handleStatsByDay(db))
})
// Anything else under /api is a mistake in a client, and should say so in
// JSON rather than get the web UI's HTML.
r.Handle("/api/*", http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
respond(w, http.StatusNotFound, errResp("not found"))
}))
// Everything outside /api is the web UI.
site, err := web.Handler()
if err != nil {
panic(err) // the site is embedded at build time; this cannot fail at runtime
}
r.Handle("/*", site)
return r
}