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autumn-js

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"use client"; "use strict"; var __create = Object.create; var __defProp = Object.defineProperty; var __getOwnPropDesc = Object.getOwnPropertyDescriptor; var __getOwnPropNames = Object.getOwnPropertyNames; var __getProtoOf = Object.getPrototypeOf; var __hasOwnProp = Object.prototype.hasOwnProperty; var __export = (target, all) => { for (var name in all) __defProp(target, name, { get: all[name], enumerable: true }); }; var __copyProps = (to, from, except, desc) => { if (from && typeof from === "object" || typeof from === "function") { for (let key of __getOwnPropNames(from)) if (!__hasOwnProp.call(to, key) && key !== except) __defProp(to, key, { get: () => from[key], enumerable: !(desc = __getOwnPropDesc(from, key)) || desc.enumerable }); } return to; }; var __toESM = (mod, isNodeMode, target) => (target = mod != null ? __create(__getProtoOf(mod)) : {}, __copyProps( // If the importer is in node compatibility mode or this is not an ESM // file that has been converted to a CommonJS file using a Babel- // compatible transform (i.e. "__esModule" has not been set), then set // "default" to the CommonJS "module.exports" for node compatibility. isNodeMode || !mod || !mod.__esModule ? __defProp(target, "default", { value: mod, enumerable: true }) : target, mod )); var __toCommonJS = (mod) => __copyProps(__defProp({}, "__esModule", { value: true }), mod); // src/libraries/react/components/ui/popover.tsx var popover_exports = {}; __export(popover_exports, { Popover: () => Popover2, PopoverAnchor: () => PopoverAnchor2, PopoverContent: () => PopoverContent2, PopoverTrigger: () => PopoverTrigger2 }); module.exports = __toCommonJS(popover_exports); var React29 = __toESM(require("react")); // ../node_modules/.pnpm/@radix-ui+react-popover@1.1.14_@types+react-dom@19.1.9_@types+react@19.1.10__@types+react@19._2d5qzp46jobjymz4ef7wsko3em/node_modules/@radix-ui/react-popover/dist/index.mjs var React28 = __toESM(require("react"), 1); // ../node_modules/.pnpm/@radix-ui+primitive@1.1.2/node_modules/@radix-ui/primitive/dist/index.mjs function composeEventHandlers(originalEventHandler, ourEventHandler, { checkForDefaultPrevented = true } = {}) { return function handleEvent(event) { originalEventHandler?.(event); if (checkForDefaultPrevented === false || !event.defaultPrevented) { return ourEventHandler?.(event); } }; } // ../node_modules/.pnpm/@radix-ui+react-compose-refs@1.1.2_@types+react@19.1.10_react@19.1.1/node_modules/@radix-ui/react-compose-refs/dist/index.mjs var React = __toESM(require("react"), 1); function setRef(ref, value) { if (typeof ref === "function") { return ref(value); } else if (ref !== null && ref !== void 0) { ref.current = value; } } function composeRefs(...refs) { return (node) => { let hasCleanup = false; const cleanups = refs.map((ref) => { const cleanup = setRef(ref, node); if (!hasCleanup && typeof cleanup == "function") { hasCleanup = true; } return cleanup; }); if (hasCleanup) { return () => { for (let i = 0; i < cleanups.length; i++) { const cleanup = cleanups[i]; if (typeof cleanup == "function") { cleanup(); } else { setRef(refs[i], null); } } }; } }; } function useComposedRefs(...refs) { return React.useCallback(composeRefs(...refs), refs); } // ../node_modules/.pnpm/@radix-ui+react-context@1.1.2_@types+react@19.1.10_react@19.1.1/node_modules/@radix-ui/react-context/dist/index.mjs var React2 = __toESM(require("react"), 1); var import_jsx_runtime = require("react/jsx-runtime"); function createContextScope(scopeName, createContextScopeDeps = []) { let defaultContexts = []; function createContext3(rootComponentName, defaultContext) { const BaseContext = React2.createContext(defaultContext); const index2 = defaultContexts.length; defaultContexts = [...defaultContexts, defaultContext]; const Provider = (props) => { const { scope, children, ...context } = props; const Context = scope?.[scopeName]?.[index2] || BaseContext; const value = React2.useMemo(() => context, Object.values(context)); return /* @__PURE__ */ (0, import_jsx_runtime.jsx)(Context.Provider, { value, children }); }; Provider.displayName = rootComponentName + "Provider"; function useContext22(consumerName, scope) { const Context = scope?.[scopeName]?.[index2] || BaseContext; const context = React2.useContext(Context); if (context) return context; if (defaultContext !== void 0) return defaultContext; throw new Error(`\`${consumerName}\` must be used within \`${rootComponentName}\``); } return [Provider, useContext22]; } const createScope = () => { const scopeContexts = defaultContexts.map((defaultContext) => { return React2.createContext(defaultContext); }); return function useScope(scope) { const contexts = scope?.[scopeName] || scopeContexts; return React2.useMemo( () => ({ [`__scope${scopeName}`]: { ...scope, [scopeName]: contexts } }), [scope, contexts] ); }; }; createScope.scopeName = scopeName; return [createContext3, composeContextScopes(createScope, ...createContextScopeDeps)]; } function composeContextScopes(...scopes) { const baseScope = scopes[0]; if (scopes.length === 1) return baseScope; const createScope = () => { const scopeHooks = scopes.map((createScope2) => ({ useScope: createScope2(), scopeName: createScope2.scopeName })); return function useComposedScopes(overrideScopes) { const nextScopes = scopeHooks.reduce((nextScopes2, { useScope, scopeName }) => { const scopeProps = useScope(overrideScopes); const currentScope = scopeProps[`__scope${scopeName}`]; return { ...nextScopes2, ...currentScope }; }, {}); return React2.useMemo(() => ({ [`__scope${baseScope.scopeName}`]: nextScopes }), [nextScopes]); }; }; createScope.scopeName = baseScope.scopeName; return createScope; } // ../node_modules/.pnpm/@radix-ui+react-dismissable-layer@1.1.10_@types+react-dom@19.1.9_@types+react@19.1.10__@types_recfemx4gbocxquotpq6g6r6si/node_modules/@radix-ui/react-dismissable-layer/dist/index.mjs var React7 = __toESM(require("react"), 1); // ../node_modules/.pnpm/@radix-ui+react-primitive@2.1.3_@types+react-dom@19.1.9_@types+react@19.1.10__@types+react@19_xx37pthzbhildnk4zsozp4vigu/node_modules/@radix-ui/react-primitive/dist/index.mjs var React4 = __toESM(require("react"), 1); var ReactDOM = __toESM(require("react-dom"), 1); // ../node_modules/.pnpm/@radix-ui+react-slot@1.2.3_@types+react@19.1.10_react@19.1.1/node_modules/@radix-ui/react-slot/dist/index.mjs var React3 = __toESM(require("react"), 1); var import_jsx_runtime2 = require("react/jsx-runtime"); // @__NO_SIDE_EFFECTS__ function createSlot(ownerName) { const SlotClone = /* @__PURE__ */ createSlotClone(ownerName); const Slot2 = React3.forwardRef((props, forwardedRef) => { const { children, ...slotProps } = props; const childrenArray = React3.Children.toArray(children); const slottable = childrenArray.find(isSlottable); if (slottable) { const newElement = slottable.props.children; const newChildren = childrenArray.map((child) => { if (child === slottable) { if (React3.Children.count(newElement) > 1) return React3.Children.only(null); return React3.isValidElement(newElement) ? newElement.props.children : null; } else { return child; } }); return /* @__PURE__ */ (0, import_jsx_runtime2.jsx)(SlotClone, { ...slotProps, ref: forwardedRef, children: React3.isValidElement(newElement) ? React3.cloneElement(newElement, void 0, newChildren) : null }); } return /* @__PURE__ */ (0, import_jsx_runtime2.jsx)(SlotClone, { ...slotProps, ref: forwardedRef, children }); }); Slot2.displayName = `${ownerName}.Slot`; return Slot2; } // @__NO_SIDE_EFFECTS__ function createSlotClone(ownerName) { const SlotClone = React3.forwardRef((props, forwardedRef) => { const { children, ...slotProps } = props; if (React3.isValidElement(children)) { const childrenRef = getElementRef(children); const props2 = mergeProps(slotProps, children.props); if (children.type !== React3.Fragment) { props2.ref = forwardedRef ? composeRefs(forwardedRef, childrenRef) : childrenRef; } return React3.cloneElement(children, props2); } return React3.Children.count(children) > 1 ? React3.Children.only(null) : null; }); SlotClone.displayName = `${ownerName}.SlotClone`; return SlotClone; } var SLOTTABLE_IDENTIFIER = Symbol("radix.slottable"); function isSlottable(child) { return React3.isValidElement(child) && typeof child.type === "function" && "__radixId" in child.type && child.type.__radixId === SLOTTABLE_IDENTIFIER; } function mergeProps(slotProps, childProps) { const overrideProps = { ...childProps }; for (const propName in childProps) { const slotPropValue = slotProps[propName]; const childPropValue = childProps[propName]; const isHandler = /^on[A-Z]/.test(propName); if (isHandler) { if (slotPropValue && childPropValue) { overrideProps[propName] = (...args) => { const result = childPropValue(...args); slotPropValue(...args); return result; }; } else if (slotPropValue) { overrideProps[propName] = slotPropValue; } } else if (propName === "style") { overrideProps[propName] = { ...slotPropValue, ...childPropValue }; } else if (propName === "className") { overrideProps[propName] = [slotPropValue, childPropValue].filter(Boolean).join(" "); } } return { ...slotProps, ...overrideProps }; } function getElementRef(element) { let getter = Object.getOwnPropertyDescriptor(element.props, "ref")?.get; let mayWarn = getter && "isReactWarning" in getter && getter.isReactWarning; if (mayWarn) { return element.ref; } getter = Object.getOwnPropertyDescriptor(element, "ref")?.get; mayWarn = getter && "isReactWarning" in getter && getter.isReactWarning; if (mayWarn) { return element.props.ref; } return element.props.ref || element.ref; } // ../node_modules/.pnpm/@radix-ui+react-primitive@2.1.3_@types+react-dom@19.1.9_@types+react@19.1.10__@types+react@19_xx37pthzbhildnk4zsozp4vigu/node_modules/@radix-ui/react-primitive/dist/index.mjs var import_jsx_runtime3 = require("react/jsx-runtime"); var NODES = [ "a", "button", "div", "form", "h2", "h3", "img", "input", "label", "li", "nav", "ol", "p", "select", "span", "svg", "ul" ]; var Primitive = NODES.reduce((primitive, node) => { const Slot2 = createSlot(`Primitive.${node}`); const Node2 = React4.forwardRef((props, forwardedRef) => { const { asChild, ...primitiveProps } = props; const Comp = asChild ? Slot2 : node; if (typeof window !== "undefined") { window[Symbol.for("radix-ui")] = true; } return /* @__PURE__ */ (0, import_jsx_runtime3.jsx)(Comp, { ...primitiveProps, ref: forwardedRef }); }); Node2.displayName = `Primitive.${node}`; return { ...primitive, [node]: Node2 }; }, {}); function dispatchDiscreteCustomEvent(target, event) { if (target) ReactDOM.flushSync(() => target.dispatchEvent(event)); } // ../node_modules/.pnpm/@radix-ui+react-use-callback-ref@1.1.1_@types+react@19.1.10_react@19.1.1/node_modules/@radix-ui/react-use-callback-ref/dist/index.mjs var React5 = __toESM(require("react"), 1); function useCallbackRef(callback) { const callbackRef = React5.useRef(callback); React5.useEffect(() => { callbackRef.current = callback; }); return React5.useMemo(() => (...args) => callbackRef.current?.(...args), []); } // ../node_modules/.pnpm/@radix-ui+react-use-escape-keydown@1.1.1_@types+react@19.1.10_react@19.1.1/node_modules/@radix-ui/react-use-escape-keydown/dist/index.mjs var React6 = __toESM(require("react"), 1); function useEscapeKeydown(onEscapeKeyDownProp, ownerDocument = globalThis?.document) { const onEscapeKeyDown = useCallbackRef(onEscapeKeyDownProp); React6.useEffect(() => { const handleKeyDown = (event) => { if (event.key === "Escape") { onEscapeKeyDown(event); } }; ownerDocument.addEventListener("keydown", handleKeyDown, { capture: true }); return () => ownerDocument.removeEventListener("keydown", handleKeyDown, { capture: true }); }, [onEscapeKeyDown, ownerDocument]); } // ../node_modules/.pnpm/@radix-ui+react-dismissable-layer@1.1.10_@types+react-dom@19.1.9_@types+react@19.1.10__@types_recfemx4gbocxquotpq6g6r6si/node_modules/@radix-ui/react-dismissable-layer/dist/index.mjs var import_jsx_runtime4 = require("react/jsx-runtime"); var DISMISSABLE_LAYER_NAME = "DismissableLayer"; var CONTEXT_UPDATE = "dismissableLayer.update"; var POINTER_DOWN_OUTSIDE = "dismissableLayer.pointerDownOutside"; var FOCUS_OUTSIDE = "dismissableLayer.focusOutside"; var originalBodyPointerEvents; var DismissableLayerContext = React7.createContext({ layers: /* @__PURE__ */ new Set(), layersWithOutsidePointerEventsDisabled: /* @__PURE__ */ new Set(), branches: /* @__PURE__ */ new Set() }); var DismissableLayer = React7.forwardRef( (props, forwardedRef) => { const { disableOutsidePointerEvents = false, onEscapeKeyDown, onPointerDownOutside, onFocusOutside, onInteractOutside, onDismiss, ...layerProps } = props; const context = React7.useContext(DismissableLayerContext); const [node, setNode] = React7.useState(null); const ownerDocument = node?.ownerDocument ?? globalThis?.document; const [, force] = React7.useState({}); const composedRefs = useComposedRefs(forwardedRef, (node2) => setNode(node2)); const layers = Array.from(context.layers); const [highestLayerWithOutsidePointerEventsDisabled] = [...context.layersWithOutsidePointerEventsDisabled].slice(-1); const highestLayerWithOutsidePointerEventsDisabledIndex = layers.indexOf(highestLayerWithOutsidePointerEventsDisabled); const index2 = node ? layers.indexOf(node) : -1; const isBodyPointerEventsDisabled = context.layersWithOutsidePointerEventsDisabled.size > 0; const isPointerEventsEnabled = index2 >= highestLayerWithOutsidePointerEventsDisabledIndex; const pointerDownOutside = usePointerDownOutside((event) => { const target = event.target; const isPointerDownOnBranch = [...context.branches].some((branch) => branch.contains(target)); if (!isPointerEventsEnabled || isPointerDownOnBranch) return; onPointerDownOutside?.(event); onInteractOutside?.(event); if (!event.defaultPrevented) onDismiss?.(); }, ownerDocument); const focusOutside = useFocusOutside((event) => { const target = event.target; const isFocusInBranch = [...context.branches].some((branch) => branch.contains(target)); if (isFocusInBranch) return; onFocusOutside?.(event); onInteractOutside?.(event); if (!event.defaultPrevented) onDismiss?.(); }, ownerDocument); useEscapeKeydown((event) => { const isHighestLayer = index2 === context.layers.size - 1; if (!isHighestLayer) return; onEscapeKeyDown?.(event); if (!event.defaultPrevented && onDismiss) { event.preventDefault(); onDismiss(); } }, ownerDocument); React7.useEffect(() => { if (!node) return; if (disableOutsidePointerEvents) { if (context.layersWithOutsidePointerEventsDisabled.size === 0) { originalBodyPointerEvents = ownerDocument.body.style.pointerEvents; ownerDocument.body.style.pointerEvents = "none"; } context.layersWithOutsidePointerEventsDisabled.add(node); } context.layers.add(node); dispatchUpdate(); return () => { if (disableOutsidePointerEvents && context.layersWithOutsidePointerEventsDisabled.size === 1) { ownerDocument.body.style.pointerEvents = originalBodyPointerEvents; } }; }, [node, ownerDocument, disableOutsidePointerEvents, context]); React7.useEffect(() => { return () => { if (!node) return; context.layers.delete(node); context.layersWithOutsidePointerEventsDisabled.delete(node); dispatchUpdate(); }; }, [node, context]); React7.useEffect(() => { const handleUpdate = () => force({}); document.addEventListener(CONTEXT_UPDATE, handleUpdate); return () => document.removeEventListener(CONTEXT_UPDATE, handleUpdate); }, []); return /* @__PURE__ */ (0, import_jsx_runtime4.jsx)( Primitive.div, { ...layerProps, ref: composedRefs, style: { pointerEvents: isBodyPointerEventsDisabled ? isPointerEventsEnabled ? "auto" : "none" : void 0, ...props.style }, onFocusCapture: composeEventHandlers(props.onFocusCapture, focusOutside.onFocusCapture), onBlurCapture: composeEventHandlers(props.onBlurCapture, focusOutside.onBlurCapture), onPointerDownCapture: composeEventHandlers( props.onPointerDownCapture, pointerDownOutside.onPointerDownCapture ) } ); } ); DismissableLayer.displayName = DISMISSABLE_LAYER_NAME; var BRANCH_NAME = "DismissableLayerBranch"; var DismissableLayerBranch = React7.forwardRef((props, forwardedRef) => { const context = React7.useContext(DismissableLayerContext); const ref = React7.useRef(null); const composedRefs = useComposedRefs(forwardedRef, ref); React7.useEffect(() => { const node = ref.current; if (node) { context.branches.add(node); return () => { context.branches.delete(node); }; } }, [context.branches]); return /* @__PURE__ */ (0, import_jsx_runtime4.jsx)(Primitive.div, { ...props, ref: composedRefs }); }); DismissableLayerBranch.displayName = BRANCH_NAME; function usePointerDownOutside(onPointerDownOutside, ownerDocument = globalThis?.document) { const handlePointerDownOutside = useCallbackRef(onPointerDownOutside); const isPointerInsideReactTreeRef = React7.useRef(false); const handleClickRef = React7.useRef(() => { }); React7.useEffect(() => { const handlePointerDown = (event) => { if (event.target && !isPointerInsideReactTreeRef.current) { let handleAndDispatchPointerDownOutsideEvent2 = function() { handleAndDispatchCustomEvent( POINTER_DOWN_OUTSIDE, handlePointerDownOutside, eventDetail, { discrete: true } ); }; var handleAndDispatchPointerDownOutsideEvent = handleAndDispatchPointerDownOutsideEvent2; const eventDetail = { originalEvent: event }; if (event.pointerType === "touch") { ownerDocument.removeEventListener("click", handleClickRef.current); handleClickRef.current = handleAndDispatchPointerDownOutsideEvent2; ownerDocument.addEventListener("click", handleClickRef.current, { once: true }); } else { handleAndDispatchPointerDownOutsideEvent2(); } } else { ownerDocument.removeEventListener("click", handleClickRef.current); } isPointerInsideReactTreeRef.current = false; }; const timerId = window.setTimeout(() => { ownerDocument.addEventListener("pointerdown", handlePointerDown); }, 0); return () => { window.clearTimeout(timerId); ownerDocument.removeEventListener("pointerdown", handlePointerDown); ownerDocument.removeEventListener("click", handleClickRef.current); }; }, [ownerDocument, handlePointerDownOutside]); return { // ensures we check React component tree (not just DOM tree) onPointerDownCapture: () => isPointerInsideReactTreeRef.current = true }; } function useFocusOutside(onFocusOutside, ownerDocument = globalThis?.document) { const handleFocusOutside = useCallbackRef(onFocusOutside); const isFocusInsideReactTreeRef = React7.useRef(false); React7.useEffect(() => { const handleFocus = (event) => { if (event.target && !isFocusInsideReactTreeRef.current) { const eventDetail = { originalEvent: event }; handleAndDispatchCustomEvent(FOCUS_OUTSIDE, handleFocusOutside, eventDetail, { discrete: false }); } }; ownerDocument.addEventListener("focusin", handleFocus); return () => ownerDocument.removeEventListener("focusin", handleFocus); }, [ownerDocument, handleFocusOutside]); return { onFocusCapture: () => isFocusInsideReactTreeRef.current = true, onBlurCapture: () => isFocusInsideReactTreeRef.current = false }; } function dispatchUpdate() { const event = new CustomEvent(CONTEXT_UPDATE); document.dispatchEvent(event); } function handleAndDispatchCustomEvent(name, handler, detail, { discrete }) { const target = detail.originalEvent.target; const event = new CustomEvent(name, { bubbles: false, cancelable: true, detail }); if (handler) target.addEventListener(name, handler, { once: true }); if (discrete) { dispatchDiscreteCustomEvent(target, event); } else { target.dispatchEvent(event); } } // ../node_modules/.pnpm/@radix-ui+react-focus-guards@1.1.2_@types+react@19.1.10_react@19.1.1/node_modules/@radix-ui/react-focus-guards/dist/index.mjs var React8 = __toESM(require("react"), 1); var count = 0; function useFocusGuards() { React8.useEffect(() => { const edgeGuards = document.querySelectorAll("[data-radix-focus-guard]"); document.body.insertAdjacentElement("afterbegin", edgeGuards[0] ?? createFocusGuard()); document.body.insertAdjacentElement("beforeend", edgeGuards[1] ?? createFocusGuard()); count++; return () => { if (count === 1) { document.querySelectorAll("[data-radix-focus-guard]").forEach((node) => node.remove()); } count--; }; }, []); } function createFocusGuard() { const element = document.createElement("span"); element.setAttribute("data-radix-focus-guard", ""); element.tabIndex = 0; element.style.outline = "none"; element.style.opacity = "0"; element.style.position = "fixed"; element.style.pointerEvents = "none"; return element; } // ../node_modules/.pnpm/@radix-ui+react-focus-scope@1.1.7_@types+react-dom@19.1.9_@types+react@19.1.10__@types+react@_a6spdpnjpgxlsfsxwjh6tjh7gm/node_modules/@radix-ui/react-focus-scope/dist/index.mjs var React9 = __toESM(require("react"), 1); var import_jsx_runtime5 = require("react/jsx-runtime"); var AUTOFOCUS_ON_MOUNT = "focusScope.autoFocusOnMount"; var AUTOFOCUS_ON_UNMOUNT = "focusScope.autoFocusOnUnmount"; var EVENT_OPTIONS = { bubbles: false, cancelable: true }; var FOCUS_SCOPE_NAME = "FocusScope"; var FocusScope = React9.forwardRef((props, forwardedRef) => { const { loop = false, trapped = false, onMountAutoFocus: onMountAutoFocusProp, onUnmountAutoFocus: onUnmountAutoFocusProp, ...scopeProps } = props; const [container, setContainer] = React9.useState(null); const onMountAutoFocus = useCallbackRef(onMountAutoFocusProp); const onUnmountAutoFocus = useCallbackRef(onUnmountAutoFocusProp); const lastFocusedElementRef = React9.useRef(null); const composedRefs = useComposedRefs(forwardedRef, (node) => setContainer(node)); const focusScope = React9.useRef({ paused: false, pause() { this.paused = true; }, resume() { this.paused = false; } }).current; React9.useEffect(() => { if (trapped) { let handleFocusIn2 = function(event) { if (focusScope.paused || !container) return; const target = event.target; if (container.contains(target)) { lastFocusedElementRef.current = target; } else { focus(lastFocusedElementRef.current, { select: true }); } }, handleFocusOut2 = function(event) { if (focusScope.paused || !container) return; const relatedTarget = event.relatedTarget; if (relatedTarget === null) return; if (!container.contains(relatedTarget)) { focus(lastFocusedElementRef.current, { select: true }); } }, handleMutations2 = function(mutations) { const focusedElement = document.activeElement; if (focusedElement !== document.body) return; for (const mutation of mutations) { if (mutation.removedNodes.length > 0) focus(container); } }; var handleFocusIn = handleFocusIn2, handleFocusOut = handleFocusOut2, handleMutations = handleMutations2; document.addEventListener("focusin", handleFocusIn2); document.addEventListener("focusout", handleFocusOut2); const mutationObserver = new MutationObserver(handleMutations2); if (container) mutationObserver.observe(container, { childList: true, subtree: true }); return () => { document.removeEventListener("focusin", handleFocusIn2); document.removeEventListener("focusout", handleFocusOut2); mutationObserver.disconnect(); }; } }, [trapped, container, focusScope.paused]); React9.useEffect(() => { if (container) { focusScopesStack.add(focusScope); const previouslyFocusedElement = document.activeElement; const hasFocusedCandidate = container.contains(previouslyFocusedElement); if (!hasFocusedCandidate) { const mountEvent = new CustomEvent(AUTOFOCUS_ON_MOUNT, EVENT_OPTIONS); container.addEventListener(AUTOFOCUS_ON_MOUNT, onMountAutoFocus); container.dispatchEvent(mountEvent); if (!mountEvent.defaultPrevented) { focusFirst(removeLinks(getTabbableCandidates(container)), { select: true }); if (document.activeElement === previouslyFocusedElement) { focus(container); } } } return () => { container.removeEventListener(AUTOFOCUS_ON_MOUNT, onMountAutoFocus); setTimeout(() => { const unmountEvent = new CustomEvent(AUTOFOCUS_ON_UNMOUNT, EVENT_OPTIONS); container.addEventListener(AUTOFOCUS_ON_UNMOUNT, onUnmountAutoFocus); container.dispatchEvent(unmountEvent); if (!unmountEvent.defaultPrevented) { focus(previouslyFocusedElement ?? document.body, { select: true }); } container.removeEventListener(AUTOFOCUS_ON_UNMOUNT, onUnmountAutoFocus); focusScopesStack.remove(focusScope); }, 0); }; } }, [container, onMountAutoFocus, onUnmountAutoFocus, focusScope]); const handleKeyDown = React9.useCallback( (event) => { if (!loop && !trapped) return; if (focusScope.paused) return; const isTabKey = event.key === "Tab" && !event.altKey && !event.ctrlKey && !event.metaKey; const focusedElement = document.activeElement; if (isTabKey && focusedElement) { const container2 = event.currentTarget; const [first, last] = getTabbableEdges(container2); const hasTabbableElementsInside = first && last; if (!hasTabbableElementsInside) { if (focusedElement === container2) event.preventDefault(); } else { if (!event.shiftKey && focusedElement === last) { event.preventDefault(); if (loop) focus(first, { select: true }); } else if (event.shiftKey && focusedElement === first) { event.preventDefault(); if (loop) focus(last, { select: true }); } } } }, [loop, trapped, focusScope.paused] ); return /* @__PURE__ */ (0, import_jsx_runtime5.jsx)(Primitive.div, { tabIndex: -1, ...scopeProps, ref: composedRefs, onKeyDown: handleKeyDown }); }); FocusScope.displayName = FOCUS_SCOPE_NAME; function focusFirst(candidates, { select = false } = {}) { const previouslyFocusedElement = document.activeElement; for (const candidate of candidates) { focus(candidate, { select }); if (document.activeElement !== previouslyFocusedElement) return; } } function getTabbableEdges(container) { const candidates = getTabbableCandidates(container); const first = findVisible(candidates, container); const last = findVisible(candidates.reverse(), container); return [first, last]; } function getTabbableCandidates(container) { const nodes = []; const walker = document.createTreeWalker(container, NodeFilter.SHOW_ELEMENT, { acceptNode: (node) => { const isHiddenInput = node.tagName === "INPUT" && node.type === "hidden"; if (node.disabled || node.hidden || isHiddenInput) return NodeFilter.FILTER_SKIP; return node.tabIndex >= 0 ? NodeFilter.FILTER_ACCEPT : NodeFilter.FILTER_SKIP; } }); while (walker.nextNode()) nodes.push(walker.currentNode); return nodes; } function findVisible(elements, container) { for (const element of elements) { if (!isHidden(element, { upTo: container })) return element; } } function isHidden(node, { upTo }) { if (getComputedStyle(node).visibility === "hidden") return true; while (node) { if (upTo !== void 0 && node === upTo) return false; if (getComputedStyle(node).display === "none") return true; node = node.parentElement; } return false; } function isSelectableInput(element) { return element instanceof HTMLInputElement && "select" in element; } function focus(element, { select = false } = {}) { if (element && element.focus) { const previouslyFocusedElement = document.activeElement; element.focus({ preventScroll: true }); if (element !== previouslyFocusedElement && isSelectableInput(element) && select) element.select(); } } var focusScopesStack = createFocusScopesStack(); function createFocusScopesStack() { let stack = []; return { add(focusScope) { const activeFocusScope = stack[0]; if (focusScope !== activeFocusScope) { activeFocusScope?.pause(); } stack = arrayRemove(stack, focusScope); stack.unshift(focusScope); }, remove(focusScope) { stack = arrayRemove(stack, focusScope); stack[0]?.resume(); } }; } function arrayRemove(array, item) { const updatedArray = [...array]; const index2 = updatedArray.indexOf(item); if (index2 !== -1) { updatedArray.splice(index2, 1); } return updatedArray; } function removeLinks(items) { return items.filter((item) => item.tagName !== "A"); } // ../node_modules/.pnpm/@radix-ui+react-id@1.1.1_@types+react@19.1.10_react@19.1.1/node_modules/@radix-ui/react-id/dist/index.mjs var React11 = __toESM(require("react"), 1); // ../node_modules/.pnpm/@radix-ui+react-use-layout-effect@1.1.1_@types+react@19.1.10_react@19.1.1/node_modules/@radix-ui/react-use-layout-effect/dist/index.mjs var React10 = __toESM(require("react"), 1); var useLayoutEffect2 = globalThis?.document ? React10.useLayoutEffect : () => { }; // ../node_modules/.pnpm/@radix-ui+react-id@1.1.1_@types+react@19.1.10_react@19.1.1/node_modules/@radix-ui/react-id/dist/index.mjs var useReactId = React11[" useId ".trim().toString()] || (() => void 0); var count2 = 0; function useId(deterministicId) { const [id, setId] = React11.useState(useReactId()); useLayoutEffect2(() => { if (!deterministicId) setId((reactId) => reactId ?? String(count2++)); }, [deterministicId]); return deterministicId || (id ? `radix-${id}` : ""); } // ../node_modules/.pnpm/@radix-ui+react-popper@1.2.7_@types+react-dom@19.1.9_@types+react@19.1.10__@types+react@19.1._rx2bw5lpqtxi7ji4o3uo2rsuda/node_modules/@radix-ui/react-popper/dist/index.mjs var React15 = __toESM(require("react"), 1); // ../node_modules/.pnpm/@floating-ui+utils@0.2.10/node_modules/@floating-ui/utils/dist/floating-ui.utils.mjs var sides = ["top", "right", "bottom", "left"]; var min = Math.min; var max = Math.max; var round = Math.round; var floor = Math.floor; var createCoords = (v) => ({ x: v, y: v }); var oppositeSideMap = { left: "right", right: "left", bottom: "top", top: "bottom" }; var oppositeAlignmentMap = { start: "end", end: "start" }; function clamp(start, value, end) { return max(start, min(value, end)); } function evaluate(value, param) { return typeof value === "function" ? value(param) : value; } function getSide(placement) { return placement.split("-")[0]; } function getAlignment(placement) { return placement.split("-")[1]; } function getOppositeAxis(axis) { return axis === "x" ? "y" : "x"; } function getAxisLength(axis) { return axis === "y" ? "height" : "width"; } var yAxisSides = /* @__PURE__ */ new Set(["top", "bottom"]); function getSideAxis(placement) { return yAxisSides.has(getSide(placement)) ? "y" : "x"; } function getAlignmentAxis(placement) { return getOppositeAxis(getSideAxis(placement)); } function getAlignmentSides(placement, rects, rtl) { if (rtl === void 0) { rtl = false; } const alignment = getAlignment(placement); const alignmentAxis = getAlignmentAxis(placement); const length = getAxisLength(alignmentAxis); let mainAlignmentSide = alignmentAxis === "x" ? alignment === (rtl ? "end" : "start") ? "right" : "left" : alignment === "start" ? "bottom" : "top"; if (rects.reference[length] > rects.floating[length]) { mainAlignmentSide = getOppositePlacement(mainAlignmentSide); } return [mainAlignmentSide, getOppositePlacement(mainAlignmentSide)]; } function getExpandedPlacements(placement) { const oppositePlacement = getOppositePlacement(placement); return [getOppositeAlignmentPlacement(placement), oppositePlacement, getOppositeAlignmentPlacement(oppositePlacement)]; } function getOppositeAlignmentPlacement(placement) { return placement.replace(/start|end/g, (alignment) => oppositeAlignmentMap[alignment]); } var lrPlacement = ["left", "right"]; var rlPlacement = ["right", "left"]; var tbPlacement = ["top", "bottom"]; var btPlacement = ["bottom", "top"]; function getSideList(side, isStart, rtl) { switch (side) { case "top": case "bottom": if (rtl) return isStart ? rlPlacement : lrPlacement; return isStart ? lrPlacement : rlPlacement; case "left": case "right": return isStart ? tbPlacement : btPlacement; default: return []; } } function getOppositeAxisPlacements(placement, flipAlignment, direction, rtl) { const alignment = getAlignment(placement); let list = getSideList(getSide(placement), direction === "start", rtl); if (alignment) { list = list.map((side) => side + "-" + alignment); if (flipAlignment) { list = list.concat(list.map(getOppositeAlignmentPlacement)); } } return list; } function getOppositePlacement(placement) { return placement.replace(/left|right|bottom|top/g, (side) => oppositeSideMap[side]); } function expandPaddingObject(padding) { return { top: 0, right: 0, bottom: 0, left: 0, ...padding }; } function getPaddingObject(padding) { return typeof padding !== "number" ? expandPaddingObject(padding) : { top: padding, right: padding, bottom: padding, left: padding }; } function rectToClientRect(rect) { const { x, y, width, height } = rect; return { width, height, top: y, left: x, right: x + width, bottom: y + height, x, y }; } // ../node_modules/.pnpm/@floating-ui+core@1.7.3/node_modules/@floating-ui/core/dist/floating-ui.core.mjs function computeCoordsFromPlacement(_ref, placement, rtl) { let { reference, floating } = _ref; const sideAxis = getSideAxis(placement); const alignmentAxis = getAlignmentAxis(placement); const alignLength = getAxisLength(alignmentAxis); const side = getSide(placement); const isVertical = sideAxis === "y"; const commonX = reference.x + reference.width / 2 - floating.width / 2; const commonY = reference.y + reference.height / 2 - floating.height / 2; const commonAlign = reference[alignLength] / 2 - floating[alignLength] / 2; let coords; switch (side) { case "top": coords = { x: commonX, y: reference.y - floating.height }; break; case "bottom": coords = { x: commonX, y: reference.y + reference.height }; break; case "right": coords = { x: reference.x + reference.width, y: commonY }; break; case "left": coords = { x: reference.x - floating.width, y: commonY }; break; default: coords = { x: reference.x, y: reference.y }; } switch (getAlignment(placement)) { case "start": coords[alignmentAxis] -= commonAlign * (rtl && isVertical ? -1 : 1); break; case "end": coords[alignmentAxis] += commonAlign * (rtl && isVertical ? -1 : 1); break; } return coords; } var computePosition = async (reference, floating, config) => { const { placement = "bottom", strategy = "absolute", middleware = [], platform: platform2 } = config; const validMiddleware = middleware.filter(Boolean); const rtl = await (platform2.isRTL == null ? void 0 : platform2.isRTL(floating)); let rects = await platform2.getElementRects({ reference, floating, strategy }); let { x, y } = computeCoordsFromPlacement(rects, placement, rtl); let statefulPlacement = placement; let middlewareData = {}; let resetCount = 0; for (let i = 0; i < validMiddleware.length; i++) { const { name, fn } = validMiddleware[i]; const { x: nextX, y: nextY, data, reset } = await fn({ x, y, initialPlacement: placement, placement: statefulPlacement, strategy, middlewareData, rects, platform: platform2, elements: { reference, floating } }); x = nextX != null ? nextX : x; y = nextY != null ? nextY : y; middlewareData = { ...middlewareData, [name]: { ...middlewareData[name], ...data } }; if (reset && resetCount <= 50) { resetCount++; if (typeof reset === "object") { if (reset.placement) { statefulPlacement = reset.placement; } if (reset.rects) { rects = reset.rects === true ? await platform2.getElementRects({ reference, floating, strategy }) : reset.rects; } ({ x, y } = computeCoordsFromPlacement(rects, statefulPlacement, rtl)); } i = -1; } } return { x, y, placement: statefulPlacement, strategy, middlewareData }; }; async function detectOverflow(state, options) { var _await$platform$isEle; if (options === void 0) { options = {}; } const { x, y, platform: platform2, rects, elements, strategy } = state; const { boundary = "clippingAncestors", rootBoundary = "viewport", elementContext = "floating", altBoundary = false, padding = 0 } = evaluate(options, state); const paddingObject = getPaddingObject(padding); const altContext = elementContext === "floating" ? "reference" : "floating"; const element = elements[altBoundary ? altContext : elementContext]; const clippingClientRect = rectToClientRect(await platform2.getClippingRect({ element: ((_await$platform$isEle = await (platform2.isElement == null ? void 0 : platform2.isElement(element))) != null ? _await$platform$isEle : true) ? element : element.contextElement || await (platform2.getDocumentElement == null ? void 0 : platform2.getDocumentElement(elements.floating)), boundary, rootBoundary, strategy })); const rect = elementContext === "floating" ? { x, y, width: rects.floating.width, height: rects.floating.height } : rects.reference; const offsetParent = await (platform2.getOffsetParent == null ? void 0 : platform2.getOffsetParent(elements.floating)); const offsetScale = await (platform2.isElement == null ? void 0 : platform2.isElement(offsetParent)) ? await (platform2.getScale == null ? void 0 : platform2.getScale(offsetParent)) || { x: 1, y: 1 } : { x: 1, y: 1 }; const elementClientRect = rectToClientRect(platform2.convertOffsetParentRelativeRectToViewportRelativeRect ? await platform2.convertOffsetParentRelativeRectToViewportRelativeRect({ elements, rect, offsetParent, strategy }) : rect); return { top: (clippingClientRect.top - elementClientRect.top + paddingObject.top) / offsetScale.y, bottom: (elementClientRect.bottom - clippingClientRect.bottom + paddingObject.bottom) / offsetScale.y, left: (clippingClientRect.left - elementClientRect.left + paddingObject.left) / offsetScale.x, right: (elementClientRect.right - clippingClientRect.right + paddingObject.right) / offsetScale.x }; } var arrow = (options) => ({ name: "arrow", options, async fn(state) { const { x, y, placement, rects, platform: platform2, elements, middlewareData } = state; const { element, padding = 0 } = evaluate(options, state) || {}; if (element == null) { return {}; } const paddingObject = getPaddingObject(padding); const coords = { x, y }; const axis = getAlignmentAxis(placement); const length = getAxisLength(axis); const arrowDimensions = await platform2.getDimensions(element); const isYAxis = axis === "y"; const minProp = isYAxis ? "top" : "left"; const maxProp = isYAxis ? "bottom" : "right"; const clientProp = isYAxis ? "clientHeight" : "clientWidth"; const endDiff = rects.reference[length] + rects.reference[axis] - coords[axis] - rects.floating[length]; const startDiff = coords[axis] - rects.reference[axis]; const arrowOffsetParent = await (platform2.getOffsetParent == null ? void 0 : platform2.getOffsetParent(element)); let clientSize = arrowOffsetParent ? arrowOffsetParent[clientProp] : 0; if (!clientSize || !await (platform2.isElement == null ? void 0 : platform2.isElement(arrowOffsetParent))) { clientSize = elements.floating[clientProp] || rects.floating[length]; } const centerToReference = endDiff / 2 - startDiff / 2; const largestPossiblePadding = clientSize / 2 - arrowDimensions[length] / 2 - 1; const minPadding = min(paddingObject[minProp], largestPossiblePadding); const maxPadding = min(paddingObject[maxProp], largestPossiblePadding); const min$1 = minPadding; const max2 = clientSize - arrowDimensions[length] - maxPadding; const center = clientSize / 2 - arrowDimensions[length] / 2 + centerToReference; const offset4 = clamp(min$1, center, max2); const shouldAddOffset = !middlewareData.arrow && getAlignment(placement) != null && center !== offset4 && rects.reference[length] / 2 - (center < min$1 ? minPadding : maxPadding) - arrowDimensions[length] / 2 < 0; const alignmentOffset = shouldAddOffset ? center < min$1 ? center - min$1 : center - max2 : 0; return { [axis]: coords[axis] + alignmentOffset, data: { [axis]: offset4, centerOffset: center - offset4 - alignmentOffset, ...shouldAddOffset && { alignmentOffset } }, reset: shouldAddOffset }; } }); var flip = function(options) { if (options === void 0) { options = {}; } return { name: "flip", options, async fn(state) { var _middlewareData$arrow, _middlewareData$flip; const { placement, middlewareData, rects, initialPlacement, platform: platform2, elements } = state; const { mainAxis: checkMainAxis = true, crossAxis: checkCrossAxis = true, fallbackPlacements: specifiedFallbackPlacements, fallbackStrategy = "bestFit", fallbackAxisSideDirection = "none", flipAlignment = true, ...detectOverflowOptions } = evaluate(options, state); if ((_middlewareData$arrow = middlewareData.arrow) != null && _middlewareData$arrow.alignmentOffset) { return {}; } const side = getSide(placement); const initialSideAxis = getSideAxis(initialPlacement); const isBasePlacement = getSide(initialPlacement) === initialPlacement; const rtl = await (platform2.isRTL == null ? void 0 : platform2.isRTL(elements.floating)); const fallbackPlacements = specifiedFallbackPlacements || (isBasePlacement || !flipAlignment ? [getOppositePlacement(initialPlacement)] : getExpandedPlacements(initialPlacement)); const hasFallbackAxisSideDirection = fallbackAxisSideDirection !== "none"; if (!specifiedFallbackPlacements && hasFallbackAxisSideDirection) { fallbackPlacements.push(...getOppositeAxisPlacements(initialPlacement, flipAlignment, fallbackAxisSideDirection, rtl)); } const placements2 = [initialPlacement, ...fallbackPlacements]; const overflow = await detectOverflow(state, detectOverflowOptions); const overflows = []; let overflowsData = ((_middlewareData$flip = middlewareData.flip) == null ? void 0 : _middlewareData$flip.overflows) || []; if (checkMainAxis) { overflows.push(overflow[side]); } if (checkCrossAxis) { const sides2 = getAlignmentSides(placement, rects, rtl); overflows.push(overflow[sides2[0]], overflow[sides2[1]]); } overflowsData = [...overflowsData, { placement, overflows }]; if (!overflows.every((side2) => side2 <= 0)) { var _middlewareData$flip2, _overflowsData$filter; const nextIndex = (((_middlewareData$flip2 = middlewareData.flip) == null ? void 0 : _middlewareData$flip2.index) || 0) + 1; const nextPlacement = placements2[nextIndex]; if (nextPlacement) { const ignoreCrossAxisOverflow = checkCrossAxis === "alignment" ? initialSideAxis !== getSideAxis(nextPlacement) : false; if (!ignoreCrossAxisOverflow || // We leave the current main axis only if every placement on that axis // overflows the main axis. overflowsData.every((d) => getSideAxis(d.placement) === initialSideAxis ? d.overflows[0] > 0 : true)) { return { data: { index: nextIndex, overflows: overflowsData }, reset: { placement: nextPlacement } }; } } let resetPlacement = (_overflowsData$filter = overflowsData.filter((d) => d.overflows[0] <= 0).sort((a, b) => a.overflows[1] - b.overflows[1])[0]) == null ? void 0 : _overflowsData$filter.placement; if (!resetPlacement) { switch (fallbackStrategy) { case "bestFit": { var _overflowsData$filter2; const placement2 = (_overflowsData$filter2 = overflowsData.filter((d) => { if (hasFallbackAxisSideDirection) { const currentSideAxis = getSideAxis(d.placement); return currentSideAxis === initialSideAxis || // Create a bias to the `y` side axis due to horizontal // reading directions favoring greater width. currentSideAxis === "y"; } return true; }).map((d) => [d.placement, d.overflows.filter((overflow2) => overflow2 > 0).reduce((acc, overflow2) => acc + overflow2, 0)]).sort((a, b) => a[1] - b[1])[0]) == null ? void 0 : _overflowsData$filter2[0]; if (placement2) { resetPlacement = placement2; } break; } case "initialPlacement": resetPlacement = initialPlacement; break; } } if (placement !== resetPlacement) { return { reset: { placement: resetPlacement } }; } } return {}; } }; }; function getSideOffsets(overflow, rect) { return { top: overflow.top - rect.height, right: overflow.right - rect.width, bottom: overflow.bottom - rect.height, left: overflow.left - rect.width }; } function isAnySideFullyClipped(overflow) { return sides.some((side) => overflow[side] >= 0); } var hide = function(options) { if (options === void 0) { options = {}; } return { name: "hide", options, async fn(state) { const { rects } = state; const { strategy = "referenceHidden", ...detectOverflowOptions } = evaluate(options, state); switch (strategy) { case "referenceHidden": { const overflow = await detectOverflow(state, { ...detectOverflowOptions, elementContext: "reference" }); const offsets = getSideOffsets(overflow, rects.reference); return { data: { referenceHiddenOffsets: offsets, referenceHidden: isAnySideFullyClipped(offsets) } }; } case "escaped": { const overflow = await detectOverflow(state, { ...detectOverflowOptions, altBoundary: true }); const offsets = getSideOffsets(overflow, rects.floating); return { data: { escapedOffsets: offsets, escaped: isAnySideFullyClipped(offsets) } }; } default: { return {}; } } } }; }; var originSides = /* @__PURE__ */ new Set(["left", "top"]); async function convertValueToCoords(state, options) { const { placement, platform: platform2, elements } = state; const rtl = await (platform2.isRTL == null ? void 0 : platform2.isRTL(