567 lines
13 KiB
Go
567 lines
13 KiB
Go
// Package http implements a go-micro.Server
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package http // import "go.unistack.org/micro-server-http/v4"
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import (
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"context"
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"crypto/tls"
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"errors"
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"fmt"
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"net"
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"net/http"
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"reflect"
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"strings"
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"sync"
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"time"
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"go.unistack.org/micro/v4/codec"
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"go.unistack.org/micro/v4/logger"
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"go.unistack.org/micro/v4/register"
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"go.unistack.org/micro/v4/server"
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rhttp "go.unistack.org/micro/v4/util/http"
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"golang.org/x/net/netutil"
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)
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var _ server.Server = (*Server)(nil)
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type Server struct {
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hd server.Handler
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rsvc *register.Service
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handlers map[string]server.Handler
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exit chan chan error
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errorHandler func(context.Context, server.Handler, http.ResponseWriter, *http.Request, error, int)
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pathHandlers *rhttp.Trie
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opts server.Options
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registerRPC bool
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sync.RWMutex
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registered bool
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init bool
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}
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func (h *Server) newCodec(ct string) (codec.Codec, error) {
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if idx := strings.IndexRune(ct, ';'); idx >= 0 {
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ct = ct[:idx]
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}
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h.RLock()
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cf, ok := h.opts.Codecs[ct]
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h.RUnlock()
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if ok {
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return cf, nil
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}
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return nil, codec.ErrUnknownContentType
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}
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func (h *Server) Options() server.Options {
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h.Lock()
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opts := h.opts
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h.Unlock()
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return opts
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}
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func (h *Server) Init(opts ...server.Option) error {
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if len(opts) == 0 && h.init {
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return nil
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}
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h.Lock()
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for _, o := range opts {
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o(&h.opts)
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}
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if fn, ok := h.opts.Context.Value(errorHandlerKey{}).(func(ctx context.Context, s server.Handler, w http.ResponseWriter, r *http.Request, err error, status int)); ok && fn != nil {
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h.errorHandler = fn
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}
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if h.handlers == nil {
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h.handlers = make(map[string]server.Handler)
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}
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if h.pathHandlers == nil {
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h.pathHandlers = rhttp.NewTrie()
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}
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if v, ok := h.opts.Context.Value(registerRPCHandlerKey{}).(bool); ok {
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h.registerRPC = v
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}
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if phs, ok := h.opts.Context.Value(pathHandlerKey{}).(*pathHandlerVal); ok && phs.h != nil {
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for pm, ps := range phs.h {
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for pp, ph := range ps {
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if err := h.pathHandlers.Insert([]string{pm}, pp, ph); err != nil {
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h.Unlock()
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return err
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}
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}
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}
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}
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h.Unlock()
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h.RLock()
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if err := h.opts.Register.Init(); err != nil {
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h.RUnlock()
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return err
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}
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if err := h.opts.Tracer.Init(); err != nil {
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h.RUnlock()
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return err
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}
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if err := h.opts.Logger.Init(); err != nil {
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h.RUnlock()
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return err
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}
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if err := h.opts.Meter.Init(); err != nil {
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h.RUnlock()
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return err
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}
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if err := h.opts.Transport.Init(); err != nil {
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h.RUnlock()
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return err
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}
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h.RUnlock()
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h.Lock()
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h.init = true
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h.Unlock()
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return nil
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}
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func (h *Server) Handle(handler server.Handler) error {
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// passed unknown handler
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hdlr, ok := handler.(*httpHandler)
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if !ok {
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h.Lock()
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h.hd = handler
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h.Unlock()
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return nil
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}
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// passed http.Handler like some muxer
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if _, ok := hdlr.hd.(http.Handler); ok {
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h.Lock()
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h.hd = handler
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h.Unlock()
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return nil
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}
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// passed micro compat handler
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h.Lock()
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if h.handlers == nil {
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h.handlers = make(map[string]server.Handler)
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}
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h.handlers[handler.Name()] = handler
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h.Unlock()
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return nil
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}
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func (h *Server) NewHandler(handler interface{}, opts ...server.HandlerOption) server.Handler {
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options := server.NewHandlerOptions(opts...)
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eps := make([]*register.Endpoint, 0, len(options.Metadata))
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for name, metadata := range options.Metadata {
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eps = append(eps, ®ister.Endpoint{
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Name: name,
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Metadata: metadata,
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})
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}
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hdlr := &httpHandler{
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eps: eps,
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hd: handler,
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opts: options,
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sopts: h.opts,
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handlers: rhttp.NewTrie(),
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}
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tp := reflect.TypeOf(handler)
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/*
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if len(options.Metadata) == 0 {
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if h.registerRPC {
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h.opts.Logger.Infof(h.opts.Context, "register rpc handler for http.MethodPost %s /%s", hn, hn)
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if err := hdlr.handlers.Insert([]string{http.MethodPost}, "/"+hn, pth); err != nil {
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h.opts.Logger.Errorf(h.opts.Context, "cant add rpc handler for http.MethodPost %s /%s", hn, hn)
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}
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}
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}
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*/
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for hn, md := range options.Metadata {
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var method reflect.Method
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mname := hn[strings.Index(hn, ".")+1:]
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for m := 0; m < tp.NumMethod(); m++ {
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mn := tp.Method(m)
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if mn.Name != mname {
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continue
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}
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method = mn
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break
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}
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if method.Name == "" && h.opts.Logger.V(logger.ErrorLevel) {
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h.opts.Logger.Errorf(h.opts.Context, "nil method for %s", mname)
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continue
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}
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mtype, err := prepareEndpoint(method)
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if err != nil && h.opts.Logger.V(logger.ErrorLevel) {
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h.opts.Logger.Errorf(h.opts.Context, "%v", err)
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continue
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} else if mtype == nil {
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h.opts.Logger.Errorf(h.opts.Context, "nil mtype for %s", mname)
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continue
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}
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rcvr := reflect.ValueOf(handler)
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name := reflect.Indirect(rcvr).Type().Name()
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pth := &patHandler{mtype: mtype, name: name, rcvr: rcvr}
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hdlr.name = name
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if err := hdlr.handlers.Insert([]string{md["Method"]}, md["Path"], pth); err != nil {
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h.opts.Logger.Errorf(h.opts.Context, "cant add handler for %s %s", md["Method"], md["Path"])
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}
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if h.registerRPC {
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h.opts.Logger.Infof(h.opts.Context, "register rpc handler for http.MethodPost %s /%s", hn, hn)
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if err := hdlr.handlers.Insert([]string{http.MethodPost}, "/"+hn, pth); err != nil {
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h.opts.Logger.Errorf(h.opts.Context, "cant add rpc handler for http.MethodPost %s /%s", hn, hn)
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}
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}
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}
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metadata, ok := options.Context.Value(handlerEndpointsKey{}).([]EndpointMetadata)
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if !ok {
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return hdlr
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}
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for _, md := range metadata {
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hn := md.Name
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var method reflect.Method
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mname := hn[strings.Index(hn, ".")+1:]
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for m := 0; m < tp.NumMethod(); m++ {
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mn := tp.Method(m)
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if mn.Name != mname {
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continue
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}
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method = mn
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break
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}
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if method.Name == "" && h.opts.Logger.V(logger.ErrorLevel) {
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h.opts.Logger.Errorf(h.opts.Context, "nil method for %s", mname)
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continue
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}
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mtype, err := prepareEndpoint(method)
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if err != nil && h.opts.Logger.V(logger.ErrorLevel) {
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h.opts.Logger.Errorf(h.opts.Context, "%v", err)
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continue
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} else if mtype == nil {
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h.opts.Logger.Errorf(h.opts.Context, "nil mtype for %s", mname)
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continue
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}
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rcvr := reflect.ValueOf(handler)
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name := reflect.Indirect(rcvr).Type().Name()
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pth := &patHandler{mtype: mtype, name: name, rcvr: rcvr}
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hdlr.name = name
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if err := hdlr.handlers.Insert([]string{md.Method}, md.Path, pth); err != nil {
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h.opts.Logger.Errorf(h.opts.Context, "cant add handler for %s %s", md.Method, md.Path)
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}
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if h.registerRPC {
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h.opts.Logger.Infof(h.opts.Context, "register rpc handler for http.MethodPost %s /%s", hn, hn)
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if err := hdlr.handlers.Insert([]string{http.MethodPost}, "/"+hn, pth); err != nil {
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h.opts.Logger.Errorf(h.opts.Context, "cant add rpc handler for http.MethodPost %s /%s", hn, hn)
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}
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}
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}
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return hdlr
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}
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func (h *Server) Register() error {
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var eps []*register.Endpoint
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h.RLock()
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for _, hdlr := range h.handlers {
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eps = append(eps, hdlr.Endpoints()...)
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}
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rsvc := h.rsvc
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config := h.opts
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h.RUnlock()
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// if service already filled, reuse it and return early
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if rsvc != nil {
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if err := server.DefaultRegisterFunc(rsvc, config); err != nil {
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return err
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}
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return nil
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}
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service, err := server.NewRegisterService(h)
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if err != nil {
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return err
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}
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service.Nodes[0].Metadata["protocol"] = "http"
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service.Endpoints = eps
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h.RLock()
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registered := h.registered
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h.RUnlock()
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if !registered {
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if config.Logger.V(logger.InfoLevel) {
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config.Logger.Infof(config.Context, "Register [%s] Registering node: %s", config.Register.String(), service.Nodes[0].ID)
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}
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}
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// register the service
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if err := server.DefaultRegisterFunc(service, config); err != nil {
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return err
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}
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// already registered? don't need to register subscribers
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if registered {
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return nil
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}
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h.Lock()
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h.registered = true
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h.rsvc = service
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h.Unlock()
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return nil
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}
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func (h *Server) Deregister() error {
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h.RLock()
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config := h.opts
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h.RUnlock()
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service, err := server.NewRegisterService(h)
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if err != nil {
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return err
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}
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if config.Logger.V(logger.InfoLevel) {
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config.Logger.Infof(config.Context, "Deregistering node: %s", service.Nodes[0].ID)
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}
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if err := server.DefaultDeregisterFunc(service, config); err != nil {
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return err
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}
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h.Lock()
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h.rsvc = nil
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if !h.registered {
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h.Unlock()
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return nil
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}
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h.registered = false
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h.Unlock()
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return nil
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}
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func (h *Server) Start() error {
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h.RLock()
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config := h.opts
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h.RUnlock()
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// micro: config.Transport.Listen(config.Address)
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var ts net.Listener
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if l := config.Listener; l != nil {
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ts = l
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} else {
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var err error
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// check the tls config for secure connect
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if tc := config.TLSConfig; tc != nil {
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ts, err = tls.Listen("tcp", config.Address, tc)
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// otherwise just plain tcp listener
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} else {
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ts, err = net.Listen("tcp", config.Address)
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}
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if err != nil {
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return err
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}
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}
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if config.MaxConn > 0 {
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ts = netutil.LimitListener(ts, config.MaxConn)
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}
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if config.Logger.V(logger.InfoLevel) {
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config.Logger.Infof(config.Context, "Listening on %s", ts.Addr().String())
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}
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h.Lock()
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h.opts.Address = ts.Addr().String()
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h.Unlock()
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var handler http.Handler
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var srvFunc func(net.Listener) error
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// nolint: nestif
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if h.opts.Context != nil {
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if hs, ok := h.opts.Context.Value(serverKey{}).(*http.Server); ok && hs != nil {
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if hs.Handler == nil && h.hd != nil {
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if hdlr, ok := h.hd.Handler().(http.Handler); ok {
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hs.Handler = hdlr
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handler = hs.Handler
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}
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} else {
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handler = hs.Handler
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}
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}
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}
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switch {
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case handler == nil && h.hd == nil:
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handler = h
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case len(h.handlers) > 0 && h.hd != nil:
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handler = h
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case handler == nil && h.hd != nil:
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if hdlr, ok := h.hd.Handler().(http.Handler); ok {
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handler = hdlr
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}
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}
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if handler == nil {
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return fmt.Errorf("cant process with nil handler")
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}
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if err := config.RegisterCheck(h.opts.Context); err != nil {
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if config.Logger.V(logger.ErrorLevel) {
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config.Logger.Errorf(config.Context, "Server %s-%s register check error: %s", config.Name, config.ID, err)
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}
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} else {
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if err = h.Register(); err != nil {
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return err
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}
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}
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fn := handler
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if h.opts.Context != nil {
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if mwf, ok := h.opts.Context.Value(middlewareKey{}).([]func(http.Handler) http.Handler); ok && len(mwf) > 0 {
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// wrap the handler func
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for i := len(mwf); i > 0; i-- {
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fn = mwf[i-1](fn)
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}
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}
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if hs, ok := h.opts.Context.Value(serverKey{}).(*http.Server); ok && hs != nil {
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hs.Handler = fn
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srvFunc = hs.Serve
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}
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}
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if srvFunc != nil {
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go func() {
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if cerr := srvFunc(ts); cerr != nil && !errors.Is(cerr, net.ErrClosed) {
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h.opts.Logger.Error(h.opts.Context, cerr)
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}
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}()
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} else {
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go func() {
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if cerr := http.Serve(ts, fn); cerr != nil && !errors.Is(cerr, net.ErrClosed) {
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h.opts.Logger.Error(h.opts.Context, cerr)
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}
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}()
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}
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go func() {
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t := new(time.Ticker)
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// only process if it exists
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if config.RegisterInterval > time.Duration(0) {
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// new ticker
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t = time.NewTicker(config.RegisterInterval)
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}
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// return error chan
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var ch chan error
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Loop:
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for {
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select {
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// register self on interval
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case <-t.C:
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h.RLock()
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registered := h.registered
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h.RUnlock()
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rerr := config.RegisterCheck(h.opts.Context)
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// nolint: nestif
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if rerr != nil && registered {
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if config.Logger.V(logger.ErrorLevel) {
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config.Logger.Errorf(config.Context, "Server %s-%s register check error: %s, deregister it", config.Name, config.ID, rerr)
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}
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// deregister self in case of error
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if err := h.Deregister(); err != nil {
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if config.Logger.V(logger.ErrorLevel) {
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config.Logger.Errorf(config.Context, "Server %s-%s deregister error: %s", config.Name, config.ID, err)
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}
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}
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} else if rerr != nil && !registered {
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if config.Logger.V(logger.ErrorLevel) {
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config.Logger.Errorf(config.Context, "Server %s-%s register check error: %s", config.Name, config.ID, rerr)
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}
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continue
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}
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if err := h.Register(); err != nil {
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if config.Logger.V(logger.ErrorLevel) {
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config.Logger.Errorf(config.Context, "Server %s-%s register error: %s", config.Name, config.ID, err)
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}
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}
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if err := h.Register(); err != nil {
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config.Logger.Errorf(config.Context, "Server register error: %s", err)
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}
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// wait for exit
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case ch = <-h.exit:
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break Loop
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}
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}
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// deregister
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if err := h.Deregister(); err != nil {
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config.Logger.Errorf(config.Context, "Server deregister error: %s", err)
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}
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ch <- ts.Close()
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}()
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return nil
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}
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func (h *Server) Stop() error {
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ch := make(chan error)
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h.exit <- ch
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return <-ch
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}
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func (h *Server) String() string {
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return "http"
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}
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func (h *Server) Name() string {
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return h.opts.Name
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}
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|
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func NewServer(opts ...server.Option) *Server {
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options := server.NewOptions(opts...)
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eh := DefaultErrorHandler
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if v, ok := options.Context.Value(errorHandlerKey{}).(errorHandler); ok && v != nil {
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eh = v
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|
}
|
|
return &Server{
|
|
opts: options,
|
|
exit: make(chan chan error),
|
|
errorHandler: eh,
|
|
pathHandlers: rhttp.NewTrie(),
|
|
}
|
|
}
|