// Package api exposes the small authenticated HTTP boundary around domain // policies. Persistent adapters can replace the in-memory dependencies without // changing request authentication or validation rules. package api import ( "bytes" "context" "crypto/sha256" "encoding/hex" "encoding/json" "errors" "io" "net" "net/http" "strconv" "strings" "sync" "time" "github.com/cosmic-clash/cosmic-clash/server/domain" "github.com/cosmic-clash/cosmic-clash/server/observability" ) const maxBodyBytes = 8 << 10 type CandidateProvider func(playerID, ticketID string) (domain.Candidate, error) type CandidateProviderV2 func(playerID, ticketID string, spec domain.QueueSpec) (domain.Candidate, error) type ProbeProvider func(playerID, region string, opaqueLocation, nonce []byte, receivedAt time.Time) (domain.ProbeEvidence, []byte, error) type ProbeRecorder interface { RecordProbe(context.Context, string, string, time.Duration, time.Time) error } type WorkloadVerifier func(string, time.Time) (domain.WorkloadBinding, error) type RankedProfileProvider interface { Get(context.Context, string) (domain.RankedProfile, bool, error) } type ResultSubmitter interface { SubmitResult(context.Context, string, domain.MatchResult, domain.WorkloadBinding, []byte, time.Time) error } type ServerRegistrar interface { RegisterServer(context.Context, domain.WorkloadBinding, int, bool, string, time.Time) error } type ServerShutdowner interface { ShutdownServer(context.Context, domain.WorkloadBinding, string, string, time.Time) error } type ServerConnectionRecorder interface { ClaimPlayerConnection(context.Context, domain.WorkloadBinding, string, uint64, string, time.Time) (uint64, error) RecordPlayerDisconnected(context.Context, domain.WorkloadBinding, string, uint64, string, time.Time) error } type QueueBackend interface { Create(context.Context, string, string, string, domain.QueueSpec, time.Time) (domain.QueueTicket, error) Heartbeat(context.Context, string, string, string, uint64, time.Time) (domain.QueueTicket, error) Cancel(context.Context, string, string, string, uint64, time.Time) (domain.QueueTicket, error) Get(context.Context, string, string, time.Time) (domain.QueueTicket, error) } // CandidateIndex is a transient projection of durable queue ownership. Index // failures must never change the result of an already successful mutation. type CandidateIndex interface { Upsert(context.Context, domain.Candidate) error Remove(context.Context, string) error } type SessionBackend interface { Authenticate(context.Context, string, string, time.Time) (domain.Session, error) } type SteamLoginProvider interface { Authenticate(context.Context, string, time.Time) (domain.VerifiedIdentity, error) } type SessionIssuer interface { Issue(context.Context, string, time.Duration, time.Time) (domain.Session, string, error) } type ProposalBackend interface { Get(context.Context, string, string, time.Time) (domain.Proposal, error) } type ProposalMutationBackend interface { Respond(context.Context, string, string, string, bool, uint64, time.Time) (domain.Proposal, error) } type ProposalPromoter interface { Promote(context.Context, domain.Proposal, time.Time) error } type ProposalPromoterFunc func(context.Context, domain.Proposal, time.Time) error func (f ProposalPromoterFunc) Promote(ctx context.Context, proposal domain.Proposal, now time.Time) error { return f(ctx, proposal, now) } type AssignmentView struct { MatchID string `json:"match_id"` ServerID string `json:"server_id"` PlayerID string `json:"player_id"` Slot int `json:"slot"` ExpiresAt time.Time `json:"expires_at"` ProtocolVersion int `json:"protocol_version"` Transport string `json:"transport"` JoinAuthorisation string `json:"join_authorisation"` Endpoint string `json:"endpoint"` // Revision is routing metadata for the event stream, not part of the v1 // assignment response. Keeping it alongside the durable view prevents the // REST recovery boundary from emitting a synthetic revision zero. Revision uint64 `json:"-"` } type AssignmentProvider func(context.Context, string, string, time.Time) (AssignmentView, error) type RosterProvider func(context.Context, domain.WorkloadBinding, time.Time) ([][]byte, error) type ReadinessCheck func(context.Context) error type Service struct { Sessions *domain.SessionStore SessionBackend SessionBackend SessionIssuer SessionIssuer SteamLogin SteamLoginProvider Queue *domain.Queue Candidate CandidateProvider CandidateV2 CandidateProviderV2 QueueBackend QueueBackend CandidateIndex CandidateIndex Probe ProbeProvider ProbeRecorder ProbeRecorder WorkloadVerify WorkloadVerifier ResultSubmitter ResultSubmitter ServerRegistrar ServerRegistrar ServerShutdowner ServerShutdowner ServerConnections ServerConnectionRecorder Assignment AssignmentProvider Roster RosterProvider Now func() time.Time Proposals map[string]*domain.Proposal ProposalBackend ProposalBackend ProposalPromoter ProposalPromoter RankedProfiles map[string]domain.RankedProfile RankedProfileProvider RankedProfileProvider TierPolicy domain.TierPolicy RateLimiter *RateLimiter ClientIPs *ClientIPResolver Admission AdmissionController ReadinessCheck ReadinessCheck // Log receives a credential-safe structured event for lifecycle-relevant // reads and mutations. Nil // is a valid, silent no-op -- every call site must stay optional so // existing Service literals that don't set it keep working unchanged. Log func(observability.Event) Metrics *observability.Metrics proposalMu sync.Mutex eventsMu sync.Mutex events *eventHub } // rankedProfileFor prefers the durable RankedProfileProvider when set, // falling back to the in-memory RankedProfiles map for existing tests/direct // Service literals that construct it that way. Both return the same // (profile, exists) shape either way, so callers don't need to know which // source answered. func (s *Service) rankedProfileFor(ctx context.Context, playerID string) (domain.RankedProfile, bool, error) { if s.RankedProfileProvider != nil { return s.RankedProfileProvider.Get(ctx, playerID) } profile, exists := s.RankedProfiles[playerID] return profile, exists, nil } // logEvent is a nil-safe wrapper so call sites never need their own guard. func (s *Service) logEvent(event observability.Event) { if s.Log != nil { s.Log(event) } } // logQueueOutcome logs a queue-ticket mutation's result: the ticket's // resulting state on success, or "rejected" on a domain error. It never logs // the error text itself -- domain errors here are not documented as // credential-free, and the stage name already tells an operator what to look // up (the ticket ID, still recorded either way). func (s *Service) logQueueOutcome(event, ticketID string, ticket domain.QueueTicket, err error, now time.Time) { if err != nil { s.logEvent(observability.Event{Event: event, QueueID: ticketID, Stage: "rejected", OccurredAt: now}) return } s.logEvent(observability.Event{Event: event, QueueID: ticket.TicketID, Stage: strings.ToLower(string(ticket.State)), OccurredAt: now}) } // logProposalOutcome mirrors logQueueOutcome for proposal accept/decline. func (s *Service) logProposalOutcome(proposalID string, proposal domain.Proposal, err error, now time.Time) { if err != nil { s.logEvent(observability.Event{Event: "proposal_response", ProposalID: proposalID, Stage: "rejected", OccurredAt: now}) return } s.logEvent(observability.Event{Event: "proposal_response", ProposalID: proposal.ProposalID, Stage: strings.ToLower(string(proposal.State)), OccurredAt: now}) } func (s *Service) Handler() http.Handler { mux := http.NewServeMux() mux.HandleFunc("/healthz", s.health) mux.HandleFunc("/readyz", s.ready) mux.HandleFunc("/metrics", s.metrics) mux.HandleFunc("/v1/session/steam", s.steamSession) mux.HandleFunc("/v1/queue", s.queueCreate) mux.HandleFunc("/v1/queue/", s.queueMutation) mux.HandleFunc("/v1/proposals/", s.proposalMutation) mux.HandleFunc("/v1/assignments/", s.assignment) mux.HandleFunc("/v1/profile/ranked", s.rankedProfile) mux.HandleFunc("/v1/probes/", s.probe) mux.HandleFunc("/v1/events", s.controlPlaneEvent) mux.HandleFunc("/v1/servers/", s.serverMutation) // The public contract is served below /api/v1. Keep the original /v1 // routes for the Godot client while exposing the documented names. mux.HandleFunc("/api/v1/session/steam", s.steamSession) mux.HandleFunc("/api/v1/profile", s.profile) mux.HandleFunc("/api/v1/queue/tickets", s.contractQueueCreate) mux.HandleFunc("/api/v1/queue/tickets/", s.contractQueueMutation) mux.HandleFunc("/api/v1/proposals/", s.contractProposalMutation) mux.HandleFunc("/api/v1/assignments/", s.contractAssignment) mux.HandleFunc("/api/v1/events", s.controlPlaneEvent) mux.HandleFunc("/api/v1/servers/", s.contractServerMutation) var handler http.Handler = mux if s.RateLimiter != nil { handler = http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) { if r.URL.Path == "/healthz" || r.URL.Path == "/readyz" || r.URL.Path == "/metrics" { mux.ServeHTTP(w, r) return } if !s.RateLimiter.AllowKeys(requestRateKeys(r, s.ClientIPs), s.now()) { writeError(w, http.StatusTooManyRequests, "rate_limited") return } mux.ServeHTTP(w, r) }) } if s.Admission != nil { admissionHandler := handler handler = http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) { if operation := admissionOperation(r.URL.Path, r.Method); operation != "" && !s.Admission.Allow(operation) { writeError(w, http.StatusServiceUnavailable, "service_degraded") return } admissionHandler.ServeHTTP(w, r) }) } if s.Metrics == nil { return handler } return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) { if r.URL.Path == "/metrics" || r.URL.Path == "/healthz" || r.URL.Path == "/readyz" || strings.HasSuffix(r.URL.Path, "/events") { handler.ServeHTTP(w, r) return } started := time.Now() recorder := &statusRecorder{ResponseWriter: w} handler.ServeHTTP(recorder, r) code := recorder.code if code == 0 { code = http.StatusOK } s.Metrics.ObserveAPI(metricOperation(r.URL.Path), code, time.Since(started)) }) } type statusRecorder struct { http.ResponseWriter code int } func (w *statusRecorder) WriteHeader(code int) { w.code = code w.ResponseWriter.WriteHeader(code) } func (w *statusRecorder) Write(body []byte) (int, error) { if w.code == 0 { w.WriteHeader(http.StatusOK) } return w.ResponseWriter.Write(body) } func (s *Service) metrics(w http.ResponseWriter, r *http.Request) { if r.Method != http.MethodGet || s.Metrics == nil { writeError(w, http.StatusNotFound, "not_found") return } w.Header().Set("Content-Type", "text/plain; version=0.0.4") _ = s.Metrics.WritePrometheus(w) } func metricOperation(path string) string { switch { case strings.Contains(path, "/queue"): return "queue" case strings.Contains(path, "/proposals"): return "proposal" case strings.Contains(path, "/assignments"): return "assignment" case strings.Contains(path, "ranked"): return "ranked_profile" case strings.Contains(path, "/profile"): return "profile" case strings.Contains(path, "/servers"): return "server" case strings.Contains(path, "/session"): return "session" case strings.Contains(path, "/probes"): return "probe" default: return "other" } } type steamSessionRequest struct { WebAPITicket string `json:"web_api_ticket"` } func (s *Service) steamSession(w http.ResponseWriter, r *http.Request) { if r.Method != http.MethodPost { writeError(w, http.StatusMethodNotAllowed, "method_not_allowed") return } if s.SteamLogin == nil { writeError(w, http.StatusServiceUnavailable, "auth_unavailable") return } var input steamSessionRequest if !decodeBody(w, r, &input) { return } if input.WebAPITicket == "" || len(input.WebAPITicket) > 4096 { writeError(w, http.StatusBadRequest, "invalid_request") return } now := s.now() identity, err := s.SteamLogin.Authenticate(r.Context(), input.WebAPITicket, now) if err != nil || identity.PlayerID == "" || identity.SteamID == "" { writeError(w, http.StatusUnauthorized, "unauthorized") return } var session domain.Session var token string if s.SessionIssuer != nil { session, token, err = s.SessionIssuer.Issue(r.Context(), identity.PlayerID, time.Hour, now) } else if s.Sessions != nil { session, token, err = s.Sessions.Issue(identity.PlayerID, time.Hour, now) } else { writeError(w, http.StatusServiceUnavailable, "auth_unavailable") return } if err != nil { writeError(w, http.StatusServiceUnavailable, "auth_unavailable") return } writeJSON(w, http.StatusOK, map[string]any{"player_id": session.PlayerID, "expires_at": session.ExpiresAt, "access_token": session.SessionID + ":" + token}) } func (s *Service) health(w http.ResponseWriter, r *http.Request) { if r.Method != http.MethodGet { writeError(w, http.StatusMethodNotAllowed, "method_not_allowed") return } writeJSON(w, http.StatusOK, map[string]string{"status": "ok"}) } func (s *Service) ready(w http.ResponseWriter, r *http.Request) { if r.Method != http.MethodGet { writeError(w, http.StatusMethodNotAllowed, "method_not_allowed") return } if s.ReadinessCheck == nil { writeError(w, http.StatusServiceUnavailable, "not_ready") return } ctx, cancel := context.WithTimeout(r.Context(), time.Second) defer cancel() if err := s.ReadinessCheck(ctx); err != nil { writeError(w, http.StatusServiceUnavailable, "not_ready") return } writeJSON(w, http.StatusOK, map[string]string{"status": "ready"}) } type queueCreateRequest struct { TicketID string `json:"ticket_id"` Playlist string `json:"playlist"` ClientBuild string `json:"client_build"` ProtocolVersion int `json:"protocol_version"` } type queueResponse struct { TicketID string `json:"ticket_id"` PlayerID string `json:"player_id"` ProposalID string `json:"proposal_id,omitempty"` MatchID string `json:"match_id,omitempty"` State string `json:"state"` Revision uint64 `json:"revision"` EnqueuedAt time.Time `json:"enqueued_at"` ExpiresAt time.Time `json:"expires_at"` Playlist string `json:"playlist"` } func (s *Service) queueCreate(w http.ResponseWriter, r *http.Request) { if r.Method != http.MethodPost { writeError(w, http.StatusMethodNotAllowed, "method_not_allowed") return } playerID, ok := s.authenticate(w, r) if !ok { return } if (s.Queue == nil && s.QueueBackend == nil) || (s.QueueBackend == nil && s.Candidate == nil && s.CandidateV2 == nil) { writeError(w, http.StatusServiceUnavailable, "queue_unavailable") return } var input queueCreateRequest if !decodeBody(w, r, &input) { return } if input.TicketID == "" || (input.Playlist != string(domain.Casual) && input.Playlist != string(domain.Ranked)) || input.ClientBuild == "" || len(input.ClientBuild) > 128 || input.ProtocolVersion < 1 { writeError(w, http.StatusBadRequest, "invalid_request") return } key := r.Header.Get("Idempotency-Key") if len(key) < 16 || len(key) > 128 { writeError(w, http.StatusBadRequest, "invalid_idempotency_key") return } now := s.now() spec := domain.QueueSpec{Playlist: domain.Playlist(input.Playlist), ClientBuild: input.ClientBuild, ProtocolVersion: input.ProtocolVersion} if s.QueueBackend != nil { ticket, err := s.QueueBackend.Create(r.Context(), playerID, input.TicketID, key, spec, now) if err != nil { s.logQueueOutcome("queue_create", input.TicketID, ticket, err, now) writeDomainError(w, err) return } s.logQueueOutcome("queue_create", input.TicketID, ticket, nil, now) s.projectCandidate(r.Context(), ticket) s.publishTicketEvent(ticket, now) writeJSON(w, http.StatusCreated, toQueueResponse(ticket)) return } var candidate domain.Candidate var err error if s.CandidateV2 != nil { candidate, err = s.CandidateV2(playerID, input.TicketID, spec) } else { candidate, err = s.Candidate(playerID, input.TicketID) // Legacy providers predate queue compatibility metadata. The API has // validated the request; keep the resulting projection self-describing. candidate.Playlist = spec.Playlist candidate.ClientBuild = spec.ClientBuild candidate.ProtocolVersion = spec.ProtocolVersion } if err != nil { writeError(w, http.StatusUnprocessableEntity, "candidate_unavailable") return } if candidate.PlayerID != playerID || candidate.TicketID != input.TicketID || candidate.Playlist != spec.Playlist || candidate.ClientBuild != spec.ClientBuild || candidate.ProtocolVersion != spec.ProtocolVersion { writeError(w, http.StatusUnprocessableEntity, "candidate_mismatch") return } ticket, err := s.Queue.Create(playerID, input.TicketID, key, candidate, now) if err != nil { s.logQueueOutcome("queue_create", input.TicketID, ticket, err, now) writeDomainError(w, err) return } s.logQueueOutcome("queue_create", input.TicketID, ticket, nil, now) s.projectCandidate(r.Context(), ticket) s.publishTicketEvent(ticket, now) writeJSON(w, http.StatusCreated, toQueueResponse(ticket)) } func (s *Service) projectCandidate(ctx context.Context, ticket domain.QueueTicket) { if s.CandidateIndex != nil { _ = s.CandidateIndex.Upsert(ctx, ticket.Candidate) } } func (s *Service) removeCandidate(ctx context.Context, ticketID string) { if s.CandidateIndex != nil { _ = s.CandidateIndex.Remove(ctx, ticketID) } } func (s *Service) contractQueueCreate(w http.ResponseWriter, r *http.Request) { if r.Method != http.MethodPost { s.queueCreate(w, r) return } body, err := io.ReadAll(http.MaxBytesReader(w, r.Body, maxBodyBytes)) if err != nil { writeError(w, http.StatusBadRequest, "invalid_request") return } var fields map[string]json.RawMessage if json.Unmarshal(body, &fields) == nil { if rawTicketID, exists := fields["ticket_id"]; exists { var ticketID string if json.Unmarshal(rawTicketID, &ticketID) != nil || !controlPlaneResourceIDRE.MatchString(ticketID) { writeError(w, http.StatusBadRequest, "invalid_request") return } } // Ticket IDs are server-assigned for the public contract. Deriving one // from the authenticated request's idempotency material makes retries // converge on the same domain command without persisting adapter state. digest := sha256.Sum256([]byte(r.Header.Get("Authorization") + "\x00" + r.Header.Get("Idempotency-Key"))) id := hex.EncodeToString(digest[:]) if _, exists := fields["ticket_id"]; !exists { fields["ticket_id"] = json.RawMessage(strconv.Quote(id)) body, _ = json.Marshal(fields) } } r.Body = io.NopCloser(bytes.NewReader(body)) s.queueCreate(w, r) } func (s *Service) contractQueueMutation(w http.ResponseWriter, r *http.Request) { path := strings.TrimPrefix(r.URL.Path, "/api/v1/queue/tickets/") parts := strings.Split(path, "/") if path == "" || len(parts) > 2 || !controlPlaneResourceIDRE.MatchString(parts[0]) || (len(parts) == 2 && parts[1] != "heartbeat") { writeError(w, http.StatusNotFound, "not_found") return } clone := r.Clone(r.Context()) clone.URL.Path = "/v1/queue/" + parts[0] if len(parts) == 2 { clone.URL.Path += "/heartbeat" } if r.Method == http.MethodDelete { if len(parts) != 1 { writeError(w, http.StatusMethodNotAllowed, "method_not_allowed") return } clone.Method = http.MethodPost clone.URL.Path += "/cancel" clone.Header.Set("X-Contract-Delete", "1") } s.queueMutation(w, clone) } func (s *Service) contractProposalMutation(w http.ResponseWriter, r *http.Request) { path := strings.TrimPrefix(r.URL.Path, "/api/v1/proposals/") parts := strings.Split(path, "/") if path == "" || len(parts) > 2 || !controlPlaneResourceIDRE.MatchString(parts[0]) { writeError(w, http.StatusNotFound, "not_found") return } clone := r.Clone(r.Context()) clone.URL.Path = "/v1/proposals/" + path s.proposalMutation(w, clone) } func (s *Service) contractAssignment(w http.ResponseWriter, r *http.Request) { path := strings.TrimPrefix(r.URL.Path, "/api/v1/assignments/") if path == "" || strings.Contains(path, "/") || !controlPlaneResourceIDRE.MatchString(path) { writeError(w, http.StatusNotFound, "not_found") return } clone := r.Clone(r.Context()) clone.URL.Path = "/v1/assignments/" + path s.assignment(w, clone) } func (s *Service) contractServerMutation(w http.ResponseWriter, r *http.Request) { // Unlike contractAssignment, the documented shape here is two segments // (/servers/{serverId}/{result|register|roster|connect|disconnect|shutdown}) — rejecting // any "/" would 404 every real call. Delegate shape validation to // serverMutation, which already enforces the exact operation allowlist. path := strings.TrimPrefix(r.URL.Path, "/api/v1/servers/") parts := strings.Split(path, "/") if path == "" || len(parts) < 2 || !controlPlaneResourceIDRE.MatchString(parts[0]) { writeError(w, http.StatusNotFound, "not_found") return } clone := r.Clone(r.Context()) clone.URL.Path = "/v1/servers/" + path s.serverMutation(w, clone) } type resultRequest struct { MatchID string `json:"match_id"` ResultNonce string `json:"result_nonce"` Score struct { Team0 int `json:"team_0"` Team1 int `json:"team_1"` } `json:"score"` IntegrityState domain.IntegrityState `json:"integrity_state"` } type serverRegistrationRequest struct { MatchID string `json:"match_id"` ProtocolVersion int `json:"protocol_version"` ImageDigest string `json:"image_digest"` AssignmentReady bool `json:"assignment_ready"` } func (s *Service) serverMutation(w http.ResponseWriter, r *http.Request) { parts := strings.Split(strings.TrimPrefix(r.URL.Path, "/v1/servers/"), "/") if len(parts) != 2 || parts[0] == "" || (parts[1] != "result" && parts[1] != "register" && parts[1] != "roster" && parts[1] != "shutdown" && parts[1] != "connect" && parts[1] != "disconnect") { writeError(w, http.StatusNotFound, "not_found") return } if parts[1] == "roster" && r.Method != http.MethodGet || parts[1] != "roster" && r.Method != http.MethodPost { writeError(w, http.StatusMethodNotAllowed, "method_not_allowed") return } if s.WorkloadVerify == nil || (parts[1] == "result" && s.ResultSubmitter == nil) || (parts[1] == "register" && s.ServerRegistrar == nil) || (parts[1] == "roster" && s.Roster == nil) || (parts[1] == "shutdown" && s.ServerShutdowner == nil) || ((parts[1] == "connect" || parts[1] == "disconnect") && s.ServerConnections == nil) { writeError(w, http.StatusServiceUnavailable, "server_unavailable") return } partsAuth := strings.Fields(r.Header.Get("Authorization")) if len(partsAuth) != 2 || partsAuth[0] != "Bearer" || partsAuth[1] == "" { writeError(w, http.StatusUnauthorized, "unauthorized") return } now := s.now() binding, err := s.WorkloadVerify(partsAuth[1], now) if err != nil || binding.ServerID != parts[0] { s.logEvent(observability.Event{Event: "server_" + parts[1], ServerID: parts[0], Stage: "unauthorized", OccurredAt: now}) writeError(w, http.StatusUnauthorized, "unauthorized") return } if parts[1] == "roster" { roster, err := s.Roster(r.Context(), binding, now) if err != nil || len(roster) == 0 { writeError(w, http.StatusUnprocessableEntity, "roster_unavailable") return } encodedRoster := make([]json.RawMessage, 0, len(roster)) for _, envelope := range roster { encodedRoster = append(encodedRoster, json.RawMessage(envelope)) } w.Header().Set("Content-Type", "application/json") if err := json.NewEncoder(w).Encode(encodedRoster); err != nil { return } return } key := r.Header.Get("Idempotency-Key") if len(key) < 16 || len(key) > 128 { writeError(w, http.StatusBadRequest, "invalid_idempotency_key") return } if parts[1] == "register" { var input serverRegistrationRequest if !decodeBody(w, r, &input) { return } if input.MatchID == "" || input.MatchID != binding.MatchID || input.ProtocolVersion < 1 || !validImageDigest(input.ImageDigest) { s.logEvent(observability.Event{Event: "server_register", MatchID: binding.MatchID, ServerID: parts[0], Stage: "rejected", OccurredAt: now}) writeError(w, http.StatusUnprocessableEntity, "invalid_request") return } if err := s.ServerRegistrar.RegisterServer(r.Context(), binding, input.ProtocolVersion, input.AssignmentReady, key, now); err != nil { stage := "invalid" if errors.Is(err, domain.ErrConflict) { stage = "conflict" s.Metrics.ObserveServerConflict("register") writeError(w, http.StatusConflict, "conflict") } else { writeError(w, http.StatusUnprocessableEntity, "invalid_request") } s.logEvent(observability.Event{Event: "server_register", MatchID: binding.MatchID, ServerID: parts[0], Stage: stage, OccurredAt: now}) return } readyStage := "process_ready" if input.AssignmentReady { readyStage = "assignment_ready" } s.logEvent(observability.Event{Event: "server_register", MatchID: binding.MatchID, ServerID: parts[0], Stage: readyStage, OccurredAt: now, Fields: map[string]any{"protocol_version": input.ProtocolVersion}}) w.WriteHeader(http.StatusNoContent) return } if parts[1] == "connect" || parts[1] == "disconnect" { var input struct { PlayerID string `json:"player_id"` Generation uint64 `json:"generation,omitempty"` ExpectedGeneration *uint64 `json:"expected_generation,omitempty"` } if !decodeBody(w, r, &input) { return } if !controlPlaneResourceIDRE.MatchString(input.PlayerID) { writeError(w, http.StatusUnprocessableEntity, "invalid_request") return } var generation uint64 var err error if parts[1] == "connect" { if input.Generation != 0 { writeError(w, http.StatusUnprocessableEntity, "invalid_request") return } expectedGeneration := uint64(0) if input.ExpectedGeneration != nil { expectedGeneration = *input.ExpectedGeneration } generation, err = s.ServerConnections.ClaimPlayerConnection(r.Context(), binding, input.PlayerID, expectedGeneration, key, now) } else { if input.Generation == 0 || input.ExpectedGeneration != nil { writeError(w, http.StatusUnprocessableEntity, "invalid_request") return } generation = input.Generation err = s.ServerConnections.RecordPlayerDisconnected(r.Context(), binding, input.PlayerID, input.Generation, key, now) } if err != nil { if errors.Is(err, domain.ErrConflict) { s.Metrics.ObserveServerConflict(parts[1]) writeError(w, http.StatusConflict, "conflict") } else { // The request has already passed schema and workload checks. An // unknown recorder error is infrastructure failure, not a terminal // client fault; 503 keeps the game server's bounded retry alive. writeError(w, http.StatusServiceUnavailable, "server_unavailable") } s.logEvent(observability.Event{Event: "server_" + parts[1], MatchID: binding.MatchID, ServerID: parts[0], Stage: "rejected", OccurredAt: now}) return } stage := "connected" if parts[1] == "disconnect" { stage = "disconnected" } s.logEvent(observability.Event{Event: "server_" + parts[1], MatchID: binding.MatchID, ServerID: parts[0], Stage: stage, OccurredAt: now, Fields: map[string]any{"player_id": input.PlayerID, "generation": generation}}) if parts[1] == "disconnect" { w.WriteHeader(http.StatusNoContent) return } if input.ExpectedGeneration == nil { // Rolling-upgrade compatibility for the pre-lease reporter. New // servers always send expected_generation and consume the JSON lease. w.WriteHeader(http.StatusNoContent) return } w.Header().Set("Content-Type", "application/json") _ = json.NewEncoder(w).Encode(map[string]uint64{"generation": generation}) return } if parts[1] == "shutdown" { var input struct { Reason string `json:"reason"` } if !decodeBody(w, r, &input) { return } if input.Reason == "" || len(input.Reason) > 96 || strings.ContainsAny(input.Reason, "\r\n\t") { s.logEvent(observability.Event{Event: "server_shutdown", MatchID: binding.MatchID, ServerID: parts[0], Stage: "rejected", OccurredAt: now}) writeError(w, http.StatusUnprocessableEntity, "invalid_request") return } if err := s.ServerShutdowner.ShutdownServer(r.Context(), binding, input.Reason, key, now); err != nil { stage := "invalid" if errors.Is(err, domain.ErrConflict) { stage = "conflict" s.Metrics.ObserveServerConflict("shutdown") writeError(w, http.StatusConflict, "conflict") } else { writeError(w, http.StatusUnprocessableEntity, "invalid_request") } s.logEvent(observability.Event{Event: "server_shutdown", MatchID: binding.MatchID, ServerID: parts[0], Stage: stage, OccurredAt: now}) return } s.logEvent(observability.Event{Event: "server_shutdown", MatchID: binding.MatchID, ServerID: parts[0], Stage: "acknowledged", OccurredAt: now}) w.WriteHeader(http.StatusNoContent) return } var input resultRequest if !decodeBody(w, r, &input) { return } if input.MatchID == "" || binding.MatchID != input.MatchID || len(input.ResultNonce) < 16 || len(input.ResultNonce) > 128 || input.Score.Team0 < 0 || input.Score.Team1 < 0 || (input.IntegrityState != domain.IntegrityCertified && input.IntegrityState != domain.IntegritySuppressed && input.IntegrityState != domain.IntegrityReview) { s.logEvent(observability.Event{Event: "server_result", MatchID: binding.MatchID, ServerID: parts[0], Stage: "rejected", OccurredAt: now}) writeError(w, http.StatusUnprocessableEntity, "invalid_request") return } result := domain.MatchResult{MatchID: input.MatchID, ServerID: parts[0], ResultNonce: input.ResultNonce, Team0Score: input.Score.Team0, Team1Score: input.Score.Team1, IntegrityState: input.IntegrityState} payload, err := json.Marshal(input) if err != nil { writeError(w, http.StatusBadRequest, "invalid_request") return } if err := s.ResultSubmitter.SubmitResult(r.Context(), key, result, binding, payload, now); err != nil { stage := "invalid" if errors.Is(err, domain.ErrResultConflict) || strings.Contains(err.Error(), "conflict") { stage = "conflict" s.Metrics.ObserveServerConflict("result") writeError(w, http.StatusConflict, "conflict") } else { writeError(w, http.StatusUnprocessableEntity, "invalid_request") } s.logEvent(observability.Event{Event: "server_result", MatchID: binding.MatchID, ServerID: parts[0], Stage: stage, OccurredAt: now}) return } s.logEvent(observability.Event{Event: "server_result", MatchID: binding.MatchID, ServerID: parts[0], Stage: "accepted", OccurredAt: now, Fields: map[string]any{"integrity_state": string(input.IntegrityState), "team_0": input.Score.Team0, "team_1": input.Score.Team1}}) w.WriteHeader(http.StatusAccepted) } func validImageDigest(value string) bool { if len(value) != len("sha256:")+64 || !strings.HasPrefix(value, "sha256:") { return false } for _, ch := range value[len("sha256:"):] { if !(ch >= '0' && ch <= '9') && !(ch >= 'a' && ch <= 'f') { return false } } return true } func (s *Service) queueMutation(w http.ResponseWriter, r *http.Request) { if r.Method != http.MethodPost && r.Method != http.MethodGet && r.Method != http.MethodDelete { writeError(w, http.StatusMethodNotAllowed, "method_not_allowed") return } playerID, ok := s.authenticate(w, r) if !ok { return } if s.Queue == nil && s.QueueBackend == nil { writeError(w, http.StatusServiceUnavailable, "queue_unavailable") return } parts := strings.Split(strings.TrimPrefix(r.URL.Path, "/v1/queue/"), "/") if r.Method == http.MethodGet { if len(parts) != 1 || parts[0] == "" { writeError(w, http.StatusNotFound, "not_found") return } var ticket domain.QueueTicket var err error now := s.now() if s.QueueBackend != nil { ticket, err = s.QueueBackend.Get(r.Context(), playerID, parts[0], now) } else { ticket, err = s.Queue.Get(playerID, parts[0], now) } if err != nil { s.logEvent(observability.Event{Event: "queue_get", QueueID: parts[0], Stage: "rejected", OccurredAt: now}) writeDomainError(w, err) return } s.logEvent(observability.Event{Event: "queue_get", QueueID: ticket.TicketID, Stage: strings.ToLower(string(ticket.State)), OccurredAt: now}) writeJSON(w, http.StatusOK, toQueueResponse(ticket)) return } if len(parts) != 2 || parts[0] == "" || (parts[1] != "heartbeat" && parts[1] != "cancel") { writeError(w, http.StatusNotFound, "not_found") return } ticketID, key := parts[0], r.Header.Get("Idempotency-Key") if len(key) < 16 || len(key) > 128 { writeError(w, http.StatusBadRequest, "invalid_idempotency_key") return } revision, err := strconv.ParseUint(r.Header.Get("If-Match-Revision"), 10, 64) if err != nil { writeError(w, http.StatusBadRequest, "invalid_revision") return } now := s.now() var ticket domain.QueueTicket if parts[1] == "heartbeat" { if s.QueueBackend != nil { ticket, err = s.QueueBackend.Heartbeat(r.Context(), playerID, ticketID, key, revision, now) } else { ticket, err = s.Queue.Heartbeat(playerID, ticketID, key, revision, now) } } else { if s.QueueBackend != nil { ticket, err = s.QueueBackend.Cancel(r.Context(), playerID, ticketID, key, revision, now) } else { ticket, err = s.Queue.Cancel(playerID, ticketID, key, revision, now) } } eventName := "queue_heartbeat" if parts[1] == "cancel" { eventName = "queue_cancel" } if err != nil { s.logQueueOutcome(eventName, ticketID, ticket, err, now) writeDomainError(w, err) return } s.logQueueOutcome(eventName, ticketID, ticket, nil, now) if ticket.State == domain.Cancelled { s.removeCandidate(r.Context(), ticket.TicketID) } else { s.projectCandidate(r.Context(), ticket) } s.publishTicketEvent(ticket, now) if r.Header.Get("X-Contract-Delete") == "1" { w.WriteHeader(http.StatusNoContent) return } writeJSON(w, http.StatusOK, toQueueResponse(ticket)) } type proposalResponse struct { ProposalID string `json:"proposal_id"` Playlist string `json:"playlist"` State string `json:"state"` Revision uint64 `json:"revision"` ExpiresAt time.Time `json:"expires_at"` Participants []domain.ProposalParticipant `json:"participants"` } func (s *Service) proposalMutation(w http.ResponseWriter, r *http.Request) { if r.Method != http.MethodPost && r.Method != http.MethodGet { writeError(w, http.StatusMethodNotAllowed, "method_not_allowed") return } playerID, ok := s.authenticate(w, r) if !ok { return } parts := strings.Split(strings.TrimPrefix(r.URL.Path, "/v1/proposals/"), "/") if r.Method == http.MethodGet { if len(parts) != 1 || parts[0] == "" { writeError(w, http.StatusNotFound, "not_found") return } s.proposalMu.Lock() defer s.proposalMu.Unlock() proposal, exists := s.Proposals[parts[0]] if s.ProposalBackend != nil { proposalValue, providerErr := s.ProposalBackend.Get(r.Context(), playerID, parts[0], s.now()) if providerErr != nil { s.logEvent(observability.Event{Event: "proposal_get", ProposalID: parts[0], Stage: "rejected", OccurredAt: s.now()}) writeError(w, http.StatusNotFound, "not_found") return } proposal = &proposalValue exists = true } if !exists || proposal == nil || !proposal.HasParticipant(playerID) { s.logEvent(observability.Event{Event: "proposal_get", ProposalID: parts[0], Stage: "rejected", OccurredAt: s.now()}) writeError(w, http.StatusNotFound, "not_found") return } now := s.now() if proposal.Expire(now) { s.publishProposalEvent(*proposal, now) } s.logEvent(observability.Event{Event: "proposal_get", ProposalID: proposal.ProposalID, Stage: strings.ToLower(string(proposal.State)), OccurredAt: now}) writeJSON(w, http.StatusOK, toProposalResponse(*proposal)) return } if len(parts) != 2 || parts[0] == "" || (parts[1] != "accept" && parts[1] != "decline") { writeError(w, http.StatusNotFound, "not_found") return } key := r.Header.Get("Idempotency-Key") if len(key) < 16 || len(key) > 128 { writeError(w, http.StatusBadRequest, "invalid_idempotency_key") return } revision, err := strconv.ParseUint(r.Header.Get("If-Match-Revision"), 10, 64) if err != nil { writeError(w, http.StatusBadRequest, "invalid_revision") return } now := s.now() var updated domain.Proposal if s.ProposalBackend != nil { mutator, supportsMutation := s.ProposalBackend.(ProposalMutationBackend) if !supportsMutation { writeError(w, http.StatusServiceUnavailable, "proposal_unavailable") return } updated, err = mutator.Respond(r.Context(), playerID, parts[0], key, parts[1] == "accept", revision, now) } else { s.proposalMu.Lock() defer s.proposalMu.Unlock() proposal, exists := s.Proposals[parts[0]] if !exists || proposal == nil { writeError(w, http.StatusNotFound, "not_found") return } updated, err = proposal.Respond(playerID, key, parts[1] == "accept", revision, now) } if err != nil { s.logProposalOutcome(parts[0], updated, err, now) writeDomainError(w, err) return } s.logProposalOutcome(parts[0], updated, nil, now) if updated.State == domain.Accepted && s.ProposalPromoter != nil { if err := s.ProposalPromoter.Promote(r.Context(), updated, now); err != nil { writeError(w, http.StatusServiceUnavailable, "match_promotion_unavailable") return } } s.publishProposalEvent(updated, now) writeJSON(w, http.StatusOK, toProposalResponse(updated)) } func (s *Service) assignment(w http.ResponseWriter, r *http.Request) { if r.Method != http.MethodGet { writeError(w, http.StatusMethodNotAllowed, "method_not_allowed") return } playerID, ok := s.authenticate(w, r) if !ok { return } parts := strings.Split(strings.TrimPrefix(r.URL.Path, "/v1/assignments/"), "/") if len(parts) != 1 || parts[0] == "" { writeError(w, http.StatusNotFound, "not_found") return } if s.Assignment == nil { s.logEvent(observability.Event{Event: "assignment_get", MatchID: parts[0], Stage: "rejected", OccurredAt: s.now()}) writeError(w, http.StatusServiceUnavailable, "assignment_unavailable") return } now := s.now() view, err := s.Assignment(r.Context(), playerID, parts[0], now) if err != nil || view.MatchID != parts[0] || view.PlayerID != playerID { s.logEvent(observability.Event{Event: "assignment_get", MatchID: parts[0], ServerID: view.ServerID, Stage: "rejected", OccurredAt: now}) writeError(w, http.StatusNotFound, "not_found") return } if view.ServerID == "" || view.Slot < 0 || view.Slot > 5 || view.ProtocolVersion < 1 || (view.Transport != "enet" && view.Transport != "steam_sdr") || view.JoinAuthorisation == "" || !validAssignmentEndpoint(view.Endpoint) || view.ExpiresAt.IsZero() || !now.Before(view.ExpiresAt) { s.logEvent(observability.Event{Event: "assignment_get", MatchID: parts[0], ServerID: view.ServerID, Stage: "rejected", OccurredAt: now}) writeError(w, http.StatusServiceUnavailable, "assignment_unavailable") return } _ = s.PublishControlPlaneEvent(assignmentChangedEvent(view, now)) s.logEvent(observability.Event{Event: "assignment_get", MatchID: view.MatchID, ServerID: view.ServerID, Stage: "assignment_ready", OccurredAt: now}) writeJSON(w, http.StatusOK, view) } func validAssignmentEndpoint(endpoint string) bool { if endpoint == "" || strings.ContainsAny(endpoint, "/?#") { return false } host, portText, err := net.SplitHostPort(endpoint) if err != nil || host == "" { return false } port, err := strconv.Atoi(portText) return err == nil && port >= 1 && port <= 65535 } func assignmentChangedEvent(view AssignmentView, now time.Time) ControlPlaneEvent { return ControlPlaneEvent{Event: "assignment_changed", Revision: view.Revision, ResourceID: view.MatchID, OccurredAt: now, MatchID: view.MatchID, ServerID: view.ServerID, PlayerID: view.PlayerID} } type rankedProfileResponse struct { Rating float64 `json:"rating"` RD float64 `json:"rd"` Volatility float64 `json:"volatility"` RankedGames int `json:"ranked_games"` Tier string `json:"tier"` Provisional bool `json:"provisional"` SeasonID string `json:"season_id,omitempty"` SeasonEndsAt string `json:"season_ends_at,omitempty"` } func (s *Service) profile(w http.ResponseWriter, r *http.Request) { if r.Method != http.MethodGet { writeError(w, http.StatusMethodNotAllowed, "method_not_allowed") return } playerID, ok := s.authenticate(w, r) if !ok { return } profile, exists, err := s.rankedProfileFor(r.Context(), playerID) if err != nil { s.logEvent(observability.Event{Event: "profile_get", Stage: "rejected", OccurredAt: s.now()}) writeError(w, http.StatusServiceUnavailable, "ranked_profile_unavailable") return } if !exists { s.logEvent(observability.Event{Event: "profile_get", Stage: "not_found", OccurredAt: s.now()}) writeError(w, http.StatusNotFound, "not_found") return } s.logEvent(observability.Event{Event: "profile_get", Stage: "ok", OccurredAt: s.now()}) writeJSON(w, http.StatusOK, map[string]any{ "player_id": playerID, "rating": profile.Value, "rd": profile.RD, "provisional": domain.RankedIsProvisional(profile), }) } func (s *Service) rankedProfile(w http.ResponseWriter, r *http.Request) { if r.Method != http.MethodGet { writeError(w, http.StatusMethodNotAllowed, "method_not_allowed") return } playerID, ok := s.authenticate(w, r) if !ok { return } profile, exists, err := s.rankedProfileFor(r.Context(), playerID) if err != nil { s.logEvent(observability.Event{Event: "ranked_profile_get", Stage: "rejected", OccurredAt: s.now()}) writeError(w, http.StatusServiceUnavailable, "ranked_profile_unavailable") return } if !exists { s.logEvent(observability.Event{Event: "ranked_profile_get", Stage: "not_found", OccurredAt: s.now()}) writeError(w, http.StatusNotFound, "not_found") return } tier, err := domain.RankedTier(profile, s.TierPolicy) if err != nil { s.logEvent(observability.Event{Event: "ranked_profile_get", Stage: "rejected", OccurredAt: s.now()}) writeError(w, http.StatusServiceUnavailable, "ranked_profile_unavailable") return } s.logEvent(observability.Event{Event: "ranked_profile_get", Stage: "ok", OccurredAt: s.now()}) seasonID := profile.CurrentSeasonID if seasonID == "" { seasonID = profile.LastSeasonID } seasonEndsAt := "" if profile.CurrentSeasonID != "" && !profile.CurrentSeasonEndsAt.IsZero() { seasonEndsAt = profile.CurrentSeasonEndsAt.UTC().Format(time.RFC3339) } writeJSON(w, http.StatusOK, rankedProfileResponse{Rating: profile.Value, RD: profile.RD, Volatility: profile.Volatility, RankedGames: profile.RankedGames, Tier: string(tier), Provisional: domain.RankedIsProvisional(profile), SeasonID: seasonID, SeasonEndsAt: seasonEndsAt}) } type probeRequest struct { OpaqueLocation []byte `json:"opaque_location"` Nonce []byte `json:"nonce"` } func (s *Service) probe(w http.ResponseWriter, r *http.Request) { if r.Method != http.MethodPost { writeError(w, http.StatusMethodNotAllowed, "method_not_allowed") return } playerID, ok := s.authenticate(w, r) if !ok { return } region := strings.TrimPrefix(r.URL.Path, "/v1/probes/") if (region != "EU" && region != "NA") || strings.Contains(region, "/") { writeError(w, http.StatusNotFound, "not_found") return } if s.Probe == nil { writeError(w, http.StatusServiceUnavailable, "probe_unavailable") return } var input probeRequest if !decodeBody(w, r, &input) { return } receivedAt := s.now() evidence, expectedNonce, err := s.Probe(playerID, region, input.OpaqueLocation, input.Nonce, receivedAt) if err != nil { writeError(w, http.StatusUnprocessableEntity, "probe_unavailable") return } if evidence.Region != region || domain.ValidateProbe(evidence, expectedNonce, receivedAt) != nil { writeError(w, http.StatusUnprocessableEntity, "invalid_probe") return } if s.ProbeRecorder != nil { if err := s.ProbeRecorder.RecordProbe(r.Context(), playerID, region, evidence.ServerRTT, receivedAt); err != nil { writeError(w, http.StatusServiceUnavailable, "probe_persistence_failed") return } } writeJSON(w, http.StatusAccepted, map[string]any{"region": region, "server_rtt_ms": evidence.ServerRTT.Milliseconds(), "status": "accepted"}) } func (s *Service) authenticate(w http.ResponseWriter, r *http.Request) (string, bool) { if s.Sessions == nil && s.SessionBackend == nil { writeError(w, http.StatusServiceUnavailable, "auth_unavailable") return "", false } parts := strings.Fields(r.Header.Get("Authorization")) if len(parts) != 2 || parts[0] != "Bearer" { writeError(w, http.StatusUnauthorized, "unauthorized") return "", false } separator := strings.IndexByte(parts[1], ':') if separator <= 0 || separator == len(parts[1])-1 { writeError(w, http.StatusUnauthorized, "unauthorized") return "", false } var session domain.Session var err error if s.SessionBackend != nil { session, err = s.SessionBackend.Authenticate(r.Context(), parts[1][:separator], parts[1][separator+1:], s.now()) } else { session, err = s.Sessions.Authenticate(parts[1][:separator], parts[1][separator+1:], s.now()) } if err != nil { writeError(w, http.StatusUnauthorized, "unauthorized") return "", false } return session.PlayerID, true } func (s *Service) now() time.Time { if s.Now != nil { return s.Now() } return time.Now().UTC() } func decodeBody(w http.ResponseWriter, r *http.Request, target any) bool { r.Body = http.MaxBytesReader(w, r.Body, maxBodyBytes) decoder := json.NewDecoder(r.Body) decoder.DisallowUnknownFields() if err := decoder.Decode(target); err != nil { writeError(w, http.StatusBadRequest, "invalid_request") return false } var extra any if err := decoder.Decode(&extra); err != io.EOF { writeError(w, http.StatusBadRequest, "invalid_request") return false } return true } func toQueueResponse(ticket domain.QueueTicket) queueResponse { return queueResponse{TicketID: ticket.TicketID, PlayerID: ticket.PlayerID, ProposalID: ticket.ProposalID, MatchID: ticket.MatchID, Playlist: string(ticket.Playlist), State: string(ticket.State), Revision: ticket.Revision, EnqueuedAt: ticket.EnqueuedAt, ExpiresAt: ticket.ExpiresAt} } func toProposalResponse(proposal domain.Proposal) proposalResponse { return proposalResponse{ProposalID: proposal.ProposalID, Playlist: string(proposal.Playlist), State: string(proposal.State), Revision: proposal.Revision, ExpiresAt: proposal.ExpiresAt, Participants: proposal.Participants} } func writeDomainError(w http.ResponseWriter, err error) { switch { case errors.Is(err, domain.ErrPlayerQueued), errors.Is(err, domain.ErrConflict), errors.Is(err, domain.ErrStaleRevision): writeError(w, http.StatusConflict, "conflict") case errors.Is(err, domain.ErrPlayerCooldown): writeError(w, http.StatusTooManyRequests, "matchmaking_cooldown") case errors.Is(err, domain.ErrTicketExpired): writeError(w, http.StatusGone, "expired") case errors.Is(err, domain.ErrNotTicketOwner): writeError(w, http.StatusForbidden, "forbidden") case errors.Is(err, domain.ErrTicketNotFound): writeError(w, http.StatusNotFound, "not_found") default: writeError(w, http.StatusUnprocessableEntity, "invalid_request") } } func writeError(w http.ResponseWriter, status int, code string) { writeJSON(w, status, map[string]string{"error": code}) } func writeJSON(w http.ResponseWriter, status int, value any) { w.Header().Set("Content-Type", "application/json") w.WriteHeader(status) _ = json.NewEncoder(w).Encode(value) }