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adf-codec/src/markdown/parse/inline-content.ts
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lilleman 474e6a2991
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35a - the parser reads the plain flavour and the lift goes
2026-09-28 22:02:55 +02:00

591 lines
26 KiB
TypeScript

import type { AdfMark, AdfNode } from '../../adf/document.ts'
import type { DirectiveSpan, NestedSpans } from '../directive-syntax.ts'
import type { EmphasisPairing } from '../commonmark/emphasis-matching.ts'
import type { Flavour } from '../plain-conventions.ts'
import type { LineContainer } from '../line-container.ts'
import type { LinkDefinition } from '../commonmark/link-syntax.ts'
import { backslashEscape, decodeTextEscapes, inlineHtmlConstruct, readBracketedAutolink, readEmailAutolink, trimTrailingSpace } from '../commonmark/grammar.ts'
import { backtickRun, closingBacktickRun } from '../commonmark/backtick-runs.ts'
import { commonMarkLink, linkHref } from '../mark-spellings.ts'
import { delimiterFlags, isWordCharacter, matchEmphasis, runLength } from '../commonmark/emphasis-matching.ts'
import { editorHighlight, highlightDelimiter } from '../plain-conventions.ts'
import { failure, faulted, success, type ConvertErrorPath, type Result } from '../../result.ts'
import { inlineNodeModel } from '../../adf/inline-nodes.ts'
import { mergeAdjacentText, sameMarks } from '../../adf/editor-normal.ts'
import { noSpans, readInlineDirective } from '../directive-syntax.ts'
import { nodeAttrs, nodeMarks } from '../../adf/document.ts'
import { normalizeLabel, readInlineTarget, readLabel } from '../commonmark/link-syntax.ts'
import { openingLinkTakesDirective } from '../emit/inline-line.ts'
import { readCarriedInline } from '../opaque-carry.ts'
import { readDirectiveMark } from './directive-marks.ts'
import { readInlineDirectiveNode } from './directive-nodes.ts'
import { readTextDirective } from '../text-directive.ts'
export type InlineContent = { carry?: undefined; image: AdfNode; nodes?: undefined } | { carry: boolean; image?: undefined; nodes: AdfNode[] }
export type LinkDefinitions = ReadonlyMap<string, LinkDefinition>
type Bracket = { active: boolean; image: boolean; kind: 'open'; start: number }
type HighlightDelimiter = { closes: boolean; holder: AdfNode; index: number; line: number; opens: boolean; position: number }
type Pairing = EmphasisPairing<Run>
type Piece =
| Bracket
| { kind: 'carry'; node: AdfNode }
| { alt: string; kind: 'image'; node: AdfNode }
| { kind: 'nodes'; nodes: AdfNode[] }
| { canClose: boolean; canOpen: boolean; character: string; kind: 'run'; length: number }
| { closes: boolean; kind: 'highlight'; opens: boolean }
type Run = { canClose: boolean; canOpen: boolean; character: string; index: number; length: number }
// `container` is `undefined` inside a directive's content slot, the emitter's `bracketed`.
type Scan = {
container: LineContainer | undefined
// Pieces below this have been walked for openers to deactivate: an image close folds the link-marked piece into alt text, leaving this the only record that the brackets around it are doomed.
deactivatedBefore: number
definitions: LinkDefinitions
highlights: boolean
openingSpellableLink: boolean
path: ConvertErrorPath
pending: string
pieces: Piece[]
source: string
spans: NestedSpans
}
type SlotContent = { carry: boolean; nodes: AdfNode[] }
const carriedInMark = 'no mark spelling wraps an opaque carry: the carried node restores exactly, marks included'
const hreflessLink = 'the link mark spells its href: this one spells none'
const imageAlone = 'an image fits only as a paragraph of its own: this one sits inside other content'
const linkInLink = 'no link wraps a link: the [content] this one marks already holds one'
const spellableLink = 'link takes the directive form only where CommonMark cannot spell it: this one it can, as [text](url "title") or <url>'
export function parseInlineContent(source: string, definitions: LinkDefinitions, path: ConvertErrorPath, container: LineContainer, flavour: Flavour): Result<InlineContent> {
return parseInline(source, definitions, path, container, noSpans, flavour === 'plain')
}
function parseInline(source: string, definitions: LinkDefinitions, path: ConvertErrorPath, container: LineContainer | undefined, spans: NestedSpans, highlights: boolean): Result<InlineContent> {
const scan: Scan = { container, deactivatedBefore: 0, definitions, highlights, openingSpellableLink: false, path, pending: '', pieces: [], source, spans }
let index = 0
while (index < source.length) {
switch (source.charAt(index)) {
case '<': {
const angle = readAngle(scan, index)
if (!angle.ok) return angle
index = angle.value
break
}
case '!': {
const directive = readDirective(scan, index)
if (directive === undefined) {
index = openBracket(scan, index)
break
}
if (!directive.ok) return directive
index = directive.value
break
}
case '[':
index = openBracket(scan, index)
break
case ']': {
const closed = closeBracket(scan, index)
if (!closed.ok) return closed
index = closed.value
break
}
default:
index = readCharacter(scan, index)
}
}
flush(scan, container !== undefined)
return assemble(scan)
}
function readCharacter(scan: Scan, index: number): number {
switch (scan.source.charAt(index)) {
case '\\':
return readBackslash(scan, index)
case '\n':
return readLineEnding(scan, index)
case '`':
return readBackticks(scan, index)
case '*':
case '_':
case '~':
return readDelimiterRun(scan, index)
case '=':
return readEquals(scan, index)
default:
scan.pending += scan.source.charAt(index)
return index + 1
}
}
function readBackslash(scan: Scan, index: number): number {
if (scan.source.charAt(index + 1) === '\n') {
// CommonMark strips the spaces the two-space break is spelled with, and keeps those before a backslash.
flush(scan, false)
pushNode(scan, { type: 'hardBreak' })
return index + 2
}
const width = backslashEscape(scan.source, index) === undefined ? 1 : 2
scan.pending += scan.source.slice(index, index + width)
return index + width
}
function readLineEnding(scan: Scan, index: number): number {
const hard = scan.pending.endsWith(' ')
flush(scan, true)
if (hard) pushNode(scan, { type: 'hardBreak' })
else scan.pending = ' '
return index + 1
}
function readBackticks(scan: Scan, index: number): number {
const span = readCodeSpan(scan.source, index)
if (span === undefined) {
const run = backtickRun(scan.source, index)
scan.pending += scan.source.slice(index, index + run)
return index + run
}
flush(scan, false)
pushNode(scan, { marks: [{ type: 'code' }], text: span.text, type: 'text' })
return span.end
}
function readAngle(scan: Scan, index: number): Result<number> {
const autolink = readAutolink(scan.source, index)
if (autolink !== undefined) {
flush(scan, false)
pushNode(scan, autolink.node)
return success(index + autolink.length)
}
const construct = inlineHtmlConstruct(scan.source, index)
if (construct !== undefined) return failure('unmappable-html', `no raw HTML converts at this version: ${construct}`, scan.path)
scan.pending += '<'
return success(index + 1)
}
function openBracket(scan: Scan, index: number): number {
const image = scan.source.charAt(index) === '!'
if (image && scan.source.charAt(index + 1) !== '[') {
scan.pending += '!'
return index + 1
}
const width = image ? 2 : 1
flush(scan, false)
scan.pieces.push({ active: true, image, kind: 'open', start: index + width })
return index + width
}
function readDirective(scan: Scan, index: number): Result<number> | undefined {
const held = scan.spans.get(index)
if (held !== undefined) return pushDirective(scan, held, index)
const directive = readInlineDirective(scan.source, index)
if (directive === undefined) return undefined
if (directive.fault !== undefined) return faulted(directive.fault, scan.path)
return pushDirective(scan, directive.value, index)
}
function pushDirective(scan: Scan, span: DirectiveSpan, index: number): Result<number> {
const piece = directivePiece(scan, span, index)
if (!piece.ok) return piece
flush(scan, false)
scan.pieces.push(piece.value)
return success(index + span.length)
}
function directivePiece(scan: Scan, span: DirectiveSpan, index: number): Result<Piece> {
const carried = readCarriedInline(span)
if (carried !== undefined) {
if (carried.fault !== undefined) return faulted(carried.fault, scan.path)
return success({ kind: 'carry', node: carried.value })
}
const text = readTextDirective(span)
if (text?.fault !== undefined) return faulted(text.fault, scan.path)
if (text !== undefined) return success({ kind: 'nodes', nodes: [{ text: text.value, type: 'text' }] })
const slot = slotContent(scan, span)
if (!slot.ok) return slot
const mark = readDirectiveMark(span.name, span.attributes, scan.path)
if (mark !== undefined) return mark.ok ? directiveMarkPiece(scan, span.name, mark.value, slot.value, index) : mark
const node = readInlineDirectiveNode(span.name, span.attributes, slot.value?.nodes, scan.path)
if (!node.ok) return node
return success({ kind: 'nodes', nodes: [node.value] })
}
function directiveMarkPiece(scan: Scan, name: string, mark: AdfMark, slot: SlotContent | undefined, index: number): Result<Piece> {
if (slot === undefined || slot.nodes.length === 0) {
return failure('unsupported-node-shape', `the ${name} mark wraps the [content] it marks: this one wraps none`, scan.path)
}
if (slot.carry) return failure('unsupported-node-shape', carriedInMark, scan.path)
const refused = mark.type === 'link' ? refuseLinkDirective(scan, mark, slot.nodes, index) : undefined
if (refused !== undefined) return refused
return success({ kind: 'nodes', nodes: applyMark(slot.nodes, mark) })
}
// spec/flavour.md, Marks. A link opening a paragraph may still need the directive form for the line it opens, which `assemble` asks the emitter.
function refuseLinkDirective(scan: Scan, mark: AdfMark, nodes: readonly AdfNode[], index: number): Result<Piece> | undefined {
const href = linkHref(nodeAttrs(mark))
if (href === undefined) return failure('unsupported-node-shape', hreflessLink, scan.path)
if (marksLink(nodes)) return failure('unsupported-node-shape', linkInLink, scan.path)
if (commonMarkLink(nodeAttrs(mark), href, nodes, 0, scan.container === undefined) === undefined) return undefined
if (index !== 0 || scan.container !== 'paragraph') return failure('unsupported-node-shape', spellableLink, scan.path)
scan.openingSpellableLink = true
return undefined
}
function slotContent(scan: Scan, span: DirectiveSpan): Result<SlotContent | undefined> {
if (span.content === undefined) return success(undefined)
const parsed = parseInline(span.content, scan.definitions, scan.path, undefined, span.spans, false)
if (!parsed.ok) return parsed
if (parsed.value.image !== undefined) return failure('unmappable-image', imageAlone, scan.path)
return success(parsed.value)
}
function flush(scan: Scan, strip: boolean): void {
const raw = strip ? trimTrailingSpace(scan.pending) : scan.pending
scan.pending = ''
if (raw !== '') scan.pieces.push({ kind: 'nodes', nodes: [{ text: decodeTextEscapes(raw), type: 'text' }] })
}
function pushNode(scan: Scan, node: AdfNode): void {
scan.pieces.push({ kind: 'nodes', nodes: [node] })
}
function assemble(scan: Scan): Result<InlineContent> {
const only = scan.pieces[0]
if (scan.pieces.length === 1 && only?.kind === 'image') return success({ image: only.node })
if (holdsImage(scan.pieces)) return failure('unmappable-image', imageAlone, scan.path)
const nodes = resolveNodes(scan.pieces, scan.path, true)
if (!nodes.ok) return nodes
if (scan.openingSpellableLink) {
const takesDirective = openingLinkTakesDirective(nodes.value, scan.path)
if (!takesDirective.ok) return takesDirective
if (!takesDirective.value) return failure('unsupported-node-shape', spellableLink, scan.path)
}
return success({ carry: holdsCarry(scan.pieces), nodes: nodes.value })
}
function holdsCarry(pieces: readonly Piece[]): boolean {
return pieces.some((piece) => piece.kind === 'carry')
}
function holdsImage(pieces: readonly Piece[]): boolean {
return pieces.some((piece) => piece.kind === 'image')
}
// A carry rides its own piece: the carried node's marks restore with it rather than riding a spelling, so the guard below answers for it.
function holdsLink(pieces: readonly Piece[]): boolean {
return pieces.some((piece) => piece.kind === 'nodes' && marksLink(piece.nodes))
}
function marksLink(nodes: readonly AdfNode[]): boolean {
return nodes.some((node) => nodeMarks(node).some((mark) => mark.type === 'link'))
}
function readDelimiterRun(scan: Scan, index: number): number {
const character = scan.source.charAt(index)
const length = runLength(scan.source, index)
const flags = delimiterFlags(character, scan.source.charAt(index - 1), scan.source.charAt(index + length))
if ((character === '~' && length !== 2) || (!flags.canOpen && !flags.canClose)) scan.pending += scan.source.slice(index, index + length)
else {
flush(scan, false)
scan.pieces.push({ canClose: flags.canClose, canOpen: flags.canOpen, character, kind: 'run', length })
}
return index + length
}
// A delimiter is bounded outside by the code point beyond it, and flanks by the character inside it.
function readEquals(scan: Scan, index: number): number {
if (!scan.highlights || !scan.source.startsWith(highlightDelimiter, index)) {
scan.pending += '='
return index + 1
}
const end = index + highlightDelimiter.length
const before = Array.from(scan.source.slice(Math.max(0, index - 2), index)).at(-1) ?? ''
const after = Array.from(scan.source.slice(end, end + 2))[0] ?? ''
flush(scan, false)
scan.pieces.push({ closes: flanks(before) && !isWordCharacter(after), kind: 'highlight', opens: flanks(after) && !isWordCharacter(before) })
return end
}
function flanks(character: string): boolean {
return character !== '' && !/\s/.test(character)
}
function readAutolink(source: string, index: number): { length: number; node: AdfNode } | undefined {
const bracketed = readBracketedAutolink(source, index)
if (bracketed !== undefined) return { length: bracketed, node: linkedText(source.slice(index + 1, index + bracketed - 1), '') }
const email = readEmailAutolink(source, index)
if (email === undefined) return undefined
return { length: email, node: linkedText(source.slice(index + 1, index + email - 1), 'mailto:') }
}
function linkedText(text: string, scheme: string): AdfNode {
return { marks: [{ attrs: { href: `${scheme}${text}` }, type: 'link' }], text, type: 'text' }
}
function closeBracket(scan: Scan, index: number): Result<number> {
flush(scan, false)
const open = lastBracket(scan.pieces)
if (open === undefined) return success(literalClose(scan, index))
const target = open.bracket.active ? resolveTarget(scan, open.bracket, index) : undefined
if (target === undefined) return success(unopened(scan, open, index))
const inner = scan.pieces.slice(open.index + 1)
if (open.bracket.image) {
const closed = closeImage(scan, open.index, inner, target.definition)
if (!closed.ok) return closed
return success(index + 1 + target.length)
}
const closed = closeLink(scan, open.index, inner, target.definition)
if (!closed.ok) return closed
return success(closed.value ? index + 1 + target.length : unopened(scan, open, index))
}
function literalClose(scan: Scan, index: number): number {
scan.pending += ']'
return index + 1
}
function unopened(scan: Scan, open: { bracket: Bracket; index: number }, index: number): number {
scan.pieces[open.index] = { kind: 'nodes', nodes: bracketNodes(open.bracket) }
return literalClose(scan, index)
}
function bracketNodes(bracket: Bracket): AdfNode[] {
return [{ text: bracket.image ? '![' : '[', type: 'text' }]
}
function lastBracket(pieces: readonly Piece[]): { bracket: Bracket; index: number } | undefined {
for (let index = pieces.length - 1; index >= 0; index -= 1) {
const piece = pieces[index]
if (piece?.kind === 'open') return { bracket: piece, index }
}
return undefined
}
function resolveTarget(scan: Scan, bracket: Bracket, index: number): { definition: LinkDefinition; length: number } | undefined {
const after = index + 1
if (scan.source.charAt(after) === '(') {
const inline = readInlineTarget(scan.source, after)
if (inline !== undefined) return { definition: inline.definition, length: inline.length }
}
const label = scan.source.charAt(after) === '[' ? readLabel(scan.source, after) : undefined
const name = label === undefined || label.value === '' ? scan.source.slice(bracket.start, index) : label.value
const definition = scan.definitions.get(normalizeLabel(name))
if (definition === undefined) return undefined
return { definition, length: label?.length ?? 0 }
}
function closeLink(scan: Scan, at: number, inner: readonly Piece[], definition: LinkDefinition): Result<boolean> {
// Ahead of the guards below: brackets going literal put the image and the carry inside no mark for either to refuse.
if (holdsLink(inner)) {
deactivateOpeners(scan, at)
return success(false)
}
if (holdsImage(inner)) return failure('unmappable-image', imageAlone, scan.path)
if (holdsCarry(inner)) return failure('unsupported-node-shape', carriedInMark, scan.path)
const resolved = resolveNodes(inner, scan.path, true)
if (!resolved.ok) return resolved
const nodes = resolved.value
// An empty link text gives the mark no node to ride, so the brackets stay text.
if (nodes.length === 0) return success(false)
const attrs = definition.title === undefined ? { href: definition.destination } : { href: definition.destination, title: definition.title }
truncatePieces(scan, at)
deactivateOpeners(scan, at)
scan.pieces.push({ kind: 'nodes', nodes: applyMark(nodes, { attrs, type: 'link' }) })
return success(true)
}
// CommonMark: no link nests inside another, though an image's description holds one.
function deactivateOpeners(scan: Scan, before: number): void {
for (let index = scan.deactivatedBefore; index < before; index += 1) {
const piece = scan.pieces[index]
if (piece?.kind === 'open' && !piece.image) piece.active = false
}
scan.deactivatedBefore = before
}
function truncatePieces(scan: Scan, to: number): void {
scan.pieces.length = to
scan.deactivatedBefore = Math.min(scan.deactivatedBefore, to)
}
function closeImage(scan: Scan, at: number, inner: readonly Piece[], definition: LinkDefinition): Result<null> {
if (definition.title !== undefined) return failure('unmappable-image', 'no media node carries a link title', scan.path)
const resolved = imageAlt(inner, scan.path)
if (!resolved.ok) return resolved
const alt = resolved.value
const attrs = alt === '' ? { type: 'external', url: definition.destination } : { alt, type: 'external', url: definition.destination }
truncatePieces(scan, at)
scan.pieces.push({ alt, kind: 'image', node: { attrs: { layout: 'center' }, content: [{ attrs, type: 'media' }], type: 'mediaSingle' } })
return success(null)
}
function imageAlt(inner: readonly Piece[], path: ConvertErrorPath): Result<string> {
const nodes = resolveNodes(inner, path, false)
if (!nodes.ok) return nodes
return success(nodes.value.map(altText).join(''))
}
// spec/flavour.md, The CommonMark image: the description's plain text, the content slot included.
function altText(node: AdfNode): string {
if (node.type === 'hardBreak') return ' '
const slot = inlineNodeModel(node.type)?.textAttribute
const spelled = slot === undefined ? undefined : nodeAttrs(node)[slot]
return typeof spelled === 'string' ? spelled : (node.text ?? '')
}
// An image's alt text is plain, so `highlights` is off there and every `==` stays text.
function resolveNodes(pieces: readonly Piece[], path: ConvertErrorPath, highlights: boolean): Result<AdfNode[]> {
const nodes = pieces.map(pieceNodes)
const runs = delimiterRuns(pieces)
const pairings = matchEmphasis(runs)
writeUnpaired(nodes, runs, pairings)
if (!markPairings(pieces, nodes, pairings)) return failure('unsupported-node-shape', carriedInMark, path)
markHighlights(pieces, nodes, highlights ? pairedHighlights(pieces, nodes) : [])
return success(mergeAdjacentText(nodes.flat()))
}
// Only `imageAlt` reaches the image arm: everywhere else an image amid other content is refused first.
// A highlight delimiter holds an empty text node until it pairs, so the emphasis around it marks it.
function pieceNodes(piece: Piece): AdfNode[] {
switch (piece.kind) {
case 'carry':
return [piece.node]
case 'highlight':
return [{ text: '', type: 'text' }]
case 'image':
return piece.alt === '' ? [] : [{ text: piece.alt, type: 'text' }]
case 'nodes':
return piece.nodes
case 'open':
return bracketNodes(piece)
case 'run':
return []
}
}
function delimiterRuns(pieces: readonly Piece[]): Run[] {
const runs: Run[] = []
for (const [index, piece] of pieces.entries()) {
if (piece.kind === 'run') runs.push({ canClose: piece.canClose, canOpen: piece.canOpen, character: piece.character, index, length: piece.length })
}
return runs
}
// A run gives its delimiters up from the head closing and the tail opening; what is left between them is text.
function writeUnpaired(nodes: AdfNode[][], runs: readonly Run[], pairings: readonly Pairing[]): void {
const heads = new Map<Run, number>()
const tails = new Map<Run, number>()
for (const pairing of pairings) {
heads.set(pairing.closer, pairing.closerOffset + pairing.used)
tails.set(pairing.opener, pairing.openerOffset)
}
for (const run of runs) {
const head = heads.get(run) ?? 0
const tail = tails.get(run) ?? run.length
if (tail > head) nodes[run.index] = [{ text: run.character.repeat(tail - head), type: 'text' }]
}
}
// Innermost pairing first, so prepending leaves the marks array outermost first (spec/flavour.md, Marks).
function markPairings(pieces: readonly Piece[], nodes: AdfNode[][], pairings: readonly Pairing[]): boolean {
for (const pairing of pairings) {
const mark: AdfMark = { type: markType(pairing.opener.character, pairing.used) }
for (let index = pairing.opener.index + 1; index < pairing.closer.index; index += 1) {
if (pieces[index]?.kind === 'carry') return false
nodes[index] = applyMark(nodes[index] ?? [], mark)
}
}
return true
}
function highlightDelimiters(pieces: readonly Piece[], nodes: readonly AdfNode[][]): HighlightDelimiter[] {
const found: HighlightDelimiter[] = []
let line = 0
let position = 0
for (const [index, piece] of pieces.entries()) {
const held = nodes[index] ?? []
const [holder] = held
if (piece.kind === 'highlight' && holder !== undefined) {
found.push({ closes: piece.closes, holder, index, line, opens: piece.opens, position })
position += highlightDelimiter.length
continue
}
for (const node of held) {
if (node.type === 'text') position += node.text?.length ?? 0
else line += 1
}
}
return found
}
// Each opener takes the next closer holding at least one character after it, both in one line and under the same marks.
function pairedHighlights(pieces: readonly Piece[], nodes: readonly AdfNode[][]): { closer: number; opener: number }[] {
const found = highlightDelimiters(pieces, nodes)
const paired: { closer: number; opener: number }[] = []
let closer = 0
let resume = 0
for (const opener of found) {
if (!opener.opens || opener.position < resume) continue
const earliest = opener.position + highlightDelimiter.length + 1
let candidate = found[closer]
while (candidate !== undefined && (!candidate.closes || candidate.position < earliest)) candidate = found[(closer += 1)]
if (candidate === undefined) break
if (candidate.line !== opener.line || !sameMarks(opener.holder, candidate.holder)) continue
paired.push({ closer: candidate.index, opener: opener.index })
resume = candidate.position + highlightDelimiter.length
}
return paired
}
// Atlassian's schema refuses a highlight on code, a node holds one highlight, and a rebuilt node would lose its attributes.
function markHighlights(pieces: readonly Piece[], nodes: AdfNode[][], paired: readonly { closer: number; opener: number }[]): void {
for (const [index, piece] of pieces.entries()) {
if (piece.kind === 'highlight') nodes[index] = (nodes[index] ?? []).map((holder) => ({ ...holder, text: highlightDelimiter }))
}
for (const { closer, opener } of paired) {
nodes[opener] = []
nodes[closer] = []
for (let index = opener + 1; index < closer; index += 1) nodes[index] = (nodes[index] ?? []).map(highlighted)
}
}
function highlighted(node: AdfNode): AdfNode {
const marks = nodeMarks(node)
if (node.type !== 'text' || Object.keys(nodeAttrs(node)).length > 0 || marks.some((mark) => mark.type === 'code' || mark.type === 'backgroundColor')) return node
return { ...node, marks: [editorHighlight, ...marks] }
}
function markType(character: string, used: number): string {
if (character === '~') return 'strike'
return used === 2 ? 'strong' : 'em'
}
// A node cannot carry one mark type twice (docs/decisions.md §No schema validation).
function applyMark(nodes: readonly AdfNode[], mark: AdfMark): AdfNode[] {
return nodes.map((node) => {
const marks = nodeMarks(node)
return marks.some((carried) => carried.type === mark.type) ? node : { ...node, marks: [mark, ...marks] }
})
}
function readCodeSpan(source: string, index: number): { end: number; text: string } | undefined {
const opener = backtickRun(source, index)
const closer = closingBacktickRun(source, index + opener, opener)
if (closer === undefined) return undefined
return { end: closer + opener, text: codeSpanText(source.slice(index + opener, closer)) }
}
function codeSpanText(content: string): string {
const text = content.replaceAll('\n', ' ')
const padded = text.startsWith(' ') && text.endsWith(' ') && /[^ ]/.test(text)
return padded ? text.slice(1, -1) : text
}