mirror of
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2b39f9f4b2
Among others, this updates minio-go, so that the new "eu-west-3" zone for AWS is supported.
414 lines
11 KiB
Go
414 lines
11 KiB
Go
// 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_test
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import (
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"fmt"
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"net/http"
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"golang.org/x/text/language"
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)
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func ExampleCanonType() {
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p := func(id string) {
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fmt.Printf("Default(%s) -> %s\n", id, language.Make(id))
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fmt.Printf("BCP47(%s) -> %s\n", id, language.BCP47.Make(id))
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fmt.Printf("Macro(%s) -> %s\n", id, language.Macro.Make(id))
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fmt.Printf("All(%s) -> %s\n", id, language.All.Make(id))
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}
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p("en-Latn")
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p("sh")
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p("zh-cmn")
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p("bjd")
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p("iw-Latn-fonipa-u-cu-usd")
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// Output:
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// Default(en-Latn) -> en-Latn
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// BCP47(en-Latn) -> en
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// Macro(en-Latn) -> en-Latn
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// All(en-Latn) -> en
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// Default(sh) -> sr-Latn
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// BCP47(sh) -> sh
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// Macro(sh) -> sh
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// All(sh) -> sr-Latn
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// Default(zh-cmn) -> cmn
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// BCP47(zh-cmn) -> cmn
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// Macro(zh-cmn) -> zh
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// All(zh-cmn) -> zh
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// Default(bjd) -> drl
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// BCP47(bjd) -> drl
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// Macro(bjd) -> bjd
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// All(bjd) -> drl
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// Default(iw-Latn-fonipa-u-cu-usd) -> he-Latn-fonipa-u-cu-usd
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// BCP47(iw-Latn-fonipa-u-cu-usd) -> he-Latn-fonipa-u-cu-usd
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// Macro(iw-Latn-fonipa-u-cu-usd) -> iw-Latn-fonipa-u-cu-usd
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// All(iw-Latn-fonipa-u-cu-usd) -> he-Latn-fonipa-u-cu-usd
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}
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func ExampleTag_Base() {
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fmt.Println(language.Make("und").Base())
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fmt.Println(language.Make("und-US").Base())
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fmt.Println(language.Make("und-NL").Base())
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fmt.Println(language.Make("und-419").Base()) // Latin America
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fmt.Println(language.Make("und-ZZ").Base())
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// Output:
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// en Low
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// en High
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// nl High
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// es Low
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// en Low
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}
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func ExampleTag_Script() {
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en := language.Make("en")
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sr := language.Make("sr")
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sr_Latn := language.Make("sr_Latn")
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fmt.Println(en.Script())
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fmt.Println(sr.Script())
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// Was a script explicitly specified?
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_, c := sr.Script()
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fmt.Println(c == language.Exact)
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_, c = sr_Latn.Script()
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fmt.Println(c == language.Exact)
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// Output:
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// Latn High
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// Cyrl Low
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// false
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// true
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}
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func ExampleTag_Region() {
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ru := language.Make("ru")
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en := language.Make("en")
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fmt.Println(ru.Region())
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fmt.Println(en.Region())
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// Output:
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// RU Low
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// US Low
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}
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func ExampleRegion_TLD() {
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us := language.MustParseRegion("US")
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gb := language.MustParseRegion("GB")
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uk := language.MustParseRegion("UK")
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bu := language.MustParseRegion("BU")
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fmt.Println(us.TLD())
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fmt.Println(gb.TLD())
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fmt.Println(uk.TLD())
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fmt.Println(bu.TLD())
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fmt.Println(us.Canonicalize().TLD())
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fmt.Println(gb.Canonicalize().TLD())
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fmt.Println(uk.Canonicalize().TLD())
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fmt.Println(bu.Canonicalize().TLD())
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// Output:
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// US <nil>
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// UK <nil>
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// UK <nil>
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// ZZ language: region is not a valid ccTLD
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// US <nil>
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// UK <nil>
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// UK <nil>
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// MM <nil>
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}
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func ExampleCompose() {
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nl, _ := language.ParseBase("nl")
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us, _ := language.ParseRegion("US")
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de := language.Make("de-1901-u-co-phonebk")
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jp := language.Make("ja-JP")
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fi := language.Make("fi-x-ing")
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u, _ := language.ParseExtension("u-nu-arabic")
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x, _ := language.ParseExtension("x-piglatin")
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// Combine a base language and region.
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fmt.Println(language.Compose(nl, us))
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// Combine a base language and extension.
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fmt.Println(language.Compose(nl, x))
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// Replace the region.
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fmt.Println(language.Compose(jp, us))
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// Combine several tags.
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fmt.Println(language.Compose(us, nl, u))
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// Replace the base language of a tag.
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fmt.Println(language.Compose(de, nl))
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fmt.Println(language.Compose(de, nl, u))
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// Remove the base language.
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fmt.Println(language.Compose(de, language.Base{}))
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// Remove all variants.
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fmt.Println(language.Compose(de, []language.Variant{}))
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// Remove all extensions.
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fmt.Println(language.Compose(de, []language.Extension{}))
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fmt.Println(language.Compose(fi, []language.Extension{}))
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// Remove all variants and extensions.
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fmt.Println(language.Compose(de.Raw()))
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// An error is gobbled or returned if non-nil.
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fmt.Println(language.Compose(language.ParseRegion("ZA")))
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fmt.Println(language.Compose(language.ParseRegion("HH")))
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// Compose uses the same Default canonicalization as Make.
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fmt.Println(language.Compose(language.Raw.Parse("en-Latn-UK")))
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// Call compose on a different CanonType for different results.
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fmt.Println(language.All.Compose(language.Raw.Parse("en-Latn-UK")))
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// Output:
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// nl-US <nil>
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// nl-x-piglatin <nil>
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// ja-US <nil>
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// nl-US-u-nu-arabic <nil>
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// nl-1901-u-co-phonebk <nil>
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// nl-1901-u-nu-arabic <nil>
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// und-1901-u-co-phonebk <nil>
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// de-u-co-phonebk <nil>
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// de-1901 <nil>
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// fi <nil>
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// de <nil>
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// und-ZA <nil>
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// und language: subtag "HH" is well-formed but unknown
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// en-Latn-GB <nil>
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// en-GB <nil>
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}
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func ExampleParse_errors() {
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for _, s := range []string{"Foo", "Bar", "Foobar"} {
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_, err := language.Parse(s)
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if err != nil {
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if inv, ok := err.(language.ValueError); ok {
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fmt.Println(inv.Subtag())
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} else {
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fmt.Println(s)
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}
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}
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}
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for _, s := range []string{"en", "aa-Uuuu", "AC", "ac-u"} {
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_, err := language.Parse(s)
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switch e := err.(type) {
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case language.ValueError:
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fmt.Printf("%s: culprit %q\n", s, e.Subtag())
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case nil:
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// No error.
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default:
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// A syntax error.
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fmt.Printf("%s: ill-formed\n", s)
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}
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}
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// Output:
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// foo
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// Foobar
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// aa-Uuuu: culprit "Uuuu"
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// AC: culprit "ac"
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// ac-u: ill-formed
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}
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func ExampleParent() {
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p := func(tag string) {
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fmt.Printf("parent(%v): %v\n", tag, language.Make(tag).Parent())
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}
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p("zh-CN")
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// Australian English inherits from World English.
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p("en-AU")
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// If the tag has a different maximized script from its parent, a tag with
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// this maximized script is inserted. This allows different language tags
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// which have the same base language and script in common to inherit from
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// a common set of settings.
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p("zh-HK")
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// If the maximized script of the parent is not identical, CLDR will skip
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// inheriting from it, as it means there will not be many entries in common
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// and inheriting from it is nonsensical.
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p("zh-Hant")
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// The parent of a tag with variants and extensions is the tag with all
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// variants and extensions removed.
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p("de-1994-u-co-phonebk")
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// Remove default script.
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p("de-Latn-LU")
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// Output:
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// parent(zh-CN): zh
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// parent(en-AU): en-001
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// parent(zh-HK): zh-Hant
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// parent(zh-Hant): und
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// parent(de-1994-u-co-phonebk): de
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// parent(de-Latn-LU): de
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}
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// ExampleMatcher_bestMatch gives some examples of getting the best match of
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// a set of tags to any of the tags of given set.
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func ExampleMatcher() {
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// This is the set of tags from which we want to pick the best match. These
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// can be, for example, the supported languages for some package.
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tags := []language.Tag{
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language.English,
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language.BritishEnglish,
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language.French,
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language.Afrikaans,
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language.BrazilianPortuguese,
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language.EuropeanPortuguese,
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language.Croatian,
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language.SimplifiedChinese,
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language.Raw.Make("iw-IL"),
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language.Raw.Make("iw"),
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language.Raw.Make("he"),
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}
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m := language.NewMatcher(tags)
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// A simple match.
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fmt.Println(m.Match(language.Make("fr")))
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// Australian English is closer to British than American English.
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fmt.Println(m.Match(language.Make("en-AU")))
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// Default to the first tag passed to the Matcher if there is no match.
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fmt.Println(m.Match(language.Make("ar")))
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// Get the default tag.
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fmt.Println(m.Match())
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fmt.Println("----")
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// Someone specifying sr-Latn is probably fine with getting Croatian.
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fmt.Println(m.Match(language.Make("sr-Latn")))
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// We match SimplifiedChinese, but with Low confidence.
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fmt.Println(m.Match(language.TraditionalChinese))
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// Serbian in Latin script is a closer match to Croatian than Traditional
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// Chinese to Simplified Chinese.
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fmt.Println(m.Match(language.TraditionalChinese, language.Make("sr-Latn")))
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fmt.Println("----")
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// In case a multiple variants of a language are available, the most spoken
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// variant is typically returned.
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fmt.Println(m.Match(language.Portuguese))
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// Pick the first value passed to Match in case of a tie.
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fmt.Println(m.Match(language.Dutch, language.Make("fr-BE"), language.Make("af-NA")))
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fmt.Println(m.Match(language.Dutch, language.Make("af-NA"), language.Make("fr-BE")))
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fmt.Println("----")
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// If a Matcher is initialized with a language and it's deprecated version,
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// it will distinguish between them.
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fmt.Println(m.Match(language.Raw.Make("iw")))
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// However, for non-exact matches, it will treat deprecated versions as
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// equivalent and consider other factors first.
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fmt.Println(m.Match(language.Raw.Make("he-IL")))
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fmt.Println("----")
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// User settings passed to the Unicode extension are ignored for matching
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// and preserved in the returned tag.
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fmt.Println(m.Match(language.Make("de-u-co-phonebk"), language.Make("fr-u-cu-frf")))
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// Even if the matching language is different.
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fmt.Println(m.Match(language.Make("de-u-co-phonebk"), language.Make("br-u-cu-frf")))
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// If there is no matching language, the options of the first preferred tag are used.
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fmt.Println(m.Match(language.Make("de-u-co-phonebk")))
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// Output:
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// fr 2 Exact
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// en-GB 1 High
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// en 0 No
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// en 0 No
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// ----
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// hr 6 High
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// zh-Hans 7 Low
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// hr 6 High
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// ----
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// pt-BR 4 High
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// fr 2 High
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// af 3 High
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// ----
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// iw 9 Exact
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// he 10 Exact
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// ----
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// fr-u-cu-frf 2 Exact
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// fr-u-cu-frf 2 High
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// en-u-co-phonebk 0 No
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// TODO: "he" should be "he-u-rg-IL High"
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}
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func ExampleMatchStrings() {
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// languages supported by this service:
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matcher := language.NewMatcher([]language.Tag{
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language.English, language.Dutch, language.German,
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})
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http.HandleFunc("/", func(w http.ResponseWriter, r *http.Request) {
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lang, _ := r.Cookie("lang")
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tag, _ := language.MatchStrings(matcher, lang.String(), r.Header.Get("Accept-Language"))
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fmt.Println("User language:", tag)
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})
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}
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func ExampleComprehends() {
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// Various levels of comprehensibility.
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fmt.Println(language.Comprehends(language.English, language.English))
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fmt.Println(language.Comprehends(language.AmericanEnglish, language.BritishEnglish))
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// An explicit Und results in no match.
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fmt.Println(language.Comprehends(language.English, language.Und))
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fmt.Println("----")
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// There is usually no mutual comprehensibility between different scripts.
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fmt.Println(language.Comprehends(language.Make("en-Dsrt"), language.English))
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// One exception is for Traditional versus Simplified Chinese, albeit with
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// a low confidence.
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fmt.Println(language.Comprehends(language.TraditionalChinese, language.SimplifiedChinese))
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fmt.Println("----")
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// A Swiss German speaker will often understand High German.
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fmt.Println(language.Comprehends(language.Make("gsw"), language.Make("de")))
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// The converse is not generally the case.
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fmt.Println(language.Comprehends(language.Make("de"), language.Make("gsw")))
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// Output:
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// Exact
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// High
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// No
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// ----
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// No
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// Low
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// ----
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// High
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// No
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}
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func ExampleTag_values() {
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us := language.MustParseRegion("US")
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en := language.MustParseBase("en")
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lang, _, region := language.AmericanEnglish.Raw()
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fmt.Println(lang == en, region == us)
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lang, _, region = language.BritishEnglish.Raw()
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fmt.Println(lang == en, region == us)
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// Tags can be compared for exact equivalence using '=='.
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en_us, _ := language.Compose(en, us)
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fmt.Println(en_us == language.AmericanEnglish)
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// Output:
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// true true
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// true false
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// true
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}
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