mirror of
https://github.com/go-gitea/gitea
synced 2024-11-01 07:44:25 +00:00
227 lines
5.7 KiB
Go
Vendored
227 lines
5.7 KiB
Go
Vendored
// Copyright 2013 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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package language
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import "errors"
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type scriptRegionFlags uint8
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const (
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isList = 1 << iota
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scriptInFrom
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regionInFrom
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)
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func (t *Tag) setUndefinedLang(id Language) {
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if t.LangID == 0 {
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t.LangID = id
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}
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}
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func (t *Tag) setUndefinedScript(id Script) {
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if t.ScriptID == 0 {
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t.ScriptID = id
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}
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}
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func (t *Tag) setUndefinedRegion(id Region) {
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if t.RegionID == 0 || t.RegionID.Contains(id) {
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t.RegionID = id
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}
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}
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// ErrMissingLikelyTagsData indicates no information was available
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// to compute likely values of missing tags.
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var ErrMissingLikelyTagsData = errors.New("missing likely tags data")
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// addLikelySubtags sets subtags to their most likely value, given the locale.
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// In most cases this means setting fields for unknown values, but in some
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// cases it may alter a value. It returns an ErrMissingLikelyTagsData error
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// if the given locale cannot be expanded.
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func (t Tag) addLikelySubtags() (Tag, error) {
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id, err := addTags(t)
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if err != nil {
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return t, err
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} else if id.equalTags(t) {
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return t, nil
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}
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id.RemakeString()
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return id, nil
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}
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// specializeRegion attempts to specialize a group region.
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func specializeRegion(t *Tag) bool {
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if i := regionInclusion[t.RegionID]; i < nRegionGroups {
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x := likelyRegionGroup[i]
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if Language(x.lang) == t.LangID && Script(x.script) == t.ScriptID {
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t.RegionID = Region(x.region)
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}
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return true
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}
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return false
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}
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// Maximize returns a new tag with missing tags filled in.
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func (t Tag) Maximize() (Tag, error) {
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return addTags(t)
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}
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func addTags(t Tag) (Tag, error) {
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// We leave private use identifiers alone.
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if t.IsPrivateUse() {
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return t, nil
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}
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if t.ScriptID != 0 && t.RegionID != 0 {
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if t.LangID != 0 {
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// already fully specified
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specializeRegion(&t)
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return t, nil
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}
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// Search matches for und-script-region. Note that for these cases
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// region will never be a group so there is no need to check for this.
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list := likelyRegion[t.RegionID : t.RegionID+1]
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if x := list[0]; x.flags&isList != 0 {
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list = likelyRegionList[x.lang : x.lang+uint16(x.script)]
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}
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for _, x := range list {
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// Deviating from the spec. See match_test.go for details.
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if Script(x.script) == t.ScriptID {
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t.setUndefinedLang(Language(x.lang))
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return t, nil
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}
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}
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}
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if t.LangID != 0 {
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// Search matches for lang-script and lang-region, where lang != und.
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if t.LangID < langNoIndexOffset {
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x := likelyLang[t.LangID]
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if x.flags&isList != 0 {
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list := likelyLangList[x.region : x.region+uint16(x.script)]
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if t.ScriptID != 0 {
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for _, x := range list {
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if Script(x.script) == t.ScriptID && x.flags&scriptInFrom != 0 {
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t.setUndefinedRegion(Region(x.region))
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return t, nil
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}
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}
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} else if t.RegionID != 0 {
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count := 0
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goodScript := true
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tt := t
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for _, x := range list {
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// We visit all entries for which the script was not
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// defined, including the ones where the region was not
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// defined. This allows for proper disambiguation within
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// regions.
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if x.flags&scriptInFrom == 0 && t.RegionID.Contains(Region(x.region)) {
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tt.RegionID = Region(x.region)
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tt.setUndefinedScript(Script(x.script))
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goodScript = goodScript && tt.ScriptID == Script(x.script)
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count++
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}
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}
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if count == 1 {
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return tt, nil
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}
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// Even if we fail to find a unique Region, we might have
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// an unambiguous script.
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if goodScript {
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t.ScriptID = tt.ScriptID
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}
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}
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}
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}
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} else {
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// Search matches for und-script.
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if t.ScriptID != 0 {
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x := likelyScript[t.ScriptID]
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if x.region != 0 {
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t.setUndefinedRegion(Region(x.region))
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t.setUndefinedLang(Language(x.lang))
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return t, nil
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}
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}
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// Search matches for und-region. If und-script-region exists, it would
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// have been found earlier.
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if t.RegionID != 0 {
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if i := regionInclusion[t.RegionID]; i < nRegionGroups {
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x := likelyRegionGroup[i]
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if x.region != 0 {
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t.setUndefinedLang(Language(x.lang))
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t.setUndefinedScript(Script(x.script))
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t.RegionID = Region(x.region)
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}
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} else {
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x := likelyRegion[t.RegionID]
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if x.flags&isList != 0 {
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x = likelyRegionList[x.lang]
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}
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if x.script != 0 && x.flags != scriptInFrom {
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t.setUndefinedLang(Language(x.lang))
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t.setUndefinedScript(Script(x.script))
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return t, nil
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}
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}
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}
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}
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// Search matches for lang.
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if t.LangID < langNoIndexOffset {
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x := likelyLang[t.LangID]
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if x.flags&isList != 0 {
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x = likelyLangList[x.region]
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}
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if x.region != 0 {
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t.setUndefinedScript(Script(x.script))
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t.setUndefinedRegion(Region(x.region))
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}
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specializeRegion(&t)
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if t.LangID == 0 {
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t.LangID = _en // default language
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}
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return t, nil
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}
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return t, ErrMissingLikelyTagsData
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}
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func (t *Tag) setTagsFrom(id Tag) {
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t.LangID = id.LangID
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t.ScriptID = id.ScriptID
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t.RegionID = id.RegionID
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}
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// minimize removes the region or script subtags from t such that
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// t.addLikelySubtags() == t.minimize().addLikelySubtags().
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func (t Tag) minimize() (Tag, error) {
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t, err := minimizeTags(t)
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if err != nil {
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return t, err
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}
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t.RemakeString()
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return t, nil
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}
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// minimizeTags mimics the behavior of the ICU 51 C implementation.
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func minimizeTags(t Tag) (Tag, error) {
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if t.equalTags(Und) {
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return t, nil
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}
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max, err := addTags(t)
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if err != nil {
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return t, err
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}
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for _, id := range [...]Tag{
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{LangID: t.LangID},
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{LangID: t.LangID, RegionID: t.RegionID},
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{LangID: t.LangID, ScriptID: t.ScriptID},
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} {
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if x, err := addTags(id); err == nil && max.equalTags(x) {
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t.setTagsFrom(id)
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break
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}
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}
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return t, nil
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}
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