Pure JavaScript/TypeScript library for multiline text measurement & layout. Fast, accurate & supports all the languages you didn't even know about. Allows rendering to DOM, Canvas and SVG.
Pretext side-steps the need for DOM measurements (e.g. getBoundingClientRect, offsetHeight), which trigger layout reflow, one of the most expensive operations in the browser. It implements its own text measurement logic, using the browsers' own font engine as ground truth (very AI-friendly iteration method).
npm install @chenglou/pretextThe demos are exemplary API usage patterns we encourage you to read. They don't ship in the npm package, so clone the repo, run bun install, then bun start, and open http://localhost:3000/demos in your browser. On Windows, use bun run start:windows.
Alternatively, see them live at chenglou.me/pretext. Some more at somnai-dreams.github.io/pretext-demos
Building a chat or another long list? pages/demos/markdown-chat.md walks through the Markdown chat demo's patterns and when you can skip each.
Pretext serves 2 use cases:
import { prepare, layout } from '@chenglou/pretext'
const prepared = prepare('AGI 春天到了. بدأت الرحلة 🚀', '16px Inter')
const { height, lineCount } = layout(prepared, 320, 20) // pure arithmetic. No DOM layout & reflow!prepare() does the one-time work: normalize whitespace, segment the text at its break opportunities, measure the segments with canvas, and return an opaque handle. layout() is the cheap hot path after that: pure arithmetic over cached widths. Do not rerun prepare() for the same text, font and options; that'd defeat its precomputation. For example, on resize, only rerun layout().
If you want textarea-like text where ordinary spaces, \t tabs, and \n hard breaks stay visible, pass { whiteSpace: 'pre-wrap' } to prepare():
const prepared = prepare(textareaValue, '16px Inter', { whiteSpace: 'pre-wrap' })
const { height } = layout(prepared, textareaWidth, 20)
// Long text edited live: prepare each paragraph apart, keeping its \n, and re-prepare only the one an edit touches
const paragraphs = textareaValue.split(/(?<=\n)/).map(p => prepare(p, '16px Inter', { whiteSpace: 'pre-wrap' }))
const lineCount = paragraphs.reduce((n, p) => n + layout(p, textareaWidth, 20).lineCount, 0)Other prepare() options are { wordBreak: 'keep-all' } for CSS-like word-break: keep-all, and { letterSpacing: n } to match CSS letter-spacing (n is treated as a px value).
The returned height is the crucial last piece for unlocking web UIs:
- proper virtualization/occlusion without guesstimates & caching
- fancy userland layouts: masonry, JS-driven flexbox-like implementations, nudging a few layout values without CSS hacks (imagine that), etc.
- development time verification (especially now with AI) that labels on e.g. buttons don't overflow to the next line, browser-free
- prevent layout shift when new text loads and you wanna re-anchor the scroll position
Switch out prepare with prepareWithSegments, then:
layoutWithLines()gives you all the lines at a fixed width:
import { prepareWithSegments, layoutWithLines } from '@chenglou/pretext'
const prepared = prepareWithSegments('AGI 春天到了. بدأت الرحلة 🚀', '18px "Helvetica Neue"')
const { lines } = layoutWithLines(prepared, 320, 26) // 320px max width, 26px line height
for (let i = 0; i < lines.length; i++) ctx.fillText(lines[i].text, 0, i * 26)measureLineStats()andwalkLineRanges()give you line counts, widths and cursors without building the text strings:
import { measureLineStats, walkLineRanges } from '@chenglou/pretext'
const { lineCount, maxLineWidth } = measureLineStats(prepared, 320)
let maxW = 0
walkLineRanges(prepared, 320, line => { if (line.width > maxW) maxW = line.width })
// maxW is now the widest line — the tightest container width that still fits the text! This multiline "shrink wrap" has been missing from webSize an element to Math.ceil(maxW), as the /demos/bubbles demo does: at the exact fractional width, the browser can wrap the widest line.
layoutNextLineRange()lets you route text one row at a time when width changes as you go:
import { layoutNextLineRange, materializeLineRange, prepareWithSegments, type LayoutCursor } from '@chenglou/pretext'
const prepared = prepareWithSegments(article, BODY_FONT)
let cursor: LayoutCursor = { segmentIndex: 0, graphemeIndex: 0 }
let y = 0
// Flow text around a floated image: lines beside the image are narrower
while (true) {
const width = y < image.bottom ? columnWidth - image.width : columnWidth
const range = layoutNextLineRange(prepared, cursor, width)
if (range === null) break
const line = materializeLineRange(prepared, range)
ctx.fillText(line.text, 0, y)
cursor = range.end
y += 26
}See the /demos/dynamic-layout demo for a richer example.
For hyphenation, insert soft hyphens before calling prepare() or prepareWithSegments(). They stay invisible unless the line breaks there, in which case it ends with -. For mixed-language or user-generated app text, prefer conservative, locale-aware insertion over aggressive pattern hyphenation.
To lay out text with mixed fonts, code spans, mentions, or chips, use @chenglou/pretext/rich-inline:
import { materializeRichInlineLineRange, prepareRichInline, walkRichInlineLineRanges } from '@chenglou/pretext/rich-inline'
const prepared = prepareRichInline([
{ text: 'Ship ', font: '500 17px Inter' },
{ text: '@maya', font: '700 12px Inter', break: 'never', extraWidth: 22 },
{ text: "'s rich-note", font: '500 17px Inter' },
])
walkRichInlineLineRanges(prepared, 320, range => {
const line = materializeRichInlineLineRange(prepared, range)
// each fragment keeps its source item index, text slice, gapBefore, gapItemIndex, and cursors
})Pass a flat list of text items. For white-space: pre-wrap or word-break: keep-all on the paragraph, pass { whiteSpace: 'pre-wrap' } or { wordBreak: 'keep-all' } as the second argument; it applies to every item. In pre-wrap every item but an atomic one keeps its spaces, tabs and newlines: spaces at a line's end hang past it whichever items hold them, tab stops count from the line's start, and a newline ends its line. Paint each line with white-space: pre: a line painted alone in pre-wrap is its paragraph's last line, where spaces at its end hang only if they don't fit and a padded item's end after them can wrap. This is not a general CSS inline formatting engine.
Use-case 1 APIs:
prepare(text: string, font: string, options?: { whiteSpace?: 'normal' | 'pre-wrap', wordBreak?: 'normal' | 'keep-all', letterSpacing?: number }): PreparedText // one-time text analysis + measurement pass, returns an opaque value to pass to `layout()`. Make sure `font` and `letterSpacing` are synced with your CSS for the text you're measuring. `font` is the same format as what you'd use for `myCanvasContext.font = ...`, e.g. `16px Inter`; `letterSpacing` is a CSS pixel value, and must be finite.
layout(prepared: PreparedText, maxWidth: number, lineHeight: number): { height: number, lineCount: number } // calculates text height given a max width and lineHeight. Make sure `lineHeight` is synced with your css `line-height` declaration for the text you're measuring.Use-case 2 APIs:
prepareWithSegments(text: string, font: string, options?: { whiteSpace?: 'normal' | 'pre-wrap', wordBreak?: 'normal' | 'keep-all', letterSpacing?: number }): PreparedTextWithSegments // same as `prepare()`, but returns a richer structure for manual line layout needs
layoutWithLines(prepared: PreparedTextWithSegments, maxWidth: number, lineHeight: number): { height: number, lineCount: number, lines: LayoutLine[] } // high-level api for manual layout needs. Accepts a fixed max width for all lines. Similar to `layout()`'s return, but additionally returns the lines info
walkLineRanges(prepared: PreparedTextWithSegments, maxWidth: number, onLine: (line: LayoutLineRange) => void): number // low-level api for manual layout needs. Accepts a fixed max width for all lines. Calls `onLine` once per line with its actual calculated line width and start/end cursors, without building line text strings. Very useful for certain cases where you wanna speculatively test a few width and height boundaries (e.g. binary search a nice width value by repeatedly calling walkLineRanges and checking the line count, and therefore height, is "nice" too). You can have text messages shrinkwrap and balanced text layout this way. After walkLineRanges calls, you'd call layoutWithLines once, with your satisfying max width, to get the actual lines info.
measureLineStats(prepared: PreparedTextWithSegments, maxWidth: number): { lineCount: number, maxLineWidth: number } // returns only how many lines this width produces, and how wide the widest one is. Avoids line/string allocations.
measureNaturalWidth(prepared: PreparedTextWithSegments): number // Returns the width of the widest line when only explicit line breaks apply.
layoutNextLine(prepared: PreparedTextWithSegments, start: LayoutCursor, maxWidth: number): LayoutLine | null // iterator-like api for laying out each line with a different width! Returns the LayoutLine starting from `start`, or `null` when the paragraph's exhausted. Pass the previous line's `end` cursor as the next `start`.
layoutNextLineRange(prepared: PreparedTextWithSegments, start: LayoutCursor, maxWidth: number): LayoutLineRange | null // same as layoutNextLine(), but without allocating line text strings. Useful for variable-width manual layout, occlusion, and virtualization measurements.
materializeLineRange(prepared: PreparedTextWithSegments, line: LayoutLineRange): LayoutLine // turns a LayoutLineRange from layoutNextLineRange() or walkLineRanges() into a full line with text
type PreparedTextWithSegments = PreparedText & {
segments: string[] // The text split into segments, e.g. ['hello', ' ', 'world']
kinds: SegmentBreakKind[] // Break behavior per segment, e.g. ['text', 'space', 'text']
}
type SegmentBreakKind = 'text' | 'space' | 'preserved-space' | 'tab' | 'zero-width-break' | 'soft-hyphen' | 'zero-width-glue' | 'hard-break' | 'control' // 'space': a collapsible space; 'preserved-space', 'tab' and 'hard-break': a space, tab or newline kept by `pre-wrap`; 'zero-width-break': a zero-width space the line can break after; 'soft-hyphen': a soft hyphen (U+00AD); 'zero-width-glue': a zero-width space or soft hyphen the browser doesn't break after; 'control': in Safari, a next-line character (U+0085), which takes letter spacing of its own
type LineStats = {
lineCount: number // Number of wrapped lines, e.g. 3
maxLineWidth: number // Widest wrapped line, e.g. 192.5
}
type LayoutLine = {
text: string // Full text content of this line, e.g. 'hello world'
width: number // Measured width of this line, e.g. 87.5, leaving out spaces and tabs that hang past its end
start: LayoutCursor // Inclusive start cursor in prepared segments/graphemes
end: LayoutCursor // Exclusive end cursor in prepared segments/graphemes
}
type LayoutLineRange = {
width: number // Measured width of this line, e.g. 87.5, leaving out spaces and tabs that hang past its end
start: LayoutCursor // Inclusive start cursor in prepared segments/graphemes
end: LayoutCursor // Exclusive end cursor in prepared segments/graphemes
}
type LayoutCursor = {
segmentIndex: number // Segment index in `segments`
graphemeIndex: number // Grapheme index within that segment; `0` at segment boundaries
}Helper for rich-text inline flow:
prepareRichInline(items: RichInlineItem[], options?: { whiteSpace?: 'normal' | 'pre-wrap', wordBreak?: 'normal' | 'keep-all' }): PreparedRichInline // prepares the items for layout and, in `white-space: normal`, collapses spaces between them. `whiteSpace` and `wordBreak` are the paragraph's, as in `prepare()`
layoutNextRichInlineLineRange(prepared: PreparedRichInline, maxWidth: number, start?: RichInlineCursor): RichInlineLineRange | null // stream one line of rich-text inline flow at a time without building fragment text strings
walkRichInlineLineRanges(prepared: PreparedRichInline, maxWidth: number, onLine: (line: RichInlineLineRange) => void): number // non-materializing line walker for rich-text inline flow shrinkwrap/stats work
materializeRichInlineLineRange(prepared: PreparedRichInline, line: RichInlineLineRange): RichInlineLine // turns one previously computed rich-inline line range back into full fragment text
measureRichInlineStats(prepared: PreparedRichInline, maxWidth: number): { lineCount: number, maxLineWidth: number } // returns only how many lines this width produces, and how wide the widest one is. Avoids fragment-text allocations.
type RichInlineItem = {
text: string // raw text, including leading/trailing collapsible spaces
font: string // canvas font shorthand for this item
letterSpacing?: number // extra horizontal spacing between graphemes, in CSS px
break?: 'normal' | 'never' // `never` keeps the item atomic (aka on one line), like a chip
extraWidth?: number // extra width around the text, e.g. padding and borders
}
type RichInlineCursor = {
itemIndex: number // Which source RichInlineItem this cursor is currently in
segmentIndex: number // Segment index within that item's prepared text
graphemeIndex: number // Grapheme index within that segment; `0` at segment boundaries
}
type RichInlineFragment = {
itemIndex: number // index back into the original RichInlineItem array
text: string // Text slice for this fragment
gapBefore: number // collapsed space before this fragment, in pixels; 0 when there's none, and negative under letter spacing more negative than the space is wide
gapItemIndex: number // index of the item whose collapsed space gapBefore measures, or -1 when no space precedes this fragment on this line
occupiedWidth: number // text width plus extraWidth
start: LayoutCursor // Start cursor within the item's prepared text
end: LayoutCursor // End cursor within the item's prepared text
}
type RichInlineLine = {
fragments: RichInlineFragment[] // Materialized fragments on this line
width: number // Measured width of this line, including gapBefore/extraWidth
end: RichInlineCursor // Exclusive end cursor for continuing the next line
}
type RichInlineFragmentRange = {
itemIndex: number // index back into the original RichInlineItem array
gapBefore: number // collapsed space before this fragment, in pixels; 0 when there's none, and negative under letter spacing more negative than the space is wide
gapItemIndex: number // index of the item whose collapsed space gapBefore measures, or -1 when no space precedes this fragment on this line
occupiedWidth: number // text width plus extraWidth
start: LayoutCursor // Start cursor within the item's prepared text
end: LayoutCursor // End cursor within the item's prepared text
}
type RichInlineLineRange = {
fragments: RichInlineFragmentRange[] // Non-materialized fragment ownership/ranges on this line
width: number // Measured width of this line, including gapBefore/extraWidth
end: RichInlineCursor // Exclusive end cursor for continuing the next line
}
type RichInlineStats = {
lineCount: number // Number of wrapped lines, e.g. 3
maxLineWidth: number // Widest wrapped line, e.g. 192.5
}Other helpers:
clearCache(): void // clears Pretext's shared internal caches used by prepare(), prepareWithSegments() and prepareRichInline(). Useful if your app cycles through many different fonts or text variants and you want to release the accumulated cache. After a web font loads, call it and prepare that font's text again: widths measured earlier are the fallback font's
setLocale(locale?: string): void // optional (by default we use the page language, from `<html lang>`). Sets locale for future prepare(), prepareWithSegments() and prepareRichInline(). Internally, it also calls clearCache(). Setting a new locale doesn't affect existing prepared states (no mutations to them). A worker has no `<html lang>`, so call it there with the page's `document.documentElement.lang` to give the worker the page's language. Pretext corrects emoji widths by measuring one DOM element, which a worker doesn't have, so in a worker small emoji measure too wide in Chrome and Firefox on macOSNotes:
LayoutCursoris a segment/grapheme cursor, not a raw string offset.- Browsers let the spaces at a line's end run past it without counting toward its width, which CSS calls hanging. A line's
widthleaves out what hangs: all of it where the line wraps, and inpre-wrap, before a newline or at the end of the text, only the part that doesn't fit inmaxWidth. Chrome and Safari hang tabs the same way; Firefox counts them in the width.measureNaturalWidth()still counts spaces before a newline, like CSS max-content. layout()with an empty string returns{ lineCount: 0, height: 0 }. Browsers still size an empty block to oneline-height, so clamp withMath.max(1, lineCount) * lineHeightif you need that behavior.- Pretext doesn't give bidi levels or a visual order. If you're drawing mixed bidi text, like English and Arabic, render each paragraph as one DOM element with its direction set, and the browser orders every line. If you draw lines separately, such as with Canvas
fillText(), each line is ordered as its own paragraph, so numbers or punctuation next to a line break, or bidi controls that span lines (invisible direction characters such as U+202A-U+202E or U+2066-U+2069), can come out in a different order. - A rich-inline fragment's
gapBeforeis a space in the font and letter spacing of itemgapItemIndex: the fragment's own item, the previous fragment's item, or an item holding only whitespace, which gets no fragment. An atomic item's own leading and trailing white space makes no gap, as browsers trim it inside the item's box. Draw the space inside that item's element so it paints at that width. - In
pre-wrap, rich-inline fragments have no gaps: a fragment'stextkeeps its spaces, and itsoccupiedWidth, like the line'swidth, leaves out what hangs at the line's end. An atomic item's own spaces collapse, as in a chip'swhite-space: nowrapbox, so its cursors index its text prepared withoutwhiteSpace. A tab counts eight spaces of its own item's font, as Safari does; Chrome and Firefox count the paragraph's, so a tab inside an item in another font, such as inline code in prose, can land on another stop there. - Segment widths are browser-canvas widths for line breaking, not enough to position individual characters in Arabic or mixed bidi text.
Pretext doesn't try to be a full font rendering engine (yet?). It currently targets the common text setup:
white-space: normalandpre-wrapword-break: normalandkeep-alloverflow-wrap: break-word, which isn't CSS's default: set it on the text you paint. When a word, a run of symbols or akeep-allgroup doesn't fit a line, Pretext breaks it between graphemes, asoverflow-wrap: break-worddoes, where CSS's default would let it overflow.line-break: autoletter-spacingas a numeric pixel value passed toprepare()/prepareWithSegments()- Tabs follow the default browser-style
tab-size: 8 - In
pre-wrap, Pretext treats a lone\ras a line break, but browsers don't. Normalize\rto\nin the text you render, not just the text you measure. system-uiand-apple-systemare unsafe forlayout()accuracy on macOS. Use a named font, by its English family name ("Hiragino Kaku Gothic ProN", not"ヒラギノ角ゴ ProN"or a face name like"Avenir Next Demi Bold"): Firefox resolves localized family names and face names only seconds after it starts, and text measured before then can stay in a fallback font. See the platform bug ledger for the Chrome and Firefox issues.- Page language changes fonts and line breaks, and without
langChrome and Firefox use the browser's or system's language. A generic font likesans-serif, or a character missing from every named font, may use a different font from the one Pretext measures, and curly quotes can wrap differently per language. Setlangon<html>, list a named font for each script your text uses (16px "Helvetica Neue", "PingFang SC", "Geeza Pro", sans-serif), and check in your browser that a painted element's height matcheslayout()'s. Pretext doesn't read an element's ownlang. If you change<html lang>, prepare your text again: existing handles keep the old widths and line-break rules. - Runtime requires Canvas 2D text measurement and Unicode property escapes (
\p{...}), andIntl.Segmenterfor text in Thai, Lao, Khmer, Myanmar and the other Southeast Asian scripts written without spaces. Browsers without these features aren't supported. Without Unicode property escapes, Pretext can't load and throws aSyntaxError; withoutIntl.Segmenter, preparing such text throws. - Pretext uses the canvas
fontstring. Separate CSS settings such asfont-optical-sizing,font-feature-settings, andfont-variation-settingsaren't supported. Variable-font settings only apply when expressed through that string, such as font weight. - Pass font sizes in px. If your CSS sizes text in
remorem, resolve them to px once, higher up in your app (for example, when the root font size changes), and pass that string to Pretext. Firefox measures canvas text at a rounded font size, so a fractional size like13.33pxcan wrap differently there; prefer whole-pixel sizes. - Pretext assumes default font kerning and word spacing. Text painted with a different
font-kerningorword-spacing, including word spacing inherited from the page, can wrap differently. - Chrome and Firefox let people set a minimum font size. Text below it paints at the minimum, while Pretext measures the size you pass. If your app uses small sizes, measure the height of an element with
font-size: 1px; line-height: 1once and pass Pretext the larger size.
See DEVELOPMENT.md for the demo server, engine data and releases.
Sebastian Markbage first planted the seed with text-layout last decade. His design — canvas measureText for shaping, bidi from pdf.js, streaming line breaking — informed the architecture we kept pushing forward here.