mirror of
https://github.com/golang/go
synced 2024-11-18 15:34:53 -07:00
718875e4f9
Semi-mechanical changes using gofmt -s and honnef.co/go/tools/cmd/gosimple. Change-Id: I41bcf4bea5b16c4776b7cf6534b76aa59b3c022d Reviewed-on: https://go-review.googlesource.com/37447 Reviewed-by: Alan Donovan <adonovan@google.com> Run-TryBot: Brad Fitzpatrick <bradfitz@golang.org> TryBot-Result: Gobot Gobot <gobot@golang.org>
168 lines
3.9 KiB
Go
168 lines
3.9 KiB
Go
// Copyright 2012 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 present
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import (
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"bytes"
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"html"
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"html/template"
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"strings"
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"unicode"
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"unicode/utf8"
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)
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/*
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Fonts are demarcated by an initial and final char bracketing a
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space-delimited word, plus possibly some terminal punctuation.
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The chars are
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_ for italic
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* for bold
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` (back quote) for fixed width.
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Inner appearances of the char become spaces. For instance,
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_this_is_italic_!
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becomes
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<i>this is italic</i>!
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*/
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func init() {
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funcs["style"] = Style
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}
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// Style returns s with HTML entities escaped and font indicators turned into
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// HTML font tags.
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func Style(s string) template.HTML {
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return template.HTML(font(html.EscapeString(s)))
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}
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// font returns s with font indicators turned into HTML font tags.
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func font(s string) string {
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if !strings.ContainsAny(s, "[`_*") {
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return s
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}
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words := split(s)
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var b bytes.Buffer
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Word:
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for w, word := range words {
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if len(word) < 2 {
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continue Word
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}
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if link, _ := parseInlineLink(word); link != "" {
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words[w] = link
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continue Word
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}
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const marker = "_*`"
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// Initial punctuation is OK but must be peeled off.
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first := strings.IndexAny(word, marker)
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if first == -1 {
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continue Word
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}
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// Opening marker must be at the beginning of the token or else preceded by punctuation.
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if first != 0 {
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r, _ := utf8.DecodeLastRuneInString(word[:first])
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if !unicode.IsPunct(r) {
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continue Word
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}
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}
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open, word := word[:first], word[first:]
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char := word[0] // ASCII is OK.
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close := ""
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switch char {
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default:
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continue Word
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case '_':
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open += "<i>"
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close = "</i>"
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case '*':
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open += "<b>"
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close = "</b>"
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case '`':
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open += "<code>"
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close = "</code>"
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}
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// Closing marker must be at the end of the token or else followed by punctuation.
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last := strings.LastIndex(word, word[:1])
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if last == 0 {
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continue Word
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}
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if last+1 != len(word) {
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r, _ := utf8.DecodeRuneInString(word[last+1:])
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if !unicode.IsPunct(r) {
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continue Word
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}
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}
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head, tail := word[:last+1], word[last+1:]
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b.Reset()
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b.WriteString(open)
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var wid int
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for i := 1; i < len(head)-1; i += wid {
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var r rune
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r, wid = utf8.DecodeRuneInString(head[i:])
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if r != rune(char) {
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// Ordinary character.
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b.WriteRune(r)
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continue
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}
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if head[i+1] != char {
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// Inner char becomes space.
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b.WriteRune(' ')
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continue
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}
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// Doubled char becomes real char.
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// Not worth worrying about "_x__".
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b.WriteByte(char)
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wid++ // Consumed two chars, both ASCII.
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}
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b.WriteString(close) // Write closing tag.
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b.WriteString(tail) // Restore trailing punctuation.
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words[w] = b.String()
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}
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return strings.Join(words, "")
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}
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// split is like strings.Fields but also returns the runs of spaces
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// and treats inline links as distinct words.
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func split(s string) []string {
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var (
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words = make([]string, 0, 10)
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start = 0
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)
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// appendWord appends the string s[start:end] to the words slice.
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// If the word contains the beginning of a link, the non-link portion
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// of the word and the entire link are appended as separate words,
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// and the start index is advanced to the end of the link.
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appendWord := func(end int) {
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if j := strings.Index(s[start:end], "[["); j > -1 {
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if _, l := parseInlineLink(s[start+j:]); l > 0 {
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// Append portion before link, if any.
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if j > 0 {
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words = append(words, s[start:start+j])
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}
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// Append link itself.
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words = append(words, s[start+j:start+j+l])
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// Advance start index to end of link.
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start = start + j + l
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return
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}
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}
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// No link; just add the word.
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words = append(words, s[start:end])
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start = end
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}
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wasSpace := false
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for i, r := range s {
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isSpace := unicode.IsSpace(r)
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if i > start && isSpace != wasSpace {
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appendWord(i)
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}
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wasSpace = isSpace
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}
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for start < len(s) {
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appendWord(len(s))
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}
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return words
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}
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