Motion is an optional renderer. Core definitions, scene compilation, static SVG, and Canvas do not import a clock or physics solver.
import { motion } from '@tanstack/charts/motion'
const renderer = motion({
transition: { type: 'spring', stiffness: 170, damping: 18, mass: 1 },
})function motion<
TDatum = unknown,
TXValue extends ChartValue = ChartValue,
TYValue extends ChartValue = ChartValue,
>(options?: ChartMotionOptions): ChartRenderer<TDatum, TXValue, TYValue>
interface ChartMotionOptions {
initial?: boolean
transition?: ChartMotionTransition
respectReducedMotion?: boolean
resize?: boolean
}| Option | Default | Meaning |
|---|---|---|
| initial | true | Animate the first client render |
| transition | 1,100 ms tween with the default entrance ease | Renderer-wide fallback |
| respectReducedMotion | true | Snap when prefers-reduced-motion: reduce matches |
| resize | false | Animate updates caused only by a chart size change |
Server-rendered SVG is adopted without replaying entrance motion. Keyed updates start from painted geometry. An interrupted spring carries its sampled value and velocity into the new target. A spring has no duration; it finishes when both restSpeed and restDelta are satisfied, with a 10-second safety limit.
Use the renderer-neutral host in vanilla applications:
import { mountChartRenderer } from '@tanstack/charts/renderer'
import { motion } from '@tanstack/charts/motion'
const host = mountChartRenderer(container, {
definition,
renderer: motion(),
width: 640,
height: 360,
ariaLabel: 'Monthly revenue',
})React and Octane applications use their /core component entry and pass the same renderer. Other adapters currently expose their default SVG surface.
motion on a definition, mark, axis, tick collection, tick-label collection, or axis label is inert policy. The optional renderer consumes it. Definitions remain valid for static SVG and Canvas, which paint the final state.
const definition = defineChart({
motion: {
transition: { type: 'spring', stiffness: 170, damping: 18 },
},
marks: [
lineY(rows, {
id: 'forecast',
x: 'month',
y: 'forecast',
key: 'id',
motion: { transition: { type: 'spring', mass: 1.25 } },
}),
dot(rows, {
x: 'month',
y: 'actual',
key: 'id',
motion(context) {
return {
delay: context.phase === 'enter' ? context.datumIndex * 35 : 0,
}
},
}),
],
x: {
scale: scaleBand,
axis: {
ticks: { motion: { transition: { type: 'tween', duration: 180 } } },
tickLabels: { motion: { delay: 40 } },
},
},
y: { scale: scaleLinear },
})The cascade is renderer default, chart, mark, axis, specific guide, then the active focus-state transition. Same-type transitions inherit omitted fields. An authored delay replaces automatic entrance staggering for that target. Spring updates begin immediately even when a definition returns a delay, so a retarget cannot freeze incoming momentum. Spring enter and exit delays, and tween delays in every phase, are honored.
All built-in marks accept ChartMarkMotionOptions<TDatum>. Nested polar marks also accept motion; their timing is merged below the parent polar mark.
type ChartMotionPhase = 'enter' | 'update' | 'exit'
interface ChartMotionTweenTransition {
type: 'tween'
duration?: number
easing?:
| 'linear'
| 'ease'
| 'ease-in'
| 'ease-out'
| 'ease-in-out'
| ((progress: number) => number)
}
interface ChartMotionSpringTransition extends ChartSpringOptions {
type: 'spring'
}
type ChartMotionTransition =
ChartMotionTweenTransition | ChartMotionSpringTransition
interface ChartMotionTiming {
delay?: number
transition?: ChartMotionTransition
}
type ChartMotionDefinition<TDatum = unknown> =
| ChartMotionTiming
| ((context: ChartMotionContext<TDatum>) => ChartMotionTiming | undefined)
interface ChartMarkMotionOptions<TDatum = unknown> {
motion?: ChartMotionDefinition<TDatum>
}ChartMotionContext provides phase, semantic role, stable key, optional markId, seriesKey, seriesIndex, datumIndex, datumCount, optional typed datum and point, and optional axis. ChartMotionRole covers marks, axes, grid lines, ticks, tick labels, and axis labels.
Focus styles use ChartMarkStateTransition, which is a ChartMotionTransition plus optional respectReducedMotion.
import { createChartSpring } from '@tanstack/charts/spring'
const spring = createChartSpring({ stiffness: 170, damping: 18, mass: 1 })
const sample = spring.sample(16, { from: 0, to: 100, velocity: 0 })interface ChartSpringOptions {
stiffness?: number
damping?: number
mass?: number
restSpeed?: number
restDelta?: number
}
interface ChartSpringState {
from: number
to: number
velocity?: number
}
interface ChartSpringSample {
value: number
velocity: number
done: boolean
}
interface ChartSpring {
readonly options: Readonly<Required<ChartSpringOptions>>
sample(elapsedMs: number, state?: ChartSpringState): ChartSpringSample
}createChartSpring returns an analytic, frame-rate-independent damped harmonic oscillator. Values and velocities use caller units per second. Seed a new ChartSpringState from the prior sample to preserve momentum across targets.