mirror of
https://github.com/tailscale/tailscale.git
synced 2024-12-11 10:44:41 +00:00
395 lines
11 KiB
Go
395 lines
11 KiB
Go
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// Copyright (c) Tailscale Inc & AUTHORS
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// SPDX-License-Identifier: BSD-3-Clause
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package source
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import (
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"errors"
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"fmt"
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"io"
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"slices"
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"sort"
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"sync"
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"time"
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"tailscale.com/util/mak"
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"tailscale.com/util/set"
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"tailscale.com/util/syspolicy/internal/loggerx"
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"tailscale.com/util/syspolicy/internal/metrics"
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"tailscale.com/util/syspolicy/setting"
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)
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// Reader reads all configured policy settings from a given [Store].
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// It registers a change callback with the [Store] and maintains the current version
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// of the [setting.Snapshot] by lazily re-reading policy settings from the [Store]
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// whenever a new settings snapshot is requested with [Reader.GetSettings].
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// It is safe for concurrent use.
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type Reader struct {
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store Store
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origin *setting.Origin
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settings []*setting.Definition
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unregisterChangeNotifier func()
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doneCh chan struct{} // closed when [Reader] is closed.
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mu sync.Mutex
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closing bool
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upToDate bool
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lastPolicy *setting.Snapshot
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sessions set.HandleSet[*ReadingSession]
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}
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// newReader returns a new [Reader] that reads policy settings from a given [Store].
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// The returned reader takes ownership of the store. If the store implements [io.Closer],
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// the returned reader will close the store when it is closed.
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func newReader(store Store, origin *setting.Origin) (*Reader, error) {
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settings, err := setting.Definitions()
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if err != nil {
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return nil, err
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}
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if expirable, ok := store.(Expirable); ok {
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select {
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case <-expirable.Done():
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return nil, ErrStoreClosed
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default:
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}
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}
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reader := &Reader{store: store, origin: origin, settings: settings, doneCh: make(chan struct{})}
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if changeable, ok := store.(Changeable); ok {
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// We should subscribe to policy change notifications first before reading
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// the policy settings from the store. This way we won't miss any notifications.
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if reader.unregisterChangeNotifier, err = changeable.RegisterChangeCallback(reader.onPolicyChange); err != nil {
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// Errors registering policy change callbacks are non-fatal.
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// TODO(nickkhyl): implement a background policy refresh every X minutes?
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loggerx.Errorf("failed to register %v policy change callback: %v", origin, err)
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}
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}
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if _, err := reader.reload(true); err != nil {
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if reader.unregisterChangeNotifier != nil {
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reader.unregisterChangeNotifier()
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}
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return nil, err
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}
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if expirable, ok := store.(Expirable); ok {
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if waitCh := expirable.Done(); waitCh != nil {
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go func() {
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select {
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case <-waitCh:
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reader.Close()
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case <-reader.doneCh:
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}
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}()
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}
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}
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return reader, nil
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}
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// GetSettings returns the current [*setting.Snapshot],
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// re-reading it from from the underlying [Store] only if the policy
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// has changed since it was read last. It never fails and returns
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// the previous version of the policy settings if a read attempt fails.
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func (r *Reader) GetSettings() *setting.Snapshot {
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r.mu.Lock()
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upToDate, lastPolicy := r.upToDate, r.lastPolicy
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r.mu.Unlock()
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if upToDate {
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return lastPolicy
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}
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policy, err := r.reload(false)
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if err != nil {
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// If the policy fails to reload completely, log an error and return the last cached version.
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// However, errors related to individual policy items are always
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// propagated to callers when they fetch those settings.
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loggerx.Errorf("failed to reload %v policy: %v", r.origin, err)
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}
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return policy
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}
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// ReadSettings reads policy settings from the underlying [Store] even if no
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// changes were detected. It returns the new [*setting.Snapshot],nil on
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// success or an undefined snapshot (possibly `nil`) along with a non-`nil`
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// error in case of failure.
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func (r *Reader) ReadSettings() (*setting.Snapshot, error) {
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return r.reload(true)
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}
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// reload is like [Reader.ReadSettings], but allows specifying whether to re-read
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// an unchanged policy, and returns the last [*setting.Snapshot] if the read fails.
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func (r *Reader) reload(force bool) (*setting.Snapshot, error) {
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r.mu.Lock()
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defer r.mu.Unlock()
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if r.upToDate && !force {
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return r.lastPolicy, nil
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}
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if lockable, ok := r.store.(Lockable); ok {
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if err := lockable.Lock(); err != nil {
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return r.lastPolicy, err
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}
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defer lockable.Unlock()
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}
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r.upToDate = true
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metrics.Reset(r.origin)
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var m map[setting.Key]setting.RawItem
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if lastPolicyCount := r.lastPolicy.Len(); lastPolicyCount > 0 {
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m = make(map[setting.Key]setting.RawItem, lastPolicyCount)
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}
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for _, s := range r.settings {
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if !r.origin.Scope().IsConfigurableSetting(s) {
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// Skip settings that cannot be configured in the current scope.
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continue
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}
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val, err := readPolicySettingValue(r.store, s)
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if err != nil && (errors.Is(err, setting.ErrNoSuchKey) || errors.Is(err, setting.ErrNotConfigured)) {
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metrics.ReportNotConfigured(r.origin, s)
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continue
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}
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if err == nil {
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metrics.ReportConfigured(r.origin, s, val)
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} else {
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metrics.ReportError(r.origin, s, err)
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}
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// If there's an error reading a single policy, such as a value type mismatch,
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// we'll wrap the error to preserve its text and return it
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// whenever someone attempts to fetch the value.
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// Otherwise, the errorText will be nil.
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errorText := setting.MaybeErrorText(err)
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item := setting.RawItemWith(val, errorText, r.origin)
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mak.Set(&m, s.Key(), item)
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}
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newPolicy := setting.NewSnapshot(m, setting.SummaryWith(r.origin))
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if r.lastPolicy == nil || !newPolicy.EqualItems(r.lastPolicy) {
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r.lastPolicy = newPolicy
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}
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return r.lastPolicy, nil
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}
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// ReadingSession is like [Reader], but with a channel that's written
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// to when there's a policy change, and closed when the session is terminated.
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type ReadingSession struct {
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reader *Reader
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policyChangedCh chan struct{} // 1-buffered channel
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handle set.Handle // in the reader.sessions
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closeInternal func()
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}
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// OpenSession opens and returns a new session to r, allowing the caller
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// to get notified whenever a policy change is reported by the [source.Store],
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// or an [ErrStoreClosed] if the reader has already been closed.
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func (r *Reader) OpenSession() (*ReadingSession, error) {
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session := &ReadingSession{
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reader: r,
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policyChangedCh: make(chan struct{}, 1),
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}
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session.closeInternal = sync.OnceFunc(func() { close(session.policyChangedCh) })
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r.mu.Lock()
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defer r.mu.Unlock()
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if r.closing {
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return nil, ErrStoreClosed
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}
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session.handle = r.sessions.Add(session)
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return session, nil
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}
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// GetSettings is like [Reader.GetSettings].
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func (s *ReadingSession) GetSettings() *setting.Snapshot {
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return s.reader.GetSettings()
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}
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// ReadSettings is like [Reader.ReadSettings].
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func (s *ReadingSession) ReadSettings() (*setting.Snapshot, error) {
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return s.reader.ReadSettings()
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}
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// PolicyChanged returns a channel that's written to when
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// there's a policy change, closed when the session is terminated.
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func (s *ReadingSession) PolicyChanged() <-chan struct{} {
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return s.policyChangedCh
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}
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// Close unregisters this session with the [Reader].
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func (s *ReadingSession) Close() {
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s.reader.mu.Lock()
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delete(s.reader.sessions, s.handle)
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s.closeInternal()
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s.reader.mu.Unlock()
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}
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// onPolicyChange handles a policy change notification from the [Store],
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// invalidating the current [setting.Snapshot] in r,
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// and notifying the active [ReadingSession]s.
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func (r *Reader) onPolicyChange() {
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r.mu.Lock()
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defer r.mu.Unlock()
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r.upToDate = false
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for _, s := range r.sessions {
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select {
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case s.policyChangedCh <- struct{}{}:
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// Notified.
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default:
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// 1-buffered channel is full, meaning that another policy change
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// notification is already en route.
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}
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}
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}
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// Close closes the store reader and the underlying store.
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func (r *Reader) Close() error {
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r.mu.Lock()
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if r.closing {
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r.mu.Unlock()
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return nil
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}
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r.closing = true
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r.mu.Unlock()
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if r.unregisterChangeNotifier != nil {
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r.unregisterChangeNotifier()
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r.unregisterChangeNotifier = nil
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}
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if closer, ok := r.store.(io.Closer); ok {
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if err := closer.Close(); err != nil {
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return err
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}
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}
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r.store = nil
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close(r.doneCh)
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r.mu.Lock()
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defer r.mu.Unlock()
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for _, c := range r.sessions {
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c.closeInternal()
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}
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r.sessions = nil
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return nil
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}
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// Done returns a channel that is closed when the reader is closed.
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func (r *Reader) Done() <-chan struct{} {
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return r.doneCh
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}
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// ReadableSource is a [Source] open for reading.
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type ReadableSource struct {
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*Source
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*ReadingSession
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}
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// Close closes the underlying [ReadingSession].
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func (s ReadableSource) Close() {
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s.ReadingSession.Close()
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}
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// ReadableSources is a slice of [ReadableSource].
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type ReadableSources []ReadableSource
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// Contains reports whether s contains the specified source.
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func (s ReadableSources) Contains(source *Source) bool {
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return s.IndexOf(source) != -1
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}
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// IndexOf returns position of the specified source in s, or -1
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// if the source does not exist.
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func (s ReadableSources) IndexOf(source *Source) int {
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return slices.IndexFunc(s, func(rs ReadableSource) bool {
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return rs.Source == source
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})
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}
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// InsertionIndexOf returns the position at which source can be inserted
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// to maintain the sorted order of the readableSources.
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// The return value is unspecified if s is not sorted on entry to InsertionIndexOf.
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func (s ReadableSources) InsertionIndexOf(source *Source) int {
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// Insert new sources after any existing sources with the same precedence,
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// and just before the first source with higher precedence.
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// Just like stable sort, but for insertion.
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// It's okay to use linear search as insertions are rare
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// and we never have more than just a few policy sources.
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higherPrecedence := func(rs ReadableSource) bool { return rs.Compare(source) > 0 }
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if i := slices.IndexFunc(s, higherPrecedence); i != -1 {
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return i
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}
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return len(s)
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}
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// StableSort sorts [ReadableSource] in s by precedence, so that policy
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// settings from sources with higher precedence (e.g., [DeviceScope])
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// will be read and merged last, overriding any policy settings with
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// the same keys configured in sources with lower precedence
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// (e.g., [CurrentUserScope]).
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func (s *ReadableSources) StableSort() {
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sort.SliceStable(*s, func(i, j int) bool {
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return (*s)[i].Source.Compare((*s)[j].Source) < 0
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})
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}
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// DeleteAt closes and deletes the i-th source from s.
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func (s *ReadableSources) DeleteAt(i int) {
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(*s)[i].Close()
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*s = slices.Delete(*s, i, i+1)
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}
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// Close closes and deletes all sources in s.
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func (s *ReadableSources) Close() {
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for _, s := range *s {
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s.Close()
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}
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*s = nil
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}
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func readPolicySettingValue(store Store, s *setting.Definition) (value any, err error) {
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switch key := s.Key(); s.Type() {
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case setting.BooleanValue:
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return store.ReadBoolean(key)
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case setting.IntegerValue:
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return store.ReadUInt64(key)
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case setting.StringValue:
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return store.ReadString(key)
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case setting.StringListValue:
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return store.ReadStringArray(key)
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case setting.PreferenceOptionValue:
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s, err := store.ReadString(key)
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if err == nil {
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var value setting.PreferenceOption
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if err = value.UnmarshalText([]byte(s)); err == nil {
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return value, nil
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}
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}
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return setting.ShowChoiceByPolicy, err
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case setting.VisibilityValue:
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s, err := store.ReadString(key)
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if err == nil {
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var value setting.Visibility
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if err = value.UnmarshalText([]byte(s)); err == nil {
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return value, nil
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}
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}
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return setting.VisibleByPolicy, err
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case setting.DurationValue:
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s, err := store.ReadString(key)
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if err == nil {
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var value time.Duration
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if value, err = time.ParseDuration(s); err == nil {
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return value, nil
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}
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}
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return nil, err
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default:
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return nil, fmt.Errorf("%w: unsupported setting type: %v", setting.ErrTypeMismatch, s.Type())
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}
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}
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