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174 lines
4.9 KiB
Go
174 lines
4.9 KiB
Go
3 months ago
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// Copyright (c) Tailscale Inc & AUTHORS
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// SPDX-License-Identifier: BSD-3-Clause
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package setting
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import (
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"slices"
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"strings"
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xmaps "golang.org/x/exp/maps"
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"tailscale.com/util/deephash"
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)
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// Snapshot is an immutable collection of ([Key], [RawItem]) pairs, representing
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// a set of policy settings applied at a specific moment in time.
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// A nil pointer to [Snapshot] is valid.
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type Snapshot struct {
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m map[Key]RawItem
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sig deephash.Sum // of m
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summary Summary
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}
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// NewSnapshot returns a new [Snapshot] with the specified items and options.
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func NewSnapshot(items map[Key]RawItem, opts ...SummaryOption) *Snapshot {
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return &Snapshot{m: xmaps.Clone(items), sig: deephash.Hash(&items), summary: SummaryWith(opts...)}
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}
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// All returns a map of all policy settings in s.
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// The returned map must not be modified.
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func (s *Snapshot) All() map[Key]RawItem {
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if s == nil {
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return nil
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}
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// TODO(nickkhyl): return iter.Seq2[[Key], [RawItem]] in Go 1.23,
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// and remove [keyItemPair].
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return s.m
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}
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// Get returns the value of the policy setting with the specified key
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// or nil if it is not configured or has an error.
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func (s *Snapshot) Get(k Key) any {
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v, _ := s.GetErr(k)
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return v
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}
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// GetErr returns the value of the policy setting with the specified key,
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// [ErrNotConfigured] if it is not configured, or an error returned by
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// the policy Store if the policy setting could not be read.
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func (s *Snapshot) GetErr(k Key) (any, error) {
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if s != nil {
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if s, ok := s.m[k]; ok {
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return s.Value(), s.Error()
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}
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}
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return nil, ErrNotConfigured
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}
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// GetSetting returns the untyped policy setting with the specified key and true
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// if a policy setting with such key has been configured;
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// otherwise, it returns zero, false.
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func (s *Snapshot) GetSetting(k Key) (setting RawItem, ok bool) {
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setting, ok = s.m[k]
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return setting, ok
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}
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// Equal reports whether s and s2 are equal.
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func (s *Snapshot) Equal(s2 *Snapshot) bool {
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if !s.EqualItems(s2) {
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return false
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}
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return s.Summary() == s2.Summary()
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}
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// EqualItems reports whether items in s and s2 are equal.
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func (s *Snapshot) EqualItems(s2 *Snapshot) bool {
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if s == s2 {
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return true
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}
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if s.Len() != s2.Len() {
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return false
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}
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if s.Len() == 0 {
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return true
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}
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return s.sig == s2.sig
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}
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// Keys return an iterator over keys in s. The iteration order is not specified
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// and is not guaranteed to be the same from one call to the next.
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func (s *Snapshot) Keys() []Key {
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if s.m == nil {
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return nil
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}
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// TODO(nickkhyl): return iter.Seq[Key] in Go 1.23.
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return xmaps.Keys(s.m)
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}
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// Len reports the number of [RawItem]s in s.
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func (s *Snapshot) Len() int {
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if s == nil {
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return 0
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}
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return len(s.m)
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}
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// Summary returns information about s as a whole rather than about specific [RawItem]s in it.
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func (s *Snapshot) Summary() Summary {
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if s == nil {
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return Summary{}
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}
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return s.summary
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}
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// String implements [fmt.Stringer]
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func (s *Snapshot) String() string {
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if s.Len() == 0 && s.Summary().IsEmpty() {
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return "{Empty}"
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}
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keys := s.Keys()
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slices.Sort(keys)
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var sb strings.Builder
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if !s.summary.IsEmpty() {
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sb.WriteRune('{')
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if s.Len() == 0 {
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sb.WriteString("Empty, ")
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}
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sb.WriteString(s.summary.String())
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sb.WriteRune('}')
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}
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for _, k := range keys {
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if sb.Len() != 0 {
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sb.WriteRune('\n')
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}
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sb.WriteString(string(k))
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sb.WriteString(" = ")
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sb.WriteString(s.m[k].String())
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}
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return sb.String()
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}
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// MergeSnapshots returns a [Snapshot] that contains all [RawItem]s
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// from snapshot1 and snapshot2 and the [Summary] with the narrower [PolicyScope].
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// If there's a conflict between policy settings in the two snapshots,
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// the policy settings from the snapshot with the broader scope take precedence.
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// In other words, policy settings configured for the [DeviceScope] win
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// over policy settings configured for a user scope.
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func MergeSnapshots(snapshot1, snapshot2 *Snapshot) *Snapshot {
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scope1, ok1 := snapshot1.Summary().Scope().GetOk()
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scope2, ok2 := snapshot2.Summary().Scope().GetOk()
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if ok1 && ok2 && scope1.StrictlyContains(scope2) {
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// Swap snapshots if snapshot1 has higher precedence than snapshot2.
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snapshot1, snapshot2 = snapshot2, snapshot1
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}
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if snapshot2.Len() == 0 {
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return snapshot1
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}
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summaryOpts := make([]SummaryOption, 0, 2)
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if scope, ok := snapshot1.Summary().Scope().GetOk(); ok {
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// Use the scope from snapshot1, if present, which is the more specific snapshot.
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summaryOpts = append(summaryOpts, scope)
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}
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if snapshot1.Len() == 0 {
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if origin, ok := snapshot2.Summary().Origin().GetOk(); ok {
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// Use the origin from snapshot2 if snapshot1 is empty.
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summaryOpts = append(summaryOpts, origin)
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}
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return &Snapshot{snapshot2.m, snapshot2.sig, SummaryWith(summaryOpts...)}
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}
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m := make(map[Key]RawItem, snapshot1.Len()+snapshot2.Len())
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xmaps.Copy(m, snapshot1.m)
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xmaps.Copy(m, snapshot2.m) // snapshot2 has higher precedence
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return &Snapshot{m, deephash.Hash(&m), SummaryWith(summaryOpts...)}
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}
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