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b799b12f4a
In Hugo 0.55 we connected the taxonomy nodes with their owning Page. This failed if you had, say, a content file for a author that did not author anything in the site: ``` content/authors/silent-persin/_index.md ``` Fixes #5847
248 lines
6.4 KiB
Go
248 lines
6.4 KiB
Go
// Copyright 2019 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 hugolib
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import (
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"fmt"
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"path"
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"sort"
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"github.com/gohugoio/hugo/resources/page"
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"github.com/gohugoio/hugo/resources/resource"
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)
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// The TaxonomyList is a list of all taxonomies and their values
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// e.g. List['tags'] => TagTaxonomy (from above)
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type TaxonomyList map[string]Taxonomy
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func (tl TaxonomyList) String() string {
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return fmt.Sprintf("TaxonomyList(%d)", len(tl))
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}
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// A Taxonomy is a map of keywords to a list of pages.
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// For example
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// TagTaxonomy['technology'] = page.WeightedPages
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// TagTaxonomy['go'] = page.WeightedPages
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type Taxonomy map[string]page.WeightedPages
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// OrderedTaxonomy is another representation of an Taxonomy using an array rather than a map.
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// Important because you can't order a map.
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type OrderedTaxonomy []OrderedTaxonomyEntry
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// OrderedTaxonomyEntry is similar to an element of a Taxonomy, but with the key embedded (as name)
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// e.g: {Name: Technology, page.WeightedPages: TaxonomyPages}
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type OrderedTaxonomyEntry struct {
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Name string
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page.WeightedPages
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}
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// Get the weighted pages for the given key.
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func (i Taxonomy) Get(key string) page.WeightedPages {
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return i[key]
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}
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// Count the weighted pages for the given key.
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func (i Taxonomy) Count(key string) int { return len(i[key]) }
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func (i Taxonomy) add(key string, w page.WeightedPage) {
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i[key] = append(i[key], w)
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}
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// TaxonomyArray returns an ordered taxonomy with a non defined order.
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func (i Taxonomy) TaxonomyArray() OrderedTaxonomy {
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ies := make([]OrderedTaxonomyEntry, len(i))
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count := 0
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for k, v := range i {
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ies[count] = OrderedTaxonomyEntry{Name: k, WeightedPages: v}
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count++
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}
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return ies
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}
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// Alphabetical returns an ordered taxonomy sorted by key name.
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func (i Taxonomy) Alphabetical() OrderedTaxonomy {
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name := func(i1, i2 *OrderedTaxonomyEntry) bool {
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return i1.Name < i2.Name
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}
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ia := i.TaxonomyArray()
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oiBy(name).Sort(ia)
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return ia
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}
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// ByCount returns an ordered taxonomy sorted by # of pages per key.
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// If taxonomies have the same # of pages, sort them alphabetical
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func (i Taxonomy) ByCount() OrderedTaxonomy {
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count := func(i1, i2 *OrderedTaxonomyEntry) bool {
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li1 := len(i1.WeightedPages)
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li2 := len(i2.WeightedPages)
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if li1 == li2 {
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return i1.Name < i2.Name
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}
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return li1 > li2
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}
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ia := i.TaxonomyArray()
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oiBy(count).Sort(ia)
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return ia
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}
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// Pages returns the Pages for this taxonomy.
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func (ie OrderedTaxonomyEntry) Pages() page.Pages {
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return ie.WeightedPages.Pages()
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}
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// Count returns the count the pages in this taxonomy.
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func (ie OrderedTaxonomyEntry) Count() int {
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return len(ie.WeightedPages)
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}
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// Term returns the name given to this taxonomy.
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func (ie OrderedTaxonomyEntry) Term() string {
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return ie.Name
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}
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// Reverse reverses the order of the entries in this taxonomy.
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func (t OrderedTaxonomy) Reverse() OrderedTaxonomy {
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for i, j := 0, len(t)-1; i < j; i, j = i+1, j-1 {
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t[i], t[j] = t[j], t[i]
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}
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return t
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}
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// A type to implement the sort interface for TaxonomyEntries.
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type orderedTaxonomySorter struct {
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taxonomy OrderedTaxonomy
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by oiBy
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}
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// Closure used in the Sort.Less method.
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type oiBy func(i1, i2 *OrderedTaxonomyEntry) bool
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func (by oiBy) Sort(taxonomy OrderedTaxonomy) {
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ps := &orderedTaxonomySorter{
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taxonomy: taxonomy,
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by: by, // The Sort method's receiver is the function (closure) that defines the sort order.
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}
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sort.Stable(ps)
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}
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// Len is part of sort.Interface.
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func (s *orderedTaxonomySorter) Len() int {
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return len(s.taxonomy)
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}
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// Swap is part of sort.Interface.
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func (s *orderedTaxonomySorter) Swap(i, j int) {
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s.taxonomy[i], s.taxonomy[j] = s.taxonomy[j], s.taxonomy[i]
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}
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// Less is part of sort.Interface. It is implemented by calling the "by" closure in the sorter.
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func (s *orderedTaxonomySorter) Less(i, j int) bool {
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return s.by(&s.taxonomy[i], &s.taxonomy[j])
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}
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// taxonomyNodeInfo stores additional metadata about a taxonomy.
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type taxonomyNodeInfo struct {
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plural string
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// Maps "tags" to "tag".
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singular string
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// The term key as used in the taxonomy map, e.g "tag1".
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// The value is normalized for paths, but may or not be lowercased
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// depending on the disablePathToLower setting.
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termKey string
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// The original, unedited term name. Useful for titles etc.
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term string
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dates resource.Dates
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parent *taxonomyNodeInfo
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// Either of Kind taxonomyTerm (parent) or taxonomy
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owner *page.PageWrapper
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}
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func (t *taxonomyNodeInfo) UpdateFromPage(p page.Page) {
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// Select the latest dates
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t.dates.UpdateDateAndLastmodIfAfter(p)
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}
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func (t *taxonomyNodeInfo) TransferValues(p *pageState) {
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t.owner.Page = p
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if p.Lastmod().IsZero() && p.Date().IsZero() {
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p.m.Dates.UpdateDateAndLastmodIfAfter(t.dates)
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}
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}
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// Maps either plural or plural/term to a taxonomy node.
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// TODO(bep) consolidate somehow with s.Taxonomies
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type taxonomyNodeInfos struct {
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m map[string]*taxonomyNodeInfo
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getKey func(string) string
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}
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// map[string]*taxonomyNodeInfo
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func (t taxonomyNodeInfos) key(parts ...string) string {
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return path.Join(parts...)
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}
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// GetOrAdd will get or create and add a new taxonomy node to the parent identified with plural.
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// It will panic if the parent does not exist.
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func (t taxonomyNodeInfos) GetOrAdd(plural, term string) *taxonomyNodeInfo {
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parent := t.GetOrCreate(plural, "")
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if parent == nil {
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panic(fmt.Sprintf("no parent found with plural %q", plural))
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}
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child := t.GetOrCreate(plural, term)
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child.parent = parent
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return child
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}
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func (t taxonomyNodeInfos) GetOrCreate(plural, term string) *taxonomyNodeInfo {
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termKey := t.getKey(term)
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key := t.key(plural, termKey)
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n, found := t.m[key]
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if found {
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return n
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}
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n = &taxonomyNodeInfo{
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plural: plural,
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termKey: termKey,
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term: term,
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owner: &page.PageWrapper{}, // Page will be assigned later.
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}
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t.m[key] = n
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return n
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}
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func (t taxonomyNodeInfos) Get(sections ...string) *taxonomyNodeInfo {
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key := t.key(sections...)
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n, found := t.m[key]
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if found {
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return n
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}
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return nil
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}
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