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362 lines
11 KiB
362 lines
11 KiB
package warden
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import (
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"context"
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"flag"
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"fmt"
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"math"
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"net"
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"os"
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"sync"
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"time"
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"github.com/go-kratos/kratos/pkg/conf/dsn"
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"github.com/go-kratos/kratos/pkg/log"
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nmd "github.com/go-kratos/kratos/pkg/net/metadata"
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"github.com/go-kratos/kratos/pkg/net/rpc/warden/ratelimiter"
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"github.com/go-kratos/kratos/pkg/net/trace"
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xtime "github.com/go-kratos/kratos/pkg/time"
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//this package is for json format response
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_ "github.com/go-kratos/kratos/pkg/net/rpc/warden/internal/encoding/json"
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"github.com/go-kratos/kratos/pkg/net/rpc/warden/internal/status"
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"github.com/pkg/errors"
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"google.golang.org/grpc"
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_ "google.golang.org/grpc/encoding/gzip" // NOTE: use grpc gzip by header grpc-accept-encoding
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"google.golang.org/grpc/keepalive"
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"google.golang.org/grpc/metadata"
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"google.golang.org/grpc/peer"
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"google.golang.org/grpc/reflection"
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)
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var (
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_grpcDSN string
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_defaultSerConf = &ServerConfig{
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Network: "tcp",
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Addr: "0.0.0.0:9000",
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Timeout: xtime.Duration(time.Second),
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IdleTimeout: xtime.Duration(time.Second * 180),
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MaxLifeTime: xtime.Duration(time.Hour * 2),
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ForceCloseWait: xtime.Duration(time.Second * 20),
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KeepAliveInterval: xtime.Duration(time.Second * 60),
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KeepAliveTimeout: xtime.Duration(time.Second * 20),
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}
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_abortIndex int8 = math.MaxInt8 / 2
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)
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// ServerConfig is rpc server conf.
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type ServerConfig struct {
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// Network is grpc listen network,default value is tcp
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Network string `dsn:"network"`
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// Addr is grpc listen addr,default value is 0.0.0.0:9000
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Addr string `dsn:"address"`
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// Timeout is context timeout for per rpc call.
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Timeout xtime.Duration `dsn:"query.timeout"`
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// IdleTimeout is a duration for the amount of time after which an idle connection would be closed by sending a GoAway.
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// Idleness duration is defined since the most recent time the number of outstanding RPCs became zero or the connection establishment.
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IdleTimeout xtime.Duration `dsn:"query.idleTimeout"`
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// MaxLifeTime is a duration for the maximum amount of time a connection may exist before it will be closed by sending a GoAway.
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// A random jitter of +/-10% will be added to MaxConnectionAge to spread out connection storms.
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MaxLifeTime xtime.Duration `dsn:"query.maxLife"`
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// ForceCloseWait is an additive period after MaxLifeTime after which the connection will be forcibly closed.
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ForceCloseWait xtime.Duration `dsn:"query.closeWait"`
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// KeepAliveInterval is after a duration of this time if the server doesn't see any activity it pings the client to see if the transport is still alive.
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KeepAliveInterval xtime.Duration `dsn:"query.keepaliveInterval"`
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// KeepAliveTimeout is After having pinged for keepalive check, the server waits for a duration of Timeout and if no activity is seen even after that
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// the connection is closed.
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KeepAliveTimeout xtime.Duration `dsn:"query.keepaliveTimeout"`
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// LogFlag to control log behaviour. e.g. LogFlag: warden.LogFlagDisableLog.
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// Disable: 1 DisableArgs: 2 DisableInfo: 4
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LogFlag int8 `dsn:"query.logFlag"`
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}
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// Server is the framework's server side instance, it contains the GrpcServer, interceptor and interceptors.
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// Create an instance of Server, by using NewServer().
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type Server struct {
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conf *ServerConfig
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mutex sync.RWMutex
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server *grpc.Server
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handlers []grpc.UnaryServerInterceptor
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}
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// handle return a new unary server interceptor for OpenTracing\Logging\LinkTimeout.
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func (s *Server) handle() grpc.UnaryServerInterceptor {
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return func(ctx context.Context, req interface{}, args *grpc.UnaryServerInfo, handler grpc.UnaryHandler) (resp interface{}, err error) {
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var (
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cancel func()
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addr string
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)
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s.mutex.RLock()
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conf := s.conf
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s.mutex.RUnlock()
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// get derived timeout from grpc context,
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// compare with the warden configured,
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// and use the minimum one
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timeout := time.Duration(conf.Timeout)
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if dl, ok := ctx.Deadline(); ok {
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ctimeout := time.Until(dl)
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if ctimeout-time.Millisecond*20 > 0 {
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ctimeout = ctimeout - time.Millisecond*20
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}
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if timeout > ctimeout {
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timeout = ctimeout
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}
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}
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ctx, cancel = context.WithTimeout(ctx, timeout)
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defer cancel()
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// get grpc metadata(trace & remote_ip & color)
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var t trace.Trace
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cmd := nmd.MD{}
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if gmd, ok := metadata.FromIncomingContext(ctx); ok {
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t, _ = trace.Extract(trace.GRPCFormat, gmd)
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for key, vals := range gmd {
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if nmd.IsIncomingKey(key) {
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cmd[key] = vals[0]
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}
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}
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}
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if t == nil {
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t = trace.New(args.FullMethod)
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} else {
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t.SetTitle(args.FullMethod)
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}
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if pr, ok := peer.FromContext(ctx); ok {
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addr = pr.Addr.String()
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t.SetTag(trace.String(trace.TagAddress, addr))
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}
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defer t.Finish(&err)
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// use common meta data context instead of grpc context
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ctx = nmd.NewContext(ctx, cmd)
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ctx = trace.NewContext(ctx, t)
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resp, err = handler(ctx, req)
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return resp, status.FromError(err).Err()
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}
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}
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func init() {
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addFlag(flag.CommandLine)
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}
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func addFlag(fs *flag.FlagSet) {
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v := os.Getenv("GRPC")
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if v == "" {
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v = "tcp://0.0.0.0:9000/?timeout=1s&idle_timeout=60s"
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}
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fs.StringVar(&_grpcDSN, "grpc", v, "listen grpc dsn, or use GRPC env variable.")
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fs.Var(&_grpcTarget, "grpc.target", "usage: -grpc.target=seq.service=127.0.0.1:9000 -grpc.target=fav.service=192.168.10.1:9000")
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}
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func parseDSN(rawdsn string) *ServerConfig {
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conf := new(ServerConfig)
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d, err := dsn.Parse(rawdsn)
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if err != nil {
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panic(errors.WithMessage(err, fmt.Sprintf("warden: invalid dsn: %s", rawdsn)))
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}
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if _, err = d.Bind(conf); err != nil {
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panic(errors.WithMessage(err, fmt.Sprintf("warden: invalid dsn: %s", rawdsn)))
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}
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return conf
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}
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// NewServer returns a new blank Server instance with a default server interceptor.
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func NewServer(conf *ServerConfig, opt ...grpc.ServerOption) (s *Server) {
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if conf == nil {
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if !flag.Parsed() {
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fmt.Fprint(os.Stderr, "[warden] please call flag.Parse() before Init warden server, some configure may not effect\n")
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}
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conf = parseDSN(_grpcDSN)
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} else {
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fmt.Fprintf(os.Stderr, "[warden] config is Deprecated, argument will be ignored. please use -grpc flag or GRPC env to configure warden server.\n")
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}
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s = new(Server)
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if err := s.SetConfig(conf); err != nil {
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panic(errors.Errorf("warden: set config failed!err: %s", err.Error()))
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}
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keepParam := grpc.KeepaliveParams(keepalive.ServerParameters{
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MaxConnectionIdle: time.Duration(s.conf.IdleTimeout),
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MaxConnectionAgeGrace: time.Duration(s.conf.ForceCloseWait),
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Time: time.Duration(s.conf.KeepAliveInterval),
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Timeout: time.Duration(s.conf.KeepAliveTimeout),
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MaxConnectionAge: time.Duration(s.conf.MaxLifeTime),
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})
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opt = append(opt, keepParam, grpc.UnaryInterceptor(s.interceptor))
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s.server = grpc.NewServer(opt...)
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s.Use(s.recovery(), s.handle(), serverLogging(conf.LogFlag), s.stats(), s.validate())
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s.Use(ratelimiter.New(nil).Limit())
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return
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}
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// SetConfig hot reloads server config
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func (s *Server) SetConfig(conf *ServerConfig) (err error) {
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if conf == nil {
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conf = _defaultSerConf
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}
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if conf.Timeout <= 0 {
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conf.Timeout = xtime.Duration(time.Second)
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}
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if conf.IdleTimeout <= 0 {
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conf.IdleTimeout = xtime.Duration(time.Second * 60)
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}
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if conf.MaxLifeTime <= 0 {
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conf.MaxLifeTime = xtime.Duration(time.Hour * 2)
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}
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if conf.ForceCloseWait <= 0 {
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conf.ForceCloseWait = xtime.Duration(time.Second * 20)
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}
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if conf.KeepAliveInterval <= 0 {
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conf.KeepAliveInterval = xtime.Duration(time.Second * 60)
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}
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if conf.KeepAliveTimeout <= 0 {
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conf.KeepAliveTimeout = xtime.Duration(time.Second * 20)
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}
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if conf.Addr == "" {
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conf.Addr = "0.0.0.0:9000"
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}
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if conf.Network == "" {
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conf.Network = "tcp"
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}
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s.mutex.Lock()
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s.conf = conf
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s.mutex.Unlock()
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return nil
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}
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// interceptor is a single interceptor out of a chain of many interceptors.
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// Execution is done in left-to-right order, including passing of context.
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// For example ChainUnaryServer(one, two, three) will execute one before two before three, and three
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// will see context changes of one and two.
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func (s *Server) interceptor(ctx context.Context, req interface{}, args *grpc.UnaryServerInfo, handler grpc.UnaryHandler) (interface{}, error) {
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var (
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i int
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chain grpc.UnaryHandler
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)
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n := len(s.handlers)
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if n == 0 {
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return handler(ctx, req)
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}
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chain = func(ic context.Context, ir interface{}) (interface{}, error) {
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if i == n-1 {
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return handler(ic, ir)
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}
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i++
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return s.handlers[i](ic, ir, args, chain)
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}
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return s.handlers[0](ctx, req, args, chain)
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}
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// Server return the grpc server for registering service.
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func (s *Server) Server() *grpc.Server {
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return s.server
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}
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// Use attachs a global inteceptor to the server.
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// For example, this is the right place for a rate limiter or error management inteceptor.
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func (s *Server) Use(handlers ...grpc.UnaryServerInterceptor) *Server {
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finalSize := len(s.handlers) + len(handlers)
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if finalSize >= int(_abortIndex) {
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panic("warden: server use too many handlers")
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}
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mergedHandlers := make([]grpc.UnaryServerInterceptor, finalSize)
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copy(mergedHandlers, s.handlers)
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copy(mergedHandlers[len(s.handlers):], handlers)
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s.handlers = mergedHandlers
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return s
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}
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// Run create a tcp listener and start goroutine for serving each incoming request.
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// Run will return a non-nil error unless Stop or GracefulStop is called.
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func (s *Server) Run(addr string) error {
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lis, err := net.Listen("tcp", addr)
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if err != nil {
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err = errors.WithStack(err)
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log.Error("failed to listen: %v", err)
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return err
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}
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reflection.Register(s.server)
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return s.Serve(lis)
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}
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// RunUnix create a unix listener and start goroutine for serving each incoming request.
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// RunUnix will return a non-nil error unless Stop or GracefulStop is called.
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func (s *Server) RunUnix(file string) error {
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lis, err := net.Listen("unix", file)
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if err != nil {
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err = errors.WithStack(err)
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log.Error("failed to listen: %v", err)
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return err
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}
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reflection.Register(s.server)
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return s.Serve(lis)
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}
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// Start create a new goroutine run server with configured listen addr
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// will panic if any error happened
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// return server itself
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func (s *Server) Start() (*Server, error) {
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_, err := s.startWithAddr()
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if err != nil {
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return nil, err
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}
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return s, nil
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}
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// StartWithAddr create a new goroutine run server with configured listen addr
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// will panic if any error happened
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// return server itself and the actually listened address (if configured listen
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// port is zero, the os will allocate an unused port)
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func (s *Server) StartWithAddr() (*Server, net.Addr, error) {
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addr, err := s.startWithAddr()
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if err != nil {
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return nil, nil, err
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}
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return s, addr, nil
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}
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func (s *Server) startWithAddr() (net.Addr, error) {
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lis, err := net.Listen(s.conf.Network, s.conf.Addr)
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if err != nil {
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return nil, err
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}
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log.Info("warden: start grpc listen addr: %v", lis.Addr())
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reflection.Register(s.server)
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go func() {
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if err := s.Serve(lis); err != nil {
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panic(err)
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}
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}()
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return lis.Addr(), nil
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}
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// Serve accepts incoming connections on the listener lis, creating a new
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// ServerTransport and service goroutine for each.
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// Serve will return a non-nil error unless Stop or GracefulStop is called.
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func (s *Server) Serve(lis net.Listener) error {
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return s.server.Serve(lis)
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}
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// Shutdown stops the server gracefully. It stops the server from
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// accepting new connections and RPCs and blocks until all the pending RPCs are
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// finished or the context deadline is reached.
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func (s *Server) Shutdown(ctx context.Context) (err error) {
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ch := make(chan struct{})
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go func() {
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s.server.GracefulStop()
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close(ch)
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}()
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select {
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case <-ctx.Done():
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s.server.Stop()
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err = ctx.Err()
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case <-ch:
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}
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return
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}
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