Add function for panning programmatically

This commit is contained in:
Catalin Constantin Mititiuc 2025-03-05 12:14:35 -08:00
parent ad69b0011a
commit ffdf173cda
3 changed files with 78 additions and 46 deletions

View File

@ -1,2 +1,2 @@
export { default as pan } from './src/modules/pan.js';
export { default as pan, programmaticPan } from './src/modules/pan.js';
export { default as zoom } from './src/modules/zoom.js';

View File

@ -2,11 +2,15 @@ import getComputedTransformMatrix from './utils.js';
const minDistanceThreshold = 5;
function mainButtonPressed(e) {
return e.button === 0;
}
function distanceBetween({ x: x1, y: y1 }, { x: x2, y: y2 }) {
return Math.sqrt((x2 - x1) ** 2 + (y2 - y1) ** 2);
}
function minDistanceThresholdIsMet(startPt, endPt) {
function exceedsMinDistanceThreshhold(startPt, endPt) {
return distanceBetween(startPt, endPt) >= minDistanceThreshold;
}
@ -20,45 +24,68 @@ function getTranslateMatrix(startPt, movePt) {
return translateMatrix.translate(movePt.x - startPt.x, movePt.y - startPt.y);
}
export default function (svg, el, e) {
e.preventDefault();
function getTransformMatrices(el) {
return {
computed: getComputedTransformMatrix(el),
inverseScreen: el.getScreenCTM().inverse()
};
}
const mtx = getComputedTransformMatrix(el),
inverseScreenCTM = el.getScreenCTM().inverse();
function clientToSvgPt({ clientX, clientY }, { inverseScreen }, pt = new DOMPoint()) {
pt.x = clientX;
pt.y = clientY;
return pt.matrixTransform(inverseScreen);
}
let startPt = new DOMPoint(e.clientX, e.clientY),
movePt = new DOMPoint(),
isPanning = false;
function setPanTransform(el, { computed }, startPt, endPt) {
el.style.transform = computed.multiply(getTranslateMatrix(startPt, endPt));
}
export function programmaticPan(el, from, to) {
const matrices = getTransformMatrices(el);
const startPt = clientToSvgPt(from, matrices);
const endPt = clientToSvgPt(to, matrices);
el.style.transition = 'transform 0.5s';
setPanTransform(el, matrices, startPt, endPt);
el.addEventListener('transitionend', () => el.style.transition = '', { once: true });
}
export default function (el) {
let matrices, startPt, movePt, isPanning;
function pointerMove(e) {
movePt.x = e.clientX;
movePt.y = e.clientY;
if (!isPanning && minDistanceThresholdIsMet(startPt, movePt)) {
if (!isPanning && exceedsMinDistanceThreshhold(startPt, movePt)) {
isPanning = true;
e.target.setPointerCapture(e.pointerId);
startPt.x = e.clientX;
startPt.y = e.clientY;
startPt = startPt.matrixTransform(inverseScreenCTM);
startPt = clientToSvgPt(e, matrices, startPt);
stopEventPropagationToChildren(el, 'click');
}
if (isPanning) {
movePt.x = e.clientX;
movePt.y = e.clientY;
movePt = movePt.matrixTransform(inverseScreenCTM);
el.style.transform = mtx.multiply(getTranslateMatrix(startPt, movePt));
movePt = clientToSvgPt(e, matrices, movePt);
setPanTransform(el, matrices, startPt, movePt);
}
}
svg.addEventListener('pointermove', pointerMove);
return function(e) {
if (!mainButtonPressed(e)) return;
e.preventDefault();
e.target.setPointerCapture(e.pointerId);
svg.addEventListener(
'pointerup',
() => svg.removeEventListener('pointermove', pointerMove),
{ once: true }
);
isPanning = false;
matrices = getTransformMatrices(el);
startPt = new DOMPoint(e.clientX, e.clientY);
movePt = new DOMPoint();
this.addEventListener('pointermove', pointerMove);
this.addEventListener(
'pointerup',
() => this.removeEventListener('pointermove', pointerMove),
{ once: true }
);
}
}

View File

@ -5,14 +5,17 @@ function zoomIn(deltaY) {
}
function getScale(e, factor) {
return zoomIn(e.deltaY) ? 1 + factor : 1 - factor;
const outMult = 1 - factor;
const inMult = 1 + factor / outMult
return zoomIn(e.deltaY) ? inMult : outMult;
}
function getFocalPointBeforeTransform(el, e, inverseScreenCTM) {
const { x, y, width, height } = el.getBoundingClientRect(),
pointer = (new DOMPoint(e.clientX, e.clientY)).matrixTransform(inverseScreenCTM),
origin = (new DOMPoint(x, y)).matrixTransform(inverseScreenCTM),
terminus = (new DOMPoint(x + width, y + height)).matrixTransform(inverseScreenCTM);
const { x, y, width, height } = el.getBoundingClientRect();
const pointer = (new DOMPoint(e.clientX, e.clientY)).matrixTransform(inverseScreenCTM);
const origin = (new DOMPoint(x, y)).matrixTransform(inverseScreenCTM);
const terminus = (new DOMPoint(x + width, y + height)).matrixTransform(inverseScreenCTM);
return {
x: pointer.x,
@ -25,10 +28,10 @@ function getFocalPointBeforeTransform(el, e, inverseScreenCTM) {
}
function getFocalPointAfterTransform(el, fpBeforeTrans, inverseScreenCTM) {
const { x, y, width, height } = el.getBoundingClientRect(),
origin = (new DOMPoint(x, y)).matrixTransform(inverseScreenCTM),
terminus = (new DOMPoint(x + width, y + height)).matrixTransform(inverseScreenCTM),
relativeFocalPoint = fpBeforeTrans.relativeToImageSize;
const { x, y, width, height } = el.getBoundingClientRect();
const origin = (new DOMPoint(x, y)).matrixTransform(inverseScreenCTM);
const terminus = (new DOMPoint(x + width, y + height)).matrixTransform(inverseScreenCTM);
const relativeFocalPoint = fpBeforeTrans.relativeToImageSize;
return {
x: origin.x + (terminus.x - origin.x) * relativeFocalPoint.x,
@ -37,13 +40,13 @@ function getFocalPointAfterTransform(el, fpBeforeTrans, inverseScreenCTM) {
}
function getTranslateMatrix(el, e, scaleMatrix) {
const inverseScreenCTM = el.getScreenCTM().inverse(),
fpBeforeTrans = getFocalPointBeforeTransform(el, e, inverseScreenCTM);
const inverseScreenCTM = el.getScreenCTM().inverse();
const fpBeforeTrans = getFocalPointBeforeTransform(el, e, inverseScreenCTM);
el.style.transform = scaleMatrix;
const fpAfterTrans = getFocalPointAfterTransform(el, fpBeforeTrans, inverseScreenCTM),
translateMatrix = new DOMMatrix();
const fpAfterTrans = getFocalPointAfterTransform(el, fpBeforeTrans, inverseScreenCTM);
const translateMatrix = new DOMMatrix();
return translateMatrix.translate(
fpBeforeTrans.x - fpAfterTrans.x,
@ -51,12 +54,14 @@ function getTranslateMatrix(el, e, scaleMatrix) {
);
}
export default function (el, e, factor = 0.1) {
e.preventDefault();
export default function (el, factor = 0.1) {
return e => {
e.preventDefault();
const mtx = getComputedTransformMatrix(el),
scale = getScale(e, factor),
transMtx = getTranslateMatrix(el, e, mtx.scale(scale));
const mtx = getComputedTransformMatrix(el);
const scale = getScale(e, factor);
const transMtx = getTranslateMatrix(el, e, mtx.scale(scale));
el.style.transform = mtx.multiply(transMtx).scale(scale);
el.style.transform = mtx.multiply(transMtx).scale(scale);
}
}