mirror of
https://github.com/golang/go
synced 2024-11-05 18:36:10 -07:00
118ac038d7
CL 244117 introduced a bug when modFile == os.DevNull: v.root is left uninitialized, resulting in a view that appears to own all files. Fixing that exposes a problem where opening a folder with no Go files and GO111MODULE=on shows a popup. Skip the popup when no Go files are found. Change-Id: I7f8b2d6fd2f954af64c3a65156ff44c649f3a5b2 Reviewed-on: https://go-review.googlesource.com/c/tools/+/248620 Run-TryBot: Heschi Kreinick <heschi@google.com> TryBot-Result: Gobot Gobot <gobot@golang.org> Reviewed-by: Rebecca Stambler <rstambler@golang.org>
591 lines
16 KiB
Go
591 lines
16 KiB
Go
// Copyright 2019 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 cache
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import (
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"context"
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"fmt"
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"strconv"
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"strings"
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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/gocommand"
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"golang.org/x/tools/internal/imports"
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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/xcontext"
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errors "golang.org/x/xerrors"
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)
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type Session struct {
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cache *Cache
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id string
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options source.Options
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viewMu sync.Mutex
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views []*View
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viewMap map[span.URI]*View
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overlayMu sync.Mutex
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overlays map[span.URI]*overlay
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// gocmdRunner guards go command calls from concurrency errors.
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gocmdRunner *gocommand.Runner
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}
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type overlay struct {
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session *Session
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uri span.URI
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text []byte
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hash string
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version float64
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kind source.FileKind
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// saved is true if a file matches the state on disk,
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// and therefore does not need to be part of the overlay sent to go/packages.
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saved bool
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}
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func (o *overlay) Read() ([]byte, error) {
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return o.text, nil
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}
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func (o *overlay) FileIdentity() source.FileIdentity {
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return source.FileIdentity{
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URI: o.uri,
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Hash: o.hash,
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Kind: o.kind,
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}
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}
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func (o *overlay) VersionedFileIdentity() source.VersionedFileIdentity {
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return source.VersionedFileIdentity{
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URI: o.uri,
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SessionID: o.session.id,
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Version: o.version,
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}
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}
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func (o *overlay) Kind() source.FileKind {
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return o.kind
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}
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func (o *overlay) URI() span.URI {
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return o.uri
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}
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func (o *overlay) Version() float64 {
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return o.version
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}
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func (o *overlay) Session() string {
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return o.session.id
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}
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func (o *overlay) Saved() bool {
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return o.saved
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}
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// closedFile implements LSPFile for a file that the editor hasn't told us about.
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type closedFile struct {
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source.FileHandle
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}
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func (c *closedFile) VersionedFileIdentity() source.VersionedFileIdentity {
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return source.VersionedFileIdentity{
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URI: c.FileHandle.URI(),
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SessionID: "",
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Version: 0,
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}
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}
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func (c *closedFile) Session() string {
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return ""
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}
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func (c *closedFile) Version() float64 {
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return 0
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}
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func (s *Session) ID() string { return s.id }
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func (s *Session) String() string { return s.id }
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func (s *Session) Options() source.Options {
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return s.options
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}
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func (s *Session) SetOptions(options source.Options) {
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s.options = options
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}
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func (s *Session) Shutdown(ctx context.Context) {
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s.viewMu.Lock()
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defer s.viewMu.Unlock()
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for _, view := range s.views {
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view.shutdown(ctx)
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}
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s.views = nil
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s.viewMap = nil
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event.Log(ctx, "Shutdown session", KeyShutdownSession.Of(s))
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}
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func (s *Session) Cache() interface{} {
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return s.cache
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}
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func (s *Session) NewView(ctx context.Context, name string, folder span.URI, options source.Options) (source.View, source.Snapshot, func(), error) {
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s.viewMu.Lock()
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defer s.viewMu.Unlock()
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view, snapshot, release, err := s.createView(ctx, name, folder, options, 0)
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if err != nil {
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return nil, nil, func() {}, err
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}
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s.views = append(s.views, view)
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// we always need to drop the view map
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s.viewMap = make(map[span.URI]*View)
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return view, snapshot, release, nil
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}
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func (s *Session) createView(ctx context.Context, name string, folder span.URI, options source.Options, snapshotID uint64) (*View, *snapshot, func(), error) {
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index := atomic.AddInt64(&viewIndex, 1)
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// We want a true background context and not a detached context here
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// the spans need to be unrelated and no tag values should pollute it.
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baseCtx := event.Detach(xcontext.Detach(ctx))
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backgroundCtx, cancel := context.WithCancel(baseCtx)
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v := &View{
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session: s,
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initialized: make(chan struct{}),
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initializationSema: make(chan struct{}, 1),
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initializeOnce: &sync.Once{},
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id: strconv.FormatInt(index, 10),
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options: options,
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baseCtx: baseCtx,
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backgroundCtx: backgroundCtx,
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cancel: cancel,
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name: name,
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folder: folder,
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root: folder,
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filesByURI: make(map[span.URI]*fileBase),
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filesByBase: make(map[string][]*fileBase),
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}
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v.snapshot = &snapshot{
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id: snapshotID,
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view: v,
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generation: s.cache.store.Generation(generationName(v, 0)),
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packages: make(map[packageKey]*packageHandle),
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ids: make(map[span.URI][]packageID),
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metadata: make(map[packageID]*metadata),
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files: make(map[span.URI]source.VersionedFileHandle),
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goFiles: make(map[parseKey]*parseGoHandle),
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importedBy: make(map[packageID][]packageID),
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actions: make(map[actionKey]*actionHandle),
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workspacePackages: make(map[packageID]packagePath),
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unloadableFiles: make(map[span.URI]struct{}),
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parseModHandles: make(map[span.URI]*parseModHandle),
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modTidyHandles: make(map[span.URI]*modTidyHandle),
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modUpgradeHandles: make(map[span.URI]*modUpgradeHandle),
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modWhyHandles: make(map[span.URI]*modWhyHandle),
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}
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if v.session.cache.options != nil {
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v.session.cache.options(&v.options)
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}
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// Set the module-specific information.
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if err := v.setBuildInformation(ctx, folder, options); err != nil {
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return nil, nil, func() {}, err
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}
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// We have v.goEnv now.
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v.processEnv = &imports.ProcessEnv{
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GocmdRunner: s.gocmdRunner,
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WorkingDir: folder.Filename(),
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Env: v.goEnv,
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}
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// Set the first snapshot's workspace directories. The view's modURI was
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// set by setBuildInformation.
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var fh source.FileHandle
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if v.modURI != "" {
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fh, _ = s.GetFile(ctx, v.modURI)
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}
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v.snapshot.workspaceDirectories = v.snapshot.findWorkspaceDirectories(ctx, fh)
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// Initialize the view without blocking.
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initCtx, initCancel := context.WithCancel(xcontext.Detach(ctx))
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v.initCancelFirstAttempt = initCancel
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go func() {
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release := v.snapshot.generation.Acquire(initCtx)
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v.initialize(initCtx, v.snapshot, true)
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release()
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}()
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return v, v.snapshot, v.snapshot.generation.Acquire(ctx), nil
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}
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// View returns the view by name.
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func (s *Session) View(name string) source.View {
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s.viewMu.Lock()
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defer s.viewMu.Unlock()
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for _, view := range s.views {
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if view.Name() == name {
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return view
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}
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}
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return nil
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}
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// ViewOf returns a view corresponding to the given URI.
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// If the file is not already associated with a view, pick one using some heuristics.
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func (s *Session) ViewOf(uri span.URI) (source.View, error) {
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return s.viewOf(uri)
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}
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func (s *Session) viewOf(uri span.URI) (*View, error) {
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s.viewMu.Lock()
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defer s.viewMu.Unlock()
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// Check if we already know this file.
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if v, found := s.viewMap[uri]; found {
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return v, nil
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}
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// Pick the best view for this file and memoize the result.
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v, err := s.bestView(uri)
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if err != nil {
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return nil, err
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}
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s.viewMap[uri] = v
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return v, nil
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}
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func (s *Session) viewsOf(uri span.URI) []*View {
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s.viewMu.Lock()
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defer s.viewMu.Unlock()
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var views []*View
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for _, view := range s.views {
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if strings.HasPrefix(string(uri), string(view.Folder())) {
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views = append(views, view)
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}
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}
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return views
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}
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func (s *Session) Views() []source.View {
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s.viewMu.Lock()
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defer s.viewMu.Unlock()
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result := make([]source.View, len(s.views))
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for i, v := range s.views {
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result[i] = v
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}
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return result
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}
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// bestView finds the best view to associate a given URI with.
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// viewMu must be held when calling this method.
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func (s *Session) bestView(uri span.URI) (*View, error) {
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if len(s.views) == 0 {
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return nil, errors.Errorf("no views in the session")
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}
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// we need to find the best view for this file
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var longest *View
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for _, view := range s.views {
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if longest != nil && len(longest.Folder()) > len(view.Folder()) {
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continue
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}
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if view.contains(uri) {
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longest = view
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}
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}
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if longest != nil {
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return longest, nil
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}
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// Try our best to return a view that knows the file.
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for _, view := range s.views {
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if view.knownFile(uri) {
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return view, nil
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}
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}
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// TODO: are there any more heuristics we can use?
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return s.views[0], nil
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}
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func (s *Session) removeView(ctx context.Context, view *View) error {
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s.viewMu.Lock()
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defer s.viewMu.Unlock()
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i, err := s.dropView(ctx, view)
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if err != nil {
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return err
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}
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// delete this view... we don't care about order but we do want to make
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// sure we can garbage collect the view
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s.views[i] = s.views[len(s.views)-1]
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s.views[len(s.views)-1] = nil
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s.views = s.views[:len(s.views)-1]
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return nil
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}
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func (s *Session) updateView(ctx context.Context, view *View, options source.Options) (*View, error) {
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s.viewMu.Lock()
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defer s.viewMu.Unlock()
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i, err := s.dropView(ctx, view)
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if err != nil {
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return nil, err
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}
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// Preserve the snapshot ID if we are recreating the view.
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view.snapshotMu.Lock()
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snapshotID := view.snapshot.id
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view.snapshotMu.Unlock()
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v, _, release, err := s.createView(ctx, view.name, view.folder, options, snapshotID)
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release()
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if err != nil {
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// we have dropped the old view, but could not create the new one
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// this should not happen and is very bad, but we still need to clean
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// up the view array if it happens
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s.views[i] = s.views[len(s.views)-1]
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s.views[len(s.views)-1] = nil
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s.views = s.views[:len(s.views)-1]
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return nil, err
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}
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// substitute the new view into the array where the old view was
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s.views[i] = v
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return v, nil
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}
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func (s *Session) dropView(ctx context.Context, v *View) (int, error) {
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// we always need to drop the view map
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s.viewMap = make(map[span.URI]*View)
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for i := range s.views {
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if v == s.views[i] {
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// we found the view, drop it and return the index it was found at
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s.views[i] = nil
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v.shutdown(ctx)
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return i, nil
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}
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}
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return -1, errors.Errorf("view %s for %v not found", v.Name(), v.Folder())
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}
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func (s *Session) ModifyFiles(ctx context.Context, changes []source.FileModification) error {
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_, releases, _, err := s.DidModifyFiles(ctx, changes)
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for _, release := range releases {
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release()
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}
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return err
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}
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func (s *Session) DidModifyFiles(ctx context.Context, changes []source.FileModification) ([]source.Snapshot, []func(), []span.URI, error) {
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views := make(map[*View]map[span.URI]source.VersionedFileHandle)
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// Keep track of deleted files so that we can clear their diagnostics.
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// A file might be re-created after deletion, so only mark files that
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// have truly been deleted.
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deletions := map[span.URI]struct{}{}
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overlays, err := s.updateOverlays(ctx, changes)
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if err != nil {
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return nil, nil, nil, err
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}
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var forceReloadMetadata bool
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for _, c := range changes {
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if c.Action == source.InvalidateMetadata {
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forceReloadMetadata = true
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}
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// Look through all of the session's views, invalidating the file for
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// all of the views to which it is known.
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for _, view := range s.views {
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// Don't propagate changes that are outside of the view's scope
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// or knowledge.
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if !view.relevantChange(c) {
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continue
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}
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// Make sure that the file is added to the view.
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if _, err := view.getFile(c.URI); err != nil {
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return nil, nil, nil, err
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}
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if _, ok := views[view]; !ok {
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views[view] = make(map[span.URI]source.VersionedFileHandle)
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}
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var (
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fh source.VersionedFileHandle
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ok bool
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)
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if fh, ok = overlays[c.URI]; ok {
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views[view][c.URI] = fh
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delete(deletions, c.URI)
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} else {
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fsFile, err := s.cache.getFile(ctx, c.URI)
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if err != nil {
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return nil, nil, nil, err
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}
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fh = &closedFile{fsFile}
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views[view][c.URI] = fh
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if _, err := fh.Read(); err != nil {
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deletions[c.URI] = struct{}{}
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}
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}
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// If the file change is to a go.mod file, and initialization for
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// the view has previously failed, we should attempt to retry.
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// TODO(rstambler): We can use unsaved contents with -modfile, so
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// maybe we should do that and retry on any change?
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if fh.Kind() == source.Mod && (c.OnDisk || c.Action == source.Save) {
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view.maybeReinitialize()
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}
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}
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}
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var snapshots []source.Snapshot
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var releases []func()
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for view, uris := range views {
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snapshot, release := view.invalidateContent(ctx, uris, forceReloadMetadata)
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snapshots = append(snapshots, snapshot)
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releases = append(releases, release)
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}
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var deletionsSlice []span.URI
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for uri := range deletions {
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deletionsSlice = append(deletionsSlice, uri)
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}
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return snapshots, releases, deletionsSlice, nil
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}
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func (s *Session) isOpen(uri span.URI) bool {
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s.overlayMu.Lock()
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defer s.overlayMu.Unlock()
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_, open := s.overlays[uri]
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return open
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}
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func (s *Session) updateOverlays(ctx context.Context, changes []source.FileModification) (map[span.URI]*overlay, error) {
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s.overlayMu.Lock()
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defer s.overlayMu.Unlock()
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for _, c := range changes {
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// Don't update overlays for metadata invalidations.
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if c.Action == source.InvalidateMetadata {
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continue
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}
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o, ok := s.overlays[c.URI]
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// If the file is not opened in an overlay and the change is on disk,
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// there's no need to update an overlay. If there is an overlay, we
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// may need to update the overlay's saved value.
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if !ok && c.OnDisk {
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continue
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}
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// Determine the file kind on open, otherwise, assume it has been cached.
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var kind source.FileKind
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switch c.Action {
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case source.Open:
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kind = source.DetectLanguage(c.LanguageID, c.URI.Filename())
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default:
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if !ok {
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return nil, errors.Errorf("updateOverlays: modifying unopened overlay %v", c.URI)
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}
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kind = o.kind
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}
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if kind == source.UnknownKind {
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return nil, errors.Errorf("updateOverlays: unknown file kind for %s", c.URI)
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}
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// Closing a file just deletes its overlay.
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if c.Action == source.Close {
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delete(s.overlays, c.URI)
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continue
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}
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// If the file is on disk, check if its content is the same as in the
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// overlay. Saves and on-disk file changes don't come with the file's
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// content.
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text := c.Text
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if text == nil && (c.Action == source.Save || c.OnDisk) {
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if !ok {
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return nil, fmt.Errorf("no known content for overlay for %s", c.Action)
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}
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text = o.text
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}
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// On-disk changes don't come with versions.
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version := c.Version
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if c.OnDisk {
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version = o.version
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}
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hash := hashContents(text)
|
||
var sameContentOnDisk bool
|
||
switch c.Action {
|
||
case source.Delete:
|
||
// Do nothing. sameContentOnDisk should be false.
|
||
case source.Save:
|
||
// Make sure the version and content (if present) is the same.
|
||
if o.version != version {
|
||
return nil, errors.Errorf("updateOverlays: saving %s at version %v, currently at %v", c.URI, c.Version, o.version)
|
||
}
|
||
if c.Text != nil && o.hash != hash {
|
||
return nil, errors.Errorf("updateOverlays: overlay %s changed on save", c.URI)
|
||
}
|
||
sameContentOnDisk = true
|
||
default:
|
||
fh, err := s.cache.getFile(ctx, c.URI)
|
||
if err != nil {
|
||
return nil, err
|
||
}
|
||
_, readErr := fh.Read()
|
||
sameContentOnDisk = (readErr == nil && fh.FileIdentity().Hash == hash)
|
||
}
|
||
o = &overlay{
|
||
session: s,
|
||
uri: c.URI,
|
||
version: version,
|
||
text: text,
|
||
kind: kind,
|
||
hash: hash,
|
||
saved: sameContentOnDisk,
|
||
}
|
||
s.overlays[c.URI] = o
|
||
}
|
||
|
||
// Get the overlays for each change while the session's overlay map is
|
||
// locked.
|
||
overlays := make(map[span.URI]*overlay)
|
||
for _, c := range changes {
|
||
if o, ok := s.overlays[c.URI]; ok {
|
||
overlays[c.URI] = o
|
||
}
|
||
}
|
||
return overlays, nil
|
||
}
|
||
|
||
func (s *Session) GetFile(ctx context.Context, uri span.URI) (source.FileHandle, error) {
|
||
if overlay := s.readOverlay(uri); overlay != nil {
|
||
return overlay, nil
|
||
}
|
||
// Fall back to the cache-level file system.
|
||
return s.cache.getFile(ctx, uri)
|
||
}
|
||
|
||
func (s *Session) readOverlay(uri span.URI) *overlay {
|
||
s.overlayMu.Lock()
|
||
defer s.overlayMu.Unlock()
|
||
|
||
if overlay, ok := s.overlays[uri]; ok {
|
||
return overlay
|
||
}
|
||
return nil
|
||
}
|
||
|
||
func (s *Session) Overlays() []source.Overlay {
|
||
s.overlayMu.Lock()
|
||
defer s.overlayMu.Unlock()
|
||
|
||
overlays := make([]source.Overlay, 0, len(s.overlays))
|
||
for _, overlay := range s.overlays {
|
||
overlays = append(overlays, overlay)
|
||
}
|
||
return overlays
|
||
}
|