"use strict"; (function ($) { const clamp = (value, min, max) => Math.min(Math.max(value, min), max); const parseOptions = (root) => { if (!root || !root.dataset) { return {}; } try { return JSON.parse(root.dataset.options || "{}"); } catch (e) { return {}; } }; const getCurve = (preset) => { switch (preset) { case "linear": return (t) => t; case "ease-out": return (t) => 1 - Math.pow(1 - t, 3); case "gaussian": return (t) => { const raw = Math.exp(-Math.pow(1 - t, 2) * 4); const min = Math.exp(-4); return (raw - min) / (1 - min); }; case "snappy": return (t) => 1 - Math.pow(1 - t, 3); case "calm": return (t) => t * t; case "smooth": default: return (t) => 1 - Math.pow(1 - t, 2); } }; const isEnabled = (value, fallback = false) => { if (value === undefined || value === null || value === "") { return fallback; } if (value === true || value === "yes" || value === "1" || value === 1) { return true; } if (value === false || value === "no" || value === "0" || value === 0) { return false; } return fallback; }; const normalizeOptions = (raw = {}) => { return { enabled: isEnabled(raw.enabled, true), strength: clamp(Number(raw.strength) || 0, 0, 100), radius: Math.max(Number(raw.radius) || 0, 0), maxOffset: Math.max(Number(raw.maxOffset) || 0, 0), returnSpeed: clamp(Number(raw.returnSpeed) || 0, 0, 100), curve: raw.curve || raw.easing || "smooth", axisX: isEnabled(raw.axisX, true), axisY: isEnabled(raw.axisY, true), damping: clamp(Number(raw.damping) || 0, 0, 1), triggerMode: raw.triggerMode || "bounds", triggerPadding: Math.max(Number(raw.triggerPadding) || 0, 0), boundary: raw.boundary || "none", boundaryWidth: Math.max(Number(raw.boundaryWidth) || 0, 0), boundaryHeight: Math.max(Number(raw.boundaryHeight) || 0, 0), edgeResistance: clamp(Number(raw.edgeResistance) || 0, 0, 100), overshoot: isEnabled(raw.overshoot, false), innerEnabled: isEnabled(raw.innerEnabled, false), innerStrength: clamp(Number(raw.innerStrength) || 0, 0, 100), innerMaxOffset: Math.max(Number(raw.innerMaxOffset) || 0, 0), reducedMotionMode: raw.reducedMotionMode || "respect", touchBehavior: raw.touchBehavior || "off", editorPreview: isEnabled(raw.editorPreview, true), pauseOffscreen: isEnabled(raw.pauseOffscreen, false), selector: typeof raw.selector === "string" ? raw.selector.trim() : "", innerSelector: typeof raw.innerSelector === "string" ? raw.innerSelector.trim() : "", }; }; const resolveTargets = (root, options) => { const targetType = root.dataset.target || "button"; const selectorMap = { button: ".king-addons-magnetic-buttons__button", card: ".king-addons-magnetic-buttons__card", icon: ".king-addons-magnetic-buttons__icon-target", }; if (targetType === "selector") { const selector = options.selector || root.dataset.selector || ""; if (!selector) { return []; } let targets = Array.from(root.querySelectorAll(selector)); if (!targets.length) { targets = Array.from(document.querySelectorAll(selector)); } return targets; } const selector = selectorMap[targetType] || selectorMap.button; return Array.from(root.querySelectorAll(selector)); }; const initMagneticTarget = (root, target, targetType, options) => { if (!target) { return; } if (target.__kaMagneticInstance && typeof target.__kaMagneticInstance.destroy === "function") { target.__kaMagneticInstance.destroy(); } if (!options.enabled) { return; } const isEditor = window.elementorFrontend && elementorFrontend.isEditMode && elementorFrontend.isEditMode(); if (isEditor && !options.editorPreview) { return; } const prefersReduced = window.matchMedia && window.matchMedia("(prefers-reduced-motion: reduce)").matches; if (options.reducedMotionMode === "disable") { return; } let motionFactor = 1; if (prefersReduced) { if (options.reducedMotionMode === "respect") { return; } if (options.reducedMotionMode === "minimal") { motionFactor *= 0.4; } } const isCoarsePointer = window.matchMedia && window.matchMedia("(hover: none), (pointer: coarse)").matches; const allowTouch = options.touchBehavior !== "off"; const isTouchReduced = options.touchBehavior === "reduced"; if (isCoarsePointer && !allowTouch) { return; } if (isCoarsePointer && isTouchReduced) { motionFactor *= 0.6; } const strength = clamp((options.strength / 100) * motionFactor, 0, 1); const radius = Math.max(options.radius, 0); const maxOffset = Math.max(options.maxOffset * motionFactor, 0); const returnSpeed = clamp(options.returnSpeed / 100, 0, 1); if (!strength || !radius || !maxOffset) { return; } target.dataset.magneticInit = "yes"; const curve = getCurve(options.curve); const edgeResistance = clamp(options.edgeResistance / 100, 0, 1); const damping = clamp(options.damping, 0, 1); const speed = clamp(0.06 + returnSpeed * 0.24, 0.05, 0.35); const lerpSpeed = clamp(speed * (1 - damping * 0.6) + 0.02, 0.02, 0.4); const springStiffness = clamp(0.04 + returnSpeed * 0.2, 0.04, 0.3); const springDamping = clamp(0.12 + damping * 0.5, 0.12, 0.8); const innerSelectors = { button: ".king-addons-magnetic-buttons__content", card: ".king-addons-magnetic-buttons__card-inner", icon: ".king-addons-magnetic-buttons__icon-inner", }; const innerSelector = options.innerSelector || innerSelectors[targetType] || ""; const innerTarget = options.innerEnabled && innerSelector ? target.querySelector(innerSelector) : null; const innerStrength = clamp(options.innerStrength / 100, 0, 1); const innerMaxOffset = Math.max(options.innerMaxOffset, 0); const frameInterval = isEditor ? 1000 / 30 : 0; let currentX = 0; let currentY = 0; let targetX = 0; let targetY = 0; let innerX = 0; let innerY = 0; let targetInnerX = 0; let targetInnerY = 0; let velocityX = 0; let velocityY = 0; let innerVelocityX = 0; let innerVelocityY = 0; let rafId = 0; let lastFrame = 0; let isHovering = false; let isPressed = false; let isVisible = true; const applyTransform = () => { target.style.transform = `translate3d(${currentX}px, ${currentY}px, 0)`; if (innerTarget) { innerTarget.style.transform = `translate3d(${innerX}px, ${innerY}px, 0)`; } }; const resetTargets = () => { targetX = 0; targetY = 0; targetInnerX = 0; targetInnerY = 0; }; const getBoundaryRect = (rect) => { if (options.boundary === "parent") { const parent = target.parentElement || root; return parent ? parent.getBoundingClientRect() : null; } if (options.boundary === "custom") { const width = options.boundaryWidth; const height = options.boundaryHeight; if (!width || !height) { return null; } const centerX = rect.left + rect.width / 2; const centerY = rect.top + rect.height / 2; return { left: centerX - width / 2, right: centerX + width / 2, top: centerY - height / 2, bottom: centerY + height / 2, }; } return null; }; const applyBoundaryClamp = (rect) => { if (options.boundary === "none") { return; } const boundary = getBoundaryRect(rect); if (!boundary) { return; } const minX = boundary.left - rect.left; const maxX = boundary.right - rect.right; const minY = boundary.top - rect.top; const maxY = boundary.bottom - rect.bottom; targetX = clamp(targetX, Math.min(minX, maxX), Math.max(minX, maxX)); targetY = clamp(targetY, Math.min(minY, maxY), Math.max(minY, maxY)); }; const updateTarget = (clientX, clientY) => { const rect = target.getBoundingClientRect(); const centerX = rect.left + rect.width / 2; const centerY = rect.top + rect.height / 2; let dx = clientX - centerX; let dy = clientY - centerY; if (!options.axisX) { dx = 0; } if (!options.axisY) { dy = 0; } const distance = Math.sqrt(dx * dx + dy * dy); if (!radius || distance > radius) { resetTargets(); return; } const closeness = 1 - clamp(distance / radius, 0, 1); const edgeFactor = 1 - edgeResistance * (1 - closeness); const pull = curve(closeness) * strength * clamp(edgeFactor, 0, 1); const limitedOffset = Math.min(maxOffset, radius); targetX = clamp(dx * pull, -limitedOffset, limitedOffset); targetY = clamp(dy * pull, -limitedOffset, limitedOffset); applyBoundaryClamp(rect); if (innerTarget && innerStrength && innerMaxOffset) { const innerPull = curve(closeness) * innerStrength; const innerLimited = Math.min(innerMaxOffset, radius); targetInnerX = clamp(dx * innerPull, -innerLimited, innerLimited); targetInnerY = clamp(dy * innerPull, -innerLimited, innerLimited); } }; const isWithinTriggerArea = (clientX, clientY) => { const rect = target.getBoundingClientRect(); if (options.triggerMode === "radius") { const centerX = rect.left + rect.width / 2; const centerY = rect.top + rect.height / 2; const dx = clientX - centerX; const dy = clientY - centerY; return Math.sqrt(dx * dx + dy * dy) <= radius; } if (options.triggerMode === "padding") { const padding = options.triggerPadding; return ( clientX >= rect.left - padding && clientX <= rect.right + padding && clientY >= rect.top - padding && clientY <= rect.bottom + padding ); } return ( clientX >= rect.left && clientX <= rect.right && clientY >= rect.top && clientY <= rect.bottom ); }; const animate = (timestamp) => { if (frameInterval && timestamp - lastFrame < frameInterval) { rafId = window.requestAnimationFrame(animate); return; } lastFrame = timestamp; if (options.overshoot) { velocityX += (targetX - currentX) * springStiffness; velocityY += (targetY - currentY) * springStiffness; velocityX *= 1 - springDamping; velocityY *= 1 - springDamping; currentX += velocityX; currentY += velocityY; } else { currentX += (targetX - currentX) * lerpSpeed; currentY += (targetY - currentY) * lerpSpeed; } if (innerTarget) { if (options.overshoot) { innerVelocityX += (targetInnerX - innerX) * springStiffness; innerVelocityY += (targetInnerY - innerY) * springStiffness; innerVelocityX *= 1 - springDamping; innerVelocityY *= 1 - springDamping; innerX += innerVelocityX; innerY += innerVelocityY; } else { innerX += (targetInnerX - innerX) * lerpSpeed; innerY += (targetInnerY - innerY) * lerpSpeed; } } if (Math.abs(targetX - currentX) < 0.05) { currentX = targetX; } if (Math.abs(targetY - currentY) < 0.05) { currentY = targetY; } if (innerTarget) { if (Math.abs(targetInnerX - innerX) < 0.05) { innerX = targetInnerX; } if (Math.abs(targetInnerY - innerY) < 0.05) { innerY = targetInnerY; } } applyTransform(); const isSettled = !isHovering && !isPressed && currentX === 0 && currentY === 0 && (!innerTarget || (innerX === 0 && innerY === 0)); if (isSettled) { rafId = 0; return; } rafId = window.requestAnimationFrame(animate); }; const start = () => { if (!rafId) { rafId = window.requestAnimationFrame(animate); } }; const onPointerEnter = (event) => { if (!isVisible) { return; } if (event.pointerType === "touch" && !allowTouch) { return; } isHovering = true; updateTarget(event.clientX, event.clientY); start(); }; const onPointerMove = (event) => { if (!isVisible || isPressed) { return; } if (event.pointerType === "touch" && !allowTouch) { return; } updateTarget(event.clientX, event.clientY); start(); }; const onPointerLeave = () => { isHovering = false; resetTargets(); start(); }; const onPointerMoveWindow = (event) => { if (!isVisible || isPressed) { return; } if (event.pointerType === "touch" && !allowTouch) { return; } const inside = isWithinTriggerArea(event.clientX, event.clientY); if (inside) { isHovering = true; updateTarget(event.clientX, event.clientY); start(); return; } if (isHovering) { isHovering = false; resetTargets(); start(); } }; const onPointerDown = (event) => { if (event.pointerType === "touch") { return; } isPressed = true; resetTargets(); start(); }; const onPointerUp = () => { if (!isPressed) { return; } isPressed = false; resetTargets(); start(); }; const onFocus = () => { isHovering = false; isPressed = false; currentX = 0; currentY = 0; innerX = 0; innerY = 0; resetTargets(); applyTransform(); }; if (options.triggerMode === "bounds") { target.addEventListener("pointerenter", onPointerEnter); target.addEventListener("pointermove", onPointerMove); target.addEventListener("pointerleave", onPointerLeave); } else { window.addEventListener("pointermove", onPointerMoveWindow); } target.addEventListener("pointerdown", onPointerDown); window.addEventListener("pointerup", onPointerUp); target.addEventListener("focus", onFocus); target.addEventListener("blur", onPointerLeave); let observer = null; if (options.pauseOffscreen && "IntersectionObserver" in window) { observer = new IntersectionObserver((entries) => { const entry = entries[0]; isVisible = !!(entry && entry.isIntersecting); if (!isVisible) { isHovering = false; resetTargets(); start(); } }); observer.observe(target); } const destroy = () => { if (options.triggerMode === "bounds") { target.removeEventListener("pointerenter", onPointerEnter); target.removeEventListener("pointermove", onPointerMove); target.removeEventListener("pointerleave", onPointerLeave); } else { window.removeEventListener("pointermove", onPointerMoveWindow); } target.removeEventListener("pointerdown", onPointerDown); window.removeEventListener("pointerup", onPointerUp); target.removeEventListener("focus", onFocus); target.removeEventListener("blur", onPointerLeave); if (observer) { observer.disconnect(); observer = null; } if (rafId) { window.cancelAnimationFrame(rafId); rafId = 0; } target.style.transform = ""; if (innerTarget) { innerTarget.style.transform = ""; } delete target.dataset.magneticInit; target.removeAttribute("data-magnetic-init"); delete target.__kaMagneticInstance; }; target.__kaMagneticInstance = { destroy }; }; const initMagneticButtons = ($scope) => { $scope.find(".king-addons-magnetic-buttons").each(function () { const root = this; const rawOptions = parseOptions(root); const options = normalizeOptions(rawOptions); const targetType = root.dataset.target || "button"; const targets = resolveTargets(root, options); targets.forEach((target) => { initMagneticTarget(root, target, targetType, options); }); }); }; $(window).on("elementor/frontend/init", function () { elementorFrontend.hooks.addAction( "frontend/element_ready/king-addons-magnetic-buttons.default", function ($scope) { initMagneticButtons($scope); } ); }); })(jQuery);