165 lines
6 KiB
Go
165 lines
6 KiB
Go
package mtprotoedge
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import (
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"crypto/rsa"
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"crypto/x509"
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"encoding/json"
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"encoding/pem"
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"mime"
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"net/http"
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"strconv"
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"telesrv/internal/identity"
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)
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// ServerInfoPath is the well-known same-port HTTP path a client can GET to
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// self-configure an "Add Server" entry from just a host:port -- no more
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// manual `openssl rsa -RSAPublicKey_out` + copy-paste of the PEM block.
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//
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// Served over the same samePortMux HTTP side that already carries WebSocket
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// upgrades (see same_port_mux.go): a plain GET here never looks like an
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// obfuscated2 init (isHTTPHeaderPrefix's "legal init headers never start
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// with GET/POST/HEAD/OPTI" invariant), so this adds no new port and no new
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// risk to the raw-TCP detection path. Only reachable when serveMixed is
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// active, i.e. TELESRV_WEBSOCKET_ENABLE=true (the default).
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const ServerInfoPath = "/owpengram/server-info"
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// ServerIconPath serves the server's icon as a raw image, separately from
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// ServerInfoPath's JSON -- avoids inflating every server-info fetch with a
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// base64 blob when most callers only need it once, and lets it be cached/
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// requested independently (e.g. an <img src> tag).
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const ServerIconPath = "/owpengram/server-icon"
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// ServerInfoResponse is ServerInfoPath's JSON body. RSAPublicKeyPEM is the
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// PKCS#1 "RSA PUBLIC KEY" PEM block -- the same format
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// `openssl rsa -RSAPublicKey_out` produces, and what the client's "Add
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// Server" RSA key field already expects verbatim. Name/Description are
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// admin-edited via internal/identity and optional -- clients should treat
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// blank as "no override" and keep whatever the user typed.
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type ServerInfoResponse struct {
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DCID int `json:"dc_id"`
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RSAPublicKeyPEM string `json:"rsa_public_key_pem"`
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Name string `json:"name,omitempty"`
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Description string `json:"description,omitempty"`
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// HasIcon tells the client whether GET ServerIconPath is worth calling,
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// without requiring a separate round trip just to find out.
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HasIcon bool `json:"has_icon,omitempty"`
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}
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// rsaPublicKeyPEM renders key's public half as a PKCS#1 PEM block, matching
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// `openssl rsa -in server_rsa.pem -RSAPublicKey_out` byte-for-byte (that
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// flag selects PKCS#1 encoding, not the x509/PKIX default `-pubout` would
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// produce -- a real format difference, not just a header/footer string).
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func rsaPublicKeyPEM(key *rsa.PrivateKey) []byte {
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if key == nil {
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return nil
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}
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der := x509.MarshalPKCS1PublicKey(&key.PublicKey)
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return pem.EncodeToMemory(&pem.Block{Type: "RSA PUBLIC KEY", Bytes: der})
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}
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// serverInfoHTTPHandler serves ServerInfoResponse at ServerInfoPath and the
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// raw icon bytes at ServerIconPath, delegating every other path to next (the
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// existing WebSocket route handler). pubKeyPEM is nil when the server has no
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// RSA key configured (shouldn't happen in production -- handshakes would
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// already be broken -- but a client asking anyway gets 503, not a panic or
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// an empty key). identityStore may be nil (identity feature disabled);
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// Name/Description/icon are then simply omitted, RSA key/DC still serve.
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func serverInfoHTTPHandler(
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next http.Handler,
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dc int,
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pubKeyPEM []byte,
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identityStore *identity.Store,
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) http.Handler {
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return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
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switch r.URL.Path {
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case ServerInfoPath:
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serveServerInfo(w, r, dc, pubKeyPEM, identityStore)
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case ServerIconPath:
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serveServerIcon(w, r, identityStore)
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default:
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next.ServeHTTP(w, r)
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}
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})
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}
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func serveServerInfo(
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w http.ResponseWriter,
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r *http.Request,
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dc int,
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pubKeyPEM []byte,
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identityStore *identity.Store,
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) {
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if r.Method != http.MethodGet && r.Method != http.MethodHead {
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w.Header().Set("Allow", "GET, HEAD")
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http.Error(w, "method not allowed", http.StatusMethodNotAllowed)
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return
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}
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if len(pubKeyPEM) == 0 {
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http.Error(w, "server key not configured", http.StatusServiceUnavailable)
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return
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}
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resp := ServerInfoResponse{
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DCID: dc,
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RSAPublicKeyPEM: string(pubKeyPEM),
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}
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if identityStore != nil {
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if info, err := identityStore.Get(); err == nil {
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resp.Name = info.Name
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resp.Description = info.Description
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resp.HasIcon = info.IconExt != ""
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}
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}
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body, err := json.Marshal(resp)
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if err != nil {
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http.Error(w, "encode server info", http.StatusInternalServerError)
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return
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}
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w.Header().Set("Content-Type", "application/json; charset=utf-8")
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w.Header().Set("Cache-Control", "no-store")
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// See serveServerIcon's identical Content-Length comment -- same reason:
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// keeps net/http from chunked-encoding a response the desktop client's
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// raw-socket parser can't decode. name/description are short today, but
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// nothing enforces that server-side, so this isn't purely defensive.
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w.Header().Set("Content-Length", strconv.Itoa(len(body)))
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if r.Method == http.MethodHead {
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return
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}
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_, _ = w.Write(body)
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}
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func serveServerIcon(w http.ResponseWriter, r *http.Request, identityStore *identity.Store) {
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if r.Method != http.MethodGet && r.Method != http.MethodHead {
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w.Header().Set("Allow", "GET, HEAD")
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http.Error(w, "method not allowed", http.StatusMethodNotAllowed)
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return
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}
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if identityStore == nil {
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http.NotFound(w, r)
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return
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}
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data, ext, ok := identityStore.Icon()
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if !ok {
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http.NotFound(w, r)
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return
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}
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contentType := mime.TypeByExtension(ext)
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if contentType == "" {
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contentType = "application/octet-stream"
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}
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w.Header().Set("Content-Type", contentType)
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w.Header().Set("Cache-Control", "no-store")
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// Explicit Content-Length keeps net/http from switching to
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// Transfer-Encoding: chunked, which it otherwise does automatically once
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// a single Write() exceeds its small internal sniff buffer (true for
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// basically any real icon, easily hundreds of KB) -- the desktop
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// client's same-port fetch is a hand-rolled raw-socket HTTP/1.1 parser
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// (see FetchServerIcon in owpengram_servers.cpp), not a real HTTP
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// client, and has no chunked-decoding logic: it would otherwise treat
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// the chunk-size-prefixed framing as image bytes and fail to decode.
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w.Header().Set("Content-Length", strconv.Itoa(len(data)))
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if r.Method == http.MethodHead {
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return
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}
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_, _ = w.Write(data)
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}
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