mirror of
https://github.com/golang/go
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d3396bb197
This will allow varying implementations and wrappers, and more closely matches the concepts used in the net library. Change-Id: I4be4c6efb3def0eda2693f482cbb0c6f776e5642 Reviewed-on: https://go-review.googlesource.com/c/tools/+/232877 Run-TryBot: Ian Cottrell <iancottrell@google.com> TryBot-Result: Gobot Gobot <gobot@golang.org> Reviewed-by: Robert Findley <rfindley@google.com>
263 lines
7.3 KiB
Go
263 lines
7.3 KiB
Go
// Copyright 2018 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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package jsonrpc2
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import (
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"context"
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"encoding/json"
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"fmt"
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"sync"
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"sync/atomic"
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"golang.org/x/tools/internal/event"
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"golang.org/x/tools/internal/event/label"
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"golang.org/x/tools/internal/lsp/debug/tag"
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)
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// Conn is the common interface to jsonrpc clients and servers.
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// Conn is bidirectional; it does not have a designated server or client end.
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// It manages the jsonrpc2 protocol, connecting responses back to their calls.
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type Conn interface {
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// Call invokes the target method and waits for a response.
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// The params will be marshaled to JSON before sending over the wire, and will
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// be handed to the method invoked.
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// The response will be unmarshaled from JSON into the result.
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// The id returned will be unique from this connection, and can be used for
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// logging or tracking.
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Call(ctx context.Context, method string, params, result interface{}) (ID, error)
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// Notify invokes the target method but does not wait for a response.
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// The params will be marshaled to JSON before sending over the wire, and will
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// be handed to the method invoked.
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Notify(ctx context.Context, method string, params interface{}) error
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// Go starts a goroutine to handle the connection.
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// It must be called exactly once for each Conn.
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// It returns immediately.
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// You must block on Done() to wait for the connection to shut down.
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// This is a temporary measure, this should be started automatically in the
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// future.
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Go(ctx context.Context, handler Handler)
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// Close closes the connection and it's underlying stream.
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// It does not wait for the close to complete, use the Done() channel for
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// that.
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Close() error
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// Done returns a channel that will be closed when the processing goroutine
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// has terminated, which will happen if Close() is called or an underlying
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// stream is closed.
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Done() <-chan struct{}
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// Err returns an error if there was one from within the processing goroutine.
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// If err returns non nil, the connection will be already closed or closing.
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Err() error
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}
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type conn struct {
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seq int64 // must only be accessed using atomic operations
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writeMu sync.Mutex // protects writes to the stream
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stream Stream
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pendingMu sync.Mutex // protects the pending map
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pending map[ID]chan *Response
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done chan struct{}
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err atomic.Value
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}
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// NewConn creates a new connection object around the supplied stream.
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func NewConn(s Stream) Conn {
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conn := &conn{
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stream: s,
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pending: make(map[ID]chan *Response),
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done: make(chan struct{}),
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}
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return conn
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}
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func (c *conn) Notify(ctx context.Context, method string, params interface{}) (err error) {
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notify, err := NewNotification(method, params)
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if err != nil {
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return fmt.Errorf("marshaling notify parameters: %v", err)
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}
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ctx, done := event.Start(ctx, method,
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tag.Method.Of(method),
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tag.RPCDirection.Of(tag.Outbound),
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)
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defer func() {
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recordStatus(ctx, err)
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done()
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}()
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event.Metric(ctx, tag.Started.Of(1))
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n, err := c.write(ctx, notify)
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event.Metric(ctx, tag.SentBytes.Of(n))
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return err
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}
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func (c *conn) Call(ctx context.Context, method string, params, result interface{}) (_ ID, err error) {
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// generate a new request identifier
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id := ID{number: atomic.AddInt64(&c.seq, 1)}
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call, err := NewCall(id, method, params)
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if err != nil {
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return id, fmt.Errorf("marshaling call parameters: %v", err)
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}
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ctx, done := event.Start(ctx, method,
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tag.Method.Of(method),
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tag.RPCDirection.Of(tag.Outbound),
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tag.RPCID.Of(fmt.Sprintf("%q", id)),
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)
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defer func() {
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recordStatus(ctx, err)
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done()
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}()
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event.Metric(ctx, tag.Started.Of(1))
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// We have to add ourselves to the pending map before we send, otherwise we
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// are racing the response. Also add a buffer to rchan, so that if we get a
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// wire response between the time this call is cancelled and id is deleted
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// from c.pending, the send to rchan will not block.
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rchan := make(chan *Response, 1)
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c.pendingMu.Lock()
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c.pending[id] = rchan
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c.pendingMu.Unlock()
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defer func() {
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c.pendingMu.Lock()
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delete(c.pending, id)
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c.pendingMu.Unlock()
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}()
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// now we are ready to send
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n, err := c.write(ctx, call)
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event.Metric(ctx, tag.SentBytes.Of(n))
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if err != nil {
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// sending failed, we will never get a response, so don't leave it pending
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return id, err
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}
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// now wait for the response
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select {
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case response := <-rchan:
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// is it an error response?
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if response.err != nil {
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return id, response.err
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}
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if result == nil || len(response.result) == 0 {
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return id, nil
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}
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if err := json.Unmarshal(response.result, result); err != nil {
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return id, fmt.Errorf("unmarshaling result: %v", err)
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}
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return id, nil
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case <-ctx.Done():
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return id, ctx.Err()
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}
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}
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func (c *conn) replier(req Request, spanDone func()) Replier {
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return func(ctx context.Context, result interface{}, err error) error {
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defer func() {
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recordStatus(ctx, err)
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spanDone()
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}()
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call, ok := req.(*Call)
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if !ok {
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// request was a notify, no need to respond
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return nil
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}
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response, err := NewResponse(call.id, result, err)
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if err != nil {
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return err
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}
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n, err := c.write(ctx, response)
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event.Metric(ctx, tag.SentBytes.Of(n))
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if err != nil {
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// TODO(iancottrell): if a stream write fails, we really need to shut down
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// the whole stream
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return err
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}
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return nil
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}
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}
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func (c *conn) write(ctx context.Context, msg Message) (int64, error) {
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c.writeMu.Lock()
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defer c.writeMu.Unlock()
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return c.stream.Write(ctx, msg)
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}
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func (c *conn) Go(ctx context.Context, handler Handler) {
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go c.run(ctx, handler)
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}
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func (c *conn) run(ctx context.Context, handler Handler) {
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defer close(c.done)
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for {
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// get the next message
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msg, n, err := c.stream.Read(ctx)
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if err != nil {
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// The stream failed, we cannot continue.
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c.fail(err)
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return
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}
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switch msg := msg.(type) {
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case Request:
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labels := []label.Label{
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tag.Method.Of(msg.Method()),
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tag.RPCDirection.Of(tag.Inbound),
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{}, // reserved for ID if present
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}
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if call, ok := msg.(*Call); ok {
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labels[len(labels)-1] = tag.RPCID.Of(fmt.Sprintf("%q", call.ID()))
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} else {
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labels = labels[:len(labels)-1]
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}
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reqCtx, spanDone := event.Start(ctx, msg.Method(), labels...)
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event.Metric(reqCtx,
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tag.Started.Of(1),
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tag.ReceivedBytes.Of(n))
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if err := handler(reqCtx, c.replier(msg, spanDone), msg); err != nil {
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// delivery failed, not much we can do
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event.Error(reqCtx, "jsonrpc2 message delivery failed", err)
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}
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case *Response:
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// If method is not set, this should be a response, in which case we must
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// have an id to send the response back to the caller.
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c.pendingMu.Lock()
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rchan, ok := c.pending[msg.id]
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c.pendingMu.Unlock()
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if ok {
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rchan <- msg
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}
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}
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}
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}
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func (c *conn) Close() error {
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return c.stream.Close()
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}
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func (c *conn) Done() <-chan struct{} {
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return c.done
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}
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func (c *conn) Err() error {
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if err := c.err.Load(); err != nil {
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return err.(error)
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}
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return nil
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}
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// fail sets a failure condition on the stream and closes it.
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func (c *conn) fail(err error) {
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c.err.Store(err)
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c.stream.Close()
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}
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func recordStatus(ctx context.Context, err error) {
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if err != nil {
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event.Label(ctx, tag.StatusCode.Of("ERROR"))
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} else {
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event.Label(ctx, tag.StatusCode.Of("OK"))
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}
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}
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