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/ *
*
* Copyright 2014 , Google Inc .
* All rights reserved .
*
* Redistribution and use in source and binary forms , with or without
* modification , are permitted provided that the following conditions are
* met :
*
* * Redistributions of source code must retain the above copyright
* notice , this list of conditions and the following disclaimer .
* * Redistributions in binary form must reproduce the above
* copyright notice , this list of conditions and the following disclaimer
* in the documentation and / or other materials provided with the
* distribution .
* * Neither the name of Google Inc . nor the names of its
* contributors may be used to endorse or promote products derived from
* this software without specific prior written permission .
*
* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES , INCLUDING , BUT NOT
* LIMITED TO , THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
* A PARTICULAR PURPOSE ARE DISCLAIMED . IN NO EVENT SHALL THE COPYRIGHT
* OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT , INDIRECT , INCIDENTAL ,
* SPECIAL , EXEMPLARY , OR CONSEQUENTIAL DAMAGES ( INCLUDING , BUT NOT
* LIMITED TO , PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES ; LOSS OF USE ,
* DATA , OR PROFITS ; OR BUSINESS INTERRUPTION ) HOWEVER CAUSED AND ON ANY
* THEORY OF LIABILITY , WHETHER IN CONTRACT , STRICT LIABILITY , OR TORT
* ( INCLUDING NEGLIGENCE OR OTHERWISE ) ARISING IN ANY WAY OUT OF THE USE
* OF THIS SOFTWARE , EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE .
*
* /
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package grpc
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import (
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"errors"
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"fmt"
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"math"
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"net"
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"strings"
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"sync"
"time"
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"golang.org/x/net/context"
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"golang.org/x/net/trace"
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"google.golang.org/grpc/credentials"
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"google.golang.org/grpc/grpclog"
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"google.golang.org/grpc/keepalive"
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"google.golang.org/grpc/stats"
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"google.golang.org/grpc/transport"
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)
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var (
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// ErrClientConnClosing indicates that the operation is illegal because
// the ClientConn is closing.
ErrClientConnClosing = errors . New ( "grpc: the client connection is closing" )
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// ErrClientConnTimeout indicates that the ClientConn cannot establish the
// underlying connections within the specified timeout.
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// DEPRECATED: Please use context.DeadlineExceeded instead. This error will be
// removed in Q1 2017.
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ErrClientConnTimeout = errors . New ( "grpc: timed out when dialing" )
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// errNoTransportSecurity indicates that there is no transport security
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// being set for ClientConn. Users should either set one or explicitly
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// call WithInsecure DialOption to disable security.
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errNoTransportSecurity = errors . New ( "grpc: no transport security set (use grpc.WithInsecure() explicitly or set credentials)" )
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// errTransportCredentialsMissing indicates that users want to transmit security
// information (e.g., oauth2 token) which requires secure connection on an insecure
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// connection.
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errTransportCredentialsMissing = errors . New ( "grpc: the credentials require transport level security (use grpc.WithTransportCredentials() to set)" )
// errCredentialsConflict indicates that grpc.WithTransportCredentials()
// and grpc.WithInsecure() are both called for a connection.
errCredentialsConflict = errors . New ( "grpc: transport credentials are set for an insecure connection (grpc.WithTransportCredentials() and grpc.WithInsecure() are both called)" )
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// errNetworkIO indicates that the connection is down due to some network I/O error.
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errNetworkIO = errors . New ( "grpc: failed with network I/O error" )
// errConnDrain indicates that the connection starts to be drained and does not accept any new RPCs.
errConnDrain = errors . New ( "grpc: the connection is drained" )
// errConnClosing indicates that the connection is closing.
errConnClosing = errors . New ( "grpc: the connection is closing" )
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// errConnUnavailable indicates that the connection is unavailable.
errConnUnavailable = errors . New ( "grpc: the connection is unavailable" )
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// minimum time to give a connection to complete
minConnectTimeout = 20 * time . Second
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)
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// dialOptions configure a Dial call. dialOptions are set by the DialOption
// values passed to Dial.
type dialOptions struct {
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unaryInt UnaryClientInterceptor
streamInt StreamClientInterceptor
codec Codec
cp Compressor
dc Decompressor
bs backoffStrategy
balancer Balancer
block bool
insecure bool
timeout time . Duration
scChan <- chan ServiceConfig
copts transport . ConnectOptions
maxMsgSize int
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}
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const defaultClientMaxMsgSize = math . MaxInt32
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// DialOption configures how we set up the connection.
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type DialOption func ( * dialOptions )
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// WithMaxMsgSize returns a DialOption which sets the maximum message size the client can receive.
func WithMaxMsgSize ( s int ) DialOption {
return func ( o * dialOptions ) {
o . maxMsgSize = s
}
}
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// WithCodec returns a DialOption which sets a codec for message marshaling and unmarshaling.
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func WithCodec ( c Codec ) DialOption {
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return func ( o * dialOptions ) {
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o . codec = c
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}
}
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// WithCompressor returns a DialOption which sets a CompressorGenerator for generating message
// compressor.
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func WithCompressor ( cp Compressor ) DialOption {
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return func ( o * dialOptions ) {
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o . cp = cp
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}
}
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// WithDecompressor returns a DialOption which sets a DecompressorGenerator for generating
// message decompressor.
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func WithDecompressor ( dc Decompressor ) DialOption {
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return func ( o * dialOptions ) {
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o . dc = dc
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}
}
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// WithBalancer returns a DialOption which sets a load balancer.
func WithBalancer ( b Balancer ) DialOption {
return func ( o * dialOptions ) {
o . balancer = b
}
}
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// WithServiceConfig returns a DialOption which has a channel to read the service configuration.
func WithServiceConfig ( c <- chan ServiceConfig ) DialOption {
return func ( o * dialOptions ) {
o . scChan = c
}
}
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// WithBackoffMaxDelay configures the dialer to use the provided maximum delay
// when backing off after failed connection attempts.
func WithBackoffMaxDelay ( md time . Duration ) DialOption {
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return WithBackoffConfig ( BackoffConfig { MaxDelay : md } )
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}
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// WithBackoffConfig configures the dialer to use the provided backoff
// parameters after connection failures.
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//
// Use WithBackoffMaxDelay until more parameters on BackoffConfig are opened up
// for use.
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func WithBackoffConfig ( b BackoffConfig ) DialOption {
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// Set defaults to ensure that provided BackoffConfig is valid and
// unexported fields get default values.
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setDefaults ( & b )
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return withBackoff ( b )
}
// withBackoff sets the backoff strategy used for retries after a
// failed connection attempt.
//
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// This can be exported if arbitrary backoff strategies are allowed by gRPC.
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func withBackoff ( bs backoffStrategy ) DialOption {
return func ( o * dialOptions ) {
o . bs = bs
}
}
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// WithBlock returns a DialOption which makes caller of Dial blocks until the underlying
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// connection is up. Without this, Dial returns immediately and connecting the server
// happens in background.
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func WithBlock ( ) DialOption {
return func ( o * dialOptions ) {
o . block = true
}
}
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// WithInsecure returns a DialOption which disables transport security for this ClientConn.
// Note that transport security is required unless WithInsecure is set.
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func WithInsecure ( ) DialOption {
return func ( o * dialOptions ) {
o . insecure = true
}
}
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// WithTransportCredentials returns a DialOption which configures a
// connection level security credentials (e.g., TLS/SSL).
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func WithTransportCredentials ( creds credentials . TransportCredentials ) DialOption {
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return func ( o * dialOptions ) {
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o . copts . TransportCredentials = creds
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}
}
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// WithPerRPCCredentials returns a DialOption which sets
// credentials which will place auth state on each outbound RPC.
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func WithPerRPCCredentials ( creds credentials . PerRPCCredentials ) DialOption {
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return func ( o * dialOptions ) {
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o . copts . PerRPCCredentials = append ( o . copts . PerRPCCredentials , creds )
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}
}
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// WithTimeout returns a DialOption that configures a timeout for dialing a ClientConn
// initially. This is valid if and only if WithBlock() is present.
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func WithTimeout ( d time . Duration ) DialOption {
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return func ( o * dialOptions ) {
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o . timeout = d
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}
}
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// WithDialer returns a DialOption that specifies a function to use for dialing network addresses.
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// If FailOnNonTempDialError() is set to true, and an error is returned by f, gRPC checks the error's
// Temporary() method to decide if it should try to reconnect to the network address.
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func WithDialer ( f func ( string , time . Duration ) ( net . Conn , error ) ) DialOption {
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return func ( o * dialOptions ) {
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o . copts . Dialer = func ( ctx context . Context , addr string ) ( net . Conn , error ) {
if deadline , ok := ctx . Deadline ( ) ; ok {
return f ( addr , deadline . Sub ( time . Now ( ) ) )
}
return f ( addr , 0 )
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}
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}
}
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// WithStatsHandler returns a DialOption that specifies the stats handler
// for all the RPCs and underlying network connections in this ClientConn.
func WithStatsHandler ( h stats . Handler ) DialOption {
return func ( o * dialOptions ) {
o . copts . StatsHandler = h
}
}
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// FailOnNonTempDialError returns a DialOption that specified if gRPC fails on non-temporary dial errors.
// If f is true, and dialer returns a non-temporary error, gRPC will fail the connection to the network
// address and won't try to reconnect.
// The default value of FailOnNonTempDialError is false.
// This is an EXPERIMENTAL API.
func FailOnNonTempDialError ( f bool ) DialOption {
return func ( o * dialOptions ) {
o . copts . FailOnNonTempDialError = f
}
}
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// WithUserAgent returns a DialOption that specifies a user agent string for all the RPCs.
func WithUserAgent ( s string ) DialOption {
return func ( o * dialOptions ) {
o . copts . UserAgent = s
}
}
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// WithKeepaliveParams returns a DialOption that specifies keepalive paramaters for the client transport.
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func WithKeepaliveParams ( kp keepalive . ClientParameters ) DialOption {
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return func ( o * dialOptions ) {
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o . copts . KeepaliveParams = kp
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}
}
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// WithUnaryInterceptor returns a DialOption that specifies the interceptor for unary RPCs.
func WithUnaryInterceptor ( f UnaryClientInterceptor ) DialOption {
return func ( o * dialOptions ) {
o . unaryInt = f
}
}
// WithStreamInterceptor returns a DialOption that specifies the interceptor for streaming RPCs.
func WithStreamInterceptor ( f StreamClientInterceptor ) DialOption {
return func ( o * dialOptions ) {
o . streamInt = f
}
}
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// WithAuthority returns a DialOption that specifies the value to be used as
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// the :authority pseudo-header. This value only works with WithInsecure and
// has no effect if TransportCredentials are present.
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func WithAuthority ( a string ) DialOption {
return func ( o * dialOptions ) {
o . copts . Authority = a
}
}
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// Dial creates a client connection to the given target.
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func Dial ( target string , opts ... DialOption ) ( * ClientConn , error ) {
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return DialContext ( context . Background ( ) , target , opts ... )
}
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// DialContext creates a client connection to the given target. ctx can be used to
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// cancel or expire the pending connecting. Once this function returns, the
// cancellation and expiration of ctx will be noop. Users should call ClientConn.Close
// to terminate all the pending operations after this function returns.
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// This is the EXPERIMENTAL API.
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func DialContext ( ctx context . Context , target string , opts ... DialOption ) ( conn * ClientConn , err error ) {
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cc := & ClientConn {
target : target ,
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conns : make ( map [ Address ] * addrConn ) ,
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}
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cc . ctx , cc . cancel = context . WithCancel ( context . Background ( ) )
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cc . dopts . maxMsgSize = defaultClientMaxMsgSize
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for _ , opt := range opts {
opt ( & cc . dopts )
}
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grpcUA := "grpc-go/" + Version
if cc . dopts . copts . UserAgent != "" {
cc . dopts . copts . UserAgent += " " + grpcUA
} else {
cc . dopts . copts . UserAgent = grpcUA
}
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if cc . dopts . timeout > 0 {
var cancel context . CancelFunc
ctx , cancel = context . WithTimeout ( ctx , cc . dopts . timeout )
defer cancel ( )
}
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defer func ( ) {
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select {
case <- ctx . Done ( ) :
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conn , err = nil , ctx . Err ( )
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default :
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}
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if err != nil {
cc . Close ( )
}
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} ( )
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if cc . dopts . scChan != nil {
// Wait for the initial service config.
select {
case sc , ok := <- cc . dopts . scChan :
if ok {
cc . sc = sc
}
case <- ctx . Done ( ) :
return nil , ctx . Err ( )
}
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}
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// Set defaults.
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if cc . dopts . codec == nil {
cc . dopts . codec = protoCodec { }
}
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if cc . dopts . bs == nil {
cc . dopts . bs = DefaultBackoffConfig
}
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creds := cc . dopts . copts . TransportCredentials
if creds != nil && creds . Info ( ) . ServerName != "" {
cc . authority = creds . Info ( ) . ServerName
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} else if cc . dopts . insecure && cc . dopts . copts . Authority != "" {
cc . authority = cc . dopts . copts . Authority
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} else {
colonPos := strings . LastIndex ( target , ":" )
if colonPos == - 1 {
colonPos = len ( target )
}
cc . authority = target [ : colonPos ]
}
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waitC := make ( chan error , 1 )
go func ( ) {
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defer close ( waitC )
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if cc . dopts . balancer == nil && cc . sc . LB != nil {
cc . dopts . balancer = cc . sc . LB
}
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if cc . dopts . balancer != nil {
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var credsClone credentials . TransportCredentials
if creds != nil {
credsClone = creds . Clone ( )
}
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config := BalancerConfig {
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DialCreds : credsClone ,
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}
if err := cc . dopts . balancer . Start ( target , config ) ; err != nil {
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waitC <- err
return
}
ch := cc . dopts . balancer . Notify ( )
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if ch != nil {
if cc . dopts . block {
doneChan := make ( chan struct { } )
go cc . lbWatcher ( doneChan )
<- doneChan
} else {
go cc . lbWatcher ( nil )
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}
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return
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}
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}
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// No balancer, or no resolver within the balancer. Connect directly.
if err := cc . resetAddrConn ( Address { Addr : target } , cc . dopts . block , nil ) ; err != nil {
waitC <- err
return
}
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} ( )
select {
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case <- ctx . Done ( ) :
return nil , ctx . Err ( )
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case err := <- waitC :
if err != nil {
return nil , err
}
}
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if cc . dopts . scChan != nil {
go cc . scWatcher ( )
}
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return cc , nil
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}
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// ConnectivityState indicates the state of a client connection.
type ConnectivityState int
const (
// Idle indicates the ClientConn is idle.
Idle ConnectivityState = iota
// Connecting indicates the ClienConn is connecting.
Connecting
// Ready indicates the ClientConn is ready for work.
Ready
// TransientFailure indicates the ClientConn has seen a failure but expects to recover.
TransientFailure
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// Shutdown indicates the ClientConn has started shutting down.
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Shutdown
)
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func ( s ConnectivityState ) String ( ) string {
switch s {
case Idle :
return "IDLE"
case Connecting :
return "CONNECTING"
case Ready :
return "READY"
case TransientFailure :
return "TRANSIENT_FAILURE"
case Shutdown :
return "SHUTDOWN"
default :
panic ( fmt . Sprintf ( "unknown connectivity state: %d" , s ) )
}
}
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// ClientConn represents a client connection to an RPC server.
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type ClientConn struct {
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ctx context . Context
cancel context . CancelFunc
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target string
authority string
dopts dialOptions
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mu sync . RWMutex
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sc ServiceConfig
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conns map [ Address ] * addrConn
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}
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// lbWatcher watches the Notify channel of the balancer in cc and manages
// connections accordingly. If doneChan is not nil, it is closed after the
// first successfull connection is made.
func ( cc * ClientConn ) lbWatcher ( doneChan chan struct { } ) {
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for addrs := range cc . dopts . balancer . Notify ( ) {
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var (
add [ ] Address // Addresses need to setup connections.
del [ ] * addrConn // Connections need to tear down.
)
cc . mu . Lock ( )
for _ , a := range addrs {
if _ , ok := cc . conns [ a ] ; ! ok {
add = append ( add , a )
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}
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}
for k , c := range cc . conns {
var keep bool
for _ , a := range addrs {
if k == a {
keep = true
break
}
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}
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if ! keep {
del = append ( del , c )
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delete ( cc . conns , c . addr )
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}
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}
cc . mu . Unlock ( )
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for _ , a := range add {
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if doneChan != nil {
err := cc . resetAddrConn ( a , true , nil )
if err == nil {
close ( doneChan )
doneChan = nil
}
} else {
cc . resetAddrConn ( a , false , nil )
}
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}
for _ , c := range del {
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c . tearDown ( errConnDrain )
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}
}
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}
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func ( cc * ClientConn ) scWatcher ( ) {
for {
select {
case sc , ok := <- cc . dopts . scChan :
if ! ok {
return
}
cc . mu . Lock ( )
// TODO: load balance policy runtime change is ignored.
// We may revist this decision in the future.
cc . sc = sc
cc . mu . Unlock ( )
case <- cc . ctx . Done ( ) :
return
}
}
}
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// resetAddrConn creates an addrConn for addr and adds it to cc.conns.
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// If there is an old addrConn for addr, it will be torn down, using tearDownErr as the reason.
// If tearDownErr is nil, errConnDrain will be used instead.
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func ( cc * ClientConn ) resetAddrConn ( addr Address , block bool , tearDownErr error ) error {
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ac := & addrConn {
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cc : cc ,
addr : addr ,
dopts : cc . dopts ,
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}
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ac . ctx , ac . cancel = context . WithCancel ( cc . ctx )
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ac . stateCV = sync . NewCond ( & ac . mu )
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if EnableTracing {
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ac . events = trace . NewEventLog ( "grpc.ClientConn" , ac . addr . Addr )
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}
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if ! ac . dopts . insecure {
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if ac . dopts . copts . TransportCredentials == nil {
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return errNoTransportSecurity
2015-09-24 05:09:37 +03:00
}
} else {
2016-06-08 21:10:23 +03:00
if ac . dopts . copts . TransportCredentials != nil {
2016-06-08 23:44:43 +03:00
return errCredentialsConflict
2016-06-07 02:24:46 +03:00
}
2016-06-07 03:28:10 +03:00
for _ , cd := range ac . dopts . copts . PerRPCCredentials {
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if cd . RequireTransportSecurity ( ) {
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return errTransportCredentialsMissing
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}
}
}
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// Track ac in cc. This needs to be done before any getTransport(...) is called.
cc . mu . Lock ( )
if cc . conns == nil {
cc . mu . Unlock ( )
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return ErrClientConnClosing
}
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stale := cc . conns [ ac . addr ]
cc . conns [ ac . addr ] = ac
cc . mu . Unlock ( )
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if stale != nil {
// There is an addrConn alive on ac.addr already. This could be due to
2016-08-01 20:43:48 +03:00
// 1) a buggy Balancer notifies duplicated Addresses;
// 2) goaway was received, a new ac will replace the old ac.
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// The old ac should be deleted from cc.conns, but the
// underlying transport should drain rather than close.
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if tearDownErr == nil {
// tearDownErr is nil if resetAddrConn is called by
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// 1) Dial
// 2) lbWatcher
// In both cases, the stale ac should drain, not close.
stale . tearDown ( errConnDrain )
} else {
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stale . tearDown ( tearDownErr )
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}
2016-05-27 00:20:31 +03:00
}
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if block {
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if err := ac . resetTransport ( false ) ; err != nil {
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if err != errConnClosing {
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// Tear down ac and delete it from cc.conns.
cc . mu . Lock ( )
delete ( cc . conns , ac . addr )
cc . mu . Unlock ( )
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ac . tearDown ( err )
}
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if e , ok := err . ( transport . ConnectionError ) ; ok && ! e . Temporary ( ) {
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return e . Origin ( )
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}
return err
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}
// Start to monitor the error status of transport.
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go ac . transportMonitor ( )
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} else {
// Start a goroutine connecting to the server asynchronously.
go func ( ) {
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if err := ac . resetTransport ( false ) ; err != nil {
grpclog . Printf ( "Failed to dial %s: %v; please retry." , ac . addr . Addr , err )
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if err != errConnClosing {
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// Keep this ac in cc.conns, to get the reason it's torn down.
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ac . tearDown ( err )
}
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return
}
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ac . transportMonitor ( )
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} ( )
}
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return nil
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}
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// TODO: Avoid the locking here.
func ( cc * ClientConn ) getMethodConfig ( method string ) ( m MethodConfig , ok bool ) {
cc . mu . RLock ( )
defer cc . mu . RUnlock ( )
m , ok = cc . sc . Methods [ method ]
return
}
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func ( cc * ClientConn ) getTransport ( ctx context . Context , opts BalancerGetOptions ) ( transport . ClientTransport , func ( ) , error ) {
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var (
ac * addrConn
ok bool
put func ( )
)
if cc . dopts . balancer == nil {
// If balancer is nil, there should be only one addrConn available.
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cc . mu . RLock ( )
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if cc . conns == nil {
cc . mu . RUnlock ( )
return nil , nil , toRPCErr ( ErrClientConnClosing )
}
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for _ , ac = range cc . conns {
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// Break after the first iteration to get the first addrConn.
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ok = true
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break
}
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cc . mu . RUnlock ( )
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} else {
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var (
addr Address
err error
)
addr , put , err = cc . dopts . balancer . Get ( ctx , opts )
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if err != nil {
return nil , nil , toRPCErr ( err )
}
cc . mu . RLock ( )
if cc . conns == nil {
cc . mu . RUnlock ( )
return nil , nil , toRPCErr ( ErrClientConnClosing )
}
ac , ok = cc . conns [ addr ]
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cc . mu . RUnlock ( )
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}
if ! ok {
if put != nil {
put ( )
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}
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return nil , nil , errConnClosing
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}
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t , err := ac . wait ( ctx , cc . dopts . balancer != nil , ! opts . BlockingWait )
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if err != nil {
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if put != nil {
put ( )
}
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return nil , nil , err
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}
2016-05-07 01:47:09 +03:00
return t , put , nil
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}
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// Close tears down the ClientConn and all underlying connections.
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func ( cc * ClientConn ) Close ( ) error {
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cc . cancel ( )
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cc . mu . Lock ( )
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if cc . conns == nil {
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cc . mu . Unlock ( )
return ErrClientConnClosing
}
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conns := cc . conns
cc . conns = nil
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cc . mu . Unlock ( )
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if cc . dopts . balancer != nil {
cc . dopts . balancer . Close ( )
}
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for _ , ac := range conns {
ac . tearDown ( ErrClientConnClosing )
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}
return nil
}
// addrConn is a network connection to a given address.
type addrConn struct {
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ctx context . Context
cancel context . CancelFunc
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cc * ClientConn
addr Address
dopts dialOptions
events trace . EventLog
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mu sync . Mutex
state ConnectivityState
stateCV * sync . Cond
down func ( error ) // the handler called when a connection is down.
// ready is closed and becomes nil when a new transport is up or failed
// due to timeout.
ready chan struct { }
transport transport . ClientTransport
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// The reason this addrConn is torn down.
tearDownErr error
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}
// printf records an event in ac's event log, unless ac has been closed.
// REQUIRES ac.mu is held.
func ( ac * addrConn ) printf ( format string , a ... interface { } ) {
if ac . events != nil {
ac . events . Printf ( format , a ... )
}
}
// errorf records an error in ac's event log, unless ac has been closed.
// REQUIRES ac.mu is held.
func ( ac * addrConn ) errorf ( format string , a ... interface { } ) {
if ac . events != nil {
ac . events . Errorf ( format , a ... )
}
}
// getState returns the connectivity state of the Conn
func ( ac * addrConn ) getState ( ) ConnectivityState {
ac . mu . Lock ( )
defer ac . mu . Unlock ( )
return ac . state
}
// waitForStateChange blocks until the state changes to something other than the sourceState.
func ( ac * addrConn ) waitForStateChange ( ctx context . Context , sourceState ConnectivityState ) ( ConnectivityState , error ) {
ac . mu . Lock ( )
defer ac . mu . Unlock ( )
if sourceState != ac . state {
return ac . state , nil
2015-08-03 21:29:27 +03:00
}
2015-08-03 21:45:42 +03:00
done := make ( chan struct { } )
2015-12-15 01:32:43 +03:00
var err error
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go func ( ) {
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select {
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case <- ctx . Done ( ) :
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ac . mu . Lock ( )
2015-12-15 01:32:43 +03:00
err = ctx . Err ( )
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ac . stateCV . Broadcast ( )
ac . mu . Unlock ( )
2015-08-01 00:16:02 +03:00
case <- done :
}
2015-08-03 23:18:25 +03:00
} ( )
2015-08-01 05:00:43 +03:00
defer close ( done )
2016-05-07 01:47:09 +03:00
for sourceState == ac . state {
ac . stateCV . Wait ( )
2015-12-15 01:32:43 +03:00
if err != nil {
2016-05-07 01:47:09 +03:00
return ac . state , err
2015-08-01 05:00:43 +03:00
}
2015-08-01 00:16:02 +03:00
}
2016-05-07 01:47:09 +03:00
return ac . state , nil
2015-08-01 00:16:02 +03:00
}
2016-05-07 01:47:09 +03:00
func ( ac * addrConn ) resetTransport ( closeTransport bool ) error {
2016-08-10 19:37:53 +03:00
for retries := 0 ; ; retries ++ {
2016-05-07 01:47:09 +03:00
ac . mu . Lock ( )
ac . printf ( "connecting" )
if ac . state == Shutdown {
// ac.tearDown(...) has been invoked.
ac . mu . Unlock ( )
2016-05-25 21:28:45 +03:00
return errConnClosing
2015-02-06 04:14:05 +03:00
}
2016-05-07 01:47:09 +03:00
if ac . down != nil {
2016-05-25 21:28:45 +03:00
ac . down ( downErrorf ( false , true , "%v" , errNetworkIO ) )
2016-05-07 01:47:09 +03:00
ac . down = nil
}
ac . state = Connecting
ac . stateCV . Broadcast ( )
t := ac . transport
ac . mu . Unlock ( )
if closeTransport && t != nil {
t . Close ( )
2015-02-06 04:14:05 +03:00
}
2016-05-07 01:47:09 +03:00
sleepTime := ac . dopts . bs . backoff ( retries )
2016-07-29 20:16:56 +03:00
timeout := minConnectTimeout
if timeout < sleepTime {
timeout = sleepTime
2015-07-28 21:12:07 +03:00
}
2016-07-29 20:16:56 +03:00
ctx , cancel := context . WithTimeout ( ac . ctx , timeout )
2015-07-28 21:12:07 +03:00
connectTime := time . Now ( )
2016-10-14 02:44:27 +03:00
sinfo := transport . TargetInfo {
Addr : ac . addr . Addr ,
Metadata : ac . addr . Metadata ,
}
newTransport , err := transport . NewClientTransport ( ctx , sinfo , ac . dopts . copts )
2017-03-03 23:48:16 +03:00
// Don't call cancel in success path due to a race in Go 1.6:
// https://github.com/golang/go/issues/15078.
2015-02-06 04:14:05 +03:00
if err != nil {
2016-07-29 20:16:56 +03:00
cancel ( )
2016-07-15 01:19:57 +03:00
if e , ok := err . ( transport . ConnectionError ) ; ok && ! e . Temporary ( ) {
2016-07-16 02:20:34 +03:00
return err
2016-07-15 01:19:57 +03:00
}
2016-09-12 22:09:10 +03:00
grpclog . Printf ( "grpc: addrConn.resetTransport failed to create client transport: %v; Reconnecting to %v" , err , ac . addr )
2016-05-07 01:47:09 +03:00
ac . mu . Lock ( )
if ac . state == Shutdown {
// ac.tearDown(...) has been invoked.
ac . mu . Unlock ( )
2016-05-25 21:28:45 +03:00
return errConnClosing
2015-11-11 01:02:38 +03:00
}
2016-05-07 01:47:09 +03:00
ac . errorf ( "transient failure: %v" , err )
ac . state = TransientFailure
ac . stateCV . Broadcast ( )
if ac . ready != nil {
close ( ac . ready )
ac . ready = nil
2015-09-25 23:21:25 +03:00
}
2016-05-07 01:47:09 +03:00
ac . mu . Unlock ( )
2015-02-06 04:14:05 +03:00
closeTransport = false
2016-05-12 23:08:31 +03:00
select {
2016-07-29 20:16:56 +03:00
case <- time . After ( sleepTime - time . Since ( connectTime ) ) :
case <- ac . ctx . Done ( ) :
return ac . ctx . Err ( )
2016-05-12 23:08:31 +03:00
}
2015-02-06 04:14:05 +03:00
continue
}
2016-05-07 01:47:09 +03:00
ac . mu . Lock ( )
ac . printf ( "ready" )
if ac . state == Shutdown {
// ac.tearDown(...) has been invoked.
ac . mu . Unlock ( )
2015-03-05 20:45:50 +03:00
newTransport . Close ( )
2016-05-25 21:28:45 +03:00
return errConnClosing
2015-03-05 20:45:50 +03:00
}
2016-05-07 01:47:09 +03:00
ac . state = Ready
ac . stateCV . Broadcast ( )
ac . transport = newTransport
if ac . ready != nil {
close ( ac . ready )
ac . ready = nil
2015-02-06 04:14:05 +03:00
}
2016-07-19 01:58:41 +03:00
if ac . cc . dopts . balancer != nil {
ac . down = ac . cc . dopts . balancer . Up ( ac . addr )
}
2016-05-07 01:47:09 +03:00
ac . mu . Unlock ( )
2015-02-06 04:14:05 +03:00
return nil
}
}
// Run in a goroutine to track the error in transport and create the
// new transport if an error happens. It returns when the channel is closing.
2016-05-07 01:47:09 +03:00
func ( ac * addrConn ) transportMonitor ( ) {
2015-02-06 04:14:05 +03:00
for {
2016-05-07 01:47:09 +03:00
ac . mu . Lock ( )
t := ac . transport
ac . mu . Unlock ( )
2015-02-06 04:14:05 +03:00
select {
2016-07-29 20:16:56 +03:00
// This is needed to detect the teardown when
2016-05-07 01:47:09 +03:00
// the addrConn is idle (i.e., no RPC in flight).
2016-07-29 20:16:56 +03:00
case <- ac . ctx . Done ( ) :
2016-07-28 05:46:34 +03:00
select {
case <- t . Error ( ) :
t . Close ( )
default :
}
2015-02-06 04:14:05 +03:00
return
2016-07-22 02:19:34 +03:00
case <- t . GoAway ( ) :
2016-07-28 21:07:42 +03:00
// If GoAway happens without any network I/O error, ac is closed without shutting down the
// underlying transport (the transport will be closed when all the pending RPCs finished or
// failed.).
// If GoAway and some network I/O error happen concurrently, ac and its underlying transport
// are closed.
// In both cases, a new ac is created.
2016-07-28 05:46:34 +03:00
select {
case <- t . Error ( ) :
2017-03-21 21:35:53 +03:00
ac . cc . resetAddrConn ( ac . addr , false , errNetworkIO )
2016-07-28 05:46:34 +03:00
default :
2017-03-21 21:35:53 +03:00
ac . cc . resetAddrConn ( ac . addr , false , errConnDrain )
2016-07-28 05:46:34 +03:00
}
2016-07-22 02:19:34 +03:00
return
case <- t . Error ( ) :
2016-07-28 05:46:34 +03:00
select {
2016-07-29 20:16:56 +03:00
case <- ac . ctx . Done ( ) :
2016-07-28 05:46:34 +03:00
t . Close ( )
return
case <- t . GoAway ( ) :
2017-03-21 21:35:53 +03:00
ac . cc . resetAddrConn ( ac . addr , false , errNetworkIO )
2016-07-28 05:46:34 +03:00
return
default :
}
2016-05-07 01:47:09 +03:00
ac . mu . Lock ( )
if ac . state == Shutdown {
2016-07-28 03:27:10 +03:00
// ac has been shutdown.
2016-05-07 01:47:09 +03:00
ac . mu . Unlock ( )
2015-11-11 01:02:38 +03:00
return
}
2016-05-07 01:47:09 +03:00
ac . state = TransientFailure
ac . stateCV . Broadcast ( )
ac . mu . Unlock ( )
if err := ac . resetTransport ( true ) ; err != nil {
ac . mu . Lock ( )
ac . printf ( "transport exiting: %v" , err )
ac . mu . Unlock ( )
grpclog . Printf ( "grpc: addrConn.transportMonitor exits due to: %v" , err )
2016-07-16 02:20:34 +03:00
if err != errConnClosing {
2016-07-30 03:17:36 +03:00
// Keep this ac in cc.conns, to get the reason it's torn down.
2016-07-16 02:20:34 +03:00
ac . tearDown ( err )
}
2015-02-06 04:14:05 +03:00
return
}
}
}
}
2016-06-28 00:36:59 +03:00
// wait blocks until i) the new transport is up or ii) ctx is done or iii) ac is closed or
2016-10-18 23:42:15 +03:00
// iv) transport is in TransientFailure and there is a balancer/failfast is true.
2016-08-17 00:16:42 +03:00
func ( ac * addrConn ) wait ( ctx context . Context , hasBalancer , failfast bool ) ( transport . ClientTransport , error ) {
2015-02-06 04:14:05 +03:00
for {
2016-05-07 01:47:09 +03:00
ac . mu . Lock ( )
2015-02-06 04:14:05 +03:00
switch {
2016-05-07 01:47:09 +03:00
case ac . state == Shutdown :
2016-08-17 00:16:42 +03:00
if failfast || ! hasBalancer {
// RPC is failfast or balancer is nil. This RPC should fail with ac.tearDownErr.
err := ac . tearDownErr
ac . mu . Unlock ( )
return nil , err
}
2016-05-07 01:47:09 +03:00
ac . mu . Unlock ( )
2016-08-17 00:16:42 +03:00
return nil , errConnClosing
2016-05-07 01:47:09 +03:00
case ac . state == Ready :
ct := ac . transport
ac . mu . Unlock ( )
2016-02-23 03:26:15 +03:00
return ct , nil
2016-08-17 00:16:42 +03:00
case ac . state == TransientFailure :
if failfast || hasBalancer {
ac . mu . Unlock ( )
return nil , errConnUnavailable
2015-02-06 04:14:05 +03:00
}
}
2016-08-17 00:16:42 +03:00
ready := ac . ready
if ready == nil {
ready = make ( chan struct { } )
ac . ready = ready
}
ac . mu . Unlock ( )
select {
case <- ctx . Done ( ) :
return nil , toRPCErr ( ctx . Err ( ) )
// Wait until the new transport is ready or failed.
case <- ready :
}
2015-02-06 04:14:05 +03:00
}
}
2016-05-17 01:31:00 +03:00
// tearDown starts to tear down the addrConn.
2015-02-06 04:14:05 +03:00
// TODO(zhaoq): Make this synchronous to avoid unbounded memory consumption in
2016-05-07 01:47:09 +03:00
// some edge cases (e.g., the caller opens and closes many addrConn's in a
2015-02-06 04:14:05 +03:00
// tight loop.
2016-07-29 22:57:38 +03:00
// tearDown doesn't remove ac from ac.cc.conns.
2016-05-07 01:47:09 +03:00
func ( ac * addrConn ) tearDown ( err error ) {
2016-07-29 20:16:56 +03:00
ac . cancel ( )
2016-05-07 01:47:09 +03:00
ac . mu . Lock ( )
2016-07-29 22:57:38 +03:00
defer ac . mu . Unlock ( )
2016-05-27 00:53:32 +03:00
if ac . down != nil {
ac . down ( downErrorf ( false , false , "%v" , err ) )
ac . down = nil
}
2016-07-26 02:35:32 +03:00
if err == errConnDrain && ac . transport != nil {
// GracefulClose(...) may be executed multiple times when
// i) receiving multiple GoAway frames from the server; or
// ii) there are concurrent name resolver/Balancer triggered
// address removal and GoAway.
ac . transport . GracefulClose ( )
}
if ac . state == Shutdown {
return
}
ac . state = Shutdown
2016-07-16 02:20:34 +03:00
ac . tearDownErr = err
2016-05-07 01:47:09 +03:00
ac . stateCV . Broadcast ( )
if ac . events != nil {
ac . events . Finish ( )
ac . events = nil
2015-03-05 00:00:47 +03:00
}
2016-05-07 01:47:09 +03:00
if ac . ready != nil {
close ( ac . ready )
ac . ready = nil
2015-03-04 06:04:29 +03:00
}
2016-07-26 02:35:32 +03:00
if ac . transport != nil && err != errConnDrain {
ac . transport . Close ( )
2015-03-04 06:04:29 +03:00
}
2016-05-07 01:47:09 +03:00
return
2015-02-06 04:14:05 +03:00
}