mirror of
https://github.com/gohugoio/hugo.git
synced 2024-12-01 03:52:40 -05:00
7285e74090
There are some breaking changes in this commit, see #11455. Closes #11455 Closes #11549 This fixes a set of bugs (see issue list) and it is also paying some technical debt accumulated over the years. We now build with Staticcheck enabled in the CI build. The performance should be about the same as before for regular sized Hugo sites, but it should perform and scale much better to larger data sets, as objects that uses lots of memory (e.g. rendered Markdown, big JSON files read into maps with transform.Unmarshal etc.) will now get automatically garbage collected if needed. Performance on partial rebuilds when running the server in fast render mode should be the same, but the change detection should be much more accurate. A list of the notable new features: * A new dependency tracker that covers (almost) all of Hugo's API and is used to do fine grained partial rebuilds when running the server. * A new and simpler tree document store which allows fast lookups and prefix-walking in all dimensions (e.g. language) concurrently. * You can now configure an upper memory limit allowing for much larger data sets and/or running on lower specced PCs. We have lifted the "no resources in sub folders" restriction for branch bundles (e.g. sections). Memory Limit * Hugos will, by default, set aside a quarter of the total system memory, but you can set this via the OS environment variable HUGO_MEMORYLIMIT (in gigabytes). This is backed by a partitioned LRU cache used throughout Hugo. A cache that gets dynamically resized in low memory situations, allowing Go's Garbage Collector to free the memory. New Dependency Tracker: Hugo has had a rule based coarse grained approach to server rebuilds that has worked mostly pretty well, but there have been some surprises (e.g. stale content). This is now revamped with a new dependency tracker that can quickly calculate the delta given a changed resource (e.g. a content file, template, JS file etc.). This handles transitive relations, e.g. $page -> js.Build -> JS import, or $page1.Content -> render hook -> site.GetPage -> $page2.Title, or $page1.Content -> shortcode -> partial -> site.RegularPages -> $page2.Content -> shortcode ..., and should also handle changes to aggregated values (e.g. site.Lastmod) effectively. This covers all of Hugo's API with 2 known exceptions (a list that may not be fully exhaustive): Changes to files loaded with template func os.ReadFile may not be handled correctly. We recommend loading resources with resources.Get Changes to Hugo objects (e.g. Page) passed in the template context to lang.Translate may not be detected correctly. We recommend having simple i18n templates without too much data context passed in other than simple types such as strings and numbers. Note that the cachebuster configuration (when A changes then rebuild B) works well with the above, but we recommend that you revise that configuration, as it in most situations should not be needed. One example where it is still needed is with TailwindCSS and using changes to hugo_stats.json to trigger new CSS rebuilds. Document Store: Previously, a little simplified, we split the document store (where we store pages and resources) in a tree per language. This worked pretty well, but the structure made some operations harder than they needed to be. We have now restructured it into one Radix tree for all languages. Internally the language is considered to be a dimension of that tree, and the tree can be viewed in all dimensions concurrently. This makes some operations re. language simpler (e.g. finding translations is just a slice range), but the idea is that it should also be relatively inexpensive to add more dimensions if needed (e.g. role). Fixes #10169 Fixes #10364 Fixes #10482 Fixes #10630 Fixes #10656 Fixes #10694 Fixes #10918 Fixes #11262 Fixes #11439 Fixes #11453 Fixes #11457 Fixes #11466 Fixes #11540 Fixes #11551 Fixes #11556 Fixes #11654 Fixes #11661 Fixes #11663 Fixes #11664 Fixes #11669 Fixes #11671 Fixes #11807 Fixes #11808 Fixes #11809 Fixes #11815 Fixes #11840 Fixes #11853 Fixes #11860 Fixes #11883 Fixes #11904 Fixes #7388 Fixes #7425 Fixes #7436 Fixes #7544 Fixes #7882 Fixes #7960 Fixes #8255 Fixes #8307 Fixes #8863 Fixes #8927 Fixes #9192 Fixes #9324
491 lines
12 KiB
Go
491 lines
12 KiB
Go
// Copyright 2024 The Hugo Authors. All rights reserved.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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// Package provides ways to identify values in Hugo. Used for dependency tracking etc.
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package identity
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import (
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"fmt"
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"path"
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"path/filepath"
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"sort"
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"strings"
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"sync"
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"sync/atomic"
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"github.com/gohugoio/hugo/common/types"
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"github.com/gohugoio/hugo/compare"
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)
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const (
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// Anonymous is an Identity that can be used when identity doesn't matter.
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Anonymous = StringIdentity("__anonymous")
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// GenghisKhan is an Identity everyone relates to.
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GenghisKhan = StringIdentity("__genghiskhan")
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)
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var NopManager = new(nopManager)
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// NewIdentityManager creates a new Manager.
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func NewManager(name string, opts ...ManagerOption) Manager {
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idm := &identityManager{
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Identity: Anonymous,
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name: name,
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ids: Identities{},
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}
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for _, o := range opts {
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o(idm)
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}
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return idm
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}
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// CleanString cleans s to be suitable as an identifier.
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func CleanString(s string) string {
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s = strings.ToLower(s)
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s = strings.TrimPrefix(filepath.ToSlash(s), "/")
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return path.Clean(s)
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}
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// CleanStringIdentity cleans s to be suitable as an identifier and wraps it in a StringIdentity.
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func CleanStringIdentity(s string) StringIdentity {
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return StringIdentity(CleanString(s))
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}
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// GetDependencyManager returns the DependencyManager from v or nil if none found.
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func GetDependencyManager(v any) Manager {
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switch vv := v.(type) {
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case Manager:
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return vv
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case types.Unwrapper:
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return GetDependencyManager(vv.Unwrapv())
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case DependencyManagerProvider:
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return vv.GetDependencyManager()
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}
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return nil
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}
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// GetDependencyManagerForScope returns the DependencyManager for the given scope from v or nil if none found.
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// Note that it will fall back to an unscoped manager if none found for the given scope.
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func GetDependencyManagerForScope(v any, scope int) Manager {
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switch vv := v.(type) {
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case DependencyManagerScopedProvider:
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return vv.GetDependencyManagerForScope(scope)
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case types.Unwrapper:
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return GetDependencyManagerForScope(vv.Unwrapv(), scope)
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case Manager:
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return vv
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case DependencyManagerProvider:
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return vv.GetDependencyManager()
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}
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return nil
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}
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// FirstIdentity returns the first Identity in v, Anonymous if none found
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func FirstIdentity(v any) Identity {
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var result Identity = Anonymous
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WalkIdentitiesShallow(v, func(level int, id Identity) bool {
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result = id
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return true
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})
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return result
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}
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// PrintIdentityInfo is used for debugging/tests only.
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func PrintIdentityInfo(v any) {
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WalkIdentitiesDeep(v, func(level int, id Identity) bool {
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var s string
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if idm, ok := id.(*identityManager); ok {
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s = " " + idm.name
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}
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fmt.Printf("%s%s (%T)%s\n", strings.Repeat(" ", level), id.IdentifierBase(), id, s)
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return false
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})
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}
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func Unwrap(id Identity) Identity {
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switch t := id.(type) {
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case IdentityProvider:
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return t.GetIdentity()
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default:
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return id
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}
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}
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// WalkIdentitiesDeep walks identities in v and applies cb to every identity found.
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// Return true from cb to terminate.
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// If deep is true, it will also walk nested Identities in any Manager found.
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func WalkIdentitiesDeep(v any, cb func(level int, id Identity) bool) {
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seen := make(map[Identity]bool)
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walkIdentities(v, 0, true, seen, cb)
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}
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// WalkIdentitiesShallow will not walk into a Manager's Identities.
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// See WalkIdentitiesDeep.
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// cb is called for every Identity found and returns whether to terminate the walk.
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func WalkIdentitiesShallow(v any, cb func(level int, id Identity) bool) {
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walkIdentitiesShallow(v, 0, cb)
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}
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// WithOnAddIdentity sets a callback that will be invoked when an identity is added to the manager.
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func WithOnAddIdentity(f func(id Identity)) ManagerOption {
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return func(m *identityManager) {
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m.onAddIdentity = f
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}
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}
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// DependencyManagerProvider provides a manager for dependencies.
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type DependencyManagerProvider interface {
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GetDependencyManager() Manager
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}
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// DependencyManagerProviderFunc is a function that implements the DependencyManagerProvider interface.
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type DependencyManagerProviderFunc func() Manager
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func (d DependencyManagerProviderFunc) GetDependencyManager() Manager {
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return d()
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}
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// DependencyManagerScopedProvider provides a manager for dependencies with a given scope.
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type DependencyManagerScopedProvider interface {
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GetDependencyManagerForScope(scope int) Manager
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}
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// ForEeachIdentityProvider provides a way iterate over identities.
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type ForEeachIdentityProvider interface {
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// ForEeachIdentityProvider calls cb for each Identity.
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// If cb returns true, the iteration is terminated.
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ForEeachIdentity(cb func(id Identity) bool)
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}
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// ForEeachIdentityByNameProvider provides a way to look up identities by name.
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type ForEeachIdentityByNameProvider interface {
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// ForEeachIdentityByName calls cb for each Identity that relates to name.
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// If cb returns true, the iteration is terminated.
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ForEeachIdentityByName(name string, cb func(id Identity) bool)
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}
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type FindFirstManagerIdentityProvider interface {
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Identity
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FindFirstManagerIdentity() ManagerIdentity
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}
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func NewFindFirstManagerIdentityProvider(m Manager, id Identity) FindFirstManagerIdentityProvider {
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return findFirstManagerIdentity{
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Identity: Anonymous,
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ManagerIdentity: ManagerIdentity{
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Manager: m, Identity: id,
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},
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}
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}
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type findFirstManagerIdentity struct {
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Identity
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ManagerIdentity
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}
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func (f findFirstManagerIdentity) FindFirstManagerIdentity() ManagerIdentity {
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return f.ManagerIdentity
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}
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// Identities stores identity providers.
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type Identities map[Identity]bool
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func (ids Identities) AsSlice() []Identity {
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s := make([]Identity, len(ids))
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i := 0
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for v := range ids {
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s[i] = v
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i++
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}
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sort.Slice(s, func(i, j int) bool {
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return s[i].IdentifierBase() < s[j].IdentifierBase()
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})
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return s
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}
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func (ids Identities) String() string {
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var sb strings.Builder
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i := 0
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for id := range ids {
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sb.WriteString(fmt.Sprintf("[%s]", id.IdentifierBase()))
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if i < len(ids)-1 {
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sb.WriteString(", ")
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}
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i++
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}
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return sb.String()
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}
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// Identity represents a thing in Hugo (a Page, a template etc.)
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// Any implementation must be comparable/hashable.
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type Identity interface {
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IdentifierBase() string
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}
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// IdentityGroupProvider can be implemented by tightly connected types.
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// Current use case is Resource transformation via Hugo Pipes.
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type IdentityGroupProvider interface {
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GetIdentityGroup() Identity
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}
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// IdentityProvider can be implemented by types that isn't itself and Identity,
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// usually because they're not comparable/hashable.
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type IdentityProvider interface {
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GetIdentity() Identity
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}
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// IncrementByOne implements Incrementer adding 1 every time Incr is called.
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type IncrementByOne struct {
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counter uint64
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}
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func (c *IncrementByOne) Incr() int {
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return int(atomic.AddUint64(&c.counter, uint64(1)))
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}
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// Incrementer increments and returns the value.
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// Typically used for IDs.
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type Incrementer interface {
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Incr() int
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}
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// IsProbablyDependentProvider is an optional interface for Identity.
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type IsProbablyDependentProvider interface {
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IsProbablyDependent(other Identity) bool
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}
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// IsProbablyDependencyProvider is an optional interface for Identity.
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type IsProbablyDependencyProvider interface {
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IsProbablyDependency(other Identity) bool
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}
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// Manager is an Identity that also manages identities, typically dependencies.
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type Manager interface {
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Identity
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AddIdentity(ids ...Identity)
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GetIdentity() Identity
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Reset()
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getIdentities() Identities
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}
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type ManagerOption func(m *identityManager)
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// StringIdentity is an Identity that wraps a string.
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type StringIdentity string
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func (s StringIdentity) IdentifierBase() string {
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return string(s)
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}
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type identityManager struct {
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Identity
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// Only used for debugging.
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name string
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// mu protects _changes_ to this manager,
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// reads currently assumes no concurrent writes.
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mu sync.RWMutex
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ids Identities
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// Hooks used in debugging.
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onAddIdentity func(id Identity)
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}
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func (im *identityManager) AddIdentity(ids ...Identity) {
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im.mu.Lock()
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for _, id := range ids {
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if id == Anonymous {
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continue
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}
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if _, found := im.ids[id]; !found {
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if im.onAddIdentity != nil {
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im.onAddIdentity(id)
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}
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im.ids[id] = true
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}
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}
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im.mu.Unlock()
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}
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func (im *identityManager) ContainsIdentity(id Identity) FinderResult {
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if im.Identity != Anonymous && id == im.Identity {
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return FinderFound
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}
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f := NewFinder(FinderConfig{Exact: true})
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r := f.Contains(id, im, -1)
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return r
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}
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// Managers are always anonymous.
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func (im *identityManager) GetIdentity() Identity {
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return im.Identity
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}
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func (im *identityManager) Reset() {
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im.mu.Lock()
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im.ids = Identities{}
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im.mu.Unlock()
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}
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func (im *identityManager) GetDependencyManagerForScope(int) Manager {
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return im
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}
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func (im *identityManager) String() string {
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return fmt.Sprintf("IdentityManager(%s)", im.name)
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}
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// TODO(bep) these identities are currently only read on server reloads
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// so there should be no concurrency issues, but that may change.
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func (im *identityManager) getIdentities() Identities {
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return im.ids
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}
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type nopManager int
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func (m *nopManager) AddIdentity(ids ...Identity) {
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}
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func (m *nopManager) IdentifierBase() string {
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return ""
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}
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func (m *nopManager) GetIdentity() Identity {
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return Anonymous
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}
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func (m *nopManager) Reset() {
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}
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func (m *nopManager) getIdentities() Identities {
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return nil
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}
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// returns whether further walking should be terminated.
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func walkIdentities(v any, level int, deep bool, seen map[Identity]bool, cb func(level int, id Identity) bool) {
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if level > 20 {
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panic("too deep")
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}
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var cbRecursive func(level int, id Identity) bool
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cbRecursive = func(level int, id Identity) bool {
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if id == nil {
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return false
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}
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if deep && seen[id] {
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return false
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}
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seen[id] = true
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if cb(level, id) {
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return true
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}
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if deep {
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if m := GetDependencyManager(id); m != nil {
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for id2 := range m.getIdentities() {
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if walkIdentitiesShallow(id2, level+1, cbRecursive) {
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return true
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}
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}
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}
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}
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return false
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}
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walkIdentitiesShallow(v, level, cbRecursive)
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}
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// returns whether further walking should be terminated.
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// Anonymous identities are skipped.
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func walkIdentitiesShallow(v any, level int, cb func(level int, id Identity) bool) bool {
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cb2 := func(level int, id Identity) bool {
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if id == Anonymous {
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return false
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}
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return cb(level, id)
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}
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if id, ok := v.(Identity); ok {
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if cb2(level, id) {
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return true
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}
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}
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if ipd, ok := v.(IdentityProvider); ok {
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if cb2(level, ipd.GetIdentity()) {
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return true
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}
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}
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if ipdgp, ok := v.(IdentityGroupProvider); ok {
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if cb2(level, ipdgp.GetIdentityGroup()) {
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return true
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}
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}
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return false
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}
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var (
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_ Identity = (*orIdentity)(nil)
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_ compare.ProbablyEqer = (*orIdentity)(nil)
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)
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func Or(a, b Identity) Identity {
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return orIdentity{a: a, b: b}
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}
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type orIdentity struct {
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a, b Identity
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}
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func (o orIdentity) IdentifierBase() string {
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return o.a.IdentifierBase()
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}
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func (o orIdentity) ProbablyEq(other any) bool {
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otherID, ok := other.(Identity)
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if !ok {
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return false
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}
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return probablyEq(o.a, otherID) || probablyEq(o.b, otherID)
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}
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func probablyEq(a, b Identity) bool {
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if a == b {
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return true
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}
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if a == Anonymous || b == Anonymous {
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return false
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}
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if a.IdentifierBase() == b.IdentifierBase() {
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return true
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}
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if a2, ok := a.(IsProbablyDependentProvider); ok {
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return a2.IsProbablyDependent(b)
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}
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return false
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}
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