mirror of
https://github.com/superseriousbusiness/gotosocial.git
synced 2024-12-25 19:52:11 +00:00
340 lines
10 KiB
Go
340 lines
10 KiB
Go
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package extension
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import (
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"unicode"
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"github.com/yuin/goldmark"
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gast "github.com/yuin/goldmark/ast"
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"github.com/yuin/goldmark/parser"
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"github.com/yuin/goldmark/text"
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"github.com/yuin/goldmark/util"
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)
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var uncloseCounterKey = parser.NewContextKey()
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type unclosedCounter struct {
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Single int
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Double int
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}
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func (u *unclosedCounter) Reset() {
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u.Single = 0
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u.Double = 0
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}
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func getUnclosedCounter(pc parser.Context) *unclosedCounter {
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v := pc.Get(uncloseCounterKey)
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if v == nil {
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v = &unclosedCounter{}
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pc.Set(uncloseCounterKey, v)
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}
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return v.(*unclosedCounter)
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}
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// TypographicPunctuation is a key of the punctuations that can be replaced with
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// typographic entities.
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type TypographicPunctuation int
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const (
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// LeftSingleQuote is '
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LeftSingleQuote TypographicPunctuation = iota + 1
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// RightSingleQuote is '
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RightSingleQuote
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// LeftDoubleQuote is "
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LeftDoubleQuote
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// RightDoubleQuote is "
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RightDoubleQuote
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// EnDash is --
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EnDash
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// EmDash is ---
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EmDash
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// Ellipsis is ...
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Ellipsis
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// LeftAngleQuote is <<
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LeftAngleQuote
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// RightAngleQuote is >>
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RightAngleQuote
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// Apostrophe is '
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Apostrophe
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typographicPunctuationMax
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)
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// An TypographerConfig struct is a data structure that holds configuration of the
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// Typographer extension.
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type TypographerConfig struct {
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Substitutions [][]byte
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}
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func newDefaultSubstitutions() [][]byte {
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replacements := make([][]byte, typographicPunctuationMax)
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replacements[LeftSingleQuote] = []byte("‘")
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replacements[RightSingleQuote] = []byte("’")
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replacements[LeftDoubleQuote] = []byte("“")
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replacements[RightDoubleQuote] = []byte("”")
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replacements[EnDash] = []byte("–")
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replacements[EmDash] = []byte("—")
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replacements[Ellipsis] = []byte("…")
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replacements[LeftAngleQuote] = []byte("«")
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replacements[RightAngleQuote] = []byte("»")
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replacements[Apostrophe] = []byte("’")
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return replacements
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}
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// SetOption implements SetOptioner.
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func (b *TypographerConfig) SetOption(name parser.OptionName, value interface{}) {
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switch name {
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case optTypographicSubstitutions:
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b.Substitutions = value.([][]byte)
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}
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}
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// A TypographerOption interface sets options for the TypographerParser.
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type TypographerOption interface {
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parser.Option
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SetTypographerOption(*TypographerConfig)
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}
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const optTypographicSubstitutions parser.OptionName = "TypographicSubstitutions"
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// TypographicSubstitutions is a list of the substitutions for the Typographer extension.
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type TypographicSubstitutions map[TypographicPunctuation][]byte
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type withTypographicSubstitutions struct {
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value [][]byte
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}
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func (o *withTypographicSubstitutions) SetParserOption(c *parser.Config) {
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c.Options[optTypographicSubstitutions] = o.value
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}
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func (o *withTypographicSubstitutions) SetTypographerOption(p *TypographerConfig) {
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p.Substitutions = o.value
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}
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// WithTypographicSubstitutions is a functional otpion that specify replacement text
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// for punctuations.
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func WithTypographicSubstitutions(values map[TypographicPunctuation][]byte) TypographerOption {
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replacements := newDefaultSubstitutions()
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for k, v := range values {
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replacements[k] = v
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}
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return &withTypographicSubstitutions{replacements}
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}
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type typographerDelimiterProcessor struct {
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}
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func (p *typographerDelimiterProcessor) IsDelimiter(b byte) bool {
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return b == '\'' || b == '"'
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}
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func (p *typographerDelimiterProcessor) CanOpenCloser(opener, closer *parser.Delimiter) bool {
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return opener.Char == closer.Char
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}
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func (p *typographerDelimiterProcessor) OnMatch(consumes int) gast.Node {
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return nil
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}
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var defaultTypographerDelimiterProcessor = &typographerDelimiterProcessor{}
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type typographerParser struct {
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TypographerConfig
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}
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// NewTypographerParser return a new InlineParser that parses
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// typographer expressions.
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func NewTypographerParser(opts ...TypographerOption) parser.InlineParser {
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p := &typographerParser{
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TypographerConfig: TypographerConfig{
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Substitutions: newDefaultSubstitutions(),
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},
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}
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for _, o := range opts {
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o.SetTypographerOption(&p.TypographerConfig)
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}
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return p
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}
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func (s *typographerParser) Trigger() []byte {
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return []byte{'\'', '"', '-', '.', ',', '<', '>', '*', '['}
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}
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func (s *typographerParser) Parse(parent gast.Node, block text.Reader, pc parser.Context) gast.Node {
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line, _ := block.PeekLine()
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c := line[0]
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if len(line) > 2 {
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if c == '-' {
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if s.Substitutions[EmDash] != nil && line[1] == '-' && line[2] == '-' { // ---
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node := gast.NewString(s.Substitutions[EmDash])
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node.SetCode(true)
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block.Advance(3)
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return node
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}
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} else if c == '.' {
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if s.Substitutions[Ellipsis] != nil && line[1] == '.' && line[2] == '.' { // ...
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node := gast.NewString(s.Substitutions[Ellipsis])
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node.SetCode(true)
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block.Advance(3)
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return node
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}
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return nil
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}
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}
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if len(line) > 1 {
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if c == '<' {
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if s.Substitutions[LeftAngleQuote] != nil && line[1] == '<' { // <<
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node := gast.NewString(s.Substitutions[LeftAngleQuote])
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node.SetCode(true)
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block.Advance(2)
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return node
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}
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return nil
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} else if c == '>' {
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if s.Substitutions[RightAngleQuote] != nil && line[1] == '>' { // >>
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node := gast.NewString(s.Substitutions[RightAngleQuote])
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node.SetCode(true)
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block.Advance(2)
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return node
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}
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return nil
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} else if s.Substitutions[EnDash] != nil && c == '-' && line[1] == '-' { // --
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node := gast.NewString(s.Substitutions[EnDash])
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node.SetCode(true)
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block.Advance(2)
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return node
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}
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}
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if c == '\'' || c == '"' {
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before := block.PrecendingCharacter()
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d := parser.ScanDelimiter(line, before, 1, defaultTypographerDelimiterProcessor)
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if d == nil {
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return nil
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}
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counter := getUnclosedCounter(pc)
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if c == '\'' {
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if s.Substitutions[Apostrophe] != nil {
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// Handle decade abbrevations such as '90s
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if d.CanOpen && !d.CanClose && len(line) > 3 && util.IsNumeric(line[1]) && util.IsNumeric(line[2]) && line[3] == 's' {
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after := rune(' ')
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if len(line) > 4 {
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after = util.ToRune(line, 4)
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}
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if len(line) == 3 || util.IsSpaceRune(after) || util.IsPunctRune(after) {
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node := gast.NewString(s.Substitutions[Apostrophe])
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node.SetCode(true)
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block.Advance(1)
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return node
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}
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}
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// special cases: 'twas, 'em, 'net
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if len(line) > 1 && (unicode.IsPunct(before) || unicode.IsSpace(before)) && (line[1] == 't' || line[1] == 'e' || line[1] == 'n' || line[1] == 'l') {
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node := gast.NewString(s.Substitutions[Apostrophe])
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node.SetCode(true)
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block.Advance(1)
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return node
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}
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// Convert normal apostrophes. This is probably more flexible than necessary but
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// converts any apostrophe in between two alphanumerics.
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if len(line) > 1 && (unicode.IsDigit(before) || unicode.IsLetter(before)) && (unicode.IsLetter(util.ToRune(line, 1))) {
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node := gast.NewString(s.Substitutions[Apostrophe])
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node.SetCode(true)
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block.Advance(1)
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return node
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}
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}
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if s.Substitutions[LeftSingleQuote] != nil && d.CanOpen && !d.CanClose {
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nt := LeftSingleQuote
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// special cases: Alice's, I'm, Don't, You'd
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if len(line) > 1 && (line[1] == 's' || line[1] == 'm' || line[1] == 't' || line[1] == 'd') && (len(line) < 3 || util.IsPunct(line[2]) || util.IsSpace(line[2])) {
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nt = RightSingleQuote
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}
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// special cases: I've, I'll, You're
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if len(line) > 2 && ((line[1] == 'v' && line[2] == 'e') || (line[1] == 'l' && line[2] == 'l') || (line[1] == 'r' && line[2] == 'e')) && (len(line) < 4 || util.IsPunct(line[3]) || util.IsSpace(line[3])) {
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nt = RightSingleQuote
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}
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if nt == LeftSingleQuote {
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counter.Single++
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}
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node := gast.NewString(s.Substitutions[nt])
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node.SetCode(true)
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block.Advance(1)
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return node
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}
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if s.Substitutions[RightSingleQuote] != nil {
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// plural possesives and abbreviations: Smiths', doin'
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if len(line) > 1 && unicode.IsSpace(util.ToRune(line, 0)) || unicode.IsPunct(util.ToRune(line, 0)) && (len(line) > 2 && !unicode.IsDigit(util.ToRune(line, 1))) {
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node := gast.NewString(s.Substitutions[RightSingleQuote])
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node.SetCode(true)
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block.Advance(1)
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return node
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}
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}
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if s.Substitutions[RightSingleQuote] != nil && counter.Single > 0 {
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isClose := d.CanClose && !d.CanOpen
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maybeClose := d.CanClose && d.CanOpen && len(line) > 1 && unicode.IsPunct(util.ToRune(line, 1)) && (len(line) == 2 || (len(line) > 2 && util.IsPunct(line[2]) || util.IsSpace(line[2])))
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if isClose || maybeClose {
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node := gast.NewString(s.Substitutions[RightSingleQuote])
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node.SetCode(true)
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block.Advance(1)
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counter.Single--
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return node
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}
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}
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}
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if c == '"' {
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if s.Substitutions[LeftDoubleQuote] != nil && d.CanOpen && !d.CanClose {
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node := gast.NewString(s.Substitutions[LeftDoubleQuote])
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node.SetCode(true)
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block.Advance(1)
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counter.Double++
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return node
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}
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if s.Substitutions[RightDoubleQuote] != nil && counter.Double > 0 {
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isClose := d.CanClose && !d.CanOpen
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maybeClose := d.CanClose && d.CanOpen && len(line) > 1 && (unicode.IsPunct(util.ToRune(line, 1))) && (len(line) == 2 || (len(line) > 2 && util.IsPunct(line[2]) || util.IsSpace(line[2])))
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if isClose || maybeClose {
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// special case: "Monitor 21""
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if len(line) > 1 && line[1] == '"' && unicode.IsDigit(before) {
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return nil
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}
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node := gast.NewString(s.Substitutions[RightDoubleQuote])
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node.SetCode(true)
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block.Advance(1)
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counter.Double--
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return node
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}
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}
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}
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}
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return nil
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}
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func (s *typographerParser) CloseBlock(parent gast.Node, pc parser.Context) {
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getUnclosedCounter(pc).Reset()
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}
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type typographer struct {
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options []TypographerOption
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}
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// Typographer is an extension that replaces punctuations with typographic entities.
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var Typographer = &typographer{}
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// NewTypographer returns a new Extender that replaces punctuations with typographic entities.
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func NewTypographer(opts ...TypographerOption) goldmark.Extender {
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return &typographer{
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options: opts,
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}
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}
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func (e *typographer) Extend(m goldmark.Markdown) {
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m.Parser().AddOptions(parser.WithInlineParsers(
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util.Prioritized(NewTypographerParser(e.options...), 9999),
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))
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}
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