mirror of
https://github.com/Luzifer/mondash.git
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244 lines
6.3 KiB
Go
Executable file
244 lines
6.3 KiB
Go
Executable file
// Copyright 2017 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 plural
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import (
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"fmt"
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"io/ioutil"
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"reflect"
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"strconv"
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"golang.org/x/text/internal/catmsg"
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"golang.org/x/text/internal/number"
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"golang.org/x/text/language"
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"golang.org/x/text/message/catalog"
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)
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// TODO: consider deleting this interface. Maybe VisibleDigits is always
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// sufficient and practical.
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// Interface is used for types that can determine their own plural form.
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type Interface interface {
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// PluralForm reports the plural form for the given language of the
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// underlying value. It also returns the integer value. If the integer value
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// is larger than fits in n, PluralForm may return a value modulo
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// 10,000,000.
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PluralForm(t language.Tag, scale int) (f Form, n int)
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}
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// Selectf returns the first case for which its selector is a match for the
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// arg-th substitution argument to a formatting call, formatting it as indicated
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// by format.
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//
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// The cases argument are pairs of selectors and messages. Selectors are of type
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// string or Form. Messages are of type string or catalog.Message. A selector
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// matches an argument if:
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// - it is "other" or Other
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// - it matches the plural form of the argument: "zero", "one", "two", "few",
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// or "many", or the equivalent Form
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// - it is of the form "=x" where x is an integer that matches the value of
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// the argument.
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// - it is of the form "<x" where x is an integer that is larger than the
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// argument.
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//
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// The format argument determines the formatting parameters for which to
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// determine the plural form. This is especially relevant for non-integer
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// values.
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//
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// The format string may be "", in which case a best-effort attempt is made to
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// find a reasonable representation on which to base the plural form. Examples
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// of format strings are:
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// - %.2f decimal with scale 2
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// - %.2e scientific notation with precision 3 (scale + 1)
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// - %d integer
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func Selectf(arg int, format string, cases ...interface{}) catalog.Message {
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var p parser
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// Intercept the formatting parameters of format by doing a dummy print.
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fmt.Fprintf(ioutil.Discard, format, &p)
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m := &message{arg, kindDefault, 0, cases}
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switch p.verb {
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case 'g':
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m.kind = kindPrecision
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m.scale = p.scale
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case 'f':
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m.kind = kindScale
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m.scale = p.scale
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case 'e':
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m.kind = kindScientific
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m.scale = p.scale
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case 'd':
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m.kind = kindScale
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m.scale = 0
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default:
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// TODO: do we need to handle errors?
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}
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return m
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}
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type parser struct {
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verb rune
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scale int
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}
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func (p *parser) Format(s fmt.State, verb rune) {
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p.verb = verb
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p.scale = -1
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if prec, ok := s.Precision(); ok {
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p.scale = prec
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}
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}
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type message struct {
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arg int
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kind int
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scale int
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cases []interface{}
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}
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const (
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// Start with non-ASCII to allow skipping values.
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kindDefault = 0x80 + iota
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kindScale // verb f, number of fraction digits follows
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kindScientific // verb e, number of fraction digits follows
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kindPrecision // verb g, number of significant digits follows
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)
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var handle = catmsg.Register("golang.org/x/text/feature/plural:plural", execute)
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func (m *message) Compile(e *catmsg.Encoder) error {
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e.EncodeMessageType(handle)
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e.EncodeUint(uint64(m.arg))
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e.EncodeUint(uint64(m.kind))
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if m.kind > kindDefault {
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e.EncodeUint(uint64(m.scale))
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}
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forms := validForms(cardinal, e.Language())
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for i := 0; i < len(m.cases); {
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if err := compileSelector(e, forms, m.cases[i]); err != nil {
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return err
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}
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if i++; i >= len(m.cases) {
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return fmt.Errorf("plural: no message defined for selector %v", m.cases[i-1])
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}
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var msg catalog.Message
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switch x := m.cases[i].(type) {
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case string:
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msg = catalog.String(x)
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case catalog.Message:
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msg = x
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default:
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return fmt.Errorf("plural: message of type %T; must be string or catalog.Message", x)
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}
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if err := e.EncodeMessage(msg); err != nil {
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return err
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}
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i++
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}
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return nil
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}
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func compileSelector(e *catmsg.Encoder, valid []Form, selector interface{}) error {
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form := Other
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switch x := selector.(type) {
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case string:
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if x == "" {
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return fmt.Errorf("plural: empty selector")
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}
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if c := x[0]; c == '=' || c == '<' {
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val, err := strconv.ParseUint(x[1:], 10, 16)
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if err != nil {
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return fmt.Errorf("plural: invalid number in selector %q: %v", selector, err)
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}
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e.EncodeUint(uint64(c))
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e.EncodeUint(val)
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return nil
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}
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var ok bool
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form, ok = countMap[x]
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if !ok {
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return fmt.Errorf("plural: invalid plural form %q", selector)
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}
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case Form:
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form = x
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default:
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return fmt.Errorf("plural: selector of type %T; want string or Form", selector)
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}
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ok := false
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for _, f := range valid {
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if f == form {
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ok = true
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break
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}
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}
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if !ok {
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return fmt.Errorf("plural: form %q not supported for language %q", selector, e.Language())
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}
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e.EncodeUint(uint64(form))
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return nil
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}
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func execute(d *catmsg.Decoder) bool {
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lang := d.Language()
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argN := int(d.DecodeUint())
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kind := int(d.DecodeUint())
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scale := -1 // default
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if kind > kindDefault {
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scale = int(d.DecodeUint())
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}
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form := Other
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n := -1
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if arg := d.Arg(argN); arg == nil {
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// Default to Other.
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} else if x, ok := arg.(number.VisibleDigits); ok {
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d := x.Digits(nil, lang, scale)
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form, n = cardinal.matchDisplayDigits(lang, &d)
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} else if x, ok := arg.(Interface); ok {
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// This covers lists and formatters from the number package.
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form, n = x.PluralForm(lang, scale)
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} else {
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var f number.Formatter
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switch kind {
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case kindScale:
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f.InitDecimal(lang)
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f.SetScale(scale)
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case kindScientific:
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f.InitScientific(lang)
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f.SetScale(scale)
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case kindPrecision:
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f.InitDecimal(lang)
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f.SetPrecision(scale)
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case kindDefault:
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// sensible default
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f.InitDecimal(lang)
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if k := reflect.TypeOf(arg).Kind(); reflect.Int <= k && k <= reflect.Uintptr {
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f.SetScale(0)
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} else {
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f.SetScale(2)
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}
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}
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var dec number.Decimal // TODO: buffer in Printer
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dec.Convert(f.RoundingContext, arg)
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v := number.FormatDigits(&dec, f.RoundingContext)
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if !v.NaN && !v.Inf {
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form, n = cardinal.matchDisplayDigits(d.Language(), &v)
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}
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}
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for !d.Done() {
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f := d.DecodeUint()
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if (f == '=' && n == int(d.DecodeUint())) ||
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(f == '<' && 0 <= n && n < int(d.DecodeUint())) ||
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form == Form(f) ||
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Other == Form(f) {
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return d.ExecuteMessage()
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}
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d.SkipMessage()
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}
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return false
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}
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