mirror of
https://github.com/golang/go
synced 2024-11-18 20:54:40 -07:00
5fb17a1e7b
For tests (and perhaps later, for daemon discovery), unix domain sockets offer advantages over TCP: we can know the exact socket address that will be used when starting a server subprocess. They also offer performance and security advantages over TCP, and were specifically requested on golang.org/issues/34111. This CL adds support for listening on UDS, and uses this to implement an additional regtest environment mode that starts up an external process. This mode is disabled by default, but may be enabled by the -enable_gopls_subprocess_tests. The regtest TestMain may be hijacked to instead run as gopls, if a special environment variable is set. This allows the the test runner to start a separate process by using os.Argv[0]. The -gopls_test_binary flag may be used to point tests at a separate gopls binary. Updates golang/go#36879 Updates golang/go#34111 Change-Id: I1cfdf55040e81ffa69a6726878a96529e5522e82 Reviewed-on: https://go-review.googlesource.com/c/tools/+/218839 Run-TryBot: Robert Findley <rfindley@google.com> TryBot-Result: Gobot Gobot <gobot@golang.org> Reviewed-by: Heschi Kreinick <heschi@google.com>
471 lines
13 KiB
Go
471 lines
13 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 cmd handles the gopls command line.
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// It contains a handler for each of the modes, along with all the flag handling
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// and the command line output format.
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package cmd
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import (
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"context"
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"flag"
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"fmt"
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"go/token"
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"io/ioutil"
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"log"
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"net"
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"os"
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"strings"
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"sync"
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"time"
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"golang.org/x/tools/internal/jsonrpc2"
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"golang.org/x/tools/internal/lsp"
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"golang.org/x/tools/internal/lsp/cache"
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"golang.org/x/tools/internal/lsp/debug"
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"golang.org/x/tools/internal/lsp/protocol"
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"golang.org/x/tools/internal/lsp/source"
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"golang.org/x/tools/internal/span"
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"golang.org/x/tools/internal/tool"
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"golang.org/x/tools/internal/xcontext"
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errors "golang.org/x/xerrors"
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)
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// Application is the main application as passed to tool.Main
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// It handles the main command line parsing and dispatch to the sub commands.
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type Application struct {
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// Core application flags
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// Embed the basic profiling flags supported by the tool package
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tool.Profile
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// We include the server configuration directly for now, so the flags work
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// even without the verb.
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// TODO: Remove this when we stop allowing the serve verb by default.
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Serve Serve
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// the options configuring function to invoke when building a server
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options func(*source.Options)
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// The name of the binary, used in help and telemetry.
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name string
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// The working directory to run commands in.
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wd string
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// The environment variables to use.
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env []string
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// Support for remote lsp server
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Remote string `flag:"remote" help:"*EXPERIMENTAL* - forward all commands to a remote lsp specified by this flag. If prefixed by 'unix;', the subsequent address is assumed to be a unix domain socket. Otherwise, TCP is used."`
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// Enable verbose logging
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Verbose bool `flag:"v" help:"verbose output"`
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// Control ocagent export of telemetry
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OCAgent string `flag:"ocagent" help:"the address of the ocagent, or off"`
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// PrepareOptions is called to update the options when a new view is built.
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// It is primarily to allow the behavior of gopls to be modified by hooks.
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PrepareOptions func(*source.Options)
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debug debug.Instance
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}
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// New returns a new Application ready to run.
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func New(name, wd string, env []string, options func(*source.Options)) *Application {
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if wd == "" {
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wd, _ = os.Getwd()
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}
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app := &Application{
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options: options,
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name: name,
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wd: wd,
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env: env,
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OCAgent: "off", //TODO: Remove this line to default the exporter to on
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}
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return app
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}
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// Name implements tool.Application returning the binary name.
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func (app *Application) Name() string { return app.name }
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// Usage implements tool.Application returning empty extra argument usage.
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func (app *Application) Usage() string { return "<command> [command-flags] [command-args]" }
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// ShortHelp implements tool.Application returning the main binary help.
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func (app *Application) ShortHelp() string {
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return "The Go Language source tools."
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}
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// DetailedHelp implements tool.Application returning the main binary help.
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// This includes the short help for all the sub commands.
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func (app *Application) DetailedHelp(f *flag.FlagSet) {
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fmt.Fprint(f.Output(), `
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gopls is a Go language server. It is typically used with an editor to provide
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language features. When no command is specified, gopls will default to the 'serve'
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command. The language features can also be accessed via the gopls command-line interface.
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Available commands are:
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`)
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fmt.Fprint(f.Output(), `
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main:
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`)
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for _, c := range app.mainCommands() {
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fmt.Fprintf(f.Output(), " %s : %v\n", c.Name(), c.ShortHelp())
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}
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fmt.Fprint(f.Output(), `
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features:
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`)
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for _, c := range app.featureCommands() {
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fmt.Fprintf(f.Output(), " %s : %v\n", c.Name(), c.ShortHelp())
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}
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fmt.Fprint(f.Output(), `
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gopls flags are:
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`)
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f.PrintDefaults()
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}
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// Run takes the args after top level flag processing, and invokes the correct
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// sub command as specified by the first argument.
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// If no arguments are passed it will invoke the server sub command, as a
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// temporary measure for compatibility.
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func (app *Application) Run(ctx context.Context, args ...string) error {
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app.debug = debug.Instance{
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StartTime: time.Now(),
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Workdir: app.wd,
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OCAgentConfig: app.OCAgent,
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}
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app.debug.Prepare(ctx)
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app.Serve.app = app
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if len(args) == 0 {
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return tool.Run(ctx, &app.Serve, args)
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}
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command, args := args[0], args[1:]
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for _, c := range app.commands() {
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if c.Name() == command {
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return tool.Run(ctx, c, args)
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}
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}
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return tool.CommandLineErrorf("Unknown command %v", command)
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}
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// commands returns the set of commands supported by the gopls tool on the
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// command line.
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// The command is specified by the first non flag argument.
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func (app *Application) commands() []tool.Application {
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var commands []tool.Application
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commands = append(commands, app.mainCommands()...)
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commands = append(commands, app.featureCommands()...)
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return commands
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}
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func (app *Application) mainCommands() []tool.Application {
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return []tool.Application{
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&app.Serve,
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&version{app: app},
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&bug{},
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}
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}
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func (app *Application) featureCommands() []tool.Application {
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return []tool.Application{
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&check{app: app},
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&foldingRanges{app: app},
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&format{app: app},
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&highlight{app: app},
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&implementation{app: app},
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&imports{app: app},
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&links{app: app},
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&prepareRename{app: app},
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&query{app: app},
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&references{app: app},
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&rename{app: app},
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&signature{app: app},
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&suggestedfix{app: app},
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&symbols{app: app},
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}
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}
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var (
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internalMu sync.Mutex
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internalConnections = make(map[string]*connection)
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)
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func (app *Application) connect(ctx context.Context) (*connection, error) {
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switch {
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case app.Remote == "":
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connection := newConnection(app)
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connection.Server = lsp.NewServer(cache.New(app.options).NewSession(), connection.Client)
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ctx = protocol.WithClient(ctx, connection.Client)
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return connection, connection.initialize(ctx, app.options)
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case strings.HasPrefix(app.Remote, "internal@"):
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internalMu.Lock()
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defer internalMu.Unlock()
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if c := internalConnections[app.wd]; c != nil {
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return c, nil
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}
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remote := app.Remote[len("internal@"):]
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ctx := xcontext.Detach(ctx) //TODO:a way of shutting down the internal server
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connection, err := app.connectRemote(ctx, remote)
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if err != nil {
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return nil, err
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}
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internalConnections[app.wd] = connection
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return connection, nil
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default:
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return app.connectRemote(ctx, app.Remote)
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}
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}
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func (app *Application) connectRemote(ctx context.Context, remote string) (*connection, error) {
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connection := newConnection(app)
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conn, err := net.Dial("tcp", remote)
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if err != nil {
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return nil, err
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}
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stream := jsonrpc2.NewHeaderStream(conn, conn)
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cc := jsonrpc2.NewConn(stream)
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connection.Server = protocol.ServerDispatcher(cc)
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cc.AddHandler(protocol.ClientHandler(connection.Client))
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cc.AddHandler(protocol.Canceller{})
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ctx = protocol.WithClient(ctx, connection.Client)
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go cc.Run(ctx)
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return connection, connection.initialize(ctx, app.options)
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}
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func (c *connection) initialize(ctx context.Context, options func(*source.Options)) error {
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params := &protocol.ParamInitialize{}
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params.RootURI = protocol.URIFromPath(c.Client.app.wd)
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params.Capabilities.Workspace.Configuration = true
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// Make sure to respect configured options when sending initialize request.
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opts := source.DefaultOptions()
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if options != nil {
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options(&opts)
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}
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params.Capabilities.TextDocument.Hover = protocol.HoverClientCapabilities{
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ContentFormat: []protocol.MarkupKind{opts.PreferredContentFormat},
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}
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if _, err := c.Server.Initialize(ctx, params); err != nil {
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return err
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}
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if err := c.Server.Initialized(ctx, &protocol.InitializedParams{}); err != nil {
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return err
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}
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return nil
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}
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type connection struct {
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protocol.Server
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Client *cmdClient
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}
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type cmdClient struct {
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protocol.Server
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app *Application
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fset *token.FileSet
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diagnosticsMu sync.Mutex
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diagnosticsDone chan struct{}
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filesMu sync.Mutex
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files map[span.URI]*cmdFile
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}
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type cmdFile struct {
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uri span.URI
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mapper *protocol.ColumnMapper
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err error
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added bool
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diagnostics []protocol.Diagnostic
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}
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func newConnection(app *Application) *connection {
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return &connection{
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Client: &cmdClient{
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app: app,
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fset: token.NewFileSet(),
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files: make(map[span.URI]*cmdFile),
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},
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}
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}
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// fileURI converts a DocumentURI to a file:// span.URI, panicking if it's not a file.
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func fileURI(uri protocol.DocumentURI) span.URI {
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sURI := uri.SpanURI()
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if !sURI.IsFile() {
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panic(fmt.Sprintf("%q is not a file URI", uri))
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}
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return sURI
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}
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func (c *cmdClient) ShowMessage(ctx context.Context, p *protocol.ShowMessageParams) error { return nil }
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func (c *cmdClient) ShowMessageRequest(ctx context.Context, p *protocol.ShowMessageRequestParams) (*protocol.MessageActionItem, error) {
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return nil, nil
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}
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func (c *cmdClient) LogMessage(ctx context.Context, p *protocol.LogMessageParams) error {
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switch p.Type {
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case protocol.Error:
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log.Print("Error:", p.Message)
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case protocol.Warning:
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log.Print("Warning:", p.Message)
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case protocol.Info:
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if c.app.Verbose {
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log.Print("Info:", p.Message)
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}
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case protocol.Log:
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if c.app.Verbose {
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log.Print("Log:", p.Message)
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}
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default:
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if c.app.Verbose {
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log.Print(p.Message)
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}
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}
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return nil
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}
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func (c *cmdClient) Event(ctx context.Context, t *interface{}) error { return nil }
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func (c *cmdClient) RegisterCapability(ctx context.Context, p *protocol.RegistrationParams) error {
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return nil
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}
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func (c *cmdClient) UnregisterCapability(ctx context.Context, p *protocol.UnregistrationParams) error {
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return nil
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}
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func (c *cmdClient) WorkspaceFolders(ctx context.Context) ([]protocol.WorkspaceFolder, error) {
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return nil, nil
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}
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func (c *cmdClient) Configuration(ctx context.Context, p *protocol.ParamConfiguration) ([]interface{}, error) {
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results := make([]interface{}, len(p.Items))
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for i, item := range p.Items {
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if item.Section != "gopls" {
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continue
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}
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env := map[string]interface{}{}
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for _, value := range c.app.env {
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l := strings.SplitN(value, "=", 2)
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if len(l) != 2 {
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continue
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}
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env[l[0]] = l[1]
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}
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results[i] = map[string]interface{}{
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"env": env,
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"go-diff": true,
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}
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}
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return results, nil
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}
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func (c *cmdClient) ApplyEdit(ctx context.Context, p *protocol.ApplyWorkspaceEditParams) (*protocol.ApplyWorkspaceEditResponse, error) {
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return &protocol.ApplyWorkspaceEditResponse{Applied: false, FailureReason: "not implemented"}, nil
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}
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func (c *cmdClient) PublishDiagnostics(ctx context.Context, p *protocol.PublishDiagnosticsParams) error {
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if p.URI == "gopls://diagnostics-done" {
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close(c.diagnosticsDone)
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}
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// Don't worry about diagnostics without versions.
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if p.Version == 0 {
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return nil
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}
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c.filesMu.Lock()
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defer c.filesMu.Unlock()
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file := c.getFile(ctx, fileURI(p.URI))
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file.diagnostics = p.Diagnostics
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return nil
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}
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func (c *cmdClient) getFile(ctx context.Context, uri span.URI) *cmdFile {
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file, found := c.files[uri]
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if !found || file.err != nil {
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file = &cmdFile{
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uri: uri,
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}
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c.files[uri] = file
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}
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if file.mapper == nil {
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fname := uri.Filename()
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content, err := ioutil.ReadFile(fname)
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if err != nil {
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file.err = errors.Errorf("getFile: %v: %v", uri, err)
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return file
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}
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f := c.fset.AddFile(fname, -1, len(content))
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f.SetLinesForContent(content)
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converter := span.NewContentConverter(fname, content)
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file.mapper = &protocol.ColumnMapper{
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URI: uri,
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Converter: converter,
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Content: content,
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}
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}
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return file
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}
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func (c *connection) AddFile(ctx context.Context, uri span.URI) *cmdFile {
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c.Client.filesMu.Lock()
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defer c.Client.filesMu.Unlock()
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file := c.Client.getFile(ctx, uri)
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// This should never happen.
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if file == nil {
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return &cmdFile{
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uri: uri,
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err: fmt.Errorf("no file found for %s", uri),
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}
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}
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if file.err != nil || file.added {
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return file
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}
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file.added = true
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p := &protocol.DidOpenTextDocumentParams{
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TextDocument: protocol.TextDocumentItem{
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URI: protocol.URIFromSpanURI(uri),
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LanguageID: source.DetectLanguage("", file.uri.Filename()).String(),
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Version: 1,
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Text: string(file.mapper.Content),
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},
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}
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if err := c.Server.DidOpen(ctx, p); err != nil {
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file.err = errors.Errorf("%v: %v", uri, err)
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}
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return file
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}
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func (c *connection) diagnoseFiles(ctx context.Context, files []span.URI) error {
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var untypedFiles []interface{}
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for _, file := range files {
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untypedFiles = append(untypedFiles, string(file))
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}
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c.Client.diagnosticsMu.Lock()
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defer c.Client.diagnosticsMu.Unlock()
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c.Client.diagnosticsDone = make(chan struct{})
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_, err := c.Server.NonstandardRequest(ctx, "gopls/diagnoseFiles", map[string]interface{}{"files": untypedFiles})
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<-c.Client.diagnosticsDone
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return err
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}
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func (c *connection) terminate(ctx context.Context) {
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if strings.HasPrefix(c.Client.app.Remote, "internal@") {
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// internal connections need to be left alive for the next test
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return
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}
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//TODO: do we need to handle errors on these calls?
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c.Shutdown(ctx)
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//TODO: right now calling exit terminates the process, we should rethink that
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//server.Exit(ctx)
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}
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