mirror of
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879 lines
23 KiB
Go
879 lines
23 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
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import (
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"reflect"
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"testing"
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"golang.org/x/text/internal/testtext"
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)
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func TestTagSize(t *testing.T) {
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id := Tag{}
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typ := reflect.TypeOf(id)
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if typ.Size() > 24 {
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t.Errorf("size of Tag was %d; want 24", typ.Size())
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}
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}
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func TestIsRoot(t *testing.T) {
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loc := Tag{}
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if !loc.IsRoot() {
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t.Errorf("unspecified should be root.")
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}
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for i, tt := range parseTests() {
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loc, _ := Parse(tt.in)
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undef := tt.lang == "und" && tt.script == "" && tt.region == "" && tt.ext == ""
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if loc.IsRoot() != undef {
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t.Errorf("%d: was %v; want %v", i, loc.IsRoot(), undef)
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}
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}
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}
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func TestEquality(t *testing.T) {
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for i, tt := range parseTests()[48:49] {
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s := tt.in
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tag := Make(s)
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t1 := Make(tag.String())
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if tag != t1 {
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t.Errorf("%d:%s: equality test 1 failed\n got: %#v\nwant: %#v)", i, s, t1, tag)
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}
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t2, _ := Compose(tag)
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if tag != t2 {
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t.Errorf("%d:%s: equality test 2 failed\n got: %#v\nwant: %#v", i, s, t2, tag)
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}
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}
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}
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func TestMakeString(t *testing.T) {
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tests := []struct{ in, out string }{
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{"und", "und"},
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{"und", "und-CW"},
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{"nl", "nl-NL"},
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{"de-1901", "nl-1901"},
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{"de-1901", "de-Arab-1901"},
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{"x-a-b", "de-Arab-x-a-b"},
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{"x-a-b", "x-a-b"},
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}
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for i, tt := range tests {
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id, _ := Parse(tt.in)
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mod, _ := Parse(tt.out)
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id.setTagsFrom(mod)
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for j := 0; j < 2; j++ {
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id.remakeString()
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if str := id.String(); str != tt.out {
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t.Errorf("%d:%d: found %s; want %s", i, j, id.String(), tt.out)
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}
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}
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// The bytes to string conversion as used in remakeString
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// occasionally measures as more than one alloc, breaking this test.
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// To alleviate this we set the number of runs to more than 1.
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if n := testtext.AllocsPerRun(8, id.remakeString); n > 1 {
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t.Errorf("%d: # allocs got %.1f; want <= 1", i, n)
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}
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}
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}
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func TestCompactIndex(t *testing.T) {
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tests := []struct {
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tag string
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index int
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ok bool
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}{
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// TODO: these values will change with each CLDR update. This issue
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// will be solved if we decide to fix the indexes.
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{"und", 0, true},
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{"ca-ES-valencia", 1, true},
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{"ca-ES-valencia-u-va-posix", 0, false},
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{"ca-ES-valencia-u-co-phonebk", 1, true},
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{"ca-ES-valencia-u-co-phonebk-va-posix", 0, false},
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{"x-klingon", 0, false},
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{"en-US", 229, true},
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{"en-US-u-va-posix", 2, true},
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{"en", 133, true},
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{"en-u-co-phonebk", 133, true},
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{"en-001", 134, true},
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{"sh", 0, false}, // We don't normalize.
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}
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for _, tt := range tests {
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x, ok := CompactIndex(Raw.MustParse(tt.tag))
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if x != tt.index || ok != tt.ok {
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t.Errorf("%s: got %d, %v; want %d %v", tt.tag, x, ok, tt.index, tt.ok)
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}
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}
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}
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func TestBase(t *testing.T) {
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tests := []struct {
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loc, lang string
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conf Confidence
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}{
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{"und", "en", Low},
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{"x-abc", "und", No},
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{"en", "en", Exact},
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{"und-Cyrl", "ru", High},
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// If a region is not included, the official language should be English.
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{"und-US", "en", High},
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// TODO: not-explicitly listed scripts should probably be und, No
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// Modify addTags to return info on how the match was derived.
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// {"und-Aghb", "und", No},
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}
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for i, tt := range tests {
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loc, _ := Parse(tt.loc)
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lang, conf := loc.Base()
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if lang.String() != tt.lang {
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t.Errorf("%d: language was %s; want %s", i, lang, tt.lang)
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}
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if conf != tt.conf {
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t.Errorf("%d: confidence was %d; want %d", i, conf, tt.conf)
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}
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}
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}
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func TestParseBase(t *testing.T) {
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tests := []struct {
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in string
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out string
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ok bool
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}{
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{"en", "en", true},
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{"EN", "en", true},
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{"nld", "nl", true},
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{"dut", "dut", true}, // bibliographic
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{"aaj", "und", false}, // unknown
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{"qaa", "qaa", true},
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{"a", "und", false},
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{"", "und", false},
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{"aaaa", "und", false},
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}
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for i, tt := range tests {
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x, err := ParseBase(tt.in)
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if x.String() != tt.out || err == nil != tt.ok {
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t.Errorf("%d:%s: was %s, %v; want %s, %v", i, tt.in, x, err == nil, tt.out, tt.ok)
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}
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if y, _, _ := Raw.Make(tt.out).Raw(); x != y {
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t.Errorf("%d:%s: tag was %s; want %s", i, tt.in, x, y)
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}
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}
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}
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func TestScript(t *testing.T) {
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tests := []struct {
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loc, scr string
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conf Confidence
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}{
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{"und", "Latn", Low},
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{"en-Latn", "Latn", Exact},
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{"en", "Latn", High},
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{"sr", "Cyrl", Low},
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{"kk", "Cyrl", High},
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{"kk-CN", "Arab", Low},
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{"cmn", "Hans", Low},
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{"ru", "Cyrl", High},
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{"ru-RU", "Cyrl", High},
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{"yue", "Hant", Low},
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{"x-abc", "Zzzz", Low},
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{"und-zyyy", "Zyyy", Exact},
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}
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for i, tt := range tests {
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loc, _ := Parse(tt.loc)
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sc, conf := loc.Script()
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if sc.String() != tt.scr {
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t.Errorf("%d:%s: script was %s; want %s", i, tt.loc, sc, tt.scr)
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}
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if conf != tt.conf {
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t.Errorf("%d:%s: confidence was %d; want %d", i, tt.loc, conf, tt.conf)
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}
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}
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}
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func TestParseScript(t *testing.T) {
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tests := []struct {
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in string
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out string
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ok bool
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}{
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{"Latn", "Latn", true},
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{"zzzz", "Zzzz", true},
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{"zyyy", "Zyyy", true},
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{"Latm", "Zzzz", false},
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{"Zzz", "Zzzz", false},
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{"", "Zzzz", false},
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{"Zzzxx", "Zzzz", false},
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}
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for i, tt := range tests {
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x, err := ParseScript(tt.in)
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if x.String() != tt.out || err == nil != tt.ok {
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t.Errorf("%d:%s: was %s, %v; want %s, %v", i, tt.in, x, err == nil, tt.out, tt.ok)
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}
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if err == nil {
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if _, y, _ := Raw.Make("und-" + tt.out).Raw(); x != y {
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t.Errorf("%d:%s: tag was %s; want %s", i, tt.in, x, y)
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}
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}
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}
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}
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func TestRegion(t *testing.T) {
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tests := []struct {
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loc, reg string
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conf Confidence
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}{
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{"und", "US", Low},
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{"en", "US", Low},
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{"zh-Hant", "TW", Low},
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{"en-US", "US", Exact},
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{"cmn", "CN", Low},
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{"ru", "RU", Low},
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{"yue", "HK", Low},
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{"x-abc", "ZZ", Low},
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}
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for i, tt := range tests {
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loc, _ := Raw.Parse(tt.loc)
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reg, conf := loc.Region()
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if reg.String() != tt.reg {
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t.Errorf("%d:%s: region was %s; want %s", i, tt.loc, reg, tt.reg)
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}
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if conf != tt.conf {
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t.Errorf("%d:%s: confidence was %d; want %d", i, tt.loc, conf, tt.conf)
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}
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}
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}
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func TestEncodeM49(t *testing.T) {
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tests := []struct {
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m49 int
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code string
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ok bool
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}{
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{1, "001", true},
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{840, "US", true},
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{899, "ZZ", false},
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}
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for i, tt := range tests {
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if r, err := EncodeM49(tt.m49); r.String() != tt.code || err == nil != tt.ok {
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t.Errorf("%d:%d: was %s, %v; want %s, %v", i, tt.m49, r, err == nil, tt.code, tt.ok)
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}
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}
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for i := 1; i <= 1000; i++ {
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if r, err := EncodeM49(i); err == nil && r.M49() == 0 {
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t.Errorf("%d has no error, but maps to undefined region", i)
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}
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}
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}
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func TestParseRegion(t *testing.T) {
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tests := []struct {
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in string
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out string
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ok bool
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}{
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{"001", "001", true},
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{"840", "US", true},
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{"899", "ZZ", false},
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{"USA", "US", true},
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{"US", "US", true},
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{"BC", "ZZ", false},
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{"C", "ZZ", false},
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{"CCCC", "ZZ", false},
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{"01", "ZZ", false},
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}
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for i, tt := range tests {
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r, err := ParseRegion(tt.in)
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if r.String() != tt.out || err == nil != tt.ok {
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t.Errorf("%d:%s: was %s, %v; want %s, %v", i, tt.in, r, err == nil, tt.out, tt.ok)
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}
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if err == nil {
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if _, _, y := Raw.Make("und-" + tt.out).Raw(); r != y {
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t.Errorf("%d:%s: tag was %s; want %s", i, tt.in, r, y)
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}
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}
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}
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}
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func TestIsCountry(t *testing.T) {
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tests := []struct {
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reg string
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country bool
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}{
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{"US", true},
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{"001", false},
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{"958", false},
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{"419", false},
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{"203", true},
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{"020", true},
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{"900", false},
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{"999", false},
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{"QO", false},
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{"EU", false},
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{"AA", false},
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{"XK", true},
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}
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for i, tt := range tests {
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reg, _ := getRegionID([]byte(tt.reg))
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r := Region{reg}
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if r.IsCountry() != tt.country {
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t.Errorf("%d: IsCountry(%s) was %v; want %v", i, tt.reg, r.IsCountry(), tt.country)
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}
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}
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}
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func TestIsGroup(t *testing.T) {
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tests := []struct {
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reg string
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group bool
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}{
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{"US", false},
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{"001", true},
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{"958", false},
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{"419", true},
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{"203", false},
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{"020", false},
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{"900", false},
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{"999", false},
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{"QO", true},
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{"EU", true},
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{"AA", false},
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{"XK", false},
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}
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for i, tt := range tests {
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reg, _ := getRegionID([]byte(tt.reg))
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r := Region{reg}
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if r.IsGroup() != tt.group {
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t.Errorf("%d: IsGroup(%s) was %v; want %v", i, tt.reg, r.IsGroup(), tt.group)
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}
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}
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}
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func TestContains(t *testing.T) {
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tests := []struct {
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enclosing, contained string
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contains bool
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}{
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// A region contains itself.
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{"US", "US", true},
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{"001", "001", true},
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// Direct containment.
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{"001", "002", true},
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{"039", "XK", true},
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{"150", "XK", true},
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{"EU", "AT", true},
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{"QO", "AQ", true},
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// Indirect containemnt.
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{"001", "US", true},
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{"001", "419", true},
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{"001", "013", true},
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// No containment.
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{"US", "001", false},
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{"155", "EU", false},
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}
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for i, tt := range tests {
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enc, _ := getRegionID([]byte(tt.enclosing))
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con, _ := getRegionID([]byte(tt.contained))
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r := Region{enc}
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if got := r.Contains(Region{con}); got != tt.contains {
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t.Errorf("%d: %s.Contains(%s) was %v; want %v", i, tt.enclosing, tt.contained, got, tt.contains)
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}
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}
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}
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func TestRegionCanonicalize(t *testing.T) {
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for i, tt := range []struct{ in, out string }{
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{"UK", "GB"},
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{"TP", "TL"},
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{"QU", "EU"},
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{"SU", "SU"},
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{"VD", "VN"},
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{"DD", "DE"},
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} {
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r := MustParseRegion(tt.in)
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want := MustParseRegion(tt.out)
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if got := r.Canonicalize(); got != want {
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t.Errorf("%d: got %v; want %v", i, got, want)
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}
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}
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}
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func TestRegionTLD(t *testing.T) {
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for _, tt := range []struct {
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in, out string
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ok bool
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}{
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{"EH", "EH", true},
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{"FR", "FR", true},
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{"TL", "TL", true},
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// In ccTLD before in ISO.
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{"GG", "GG", true},
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// Non-standard assignment of ccTLD to ISO code.
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{"GB", "UK", true},
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// Exceptionally reserved in ISO and valid ccTLD.
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{"UK", "UK", true},
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{"AC", "AC", true},
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{"EU", "EU", true},
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{"SU", "SU", true},
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// Exceptionally reserved in ISO and invalid ccTLD.
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{"CP", "ZZ", false},
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{"DG", "ZZ", false},
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{"EA", "ZZ", false},
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{"FX", "ZZ", false},
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{"IC", "ZZ", false},
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{"TA", "ZZ", false},
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// Transitionally reserved in ISO (e.g. deprecated) but valid ccTLD as
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// it is still being phased out.
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{"AN", "AN", true},
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{"TP", "TP", true},
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// Transitionally reserved in ISO (e.g. deprecated) and invalid ccTLD.
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// Defined in package language as it has a mapping in CLDR.
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{"BU", "ZZ", false},
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{"CS", "ZZ", false},
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{"NT", "ZZ", false},
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{"YU", "ZZ", false},
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{"ZR", "ZZ", false},
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// Not defined in package: SF.
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// Indeterminately reserved in ISO.
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// Defined in package language as it has a legacy mapping in CLDR.
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{"DY", "ZZ", false},
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{"RH", "ZZ", false},
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{"VD", "ZZ", false},
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// Not defined in package: EW, FL, JA, LF, PI, RA, RB, RC, RI, RL, RM,
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// RN, RP, WG, WL, WV, and YV.
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// Not assigned in ISO, but legacy definitions in CLDR.
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{"DD", "ZZ", false},
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{"YD", "ZZ", false},
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// Normal mappings but somewhat special status in ccTLD.
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{"BL", "BL", true},
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{"MF", "MF", true},
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{"BV", "BV", true},
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{"SJ", "SJ", true},
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// Have values when normalized, but not as is.
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{"QU", "ZZ", false},
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// ISO Private Use.
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{"AA", "ZZ", false},
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{"QM", "ZZ", false},
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{"QO", "ZZ", false},
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{"XA", "ZZ", false},
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{"XK", "ZZ", false}, // Sometimes used for Kosovo, but invalid ccTLD.
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} {
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if tt.in == "" {
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continue
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}
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r := MustParseRegion(tt.in)
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var want Region
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if tt.out != "ZZ" {
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want = MustParseRegion(tt.out)
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}
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tld, err := r.TLD()
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if got := err == nil; got != tt.ok {
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t.Errorf("error(%v): got %v; want %v", r, got, tt.ok)
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}
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if tld != want {
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t.Errorf("TLD(%v): got %v; want %v", r, tld, want)
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}
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}
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}
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func TestCanonicalize(t *testing.T) {
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// TODO: do a full test using CLDR data in a separate regression test.
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tests := []struct {
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in, out string
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option CanonType
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}{
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{"en-Latn", "en", SuppressScript},
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{"sr-Cyrl", "sr-Cyrl", SuppressScript},
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{"sh", "sr-Latn", Legacy},
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{"sh-HR", "sr-Latn-HR", Legacy},
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{"sh-Cyrl-HR", "sr-Cyrl-HR", Legacy},
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{"tl", "fil", Legacy},
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{"no", "no", Legacy},
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{"no", "nb", Legacy | CLDR},
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{"cmn", "cmn", Legacy},
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{"cmn", "zh", Macro},
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{"cmn-u-co-stroke", "zh-u-co-stroke", Macro},
|
|
{"yue", "yue", Macro},
|
|
{"nb", "no", Macro},
|
|
{"nb", "nb", Macro | CLDR},
|
|
{"no", "no", Macro},
|
|
{"no", "no", Macro | CLDR},
|
|
{"iw", "he", DeprecatedBase},
|
|
{"iw", "he", Deprecated | CLDR},
|
|
{"mo", "ro-MD", Deprecated}, // Adopted by CLDR as of version 25.
|
|
{"alb", "sq", Legacy}, // bibliographic
|
|
{"dut", "nl", Legacy}, // bibliographic
|
|
// As of CLDR 25, mo is no longer considered a legacy mapping.
|
|
{"mo", "mo", Legacy | CLDR},
|
|
{"und-AN", "und-AN", Deprecated},
|
|
{"und-YD", "und-YE", DeprecatedRegion},
|
|
{"und-YD", "und-YD", DeprecatedBase},
|
|
{"und-Qaai", "und-Zinh", DeprecatedScript},
|
|
{"und-Qaai", "und-Qaai", DeprecatedBase},
|
|
{"drh", "mn", All}, // drh -> khk -> mn
|
|
}
|
|
for i, tt := range tests {
|
|
in, _ := Raw.Parse(tt.in)
|
|
in, _ = tt.option.Canonicalize(in)
|
|
if in.String() != tt.out {
|
|
t.Errorf("%d:%s: was %s; want %s", i, tt.in, in.String(), tt.out)
|
|
}
|
|
if int(in.pVariant) > int(in.pExt) || int(in.pExt) > len(in.str) {
|
|
t.Errorf("%d:%s:offsets %d <= %d <= %d must be true", i, tt.in, in.pVariant, in.pExt, len(in.str))
|
|
}
|
|
}
|
|
// Test idempotence.
|
|
for _, base := range Supported.BaseLanguages() {
|
|
tag, _ := Raw.Compose(base)
|
|
got, _ := All.Canonicalize(tag)
|
|
want, _ := All.Canonicalize(got)
|
|
if got != want {
|
|
t.Errorf("idem(%s): got %s; want %s", tag, got, want)
|
|
}
|
|
}
|
|
}
|
|
|
|
func TestTypeForKey(t *testing.T) {
|
|
tests := []struct{ key, in, out string }{
|
|
{"co", "en", ""},
|
|
{"co", "en-u-abc", ""},
|
|
{"co", "en-u-co-phonebk", "phonebk"},
|
|
{"co", "en-u-co-phonebk-cu-aud", "phonebk"},
|
|
{"co", "x-foo-u-co-phonebk", ""},
|
|
{"nu", "en-u-co-phonebk-nu-arabic", "arabic"},
|
|
{"kc", "cmn-u-co-stroke", ""},
|
|
}
|
|
for _, tt := range tests {
|
|
if v := Make(tt.in).TypeForKey(tt.key); v != tt.out {
|
|
t.Errorf("%q[%q]: was %q; want %q", tt.in, tt.key, v, tt.out)
|
|
}
|
|
}
|
|
}
|
|
|
|
func TestSetTypeForKey(t *testing.T) {
|
|
tests := []struct {
|
|
key, value, in, out string
|
|
err bool
|
|
}{
|
|
// replace existing value
|
|
{"co", "pinyin", "en-u-co-phonebk", "en-u-co-pinyin", false},
|
|
{"co", "pinyin", "en-u-co-phonebk-cu-xau", "en-u-co-pinyin-cu-xau", false},
|
|
{"co", "pinyin", "en-u-co-phonebk-v-xx", "en-u-co-pinyin-v-xx", false},
|
|
{"co", "pinyin", "en-u-co-phonebk-x-x", "en-u-co-pinyin-x-x", false},
|
|
{"nu", "arabic", "en-u-co-phonebk-nu-vaai", "en-u-co-phonebk-nu-arabic", false},
|
|
// add to existing -u extension
|
|
{"co", "pinyin", "en-u-ca-gregory", "en-u-ca-gregory-co-pinyin", false},
|
|
{"co", "pinyin", "en-u-ca-gregory-nu-vaai", "en-u-ca-gregory-co-pinyin-nu-vaai", false},
|
|
{"co", "pinyin", "en-u-ca-gregory-v-va", "en-u-ca-gregory-co-pinyin-v-va", false},
|
|
{"co", "pinyin", "en-u-ca-gregory-x-a", "en-u-ca-gregory-co-pinyin-x-a", false},
|
|
{"ca", "gregory", "en-u-co-pinyin", "en-u-ca-gregory-co-pinyin", false},
|
|
// remove pair
|
|
{"co", "", "en-u-co-phonebk", "en", false},
|
|
{"co", "", "en-u-ca-gregory-co-phonebk", "en-u-ca-gregory", false},
|
|
{"co", "", "en-u-co-phonebk-nu-arabic", "en-u-nu-arabic", false},
|
|
{"co", "", "en", "en", false},
|
|
// add -u extension
|
|
{"co", "pinyin", "en", "en-u-co-pinyin", false},
|
|
{"co", "pinyin", "und", "und-u-co-pinyin", false},
|
|
{"co", "pinyin", "en-a-aaa", "en-a-aaa-u-co-pinyin", false},
|
|
{"co", "pinyin", "en-x-aaa", "en-u-co-pinyin-x-aaa", false},
|
|
{"co", "pinyin", "en-v-aa", "en-u-co-pinyin-v-aa", false},
|
|
{"co", "pinyin", "en-a-aaa-x-x", "en-a-aaa-u-co-pinyin-x-x", false},
|
|
{"co", "pinyin", "en-a-aaa-v-va", "en-a-aaa-u-co-pinyin-v-va", false},
|
|
// error on invalid values
|
|
{"co", "pinyinxxx", "en", "en", true},
|
|
{"co", "piny.n", "en", "en", true},
|
|
{"co", "pinyinxxx", "en-a-aaa", "en-a-aaa", true},
|
|
{"co", "pinyinxxx", "en-u-aaa", "en-u-aaa", true},
|
|
{"co", "pinyinxxx", "en-u-aaa-co-pinyin", "en-u-aaa-co-pinyin", true},
|
|
{"co", "pinyi.", "en-u-aaa-co-pinyin", "en-u-aaa-co-pinyin", true},
|
|
{"col", "pinyin", "en", "en", true},
|
|
{"co", "cu", "en", "en", true},
|
|
// error when setting on a private use tag
|
|
{"co", "phonebook", "x-foo", "x-foo", true},
|
|
}
|
|
for i, tt := range tests {
|
|
tag := Make(tt.in)
|
|
if v, err := tag.SetTypeForKey(tt.key, tt.value); v.String() != tt.out {
|
|
t.Errorf("%d:%q[%q]=%q: was %q; want %q", i, tt.in, tt.key, tt.value, v, tt.out)
|
|
} else if (err != nil) != tt.err {
|
|
t.Errorf("%d:%q[%q]=%q: error was %v; want %v", i, tt.in, tt.key, tt.value, err != nil, tt.err)
|
|
} else if val := v.TypeForKey(tt.key); err == nil && val != tt.value {
|
|
t.Errorf("%d:%q[%q]==%q: was %v; want %v", i, tt.out, tt.key, tt.value, val, tt.value)
|
|
}
|
|
if len(tag.String()) <= 3 {
|
|
// Simulate a tag for which the string has not been set.
|
|
tag.str, tag.pExt, tag.pVariant = "", 0, 0
|
|
if tag, err := tag.SetTypeForKey(tt.key, tt.value); err == nil {
|
|
if val := tag.TypeForKey(tt.key); err == nil && val != tt.value {
|
|
t.Errorf("%d:%q[%q]==%q: was %v; want %v", i, tt.out, tt.key, tt.value, val, tt.value)
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
func TestFindKeyAndType(t *testing.T) {
|
|
// out is either the matched type in case of a match or the original
|
|
// string up till the insertion point.
|
|
tests := []struct {
|
|
key string
|
|
hasExt bool
|
|
in, out string
|
|
}{
|
|
// Don't search past a private use extension.
|
|
{"co", false, "en-x-foo-u-co-pinyin", "en"},
|
|
{"co", false, "x-foo-u-co-pinyin", ""},
|
|
{"co", false, "en-s-fff-x-foo", "en-s-fff"},
|
|
// Insertion points in absence of -u extension.
|
|
{"cu", false, "en", ""}, // t.str is ""
|
|
{"cu", false, "en-v-va", "en"},
|
|
{"cu", false, "en-a-va", "en-a-va"},
|
|
{"cu", false, "en-a-va-v-va", "en-a-va"},
|
|
{"cu", false, "en-x-a", "en"},
|
|
// Tags with the -u extension.
|
|
{"co", true, "en-u-co-standard", "standard"},
|
|
{"co", true, "yue-u-co-pinyin", "pinyin"},
|
|
{"co", true, "en-u-co-abc", "abc"},
|
|
{"co", true, "en-u-co-abc-def", "abc-def"},
|
|
{"co", true, "en-u-co-abc-def-x-foo", "abc-def"},
|
|
{"co", true, "en-u-co-standard-nu-arab", "standard"},
|
|
{"co", true, "yue-u-co-pinyin-nu-arab", "pinyin"},
|
|
// Insertion points.
|
|
{"cu", true, "en-u-co-standard", "en-u-co-standard"},
|
|
{"cu", true, "yue-u-co-pinyin-x-foo", "yue-u-co-pinyin"},
|
|
{"cu", true, "en-u-co-abc", "en-u-co-abc"},
|
|
{"cu", true, "en-u-nu-arabic", "en-u"},
|
|
{"cu", true, "en-u-co-abc-def-nu-arabic", "en-u-co-abc-def"},
|
|
}
|
|
for i, tt := range tests {
|
|
start, end, hasExt := Make(tt.in).findTypeForKey(tt.key)
|
|
if start != end {
|
|
res := tt.in[start:end]
|
|
if res != tt.out {
|
|
t.Errorf("%d:%s: was %q; want %q", i, tt.in, res, tt.out)
|
|
}
|
|
} else {
|
|
if hasExt != tt.hasExt {
|
|
t.Errorf("%d:%s: hasExt was %v; want %v", i, tt.in, hasExt, tt.hasExt)
|
|
continue
|
|
}
|
|
if tt.in[:start] != tt.out {
|
|
t.Errorf("%d:%s: insertion point was %q; want %q", i, tt.in, tt.in[:start], tt.out)
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
func TestParent(t *testing.T) {
|
|
tests := []struct{ in, out string }{
|
|
// Strip variants and extensions first
|
|
{"de-u-co-phonebk", "de"},
|
|
{"de-1994", "de"},
|
|
{"de-Latn-1994", "de"}, // remove superfluous script.
|
|
|
|
// Ensure the canonical Tag for an entry is in the chain for base-script
|
|
// pairs.
|
|
{"zh-Hans", "zh"},
|
|
|
|
// Skip the script if it is the maximized version. CLDR files for the
|
|
// skipped tag are always empty.
|
|
{"zh-Hans-TW", "zh"},
|
|
{"zh-Hans-CN", "zh"},
|
|
|
|
// Insert the script if the maximized script is not the same as the
|
|
// maximized script of the base language.
|
|
{"zh-TW", "zh-Hant"},
|
|
{"zh-HK", "zh-Hant"},
|
|
{"zh-Hant-TW", "zh-Hant"},
|
|
{"zh-Hant-HK", "zh-Hant"},
|
|
|
|
// Non-default script skips to und.
|
|
// CLDR
|
|
{"az-Cyrl", "und"},
|
|
{"bs-Cyrl", "und"},
|
|
{"en-Dsrt", "und"},
|
|
{"ha-Arab", "und"},
|
|
{"mn-Mong", "und"},
|
|
{"pa-Arab", "und"},
|
|
{"shi-Latn", "und"},
|
|
{"sr-Latn", "und"},
|
|
{"uz-Arab", "und"},
|
|
{"uz-Cyrl", "und"},
|
|
{"vai-Latn", "und"},
|
|
{"zh-Hant", "und"},
|
|
// extra
|
|
{"nl-Cyrl", "und"},
|
|
|
|
// World english inherits from en-001.
|
|
{"en-150", "en-001"},
|
|
{"en-AU", "en-001"},
|
|
{"en-BE", "en-001"},
|
|
{"en-GG", "en-001"},
|
|
{"en-GI", "en-001"},
|
|
{"en-HK", "en-001"},
|
|
{"en-IE", "en-001"},
|
|
{"en-IM", "en-001"},
|
|
{"en-IN", "en-001"},
|
|
{"en-JE", "en-001"},
|
|
{"en-MT", "en-001"},
|
|
{"en-NZ", "en-001"},
|
|
{"en-PK", "en-001"},
|
|
{"en-SG", "en-001"},
|
|
|
|
// Spanish in Latin-American countries have es-419 as parent.
|
|
{"es-AR", "es-419"},
|
|
{"es-BO", "es-419"},
|
|
{"es-CL", "es-419"},
|
|
{"es-CO", "es-419"},
|
|
{"es-CR", "es-419"},
|
|
{"es-CU", "es-419"},
|
|
{"es-DO", "es-419"},
|
|
{"es-EC", "es-419"},
|
|
{"es-GT", "es-419"},
|
|
{"es-HN", "es-419"},
|
|
{"es-MX", "es-419"},
|
|
{"es-NI", "es-419"},
|
|
{"es-PA", "es-419"},
|
|
{"es-PE", "es-419"},
|
|
{"es-PR", "es-419"},
|
|
{"es-PY", "es-419"},
|
|
{"es-SV", "es-419"},
|
|
{"es-US", "es-419"},
|
|
{"es-UY", "es-419"},
|
|
{"es-VE", "es-419"},
|
|
// exceptions (according to CLDR)
|
|
{"es-CW", "es"},
|
|
|
|
// Inherit from pt-PT, instead of pt for these countries.
|
|
{"pt-AO", "pt-PT"},
|
|
{"pt-CV", "pt-PT"},
|
|
{"pt-GW", "pt-PT"},
|
|
{"pt-MO", "pt-PT"},
|
|
{"pt-MZ", "pt-PT"},
|
|
{"pt-ST", "pt-PT"},
|
|
{"pt-TL", "pt-PT"},
|
|
}
|
|
for _, tt := range tests {
|
|
tag := Raw.MustParse(tt.in)
|
|
if p := Raw.MustParse(tt.out); p != tag.Parent() {
|
|
t.Errorf("%s: was %v; want %v", tt.in, tag.Parent(), p)
|
|
}
|
|
}
|
|
}
|
|
|
|
var (
|
|
// Tags without error that don't need to be changed.
|
|
benchBasic = []string{
|
|
"en",
|
|
"en-Latn",
|
|
"en-GB",
|
|
"za",
|
|
"zh-Hant",
|
|
"zh",
|
|
"zh-HK",
|
|
"ar-MK",
|
|
"en-CA",
|
|
"fr-CA",
|
|
"fr-CH",
|
|
"fr",
|
|
"lv",
|
|
"he-IT",
|
|
"tlh",
|
|
"ja",
|
|
"ja-Jpan",
|
|
"ja-Jpan-JP",
|
|
"de-1996",
|
|
"de-CH",
|
|
"sr",
|
|
"sr-Latn",
|
|
}
|
|
// Tags with extensions, not changes required.
|
|
benchExt = []string{
|
|
"x-a-b-c-d",
|
|
"x-aa-bbbb-cccccccc-d",
|
|
"en-x_cc-b-bbb-a-aaa",
|
|
"en-c_cc-b-bbb-a-aaa-x-x",
|
|
"en-u-co-phonebk",
|
|
"en-Cyrl-u-co-phonebk",
|
|
"en-US-u-co-phonebk-cu-xau",
|
|
"en-nedix-u-co-phonebk",
|
|
"en-t-t0-abcd",
|
|
"en-t-nl-latn",
|
|
"en-t-t0-abcd-x-a",
|
|
}
|
|
// Change, but not memory allocation required.
|
|
benchSimpleChange = []string{
|
|
"EN",
|
|
"i-klingon",
|
|
"en-latn",
|
|
"zh-cmn-Hans-CN",
|
|
"iw-NL",
|
|
}
|
|
// Change and memory allocation required.
|
|
benchChangeAlloc = []string{
|
|
"en-c_cc-b-bbb-a-aaa",
|
|
"en-u-cu-xua-co-phonebk",
|
|
"en-u-cu-xua-co-phonebk-a-cd",
|
|
"en-u-def-abc-cu-xua-co-phonebk",
|
|
"en-t-en-Cyrl-NL-1994",
|
|
"en-t-en-Cyrl-NL-1994-t0-abc-def",
|
|
}
|
|
// Tags that result in errors.
|
|
benchErr = []string{
|
|
// IllFormed
|
|
"x_A.-B-C_D",
|
|
"en-u-cu-co-phonebk",
|
|
"en-u-cu-xau-co",
|
|
"en-t-nl-abcd",
|
|
// Invalid
|
|
"xx",
|
|
"nl-Uuuu",
|
|
"nl-QB",
|
|
}
|
|
benchChange = append(benchSimpleChange, benchChangeAlloc...)
|
|
benchAll = append(append(append(benchBasic, benchExt...), benchChange...), benchErr...)
|
|
)
|
|
|
|
func doParse(b *testing.B, tag []string) {
|
|
for i := 0; i < b.N; i++ {
|
|
// Use the modulo instead of looping over all tags so that we get a somewhat
|
|
// meaningful ns/op.
|
|
Parse(tag[i%len(tag)])
|
|
}
|
|
}
|
|
|
|
func BenchmarkParse(b *testing.B) {
|
|
doParse(b, benchAll)
|
|
}
|
|
|
|
func BenchmarkParseBasic(b *testing.B) {
|
|
doParse(b, benchBasic)
|
|
}
|
|
|
|
func BenchmarkParseError(b *testing.B) {
|
|
doParse(b, benchErr)
|
|
}
|
|
|
|
func BenchmarkParseSimpleChange(b *testing.B) {
|
|
doParse(b, benchSimpleChange)
|
|
}
|
|
|
|
func BenchmarkParseChangeAlloc(b *testing.B) {
|
|
doParse(b, benchChangeAlloc)
|
|
}
|