// // Blackfriday Markdown Processor // Available at http://github.com/russross/blackfriday // // Copyright © 2011 Russ Ross . // Distributed under the Simplified BSD License. // See README.md for details. // // // Functions to parse inline elements. // package blackfriday import ( "bytes" ) // Functions to parse text within a block // Each function returns the number of chars taken care of // data is the complete block being rendered // offset is the number of valid chars before the current cursor func (parser *Parser) parseInline(out *bytes.Buffer, data []byte) { // this is called recursively: enforce a maximum depth if parser.nesting >= parser.maxNesting { return } parser.nesting++ i, end := 0, 0 for i < len(data) { // copy inactive chars into the output for end < len(data) && parser.inline[data[end]] == nil { end++ } if parser.r.NormalText != nil { parser.r.NormalText(out, data[i:end], parser.r.Opaque) } else { out.Write(data[i:end]) } if end >= len(data) { break } i = end // call the trigger handler := parser.inline[data[end]] if consumed := handler(out, parser, data, i); consumed == 0 { // no action from the callback; buffer the byte for later end = i + 1 } else { // skip past whatever the callback used i += consumed end = i } } parser.nesting-- } // single and double emphasis parsing func inlineEmphasis(out *bytes.Buffer, parser *Parser, data []byte, offset int) int { data = data[offset:] c := data[0] ret := 0 if len(data) > 2 && data[1] != c { // whitespace cannot follow an opening emphasis; // strikethrough only takes two characters '~~' if c == '~' || isspace(data[1]) { return 0 } if ret = inlineHelperEmph1(out, parser, data[1:], c); ret == 0 { return 0 } return ret + 1 } if len(data) > 3 && data[1] == c && data[2] != c { if isspace(data[2]) { return 0 } if ret = inlineHelperEmph2(out, parser, data[2:], c); ret == 0 { return 0 } return ret + 2 } if len(data) > 4 && data[1] == c && data[2] == c && data[3] != c { if c == '~' || isspace(data[3]) { return 0 } if ret = inlineHelperEmph3(out, parser, data, 3, c); ret == 0 { return 0 } return ret + 3 } return 0 } func inlineCodeSpan(out *bytes.Buffer, parser *Parser, data []byte, offset int) int { data = data[offset:] nb := 0 // count the number of backticks in the delimiter for nb < len(data) && data[nb] == '`' { nb++ } // find the next delimiter i, end := 0, 0 for end = nb; end < len(data) && i < nb; end++ { if data[end] == '`' { i++ } else { i = 0 } } // no matching delimiter? if i < nb && end >= len(data) { return 0 } // trim outside whitespace fBegin := nb for fBegin < end && (data[fBegin] == ' ' || data[fBegin] == '\t') { fBegin++ } fEnd := end - nb for fEnd > fBegin && (data[fEnd-1] == ' ' || data[fEnd-1] == '\t') { fEnd-- } // render the code span if parser.r.CodeSpan == nil { return 0 } if !parser.r.CodeSpan(out, data[fBegin:fEnd], parser.r.Opaque) { end = 0 } return end } // newline preceded by two spaces becomes
// newline without two spaces works when EXTENSION_HARD_LINE_BREAK is enabled func inlineLineBreak(out *bytes.Buffer, parser *Parser, data []byte, offset int) int { // remove trailing spaces from out outBytes := out.Bytes() end := len(outBytes) eol := end for eol > 0 && (outBytes[eol-1] == ' ' || outBytes[eol-1] == '\t') { eol-- } out.Truncate(eol) // should there be a hard line break here? if parser.flags&EXTENSION_HARD_LINE_BREAK == 0 && end-eol < 2 { return 0 } if parser.r.LineBreak == nil { return 0 } if parser.r.LineBreak(out, parser.r.Opaque) { return 1 } else { return 0 } return 0 } // '[': parse a link or an image func inlineLink(out *bytes.Buffer, parser *Parser, data []byte, offset int) int { // no links allowed inside other links if parser.insideLink { return 0 } isImg := offset > 0 && data[offset-1] == '!' data = data[offset:] i := 1 var title, link []byte textHasNl := false // check whether the correct renderer exists if (isImg && parser.r.Image == nil) || (!isImg && parser.r.Link == nil) { return 0 } // look for the matching closing bracket for level := 1; level > 0 && i < len(data); i++ { switch { case data[i] == '\n': textHasNl = true case data[i-1] == '\\': continue case data[i] == '[': level++ case data[i] == ']': level-- if level <= 0 { i-- // compensate for extra i++ in for loop } } } if i >= len(data) { return 0 } txtE := i i++ // skip any amount of whitespace or newline // (this is much more lax than original markdown syntax) for i < len(data) && isspace(data[i]) { i++ } // inline style link switch { case i < len(data) && data[i] == '(': // skip initial whitespace i++ for i < len(data) && isspace(data[i]) { i++ } linkB := i // look for link end: ' " ) for i < len(data) { if data[i] == '\\' { i += 2 } else { if data[i] == ')' || data[i] == '\'' || data[i] == '"' { break } i++ } } if i >= len(data) { return 0 } linkE := i // look for title end if present titleB, titleE := 0, 0 if data[i] == '\'' || data[i] == '"' { i++ titleB = i for i < len(data) { if data[i] == '\\' { i += 2 } else { if data[i] == ')' { break } i++ } } if i >= len(data) { return 0 } // skip whitespace after title titleE = i - 1 for titleE > titleB && isspace(data[titleE]) { titleE-- } // check for closing quote presence if data[titleE] != '\'' && data[titleE] != '"' { titleB, titleE = 0, 0 linkE = i } } // remove whitespace at the end of the link for linkE > linkB && isspace(data[linkE-1]) { linkE-- } // remove optional angle brackets around the link if data[linkB] == '<' { linkB++ } if data[linkE-1] == '>' { linkE-- } // build escaped link and title if linkE > linkB { link = data[linkB:linkE] } if titleE > titleB { title = data[titleB:titleE] } i++ // reference style link case i < len(data) && data[i] == '[': var id []byte // look for the id i++ linkB := i for i < len(data) && data[i] != ']' { i++ } if i >= len(data) { return 0 } linkE := i // find the reference if linkB == linkE { if textHasNl { var b bytes.Buffer for j := 1; j < txtE; j++ { switch { case data[j] != '\n': b.WriteByte(data[j]) case data[j-1] != ' ': b.WriteByte(' ') } } id = b.Bytes() } else { id = data[1:txtE] } } else { id = data[linkB:linkE] } // find the reference with matching id (ids are case-insensitive) key := string(bytes.ToLower(id)) lr, ok := parser.refs[key] if !ok { return 0 } // keep link and title from reference link = lr.link title = lr.title i++ // shortcut reference style link default: var id []byte // craft the id if textHasNl { var b bytes.Buffer for j := 1; j < txtE; j++ { switch { case data[j] != '\n': b.WriteByte(data[j]) case data[j-1] != ' ': b.WriteByte(' ') } } id = b.Bytes() } else { id = data[1:txtE] } // find the reference with matching id key := string(bytes.ToLower(id)) lr, ok := parser.refs[key] if !ok { return 0 } // keep link and title from reference link = lr.link title = lr.title // rewind the whitespace i = txtE + 1 } // build content: img alt is escaped, link content is parsed var content bytes.Buffer if txtE > 1 { if isImg { content.Write(data[1:txtE]) } else { // links cannot contain other links, so turn off link parsing temporarily insideLink := parser.insideLink parser.insideLink = true parser.parseInline(&content, data[1:txtE]) parser.insideLink = insideLink } } var uLink []byte if len(link) > 0 { var uLinkBuf bytes.Buffer unescapeText(&uLinkBuf, link) uLink = uLinkBuf.Bytes() } // call the relevant rendering function ret := false if isImg { outSize := out.Len() outBytes := out.Bytes() if outSize > 0 && outBytes[outSize-1] == '!' { out.Truncate(outSize - 1) } ret = parser.r.Image(out, uLink, title, content.Bytes(), parser.r.Opaque) } else { ret = parser.r.Link(out, uLink, title, content.Bytes(), parser.r.Opaque) } if ret { return i } return 0 } // '<' when tags or autolinks are allowed func inlineLAngle(out *bytes.Buffer, parser *Parser, data []byte, offset int) int { data = data[offset:] altype := LINK_TYPE_NOT_AUTOLINK end := tagLength(data, &altype) ret := false if end > 2 { switch { case parser.r.AutoLink != nil && altype != LINK_TYPE_NOT_AUTOLINK: var uLink bytes.Buffer unescapeText(&uLink, data[1:end+1-2]) ret = parser.r.AutoLink(out, uLink.Bytes(), altype, parser.r.Opaque) case parser.r.RawHtmlTag != nil: ret = parser.r.RawHtmlTag(out, data[:end], parser.r.Opaque) } } if !ret { return 0 } return end } // '\\' backslash escape var escapeChars = []byte("\\`*_{}[]()#+-.!:|&<>") func inlineEscape(out *bytes.Buffer, parser *Parser, data []byte, offset int) int { data = data[offset:] if len(data) > 1 { if bytes.IndexByte(escapeChars, data[1]) < 0 { return 0 } if parser.r.NormalText != nil { parser.r.NormalText(out, data[1:2], parser.r.Opaque) } else { out.WriteByte(data[1]) } } return 2 } func unescapeText(ob *bytes.Buffer, src []byte) { i := 0 for i < len(src) { org := i for i < len(src) && src[i] != '\\' { i++ } if i > org { ob.Write(src[org:i]) } if i+1 >= len(src) { break } ob.WriteByte(src[i+1]) i += 2 } } // '&' escaped when it doesn't belong to an entity // valid entities are assumed to be anything matching &#?[A-Za-z0-9]+; func inlineEntity(out *bytes.Buffer, parser *Parser, data []byte, offset int) int { data = data[offset:] end := 1 if end < len(data) && data[end] == '#' { end++ } for end < len(data) && isalnum(data[end]) { end++ } if end < len(data) && data[end] == ';' { end++ // real entity } else { return 0 // lone '&' } if parser.r.Entity != nil { parser.r.Entity(out, data[:end], parser.r.Opaque) } else { out.Write(data[:end]) } return end } func inlineAutoLink(out *bytes.Buffer, parser *Parser, data []byte, offset int) int { // quick check to rule out most false hits on ':' if parser.insideLink || len(data) < offset+3 || data[offset+1] != '/' || data[offset+2] != '/' { return 0 } // scan backward for a word boundary rewind := 0 for offset-rewind > 0 && rewind <= 7 && !isspace(data[offset-rewind-1]) && !isspace(data[offset-rewind-1]) { rewind++ } if rewind > 6 { // longest supported protocol is "mailto" which has 6 letters return 0 } origData := data data = data[offset-rewind:] if !isSafeLink(data) { return 0 } linkEnd := 0 for linkEnd < len(data) && !isspace(data[linkEnd]) { linkEnd++ } // Skip punctuation at the end of the link if (data[linkEnd-1] == '.' || data[linkEnd-1] == ',' || data[linkEnd-1] == ';') && data[linkEnd-2] != '\\' { linkEnd-- } // See if the link finishes with a punctuation sign that can be closed. var copen byte switch data[linkEnd-1] { case '"': copen = '"' case '\'': copen = '\'' case ')': copen = '(' case ']': copen = '[' case '}': copen = '{' default: copen = 0 } if copen != 0 { bufEnd := offset - rewind + linkEnd - 2 openDelim := 1 /* Try to close the final punctuation sign in this same line; * if we managed to close it outside of the URL, that means that it's * not part of the URL. If it closes inside the URL, that means it * is part of the URL. * * Examples: * * foo http://www.pokemon.com/Pikachu_(Electric) bar * => http://www.pokemon.com/Pikachu_(Electric) * * foo (http://www.pokemon.com/Pikachu_(Electric)) bar * => http://www.pokemon.com/Pikachu_(Electric) * * foo http://www.pokemon.com/Pikachu_(Electric)) bar * => http://www.pokemon.com/Pikachu_(Electric)) * * (foo http://www.pokemon.com/Pikachu_(Electric)) bar * => foo http://www.pokemon.com/Pikachu_(Electric) */ for bufEnd >= 0 && origData[bufEnd] != '\n' && openDelim != 0 { if origData[bufEnd] == data[linkEnd-1] { openDelim++ } if origData[bufEnd] == copen { openDelim-- } bufEnd-- } if openDelim == 0 { linkEnd-- } } // we were triggered on the ':', so we need to rewind the output a bit if out.Len() >= rewind { out.Truncate(len(out.Bytes()) - rewind) } if parser.r.AutoLink != nil { var uLink bytes.Buffer unescapeText(&uLink, data[:linkEnd]) parser.r.AutoLink(out, uLink.Bytes(), LINK_TYPE_NORMAL, parser.r.Opaque) } return linkEnd - rewind } var validUris = [][]byte{[]byte("http://"), []byte("https://"), []byte("ftp://"), []byte("mailto://")} func isSafeLink(link []byte) bool { for _, prefix := range validUris { // TODO: handle unicode here // case-insensitive prefix test if len(link) > len(prefix) && bytes.Equal(bytes.ToLower(link[:len(prefix)]), prefix) && isalnum(link[len(prefix)]) { return true } } return false } // return the length of the given tag, or 0 is it's not valid func tagLength(data []byte, autolink *int) int { var i, j int // a valid tag can't be shorter than 3 chars if len(data) < 3 { return 0 } // begins with a '<' optionally followed by '/', followed by letter or number if data[0] != '<' { return 0 } if data[1] == '/' { i = 2 } else { i = 1 } if !isalnum(data[i]) { return 0 } // scheme test *autolink = LINK_TYPE_NOT_AUTOLINK // try to find the beginning of an URI for i < len(data) && (isalnum(data[i]) || data[i] == '.' || data[i] == '+' || data[i] == '-') { i++ } if i > 1 && data[i] == '@' { if j = isMailtoAutoLink(data[i:]); j != 0 { *autolink = LINK_TYPE_EMAIL return i + j } } if i > 2 && data[i] == ':' { *autolink = LINK_TYPE_NORMAL i++ } // complete autolink test: no whitespace or ' or " switch { case i >= len(data): *autolink = LINK_TYPE_NOT_AUTOLINK case *autolink != 0: j = i for i < len(data) { if data[i] == '\\' { i += 2 } else { if data[i] == '>' || data[i] == '\'' || data[i] == '"' || isspace(data[i]) { break } else { i++ } } } if i >= len(data) { return 0 } if i > j && data[i] == '>' { return i + 1 } // one of the forbidden chars has been found *autolink = LINK_TYPE_NOT_AUTOLINK } // look for something looking like a tag end for i < len(data) && data[i] != '>' { i++ } if i >= len(data) { return 0 } return i + 1 } // look for the address part of a mail autolink and '>' // this is less strict than the original markdown e-mail address matching func isMailtoAutoLink(data []byte) int { nb := 0 // address is assumed to be: [-@._a-zA-Z0-9]+ with exactly one '@' for i := 0; i < len(data); i++ { if isalnum(data[i]) { continue } switch data[i] { case '@': nb++ case '-', '.', '_': break case '>': if nb == 1 { return i + 1 } else { return 0 } default: return 0 } } return 0 } // look for the next emph char, skipping other constructs func inlineHelperFindEmphChar(data []byte, c byte) int { i := 1 for i < len(data) { for i < len(data) && data[i] != c && data[i] != '`' && data[i] != '[' { i++ } if i >= len(data) { return 0 } if data[i] == c { return i } // do not count escaped chars if i != 0 && data[i-1] == '\\' { i++ continue } if data[i] == '`' { // skip a code span tmpI := 0 i++ for i < len(data) && data[i] != '`' { if tmpI == 0 && data[i] == c { tmpI = i } i++ } if i >= len(data) { return tmpI } i++ } else { if data[i] == '[' { // skip a link tmpI := 0 i++ for i < len(data) && data[i] != ']' { if tmpI == 0 && data[i] == c { tmpI = i } i++ } i++ for i < len(data) && (data[i] == ' ' || data[i] == '\t' || data[i] == '\n') { i++ } if i >= len(data) { return tmpI } if data[i] != '[' && data[i] != '(' { // not a link if tmpI > 0 { return tmpI } else { continue } } cc := data[i] i++ for i < len(data) && data[i] != cc { if tmpI == 0 && data[i] == c { tmpI = i } i++ } if i >= len(data) { return tmpI } i++ } } } return 0 } func inlineHelperEmph1(out *bytes.Buffer, parser *Parser, data []byte, c byte) int { i := 0 if parser.r.Emphasis == nil { return 0 } // skip one symbol if coming from emph3 if len(data) > 1 && data[0] == c && data[1] == c { i = 1 } for i < len(data) { length := inlineHelperFindEmphChar(data[i:], c) if length == 0 { return 0 } i += length if i >= len(data) { return 0 } if i+1 < len(data) && data[i+1] == c { i++ continue } if data[i] == c && !isspace(data[i-1]) { if parser.flags&EXTENSION_NO_INTRA_EMPHASIS != 0 { if !(i+1 == len(data) || isspace(data[i+1]) || ispunct(data[i+1])) { continue } } var work bytes.Buffer parser.parseInline(&work, data[:i]) if parser.r.Emphasis(out, work.Bytes(), parser.r.Opaque) { return i + 1 } else { return 0 } } } return 0 } func inlineHelperEmph2(out *bytes.Buffer, parser *Parser, data []byte, c byte) int { renderMethod := parser.r.DoubleEmphasis if c == '~' { renderMethod = parser.r.StrikeThrough } if renderMethod == nil { return 0 } i := 0 for i < len(data) { length := inlineHelperFindEmphChar(data[i:], c) if length == 0 { return 0 } i += length if i+1 < len(data) && data[i] == c && data[i+1] == c && i > 0 && !isspace(data[i-1]) { var work bytes.Buffer parser.parseInline(&work, data[:i]) if renderMethod(out, work.Bytes(), parser.r.Opaque) { return i + 2 } else { return 0 } } i++ } return 0 } func inlineHelperEmph3(out *bytes.Buffer, parser *Parser, data []byte, offset int, c byte) int { i := 0 origData := data data = data[offset:] for i < len(data) { length := inlineHelperFindEmphChar(data[i:], c) if length == 0 { return 0 } i += length // skip whitespace preceded symbols if data[i] != c || isspace(data[i-1]) { continue } switch { case (i+2 < len(data) && data[i+1] == c && data[i+2] == c && parser.r.TripleEmphasis != nil): // triple symbol found var work bytes.Buffer parser.parseInline(&work, data[:i]) if parser.r.TripleEmphasis(out, work.Bytes(), parser.r.Opaque) { return i + 3 } else { return 0 } case (i+1 < len(data) && data[i+1] == c): // double symbol found, hand over to emph1 length = inlineHelperEmph1(out, parser, origData[offset-2:], c) if length == 0 { return 0 } else { return length - 2 } default: // single symbol found, hand over to emph2 length = inlineHelperEmph2(out, parser, origData[offset-1:], c) if length == 0 { return 0 } else { return length - 1 } } } return 0 }