282 lines
6.3 KiB
Go
282 lines
6.3 KiB
Go
// GoToSocial
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// Copyright (C) GoToSocial Authors admin@gotosocial.org
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// SPDX-License-Identifier: AGPL-3.0-or-later
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Affero General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Affero General Public License for more details.
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//
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// You should have received a copy of the GNU Affero General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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package text
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import (
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"fmt"
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"strings"
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"github.com/superseriousbusiness/gotosocial/internal/regexes"
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"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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)
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/*
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MENTION PARSER STUFF
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*/
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// mention fulfils the goldmark
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// ast.Node interface.
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type mention struct {
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ast.BaseInline
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Segment text.Segment
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}
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var kindMention = ast.NewNodeKind("Mention")
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func (n *mention) Kind() ast.NodeKind {
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return kindMention
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}
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func (n *mention) Dump(source []byte, level int) {
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fmt.Printf("%sMention: %s\n", strings.Repeat(" ", level), string(n.Segment.Value(source)))
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}
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// newMention creates a goldmark ast.Node
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// from a text.Segment. The contained segment
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// is used in rendering.
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func newMention(s text.Segment) *mention {
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return &mention{
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BaseInline: ast.BaseInline{},
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Segment: s,
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}
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}
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// mentionParser fulfils the goldmark
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// parser.InlineParser interface.
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type mentionParser struct{}
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// Mention parsing is triggered by the `@` symbol
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// which appears at the beginning of a mention.
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func (p *mentionParser) Trigger() []byte {
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return []byte{'@'}
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}
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func (p *mentionParser) Parse(
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_ ast.Node,
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block text.Reader,
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_ parser.Context,
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) ast.Node {
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// If preceding character is not a valid boundary
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// character, then this cannot be a valid mention.
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if !isMentionBoundary(block.PrecendingCharacter()) {
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return nil
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}
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line, segment := block.PeekLine()
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// Ascertain location of mention in the line
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// that starts with the trigger character.
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loc := regexes.MentionFinder.FindIndex(line)
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if loc == nil || loc[0] != 0 {
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// Noop if not found or
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// not found at start.
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return nil
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}
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// Advance the block to
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// the end of the mention.
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block.Advance(loc[1])
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// mention ast.Node spans from the
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// beginning of this segment up to
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// the last character of the mention.
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return newMention(
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segment.WithStop(
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segment.Start + loc[1],
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),
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)
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}
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/*
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HASHTAG PARSER STUFF
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*/
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// hashtag fulfils the goldmark
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// ast.Node interface.
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type hashtag struct {
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ast.BaseInline
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Segment text.Segment
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}
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var kindHashtag = ast.NewNodeKind("Hashtag")
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func (n *hashtag) Kind() ast.NodeKind {
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return kindHashtag
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}
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func (n *hashtag) Dump(source []byte, level int) {
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fmt.Printf("%sHashtag: %s\n", strings.Repeat(" ", level), string(n.Segment.Value(source)))
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}
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// newHashtag creates a goldmark ast.Node
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// from a text.Segment. The contained segment
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// is used in rendering.
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func newHashtag(s text.Segment) *hashtag {
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return &hashtag{
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BaseInline: ast.BaseInline{},
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Segment: s,
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}
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}
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type hashtagParser struct{}
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// Hashtag parsing is triggered by a '#' symbol
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// which appears at the beginning of a hashtag.
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func (p *hashtagParser) Trigger() []byte {
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return []byte{'#'}
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}
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func (p *hashtagParser) Parse(
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_ ast.Node,
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block text.Reader,
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_ parser.Context,
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) ast.Node {
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// If preceding character is not a valid boundary
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// character, then this cannot be a valid hashtag.
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if !isHashtagBoundary(block.PrecendingCharacter()) {
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return nil
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}
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var (
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line, segment = block.PeekLine()
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lineStr = string(line)
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lineStrLen = len(lineStr)
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)
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if lineStrLen <= 1 {
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// This is probably just
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// a lonely '#' char.
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return nil
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}
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// Iterate through the runes in the detected
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// hashtag string until we reach either:
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// - A weird character (bad).
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// - The end of the hashtag (ok).
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// - The end of the string (also ok).
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for i, r := range lineStr {
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switch {
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case r == '#' && i == 0:
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// Ignore initial '#'.
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continue
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case !isPlausiblyInHashtag(r) &&
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!isHashtagBoundary(r):
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// Weird non-boundary character
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// in the hashtag. Don't trust it.
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return nil
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case isHashtagBoundary(r):
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// Reached closing hashtag
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// boundary. Advance block
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// to the end of the hashtag.
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block.Advance(i)
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// hashtag ast.Node spans from
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// the beginning of this segment
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// up to the boundary character.
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return newHashtag(
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segment.WithStop(
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segment.Start + i,
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),
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)
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}
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}
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// No invalid or boundary characters before the
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// end of the line: it's all hashtag, baby 😎
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//
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// Advance block to the end of the segment.
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block.Advance(segment.Len())
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// hashtag ast.Node spans
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// the entire segment.
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return newHashtag(segment)
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}
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/*
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EMOJI PARSER STUFF
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*/
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// emoji fulfils the goldmark
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// ast.Node interface.
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type emoji struct {
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ast.BaseInline
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Segment text.Segment
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}
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var kindEmoji = ast.NewNodeKind("Emoji")
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func (n *emoji) Kind() ast.NodeKind {
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return kindEmoji
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}
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func (n *emoji) Dump(source []byte, level int) {
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fmt.Printf("%sEmoji: %s\n", strings.Repeat(" ", level), string(n.Segment.Value(source)))
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}
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// newEmoji creates a goldmark ast.Node
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// from a text.Segment. The contained
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// segment is used in rendering.
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func newEmoji(s text.Segment) *emoji {
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return &emoji{
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BaseInline: ast.BaseInline{},
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Segment: s,
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}
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}
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type emojiParser struct{}
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// Emoji parsing is triggered by a ':' char
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// which appears at the start of the emoji.
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func (p *emojiParser) Trigger() []byte {
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return []byte{':'}
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}
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func (p *emojiParser) Parse(
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_ ast.Node,
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block text.Reader,
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_ parser.Context,
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) ast.Node {
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line, segment := block.PeekLine()
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// Ascertain location of emoji in the line
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// that starts with the trigger character.
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loc := regexes.EmojiFinder.FindIndex(line)
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if loc == nil || loc[0] != 0 {
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// Noop if not found or
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// not found at start.
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return nil
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}
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// Advance the block to
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// the end of the emoji.
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block.Advance(loc[1])
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// emoji ast.Node spans from the
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// beginning of this segment up to
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// the last character of the emoji.
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return newEmoji(
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segment.WithStop(
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segment.Start + loc[1],
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),
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)
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}
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