{"version":3,"file":"sequencer.js","sources":["../src/constants.js","../src/canvas-effects/ease.js","../src/lib/lib.js","../node_modules/svelte/src/version.js","../node_modules/svelte/src/internal/disclose-version.js","../node_modules/svelte/src/internal/flags/index.js","../node_modules/svelte/src/internal/flags/legacy.js","../node_modules/svelte/src/constants.js","../node_modules/esm-env/dev-fallback.js","../node_modules/svelte/src/internal/shared/utils.js","../node_modules/svelte/src/internal/client/constants.js","../node_modules/svelte/src/internal/shared/errors.js","../node_modules/svelte/src/internal/client/errors.js","../node_modules/svelte/src/internal/client/warnings.js","../node_modules/svelte/src/internal/client/reactivity/equality.js","../node_modules/svelte/src/internal/client/dev/tracing.js","../node_modules/svelte/src/internal/shared/dev.js","../node_modules/svelte/src/internal/client/context.js","../node_modules/svelte/src/internal/client/dom/task.js","../node_modules/svelte/src/internal/client/error-handling.js","../node_modules/svelte/src/internal/client/reactivity/status.js","../node_modules/svelte/src/internal/client/reactivity/utils.js","../node_modules/svelte/src/store/utils.js","../node_modules/svelte/src/store/shared/index.js","../node_modules/svelte/src/internal/client/reactivity/store.js","../node_modules/svelte/src/internal/client/reactivity/batch.js","../node_modules/svelte/src/reactivity/create-subscriber.js","../node_modules/svelte/src/internal/client/dom/blocks/boundary.js","../node_modules/svelte/src/internal/client/reactivity/async.js","../node_modules/svelte/src/internal/client/reactivity/deriveds.js","../node_modules/svelte/src/internal/client/reactivity/sources.js","../node_modules/svelte/src/internal/client/proxy.js","../node_modules/svelte/src/internal/client/dev/equality.js","../node_modules/svelte/src/internal/client/dom/operations.js","../node_modules/svelte/src/internal/client/dom/elements/misc.js","../node_modules/svelte/src/internal/client/dom/elements/bindings/shared.js","../node_modules/svelte/src/internal/client/reactivity/effects.js","../node_modules/svelte/src/internal/client/runtime.js","../node_modules/svelte/src/internal/client/dom/elements/events.js","../node_modules/svelte/src/internal/client/dom/reconciler.js","../node_modules/svelte/src/internal/client/dom/template.js","../node_modules/svelte/src/utils.js","../node_modules/svelte/src/internal/client/render.js","../node_modules/svelte/src/internal/client/dom/blocks/branches.js","../node_modules/svelte/src/index-client.js","../node_modules/svelte/src/internal/client/dom/blocks/if.js","../node_modules/svelte/src/internal/client/dom/blocks/each.js","../node_modules/svelte/src/internal/client/dom/blocks/html.js","../node_modules/svelte/src/internal/client/dom/blocks/slot.js","../node_modules/svelte/src/internal/client/dom/blocks/svelte-component.js","../node_modules/svelte/src/internal/client/dom/elements/actions.js","../node_modules/svelte/src/internal/shared/attributes.js","../node_modules/svelte/src/internal/client/dom/elements/class.js","../node_modules/svelte/src/internal/client/dom/elements/style.js","../node_modules/svelte/src/internal/client/dom/elements/bindings/select.js","../node_modules/svelte/src/internal/client/dom/elements/attributes.js","../node_modules/svelte/src/internal/client/dom/elements/bindings/input.js","../node_modules/svelte/src/internal/client/dom/elements/bindings/props.js","../node_modules/svelte/src/internal/client/dom/elements/bindings/this.js","../node_modules/svelte/src/internal/client/dom/legacy/lifecycle.js","../node_modules/svelte/src/internal/client/dom/legacy/misc.js","../node_modules/svelte/src/internal/client/reactivity/props.js","../src/utils/loadingBar.js","../src/modules/sequencer-file-cache.js","../src/modules/sequencer-file.js","../src/modules/sequencer-database.js","../src/formapplications/database/TreeViewEntry.svelte","../src/formapplications/database/TreeViewSeparator.svelte","../src/formapplications/database/renderSpritesheet.js","../src/formapplications/database/DatabaseStore.js","../src/formapplications/database/DatabaseEntry.svelte","../node_modules/svelte-virtual-scroll-list/dist/virtual.js","../node_modules/svelte-virtual-scroll-list/dist/Item.svelte","../node_modules/svelte-virtual-scroll-list/dist/VirtualScroll.svelte","../src/formapplications/database/database-shell.svelte","../src/formapplications/SvelteMixin.js","../src/formapplications/database/database-viewer-app.js","../src/formapplications/effects-ui/HowTo.svelte","../src/formapplications/effects-ui/Tabs.svelte","../src/modules/sequence-manager.js","../src/lib/filters/color-matrix-filter.js","../src/lib/filters/blur-filter.js","../src/lib/filters/noise-filter.js","../src/lib/filters/glow-filter.js","../src/lib/filters/clip-filter.js","../src/lib/filters.js","../src/lib/filters/mask-filter.js","../src/modules/sequencer-animation-engine.js","../src/utils/flag-manager.js","../src/lib/sound-lib.js",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CONSTANTS = {\n MODULE_NAME: \"sequencer\",\n EFFECTS_FLAG_NAME: \"effects\",\n SOUNDS_FLAG_NAME: \"sounds\",\n\tEFFECTS_LAYER: \"sequencerEffects\",\n\tDATABASE_NAME: \"sequencerDatabase\",\n\tINTERFACE_LAYER: \"sequencerInterfaceLayer\",\n\tIS_V14: false,\n COLOR: {\n PRIMARY: 0xee442f,\n SECONDARY: 0x601a4a,\n TERTIARY: 0x601a4a,\n },\n SHAPES: {\n POLY: \"polygon\",\n RECT: \"rectangle\",\n CIRC: \"circle\",\n ELIP: \"ellipse\",\n RREC: \"roundedRect\",\n },\n FEET_REGEX: new RegExp(/\\.[0-9]+ft\\.*/g),\n ARRAY_REGEX: new RegExp(/\\.[0-9]$/g),\n STATUS: {\n READY: 0,\n RUNNING: 1,\n COMPLETE: 2,\n SKIPPED: 3,\n ABORTED: 4,\n },\n\n\tPLACEMENT_RESTRICTIONS: {\n\t\tANYWHERE: \"anywhere\",\n\t\tLINE_OF_SIGHT: \"lineOfSight\",\n\t\tNO_COLLIDABLES: \"noCollidables\"\n\t},\n\n\tCALLBACKS: {\n\t\tSHOW: \"show\",\n\t\tMOUSE_MOVE: \"mouseMove\",\n\t\tMOVE: \"move\",\n\t\tCOLLIDE: \"collide\",\n\t\tSTOP_COLLIDING: \"stopColliding\",\n\t\tINVALID_PLACEMENT: \"invalidPlacement\",\n\t\tPLACED: \"placed\",\n\t\tCANCEL: \"cancel\"\n\t},\n\n\t/**\n\t * Map of user-friendly blend mode names to PIXI.BLEND_MODES numeric values.\n\t * Keys are lowercase, alphanumeric, and underscore-tolerant. Multiple aliases\n\t * (e.g. \"soft_light\", \"soft-light\", \"softlight\") are all accepted via the\n\t * normalization in the blendMode trait.\n\t */\n\tBLEND_MODES: {\n\t\tnormal: 0,\n\t\tadd: 1,\n\t\tmultiply: 2,\n\t\tscreen: 3,\n\t\toverlay: 4,\n\t\tdarken: 5,\n\t\tlighten: 6,\n\t\tcolor_dodge: 7,\n\t\tcolor_burn: 8,\n\t\thard_light: 9,\n\t\tsoft_light: 10,\n\t\tdifference: 11,\n\t\texclusion: 12,\n\t\thue: 13,\n\t\tsaturation: 14,\n\t\tcolor: 15,\n\t\tluminosity: 16,\n\t\tnormal_npm: 17,\n\t\tadd_npm: 18,\n\t\tscreen_npm: 19,\n\t\tnone: 20,\n\t\tsubtract: 28,\n\t\terase: 29\n\t},\n\n\t/**\n\t * Blend modes that PIXI v7 exposes by name but does not actually implement.\n\t * Their entries in PIXI's WebGL state table (mapWebGLBlendModesToPixi) are\n\t * aliased to the same [gl.ONE, gl.ONE_MINUS_SRC_ALPHA] pair as NORMAL, so\n\t * the GPU composites them as normal blending. Listed here so the blendMode\n\t * trait can warn the user when one is requested.\n\t */\n\tUNSUPPORTED_BLEND_MODES: new Set([\n\t\t4, // overlay\n\t\t5, // darken\n\t\t6, // lighten\n\t\t7, // color_dodge\n\t\t8, // color_burn\n\t\t9, // hard_light\n\t\t10, // soft_light\n\t\t11, // difference\n\t\t12, // exclusion\n\t\t13, // hue\n\t\t14, // saturation\n\t\t15, // color\n\t\t16 // luminosity\n\t])\n};\n\nCONSTANTS.TOOLS = {\n\tSELECT: `${CONSTANTS.MODULE_NAME}-select-effect`,\n\tPLAY: `${CONSTANTS.MODULE_NAME}-play-effect`,\n\tVIEWER: `${CONSTANTS.MODULE_NAME}-effectviewer`,\n\tDATABASE: `${CONSTANTS.MODULE_NAME}-effectdatabase`\n}\n\nCONSTANTS.EFFECTS_FLAG = `flags.${CONSTANTS.MODULE_NAME}.${CONSTANTS.EFFECTS_FLAG_NAME}`;\nCONSTANTS.REMOVE_EFFECTS_FLAG = `flags.${CONSTANTS.MODULE_NAME}.-=${CONSTANTS.EFFECTS_FLAG_NAME}`;\nCONSTANTS.SOUNDS_FLAG = `flags.${CONSTANTS.MODULE_NAME}.${CONSTANTS.SOUNDS_FLAG_NAME}`;\n\nexport default CONSTANTS;\n","import * as lib from \"../lib/lib.js\";\n\nexport function registerEase(easeName, easeFunction, overwrite = false) {\n if (typeof easeName !== \"string\")\n throw lib.custom_error(\"registerEase\", \"easeName must be of type string\");\n if (!lib.is_function(easeFunction))\n throw lib.custom_error(\n \"registerEase\",\n \"easeFunction must be of type function\"\n );\n if (easeFunctions[easeName] !== undefined && !overwrite) return;\n lib.debug(`registerEase | Registered ease function: ${easeName}`);\n easeFunctions[easeName] = easeFunction;\n}\n\nexport const easeFunctions = {\n linear: linear,\n easeInSine: easeInSine,\n easeOutSine: easeOutSine,\n easeInOutSine: easeInOutSine,\n easeInQuad: easeInQuad,\n easeOutQuad: easeOutQuad,\n easeInOutQuad: easeInOutQuad,\n easeInCubic: easeInCubic,\n easeOutCubic: easeOutCubic,\n easeInOutCubic: easeInOutCubic,\n easeInQuart: easeInQuart,\n easeOutQuart: easeOutQuart,\n easeInOutQuart: easeInOutQuart,\n easeInQuint: easeInQuint,\n easeOutQuint: easeOutQuint,\n easeInOutQuint: easeInOutQuint,\n easeInExpo: easeInExpo,\n easeOutExpo: easeOutExpo,\n easeInOutExpo: easeInOutExpo,\n easeInCirc: easeInCirc,\n easeOutCirc: easeOutCirc,\n easeInOutCirc: easeInOutCirc,\n easeInBack: easeInBack,\n easeOutBack: easeOutBack,\n easeInOutBack: easeInOutBack,\n easeInElastic: easeInElastic,\n easeOutElastic: easeOutElastic,\n easeInOutElastic: easeInOutElastic,\n easeInBounce: easeInBounce,\n easeOutBounce: easeOutBounce,\n easeInOutBounce: easeInOutBounce,\n};\n\nexport const EASE = {\n LINEAR: \"linear\",\n SINE_IN: \"easeInSine\",\n SINE_OUT: \"easeOutSine\",\n SINE_IN_OUT: \"easeInOutSine\",\n QUAD_IN: \"easeInQuad\",\n QUAD_OUT: \"easeOutQuad\",\n QUAD_IN_OUT: \"easeInOutQuad\",\n CUBIC_IN: \"easeInCubic\",\n CUBIC_OUT: \"easeOutCubic\",\n CUBIC_IN_OUT: \"easeInOutCubic\",\n QUART_IN: \"easeInQuart\",\n QUART_OUT: \"easeOutQuart\",\n QUART_IN_OUT: \"easeInOutQuart\",\n QUINT_IN: \"easeInQuint\",\n QUINT_OUT: \"easeOutQuint\",\n QUINT_IN_OUT: \"easeInOutQuint\",\n EXPO_IN: \"easeInExpo\",\n EXPO_OUT: \"easeOutExpo\",\n EXPO_IN_OUT: \"easeInOutExpo\",\n CIRC_IN: \"easeInCirc\",\n CIRC_OUT: \"easeOutCirc\",\n CIRC_IN_OUT: \"easeInOutCirc\",\n BACK_IN: \"easeInBack\",\n BACK_OUT: \"easeOutBack\",\n BACK_IN_OUT: \"easeInOutBack\",\n ELASTIC_IN: \"easeInElastic\",\n ELASTIC_OUT: \"easeOutElastic\",\n ELASTIC_IN_OUT: \"easeInOutElastic\",\n BOUNCE_IN: \"easeInBounce\",\n BOUNCE_OUT: \"easeOutBounce\",\n BOUNCE_IN_OUT: \"easeInOutBounce\",\n};\n\nfunction linear(x) {\n return x;\n}\n\nfunction easeInSine(x) {\n return 1 - Math.cos((x * Math.PI) / 2);\n}\n\nfunction easeOutSine(x) {\n return Math.sin((x * Math.PI) / 2);\n}\n\nfunction easeInOutSine(x) {\n return -(Math.cos(Math.PI * x) - 1) / 2;\n}\n\nfunction easeInQuad(x) {\n return x * x;\n}\n\nfunction easeOutQuad(x) {\n return 1 - (1 - x) * (1 - x);\n}\n\nfunction easeInOutQuad(x) {\n return x < 0.5 ? 2 * x * x : 1 - Math.pow(-2 * x + 2, 2) / 2;\n}\n\nfunction easeInCubic(x) {\n return x * x * x;\n}\n\nfunction easeOutCubic(x) {\n return 1 - Math.pow(1 - x, 3);\n}\n\nfunction easeInOutCubic(x) {\n return x < 0.5 ? 4 * x * x * x : 1 - Math.pow(-2 * x + 2, 3) / 2;\n}\n\nfunction easeInQuart(x) {\n return x * x * x * x;\n}\n\nfunction easeOutQuart(x) {\n return 1 - Math.pow(1 - x, 4);\n}\n\nfunction easeInOutQuart(x) {\n return x < 0.5 ? 8 * x * x * x * x : 1 - Math.pow(-2 * x + 2, 4) / 2;\n}\n\nfunction easeInQuint(x) {\n return x * x * x * x * x;\n}\n\nfunction easeOutQuint(x) {\n return 1 - Math.pow(1 - x, 5);\n}\n\nfunction easeInOutQuint(x) {\n return x < 0.5 ? 16 * x * x * x * x * x : 1 - Math.pow(-2 * x + 2, 5) / 2;\n}\n\nfunction easeInExpo(x) {\n return x === 0 ? 0 : Math.pow(2, 10 * x - 10);\n}\n\nfunction easeOutExpo(x) {\n return x === 1 ? 1 : 1 - Math.pow(2, -10 * x);\n}\n\nfunction easeInOutExpo(x) {\n return x === 0\n ? 0\n : x === 1\n ? 1\n : x < 0.5\n ? Math.pow(2, 20 * x - 10) / 2\n : (2 - Math.pow(2, -20 * x + 10)) / 2;\n}\n\nfunction easeInCirc(x) {\n return 1 - Math.sqrt(1 - Math.pow(x, 2));\n}\n\nfunction easeOutCirc(x) {\n return Math.sqrt(1 - Math.pow(x - 1, 2));\n}\n\nfunction easeInOutCirc(x) {\n return x < 0.5\n ? (1 - Math.sqrt(1 - Math.pow(2 * x, 2))) / 2\n : (Math.sqrt(1 - Math.pow(-2 * x + 2, 2)) + 1) / 2;\n}\n\nfunction easeInBack(x) {\n const c1 = 1.70158;\n const c3 = c1 + 1;\n\n return c3 * x * x * x - c1 * x * x;\n}\n\nfunction easeOutBack(x) {\n const c1 = 1.70158;\n const c3 = c1 + 1;\n\n return 1 + c3 * Math.pow(x - 1, 3) + c1 * Math.pow(x - 1, 2);\n}\n\nfunction easeInOutBack(x) {\n const c1 = 1.70158;\n const c2 = c1 * 1.525;\n\n return x < 0.5\n ? (Math.pow(2 * x, 2) * ((c2 + 1) * 2 * x - c2)) / 2\n : (Math.pow(2 * x - 2, 2) * ((c2 + 1) * (x * 2 - 2) + c2) + 2) / 2;\n}\n\nfunction easeInElastic(x) {\n const c4 = (2 * Math.PI) / 3;\n\n return x === 0\n ? 0\n : x === 1\n ? 1\n : -Math.pow(2, 10 * x - 10) * Math.sin((x * 10 - 10.75) * c4);\n}\n\nfunction easeOutElastic(x) {\n const c4 = (2 * Math.PI) / 3;\n\n return x === 0\n ? 0\n : x === 1\n ? 1\n : Math.pow(2, -10 * x) * Math.sin((x * 10 - 0.75) * c4) + 1;\n}\n\nfunction easeInOutElastic(x) {\n const c5 = (2 * Math.PI) / 4.5;\n\n return x === 0\n ? 0\n : x === 1\n ? 1\n : x < 0.5\n ? -(Math.pow(2, 20 * x - 10) * Math.sin((20 * x - 11.125) * c5)) / 2\n : (Math.pow(2, -20 * x + 10) * Math.sin((20 * x - 11.125) * c5)) / 2 + 1;\n}\n\nfunction easeInBounce(x) {\n return 1 - easeOutBounce(1 - x);\n}\n\nfunction easeOutBounce(x) {\n const n1 = 7.5625;\n const d1 = 2.75;\n\n if (x < 1 / d1) {\n return n1 * x * x;\n } else if (x < 2 / d1) {\n return n1 * (x -= 1.5 / d1) * x + 0.75;\n } else if (x < 2.5 / d1) {\n return n1 * (x -= 2.25 / d1) * x + 0.9375;\n } else {\n return n1 * (x -= 2.625 / d1) * x + 0.984375;\n }\n}\n\nfunction easeInOutBounce(x) {\n return x < 0.5\n ? (1 - easeOutBounce(1 - 2 * x)) / 2\n : (1 + easeOutBounce(2 * x - 1)) / 2;\n}\n","import CONSTANTS from \"../constants.js\";\nimport { easeFunctions } from \"../canvas-effects/ease.js\";\n\n/**\n * This function linearly interpolates between p1 and p2 based on a normalized value of t\n *\n * @param {string} inFile The start value\n * @param {object} inOptions The end value\n * @return {array|boolean} Interpolated value\n */\nexport async function getFiles(\n\tinFile,\n\t{ applyWildCard = false, softFail = false } = {}\n) {\n\tlet source = \"data\";\n\tconst browseOptions = { wildcard: applyWildCard };\n\n\tif (/\\.s3\\./.test(inFile)) {\n\t\tsource = \"s3\";\n\t\tconst { bucket, keyPrefix } = foundry.utils.parseS3URL(inFile);\n\t\tif (bucket) {\n\t\t\tbrowseOptions.bucket = bucket;\n\t\t\tinFile = keyPrefix;\n\t\t}\n\t}\n\n\ttry {\n\t\treturn (await foundry.applications.apps.FilePicker.implementation.browse(source, inFile, browseOptions)).files;\n\t} catch (err) {\n\t\tif (softFail) return false;\n\t\tthrow custom_error(\"Sequencer\", `getFiles | ${err}`);\n\t}\n}\n\n/**\n * This function interpolates between p1 and p2 based on a normalized value of t, determined by the ease provided (string or function)\n *\n * @param {number} p1 The start value\n * @param {number} p2 The end value\n * @param {number} t The normalized percentage\n * @param {string|function} ease Type of ease to interpolate\n * @return {number} Interpolated value\n */\nexport function interpolate(p1, p2, t, ease = \"linear\") {\n\tconst easeFunction = is_function(ease) ? ease : easeFunctions[ease];\n\treturn p1 + (p2 - p1) * easeFunction(t);\n}\n\n/**\n * Returns a floating point number between a minimum and maximum value\n *\n * @param {number} min The minimum value\n * @param {number} max The maximum value\n * @param {boolean|MersenneTwister} twister The twister to generate the random results from\n * @return {number} A random value between the range given\n */\nexport function random_float_between(min, max, twister = false) {\n\tconst random = twister ? twister.random() : Math.random();\n\tconst _max = Math.max(max, min);\n\tconst _min = Math.min(max, min);\n\treturn random * (_max - _min) + _min;\n}\n\n/**\n * Returns an integer between a minimum and maximum value\n *\n * @param {number} min The minimum value\n * @param {number} max The maximum value\n * @param {boolean|MersenneTwister} twister The twister to generate the random results from\n * @return {int} A random integer between the range given\n */\nexport function random_int_between(min, max, twister = false) {\n\treturn Math.floor(random_float_between(min, max, twister));\n}\n\nexport function flip_negate(num_1, num_2) {\n\tif (num_1 > 0) {\n\t\tnum_1 -= num_2;\n\t} else {\n\t\tnum_1 += num_2;\n\t}\n\treturn num_1;\n}\n\n/**\n * Returns a shuffled copy of the original array.\n *\n * @param {array} inArray\n * @param {boolean|MersenneTwister} twister The twister to generate the random results from\n * @return {array}\n */\nexport function shuffle_array(inArray, twister = false) {\n\tlet shuffled = [...inArray];\n\tconst randomMethod = twister?.random ?? Math.random;\n\tfor (let i = shuffled.length - 1; i > 0; i--) {\n\t\tlet j = Math.floor(randomMethod() * (i + 1));\n\t\tlet temp = shuffled[i];\n\t\tshuffled[i] = shuffled[j];\n\t\tshuffled[j] = temp;\n\t}\n\treturn shuffled;\n}\n\n/**\n * This function determines if the given parameter is a callable function\n *\n * @param {function} inFunc The function object to be tested\n * @return {boolean} A boolean whether the function is actually a function\n */\nexport function is_function(inFunc) {\n\treturn (\n\t\tinFunc &&\n\t\t({}.toString.call(inFunc) === \"[object Function]\" ||\n\t\t\t{}.toString.call(inFunc) === \"[object AsyncFunction]\")\n\t);\n}\n\n/**\n * Returns a random element in the given array\n *\n * @param {array} inArray An array\n * @param {boolean} recurse Whether to recurse if the randomly chosen element is also an array\n * @param {boolean|MersenneTwister} twister The twister to generate the random results from\n * @param {boolean} index Whether to return the chosen index instead\n * @return {object} A random element from the array\n */\nexport function random_array_element(\n\tinArray,\n\t{ recurse = false, twister = false, index = false } = {}\n) {\n\tconst chosenIndex = random_int_between(0, inArray.length, twister);\n\tlet choice = inArray[chosenIndex];\n\tif (recurse && Array.isArray(choice)) {\n\t\treturn random_array_element(choice, { recurse, twister, index });\n\t}\n\tif (index) {\n\t\treturn chosenIndex;\n\t}\n\treturn choice;\n}\n\n/**\n * Returns a random element in the given object\n *\n * @param {object} inObject An object\n * @param {boolean} recurse Whether to recurse if the randomly chosen element is also an object\n * @param {boolean|MersenneTwister} twister The twister to generate the random results from\n * @return {object} A random element from the object\n */\nexport function random_object_element(\n\tinObject,\n\t{ recurse = false, twister = false } = {}\n) {\n\tlet keys = Object.keys(inObject).filter((k) => !k.startsWith(\"_\"));\n\tlet choice = inObject[random_array_element(keys, { twister })];\n\tif (typeof choice === \"object\" && recurse) {\n\t\treturn random_object_element(choice, { recurse: true });\n\t}\n\treturn choice;\n}\n\n/**\n * Tests a parameter whether it is a real number\n *\n * @param {any} inNumber The parameter to test\n * @return {boolean} Whether it is of type number, not infinite, and not NaN\n */\nexport function is_real_number(inNumber) {\n\treturn !isNaN(inNumber) && typeof inNumber === \"number\" && isFinite(inNumber);\n}\n\n/**\n * Coerces a number between 0 and 1\n *\n * @param {any} inNumber The parameter to test\n * @return {number | undefined} Number normalized between 0 and 1, or undefined if inNumber is NaN\n */\nexport function normalize_alpha_number(inNumber) {\n\tif (!is_real_number(inNumber)) return undefined;\n\n\tinNumber = Math.abs(inNumber);\n\twhile (inNumber > 1) inNumber /= 10;\n\treturn inNumber;\n}\n\n/**\n * Gets a property in an object based on a path in dot-notated string\n *\n * @param {object} obj The object to be queried\n * @param {array|string} path The path in the object to the property in a dot-notated string\n * @returns {any} Property value, if found\n */\nexport function deep_get(obj, path) {\n\tif (!Array.isArray(path)) path = path.split(\".\");\n\ttry {\n\t\tlet i;\n\t\tfor (i = 0; i < path.length - 1; i++) {\n\t\t\tobj = obj[path[i]];\n\t\t}\n\t\treturn obj[path[i]];\n\t} catch (err) {\n\t}\n}\n\n/**\n * Sets a property in an object based on a path in dot-notated string, example:\n * let obj = { first: { second: { third: \"value\" } } }\n * deep_set(obj, \"newValue\", \"first.second.third\")\n * let obj = { first: { second: { third: \"newValue\" } } }\n *\n * @param {object} obj The object to be modified\n * @param {array|string} path The path in the object to the property in a dot-notated string\n * @param {any} value The value to set\n */\nexport function deep_set(obj, path, value) {\n\tif (!Array.isArray(path)) path = path.split(\".\");\n\ttry {\n\t\tlet i;\n\t\tfor (i = 0; i < path.length - 1; i++) {\n\t\t\tobj = obj[path[i]];\n\t\t}\n\t\tif (is_function(obj[path[i]])) {\n\t\t\tobj[path[i]](value);\n\t\t} else {\n\t\t\tobj[path[i]] = value;\n\t\t}\n\t} catch (err) {\n\t}\n}\n\n/**\n * Flattens an object in a dot-notated format, like:\n * { data: { entry: { thing: \"stuff\" } } }\n * Becomes:\n * [{ \"data.entry.thing\": \"stuff\" }]\n *\n * @param {object} obj The object to be flattened\n * @return {object} The flattened object\n */\nexport function flatten_object(obj) {\n\tlet toReturn = [];\n\tfor (let i in obj) {\n\t\tif (i.startsWith(\"_\")) continue;\n\t\tif (!obj.hasOwnProperty(i)) continue;\n\t\tif (typeof obj[i] == \"object\") {\n\t\t\tlet flatObject = flatten_object(obj[i]);\n\t\t\tfor (let x in flatObject) {\n\t\t\t\tif (!flatObject.hasOwnProperty(x)) continue;\n\t\t\t\ttoReturn[i + \".\" + x] = flatObject[x];\n\t\t\t}\n\t\t} else {\n\t\t\ttoReturn[i] = obj[i];\n\t\t}\n\t}\n\treturn toReturn;\n}\n\n/**\n * Wait for a duration.\n *\n * @param {number} ms Milliseconds to wait\n * @return {Promise} A promise that resolves after a given amount of milliseconds\n */\nexport function wait(ms) {\n\treturn new Promise((resolve) => setTimeout(resolve, ms));\n}\n\n/**\n * Clamps a value between two numbers\n *\n * @param {number} num Number to clamp\n * @param {number} min The minimum the number can be\n * @param {number} max The maximum the number can be\n * @return {number} The clamped number\n */\nexport function clamp(num, min, max) {\n\tconst _max = Math.max(min, max);\n\tconst _min = Math.min(min, max);\n\treturn Math.max(_min, Math.min(_max, num));\n}\n\n/**\n * Checks whether a given string is a valid UUID or not\n *\n * @param {string} inId\n * @returns {boolean}\n */\nexport function is_UUID(inId) {\n\treturn (\n\t\ttypeof inId === \"string\" &&\n\t\t(inId.startsWith(\"Scene\") ||\n\t\t\tinId.startsWith(\"Actor\") ||\n\t\t\tinId.startsWith(\"Item\")) &&\n\t\t(inId.match(/\\./g) || []).length &&\n\t\t!inId.endsWith(\".\")\n\t);\n}\n\n/**\n * Gets an object by an unique identifier, such as an ID, name, tag, label\n *\n * @param {String} inObjectId The object identifier to search for\n * @param {String} inSceneId The scene ID to search within\n * @return {any} Object if found, else undefined\n */\nexport function get_object_from_scene(\n\tinObjectId,\n\tinSceneId = game.user.viewedScene\n) {\n\tlet tryUUID = is_UUID(inObjectId);\n\tif (tryUUID) {\n\t\tconst obj = fromUuidSync(inObjectId);\n\t\tif (obj) return obj;\n\t\ttryUUID = false;\n\t}\n\tconst allDocs = get_all_documents_from_scene(inSceneId);\n\treturn allDocs.find((obj) => {\n\t\treturn get_object_identifier(obj, tryUUID) === inObjectId;\n\t});\n}\n\n/**\n * Gets all documents from the given scene\n *\n * @param {Boolean/String} inSceneId\n * @returns {Array}\n */\nexport function get_all_documents_from_scene(inSceneId = false) {\n\tconst scene = inSceneId\n\t\t? game.scenes.get(inSceneId)\n\t\t: game.scenes.get(game.user?.viewedScene);\n\tif (!scene) return [];\n\treturn [\n\t\t...canvas.layers.map(layer => layer?.children ?? [].concat(layer?.preview?.children ?? [])),\n\t\t...Array.from(scene?.tokens ?? []),\n\t\t...Array.from(scene?.lights ?? []),\n\t\t...Array.from(scene?.sounds ?? []),\n\t\t...Array.from(scene?.regions ?? []),\n\t\t...Array.from(scene?.tiles ?? []),\n\t\t...Array.from(scene?.walls ?? []),\n\t\t...Array.from(scene?.drawings ?? []),\n\t]\n\t\t.deepFlatten()\n\t\t.filter(Boolean);\n}\n\n/**\n * Gets the document from an object, if it has one\n *\n * @param inObject\n * @returns {Document|{document}|*}\n */\nexport function validate_document(inObject) {\n\tconst document = inObject?.document ?? inObject;\n\treturn is_UUID(document?.uuid) ? document : inObject;\n}\n\n/**\n * Get the unique identifier from an object\n *\n * @param {Object} inObject The object to get the unique identifier from\n * @param {Boolean} tryUUID The object to get the unique identifier from\n * @return {String} The identifier\n */\nexport function get_object_identifier(inObject, tryUUID = true) {\n\tconst uuid = tryUUID && is_UUID(inObject?.uuid) ? inObject?.uuid : undefined;\n\treturn (\n\t\tuuid ??\n\t\tinObject?.id ??\n\t\tinObject?.document?.name ??\n\t\tinObject?.name ??\n\t\t(inObject?.tag !== \"\" ? inObject?.tag : undefined) ??\n\t\t(inObject?.label !== \"\" ? inObject?.label : undefined) ??\n\t\tinObject?.sound_id\n\t);\n}\n\n/**\n * Turns an array containing multiples of the same string, objects, etc, and removes duplications, and returns a fresh array\n *\n * @param {Array} inArray An array of multiple duplicate collections to be made unique\n * @return {Array} An array containing only unique objects\n */\nexport function make_array_unique(inArray) {\n\treturn Array.from(new Set(inArray));\n}\n\nexport function debug(msg, args = \"\") {\n\tif (game.settings.get(CONSTANTS.MODULE_NAME, \"debug\"))\n\t\tconsole.log(`DEBUG | Sequencer | ${msg}`, args);\n}\n\nexport function debug_error(msg, args) {\n\tif (game.settings.get(CONSTANTS.MODULE_NAME, \"debug\"))\n\t\tconsole.error(`DEBUG | Sequencer | ${msg}`, args);\n}\n\nexport function custom_warning(inClassName, warning, notify = false) {\n\tinClassName =\n\t\tinClassName !== \"Sequencer\"\n\t\t\t? \"Sequencer | Module: \" + inClassName\n\t\t\t: inClassName;\n\twarning = `${inClassName} | ${warning}`;\n\tif (notify) ui.notifications.warn(warning, { console: false });\n\tconsole.warn(warning.replace(\"
\", \"\\n\"));\n}\n\nconst throttledWarnings = {};\n\nexport function throttled_custom_warning(\n\tinClassName,\n\twarning,\n\tdelay = 10000,\n\tnotify = false\n) {\n\tinClassName =\n\t\tinClassName !== \"Sequencer\"\n\t\t\t? \"Sequencer | Module: \" + inClassName\n\t\t\t: inClassName;\n\twarning = `${inClassName} | ${warning}`;\n\tif (throttledWarnings[warning]) return;\n\tthrottledWarnings[warning] = true;\n\tif (notify) ui.notifications.warn(warning, { console: false });\n\tconsole.warn(warning.replace(\"
\", \"\\n\"));\n\tsetTimeout(() => {\n\t\tdelete throttledWarnings[warning];\n\t}, delay);\n}\n\nexport function custom_error(inClassName, error) {\n\tinClassName =\n\t\tinClassName !== \"Sequencer\"\n\t\t\t? \"Sequencer | Module: \" + inClassName\n\t\t\t: inClassName;\n\terror = `${inClassName} | ${error}`;\n\tui.notifications.error(error, { console: false });\n\treturn new Error(error.replace(\"
\", \"\\n\"));\n}\n\nexport function user_can_do(inSetting) {\n\treturn game.user.role > game.settings.get(CONSTANTS.MODULE_NAME, inSetting);\n}\n\nexport function group_by(xs, key) {\n\treturn xs.reduce(function (acc, obj) {\n\t\tlet property = foundry.utils.getProperty(obj, key);\n\t\tacc[property] = acc[property] || [];\n\t\tacc[property].push(obj);\n\t\treturn acc;\n\t}, {});\n}\n\nfunction objHasProperty(obj, prop) {\n\treturn obj.constructor.prototype.hasOwnProperty(prop);\n}\n\nexport function sequence_proxy_wrap(inSequence) {\n\treturn new Proxy(inSequence, {\n\t\tget: function (target, prop) {\n\t\t\tif (!objHasProperty(target, prop)) {\n\t\t\t\tif (Sequencer.SectionManager.externalSections[prop] === undefined) {\n\t\t\t\t\tconst section = target.sections[target.sections.length - 1];\n\t\t\t\t\tif (section && objHasProperty(section, prop)) {\n\t\t\t\t\t\tconst targetProperty = Reflect.get(section, prop);\n\t\t\t\t\t\treturn is_function(targetProperty)\n\t\t\t\t\t\t\t? targetProperty.bind(section)\n\t\t\t\t\t\t\t: targetProperty;\n\t\t\t\t\t}\n\t\t\t\t\treturn Reflect.get(target, prop);\n\t\t\t\t}\n\t\t\t\ttarget.sectionToCreate =\n\t\t\t\t\tSequencer.SectionManager.externalSections[prop];\n\t\t\t\treturn Reflect.get(target, \"_createCustomSection\");\n\t\t\t}\n\t\t\treturn Reflect.get(target, prop);\n\t\t},\n\t});\n}\n\nexport function section_proxy_wrap(inClass) {\n\treturn new Proxy(inClass, {\n\t\tget: function (target, prop) {\n\t\t\tif (\n\t\t\t\t!objHasProperty(target, prop) &&\n\t\t\t\tobjHasProperty(target.sequence, prop)\n\t\t\t) {\n\t\t\t\tconst targetProperty = Reflect.get(target.sequence, prop);\n\t\t\t\treturn is_function(targetProperty)\n\t\t\t\t\t? targetProperty.bind(target.sequence)\n\t\t\t\t\t: targetProperty;\n\t\t\t}\n\t\t\treturn Reflect.get(target, prop);\n\t\t},\n\t});\n}\n\nexport function str_to_search_regex_str(str) {\n\treturn str\n\t\t.trim()\n\t\t.replace(/[.+?^${}()|[\\]\\\\]/g, '\\\\$&')\n\t\t.replace(/\\*+/g, \".*?\");\n}\n\nexport function safe_str(str) {\n\treturn str.normalize(\"NFD\").replace(/[\\u0300-\\u036f]/g, \"\");\n}\n\nexport function get_hash(input) {\n\tlet hash = 0;\n\tconst len = input.length;\n\tfor (let i = 0; i < len; i++) {\n\t\thash = (hash << 5) - hash + input.charCodeAt(i);\n\t\thash |= 0; // to 32bit integer\n\t}\n\treturn hash;\n}\n\nexport function parseColor(inColor) {\n\treturn {\n\t\thexadecimal: is_real_number(inColor) ? inColor.toString(16) : inColor,\n\t\tdecimal:\n\t\t\ttypeof inColor === \"string\" && inColor.startsWith(\"#\")\n\t\t\t\t? parseInt(inColor.slice(1), 16)\n\t\t\t\t: inColor,\n\t};\n}\n\nexport function getCanvasMouse() {\n\treturn canvas?.app?.renderer?.events?.pointer ?? canvas?.app?.renderer?.plugins?.interaction?.pointer;\n}\n\nexport function createMersenneTwister(seed) {\n\tconst twister = foundry?.dice?.MersenneTwister ?? MersenneTwister;\n\treturn new twister(seed);\n}\n\nexport async function createJournalDatabase(){\n\tlet database = game.journal.getName(CONSTANTS.DATABASE_NAME);\n\tif(!database) {\n\t\tdatabase = await JournalEntry.create({\n\t\t\tname: CONSTANTS.DATABASE_NAME,\n\t\t\t\"ownership.default\": CONST.DOCUMENT_OWNERSHIP_LEVELS.OWNER\n\t\t});\n\t}\n\treturn database;\n}\n\nexport function forceDeletionKeyWrapper(updateObj, key){\n\tif(CONSTANTS.IS_V14){\n\t\tupdateObj[key.replaceAll(\"-=\", \"\")] = new foundry.data.operators.ForcedDeletion();\n\t}else {\n\t\tupdateObj[key] = null;\n\t}\n}","// generated during release, do not modify\n\n/**\n * The current version, as set in package.json.\n * @type {string}\n */\nexport const VERSION = '5.55.5';\nexport const PUBLIC_VERSION = '5';\n","import { PUBLIC_VERSION } from '../version.js';\n\nif (typeof window !== 'undefined') {\n\t// @ts-expect-error\n\t((window.__svelte ??= {}).v ??= new Set()).add(PUBLIC_VERSION);\n}\n","/** True if experimental.async=true */\nexport let async_mode_flag = false;\n/** True if we're not certain that we only have Svelte 5 code in the compilation */\nexport let legacy_mode_flag = false;\n/** True if $inspect.trace is used */\nexport let tracing_mode_flag = false;\n\nexport function enable_async_mode_flag() {\n\tasync_mode_flag = true;\n}\n\n/** ONLY USE THIS DURING TESTING */\nexport function disable_async_mode_flag() {\n\tasync_mode_flag = false;\n}\n\nexport function enable_legacy_mode_flag() {\n\tlegacy_mode_flag = true;\n}\n\nexport function enable_tracing_mode_flag() {\n\ttracing_mode_flag = true;\n}\n","import { enable_legacy_mode_flag } from './index.js';\n\nenable_legacy_mode_flag();\n","export const EACH_ITEM_REACTIVE = 1;\nexport const EACH_INDEX_REACTIVE = 1 << 1;\n/** See EachBlock interface metadata.is_controlled for an explanation what this is */\nexport const EACH_IS_CONTROLLED = 1 << 2;\nexport const EACH_IS_ANIMATED = 1 << 3;\nexport const EACH_ITEM_IMMUTABLE = 1 << 4;\n\nexport const PROPS_IS_IMMUTABLE = 1;\nexport const PROPS_IS_RUNES = 1 << 1;\nexport const PROPS_IS_UPDATED = 1 << 2;\nexport const PROPS_IS_BINDABLE = 1 << 3;\nexport const PROPS_IS_LAZY_INITIAL = 1 << 4;\n\nexport const TRANSITION_IN = 1;\nexport const TRANSITION_OUT = 1 << 1;\nexport const TRANSITION_GLOBAL = 1 << 2;\n\nexport const TEMPLATE_FRAGMENT = 1;\nexport const TEMPLATE_USE_IMPORT_NODE = 1 << 1;\nexport const TEMPLATE_USE_SVG = 1 << 2;\nexport const TEMPLATE_USE_MATHML = 1 << 3;\n\nexport const HYDRATION_START = '[';\n/** used to indicate that an `{:else}...` block was rendered */\nexport const HYDRATION_START_ELSE = '[!';\n/** used to indicate that a boundary's `failed` snippet was rendered on the server */\nexport const HYDRATION_START_FAILED = '[?';\nexport const HYDRATION_END = ']';\nexport const HYDRATION_ERROR = {};\n\nexport const ELEMENT_IS_NAMESPACED = 1;\nexport const ELEMENT_PRESERVE_ATTRIBUTE_CASE = 1 << 1;\nexport const ELEMENT_IS_INPUT = 1 << 2;\n\nexport const UNINITIALIZED = Symbol();\n\n// Dev-time component properties\nexport const FILENAME = Symbol('filename');\nexport const HMR = Symbol('hmr');\n\nexport const NAMESPACE_HTML = 'http://www.w3.org/1999/xhtml';\nexport const NAMESPACE_SVG = 'http://www.w3.org/2000/svg';\nexport const NAMESPACE_MATHML = 'http://www.w3.org/1998/Math/MathML';\n\n// we use a list of ignorable runtime warnings because not every runtime warning\n// can be ignored and we want to keep the validation for svelte-ignore in place\nexport const IGNORABLE_RUNTIME_WARNINGS = /** @type {const} */ ([\n\t'await_waterfall',\n\t'await_reactivity_loss',\n\t'state_snapshot_uncloneable',\n\t'binding_property_non_reactive',\n\t'hydration_attribute_changed',\n\t'hydration_html_changed',\n\t'ownership_invalid_binding',\n\t'ownership_invalid_mutation'\n]);\n\n/**\n * Whitespace inside one of these elements will not result in\n * a whitespace node being created in any circumstances. (This\n * list is almost certainly very incomplete)\n * TODO this is currently unused\n */\nexport const ELEMENTS_WITHOUT_TEXT = ['audio', 'datalist', 'dl', 'optgroup', 'select', 'video'];\n\nexport const ATTACHMENT_KEY = '@attach';\n","const node_env = globalThis.process?.env?.NODE_ENV;\nexport default node_env && !node_env.toLowerCase().startsWith('prod');\n","// Store the references to globals in case someone tries to monkey patch these, causing the below\n// to de-opt (this occurs often when using popular extensions).\nexport var is_array = Array.isArray;\nexport var index_of = Array.prototype.indexOf;\nexport var includes = Array.prototype.includes;\nexport var array_from = Array.from;\nexport var object_keys = Object.keys;\nexport var define_property = Object.defineProperty;\nexport var get_descriptor = Object.getOwnPropertyDescriptor;\nexport var get_descriptors = Object.getOwnPropertyDescriptors;\nexport var object_prototype = Object.prototype;\nexport var array_prototype = Array.prototype;\nexport var get_prototype_of = Object.getPrototypeOf;\nexport var is_extensible = Object.isExtensible;\nexport var has_own_property = Object.prototype.hasOwnProperty;\n\n/**\n * @param {any} thing\n * @returns {thing is Function}\n */\nexport function is_function(thing) {\n\treturn typeof thing === 'function';\n}\n\nexport const noop = () => {};\n\n// Adapted from https://github.com/then/is-promise/blob/master/index.js\n// Distributed under MIT License https://github.com/then/is-promise/blob/master/LICENSE\n\n/**\n * @template [T=any]\n * @param {any} value\n * @returns {value is PromiseLike}\n */\nexport function is_promise(value) {\n\treturn typeof value?.then === 'function';\n}\n\n/** @param {Function} fn */\nexport function run(fn) {\n\treturn fn();\n}\n\n/** @param {Array<() => void>} arr */\nexport function run_all(arr) {\n\tfor (var i = 0; i < arr.length; i++) {\n\t\tarr[i]();\n\t}\n}\n\n/**\n * TODO replace with Promise.withResolvers once supported widely enough\n * @template [T=void]\n */\nexport function deferred() {\n\t/** @type {(value: T) => void} */\n\tvar resolve;\n\n\t/** @type {(reason: any) => void} */\n\tvar reject;\n\n\t/** @type {Promise} */\n\tvar promise = new Promise((res, rej) => {\n\t\tresolve = res;\n\t\treject = rej;\n\t});\n\n\t// @ts-expect-error\n\treturn { promise, resolve, reject };\n}\n\n/**\n * @template V\n * @param {V} value\n * @param {V | (() => V)} fallback\n * @param {boolean} [lazy]\n * @returns {V}\n */\nexport function fallback(value, fallback, lazy = false) {\n\treturn value === undefined\n\t\t? lazy\n\t\t\t? /** @type {() => V} */ (fallback)()\n\t\t\t: /** @type {V} */ (fallback)\n\t\t: value;\n}\n\n/**\n * When encountering a situation like `let [a, b, c] = $derived(blah())`,\n * we need to stash an intermediate value that `a`, `b`, and `c` derive\n * from, in case it's an iterable\n * @template T\n * @param {ArrayLike | Iterable} value\n * @param {number} [n]\n * @returns {Array}\n */\nexport function to_array(value, n) {\n\t// return arrays unchanged\n\tif (Array.isArray(value)) {\n\t\treturn value;\n\t}\n\n\t// if value is not iterable, or `n` is unspecified (indicates a rest\n\t// element, which means we're not concerned about unbounded iterables)\n\t// convert to an array with `Array.from`\n\tif (n === undefined || !(Symbol.iterator in value)) {\n\t\treturn Array.from(value);\n\t}\n\n\t// otherwise, populate an array with `n` values\n\n\t/** @type {T[]} */\n\tconst array = [];\n\n\tfor (const element of value) {\n\t\tarray.push(element);\n\t\tif (array.length === n) break;\n\t}\n\n\treturn array;\n}\n\n/**\n * @param {Record} obj\n * @param {Array} keys\n * @returns {Record}\n */\nexport function exclude_from_object(obj, keys) {\n\t/** @type {Record} */\n\tvar result = {};\n\n\tfor (var key in obj) {\n\t\tif (!keys.includes(key)) {\n\t\t\tresult[key] = obj[key];\n\t\t}\n\t}\n\n\tfor (var symbol of Object.getOwnPropertySymbols(obj)) {\n\t\tif (Object.propertyIsEnumerable.call(obj, symbol) && !keys.includes(symbol)) {\n\t\t\tresult[symbol] = obj[symbol];\n\t\t}\n\t}\n\n\treturn result;\n}\n","// General flags\nexport const DERIVED = 1 << 1;\nexport const EFFECT = 1 << 2;\nexport const RENDER_EFFECT = 1 << 3;\n/**\n * An effect that does not destroy its child effects when it reruns.\n * Runs as part of render effects, i.e. not eagerly as part of tree traversal or effect flushing.\n */\nexport const MANAGED_EFFECT = 1 << 24;\n/**\n * An effect that does not destroy its child effects when it reruns (like MANAGED_EFFECT).\n * Runs eagerly as part of tree traversal or effect flushing.\n */\nexport const BLOCK_EFFECT = 1 << 4;\nexport const BRANCH_EFFECT = 1 << 5;\nexport const ROOT_EFFECT = 1 << 6;\nexport const BOUNDARY_EFFECT = 1 << 7;\n/**\n * Indicates that a reaction is connected to an effect root — either it is an effect,\n * or it is a derived that is depended on by at least one effect. If a derived has\n * no dependents, we can disconnect it from the graph, allowing it to either be\n * GC'd or reconnected later if an effect comes to depend on it again\n */\nexport const CONNECTED = 1 << 9;\nexport const CLEAN = 1 << 10;\nexport const DIRTY = 1 << 11;\nexport const MAYBE_DIRTY = 1 << 12;\nexport const INERT = 1 << 13;\nexport const DESTROYED = 1 << 14;\n/** Set once a reaction has run for the first time */\nexport const REACTION_RAN = 1 << 15;\n/** Effect is in the process of getting destroyed. Can be observed in child teardown functions */\nexport const DESTROYING = 1 << 25;\n\n// Flags exclusive to effects\n/**\n * 'Transparent' effects do not create a transition boundary.\n * This is on a block effect 99% of the time but may also be on a branch effect if its parent block effect was pruned\n */\nexport const EFFECT_TRANSPARENT = 1 << 16;\nexport const EAGER_EFFECT = 1 << 17;\nexport const HEAD_EFFECT = 1 << 18;\nexport const EFFECT_PRESERVED = 1 << 19;\nexport const USER_EFFECT = 1 << 20;\nexport const EFFECT_OFFSCREEN = 1 << 25;\n\n// Flags exclusive to deriveds\n/**\n * Tells that we marked this derived and its reactions as visited during the \"mark as (maybe) dirty\"-phase.\n * Will be lifted during execution of the derived and during checking its dirty state (both are necessary\n * because a derived might be checked but not executed). This is a pure performance optimization flag and\n * should not be used for any other purpose!\n */\nexport const WAS_MARKED = 1 << 16;\n\n// Flags used for async\nexport const REACTION_IS_UPDATING = 1 << 21;\nexport const ASYNC = 1 << 22;\n\nexport const ERROR_VALUE = 1 << 23;\n\nexport const STATE_SYMBOL = Symbol('$state');\nexport const LEGACY_PROPS = Symbol('legacy props');\nexport const LOADING_ATTR_SYMBOL = Symbol('');\nexport const PROXY_PATH_SYMBOL = Symbol('proxy path');\n/** An anchor might change, via this symbol on the original anchor we can tell HMR about the updated anchor */\nexport const HMR_ANCHOR = Symbol('hmr anchor');\n\n/** allow users to ignore aborted signal errors if `reason.name === 'StaleReactionError` */\nexport const STALE_REACTION = new (class StaleReactionError extends Error {\n\tname = 'StaleReactionError';\n\tmessage = 'The reaction that called `getAbortSignal()` was re-run or destroyed';\n})();\n\nexport const IS_XHTML =\n\t// We gotta write it like this because after downleveling the pure comment may end up in the wrong location\n\t!!globalThis.document?.contentType &&\n\t/* @__PURE__ */ globalThis.document.contentType.includes('xml');\nexport const ELEMENT_NODE = 1;\nexport const TEXT_NODE = 3;\nexport const COMMENT_NODE = 8;\nexport const DOCUMENT_FRAGMENT_NODE = 11;\n","/* This file is generated by scripts/process-messages/index.js. Do not edit! */\n\nimport { DEV } from 'esm-env';\n\n/**\n * Cannot use `%name%(...)` unless the `experimental.async` compiler option is `true`\n * @param {string} name\n * @returns {never}\n */\nexport function experimental_async_required(name) {\n\tif (DEV) {\n\t\tconst error = new Error(`experimental_async_required\\nCannot use \\`${name}(...)\\` unless the \\`experimental.async\\` compiler option is \\`true\\`\\nhttps://svelte.dev/e/experimental_async_required`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/experimental_async_required`);\n\t}\n}\n\n/**\n * Cannot use `{@render children(...)}` if the parent component uses `let:` directives. Consider using a named snippet instead\n * @returns {never}\n */\nexport function invalid_default_snippet() {\n\tif (DEV) {\n\t\tconst error = new Error(`invalid_default_snippet\\nCannot use \\`{@render children(...)}\\` if the parent component uses \\`let:\\` directives. Consider using a named snippet instead\\nhttps://svelte.dev/e/invalid_default_snippet`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/invalid_default_snippet`);\n\t}\n}\n\n/**\n * A snippet function was passed invalid arguments. Snippets should only be instantiated via `{@render ...}`\n * @returns {never}\n */\nexport function invalid_snippet_arguments() {\n\tif (DEV) {\n\t\tconst error = new Error(`invalid_snippet_arguments\\nA snippet function was passed invalid arguments. Snippets should only be instantiated via \\`{@render ...}\\`\\nhttps://svelte.dev/e/invalid_snippet_arguments`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/invalid_snippet_arguments`);\n\t}\n}\n\n/**\n * An invariant violation occurred, meaning Svelte's internal assumptions were flawed. This is a bug in Svelte, not your app — please open an issue at https://github.com/sveltejs/svelte, citing the following message: \"%message%\"\n * @param {string} message\n * @returns {never}\n */\nexport function invariant_violation(message) {\n\tif (DEV) {\n\t\tconst error = new Error(`invariant_violation\\nAn invariant violation occurred, meaning Svelte's internal assumptions were flawed. This is a bug in Svelte, not your app — please open an issue at https://github.com/sveltejs/svelte, citing the following message: \"${message}\"\\nhttps://svelte.dev/e/invariant_violation`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/invariant_violation`);\n\t}\n}\n\n/**\n * `%name%(...)` can only be used during component initialisation\n * @param {string} name\n * @returns {never}\n */\nexport function lifecycle_outside_component(name) {\n\tif (DEV) {\n\t\tconst error = new Error(`lifecycle_outside_component\\n\\`${name}(...)\\` can only be used during component initialisation\\nhttps://svelte.dev/e/lifecycle_outside_component`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/lifecycle_outside_component`);\n\t}\n}\n\n/**\n * Context was not set in a parent component\n * @returns {never}\n */\nexport function missing_context() {\n\tif (DEV) {\n\t\tconst error = new Error(`missing_context\\nContext was not set in a parent component\\nhttps://svelte.dev/e/missing_context`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/missing_context`);\n\t}\n}\n\n/**\n * Attempted to render a snippet without a `{@render}` block. This would cause the snippet code to be stringified instead of its content being rendered to the DOM. To fix this, change `{snippet}` to `{@render snippet()}`.\n * @returns {never}\n */\nexport function snippet_without_render_tag() {\n\tif (DEV) {\n\t\tconst error = new Error(`snippet_without_render_tag\\nAttempted to render a snippet without a \\`{@render}\\` block. This would cause the snippet code to be stringified instead of its content being rendered to the DOM. To fix this, change \\`{snippet}\\` to \\`{@render snippet()}\\`.\\nhttps://svelte.dev/e/snippet_without_render_tag`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/snippet_without_render_tag`);\n\t}\n}\n\n/**\n * `%name%` is not a store with a `subscribe` method\n * @param {string} name\n * @returns {never}\n */\nexport function store_invalid_shape(name) {\n\tif (DEV) {\n\t\tconst error = new Error(`store_invalid_shape\\n\\`${name}\\` is not a store with a \\`subscribe\\` method\\nhttps://svelte.dev/e/store_invalid_shape`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/store_invalid_shape`);\n\t}\n}\n\n/**\n * The `this` prop on `` must be a string, if defined\n * @returns {never}\n */\nexport function svelte_element_invalid_this_value() {\n\tif (DEV) {\n\t\tconst error = new Error(`svelte_element_invalid_this_value\\nThe \\`this\\` prop on \\`\\` must be a string, if defined\\nhttps://svelte.dev/e/svelte_element_invalid_this_value`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/svelte_element_invalid_this_value`);\n\t}\n}","/* This file is generated by scripts/process-messages/index.js. Do not edit! */\n\nimport { DEV } from 'esm-env';\n\nexport * from '../shared/errors.js';\n\n/**\n * Cannot create a `$derived(...)` with an `await` expression outside of an effect tree\n * @returns {never}\n */\nexport function async_derived_orphan() {\n\tif (DEV) {\n\t\tconst error = new Error(`async_derived_orphan\\nCannot create a \\`$derived(...)\\` with an \\`await\\` expression outside of an effect tree\\nhttps://svelte.dev/e/async_derived_orphan`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/async_derived_orphan`);\n\t}\n}\n\n/**\n * Using `bind:value` together with a checkbox input is not allowed. Use `bind:checked` instead\n * @returns {never}\n */\nexport function bind_invalid_checkbox_value() {\n\tif (DEV) {\n\t\tconst error = new Error(`bind_invalid_checkbox_value\\nUsing \\`bind:value\\` together with a checkbox input is not allowed. Use \\`bind:checked\\` instead\\nhttps://svelte.dev/e/bind_invalid_checkbox_value`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/bind_invalid_checkbox_value`);\n\t}\n}\n\n/**\n * Component %component% has an export named `%key%` that a consumer component is trying to access using `bind:%key%`, which is disallowed. Instead, use `bind:this` (e.g. `<%name% bind:this={component} />`) and then access the property on the bound component instance (e.g. `component.%key%`)\n * @param {string} component\n * @param {string} key\n * @param {string} name\n * @returns {never}\n */\nexport function bind_invalid_export(component, key, name) {\n\tif (DEV) {\n\t\tconst error = new Error(`bind_invalid_export\\nComponent ${component} has an export named \\`${key}\\` that a consumer component is trying to access using \\`bind:${key}\\`, which is disallowed. Instead, use \\`bind:this\\` (e.g. \\`<${name} bind:this={component} />\\`) and then access the property on the bound component instance (e.g. \\`component.${key}\\`)\\nhttps://svelte.dev/e/bind_invalid_export`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/bind_invalid_export`);\n\t}\n}\n\n/**\n * A component is attempting to bind to a non-bindable property `%key%` belonging to %component% (i.e. `<%name% bind:%key%={...}>`). To mark a property as bindable: `let { %key% = $bindable() } = $props()`\n * @param {string} key\n * @param {string} component\n * @param {string} name\n * @returns {never}\n */\nexport function bind_not_bindable(key, component, name) {\n\tif (DEV) {\n\t\tconst error = new Error(`bind_not_bindable\\nA component is attempting to bind to a non-bindable property \\`${key}\\` belonging to ${component} (i.e. \\`<${name} bind:${key}={...}>\\`). To mark a property as bindable: \\`let { ${key} = $bindable() } = $props()\\`\\nhttps://svelte.dev/e/bind_not_bindable`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/bind_not_bindable`);\n\t}\n}\n\n/**\n * Calling `%method%` on a component instance (of %component%) is no longer valid in Svelte 5\n * @param {string} method\n * @param {string} component\n * @returns {never}\n */\nexport function component_api_changed(method, component) {\n\tif (DEV) {\n\t\tconst error = new Error(`component_api_changed\\nCalling \\`${method}\\` on a component instance (of ${component}) is no longer valid in Svelte 5\\nhttps://svelte.dev/e/component_api_changed`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/component_api_changed`);\n\t}\n}\n\n/**\n * Attempted to instantiate %component% with `new %name%`, which is no longer valid in Svelte 5. If this component is not under your control, set the `compatibility.componentApi` compiler option to `4` to keep it working.\n * @param {string} component\n * @param {string} name\n * @returns {never}\n */\nexport function component_api_invalid_new(component, name) {\n\tif (DEV) {\n\t\tconst error = new Error(`component_api_invalid_new\\nAttempted to instantiate ${component} with \\`new ${name}\\`, which is no longer valid in Svelte 5. If this component is not under your control, set the \\`compatibility.componentApi\\` compiler option to \\`4\\` to keep it working.\\nhttps://svelte.dev/e/component_api_invalid_new`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/component_api_invalid_new`);\n\t}\n}\n\n/**\n * A derived value cannot reference itself recursively\n * @returns {never}\n */\nexport function derived_references_self() {\n\tif (DEV) {\n\t\tconst error = new Error(`derived_references_self\\nA derived value cannot reference itself recursively\\nhttps://svelte.dev/e/derived_references_self`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/derived_references_self`);\n\t}\n}\n\n/**\n * Keyed each block has duplicate key `%value%` at indexes %a% and %b%\n * @param {string} a\n * @param {string} b\n * @param {string | undefined | null} [value]\n * @returns {never}\n */\nexport function each_key_duplicate(a, b, value) {\n\tif (DEV) {\n\t\tconst error = new Error(`each_key_duplicate\\n${value\n\t\t\t? `Keyed each block has duplicate key \\`${value}\\` at indexes ${a} and ${b}`\n\t\t\t: `Keyed each block has duplicate key at indexes ${a} and ${b}`}\\nhttps://svelte.dev/e/each_key_duplicate`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/each_key_duplicate`);\n\t}\n}\n\n/**\n * Keyed each block has key that is not idempotent — the key for item at index %index% was `%a%` but is now `%b%`. Keys must be the same each time for a given item\n * @param {string} index\n * @param {string} a\n * @param {string} b\n * @returns {never}\n */\nexport function each_key_volatile(index, a, b) {\n\tif (DEV) {\n\t\tconst error = new Error(`each_key_volatile\\nKeyed each block has key that is not idempotent — the key for item at index ${index} was \\`${a}\\` but is now \\`${b}\\`. Keys must be the same each time for a given item\\nhttps://svelte.dev/e/each_key_volatile`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/each_key_volatile`);\n\t}\n}\n\n/**\n * `%rune%` cannot be used inside an effect cleanup function\n * @param {string} rune\n * @returns {never}\n */\nexport function effect_in_teardown(rune) {\n\tif (DEV) {\n\t\tconst error = new Error(`effect_in_teardown\\n\\`${rune}\\` cannot be used inside an effect cleanup function\\nhttps://svelte.dev/e/effect_in_teardown`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/effect_in_teardown`);\n\t}\n}\n\n/**\n * Effect cannot be created inside a `$derived` value that was not itself created inside an effect\n * @returns {never}\n */\nexport function effect_in_unowned_derived() {\n\tif (DEV) {\n\t\tconst error = new Error(`effect_in_unowned_derived\\nEffect cannot be created inside a \\`$derived\\` value that was not itself created inside an effect\\nhttps://svelte.dev/e/effect_in_unowned_derived`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/effect_in_unowned_derived`);\n\t}\n}\n\n/**\n * `%rune%` can only be used inside an effect (e.g. during component initialisation)\n * @param {string} rune\n * @returns {never}\n */\nexport function effect_orphan(rune) {\n\tif (DEV) {\n\t\tconst error = new Error(`effect_orphan\\n\\`${rune}\\` can only be used inside an effect (e.g. during component initialisation)\\nhttps://svelte.dev/e/effect_orphan`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/effect_orphan`);\n\t}\n}\n\n/**\n * `$effect.pending()` can only be called inside an effect or derived\n * @returns {never}\n */\nexport function effect_pending_outside_reaction() {\n\tif (DEV) {\n\t\tconst error = new Error(`effect_pending_outside_reaction\\n\\`$effect.pending()\\` can only be called inside an effect or derived\\nhttps://svelte.dev/e/effect_pending_outside_reaction`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/effect_pending_outside_reaction`);\n\t}\n}\n\n/**\n * Maximum update depth exceeded. This typically indicates that an effect reads and writes the same piece of state\n * @returns {never}\n */\nexport function effect_update_depth_exceeded() {\n\tif (DEV) {\n\t\tconst error = new Error(`effect_update_depth_exceeded\\nMaximum update depth exceeded. This typically indicates that an effect reads and writes the same piece of state\\nhttps://svelte.dev/e/effect_update_depth_exceeded`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/effect_update_depth_exceeded`);\n\t}\n}\n\n/**\n * Cannot use `flushSync` inside an effect\n * @returns {never}\n */\nexport function flush_sync_in_effect() {\n\tif (DEV) {\n\t\tconst error = new Error(`flush_sync_in_effect\\nCannot use \\`flushSync\\` inside an effect\\nhttps://svelte.dev/e/flush_sync_in_effect`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/flush_sync_in_effect`);\n\t}\n}\n\n/**\n * Cannot commit a fork that was already discarded\n * @returns {never}\n */\nexport function fork_discarded() {\n\tif (DEV) {\n\t\tconst error = new Error(`fork_discarded\\nCannot commit a fork that was already discarded\\nhttps://svelte.dev/e/fork_discarded`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/fork_discarded`);\n\t}\n}\n\n/**\n * Cannot create a fork inside an effect or when state changes are pending\n * @returns {never}\n */\nexport function fork_timing() {\n\tif (DEV) {\n\t\tconst error = new Error(`fork_timing\\nCannot create a fork inside an effect or when state changes are pending\\nhttps://svelte.dev/e/fork_timing`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/fork_timing`);\n\t}\n}\n\n/**\n * `getAbortSignal()` can only be called inside an effect or derived\n * @returns {never}\n */\nexport function get_abort_signal_outside_reaction() {\n\tif (DEV) {\n\t\tconst error = new Error(`get_abort_signal_outside_reaction\\n\\`getAbortSignal()\\` can only be called inside an effect or derived\\nhttps://svelte.dev/e/get_abort_signal_outside_reaction`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/get_abort_signal_outside_reaction`);\n\t}\n}\n\n/**\n * Expected to find a hydratable with key `%key%` during hydration, but did not.\n * @param {string} key\n * @returns {never}\n */\nexport function hydratable_missing_but_required(key) {\n\tif (DEV) {\n\t\tconst error = new Error(`hydratable_missing_but_required\\nExpected to find a hydratable with key \\`${key}\\` during hydration, but did not.\\nhttps://svelte.dev/e/hydratable_missing_but_required`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/hydratable_missing_but_required`);\n\t}\n}\n\n/**\n * Failed to hydrate the application\n * @returns {never}\n */\nexport function hydration_failed() {\n\tif (DEV) {\n\t\tconst error = new Error(`hydration_failed\\nFailed to hydrate the application\\nhttps://svelte.dev/e/hydration_failed`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/hydration_failed`);\n\t}\n}\n\n/**\n * Could not `{@render}` snippet due to the expression being `null` or `undefined`. Consider using optional chaining `{@render snippet?.()}`\n * @returns {never}\n */\nexport function invalid_snippet() {\n\tif (DEV) {\n\t\tconst error = new Error(`invalid_snippet\\nCould not \\`{@render}\\` snippet due to the expression being \\`null\\` or \\`undefined\\`. Consider using optional chaining \\`{@render snippet?.()}\\`\\nhttps://svelte.dev/e/invalid_snippet`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/invalid_snippet`);\n\t}\n}\n\n/**\n * `%name%(...)` cannot be used in runes mode\n * @param {string} name\n * @returns {never}\n */\nexport function lifecycle_legacy_only(name) {\n\tif (DEV) {\n\t\tconst error = new Error(`lifecycle_legacy_only\\n\\`${name}(...)\\` cannot be used in runes mode\\nhttps://svelte.dev/e/lifecycle_legacy_only`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/lifecycle_legacy_only`);\n\t}\n}\n\n/**\n * Cannot do `bind:%key%={undefined}` when `%key%` has a fallback value\n * @param {string} key\n * @returns {never}\n */\nexport function props_invalid_value(key) {\n\tif (DEV) {\n\t\tconst error = new Error(`props_invalid_value\\nCannot do \\`bind:${key}={undefined}\\` when \\`${key}\\` has a fallback value\\nhttps://svelte.dev/e/props_invalid_value`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/props_invalid_value`);\n\t}\n}\n\n/**\n * Rest element properties of `$props()` such as `%property%` are readonly\n * @param {string} property\n * @returns {never}\n */\nexport function props_rest_readonly(property) {\n\tif (DEV) {\n\t\tconst error = new Error(`props_rest_readonly\\nRest element properties of \\`$props()\\` such as \\`${property}\\` are readonly\\nhttps://svelte.dev/e/props_rest_readonly`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/props_rest_readonly`);\n\t}\n}\n\n/**\n * The `%rune%` rune is only available inside `.svelte` and `.svelte.js/ts` files\n * @param {string} rune\n * @returns {never}\n */\nexport function rune_outside_svelte(rune) {\n\tif (DEV) {\n\t\tconst error = new Error(`rune_outside_svelte\\nThe \\`${rune}\\` rune is only available inside \\`.svelte\\` and \\`.svelte.js/ts\\` files\\nhttps://svelte.dev/e/rune_outside_svelte`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/rune_outside_svelte`);\n\t}\n}\n\n/**\n * `setContext` must be called when a component first initializes, not in a subsequent effect or after an `await` expression\n * @returns {never}\n */\nexport function set_context_after_init() {\n\tif (DEV) {\n\t\tconst error = new Error(`set_context_after_init\\n\\`setContext\\` must be called when a component first initializes, not in a subsequent effect or after an \\`await\\` expression\\nhttps://svelte.dev/e/set_context_after_init`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/set_context_after_init`);\n\t}\n}\n\n/**\n * Property descriptors defined on `$state` objects must contain `value` and always be `enumerable`, `configurable` and `writable`.\n * @returns {never}\n */\nexport function state_descriptors_fixed() {\n\tif (DEV) {\n\t\tconst error = new Error(`state_descriptors_fixed\\nProperty descriptors defined on \\`$state\\` objects must contain \\`value\\` and always be \\`enumerable\\`, \\`configurable\\` and \\`writable\\`.\\nhttps://svelte.dev/e/state_descriptors_fixed`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/state_descriptors_fixed`);\n\t}\n}\n\n/**\n * Cannot set prototype of `$state` object\n * @returns {never}\n */\nexport function state_prototype_fixed() {\n\tif (DEV) {\n\t\tconst error = new Error(`state_prototype_fixed\\nCannot set prototype of \\`$state\\` object\\nhttps://svelte.dev/e/state_prototype_fixed`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/state_prototype_fixed`);\n\t}\n}\n\n/**\n * Updating state inside `$derived(...)`, `$inspect(...)` or a template expression is forbidden. If the value should not be reactive, declare it without `$state`\n * @returns {never}\n */\nexport function state_unsafe_mutation() {\n\tif (DEV) {\n\t\tconst error = new Error(`state_unsafe_mutation\\nUpdating state inside \\`$derived(...)\\`, \\`$inspect(...)\\` or a template expression is forbidden. If the value should not be reactive, declare it without \\`$state\\`\\nhttps://svelte.dev/e/state_unsafe_mutation`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/state_unsafe_mutation`);\n\t}\n}\n\n/**\n * A `` `reset` function cannot be called while an error is still being handled\n * @returns {never}\n */\nexport function svelte_boundary_reset_onerror() {\n\tif (DEV) {\n\t\tconst error = new Error(`svelte_boundary_reset_onerror\\nA \\`\\` \\`reset\\` function cannot be called while an error is still being handled\\nhttps://svelte.dev/e/svelte_boundary_reset_onerror`);\n\n\t\terror.name = 'Svelte error';\n\n\t\tthrow error;\n\t} else {\n\t\tthrow new Error(`https://svelte.dev/e/svelte_boundary_reset_onerror`);\n\t}\n}","/* This file is generated by scripts/process-messages/index.js. Do not edit! */\n\nimport { DEV } from 'esm-env';\n\nvar bold = 'font-weight: bold';\nvar normal = 'font-weight: normal';\n\n/**\n * Assignment to `%property%` property (%location%) will evaluate to the right-hand side, not the value of `%property%` following the assignment. This may result in unexpected behaviour.\n * @param {string} property\n * @param {string} location\n */\nexport function assignment_value_stale(property, location) {\n\tif (DEV) {\n\t\tconsole.warn(`%c[svelte] assignment_value_stale\\n%cAssignment to \\`${property}\\` property (${location}) will evaluate to the right-hand side, not the value of \\`${property}\\` following the assignment. This may result in unexpected behaviour.\\nhttps://svelte.dev/e/assignment_value_stale`, bold, normal);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/assignment_value_stale`);\n\t}\n}\n\n/**\n * Detected reactivity loss when reading `%name%`. This happens when state is read in an async function after an earlier `await`\n * @param {string} name\n */\nexport function await_reactivity_loss(name) {\n\tif (DEV) {\n\t\tconsole.warn(`%c[svelte] await_reactivity_loss\\n%cDetected reactivity loss when reading \\`${name}\\`. This happens when state is read in an async function after an earlier \\`await\\`\\nhttps://svelte.dev/e/await_reactivity_loss`, bold, normal);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/await_reactivity_loss`);\n\t}\n}\n\n/**\n * An async derived, `%name%` (%location%) was not read immediately after it resolved. This often indicates an unnecessary waterfall, which can slow down your app\n * @param {string} name\n * @param {string} location\n */\nexport function await_waterfall(name, location) {\n\tif (DEV) {\n\t\tconsole.warn(`%c[svelte] await_waterfall\\n%cAn async derived, \\`${name}\\` (${location}) was not read immediately after it resolved. This often indicates an unnecessary waterfall, which can slow down your app\\nhttps://svelte.dev/e/await_waterfall`, bold, normal);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/await_waterfall`);\n\t}\n}\n\n/**\n * `%binding%` (%location%) is binding to a non-reactive property\n * @param {string} binding\n * @param {string | undefined | null} [location]\n */\nexport function binding_property_non_reactive(binding, location) {\n\tif (DEV) {\n\t\tconsole.warn(\n\t\t\t`%c[svelte] binding_property_non_reactive\\n%c${location\n\t\t\t\t? `\\`${binding}\\` (${location}) is binding to a non-reactive property`\n\t\t\t\t: `\\`${binding}\\` is binding to a non-reactive property`}\\nhttps://svelte.dev/e/binding_property_non_reactive`,\n\t\t\tbold,\n\t\t\tnormal\n\t\t);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/binding_property_non_reactive`);\n\t}\n}\n\n/**\n * Your `console.%method%` contained `$state` proxies. Consider using `$inspect(...)` or `$state.snapshot(...)` instead\n * @param {string} method\n */\nexport function console_log_state(method) {\n\tif (DEV) {\n\t\tconsole.warn(`%c[svelte] console_log_state\\n%cYour \\`console.${method}\\` contained \\`$state\\` proxies. Consider using \\`$inspect(...)\\` or \\`$state.snapshot(...)\\` instead\\nhttps://svelte.dev/e/console_log_state`, bold, normal);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/console_log_state`);\n\t}\n}\n\n/**\n * Reading a derived belonging to a now-destroyed effect may result in stale values\n */\nexport function derived_inert() {\n\tif (DEV) {\n\t\tconsole.warn(`%c[svelte] derived_inert\\n%cReading a derived belonging to a now-destroyed effect may result in stale values\\nhttps://svelte.dev/e/derived_inert`, bold, normal);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/derived_inert`);\n\t}\n}\n\n/**\n * %handler% should be a function. Did you mean to %suggestion%?\n * @param {string} handler\n * @param {string} suggestion\n */\nexport function event_handler_invalid(handler, suggestion) {\n\tif (DEV) {\n\t\tconsole.warn(`%c[svelte] event_handler_invalid\\n%c${handler} should be a function. Did you mean to ${suggestion}?\\nhttps://svelte.dev/e/event_handler_invalid`, bold, normal);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/event_handler_invalid`);\n\t}\n}\n\n/**\n * Expected to find a hydratable with key `%key%` during hydration, but did not.\n * @param {string} key\n */\nexport function hydratable_missing_but_expected(key) {\n\tif (DEV) {\n\t\tconsole.warn(`%c[svelte] hydratable_missing_but_expected\\n%cExpected to find a hydratable with key \\`${key}\\` during hydration, but did not.\\nhttps://svelte.dev/e/hydratable_missing_but_expected`, bold, normal);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/hydratable_missing_but_expected`);\n\t}\n}\n\n/**\n * The `%attribute%` attribute on `%html%` changed its value between server and client renders. The client value, `%value%`, will be ignored in favour of the server value\n * @param {string} attribute\n * @param {string} html\n * @param {string} value\n */\nexport function hydration_attribute_changed(attribute, html, value) {\n\tif (DEV) {\n\t\tconsole.warn(`%c[svelte] hydration_attribute_changed\\n%cThe \\`${attribute}\\` attribute on \\`${html}\\` changed its value between server and client renders. The client value, \\`${value}\\`, will be ignored in favour of the server value\\nhttps://svelte.dev/e/hydration_attribute_changed`, bold, normal);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/hydration_attribute_changed`);\n\t}\n}\n\n/**\n * The value of an `{@html ...}` block %location% changed between server and client renders. The client value will be ignored in favour of the server value\n * @param {string | undefined | null} [location]\n */\nexport function hydration_html_changed(location) {\n\tif (DEV) {\n\t\tconsole.warn(\n\t\t\t`%c[svelte] hydration_html_changed\\n%c${location\n\t\t\t\t? `The value of an \\`{@html ...}\\` block ${location} changed between server and client renders. The client value will be ignored in favour of the server value`\n\t\t\t\t: 'The value of an `{@html ...}` block changed between server and client renders. The client value will be ignored in favour of the server value'}\\nhttps://svelte.dev/e/hydration_html_changed`,\n\t\t\tbold,\n\t\t\tnormal\n\t\t);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/hydration_html_changed`);\n\t}\n}\n\n/**\n * Hydration failed because the initial UI does not match what was rendered on the server. The error occurred near %location%\n * @param {string | undefined | null} [location]\n */\nexport function hydration_mismatch(location) {\n\tif (DEV) {\n\t\tconsole.warn(\n\t\t\t`%c[svelte] hydration_mismatch\\n%c${location\n\t\t\t\t? `Hydration failed because the initial UI does not match what was rendered on the server. The error occurred near ${location}`\n\t\t\t\t: 'Hydration failed because the initial UI does not match what was rendered on the server'}\\nhttps://svelte.dev/e/hydration_mismatch`,\n\t\t\tbold,\n\t\t\tnormal\n\t\t);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/hydration_mismatch`);\n\t}\n}\n\n/**\n * The `render` function passed to `createRawSnippet` should return HTML for a single element\n */\nexport function invalid_raw_snippet_render() {\n\tif (DEV) {\n\t\tconsole.warn(`%c[svelte] invalid_raw_snippet_render\\n%cThe \\`render\\` function passed to \\`createRawSnippet\\` should return HTML for a single element\\nhttps://svelte.dev/e/invalid_raw_snippet_render`, bold, normal);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/invalid_raw_snippet_render`);\n\t}\n}\n\n/**\n * Detected a migrated `$:` reactive block in `%filename%` that both accesses and updates the same reactive value. This may cause recursive updates when converted to an `$effect`.\n * @param {string} filename\n */\nexport function legacy_recursive_reactive_block(filename) {\n\tif (DEV) {\n\t\tconsole.warn(`%c[svelte] legacy_recursive_reactive_block\\n%cDetected a migrated \\`$:\\` reactive block in \\`${filename}\\` that both accesses and updates the same reactive value. This may cause recursive updates when converted to an \\`$effect\\`.\\nhttps://svelte.dev/e/legacy_recursive_reactive_block`, bold, normal);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/legacy_recursive_reactive_block`);\n\t}\n}\n\n/**\n * Tried to unmount a component that was not mounted\n */\nexport function lifecycle_double_unmount() {\n\tif (DEV) {\n\t\tconsole.warn(`%c[svelte] lifecycle_double_unmount\\n%cTried to unmount a component that was not mounted\\nhttps://svelte.dev/e/lifecycle_double_unmount`, bold, normal);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/lifecycle_double_unmount`);\n\t}\n}\n\n/**\n * %parent% passed property `%prop%` to %child% with `bind:`, but its parent component %owner% did not declare `%prop%` as a binding. Consider creating a binding between %owner% and %parent% (e.g. `bind:%prop%={...}` instead of `%prop%={...}`)\n * @param {string} parent\n * @param {string} prop\n * @param {string} child\n * @param {string} owner\n */\nexport function ownership_invalid_binding(parent, prop, child, owner) {\n\tif (DEV) {\n\t\tconsole.warn(`%c[svelte] ownership_invalid_binding\\n%c${parent} passed property \\`${prop}\\` to ${child} with \\`bind:\\`, but its parent component ${owner} did not declare \\`${prop}\\` as a binding. Consider creating a binding between ${owner} and ${parent} (e.g. \\`bind:${prop}={...}\\` instead of \\`${prop}={...}\\`)\\nhttps://svelte.dev/e/ownership_invalid_binding`, bold, normal);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/ownership_invalid_binding`);\n\t}\n}\n\n/**\n * Mutating unbound props (`%name%`, at %location%) is strongly discouraged. Consider using `bind:%prop%={...}` in %parent% (or using a callback) instead\n * @param {string} name\n * @param {string} location\n * @param {string} prop\n * @param {string} parent\n */\nexport function ownership_invalid_mutation(name, location, prop, parent) {\n\tif (DEV) {\n\t\tconsole.warn(`%c[svelte] ownership_invalid_mutation\\n%cMutating unbound props (\\`${name}\\`, at ${location}) is strongly discouraged. Consider using \\`bind:${prop}={...}\\` in ${parent} (or using a callback) instead\\nhttps://svelte.dev/e/ownership_invalid_mutation`, bold, normal);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/ownership_invalid_mutation`);\n\t}\n}\n\n/**\n * The `value` property of a `\\` element should be an array, but it received a non-array value. The selection will be kept as is.\\nhttps://svelte.dev/e/select_multiple_invalid_value`, bold, normal);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/select_multiple_invalid_value`);\n\t}\n}\n\n/**\n * Reactive `$state(...)` proxies and the values they proxy have different identities. Because of this, comparisons with `%operator%` will produce unexpected results\n * @param {string} operator\n */\nexport function state_proxy_equality_mismatch(operator) {\n\tif (DEV) {\n\t\tconsole.warn(`%c[svelte] state_proxy_equality_mismatch\\n%cReactive \\`$state(...)\\` proxies and the values they proxy have different identities. Because of this, comparisons with \\`${operator}\\` will produce unexpected results\\nhttps://svelte.dev/e/state_proxy_equality_mismatch`, bold, normal);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/state_proxy_equality_mismatch`);\n\t}\n}\n\n/**\n * Tried to unmount a state proxy, rather than a component\n */\nexport function state_proxy_unmount() {\n\tif (DEV) {\n\t\tconsole.warn(`%c[svelte] state_proxy_unmount\\n%cTried to unmount a state proxy, rather than a component\\nhttps://svelte.dev/e/state_proxy_unmount`, bold, normal);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/state_proxy_unmount`);\n\t}\n}\n\n/**\n * A `` `reset` function only resets the boundary the first time it is called\n */\nexport function svelte_boundary_reset_noop() {\n\tif (DEV) {\n\t\tconsole.warn(`%c[svelte] svelte_boundary_reset_noop\\n%cA \\`\\` \\`reset\\` function only resets the boundary the first time it is called\\nhttps://svelte.dev/e/svelte_boundary_reset_noop`, bold, normal);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/svelte_boundary_reset_noop`);\n\t}\n}\n\n/**\n * The `slide` transition does not work correctly for elements with `display: %value%`\n * @param {string} value\n */\nexport function transition_slide_display(value) {\n\tif (DEV) {\n\t\tconsole.warn(`%c[svelte] transition_slide_display\\n%cThe \\`slide\\` transition does not work correctly for elements with \\`display: ${value}\\`\\nhttps://svelte.dev/e/transition_slide_display`, bold, normal);\n\t} else {\n\t\tconsole.warn(`https://svelte.dev/e/transition_slide_display`);\n\t}\n}","/** @import { Equals } from '#client' */\n\n/** @type {Equals} */\nexport function equals(value) {\n\treturn value === this.v;\n}\n\n/**\n * @param {unknown} a\n * @param {unknown} b\n * @returns {boolean}\n */\nexport function safe_not_equal(a, b) {\n\treturn a != a\n\t\t? b == b\n\t\t: a !== b || (a !== null && typeof a === 'object') || typeof a === 'function';\n}\n\n/**\n * @param {unknown} a\n * @param {unknown} b\n * @returns {boolean}\n */\nexport function not_equal(a, b) {\n\treturn a !== b;\n}\n\n/** @type {Equals} */\nexport function safe_equals(value) {\n\treturn !safe_not_equal(value, this.v);\n}\n","/** @import { Derived, Reaction, Value } from '#client' */\nimport { UNINITIALIZED } from '../../../constants.js';\nimport { snapshot } from '../../shared/clone.js';\nimport { DERIVED, ASYNC, PROXY_PATH_SYMBOL, STATE_SYMBOL } from '#client/constants';\nimport { effect_tracking } from '../reactivity/effects.js';\nimport { active_reaction, untrack } from '../runtime.js';\n\n/**\n * @typedef {{\n * traces: Error[];\n * }} TraceEntry\n */\n\n/** @type {{ reaction: Reaction | null, entries: Map } | null} */\nexport let tracing_expressions = null;\n\n/**\n * @param {Value} signal\n * @param {TraceEntry} [entry]\n */\nfunction log_entry(signal, entry) {\n\tconst value = signal.v;\n\n\tif (value === UNINITIALIZED) {\n\t\treturn;\n\t}\n\n\tconst type = get_type(signal);\n\tconst current_reaction = /** @type {Reaction} */ (active_reaction);\n\tconst dirty = signal.wv > current_reaction.wv || current_reaction.wv === 0;\n\tconst style = dirty\n\t\t? 'color: CornflowerBlue; font-weight: bold'\n\t\t: 'color: grey; font-weight: normal';\n\n\t// eslint-disable-next-line no-console\n\tconsole.groupCollapsed(\n\t\tsignal.label ? `%c${type}%c ${signal.label}` : `%c${type}%c`,\n\t\tstyle,\n\t\tdirty ? 'font-weight: normal' : style,\n\t\ttypeof value === 'object' && value !== null && STATE_SYMBOL in value\n\t\t\t? snapshot(value, true)\n\t\t\t: value\n\t);\n\n\tif (type === '$derived') {\n\t\tconst deps = new Set(/** @type {Derived} */ (signal).deps);\n\t\tfor (const dep of deps) {\n\t\t\tlog_entry(dep);\n\t\t}\n\t}\n\n\tif (signal.created) {\n\t\t// eslint-disable-next-line no-console\n\t\tconsole.log(signal.created);\n\t}\n\n\tif (dirty && signal.updated) {\n\t\tfor (const updated of signal.updated.values()) {\n\t\t\tif (updated.error) {\n\t\t\t\t// eslint-disable-next-line no-console\n\t\t\t\tconsole.log(updated.error);\n\t\t\t}\n\t\t}\n\t}\n\n\tif (entry) {\n\t\tfor (var trace of entry.traces) {\n\t\t\t// eslint-disable-next-line no-console\n\t\t\tconsole.log(trace);\n\t\t}\n\t}\n\n\t// eslint-disable-next-line no-console\n\tconsole.groupEnd();\n}\n\n/**\n * @param {Value} signal\n * @returns {'$state' | '$derived' | 'store'}\n */\nfunction get_type(signal) {\n\tif ((signal.f & (DERIVED | ASYNC)) !== 0) return '$derived';\n\treturn signal.label?.startsWith('$') ? 'store' : '$state';\n}\n\n/**\n * @template T\n * @param {() => string} label\n * @param {() => T} fn\n */\nexport function trace(label, fn) {\n\tvar previously_tracing_expressions = tracing_expressions;\n\n\ttry {\n\t\ttracing_expressions = { entries: new Map(), reaction: active_reaction };\n\n\t\tvar start = performance.now();\n\t\tvar value = fn();\n\t\tvar time = (performance.now() - start).toFixed(2);\n\n\t\tvar prefix = untrack(label);\n\n\t\tif (!effect_tracking()) {\n\t\t\t// eslint-disable-next-line no-console\n\t\t\tconsole.log(`${prefix} %cran outside of an effect (${time}ms)`, 'color: grey');\n\t\t} else if (tracing_expressions.entries.size === 0) {\n\t\t\t// eslint-disable-next-line no-console\n\t\t\tconsole.log(`${prefix} %cno reactive dependencies (${time}ms)`, 'color: grey');\n\t\t} else {\n\t\t\t// eslint-disable-next-line no-console\n\t\t\tconsole.group(`${prefix} %c(${time}ms)`, 'color: grey');\n\n\t\t\tvar entries = tracing_expressions.entries;\n\n\t\t\tuntrack(() => {\n\t\t\t\tfor (const [signal, traces] of entries) {\n\t\t\t\t\tlog_entry(signal, traces);\n\t\t\t\t}\n\t\t\t});\n\n\t\t\ttracing_expressions = null;\n\n\t\t\t// eslint-disable-next-line no-console\n\t\t\tconsole.groupEnd();\n\t\t}\n\n\t\treturn value;\n\t} finally {\n\t\ttracing_expressions = previously_tracing_expressions;\n\t}\n}\n\n/**\n * @param {Value} source\n * @param {string} label\n */\nexport function tag(source, label) {\n\tsource.label = label;\n\ttag_proxy(source.v, label);\n\n\treturn source;\n}\n\n/**\n * @param {unknown} value\n * @param {string} label\n */\nexport function tag_proxy(value, label) {\n\t// @ts-expect-error\n\tvalue?.[PROXY_PATH_SYMBOL]?.(label);\n\treturn value;\n}\n\n/**\n * @param {unknown} value\n */\nexport function label(value) {\n\tif (typeof value === 'symbol') return `Symbol(${value.description})`;\n\tif (typeof value === 'function') return '';\n\tif (typeof value === 'object' && value) return '';\n\treturn String(value);\n}\n","import { DEV } from 'esm-env';\nimport { define_property } from './utils.js';\nimport * as e from './errors.js';\n\n/**\n * @param {string} label\n * @returns {Error & { stack: string } | null}\n */\nexport function get_error(label) {\n\tconst error = new Error();\n\tconst stack = get_stack();\n\n\tif (stack.length === 0) {\n\t\treturn null;\n\t}\n\n\tstack.unshift('\\n');\n\n\tdefine_property(error, 'stack', {\n\t\tvalue: stack.join('\\n')\n\t});\n\n\tdefine_property(error, 'name', {\n\t\tvalue: label\n\t});\n\n\treturn /** @type {Error & { stack: string }} */ (error);\n}\n\n/**\n * @returns {string[]}\n */\nexport function get_stack() {\n\t// @ts-ignore - doesn't exist everywhere\n\tconst limit = Error.stackTraceLimit;\n\t// @ts-ignore - doesn't exist everywhere\n\tError.stackTraceLimit = Infinity;\n\tconst stack = new Error().stack;\n\t// @ts-ignore - doesn't exist everywhere\n\tError.stackTraceLimit = limit;\n\n\tif (!stack) return [];\n\n\tconst lines = stack.split('\\n');\n\tconst new_lines = [];\n\n\tfor (let i = 0; i < lines.length; i++) {\n\t\tconst line = lines[i];\n\t\tconst posixified = line.replaceAll('\\\\', '/');\n\n\t\tif (line.trim() === 'Error') {\n\t\t\tcontinue;\n\t\t}\n\n\t\tif (line.includes('validate_each_keys')) {\n\t\t\treturn [];\n\t\t}\n\n\t\tif (posixified.includes('svelte/src/internal') || posixified.includes('node_modules/.vite')) {\n\t\t\tcontinue;\n\t\t}\n\n\t\tnew_lines.push(line);\n\t}\n\n\treturn new_lines;\n}\n\n/**\n * @param {boolean} condition\n * @param {string} message\n */\nexport function invariant(condition, message) {\n\tif (!DEV) {\n\t\tthrow new Error('invariant(...) was not guarded by if (DEV)');\n\t}\n\n\tif (!condition) e.invariant_violation(message);\n}\n","/** @import { ComponentContext, DevStackEntry, Effect } from '#client' */\nimport { DEV } from 'esm-env';\nimport * as e from './errors.js';\nimport { active_effect, active_reaction } from './runtime.js';\nimport { create_user_effect } from './reactivity/effects.js';\nimport { async_mode_flag, legacy_mode_flag } from '../flags/index.js';\nimport { FILENAME } from '../../constants.js';\nimport { BRANCH_EFFECT } from './constants.js';\n\n/** @type {ComponentContext | null} */\nexport let component_context = null;\n\n/** @param {ComponentContext | null} context */\nexport function set_component_context(context) {\n\tcomponent_context = context;\n}\n\n/** @type {DevStackEntry | null} */\nexport let dev_stack = null;\n\n/** @param {DevStackEntry | null} stack */\nexport function set_dev_stack(stack) {\n\tdev_stack = stack;\n}\n\n/**\n * Execute a callback with a new dev stack entry\n * @param {() => any} callback - Function to execute\n * @param {DevStackEntry['type']} type - Type of block/component\n * @param {any} component - Component function\n * @param {number} line - Line number\n * @param {number} column - Column number\n * @param {Record} [additional] - Any additional properties to add to the dev stack entry\n * @returns {any}\n */\nexport function add_svelte_meta(callback, type, component, line, column, additional) {\n\tconst parent = dev_stack;\n\n\tdev_stack = {\n\t\ttype,\n\t\tfile: component[FILENAME],\n\t\tline,\n\t\tcolumn,\n\t\tparent,\n\t\t...additional\n\t};\n\n\ttry {\n\t\treturn callback();\n\t} finally {\n\t\tdev_stack = parent;\n\t}\n}\n\n/**\n * The current component function. Different from current component context:\n * ```html\n * \n * \n * \n * \n * ```\n * @type {ComponentContext['function']}\n */\nexport let dev_current_component_function = null;\n\n/** @param {ComponentContext['function']} fn */\nexport function set_dev_current_component_function(fn) {\n\tdev_current_component_function = fn;\n}\n\n/**\n * Returns a `[get, set]` pair of functions for working with context in a type-safe way.\n *\n * `get` will throw an error if no parent component called `set`.\n *\n * @template T\n * @returns {[() => T, (context: T) => T]}\n * @since 5.40.0\n */\nexport function createContext() {\n\tconst key = {};\n\n\treturn [\n\t\t() => {\n\t\t\tif (!hasContext(key)) {\n\t\t\t\te.missing_context();\n\t\t\t}\n\n\t\t\treturn getContext(key);\n\t\t},\n\t\t(context) => setContext(key, context)\n\t];\n}\n\n/**\n * Retrieves the context that belongs to the closest parent component with the specified `key`.\n * Must be called during component initialisation.\n *\n * [`createContext`](https://svelte.dev/docs/svelte/svelte#createContext) is a type-safe alternative.\n *\n * @template T\n * @param {any} key\n * @returns {T}\n */\nexport function getContext(key) {\n\tconst context_map = get_or_init_context_map('getContext');\n\tconst result = /** @type {T} */ (context_map.get(key));\n\treturn result;\n}\n\n/**\n * Associates an arbitrary `context` object with the current component and the specified `key`\n * and returns that object. The context is then available to children of the component\n * (including slotted content) with `getContext`.\n *\n * Like lifecycle functions, this must be called during component initialisation.\n *\n * [`createContext`](https://svelte.dev/docs/svelte/svelte#createContext) is a type-safe alternative.\n *\n * @template T\n * @param {any} key\n * @param {T} context\n * @returns {T}\n */\nexport function setContext(key, context) {\n\tconst context_map = get_or_init_context_map('setContext');\n\n\tif (async_mode_flag) {\n\t\tvar flags = /** @type {Effect} */ (active_effect).f;\n\t\tvar valid =\n\t\t\t!active_reaction &&\n\t\t\t(flags & BRANCH_EFFECT) !== 0 &&\n\t\t\t// pop() runs synchronously, so this indicates we're setting context after an await\n\t\t\t!(/** @type {ComponentContext} */ (component_context).i);\n\n\t\tif (!valid) {\n\t\t\te.set_context_after_init();\n\t\t}\n\t}\n\n\tcontext_map.set(key, context);\n\treturn context;\n}\n\n/**\n * Checks whether a given `key` has been set in the context of a parent component.\n * Must be called during component initialisation.\n *\n * @param {any} key\n * @returns {boolean}\n */\nexport function hasContext(key) {\n\tconst context_map = get_or_init_context_map('hasContext');\n\treturn context_map.has(key);\n}\n\n/**\n * Retrieves the whole context map that belongs to the closest parent component.\n * Must be called during component initialisation. Useful, for example, if you\n * programmatically create a component and want to pass the existing context to it.\n *\n * @template {Map} [T=Map]\n * @returns {T}\n */\nexport function getAllContexts() {\n\tconst context_map = get_or_init_context_map('getAllContexts');\n\treturn /** @type {T} */ (context_map);\n}\n\n/**\n * @param {Record} props\n * @param {any} runes\n * @param {Function} [fn]\n * @returns {void}\n */\nexport function push(props, runes = false, fn) {\n\tcomponent_context = {\n\t\tp: component_context,\n\t\ti: false,\n\t\tc: null,\n\t\te: null,\n\t\ts: props,\n\t\tx: null,\n\t\tr: /** @type {Effect} */ (active_effect),\n\t\tl: legacy_mode_flag && !runes ? { s: null, u: null, $: [] } : null\n\t};\n\n\tif (DEV) {\n\t\t// component function\n\t\tcomponent_context.function = fn;\n\t\tdev_current_component_function = fn;\n\t}\n}\n\n/**\n * @template {Record} T\n * @param {T} [component]\n * @returns {T}\n */\nexport function pop(component) {\n\tvar context = /** @type {ComponentContext} */ (component_context);\n\tvar effects = context.e;\n\n\tif (effects !== null) {\n\t\tcontext.e = null;\n\n\t\tfor (var fn of effects) {\n\t\t\tcreate_user_effect(fn);\n\t\t}\n\t}\n\n\tif (component !== undefined) {\n\t\tcontext.x = component;\n\t}\n\n\tcontext.i = true;\n\n\tcomponent_context = context.p;\n\n\tif (DEV) {\n\t\tdev_current_component_function = component_context?.function ?? null;\n\t}\n\n\treturn component ?? /** @type {T} */ ({});\n}\n\n/** @returns {boolean} */\nexport function is_runes() {\n\treturn !legacy_mode_flag || (component_context !== null && component_context.l === null);\n}\n\n/**\n * @param {string} name\n * @returns {Map}\n */\nfunction get_or_init_context_map(name) {\n\tif (component_context === null) {\n\t\te.lifecycle_outside_component(name);\n\t}\n\n\treturn (component_context.c ??= new Map(get_parent_context(component_context) || undefined));\n}\n\n/**\n * @param {ComponentContext} component_context\n * @returns {Map | null}\n */\nfunction get_parent_context(component_context) {\n\tlet parent = component_context.p;\n\twhile (parent !== null) {\n\t\tconst context_map = parent.c;\n\t\tif (context_map !== null) {\n\t\t\treturn context_map;\n\t\t}\n\t\tparent = parent.p;\n\t}\n\treturn null;\n}\n","import { run_all } from '../../shared/utils.js';\nimport { is_flushing_sync } from '../reactivity/batch.js';\n\n/** @type {Array<() => void>} */\nlet micro_tasks = [];\n\nfunction run_micro_tasks() {\n\tvar tasks = micro_tasks;\n\tmicro_tasks = [];\n\trun_all(tasks);\n}\n\n/**\n * @param {() => void} fn\n */\nexport function queue_micro_task(fn) {\n\tif (micro_tasks.length === 0 && !is_flushing_sync) {\n\t\tvar tasks = micro_tasks;\n\t\tqueueMicrotask(() => {\n\t\t\t// If this is false, a flushSync happened in the meantime. Do _not_ run new scheduled microtasks in that case\n\t\t\t// as the ordering of microtasks would be broken at that point - consider this case:\n\t\t\t// - queue_micro_task schedules microtask A to flush task X\n\t\t\t// - synchronously after, flushSync runs, processing task X\n\t\t\t// - synchronously after, some other microtask B is scheduled, but not through queue_micro_task but for example a Promise.resolve() in user code\n\t\t\t// - synchronously after, queue_micro_task schedules microtask C to flush task Y\n\t\t\t// - one tick later, microtask A now resolves, flushing task Y before microtask B, which is incorrect\n\t\t\t// This if check prevents that race condition (that realistically will only happen in tests)\n\t\t\tif (tasks === micro_tasks) run_micro_tasks();\n\t\t});\n\t}\n\n\tmicro_tasks.push(fn);\n}\n\n/**\n * Synchronously run any queued tasks.\n */\nexport function flush_tasks() {\n\twhile (micro_tasks.length > 0) {\n\t\trun_micro_tasks();\n\t}\n}\n","/** @import { Derived, Effect } from '#client' */\n/** @import { Boundary } from './dom/blocks/boundary.js' */\nimport { DEV } from 'esm-env';\nimport { FILENAME } from '../../constants.js';\nimport { is_firefox } from './dom/operations.js';\nimport { ERROR_VALUE, BOUNDARY_EFFECT, REACTION_RAN, EFFECT } from './constants.js';\nimport { define_property, get_descriptor } from '../shared/utils.js';\nimport { active_effect, active_reaction } from './runtime.js';\n\nconst adjustments = new WeakMap();\n\n/**\n * @param {unknown} error\n */\nexport function handle_error(error) {\n\tvar effect = active_effect;\n\n\t// for unowned deriveds, don't throw until we read the value\n\tif (effect === null) {\n\t\t/** @type {Derived} */ (active_reaction).f |= ERROR_VALUE;\n\t\treturn error;\n\t}\n\n\tif (DEV && error instanceof Error && !adjustments.has(error)) {\n\t\tadjustments.set(error, get_adjustments(error, effect));\n\t}\n\n\t// if the error occurred while creating this subtree, we let it\n\t// bubble up until it hits a boundary that can handle it, unless\n\t// it's an $effect in which case it doesn't run immediately\n\tif ((effect.f & REACTION_RAN) === 0 && (effect.f & EFFECT) === 0) {\n\t\tif (DEV && !effect.parent && error instanceof Error) {\n\t\t\tapply_adjustments(error);\n\t\t}\n\n\t\tthrow error;\n\t}\n\n\t// otherwise we bubble up the effect tree ourselves\n\tinvoke_error_boundary(error, effect);\n}\n\n/**\n * @param {unknown} error\n * @param {Effect | null} effect\n */\nexport function invoke_error_boundary(error, effect) {\n\twhile (effect !== null) {\n\t\tif ((effect.f & BOUNDARY_EFFECT) !== 0) {\n\t\t\tif ((effect.f & REACTION_RAN) === 0) {\n\t\t\t\t// we are still creating the boundary effect\n\t\t\t\tthrow error;\n\t\t\t}\n\n\t\t\ttry {\n\t\t\t\t/** @type {Boundary} */ (effect.b).error(error);\n\t\t\t\treturn;\n\t\t\t} catch (e) {\n\t\t\t\terror = e;\n\t\t\t}\n\t\t}\n\n\t\teffect = effect.parent;\n\t}\n\n\tif (DEV && error instanceof Error) {\n\t\tapply_adjustments(error);\n\t}\n\n\tthrow error;\n}\n\n/**\n * Add useful information to the error message/stack in development\n * @param {Error} error\n * @param {Effect} effect\n */\nfunction get_adjustments(error, effect) {\n\tconst message_descriptor = get_descriptor(error, 'message');\n\n\t// if the message was already changed and it's not configurable we can't change it\n\t// or it will throw a different error swallowing the original error\n\tif (message_descriptor && !message_descriptor.configurable) return;\n\n\tvar indent = is_firefox ? ' ' : '\\t';\n\tvar component_stack = `\\n${indent}in ${effect.fn?.name || ''}`;\n\tvar context = effect.ctx;\n\n\twhile (context !== null) {\n\t\tcomponent_stack += `\\n${indent}in ${context.function?.[FILENAME].split('/').pop()}`;\n\t\tcontext = context.p;\n\t}\n\n\treturn {\n\t\tmessage: error.message + `\\n${component_stack}\\n`,\n\t\tstack: error.stack\n\t\t\t?.split('\\n')\n\t\t\t.filter((line) => !line.includes('svelte/src/internal'))\n\t\t\t.join('\\n')\n\t};\n}\n\n/**\n * @param {Error} error\n */\nfunction apply_adjustments(error) {\n\tconst adjusted = adjustments.get(error);\n\n\tif (adjusted) {\n\t\tdefine_property(error, 'message', {\n\t\t\tvalue: adjusted.message\n\t\t});\n\n\t\tdefine_property(error, 'stack', {\n\t\t\tvalue: adjusted.stack\n\t\t});\n\t}\n}\n","/** @import { Derived, Signal } from '#client' */\nimport { CLEAN, CONNECTED, DIRTY, MAYBE_DIRTY } from '#client/constants';\n\nconst STATUS_MASK = ~(DIRTY | MAYBE_DIRTY | CLEAN);\n\n/**\n * @param {Signal} signal\n * @param {number} status\n */\nexport function set_signal_status(signal, status) {\n\tsignal.f = (signal.f & STATUS_MASK) | status;\n}\n\n/**\n * Set a derived's status to CLEAN or MAYBE_DIRTY based on its connection state.\n * @param {Derived} derived\n */\nexport function update_derived_status(derived) {\n\t// Only mark as MAYBE_DIRTY if disconnected and has dependencies.\n\tif ((derived.f & CONNECTED) !== 0 || derived.deps === null) {\n\t\tset_signal_status(derived, CLEAN);\n\t} else {\n\t\tset_signal_status(derived, MAYBE_DIRTY);\n\t}\n}\n","/** @import { Derived, Effect, Value } from '#client' */\nimport { CLEAN, DERIVED, DIRTY, MAYBE_DIRTY, WAS_MARKED } from '#client/constants';\nimport { set_signal_status } from './status.js';\n\n/**\n * @param {Value[] | null} deps\n */\nfunction clear_marked(deps) {\n\tif (deps === null) return;\n\n\tfor (const dep of deps) {\n\t\tif ((dep.f & DERIVED) === 0 || (dep.f & WAS_MARKED) === 0) {\n\t\t\tcontinue;\n\t\t}\n\n\t\tdep.f ^= WAS_MARKED;\n\n\t\tclear_marked(/** @type {Derived} */ (dep).deps);\n\t}\n}\n\n/**\n * @param {Effect} effect\n * @param {Set} dirty_effects\n * @param {Set} maybe_dirty_effects\n */\nexport function defer_effect(effect, dirty_effects, maybe_dirty_effects) {\n\tif ((effect.f & DIRTY) !== 0) {\n\t\tdirty_effects.add(effect);\n\t} else if ((effect.f & MAYBE_DIRTY) !== 0) {\n\t\tmaybe_dirty_effects.add(effect);\n\t}\n\n\t// Since we're not executing these effects now, we need to clear any WAS_MARKED flags\n\t// so that other batches can correctly reach these effects during their own traversal\n\tclear_marked(effect.deps);\n\n\t// mark as clean so they get scheduled if they depend on pending async state\n\tset_signal_status(effect, CLEAN);\n}\n","/** @import { Readable } from './public' */\nimport { untrack } from '../internal/client/runtime.js';\nimport { noop } from '../internal/shared/utils.js';\n\n/**\n * @template T\n * @param {Readable | null | undefined} store\n * @param {(value: T) => void} run\n * @param {(value: T) => void} [invalidate]\n * @returns {() => void}\n */\nexport function subscribe_to_store(store, run, invalidate) {\n\tif (store == null) {\n\t\t// @ts-expect-error\n\t\trun(undefined);\n\n\t\t// @ts-expect-error\n\t\tif (invalidate) invalidate(undefined);\n\n\t\treturn noop;\n\t}\n\n\t// Svelte store takes a private second argument\n\t// StartStopNotifier could mutate state, and we want to silence the corresponding validation error\n\tconst unsub = untrack(() =>\n\t\tstore.subscribe(\n\t\t\trun,\n\t\t\t// @ts-expect-error\n\t\t\tinvalidate\n\t\t)\n\t);\n\n\t// Also support RxJS\n\t// @ts-expect-error TODO fix this in the types?\n\treturn unsub.unsubscribe ? () => unsub.unsubscribe() : unsub;\n}\n","/** @import { Readable, StartStopNotifier, Subscriber, Unsubscriber, Updater, Writable } from '../public.js' */\n/** @import { Stores, StoresValues, SubscribeInvalidateTuple } from '../private.js' */\nimport { noop, run_all } from '../../internal/shared/utils.js';\nimport { safe_not_equal } from '../../internal/client/reactivity/equality.js';\nimport { subscribe_to_store } from '../utils.js';\n\n/**\n * @type {Array | any>}\n */\nconst subscriber_queue = [];\n\n/**\n * Creates a `Readable` store that allows reading by subscription.\n *\n * @template T\n * @param {T} [value] initial value\n * @param {StartStopNotifier} [start]\n * @returns {Readable}\n */\nexport function readable(value, start) {\n\treturn {\n\t\tsubscribe: writable(value, start).subscribe\n\t};\n}\n\n/**\n * Create a `Writable` store that allows both updating and reading by subscription.\n *\n * @template T\n * @param {T} [value] initial value\n * @param {StartStopNotifier} [start]\n * @returns {Writable}\n */\nexport function writable(value, start = noop) {\n\t/** @type {Unsubscriber | null} */\n\tlet stop = null;\n\n\t/** @type {Set>} */\n\tconst subscribers = new Set();\n\n\t/**\n\t * @param {T} new_value\n\t * @returns {void}\n\t */\n\tfunction set(new_value) {\n\t\tif (safe_not_equal(value, new_value)) {\n\t\t\tvalue = new_value;\n\t\t\tif (stop) {\n\t\t\t\t// store is ready\n\t\t\t\tconst run_queue = !subscriber_queue.length;\n\t\t\t\tfor (const subscriber of subscribers) {\n\t\t\t\t\tsubscriber[1]();\n\t\t\t\t\tsubscriber_queue.push(subscriber, value);\n\t\t\t\t}\n\t\t\t\tif (run_queue) {\n\t\t\t\t\tfor (let i = 0; i < subscriber_queue.length; i += 2) {\n\t\t\t\t\t\tsubscriber_queue[i][0](subscriber_queue[i + 1]);\n\t\t\t\t\t}\n\t\t\t\t\tsubscriber_queue.length = 0;\n\t\t\t\t}\n\t\t\t}\n\t\t}\n\t}\n\n\t/**\n\t * @param {Updater} fn\n\t * @returns {void}\n\t */\n\tfunction update(fn) {\n\t\tset(fn(/** @type {T} */ (value)));\n\t}\n\n\t/**\n\t * @param {Subscriber} run\n\t * @param {() => void} [invalidate]\n\t * @returns {Unsubscriber}\n\t */\n\tfunction subscribe(run, invalidate = noop) {\n\t\t/** @type {SubscribeInvalidateTuple} */\n\t\tconst subscriber = [run, invalidate];\n\t\tsubscribers.add(subscriber);\n\t\tif (subscribers.size === 1) {\n\t\t\tstop = start(set, update) || noop;\n\t\t}\n\t\trun(/** @type {T} */ (value));\n\t\treturn () => {\n\t\t\tsubscribers.delete(subscriber);\n\t\t\tif (subscribers.size === 0 && stop) {\n\t\t\t\tstop();\n\t\t\t\tstop = null;\n\t\t\t}\n\t\t};\n\t}\n\treturn { set, update, subscribe };\n}\n\n/**\n * Derived value store by synchronizing one or more readable stores and\n * applying an aggregation function over its input values.\n *\n * @template {Stores} S\n * @template T\n * @overload\n * @param {S} stores\n * @param {(values: StoresValues, set: (value: T) => void, update: (fn: Updater) => void) => Unsubscriber | void} fn\n * @param {T} [initial_value]\n * @returns {Readable}\n */\n/**\n * Derived value store by synchronizing one or more readable stores and\n * applying an aggregation function over its input values.\n *\n * @template {Stores} S\n * @template T\n * @overload\n * @param {S} stores\n * @param {(values: StoresValues) => T} fn\n * @param {T} [initial_value]\n * @returns {Readable}\n */\n/**\n * @template {Stores} S\n * @template T\n * @param {S} stores\n * @param {Function} fn\n * @param {T} [initial_value]\n * @returns {Readable}\n */\nexport function derived(stores, fn, initial_value) {\n\tconst single = !Array.isArray(stores);\n\t/** @type {Array>} */\n\tconst stores_array = single ? [stores] : stores;\n\tif (!stores_array.every(Boolean)) {\n\t\tthrow new Error('derived() expects stores as input, got a falsy value');\n\t}\n\tconst auto = fn.length < 2;\n\treturn readable(initial_value, (set, update) => {\n\t\tlet started = false;\n\t\t/** @type {T[]} */\n\t\tconst values = [];\n\t\tlet pending = 0;\n\t\tlet cleanup = noop;\n\t\tconst sync = () => {\n\t\t\tif (pending) {\n\t\t\t\treturn;\n\t\t\t}\n\t\t\tcleanup();\n\t\t\tconst result = fn(single ? values[0] : values, set, update);\n\t\t\tif (auto) {\n\t\t\t\tset(result);\n\t\t\t} else {\n\t\t\t\tcleanup = typeof result === 'function' ? result : noop;\n\t\t\t}\n\t\t};\n\t\tconst unsubscribers = stores_array.map((store, i) =>\n\t\t\tsubscribe_to_store(\n\t\t\t\tstore,\n\t\t\t\t(value) => {\n\t\t\t\t\tvalues[i] = value;\n\t\t\t\t\tpending &= ~(1 << i);\n\t\t\t\t\tif (started) {\n\t\t\t\t\t\tsync();\n\t\t\t\t\t}\n\t\t\t\t},\n\t\t\t\t() => {\n\t\t\t\t\tpending |= 1 << i;\n\t\t\t\t}\n\t\t\t)\n\t\t);\n\t\tstarted = true;\n\t\tsync();\n\t\treturn function stop() {\n\t\t\trun_all(unsubscribers);\n\t\t\tcleanup();\n\t\t\t// We need to set this to false because callbacks can still happen despite having unsubscribed:\n\t\t\t// Callbacks might already be placed in the queue which doesn't know it should no longer\n\t\t\t// invoke this derived store.\n\t\t\tstarted = false;\n\t\t};\n\t});\n}\n\n/**\n * Takes a store and returns a new one derived from the old one that is readable.\n *\n * @template T\n * @param {Readable} store - store to make readonly\n * @returns {Readable}\n */\nexport function readonly(store) {\n\treturn {\n\t\t// @ts-expect-error TODO i suspect the bind is unnecessary\n\t\tsubscribe: store.subscribe.bind(store)\n\t};\n}\n\n/**\n * Get the current value from a store by subscribing and immediately unsubscribing.\n *\n * @template T\n * @param {Readable} store\n * @returns {T}\n */\nexport function get(store) {\n\tlet value;\n\tsubscribe_to_store(store, (_) => (value = _))();\n\t// @ts-expect-error\n\treturn value;\n}\n","/** @import { StoreReferencesContainer } from '#client' */\n/** @import { Store } from '#shared' */\nimport { subscribe_to_store } from '../../../store/utils.js';\nimport { get as get_store } from '../../../store/shared/index.js';\nimport { define_property, noop } from '../../shared/utils.js';\nimport { get } from '../runtime.js';\nimport { teardown } from './effects.js';\nimport { mutable_source, set } from './sources.js';\nimport { DEV } from 'esm-env';\n\n/**\n * We set this to `true` when updating a store so that we correctly\n * schedule effects if the update takes place inside a `$:` effect\n */\nexport let legacy_is_updating_store = false;\n\n/**\n * Whether or not the prop currently being read is a store binding, as in\n * ``. If it is, we treat the prop as mutable even in\n * runes mode, and skip `binding_property_non_reactive` validation\n */\nlet is_store_binding = false;\n\nlet IS_UNMOUNTED = Symbol();\n\n/**\n * Gets the current value of a store. If the store isn't subscribed to yet, it will create a proxy\n * signal that will be updated when the store is. The store references container is needed to\n * track reassignments to stores and to track the correct component context.\n * @template V\n * @param {Store | null | undefined} store\n * @param {string} store_name\n * @param {StoreReferencesContainer} stores\n * @returns {V}\n */\nexport function store_get(store, store_name, stores) {\n\tconst entry = (stores[store_name] ??= {\n\t\tstore: null,\n\t\tsource: mutable_source(undefined),\n\t\tunsubscribe: noop\n\t});\n\n\tif (DEV) {\n\t\tentry.source.label = store_name;\n\t}\n\n\t// if the component that setup this is already unmounted we don't want to register a subscription\n\tif (entry.store !== store && !(IS_UNMOUNTED in stores)) {\n\t\tentry.unsubscribe();\n\t\tentry.store = store ?? null;\n\n\t\tif (store == null) {\n\t\t\tentry.source.v = undefined; // see synchronous callback comment below\n\t\t\tentry.unsubscribe = noop;\n\t\t} else {\n\t\t\tvar is_synchronous_callback = true;\n\n\t\t\tentry.unsubscribe = subscribe_to_store(store, (v) => {\n\t\t\t\tif (is_synchronous_callback) {\n\t\t\t\t\t// If the first updates to the store value (possibly multiple of them) are synchronously\n\t\t\t\t\t// inside a derived, we will hit the `state_unsafe_mutation` error if we `set` the value\n\t\t\t\t\tentry.source.v = v;\n\t\t\t\t} else {\n\t\t\t\t\tset(entry.source, v);\n\t\t\t\t}\n\t\t\t});\n\n\t\t\tis_synchronous_callback = false;\n\t\t}\n\t}\n\n\t// if the component that setup this stores is already unmounted the source will be out of sync\n\t// so we just use the `get` for the stores, less performant but it avoids to create a memory leak\n\t// and it will keep the value consistent\n\tif (store && IS_UNMOUNTED in stores) {\n\t\treturn get_store(store);\n\t}\n\n\treturn get(entry.source);\n}\n\n/**\n * Unsubscribe from a store if it's not the same as the one in the store references container.\n * We need this in addition to `store_get` because someone could unsubscribe from a store but\n * then never subscribe to the new one (if any), causing the subscription to stay open wrongfully.\n * @param {Store | null | undefined} store\n * @param {string} store_name\n * @param {StoreReferencesContainer} stores\n */\nexport function store_unsub(store, store_name, stores) {\n\t/** @type {StoreReferencesContainer[''] | undefined} */\n\tlet entry = stores[store_name];\n\n\tif (entry && entry.store !== store) {\n\t\t// Don't reset store yet, so that store_get above can resubscribe to new store if necessary\n\t\tentry.unsubscribe();\n\t\tentry.unsubscribe = noop;\n\t}\n\n\treturn store;\n}\n\n/**\n * Sets the new value of a store and returns that value.\n * @template V\n * @param {Store} store\n * @param {V} value\n * @returns {V}\n */\nexport function store_set(store, value) {\n\tupdate_with_flag(store, value);\n\treturn value;\n}\n\n/**\n * @param {StoreReferencesContainer} stores\n * @param {string} store_name\n */\nexport function invalidate_store(stores, store_name) {\n\tvar entry = stores[store_name];\n\tif (entry.store !== null) {\n\t\tstore_set(entry.store, entry.source.v);\n\t}\n}\n\n/**\n * Unsubscribes from all auto-subscribed stores on destroy\n * @returns {[StoreReferencesContainer, ()=>void]}\n */\nexport function setup_stores() {\n\t/** @type {StoreReferencesContainer} */\n\tconst stores = {};\n\n\tfunction cleanup() {\n\t\tteardown(() => {\n\t\t\tfor (var store_name in stores) {\n\t\t\t\tconst ref = stores[store_name];\n\t\t\t\tref.unsubscribe();\n\t\t\t}\n\t\t\tdefine_property(stores, IS_UNMOUNTED, {\n\t\t\t\tenumerable: false,\n\t\t\t\tvalue: true\n\t\t\t});\n\t\t});\n\t}\n\n\treturn [stores, cleanup];\n}\n\n/**\n * @param {Store} store\n * @param {V} value\n * @template V\n */\nfunction update_with_flag(store, value) {\n\tlegacy_is_updating_store = true;\n\n\ttry {\n\t\tstore.set(value);\n\t} finally {\n\t\tlegacy_is_updating_store = false;\n\t}\n}\n\n/**\n * Updates a store with a new value.\n * @param {Store} store the store to update\n * @param {any} expression the expression that mutates the store\n * @param {V} new_value the new store value\n * @template V\n */\nexport function store_mutate(store, expression, new_value) {\n\tupdate_with_flag(store, new_value);\n\treturn expression;\n}\n\n/**\n * @param {Store} store\n * @param {number} store_value\n * @param {1 | -1} [d]\n * @returns {number}\n */\nexport function update_store(store, store_value, d = 1) {\n\tupdate_with_flag(store, store_value + d);\n\treturn store_value;\n}\n\n/**\n * @param {Store} store\n * @param {number} store_value\n * @param {1 | -1} [d]\n * @returns {number}\n */\nexport function update_pre_store(store, store_value, d = 1) {\n\tconst value = store_value + d;\n\tupdate_with_flag(store, value);\n\treturn value;\n}\n\n/**\n * Called inside prop getters to communicate that the prop is a store binding\n */\nexport function mark_store_binding() {\n\tis_store_binding = true;\n}\n\n/**\n * Returns a tuple that indicates whether `fn()` reads a prop that is a store binding.\n * Used to prevent `binding_property_non_reactive` validation false positives and\n * ensure that these props are treated as mutable even in runes mode\n * @template T\n * @param {() => T} fn\n * @returns {[T, boolean]}\n */\nexport function capture_store_binding(fn) {\n\tvar previous_is_store_binding = is_store_binding;\n\n\ttry {\n\t\tis_store_binding = false;\n\t\treturn [fn(), is_store_binding];\n\t} finally {\n\t\tis_store_binding = previous_is_store_binding;\n\t}\n}\n","/** @import { Fork } from 'svelte' */\n/** @import { Derived, Effect, Reaction, Source, Value } from '#client' */\nimport {\n\tBLOCK_EFFECT,\n\tBRANCH_EFFECT,\n\tCLEAN,\n\tDESTROYED,\n\tDIRTY,\n\tEFFECT,\n\tASYNC,\n\tINERT,\n\tRENDER_EFFECT,\n\tROOT_EFFECT,\n\tMAYBE_DIRTY,\n\tDERIVED,\n\tEAGER_EFFECT,\n\tERROR_VALUE,\n\tMANAGED_EFFECT,\n\tREACTION_RAN\n} from '#client/constants';\nimport { async_mode_flag } from '../../flags/index.js';\nimport { deferred, define_property, includes } from '../../shared/utils.js';\nimport {\n\tactive_effect,\n\tactive_reaction,\n\tget,\n\tincrement_write_version,\n\tis_dirty,\n\tupdate_effect\n} from '../runtime.js';\nimport * as e from '../errors.js';\nimport { flush_tasks, queue_micro_task } from '../dom/task.js';\nimport { DEV } from 'esm-env';\nimport { invoke_error_boundary } from '../error-handling.js';\nimport { flush_eager_effects, old_values, set_eager_effects, source, update } from './sources.js';\nimport { eager_effect, unlink_effect } from './effects.js';\nimport { defer_effect } from './utils.js';\nimport { UNINITIALIZED } from '../../../constants.js';\nimport { set_signal_status } from './status.js';\nimport { legacy_is_updating_store } from './store.js';\nimport { invariant } from '../../shared/dev.js';\nimport { log_effect_tree } from '../dev/debug.js';\n\n/** @type {Set} */\nconst batches = new Set();\n\n/** @type {Batch | null} */\nexport let current_batch = null;\n\n/**\n * This is needed to avoid overwriting inputs\n * @type {Batch | null}\n */\nexport let previous_batch = null;\n\n/**\n * When time travelling (i.e. working in one batch, while other batches\n * still have ongoing work), we ignore the real values of affected\n * signals in favour of their values within the batch\n * @type {Map | null}\n */\nexport let batch_values = null;\n\n/** @type {Effect | null} */\nlet last_scheduled_effect = null;\n\nexport let is_flushing_sync = false;\nlet is_processing = false;\n\n/**\n * During traversal, this is an array. Newly created effects are (if not immediately\n * executed) pushed to this array, rather than going through the scheduling\n * rigamarole that would cause another turn of the flush loop.\n * @type {Effect[] | null}\n */\nexport let collected_effects = null;\n\n/**\n * An array of effects that are marked during traversal as a result of a `set`\n * (not `internal_set`) call. These will be added to the next batch and\n * trigger another `batch.process()`\n * @type {Effect[] | null}\n * @deprecated when we get rid of legacy mode and stores, we can get rid of this\n */\nexport let legacy_updates = null;\n\nvar flush_count = 0;\nvar source_stacks = DEV ? new Set() : null;\n\nlet uid = 1;\n\nexport class Batch {\n\tid = uid++;\n\n\t/**\n\t * The current values of any signals that are updated in this batch.\n\t * Tuple format: [value, is_derived] (note: is_derived is false for deriveds, too, if they were overridden via assignment)\n\t * They keys of this map are identical to `this.#previous`\n\t * @type {Map}\n\t */\n\tcurrent = new Map();\n\n\t/**\n\t * The values of any signals (sources and deriveds) that are updated in this batch _before_ those updates took place.\n\t * They keys of this map are identical to `this.#current`\n\t * @type {Map}\n\t */\n\tprevious = new Map();\n\n\t/**\n\t * When the batch is committed (and the DOM is updated), we need to remove old branches\n\t * and append new ones by calling the functions added inside (if/each/key/etc) blocks\n\t * @type {Set<(batch: Batch) => void>}\n\t */\n\t#commit_callbacks = new Set();\n\n\t/**\n\t * If a fork is discarded, we need to destroy any effects that are no longer needed\n\t * @type {Set<(batch: Batch) => void>}\n\t */\n\t#discard_callbacks = new Set();\n\n\t/**\n\t * Callbacks that should run only when a fork is committed.\n\t * @type {Set<(batch: Batch) => void>}\n\t */\n\t#fork_commit_callbacks = new Set();\n\n\t/**\n\t * Async effects that are currently in flight\n\t * @type {Map}\n\t */\n\t#pending = new Map();\n\n\t/**\n\t * Async effects that are currently in flight, _not_ inside a pending boundary\n\t * @type {Map}\n\t */\n\t#blocking_pending = new Map();\n\n\t/**\n\t * A deferred that resolves when the batch is committed, used with `settled()`\n\t * TODO replace with Promise.withResolvers once supported widely enough\n\t * @type {{ promise: Promise, resolve: (value?: any) => void, reject: (reason: unknown) => void } | null}\n\t */\n\t#deferred = null;\n\n\t/**\n\t * The root effects that need to be flushed\n\t * @type {Effect[]}\n\t */\n\t#roots = [];\n\n\t/**\n\t * Effects created while this batch was active.\n\t * @type {Effect[]}\n\t */\n\t#new_effects = [];\n\n\t/**\n\t * Deferred effects (which run after async work has completed) that are DIRTY\n\t * @type {Set}\n\t */\n\t#dirty_effects = new Set();\n\n\t/**\n\t * Deferred effects that are MAYBE_DIRTY\n\t * @type {Set}\n\t */\n\t#maybe_dirty_effects = new Set();\n\n\t/**\n\t * A map of branches that still exist, but will be destroyed when this batch\n\t * is committed — we skip over these during `process`.\n\t * The value contains child effects that were dirty/maybe_dirty before being reset,\n\t * so they can be rescheduled if the branch survives.\n\t * @type {Map}\n\t */\n\t#skipped_branches = new Map();\n\n\t/**\n\t * Inverse of #skipped_branches which we need to tell prior batches to unskip them when committing\n\t * @type {Set}\n\t */\n\t#unskipped_branches = new Set();\n\n\tis_fork = false;\n\n\t#decrement_queued = false;\n\n\t/** @type {Set} */\n\t#blockers = new Set();\n\n\t#is_deferred() {\n\t\treturn this.is_fork || this.#blocking_pending.size > 0;\n\t}\n\n\t#is_blocked() {\n\t\tfor (const batch of this.#blockers) {\n\t\t\tfor (const effect of batch.#blocking_pending.keys()) {\n\t\t\t\tvar skipped = false;\n\t\t\t\tvar e = effect;\n\n\t\t\t\twhile (e.parent !== null) {\n\t\t\t\t\tif (this.#skipped_branches.has(e)) {\n\t\t\t\t\t\tskipped = true;\n\t\t\t\t\t\tbreak;\n\t\t\t\t\t}\n\n\t\t\t\t\te = e.parent;\n\t\t\t\t}\n\n\t\t\t\tif (!skipped) {\n\t\t\t\t\treturn true;\n\t\t\t\t}\n\t\t\t}\n\t\t}\n\n\t\treturn false;\n\t}\n\n\t/**\n\t * Add an effect to the #skipped_branches map and reset its children\n\t * @param {Effect} effect\n\t */\n\tskip_effect(effect) {\n\t\tif (!this.#skipped_branches.has(effect)) {\n\t\t\tthis.#skipped_branches.set(effect, { d: [], m: [] });\n\t\t}\n\t\tthis.#unskipped_branches.delete(effect);\n\t}\n\n\t/**\n\t * Remove an effect from the #skipped_branches map and reschedule\n\t * any tracked dirty/maybe_dirty child effects\n\t * @param {Effect} effect\n\t * @param {(e: Effect) => void} callback\n\t */\n\tunskip_effect(effect, callback = (e) => this.schedule(e)) {\n\t\tvar tracked = this.#skipped_branches.get(effect);\n\t\tif (tracked) {\n\t\t\tthis.#skipped_branches.delete(effect);\n\n\t\t\tfor (var e of tracked.d) {\n\t\t\t\tset_signal_status(e, DIRTY);\n\t\t\t\tcallback(e);\n\t\t\t}\n\n\t\t\tfor (e of tracked.m) {\n\t\t\t\tset_signal_status(e, MAYBE_DIRTY);\n\t\t\t\tcallback(e);\n\t\t\t}\n\t\t}\n\t\tthis.#unskipped_branches.add(effect);\n\t}\n\n\t#process() {\n\t\tif (flush_count++ > 1000) {\n\t\t\tbatches.delete(this);\n\t\t\tinfinite_loop_guard();\n\t\t}\n\n\t\t// we only reschedule previously-deferred effects if we expect\n\t\t// to be able to run them after processing the batch\n\t\tif (!this.#is_deferred()) {\n\t\t\tfor (const e of this.#dirty_effects) {\n\t\t\t\tthis.#maybe_dirty_effects.delete(e);\n\t\t\t\tset_signal_status(e, DIRTY);\n\t\t\t\tthis.schedule(e);\n\t\t\t}\n\n\t\t\tfor (const e of this.#maybe_dirty_effects) {\n\t\t\t\tset_signal_status(e, MAYBE_DIRTY);\n\t\t\t\tthis.schedule(e);\n\t\t\t}\n\t\t}\n\n\t\tconst roots = this.#roots;\n\t\tthis.#roots = [];\n\n\t\tthis.apply();\n\n\t\t/** @type {Effect[]} */\n\t\tvar effects = (collected_effects = []);\n\n\t\t/** @type {Effect[]} */\n\t\tvar render_effects = [];\n\n\t\t/**\n\t\t * @type {Effect[]}\n\t\t * @deprecated when we get rid of legacy mode and stores, we can get rid of this\n\t\t */\n\t\tvar updates = (legacy_updates = []);\n\n\t\tfor (const root of roots) {\n\t\t\ttry {\n\t\t\t\tthis.#traverse(root, effects, render_effects);\n\t\t\t} catch (e) {\n\t\t\t\treset_all(root);\n\t\t\t\tthrow e;\n\t\t\t}\n\t\t}\n\n\t\t// any writes should take effect in a subsequent batch\n\t\tcurrent_batch = null;\n\n\t\tif (updates.length > 0) {\n\t\t\tvar batch = Batch.ensure();\n\t\t\tfor (const e of updates) {\n\t\t\t\tbatch.schedule(e);\n\t\t\t}\n\t\t}\n\n\t\tcollected_effects = null;\n\t\tlegacy_updates = null;\n\n\t\tif (this.#is_deferred() || this.#is_blocked()) {\n\t\t\tthis.#defer_effects(render_effects);\n\t\t\tthis.#defer_effects(effects);\n\n\t\t\tfor (const [e, t] of this.#skipped_branches) {\n\t\t\t\treset_branch(e, t);\n\t\t\t}\n\t\t} else {\n\t\t\tif (this.#pending.size === 0) {\n\t\t\t\tbatches.delete(this);\n\t\t\t}\n\n\t\t\t// clear effects. Those that are still needed will be rescheduled through unskipping the skipped branches.\n\t\t\tthis.#dirty_effects.clear();\n\t\t\tthis.#maybe_dirty_effects.clear();\n\n\t\t\t// append/remove branches\n\t\t\tfor (const fn of this.#commit_callbacks) fn(this);\n\t\t\tthis.#commit_callbacks.clear();\n\n\t\t\tprevious_batch = this;\n\t\t\tflush_queued_effects(render_effects);\n\t\t\tflush_queued_effects(effects);\n\t\t\tprevious_batch = null;\n\n\t\t\tthis.#deferred?.resolve();\n\t\t}\n\n\t\tvar next_batch = /** @type {Batch | null} */ (/** @type {unknown} */ (current_batch));\n\n\t\t// Edge case: During traversal new branches might create effects that run immediately and set state,\n\t\t// causing an effect and therefore a root to be scheduled again. We need to traverse the current batch\n\t\t// once more in that case - most of the time this will just clean up dirty branches.\n\t\tif (this.#roots.length > 0) {\n\t\t\tconst batch = (next_batch ??= this);\n\t\t\tbatch.#roots.push(...this.#roots.filter((r) => !batch.#roots.includes(r)));\n\t\t}\n\n\t\tif (next_batch !== null) {\n\t\t\tbatches.add(next_batch);\n\n\t\t\tif (DEV) {\n\t\t\t\tfor (const source of this.current.keys()) {\n\t\t\t\t\t/** @type {Set} */ (source_stacks).add(source);\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tnext_batch.#process();\n\t\t}\n\n\t\t// In sync mode flushSync can cause #commit to wrongfully think that there needs to be a rebase, so we only do it in async mode\n\t\t// TODO fix the underlying cause, otherwise this will likely regress when non-async mode is removed\n\t\tif (async_mode_flag && !batches.has(this)) {\n\t\t\tthis.#commit();\n\t\t}\n\t}\n\n\t/**\n\t * Traverse the effect tree, executing effects or stashing\n\t * them for later execution as appropriate\n\t * @param {Effect} root\n\t * @param {Effect[]} effects\n\t * @param {Effect[]} render_effects\n\t */\n\t#traverse(root, effects, render_effects) {\n\t\troot.f ^= CLEAN;\n\n\t\tvar effect = root.first;\n\n\t\twhile (effect !== null) {\n\t\t\tvar flags = effect.f;\n\t\t\tvar is_branch = (flags & (BRANCH_EFFECT | ROOT_EFFECT)) !== 0;\n\t\t\tvar is_skippable_branch = is_branch && (flags & CLEAN) !== 0;\n\n\t\t\tvar skip = is_skippable_branch || (flags & INERT) !== 0 || this.#skipped_branches.has(effect);\n\n\t\t\tif (!skip && effect.fn !== null) {\n\t\t\t\tif (is_branch) {\n\t\t\t\t\teffect.f ^= CLEAN;\n\t\t\t\t} else if ((flags & EFFECT) !== 0) {\n\t\t\t\t\teffects.push(effect);\n\t\t\t\t} else if (async_mode_flag && (flags & (RENDER_EFFECT | MANAGED_EFFECT)) !== 0) {\n\t\t\t\t\trender_effects.push(effect);\n\t\t\t\t} else if (is_dirty(effect)) {\n\t\t\t\t\tif ((flags & BLOCK_EFFECT) !== 0) this.#maybe_dirty_effects.add(effect);\n\t\t\t\t\tupdate_effect(effect);\n\t\t\t\t}\n\n\t\t\t\tvar child = effect.first;\n\n\t\t\t\tif (child !== null) {\n\t\t\t\t\teffect = child;\n\t\t\t\t\tcontinue;\n\t\t\t\t}\n\t\t\t}\n\n\t\t\twhile (effect !== null) {\n\t\t\t\tvar next = effect.next;\n\n\t\t\t\tif (next !== null) {\n\t\t\t\t\teffect = next;\n\t\t\t\t\tbreak;\n\t\t\t\t}\n\n\t\t\t\teffect = effect.parent;\n\t\t\t}\n\t\t}\n\t}\n\n\t/**\n\t * @param {Effect[]} effects\n\t */\n\t#defer_effects(effects) {\n\t\tfor (var i = 0; i < effects.length; i += 1) {\n\t\t\tdefer_effect(effects[i], this.#dirty_effects, this.#maybe_dirty_effects);\n\t\t}\n\t}\n\n\t/**\n\t * Associate a change to a given source with the current\n\t * batch, noting its previous and current values\n\t * @param {Value} source\n\t * @param {any} value\n\t * @param {boolean} [is_derived]\n\t */\n\tcapture(source, value, is_derived = false) {\n\t\tif (source.v !== UNINITIALIZED && !this.previous.has(source)) {\n\t\t\tthis.previous.set(source, source.v);\n\t\t}\n\n\t\t// Don't save errors in `batch_values`, or they won't be thrown in `runtime.js#get`\n\t\tif ((source.f & ERROR_VALUE) === 0) {\n\t\t\tthis.current.set(source, [value, is_derived]);\n\t\t\tbatch_values?.set(source, value);\n\t\t}\n\n\t\tif (!this.is_fork) {\n\t\t\tsource.v = value;\n\t\t}\n\t}\n\n\tactivate() {\n\t\tcurrent_batch = this;\n\t}\n\n\tdeactivate() {\n\t\tcurrent_batch = null;\n\t\tbatch_values = null;\n\t}\n\n\tflush() {\n\t\tvar source_stacks = DEV ? new Set() : null;\n\n\t\ttry {\n\t\t\tis_processing = true;\n\t\t\tcurrent_batch = this;\n\n\t\t\tthis.#process();\n\t\t} finally {\n\t\t\tflush_count = 0;\n\t\t\tlast_scheduled_effect = null;\n\t\t\tcollected_effects = null;\n\t\t\tlegacy_updates = null;\n\t\t\tis_processing = false;\n\n\t\t\tcurrent_batch = null;\n\t\t\tbatch_values = null;\n\n\t\t\told_values.clear();\n\n\t\t\tif (DEV) {\n\t\t\t\tfor (const source of /** @type {Set} */ (source_stacks)) {\n\t\t\t\t\tsource.updated = null;\n\t\t\t\t}\n\t\t\t}\n\t\t}\n\t}\n\n\tdiscard() {\n\t\tfor (const fn of this.#discard_callbacks) fn(this);\n\t\tthis.#discard_callbacks.clear();\n\t\tthis.#fork_commit_callbacks.clear();\n\n\t\tbatches.delete(this);\n\t}\n\n\t/**\n\t * @param {Effect} effect\n\t */\n\tregister_created_effect(effect) {\n\t\tthis.#new_effects.push(effect);\n\t}\n\n\t#commit() {\n\t\t// If there are other pending batches, they now need to be 'rebased' —\n\t\t// in other words, we re-run block/async effects with the newly\n\t\t// committed state, unless the batch in question has a more\n\t\t// recent value for a given source\n\t\tfor (const batch of batches) {\n\t\t\tvar is_earlier = batch.id < this.id;\n\n\t\t\t/** @type {Source[]} */\n\t\t\tvar sources = [];\n\n\t\t\tfor (const [source, [value, is_derived]] of this.current) {\n\t\t\t\tif (batch.current.has(source)) {\n\t\t\t\t\tvar batch_value = /** @type {[any, boolean]} */ (batch.current.get(source))[0]; // faster than destructuring\n\n\t\t\t\t\tif (is_earlier && value !== batch_value) {\n\t\t\t\t\t\t// bring the value up to date\n\t\t\t\t\t\tbatch.current.set(source, [value, is_derived]);\n\t\t\t\t\t} else {\n\t\t\t\t\t\t// same value or later batch has more recent value,\n\t\t\t\t\t\t// no need to re-run these effects\n\t\t\t\t\t\tcontinue;\n\t\t\t\t\t}\n\t\t\t\t}\n\n\t\t\t\tsources.push(source);\n\t\t\t}\n\n\t\t\t// Re-run async/block effects that depend on distinct values changed in both batches\n\t\t\tvar others = [...batch.current.keys()].filter((s) => !this.current.has(s));\n\n\t\t\tif (others.length === 0) {\n\t\t\t\tif (is_earlier) {\n\t\t\t\t\t// this batch is now obsolete and can be discarded\n\t\t\t\t\tbatch.discard();\n\t\t\t\t}\n\t\t\t} else if (sources.length > 0) {\n\t\t\t\tif (DEV) {\n\t\t\t\t\tinvariant(batch.#roots.length === 0, 'Batch has scheduled roots');\n\t\t\t\t}\n\n\t\t\t\t// A batch was unskipped in a later batch -> tell prior batches to unskip it, too\n\t\t\t\tif (is_earlier) {\n\t\t\t\t\tfor (const unskipped of this.#unskipped_branches) {\n\t\t\t\t\t\tbatch.unskip_effect(unskipped, (e) => {\n\t\t\t\t\t\t\tif ((e.f & (BLOCK_EFFECT | ASYNC)) !== 0) {\n\t\t\t\t\t\t\t\tbatch.schedule(e);\n\t\t\t\t\t\t\t} else {\n\t\t\t\t\t\t\t\tbatch.#defer_effects([e]);\n\t\t\t\t\t\t\t}\n\t\t\t\t\t\t});\n\t\t\t\t\t}\n\t\t\t\t}\n\n\t\t\t\tbatch.activate();\n\n\t\t\t\t/** @type {Set} */\n\t\t\t\tvar marked = new Set();\n\n\t\t\t\t/** @type {Map} */\n\t\t\t\tvar checked = new Map();\n\n\t\t\t\tfor (var source of sources) {\n\t\t\t\t\tmark_effects(source, others, marked, checked);\n\t\t\t\t}\n\n\t\t\t\tchecked = new Map();\n\t\t\t\tvar current_unequal = [...batch.current.keys()].filter((c) =>\n\t\t\t\t\tthis.current.has(c) ? /** @type {[any, boolean]} */ (this.current.get(c))[0] !== c : true\n\t\t\t\t);\n\n\t\t\t\tfor (const effect of this.#new_effects) {\n\t\t\t\t\tif (\n\t\t\t\t\t\t(effect.f & (DESTROYED | INERT | EAGER_EFFECT)) === 0 &&\n\t\t\t\t\t\tdepends_on(effect, current_unequal, checked)\n\t\t\t\t\t) {\n\t\t\t\t\t\tif ((effect.f & (ASYNC | BLOCK_EFFECT)) !== 0) {\n\t\t\t\t\t\t\tset_signal_status(effect, DIRTY);\n\t\t\t\t\t\t\tbatch.schedule(effect);\n\t\t\t\t\t\t} else {\n\t\t\t\t\t\t\tbatch.#dirty_effects.add(effect);\n\t\t\t\t\t\t}\n\t\t\t\t\t}\n\t\t\t\t}\n\n\t\t\t\t// Only apply and traverse when we know we triggered async work with marking the effects\n\t\t\t\tif (batch.#roots.length > 0) {\n\t\t\t\t\tbatch.apply();\n\n\t\t\t\t\tfor (var root of batch.#roots) {\n\t\t\t\t\t\tbatch.#traverse(root, [], []);\n\t\t\t\t\t}\n\n\t\t\t\t\tbatch.#roots = [];\n\t\t\t\t}\n\n\t\t\t\tbatch.deactivate();\n\t\t\t}\n\t\t}\n\n\t\tfor (const batch of batches) {\n\t\t\tif (batch.#blockers.has(this)) {\n\t\t\t\tbatch.#blockers.delete(this);\n\n\t\t\t\tif (batch.#blockers.size === 0 && !batch.#is_deferred()) {\n\t\t\t\t\tbatch.activate();\n\t\t\t\t\tbatch.#process();\n\t\t\t\t}\n\t\t\t}\n\t\t}\n\t}\n\n\t/**\n\t * @param {boolean} blocking\n\t * @param {Effect} effect\n\t */\n\tincrement(blocking, effect) {\n\t\tlet pending_count = this.#pending.get(effect) ?? 0;\n\t\tthis.#pending.set(effect, pending_count + 1);\n\n\t\tif (blocking) {\n\t\t\tlet blocking_pending_count = this.#blocking_pending.get(effect) ?? 0;\n\t\t\tthis.#blocking_pending.set(effect, blocking_pending_count + 1);\n\t\t}\n\t}\n\n\t/**\n\t * @param {boolean} blocking\n\t * @param {Effect} effect\n\t * @param {boolean} skip - whether to skip updates (because this is triggered by a stale reaction)\n\t */\n\tdecrement(blocking, effect, skip) {\n\t\tlet pending_count = this.#pending.get(effect) ?? 0;\n\n\t\tif (pending_count === 1) {\n\t\t\tthis.#pending.delete(effect);\n\t\t} else {\n\t\t\tthis.#pending.set(effect, pending_count - 1);\n\t\t}\n\n\t\tif (blocking) {\n\t\t\tlet blocking_pending_count = this.#blocking_pending.get(effect) ?? 0;\n\n\t\t\tif (blocking_pending_count === 1) {\n\t\t\t\tthis.#blocking_pending.delete(effect);\n\t\t\t} else {\n\t\t\t\tthis.#blocking_pending.set(effect, blocking_pending_count - 1);\n\t\t\t}\n\t\t}\n\n\t\tif (this.#decrement_queued || skip) return;\n\t\tthis.#decrement_queued = true;\n\n\t\tqueue_micro_task(() => {\n\t\t\tthis.#decrement_queued = false;\n\t\t\tthis.flush();\n\t\t});\n\t}\n\n\t/**\n\t * @param {Set} dirty_effects\n\t * @param {Set} maybe_dirty_effects\n\t */\n\ttransfer_effects(dirty_effects, maybe_dirty_effects) {\n\t\tfor (const e of dirty_effects) {\n\t\t\tthis.#dirty_effects.add(e);\n\t\t}\n\n\t\tfor (const e of maybe_dirty_effects) {\n\t\t\tthis.#maybe_dirty_effects.add(e);\n\t\t}\n\n\t\tdirty_effects.clear();\n\t\tmaybe_dirty_effects.clear();\n\t}\n\n\t/** @param {(batch: Batch) => void} fn */\n\toncommit(fn) {\n\t\tthis.#commit_callbacks.add(fn);\n\t}\n\n\t/** @param {(batch: Batch) => void} fn */\n\tondiscard(fn) {\n\t\tthis.#discard_callbacks.add(fn);\n\t}\n\n\t/** @param {(batch: Batch) => void} fn */\n\ton_fork_commit(fn) {\n\t\tthis.#fork_commit_callbacks.add(fn);\n\t}\n\n\trun_fork_commit_callbacks() {\n\t\tfor (const fn of this.#fork_commit_callbacks) fn(this);\n\t\tthis.#fork_commit_callbacks.clear();\n\t}\n\n\tsettled() {\n\t\treturn (this.#deferred ??= deferred()).promise;\n\t}\n\n\tstatic ensure() {\n\t\tif (current_batch === null) {\n\t\t\tconst batch = (current_batch = new Batch());\n\n\t\t\tif (!is_processing) {\n\t\t\t\tbatches.add(current_batch);\n\n\t\t\t\tif (!is_flushing_sync) {\n\t\t\t\t\tqueue_micro_task(() => {\n\t\t\t\t\t\tif (current_batch !== batch) {\n\t\t\t\t\t\t\t// a flushSync happened in the meantime\n\t\t\t\t\t\t\treturn;\n\t\t\t\t\t\t}\n\n\t\t\t\t\t\tbatch.flush();\n\t\t\t\t\t});\n\t\t\t\t}\n\t\t\t}\n\t\t}\n\n\t\treturn current_batch;\n\t}\n\n\tapply() {\n\t\tif (!async_mode_flag || (!this.is_fork && batches.size === 1)) {\n\t\t\tbatch_values = null;\n\t\t\treturn;\n\t\t}\n\n\t\t// if there are multiple batches, we are 'time travelling' —\n\t\t// we need to override values with the ones in this batch...\n\t\tbatch_values = new Map();\n\t\tfor (const [source, [value]] of this.current) {\n\t\t\tbatch_values.set(source, value);\n\t\t}\n\n\t\t// ...and undo changes belonging to other batches unless they block this one\n\t\tfor (const batch of batches) {\n\t\t\tif (batch === this || batch.is_fork) continue;\n\n\t\t\t// A batch is blocked on an earlier batch if it overlaps with the earlier batch's changes but is not a superset\n\t\t\tvar intersects = false;\n\t\t\tvar differs = false;\n\n\t\t\tif (batch.id < this.id) {\n\t\t\t\tfor (const [source, [, is_derived]] of batch.current) {\n\t\t\t\t\t// Derived values don't partake in the blocking mechanism, because a derived could\n\t\t\t\t\t// be triggered in one batch already but not the other one yet, causing a false-positive\n\t\t\t\t\tif (is_derived) continue;\n\n\t\t\t\t\tintersects ||= this.current.has(source);\n\t\t\t\t\tdiffers ||= !this.current.has(source);\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tif (intersects && differs) {\n\t\t\t\tthis.#blockers.add(batch);\n\t\t\t} else {\n\t\t\t\tfor (const [source, previous] of batch.previous) {\n\t\t\t\t\tif (!batch_values.has(source)) {\n\t\t\t\t\t\tbatch_values.set(source, previous);\n\t\t\t\t\t}\n\t\t\t\t}\n\t\t\t}\n\t\t}\n\t}\n\n\t/**\n\t *\n\t * @param {Effect} effect\n\t */\n\tschedule(effect) {\n\t\tlast_scheduled_effect = effect;\n\n\t\t// defer render effects inside a pending boundary\n\t\t// TODO the `REACTION_RAN` check is only necessary because of legacy `$:` effects AFAICT — we can remove later\n\t\tif (\n\t\t\teffect.b?.is_pending &&\n\t\t\t(effect.f & (EFFECT | RENDER_EFFECT | MANAGED_EFFECT)) !== 0 &&\n\t\t\t(effect.f & REACTION_RAN) === 0\n\t\t) {\n\t\t\teffect.b.defer_effect(effect);\n\t\t\treturn;\n\t\t}\n\n\t\tvar e = effect;\n\n\t\twhile (e.parent !== null) {\n\t\t\te = e.parent;\n\t\t\tvar flags = e.f;\n\n\t\t\t// if the effect is being scheduled because a parent (each/await/etc) block\n\t\t\t// updated an internal source, or because a branch is being unskipped,\n\t\t\t// bail out or we'll cause a second flush\n\t\t\tif (collected_effects !== null && e === active_effect) {\n\t\t\t\tif (async_mode_flag) return;\n\n\t\t\t\t// in sync mode, render effects run during traversal. in an extreme edge case\n\t\t\t\t// — namely that we're setting a value inside a derived read during traversal —\n\t\t\t\t// they can be made dirty after they have already been visited, in which\n\t\t\t\t// case we shouldn't bail out. we also shouldn't bail out if we're\n\t\t\t\t// updating a store inside a `$:`, since this might invalidate\n\t\t\t\t// effects that were already visited\n\t\t\t\tif (\n\t\t\t\t\t(active_reaction === null || (active_reaction.f & DERIVED) === 0) &&\n\t\t\t\t\t!legacy_is_updating_store\n\t\t\t\t) {\n\t\t\t\t\treturn;\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tif ((flags & (ROOT_EFFECT | BRANCH_EFFECT)) !== 0) {\n\t\t\t\tif ((flags & CLEAN) === 0) {\n\t\t\t\t\t// branch is already dirty, bail\n\t\t\t\t\treturn;\n\t\t\t\t}\n\n\t\t\t\te.f ^= CLEAN;\n\t\t\t}\n\t\t}\n\n\t\tthis.#roots.push(e);\n\t}\n}\n\n// TODO Svelte@6 think about removing the callback argument.\n/**\n * Synchronously flush any pending updates.\n * Returns void if no callback is provided, otherwise returns the result of calling the callback.\n * @template [T=void]\n * @param {(() => T) | undefined} [fn]\n * @returns {T}\n */\nexport function flushSync(fn) {\n\tvar was_flushing_sync = is_flushing_sync;\n\tis_flushing_sync = true;\n\n\ttry {\n\t\tvar result;\n\n\t\tif (fn) {\n\t\t\tif (current_batch !== null && !current_batch.is_fork) {\n\t\t\t\tcurrent_batch.flush();\n\t\t\t}\n\n\t\t\tresult = fn();\n\t\t}\n\n\t\twhile (true) {\n\t\t\tflush_tasks();\n\n\t\t\tif (current_batch === null) {\n\t\t\t\treturn /** @type {T} */ (result);\n\t\t\t}\n\n\t\t\tcurrent_batch.flush();\n\t\t}\n\t} finally {\n\t\tis_flushing_sync = was_flushing_sync;\n\t}\n}\n\nfunction infinite_loop_guard() {\n\tif (DEV) {\n\t\tvar updates = new Map();\n\n\t\tfor (const source of /** @type {Batch} */ (current_batch).current.keys()) {\n\t\t\tfor (const [stack, update] of source.updated ?? []) {\n\t\t\t\tvar entry = updates.get(stack);\n\n\t\t\t\tif (!entry) {\n\t\t\t\t\tentry = { error: update.error, count: 0 };\n\t\t\t\t\tupdates.set(stack, entry);\n\t\t\t\t}\n\n\t\t\t\tentry.count += update.count;\n\t\t\t}\n\t\t}\n\n\t\tfor (const update of updates.values()) {\n\t\t\tif (update.error) {\n\t\t\t\t// eslint-disable-next-line no-console\n\t\t\t\tconsole.error(update.error);\n\t\t\t}\n\t\t}\n\t}\n\n\ttry {\n\t\te.effect_update_depth_exceeded();\n\t} catch (error) {\n\t\tif (DEV) {\n\t\t\t// stack contains no useful information, replace it\n\t\t\tdefine_property(error, 'stack', { value: '' });\n\t\t}\n\n\t\t// Best effort: invoke the boundary nearest the most recent\n\t\t// effect and hope that it's relevant to the infinite loop\n\t\tinvoke_error_boundary(error, last_scheduled_effect);\n\t}\n}\n\n/** @type {Set | null} */\nexport let eager_block_effects = null;\n\n/**\n * @param {Array} effects\n * @returns {void}\n */\nfunction flush_queued_effects(effects) {\n\tvar length = effects.length;\n\tif (length === 0) return;\n\n\tvar i = 0;\n\n\twhile (i < length) {\n\t\tvar effect = effects[i++];\n\n\t\tif ((effect.f & (DESTROYED | INERT)) === 0 && is_dirty(effect)) {\n\t\t\teager_block_effects = new Set();\n\n\t\t\tupdate_effect(effect);\n\n\t\t\t// Effects with no dependencies or teardown do not get added to the effect tree.\n\t\t\t// Deferred effects (e.g. `$effect(...)`) _are_ added to the tree because we\n\t\t\t// don't know if we need to keep them until they are executed. Doing the check\n\t\t\t// here (rather than in `update_effect`) allows us to skip the work for\n\t\t\t// immediate effects.\n\t\t\tif (\n\t\t\t\teffect.deps === null &&\n\t\t\t\teffect.first === null &&\n\t\t\t\teffect.nodes === null &&\n\t\t\t\teffect.teardown === null &&\n\t\t\t\teffect.ac === null\n\t\t\t) {\n\t\t\t\t// remove this effect from the graph\n\t\t\t\tunlink_effect(effect);\n\t\t\t}\n\n\t\t\t// If update_effect() has a flushSync() in it, we may have flushed another flush_queued_effects(),\n\t\t\t// which already handled this logic and did set eager_block_effects to null.\n\t\t\tif (eager_block_effects?.size > 0) {\n\t\t\t\told_values.clear();\n\n\t\t\t\tfor (const e of eager_block_effects) {\n\t\t\t\t\t// Skip eager effects that have already been unmounted\n\t\t\t\t\tif ((e.f & (DESTROYED | INERT)) !== 0) continue;\n\n\t\t\t\t\t// Run effects in order from ancestor to descendant, else we could run into nullpointers\n\t\t\t\t\t/** @type {Effect[]} */\n\t\t\t\t\tconst ordered_effects = [e];\n\t\t\t\t\tlet ancestor = e.parent;\n\t\t\t\t\twhile (ancestor !== null) {\n\t\t\t\t\t\tif (eager_block_effects.has(ancestor)) {\n\t\t\t\t\t\t\teager_block_effects.delete(ancestor);\n\t\t\t\t\t\t\tordered_effects.push(ancestor);\n\t\t\t\t\t\t}\n\t\t\t\t\t\tancestor = ancestor.parent;\n\t\t\t\t\t}\n\n\t\t\t\t\tfor (let j = ordered_effects.length - 1; j >= 0; j--) {\n\t\t\t\t\t\tconst e = ordered_effects[j];\n\t\t\t\t\t\t// Skip eager effects that have already been unmounted\n\t\t\t\t\t\tif ((e.f & (DESTROYED | INERT)) !== 0) continue;\n\t\t\t\t\t\tupdate_effect(e);\n\t\t\t\t\t}\n\t\t\t\t}\n\n\t\t\t\teager_block_effects.clear();\n\t\t\t}\n\t\t}\n\t}\n\n\teager_block_effects = null;\n}\n\n/**\n * This is similar to `mark_reactions`, but it only marks async/block effects\n * depending on `value` and at least one of the other `sources`, so that\n * these effects can re-run after another batch has been committed\n * @param {Value} value\n * @param {Source[]} sources\n * @param {Set} marked\n * @param {Map} checked\n */\nfunction mark_effects(value, sources, marked, checked) {\n\tif (marked.has(value)) return;\n\tmarked.add(value);\n\n\tif (value.reactions !== null) {\n\t\tfor (const reaction of value.reactions) {\n\t\t\tconst flags = reaction.f;\n\n\t\t\tif ((flags & DERIVED) !== 0) {\n\t\t\t\tmark_effects(/** @type {Derived} */ (reaction), sources, marked, checked);\n\t\t\t} else if (\n\t\t\t\t(flags & (ASYNC | BLOCK_EFFECT)) !== 0 &&\n\t\t\t\t(flags & DIRTY) === 0 &&\n\t\t\t\tdepends_on(reaction, sources, checked)\n\t\t\t) {\n\t\t\t\tset_signal_status(reaction, DIRTY);\n\t\t\t\tschedule_effect(/** @type {Effect} */ (reaction));\n\t\t\t}\n\t\t}\n\t}\n}\n\n/**\n * When committing a fork, we need to trigger eager effects so that\n * any `$state.eager(...)` expressions update immediately. This\n * function allows us to discover them\n * @param {Value} value\n * @param {Set} effects\n */\nfunction mark_eager_effects(value, effects) {\n\tif (value.reactions === null) return;\n\n\tfor (const reaction of value.reactions) {\n\t\tconst flags = reaction.f;\n\n\t\tif ((flags & DERIVED) !== 0) {\n\t\t\tmark_eager_effects(/** @type {Derived} */ (reaction), effects);\n\t\t} else if ((flags & EAGER_EFFECT) !== 0) {\n\t\t\tset_signal_status(reaction, DIRTY);\n\t\t\teffects.add(/** @type {Effect} */ (reaction));\n\t\t}\n\t}\n}\n\n/**\n * @param {Reaction} reaction\n * @param {Source[]} sources\n * @param {Map} checked\n */\nfunction depends_on(reaction, sources, checked) {\n\tconst depends = checked.get(reaction);\n\tif (depends !== undefined) return depends;\n\n\tif (reaction.deps !== null) {\n\t\tfor (const dep of reaction.deps) {\n\t\t\tif (includes.call(sources, dep)) {\n\t\t\t\treturn true;\n\t\t\t}\n\n\t\t\tif ((dep.f & DERIVED) !== 0 && depends_on(/** @type {Derived} */ (dep), sources, checked)) {\n\t\t\t\tchecked.set(/** @type {Derived} */ (dep), true);\n\t\t\t\treturn true;\n\t\t\t}\n\t\t}\n\t}\n\n\tchecked.set(reaction, false);\n\n\treturn false;\n}\n\n/**\n * @param {Effect} effect\n * @returns {void}\n */\nexport function schedule_effect(effect) {\n\t/** @type {Batch} */ (current_batch).schedule(effect);\n}\n\n/** @type {Source[]} */\nlet eager_versions = [];\n\nfunction eager_flush() {\n\tflushSync(() => {\n\t\tconst eager = eager_versions;\n\t\teager_versions = [];\n\t\tfor (const version of eager) {\n\t\t\tupdate(version);\n\t\t}\n\t});\n}\n\n/**\n * Implementation of `$state.eager(fn())`\n * @template T\n * @param {() => T} fn\n * @returns {T}\n */\nexport function eager(fn) {\n\tvar version = source(0);\n\tvar initial = true;\n\tvar value = /** @type {T} */ (undefined);\n\n\tget(version);\n\n\teager_effect(() => {\n\t\tif (initial) {\n\t\t\t// the first time this runs, we create an eager effect\n\t\t\t// that will run eagerly whenever the expression changes\n\t\t\tvar previous_batch_values = batch_values;\n\n\t\t\ttry {\n\t\t\t\tbatch_values = null;\n\t\t\t\tvalue = fn();\n\t\t\t} finally {\n\t\t\t\tbatch_values = previous_batch_values;\n\t\t\t}\n\n\t\t\treturn;\n\t\t}\n\n\t\t// the second time this effect runs, it's to schedule a\n\t\t// `version` update. since this will recreate the effect,\n\t\t// we don't need to evaluate the expression here\n\t\tif (eager_versions.length === 0) {\n\t\t\tqueue_micro_task(eager_flush);\n\t\t}\n\n\t\teager_versions.push(version);\n\t});\n\n\tinitial = false;\n\n\treturn value;\n}\n\n/**\n * Mark all the effects inside a skipped branch CLEAN, so that\n * they can be correctly rescheduled later. Tracks dirty and maybe_dirty\n * effects so they can be rescheduled if the branch survives.\n * @param {Effect} effect\n * @param {{ d: Effect[], m: Effect[] }} tracked\n */\nfunction reset_branch(effect, tracked) {\n\t// clean branch = nothing dirty inside, no need to traverse further\n\tif ((effect.f & BRANCH_EFFECT) !== 0 && (effect.f & CLEAN) !== 0) {\n\t\treturn;\n\t}\n\n\tif ((effect.f & DIRTY) !== 0) {\n\t\ttracked.d.push(effect);\n\t} else if ((effect.f & MAYBE_DIRTY) !== 0) {\n\t\ttracked.m.push(effect);\n\t}\n\n\tset_signal_status(effect, CLEAN);\n\n\tvar e = effect.first;\n\twhile (e !== null) {\n\t\treset_branch(e, tracked);\n\t\te = e.next;\n\t}\n}\n\n/**\n * Mark an entire effect tree clean following an error\n * @param {Effect} effect\n */\nfunction reset_all(effect) {\n\tset_signal_status(effect, CLEAN);\n\n\tvar e = effect.first;\n\twhile (e !== null) {\n\t\treset_all(e);\n\t\te = e.next;\n\t}\n}\n\n/**\n * Creates a 'fork', in which state changes are evaluated but not applied to the DOM.\n * This is useful for speculatively loading data (for example) when you suspect that\n * the user is about to take some action.\n *\n * Frameworks like SvelteKit can use this to preload data when the user touches or\n * hovers over a link, making any subsequent navigation feel instantaneous.\n *\n * The `fn` parameter is a synchronous function that modifies some state. The\n * state changes will be reverted after the fork is initialised, then reapplied\n * if and when the fork is eventually committed.\n *\n * When it becomes clear that a fork will _not_ be committed (e.g. because the\n * user navigated elsewhere), it must be discarded to avoid leaking memory.\n *\n * @param {() => void} fn\n * @returns {Fork}\n * @since 5.42\n */\nexport function fork(fn) {\n\tif (!async_mode_flag) {\n\t\te.experimental_async_required('fork');\n\t}\n\n\tif (current_batch !== null) {\n\t\te.fork_timing();\n\t}\n\n\tvar batch = Batch.ensure();\n\tbatch.is_fork = true;\n\tbatch_values = new Map();\n\n\tvar committed = false;\n\tvar settled = batch.settled();\n\n\tflushSync(fn);\n\n\treturn {\n\t\tcommit: async () => {\n\t\t\tif (committed) {\n\t\t\t\tawait settled;\n\t\t\t\treturn;\n\t\t\t}\n\n\t\t\tif (!batches.has(batch)) {\n\t\t\t\te.fork_discarded();\n\t\t\t}\n\n\t\t\tcommitted = true;\n\n\t\t\tbatch.is_fork = false;\n\n\t\t\t// apply changes and update write versions so deriveds see the change\n\t\t\tfor (var [source, [value]] of batch.current) {\n\t\t\t\tsource.v = value;\n\t\t\t\tsource.wv = increment_write_version();\n\t\t\t}\n\n\t\t\tbatch.activate();\n\t\t\tbatch.run_fork_commit_callbacks();\n\t\t\tbatch.deactivate();\n\n\t\t\t// trigger any `$state.eager(...)` expressions with the new state.\n\t\t\t// eager effects don't get scheduled like other effects, so we\n\t\t\t// can't just encounter them during traversal, we need to\n\t\t\t// proactively flush them\n\t\t\t// TODO maybe there's a better implementation?\n\t\t\tflushSync(() => {\n\t\t\t\t/** @type {Set} */\n\t\t\t\tvar eager_effects = new Set();\n\n\t\t\t\tfor (var source of batch.current.keys()) {\n\t\t\t\t\tmark_eager_effects(source, eager_effects);\n\t\t\t\t}\n\n\t\t\t\tset_eager_effects(eager_effects);\n\t\t\t\tflush_eager_effects();\n\t\t\t});\n\n\t\t\tbatch.flush();\n\t\t\tawait settled;\n\t\t},\n\t\tdiscard: () => {\n\t\t\t// cause any MAYBE_DIRTY deriveds to update\n\t\t\t// if they depend on things thath changed\n\t\t\t// inside the discarded fork\n\t\t\tfor (var source of batch.current.keys()) {\n\t\t\t\tsource.wv = increment_write_version();\n\t\t\t}\n\n\t\t\tif (!committed && batches.has(batch)) {\n\t\t\t\tbatch.discard();\n\t\t\t}\n\t\t}\n\t};\n}\n\n/**\n * Forcibly remove all current batches, to prevent cross-talk between tests\n */\nexport function clear() {\n\tbatches.clear();\n}\n","import { get, tick, untrack } from '../internal/client/runtime.js';\nimport { effect_tracking, render_effect } from '../internal/client/reactivity/effects.js';\nimport { source, increment } from '../internal/client/reactivity/sources.js';\nimport { tag } from '../internal/client/dev/tracing.js';\nimport { DEV } from 'esm-env';\nimport { queue_micro_task } from '../internal/client/dom/task.js';\n\n/**\n * Returns a `subscribe` function that integrates external event-based systems with Svelte's reactivity.\n * It's particularly useful for integrating with web APIs like `MediaQuery`, `IntersectionObserver`, or `WebSocket`.\n *\n * If `subscribe` is called inside an effect (including indirectly, for example inside a getter),\n * the `start` callback will be called with an `update` function. Whenever `update` is called, the effect re-runs.\n *\n * If `start` returns a cleanup function, it will be called when the effect is destroyed.\n *\n * If `subscribe` is called in multiple effects, `start` will only be called once as long as the effects\n * are active, and the returned teardown function will only be called when all effects are destroyed.\n *\n * It's best understood with an example. Here's an implementation of [`MediaQuery`](https://svelte.dev/docs/svelte/svelte-reactivity#MediaQuery):\n *\n * ```js\n * import { createSubscriber } from 'svelte/reactivity';\n * import { on } from 'svelte/events';\n *\n * export class MediaQuery {\n * \t#query;\n * \t#subscribe;\n *\n * \tconstructor(query) {\n * \t\tthis.#query = window.matchMedia(`(${query})`);\n *\n * \t\tthis.#subscribe = createSubscriber((update) => {\n * \t\t\t// when the `change` event occurs, re-run any effects that read `this.current`\n * \t\t\tconst off = on(this.#query, 'change', update);\n *\n * \t\t\t// stop listening when all the effects are destroyed\n * \t\t\treturn () => off();\n * \t\t});\n * \t}\n *\n * \tget current() {\n * \t\t// This makes the getter reactive, if read in an effect\n * \t\tthis.#subscribe();\n *\n * \t\t// Return the current state of the query, whether or not we're in an effect\n * \t\treturn this.#query.matches;\n * \t}\n * }\n * ```\n * @param {(update: () => void) => (() => void) | void} start\n * @since 5.7.0\n */\nexport function createSubscriber(start) {\n\tlet subscribers = 0;\n\tlet version = source(0);\n\t/** @type {(() => void) | void} */\n\tlet stop;\n\n\tif (DEV) {\n\t\ttag(version, 'createSubscriber version');\n\t}\n\n\treturn () => {\n\t\tif (effect_tracking()) {\n\t\t\tget(version);\n\n\t\t\trender_effect(() => {\n\t\t\t\tif (subscribers === 0) {\n\t\t\t\t\tstop = untrack(() => start(() => increment(version)));\n\t\t\t\t}\n\n\t\t\t\tsubscribers += 1;\n\n\t\t\t\treturn () => {\n\t\t\t\t\tqueue_micro_task(() => {\n\t\t\t\t\t\t// Only count down after a microtask, else we would reach 0 before our own render effect reruns,\n\t\t\t\t\t\t// but reach 1 again when the tick callback of the prior teardown runs. That would mean we\n\t\t\t\t\t\t// re-subcribe unnecessarily and create a memory leak because the old subscription is never cleaned up.\n\t\t\t\t\t\tsubscribers -= 1;\n\n\t\t\t\t\t\tif (subscribers === 0) {\n\t\t\t\t\t\t\tstop?.();\n\t\t\t\t\t\t\tstop = undefined;\n\t\t\t\t\t\t\t// Increment the version to ensure any dependent deriveds are marked dirty when the subscription is picked up again later.\n\t\t\t\t\t\t\t// If we didn't do this then the comparison of write versions would determine that the derived has a later version than\n\t\t\t\t\t\t\t// the subscriber, and it would not be re-run.\n\t\t\t\t\t\t\tincrement(version);\n\t\t\t\t\t\t}\n\t\t\t\t\t});\n\t\t\t\t};\n\t\t\t});\n\t\t}\n\t};\n}\n","/** @import { Effect, Source, TemplateNode, } from '#client' */\nimport {\n\tBOUNDARY_EFFECT,\n\tDIRTY,\n\tEFFECT_PRESERVED,\n\tEFFECT_TRANSPARENT,\n\tMAYBE_DIRTY\n} from '#client/constants';\nimport { HYDRATION_START_ELSE, HYDRATION_START_FAILED } from '../../../../constants.js';\nimport { component_context, set_component_context } from '../../context.js';\nimport { handle_error, invoke_error_boundary } from '../../error-handling.js';\nimport {\n\tblock,\n\tbranch,\n\tdestroy_effect,\n\tmove_effect,\n\tpause_effect\n} from '../../reactivity/effects.js';\nimport {\n\tactive_effect,\n\tactive_reaction,\n\tget,\n\tset_active_effect,\n\tset_active_reaction\n} from '../../runtime.js';\nimport {\n\thydrate_next,\n\thydrate_node,\n\thydrating,\n\tnext,\n\tskip_nodes,\n\tset_hydrate_node\n} from '../hydration.js';\nimport { queue_micro_task } from '../task.js';\nimport * as e from '../../errors.js';\nimport * as w from '../../warnings.js';\nimport { DEV } from 'esm-env';\nimport { Batch, current_batch, previous_batch, schedule_effect } from '../../reactivity/batch.js';\nimport { internal_set, source } from '../../reactivity/sources.js';\nimport { tag } from '../../dev/tracing.js';\nimport { createSubscriber } from '../../../../reactivity/create-subscriber.js';\nimport { create_text } from '../operations.js';\nimport { defer_effect } from '../../reactivity/utils.js';\nimport { set_signal_status } from '../../reactivity/status.js';\n\n/**\n * @typedef {{\n * \t onerror?: (error: unknown, reset: () => void) => void;\n * failed?: (anchor: Node, error: () => unknown, reset: () => () => void) => void;\n * pending?: (anchor: Node) => void;\n * }} BoundaryProps\n */\n\nvar flags = EFFECT_TRANSPARENT | EFFECT_PRESERVED;\n\n/**\n * @param {TemplateNode} node\n * @param {BoundaryProps} props\n * @param {((anchor: Node) => void)} children\n * @param {((error: unknown) => unknown) | undefined} [transform_error]\n * @returns {void}\n */\nexport function boundary(node, props, children, transform_error) {\n\tnew Boundary(node, props, children, transform_error);\n}\n\nexport class Boundary {\n\t/** @type {Boundary | null} */\n\tparent;\n\n\tis_pending = false;\n\n\t/**\n\t * API-level transformError transform function. Transforms errors before they reach the `failed` snippet.\n\t * Inherited from parent boundary, or defaults to identity.\n\t * @type {(error: unknown) => unknown}\n\t */\n\ttransform_error;\n\n\t/** @type {TemplateNode} */\n\t#anchor;\n\n\t/** @type {TemplateNode | null} */\n\t#hydrate_open = hydrating ? hydrate_node : null;\n\n\t/** @type {BoundaryProps} */\n\t#props;\n\n\t/** @type {((anchor: Node) => void)} */\n\t#children;\n\n\t/** @type {Effect} */\n\t#effect;\n\n\t/** @type {Effect | null} */\n\t#main_effect = null;\n\n\t/** @type {Effect | null} */\n\t#pending_effect = null;\n\n\t/** @type {Effect | null} */\n\t#failed_effect = null;\n\n\t/** @type {DocumentFragment | null} */\n\t#offscreen_fragment = null;\n\n\t#local_pending_count = 0;\n\t#pending_count = 0;\n\t#pending_count_update_queued = false;\n\n\t/** @type {Set} */\n\t#dirty_effects = new Set();\n\n\t/** @type {Set} */\n\t#maybe_dirty_effects = new Set();\n\n\t/**\n\t * A source containing the number of pending async deriveds/expressions.\n\t * Only created if `$effect.pending()` is used inside the boundary,\n\t * otherwise updating the source results in needless `Batch.ensure()`\n\t * calls followed by no-op flushes\n\t * @type {Source | null}\n\t */\n\t#effect_pending = null;\n\n\t#effect_pending_subscriber = createSubscriber(() => {\n\t\tthis.#effect_pending = source(this.#local_pending_count);\n\n\t\tif (DEV) {\n\t\t\ttag(this.#effect_pending, '$effect.pending()');\n\t\t}\n\n\t\treturn () => {\n\t\t\tthis.#effect_pending = null;\n\t\t};\n\t});\n\n\t/**\n\t * @param {TemplateNode} node\n\t * @param {BoundaryProps} props\n\t * @param {((anchor: Node) => void)} children\n\t * @param {((error: unknown) => unknown) | undefined} [transform_error]\n\t */\n\tconstructor(node, props, children, transform_error) {\n\t\tthis.#anchor = node;\n\t\tthis.#props = props;\n\n\t\tthis.#children = (anchor) => {\n\t\t\tvar effect = /** @type {Effect} */ (active_effect);\n\n\t\t\teffect.b = this;\n\t\t\teffect.f |= BOUNDARY_EFFECT;\n\n\t\t\tchildren(anchor);\n\t\t};\n\n\t\tthis.parent = /** @type {Effect} */ (active_effect).b;\n\n\t\t// Inherit transform_error from parent boundary, or use the provided one, or default to identity\n\t\tthis.transform_error = transform_error ?? this.parent?.transform_error ?? ((e) => e);\n\n\t\tthis.#effect = block(() => {\n\t\t\tif (hydrating) {\n\t\t\t\tconst comment = /** @type {Comment} */ (this.#hydrate_open);\n\t\t\t\thydrate_next();\n\n\t\t\t\tconst server_rendered_pending = comment.data === HYDRATION_START_ELSE;\n\t\t\t\tconst server_rendered_failed = comment.data.startsWith(HYDRATION_START_FAILED);\n\n\t\t\t\tif (server_rendered_failed) {\n\t\t\t\t\t// Server rendered the failed snippet - hydrate it.\n\t\t\t\t\t// The serialized error is embedded in the comment: \n\t\t\t\t\tconst serialized_error = JSON.parse(comment.data.slice(HYDRATION_START_FAILED.length));\n\t\t\t\t\tthis.#hydrate_failed_content(serialized_error);\n\t\t\t\t} else if (server_rendered_pending) {\n\t\t\t\t\tthis.#hydrate_pending_content();\n\t\t\t\t} else {\n\t\t\t\t\tthis.#hydrate_resolved_content();\n\t\t\t\t}\n\t\t\t} else {\n\t\t\t\tthis.#render();\n\t\t\t}\n\t\t}, flags);\n\n\t\tif (hydrating) {\n\t\t\tthis.#anchor = hydrate_node;\n\t\t}\n\t}\n\n\t#hydrate_resolved_content() {\n\t\ttry {\n\t\t\tthis.#main_effect = branch(() => this.#children(this.#anchor));\n\t\t} catch (error) {\n\t\t\tthis.error(error);\n\t\t}\n\t}\n\n\t/**\n\t * @param {unknown} error The deserialized error from the server's hydration comment\n\t */\n\t#hydrate_failed_content(error) {\n\t\tconst failed = this.#props.failed;\n\t\tif (!failed) return;\n\n\t\tthis.#failed_effect = branch(() => {\n\t\t\tfailed(\n\t\t\t\tthis.#anchor,\n\t\t\t\t() => error,\n\t\t\t\t() => () => {}\n\t\t\t);\n\t\t});\n\t}\n\n\t#hydrate_pending_content() {\n\t\tconst pending = this.#props.pending;\n\t\tif (!pending) return;\n\n\t\tthis.is_pending = true;\n\t\tthis.#pending_effect = branch(() => pending(this.#anchor));\n\n\t\tqueue_micro_task(() => {\n\t\t\tvar fragment = (this.#offscreen_fragment = document.createDocumentFragment());\n\t\t\tvar anchor = create_text();\n\n\t\t\tfragment.append(anchor);\n\n\t\t\tthis.#main_effect = this.#run(() => {\n\t\t\t\treturn branch(() => this.#children(anchor));\n\t\t\t});\n\n\t\t\tif (this.#pending_count === 0) {\n\t\t\t\tthis.#anchor.before(fragment);\n\t\t\t\tthis.#offscreen_fragment = null;\n\n\t\t\t\tpause_effect(/** @type {Effect} */ (this.#pending_effect), () => {\n\t\t\t\t\tthis.#pending_effect = null;\n\t\t\t\t});\n\n\t\t\t\tthis.#resolve(/** @type {Batch} */ (current_batch));\n\t\t\t}\n\t\t});\n\t}\n\n\t#render() {\n\t\ttry {\n\t\t\tthis.is_pending = this.has_pending_snippet();\n\t\t\tthis.#pending_count = 0;\n\t\t\tthis.#local_pending_count = 0;\n\n\t\t\tthis.#main_effect = branch(() => {\n\t\t\t\tthis.#children(this.#anchor);\n\t\t\t});\n\n\t\t\tif (this.#pending_count > 0) {\n\t\t\t\tvar fragment = (this.#offscreen_fragment = document.createDocumentFragment());\n\t\t\t\tmove_effect(this.#main_effect, fragment);\n\n\t\t\t\tconst pending = /** @type {(anchor: Node) => void} */ (this.#props.pending);\n\t\t\t\tthis.#pending_effect = branch(() => pending(this.#anchor));\n\t\t\t} else {\n\t\t\t\tthis.#resolve(/** @type {Batch} */ (current_batch));\n\t\t\t}\n\t\t} catch (error) {\n\t\t\tthis.error(error);\n\t\t}\n\t}\n\n\t/**\n\t * @param {Batch} batch\n\t */\n\t#resolve(batch) {\n\t\tthis.is_pending = false;\n\n\t\t// any effects that were previously deferred should be transferred\n\t\t// to the batch, which will flush in the next microtask\n\t\tbatch.transfer_effects(this.#dirty_effects, this.#maybe_dirty_effects);\n\t}\n\n\t/**\n\t * Defer an effect inside a pending boundary until the boundary resolves\n\t * @param {Effect} effect\n\t */\n\tdefer_effect(effect) {\n\t\tdefer_effect(effect, this.#dirty_effects, this.#maybe_dirty_effects);\n\t}\n\n\t/**\n\t * Returns `false` if the effect exists inside a boundary whose pending snippet is shown\n\t * @returns {boolean}\n\t */\n\tis_rendered() {\n\t\treturn !this.is_pending && (!this.parent || this.parent.is_rendered());\n\t}\n\n\thas_pending_snippet() {\n\t\treturn !!this.#props.pending;\n\t}\n\n\t/**\n\t * @template T\n\t * @param {() => T} fn\n\t */\n\t#run(fn) {\n\t\tvar previous_effect = active_effect;\n\t\tvar previous_reaction = active_reaction;\n\t\tvar previous_ctx = component_context;\n\n\t\tset_active_effect(this.#effect);\n\t\tset_active_reaction(this.#effect);\n\t\tset_component_context(this.#effect.ctx);\n\n\t\ttry {\n\t\t\tBatch.ensure();\n\t\t\treturn fn();\n\t\t} catch (e) {\n\t\t\thandle_error(e);\n\t\t\treturn null;\n\t\t} finally {\n\t\t\tset_active_effect(previous_effect);\n\t\t\tset_active_reaction(previous_reaction);\n\t\t\tset_component_context(previous_ctx);\n\t\t}\n\t}\n\n\t/**\n\t * Updates the pending count associated with the currently visible pending snippet,\n\t * if any, such that we can replace the snippet with content once work is done\n\t * @param {1 | -1} d\n\t * @param {Batch} batch\n\t */\n\t#update_pending_count(d, batch) {\n\t\tif (!this.has_pending_snippet()) {\n\t\t\tif (this.parent) {\n\t\t\t\tthis.parent.#update_pending_count(d, batch);\n\t\t\t}\n\n\t\t\t// if there's no parent, we're in a scope with no pending snippet\n\t\t\treturn;\n\t\t}\n\n\t\tthis.#pending_count += d;\n\n\t\tif (this.#pending_count === 0) {\n\t\t\tthis.#resolve(batch);\n\n\t\t\tif (this.#pending_effect) {\n\t\t\t\tpause_effect(this.#pending_effect, () => {\n\t\t\t\t\tthis.#pending_effect = null;\n\t\t\t\t});\n\t\t\t}\n\n\t\t\tif (this.#offscreen_fragment) {\n\t\t\t\tthis.#anchor.before(this.#offscreen_fragment);\n\t\t\t\tthis.#offscreen_fragment = null;\n\t\t\t}\n\t\t}\n\t}\n\n\t/**\n\t * Update the source that powers `$effect.pending()` inside this boundary,\n\t * and controls when the current `pending` snippet (if any) is removed.\n\t * Do not call from inside the class\n\t * @param {1 | -1} d\n\t * @param {Batch} batch\n\t */\n\tupdate_pending_count(d, batch) {\n\t\tthis.#update_pending_count(d, batch);\n\n\t\tthis.#local_pending_count += d;\n\n\t\tif (!this.#effect_pending || this.#pending_count_update_queued) return;\n\t\tthis.#pending_count_update_queued = true;\n\n\t\tqueue_micro_task(() => {\n\t\t\tthis.#pending_count_update_queued = false;\n\t\t\tif (this.#effect_pending) {\n\t\t\t\tinternal_set(this.#effect_pending, this.#local_pending_count);\n\t\t\t}\n\t\t});\n\t}\n\n\tget_effect_pending() {\n\t\tthis.#effect_pending_subscriber();\n\t\treturn get(/** @type {Source} */ (this.#effect_pending));\n\t}\n\n\t/** @param {unknown} error */\n\terror(error) {\n\t\t// If we have nothing to capture the error, or if we hit an error while\n\t\t// rendering the fallback, re-throw for another boundary to handle\n\t\tif (!this.#props.onerror && !this.#props.failed) {\n\t\t\tthrow error;\n\t\t}\n\n\t\tif (current_batch?.is_fork) {\n\t\t\tif (this.#main_effect) current_batch.skip_effect(this.#main_effect);\n\t\t\tif (this.#pending_effect) current_batch.skip_effect(this.#pending_effect);\n\t\t\tif (this.#failed_effect) current_batch.skip_effect(this.#failed_effect);\n\n\t\t\tcurrent_batch.on_fork_commit(() => {\n\t\t\t\tthis.#handle_error(error);\n\t\t\t});\n\t\t} else {\n\t\t\tthis.#handle_error(error);\n\t\t}\n\t}\n\n\t/**\n\t * @param {unknown} error\n\t */\n\t#handle_error(error) {\n\t\tif (this.#main_effect) {\n\t\t\tdestroy_effect(this.#main_effect);\n\t\t\tthis.#main_effect = null;\n\t\t}\n\n\t\tif (this.#pending_effect) {\n\t\t\tdestroy_effect(this.#pending_effect);\n\t\t\tthis.#pending_effect = null;\n\t\t}\n\n\t\tif (this.#failed_effect) {\n\t\t\tdestroy_effect(this.#failed_effect);\n\t\t\tthis.#failed_effect = null;\n\t\t}\n\n\t\tif (hydrating) {\n\t\t\tset_hydrate_node(/** @type {TemplateNode} */ (this.#hydrate_open));\n\t\t\tnext();\n\t\t\tset_hydrate_node(skip_nodes());\n\t\t}\n\n\t\tvar onerror = this.#props.onerror;\n\t\tlet failed = this.#props.failed;\n\t\tvar did_reset = false;\n\t\tvar calling_on_error = false;\n\n\t\tconst reset = () => {\n\t\t\tif (did_reset) {\n\t\t\t\tw.svelte_boundary_reset_noop();\n\t\t\t\treturn;\n\t\t\t}\n\n\t\t\tdid_reset = true;\n\n\t\t\tif (calling_on_error) {\n\t\t\t\te.svelte_boundary_reset_onerror();\n\t\t\t}\n\n\t\t\tif (this.#failed_effect !== null) {\n\t\t\t\tpause_effect(this.#failed_effect, () => {\n\t\t\t\t\tthis.#failed_effect = null;\n\t\t\t\t});\n\t\t\t}\n\n\t\t\tthis.#run(() => {\n\t\t\t\tthis.#render();\n\t\t\t});\n\t\t};\n\n\t\t/** @param {unknown} transformed_error */\n\t\tconst handle_error_result = (transformed_error) => {\n\t\t\ttry {\n\t\t\t\tcalling_on_error = true;\n\t\t\t\tonerror?.(transformed_error, reset);\n\t\t\t\tcalling_on_error = false;\n\t\t\t} catch (error) {\n\t\t\t\tinvoke_error_boundary(error, this.#effect && this.#effect.parent);\n\t\t\t}\n\n\t\t\tif (failed) {\n\t\t\t\tthis.#failed_effect = this.#run(() => {\n\t\t\t\t\ttry {\n\t\t\t\t\t\treturn branch(() => {\n\t\t\t\t\t\t\t// errors in `failed` snippets cause the boundary to error again\n\t\t\t\t\t\t\t// TODO Svelte 6: revisit this decision, most likely better to go to parent boundary instead\n\t\t\t\t\t\t\tvar effect = /** @type {Effect} */ (active_effect);\n\n\t\t\t\t\t\t\teffect.b = this;\n\t\t\t\t\t\t\teffect.f |= BOUNDARY_EFFECT;\n\n\t\t\t\t\t\t\tfailed(\n\t\t\t\t\t\t\t\tthis.#anchor,\n\t\t\t\t\t\t\t\t() => transformed_error,\n\t\t\t\t\t\t\t\t() => reset\n\t\t\t\t\t\t\t);\n\t\t\t\t\t\t});\n\t\t\t\t\t} catch (error) {\n\t\t\t\t\t\tinvoke_error_boundary(error, /** @type {Effect} */ (this.#effect.parent));\n\t\t\t\t\t\treturn null;\n\t\t\t\t\t}\n\t\t\t\t});\n\t\t\t}\n\t\t};\n\n\t\tqueue_micro_task(() => {\n\t\t\t// Run the error through the API-level transformError transform (e.g. SvelteKit's handleError)\n\t\t\t/** @type {unknown} */\n\t\t\tvar result;\n\t\t\ttry {\n\t\t\t\tresult = this.transform_error(error);\n\t\t\t} catch (e) {\n\t\t\t\tinvoke_error_boundary(e, this.#effect && this.#effect.parent);\n\t\t\t\treturn;\n\t\t\t}\n\n\t\t\tif (\n\t\t\t\tresult !== null &&\n\t\t\t\ttypeof result === 'object' &&\n\t\t\t\ttypeof (/** @type {any} */ (result).then) === 'function'\n\t\t\t) {\n\t\t\t\t// transformError returned a Promise — wait for it\n\t\t\t\t/** @type {any} */ (result).then(\n\t\t\t\t\thandle_error_result,\n\t\t\t\t\t/** @param {unknown} e */\n\t\t\t\t\t(e) => invoke_error_boundary(e, this.#effect && this.#effect.parent)\n\t\t\t\t);\n\t\t\t} else {\n\t\t\t\t// Synchronous result — handle immediately\n\t\t\t\thandle_error_result(result);\n\t\t\t}\n\t\t});\n\t}\n}\n\nexport function pending() {\n\tif (active_effect === null) {\n\t\te.effect_pending_outside_reaction();\n\t}\n\n\tvar boundary = active_effect.b;\n\n\tif (boundary === null) {\n\t\treturn 0; // TODO eventually we will need this to be global\n\t}\n\n\treturn boundary.get_effect_pending();\n}\n","/** @import { Blocker, Effect, Value } from '#client' */\nimport { DESTROYED, STALE_REACTION } from '#client/constants';\nimport { DEV } from 'esm-env';\nimport {\n\tcomponent_context,\n\tdev_stack,\n\tis_runes,\n\tset_component_context,\n\tset_dev_stack\n} from '../context.js';\nimport { Boundary } from '../dom/blocks/boundary.js';\nimport { invoke_error_boundary } from '../error-handling.js';\nimport {\n\tactive_effect,\n\tactive_reaction,\n\tset_active_effect,\n\tset_active_reaction\n} from '../runtime.js';\nimport { Batch, current_batch } from './batch.js';\nimport {\n\tasync_derived,\n\treactivity_loss_tracker,\n\tderived,\n\tderived_safe_equal,\n\tset_reactivity_loss_tracker\n} from './deriveds.js';\nimport { aborted } from './effects.js';\n\n/**\n * @param {Blocker[]} blockers\n * @param {Array<() => any>} sync\n * @param {Array<() => Promise>} async\n * @param {(values: Value[]) => any} fn\n */\nexport function flatten(blockers, sync, async, fn) {\n\tconst d = is_runes() ? derived : derived_safe_equal;\n\n\t// Filter out already-settled blockers - no need to wait for them\n\tvar pending = blockers.filter((b) => !b.settled);\n\n\tif (async.length === 0 && pending.length === 0) {\n\t\tfn(sync.map(d));\n\t\treturn;\n\t}\n\n\tvar parent = /** @type {Effect} */ (active_effect);\n\n\tvar restore = capture();\n\tvar blocker_promise =\n\t\tpending.length === 1\n\t\t\t? pending[0].promise\n\t\t\t: pending.length > 1\n\t\t\t\t? Promise.all(pending.map((b) => b.promise))\n\t\t\t\t: null;\n\n\t/** @param {Value[]} values */\n\tfunction finish(values) {\n\t\trestore();\n\n\t\ttry {\n\t\t\tfn(values);\n\t\t} catch (error) {\n\t\t\tif ((parent.f & DESTROYED) === 0) {\n\t\t\t\tinvoke_error_boundary(error, parent);\n\t\t\t}\n\t\t}\n\n\t\tunset_context();\n\t}\n\n\t// Fast path: blockers but no async expressions\n\tif (async.length === 0) {\n\t\t/** @type {Promise} */ (blocker_promise).then(() => finish(sync.map(d)));\n\t\treturn;\n\t}\n\n\tvar decrement_pending = increment_pending();\n\n\t// Full path: has async expressions\n\tfunction run() {\n\t\tPromise.all(async.map((expression) => async_derived(expression)))\n\t\t\t.then((result) => finish([...sync.map(d), ...result]))\n\t\t\t.catch((error) => invoke_error_boundary(error, parent))\n\t\t\t.finally(() => decrement_pending());\n\t}\n\n\tif (blocker_promise) {\n\t\tblocker_promise.then(() => {\n\t\t\trestore();\n\t\t\trun();\n\t\t\tunset_context();\n\t\t});\n\t} else {\n\t\trun();\n\t}\n}\n\n/**\n * @param {Blocker[]} blockers\n * @param {(values: Value[]) => any} fn\n */\nexport function run_after_blockers(blockers, fn) {\n\tflatten(blockers, [], [], fn);\n}\n\n/**\n * Captures the current effect context so that we can restore it after\n * some asynchronous work has happened (so that e.g. `await a + b`\n * causes `b` to be registered as a dependency).\n */\nexport function capture() {\n\tvar previous_effect = /** @type {Effect} */ (active_effect);\n\tvar previous_reaction = active_reaction;\n\tvar previous_component_context = component_context;\n\tvar previous_batch = /** @type {Batch} */ (current_batch);\n\n\tif (DEV) {\n\t\tvar previous_dev_stack = dev_stack;\n\t}\n\n\treturn function restore(activate_batch = true) {\n\t\tset_active_effect(previous_effect);\n\t\tset_active_reaction(previous_reaction);\n\t\tset_component_context(previous_component_context);\n\n\t\tif (activate_batch && (previous_effect.f & DESTROYED) === 0) {\n\t\t\t// TODO we only need optional chaining here because `{#await ...}` blocks\n\t\t\t// are anomalous. Once we retire them we can get rid of it\n\t\t\tprevious_batch?.activate();\n\t\t\tprevious_batch?.apply();\n\t\t}\n\n\t\tif (DEV) {\n\t\t\tset_reactivity_loss_tracker(null);\n\t\t\tset_dev_stack(previous_dev_stack);\n\t\t}\n\t};\n}\n\n/**\n * Wraps an `await` expression in such a way that the effect context that was\n * active before the expression evaluated can be reapplied afterwards —\n * `await a + b` becomes `(await $.save(a))() + b`\n * @template T\n * @param {Promise} promise\n * @returns {Promise<() => T>}\n */\nexport async function save(promise) {\n\tvar restore = capture();\n\tvar value = await promise;\n\n\treturn () => {\n\t\trestore();\n\t\treturn value;\n\t};\n}\n\n/**\n * Reset `current_async_effect` after the `promise` resolves, so\n * that we can emit `await_reactivity_loss` warnings\n * @template T\n * @param {Promise} promise\n * @returns {Promise<() => T>}\n */\nexport async function track_reactivity_loss(promise) {\n\tvar previous_async_effect = reactivity_loss_tracker;\n\t// Ensure that unrelated reads after an async operation is kicked off don't cause false positives\n\tqueueMicrotask(() => {\n\t\tif (reactivity_loss_tracker === previous_async_effect) {\n\t\t\tset_reactivity_loss_tracker(null);\n\t\t}\n\t});\n\n\tvar value = await promise;\n\n\treturn () => {\n\t\tset_reactivity_loss_tracker(previous_async_effect);\n\t\t// While this can result in false negatives it also guards against the more important\n\t\t// false positives that would occur if this is the last in a chain of async operations,\n\t\t// and the reactivity_loss_tracker would then stay around until the next async operation happens.\n\t\tqueueMicrotask(() => {\n\t\t\tif (reactivity_loss_tracker === previous_async_effect) {\n\t\t\t\tset_reactivity_loss_tracker(null);\n\t\t\t}\n\t\t});\n\n\t\treturn value;\n\t};\n}\n\n/**\n * Used in `for await` loops in DEV, so\n * that we can emit `await_reactivity_loss` warnings\n * after each `async_iterator` result resolves and\n * after the `async_iterator` return resolves (if it runs)\n * @template T\n * @template TReturn\n * @param {Iterable | AsyncIterable} iterable\n * @returns {AsyncGenerator}\n */\nexport async function* for_await_track_reactivity_loss(iterable) {\n\t// This is based on the algorithms described in ECMA-262:\n\t// ForIn/OfBodyEvaluation\n\t// https://tc39.es/ecma262/multipage/ecmascript-language-statements-and-declarations.html#sec-runtime-semantics-forin-div-ofbodyevaluation-lhs-stmt-iterator-lhskind-labelset\n\t// AsyncIteratorClose\n\t// https://tc39.es/ecma262/multipage/abstract-operations.html#sec-asynciteratorclose\n\n\t/** @type {AsyncIterator} */\n\t// @ts-ignore\n\tconst iterator = iterable[Symbol.asyncIterator]?.() ?? iterable[Symbol.iterator]?.();\n\n\tif (iterator === undefined) {\n\t\tthrow new TypeError('value is not async iterable');\n\t}\n\n\t/** Whether the completion of the iterator was \"normal\", meaning it wasn't ended via `break` or a similar method */\n\tlet normal_completion = false;\n\ttry {\n\t\twhile (true) {\n\t\t\tconst { done, value } = (await track_reactivity_loss(iterator.next()))();\n\t\t\tif (done) {\n\t\t\t\tnormal_completion = true;\n\t\t\t\tbreak;\n\t\t\t}\n\t\t\tvar prev = reactivity_loss_tracker;\n\t\t\tyield value;\n\t\t\tset_reactivity_loss_tracker(prev);\n\t\t}\n\t} finally {\n\t\t// If the iterator had an abrupt completion and `return` is defined on the iterator, call it and return the value\n\t\tif (!normal_completion && iterator.return !== undefined) {\n\t\t\t// eslint-disable-next-line no-unsafe-finally\n\t\t\treturn /** @type {TReturn} */ ((await track_reactivity_loss(iterator.return()))().value);\n\t\t}\n\t}\n}\n\nexport function unset_context(deactivate_batch = true) {\n\tset_active_effect(null);\n\tset_active_reaction(null);\n\tset_component_context(null);\n\tif (deactivate_batch) current_batch?.deactivate();\n\n\tif (DEV) {\n\t\tset_reactivity_loss_tracker(null);\n\t\tset_dev_stack(null);\n\t}\n}\n\n/**\n * @param {Array<() => void | Promise>} thunks\n */\nexport function run(thunks) {\n\tconst restore = capture();\n\n\tconst decrement_pending = increment_pending();\n\n\tvar active = /** @type {Effect} */ (active_effect);\n\n\t/** @type {null | { error: any }} */\n\tvar errored = null;\n\n\t/** @param {any} error */\n\tconst handle_error = (error) => {\n\t\terrored = { error }; // wrap in object in case a promise rejects with a falsy value\n\n\t\tif (!aborted(active)) {\n\t\t\tinvoke_error_boundary(error, active);\n\t\t}\n\t};\n\n\tvar promise = Promise.resolve(thunks[0]()).catch(handle_error);\n\n\t/** @type {Blocker} */\n\tvar blocker = { promise, settled: false };\n\tvar blockers = [blocker];\n\n\tpromise.finally(() => {\n\t\tblocker.settled = true;\n\t\tunset_context();\n\t});\n\n\tfor (const fn of thunks.slice(1)) {\n\t\tpromise = promise\n\t\t\t.then(() => {\n\t\t\t\trestore();\n\n\t\t\t\tif (errored) {\n\t\t\t\t\tthrow errored.error;\n\t\t\t\t}\n\n\t\t\t\tif (aborted(active)) {\n\t\t\t\t\tthrow STALE_REACTION;\n\t\t\t\t}\n\n\t\t\t\treturn fn();\n\t\t\t})\n\t\t\t.catch(handle_error);\n\n\t\tconst blocker = { promise, settled: false };\n\t\tblockers.push(blocker);\n\n\t\tpromise.finally(() => {\n\t\t\tblocker.settled = true;\n\t\t\tunset_context();\n\t\t});\n\t}\n\n\tpromise\n\t\t// wait one more tick, so that template effects are\n\t\t// guaranteed to run before `$effect(...)`\n\t\t.then(() => Promise.resolve())\n\t\t.finally(() => decrement_pending());\n\n\treturn blockers;\n}\n\n/**\n * @param {Blocker[]} blockers\n */\nexport function wait(blockers) {\n\treturn Promise.all(blockers.map((b) => b.promise));\n}\n\n/**\n * @returns {(skip?: boolean) => void}\n */\nexport function increment_pending() {\n\tvar effect = /** @type {Effect} */ (active_effect);\n\tvar boundary = /** @type {Boundary} */ (effect.b);\n\tvar batch = /** @type {Batch} */ (current_batch);\n\tvar blocking = boundary.is_rendered();\n\n\tboundary.update_pending_count(1, batch);\n\tbatch.increment(blocking, effect);\n\n\treturn (skip = false) => {\n\t\tboundary.update_pending_count(-1, batch);\n\t\tbatch.decrement(blocking, effect, skip);\n\t};\n}\n","/** @import { Derived, Effect, Reaction, Source, Value } from '#client' */\n/** @import { Batch } from './batch.js'; */\n/** @import { Boundary } from '../dom/blocks/boundary.js'; */\nimport { DEV } from 'esm-env';\nimport {\n\tERROR_VALUE,\n\tDERIVED,\n\tDIRTY,\n\tEFFECT_PRESERVED,\n\tSTALE_REACTION,\n\tASYNC,\n\tWAS_MARKED,\n\tDESTROYED,\n\tCLEAN,\n\tREACTION_RAN,\n\tINERT\n} from '#client/constants';\nimport {\n\tactive_reaction,\n\tactive_effect,\n\tupdate_reaction,\n\tincrement_write_version,\n\tset_active_effect,\n\tpush_reaction_value,\n\tis_destroying_effect,\n\tupdate_effect,\n\tremove_reactions,\n\tskipped_deps,\n\tnew_deps\n} from '../runtime.js';\nimport { equals, safe_equals } from './equality.js';\nimport * as e from '../errors.js';\nimport * as w from '../warnings.js';\nimport {\n\tasync_effect,\n\tdestroy_effect,\n\tdestroy_effect_children,\n\teffect_tracking,\n\tteardown\n} from './effects.js';\nimport { eager_effects, internal_set, set_eager_effects, source } from './sources.js';\nimport { get_error } from '../../shared/dev.js';\nimport { async_mode_flag, tracing_mode_flag } from '../../flags/index.js';\nimport { component_context } from '../context.js';\nimport { UNINITIALIZED } from '../../../constants.js';\nimport { batch_values, current_batch } from './batch.js';\nimport { increment_pending, unset_context } from './async.js';\nimport { deferred, includes, noop } from '../../shared/utils.js';\nimport { set_signal_status, update_derived_status } from './status.js';\n\n/**\n * This allows us to track 'reactivity loss' that occurs when signals\n * are read after a non-context-restoring `await`. Dev-only\n * @type {{ effect: Effect, effect_deps: Set, warned: boolean } | null}\n */\nexport let reactivity_loss_tracker = null;\n\n/** @param {{ effect: Effect, effect_deps: Set, warned: boolean } | null} v */\nexport function set_reactivity_loss_tracker(v) {\n\treactivity_loss_tracker = v;\n}\n\nexport const recent_async_deriveds = new Set();\n\n/**\n * @template V\n * @param {() => V} fn\n * @returns {Derived}\n */\n/*#__NO_SIDE_EFFECTS__*/\nexport function derived(fn) {\n\tvar flags = DERIVED | DIRTY;\n\n\tif (active_effect !== null) {\n\t\t// Since deriveds are evaluated lazily, any effects created inside them are\n\t\t// created too late to ensure that the parent effect is added to the tree\n\t\tactive_effect.f |= EFFECT_PRESERVED;\n\t}\n\n\t/** @type {Derived} */\n\tconst signal = {\n\t\tctx: component_context,\n\t\tdeps: null,\n\t\teffects: null,\n\t\tequals,\n\t\tf: flags,\n\t\tfn,\n\t\treactions: null,\n\t\trv: 0,\n\t\tv: /** @type {V} */ (UNINITIALIZED),\n\t\twv: 0,\n\t\tparent: active_effect,\n\t\tac: null\n\t};\n\n\tif (DEV && tracing_mode_flag) {\n\t\tsignal.created = get_error('created at');\n\t}\n\n\treturn signal;\n}\n\n/**\n * @template V\n * @param {() => V | Promise} fn\n * @param {string} [label]\n * @param {string} [location] If provided, print a warning if the value is not read immediately after update\n * @returns {Promise>}\n */\n/*#__NO_SIDE_EFFECTS__*/\nexport function async_derived(fn, label, location) {\n\tlet parent = /** @type {Effect | null} */ (active_effect);\n\n\tif (parent === null) {\n\t\te.async_derived_orphan();\n\t}\n\n\tvar promise = /** @type {Promise} */ (/** @type {unknown} */ (undefined));\n\tvar signal = source(/** @type {V} */ (UNINITIALIZED));\n\n\tif (DEV) signal.label = label;\n\n\t// only suspend in async deriveds created on initialisation\n\tvar should_suspend = !active_reaction;\n\n\t/** @type {Map>>} */\n\tvar deferreds = new Map();\n\n\tasync_effect(() => {\n\t\tvar effect = /** @type {Effect} */ (active_effect);\n\n\t\tif (DEV) {\n\t\t\treactivity_loss_tracker = { effect, effect_deps: new Set(), warned: false };\n\t\t}\n\n\t\t/** @type {ReturnType>} */\n\t\tvar d = deferred();\n\t\tpromise = d.promise;\n\n\t\ttry {\n\t\t\t// If this code is changed at some point, make sure to still access the then property\n\t\t\t// of fn() to read any signals it might access, so that we track them as dependencies.\n\t\t\t// We call `unset_context` to undo any `save` calls that happen inside `fn()`\n\t\t\tPromise.resolve(fn()).then(d.resolve, d.reject).finally(unset_context);\n\t\t} catch (error) {\n\t\t\td.reject(error);\n\t\t\tunset_context();\n\t\t}\n\n\t\tif (DEV) {\n\t\t\tif (reactivity_loss_tracker) {\n\t\t\t\t// Reused deps from previous run (indices 0 to skipped_deps-1)\n\t\t\t\t// We deliberately only track direct dependencies of the async expression to encourage\n\t\t\t\t// dependencies being directly visible at the point of the expression\n\t\t\t\tif (effect.deps !== null) {\n\t\t\t\t\tfor (let i = 0; i < skipped_deps; i += 1) {\n\t\t\t\t\t\treactivity_loss_tracker.effect_deps.add(effect.deps[i]);\n\t\t\t\t\t}\n\t\t\t\t}\n\n\t\t\t\t// New deps discovered this run\n\t\t\t\tif (new_deps !== null) {\n\t\t\t\t\tfor (let i = 0; i < new_deps.length; i += 1) {\n\t\t\t\t\t\treactivity_loss_tracker.effect_deps.add(new_deps[i]);\n\t\t\t\t\t}\n\t\t\t\t}\n\t\t\t}\n\n\t\t\treactivity_loss_tracker = null;\n\t\t}\n\n\t\tvar batch = /** @type {Batch} */ (current_batch);\n\n\t\tif (should_suspend) {\n\t\t\t// we only increment the batch's pending state for updates, not creation, otherwise\n\t\t\t// we will decrement to zero before the work that depends on this promise (e.g. a\n\t\t\t// template effect) has initialized, causing the batch to resolve prematurely\n\t\t\tif ((effect.f & REACTION_RAN) !== 0) {\n\t\t\t\tvar decrement_pending = increment_pending();\n\t\t\t}\n\n\t\t\tif (/** @type {Boundary} */ (parent.b).is_rendered()) {\n\t\t\t\tdeferreds.get(batch)?.reject(STALE_REACTION);\n\t\t\t\tdeferreds.delete(batch); // delete to ensure correct order in Map iteration below\n\t\t\t} else {\n\t\t\t\t// While the boundary is still showing pending, a new run supersedes all older in-flight runs\n\t\t\t\t// for this async expression. Cancel eagerly so resolution cannot commit stale values.\n\t\t\t\tfor (const d of deferreds.values()) {\n\t\t\t\t\td.reject(STALE_REACTION);\n\t\t\t\t}\n\t\t\t\tdeferreds.clear();\n\t\t\t}\n\n\t\t\tdeferreds.set(batch, d);\n\t\t}\n\n\t\t/**\n\t\t * @param {any} value\n\t\t * @param {unknown} error\n\t\t */\n\t\tconst handler = (value, error = undefined) => {\n\t\t\tif (DEV) {\n\t\t\t\treactivity_loss_tracker = null;\n\t\t\t}\n\n\t\t\tif (decrement_pending) {\n\t\t\t\t// don't trigger an update if we're only here because\n\t\t\t\t// the promise was superseded before it could resolve\n\t\t\t\tvar skip = error === STALE_REACTION;\n\t\t\t\tdecrement_pending(skip);\n\t\t\t}\n\n\t\t\tif (error === STALE_REACTION || (effect.f & DESTROYED) !== 0) {\n\t\t\t\treturn;\n\t\t\t}\n\n\t\t\tbatch.activate();\n\n\t\t\tif (error) {\n\t\t\t\tsignal.f |= ERROR_VALUE;\n\n\t\t\t\t// @ts-expect-error the error is the wrong type, but we don't care\n\t\t\t\tinternal_set(signal, error);\n\t\t\t} else {\n\t\t\t\tif ((signal.f & ERROR_VALUE) !== 0) {\n\t\t\t\t\tsignal.f ^= ERROR_VALUE;\n\t\t\t\t}\n\n\t\t\t\tinternal_set(signal, value);\n\n\t\t\t\t// All prior async derived runs are now stale\n\t\t\t\tfor (const [b, d] of deferreds) {\n\t\t\t\t\tdeferreds.delete(b);\n\t\t\t\t\tif (b === batch) break;\n\t\t\t\t\td.reject(STALE_REACTION);\n\t\t\t\t}\n\n\t\t\t\tif (DEV && location !== undefined) {\n\t\t\t\t\trecent_async_deriveds.add(signal);\n\n\t\t\t\t\tsetTimeout(() => {\n\t\t\t\t\t\tif (recent_async_deriveds.has(signal)) {\n\t\t\t\t\t\t\tw.await_waterfall(/** @type {string} */ (signal.label), location);\n\t\t\t\t\t\t\trecent_async_deriveds.delete(signal);\n\t\t\t\t\t\t}\n\t\t\t\t\t});\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tbatch.deactivate();\n\t\t};\n\n\t\td.promise.then(handler, (e) => handler(null, e || 'unknown'));\n\t});\n\n\tteardown(() => {\n\t\tfor (const d of deferreds.values()) {\n\t\t\td.reject(STALE_REACTION);\n\t\t}\n\t});\n\n\tif (DEV) {\n\t\t// add a flag that lets this be printed as a derived\n\t\t// when using `$inspect.trace()`\n\t\tsignal.f |= ASYNC;\n\t}\n\n\treturn new Promise((fulfil) => {\n\t\t/** @param {Promise} p */\n\t\tfunction next(p) {\n\t\t\tfunction go() {\n\t\t\t\tif (p === promise) {\n\t\t\t\t\tfulfil(signal);\n\t\t\t\t} else {\n\t\t\t\t\t// if the effect re-runs before the initial promise\n\t\t\t\t\t// resolves, delay resolution until we have a value\n\t\t\t\t\tnext(promise);\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tp.then(go, go);\n\t\t}\n\n\t\tnext(promise);\n\t});\n}\n\n/**\n * @template V\n * @param {() => V} fn\n * @returns {Derived}\n */\n/*#__NO_SIDE_EFFECTS__*/\nexport function user_derived(fn) {\n\tconst d = derived(fn);\n\n\tif (!async_mode_flag) push_reaction_value(d);\n\n\treturn d;\n}\n\n/**\n * @template V\n * @param {() => V} fn\n * @returns {Derived}\n */\n/*#__NO_SIDE_EFFECTS__*/\nexport function derived_safe_equal(fn) {\n\tconst signal = derived(fn);\n\tsignal.equals = safe_equals;\n\treturn signal;\n}\n\n/**\n * @param {Derived} derived\n * @returns {void}\n */\nexport function destroy_derived_effects(derived) {\n\tvar effects = derived.effects;\n\n\tif (effects !== null) {\n\t\tderived.effects = null;\n\n\t\tfor (var i = 0; i < effects.length; i += 1) {\n\t\t\tdestroy_effect(/** @type {Effect} */ (effects[i]));\n\t\t}\n\t}\n}\n\n/**\n * The currently updating deriveds, used to detect infinite recursion\n * in dev mode and provide a nicer error than 'too much recursion'\n * @type {Derived[]}\n */\nlet stack = [];\n\n/**\n * @template T\n * @param {Derived} derived\n * @returns {T}\n */\nexport function execute_derived(derived) {\n\tvar value;\n\tvar prev_active_effect = active_effect;\n\tvar parent = derived.parent;\n\n\tif (!is_destroying_effect && parent !== null && (parent.f & (DESTROYED | INERT)) !== 0) {\n\t\tw.derived_inert();\n\n\t\treturn derived.v;\n\t}\n\n\tset_active_effect(parent);\n\n\tif (DEV) {\n\t\tlet prev_eager_effects = eager_effects;\n\t\tset_eager_effects(new Set());\n\t\ttry {\n\t\t\tif (includes.call(stack, derived)) {\n\t\t\t\te.derived_references_self();\n\t\t\t}\n\n\t\t\tstack.push(derived);\n\n\t\t\tderived.f &= ~WAS_MARKED;\n\t\t\tdestroy_derived_effects(derived);\n\t\t\tvalue = update_reaction(derived);\n\t\t} finally {\n\t\t\tset_active_effect(prev_active_effect);\n\t\t\tset_eager_effects(prev_eager_effects);\n\t\t\tstack.pop();\n\t\t}\n\t} else {\n\t\ttry {\n\t\t\tderived.f &= ~WAS_MARKED;\n\t\t\tdestroy_derived_effects(derived);\n\t\t\tvalue = update_reaction(derived);\n\t\t} finally {\n\t\t\tset_active_effect(prev_active_effect);\n\t\t}\n\t}\n\n\treturn value;\n}\n\n/**\n * @param {Derived} derived\n * @returns {void}\n */\nexport function update_derived(derived) {\n\tvar value = execute_derived(derived);\n\n\tif (!derived.equals(value)) {\n\t\tderived.wv = increment_write_version();\n\n\t\t// in a fork, we don't update the underlying value, just `batch_values`.\n\t\t// the underlying value will be updated when the fork is committed.\n\t\t// otherwise, the next time we get here after a 'real world' state\n\t\t// change, `derived.equals` may incorrectly return `true`\n\t\tif (!current_batch?.is_fork || derived.deps === null) {\n\t\t\tif (current_batch !== null) {\n\t\t\t\tcurrent_batch.capture(derived, value, true);\n\t\t\t} else {\n\t\t\t\tderived.v = value;\n\t\t\t}\n\n\t\t\t// deriveds without dependencies should never be recomputed\n\t\t\tif (derived.deps === null) {\n\t\t\t\tset_signal_status(derived, CLEAN);\n\t\t\t\treturn;\n\t\t\t}\n\t\t}\n\t}\n\n\t// don't mark derived clean if we're reading it inside a\n\t// cleanup function, or it will cache a stale value\n\tif (is_destroying_effect) {\n\t\treturn;\n\t}\n\n\t// During time traveling we don't want to reset the status so that\n\t// traversal of the graph in the other batches still happens\n\tif (batch_values !== null) {\n\t\t// only cache the value if we're in a tracking context, otherwise we won't\n\t\t// clear the cache in `mark_reactions` when dependencies are updated\n\t\tif (effect_tracking() || current_batch?.is_fork) {\n\t\t\tbatch_values.set(derived, value);\n\t\t}\n\t} else {\n\t\tupdate_derived_status(derived);\n\t}\n}\n\n/**\n * @param {Derived} derived\n */\nexport function freeze_derived_effects(derived) {\n\tif (derived.effects === null) return;\n\n\tfor (const e of derived.effects) {\n\t\t// if the effect has a teardown function or abort signal, call it\n\t\tif (e.teardown || e.ac) {\n\t\t\te.teardown?.();\n\t\t\te.ac?.abort(STALE_REACTION);\n\n\t\t\t// make it a noop so it doesn't get called again if the derived\n\t\t\t// is unfrozen. we don't set it to `null`, because the existence\n\t\t\t// of a teardown function is what determines whether the\n\t\t\t// effect runs again during unfreezing\n\t\t\te.teardown = noop;\n\t\t\te.ac = null;\n\n\t\t\tremove_reactions(e, 0);\n\t\t\tdestroy_effect_children(e);\n\t\t}\n\t}\n}\n\n/**\n * @param {Derived} derived\n */\nexport function unfreeze_derived_effects(derived) {\n\tif (derived.effects === null) return;\n\n\tfor (const e of derived.effects) {\n\t\t// if the effect was previously frozen — indicated by the presence\n\t\t// of a teardown function — unfreeze it\n\t\tif (e.teardown) {\n\t\t\tupdate_effect(e);\n\t\t}\n\t}\n}\n","/** @import { Derived, Effect, Source, Value } from '#client' */\nimport { DEV } from 'esm-env';\nimport {\n\tactive_reaction,\n\tactive_effect,\n\tuntracked_writes,\n\tget,\n\tset_untracked_writes,\n\tuntrack,\n\tincrement_write_version,\n\tupdate_effect,\n\tcurrent_sources,\n\tis_dirty,\n\tuntracking,\n\tis_destroying_effect,\n\tpush_reaction_value\n} from '../runtime.js';\nimport { equals, safe_equals } from './equality.js';\nimport {\n\tCLEAN,\n\tDERIVED,\n\tDIRTY,\n\tBRANCH_EFFECT,\n\tEAGER_EFFECT,\n\tMAYBE_DIRTY,\n\tBLOCK_EFFECT,\n\tROOT_EFFECT,\n\tASYNC,\n\tWAS_MARKED,\n\tCONNECTED,\n\tREACTION_IS_UPDATING\n} from '#client/constants';\nimport * as e from '../errors.js';\nimport { legacy_mode_flag, tracing_mode_flag } from '../../flags/index.js';\nimport { includes } from '../../shared/utils.js';\nimport { tag_proxy } from '../dev/tracing.js';\nimport { get_error } from '../../shared/dev.js';\nimport { component_context, is_runes } from '../context.js';\nimport {\n\tBatch,\n\tbatch_values,\n\teager_block_effects,\n\tschedule_effect,\n\tlegacy_updates\n} from './batch.js';\nimport { proxy } from '../proxy.js';\nimport { execute_derived } from './deriveds.js';\nimport { set_signal_status, update_derived_status } from './status.js';\n\n/** @type {Set} */\nexport let eager_effects = new Set();\n\n/** @type {Map} */\nexport const old_values = new Map();\n\n/**\n * @param {Set} v\n */\nexport function set_eager_effects(v) {\n\teager_effects = v;\n}\n\nlet eager_effects_deferred = false;\n\nexport function set_eager_effects_deferred() {\n\teager_effects_deferred = true;\n}\n\n/**\n * @template V\n * @param {V} v\n * @param {Error | null} [stack]\n * @returns {Source}\n */\n// TODO rename this to `state` throughout the codebase\nexport function source(v, stack) {\n\t/** @type {Value} */\n\tvar signal = {\n\t\tf: 0, // TODO ideally we could skip this altogether, but it causes type errors\n\t\tv,\n\t\treactions: null,\n\t\tequals,\n\t\trv: 0,\n\t\twv: 0\n\t};\n\n\tif (DEV && tracing_mode_flag) {\n\t\tsignal.created = stack ?? get_error('created at');\n\t\tsignal.updated = null;\n\t\tsignal.set_during_effect = false;\n\t\tsignal.trace = null;\n\t}\n\n\treturn signal;\n}\n\n/**\n * @template V\n * @param {V} v\n * @param {Error | null} [stack]\n */\n/*#__NO_SIDE_EFFECTS__*/\nexport function state(v, stack) {\n\tconst s = source(v, stack);\n\n\tpush_reaction_value(s);\n\n\treturn s;\n}\n\n/**\n * @template V\n * @param {V} initial_value\n * @param {boolean} [immutable]\n * @returns {Source}\n */\n/*#__NO_SIDE_EFFECTS__*/\nexport function mutable_source(initial_value, immutable = false, trackable = true) {\n\tconst s = source(initial_value);\n\tif (!immutable) {\n\t\ts.equals = safe_equals;\n\t}\n\n\t// bind the signal to the component context, in case we need to\n\t// track updates to trigger beforeUpdate/afterUpdate callbacks\n\tif (legacy_mode_flag && trackable && component_context !== null && component_context.l !== null) {\n\t\t(component_context.l.s ??= []).push(s);\n\t}\n\n\treturn s;\n}\n\n/**\n * @template V\n * @param {Value} source\n * @param {V} value\n */\nexport function mutate(source, value) {\n\tset(\n\t\tsource,\n\t\tuntrack(() => get(source))\n\t);\n\treturn value;\n}\n\n/**\n * @template V\n * @param {Source} source\n * @param {V} value\n * @param {boolean} [should_proxy]\n * @returns {V}\n */\nexport function set(source, value, should_proxy = false) {\n\tif (\n\t\tactive_reaction !== null &&\n\t\t// since we are untracking the function inside `$inspect.with` we need to add this check\n\t\t// to ensure we error if state is set inside an inspect effect\n\t\t(!untracking || (active_reaction.f & EAGER_EFFECT) !== 0) &&\n\t\tis_runes() &&\n\t\t(active_reaction.f & (DERIVED | BLOCK_EFFECT | ASYNC | EAGER_EFFECT)) !== 0 &&\n\t\t(current_sources === null || !includes.call(current_sources, source))\n\t) {\n\t\te.state_unsafe_mutation();\n\t}\n\n\tlet new_value = should_proxy ? proxy(value) : value;\n\n\tif (DEV) {\n\t\ttag_proxy(new_value, /** @type {string} */ (source.label));\n\t}\n\n\treturn internal_set(source, new_value, legacy_updates);\n}\n\n/**\n * @template V\n * @param {Source} source\n * @param {V} value\n * @param {Effect[] | null} [updated_during_traversal]\n * @returns {V}\n */\nexport function internal_set(source, value, updated_during_traversal = null) {\n\tif (!source.equals(value)) {\n\t\told_values.set(source, is_destroying_effect ? value : source.v);\n\n\t\tvar batch = Batch.ensure();\n\t\tbatch.capture(source, value);\n\n\t\tif (DEV) {\n\t\t\tif (tracing_mode_flag || active_effect !== null) {\n\t\t\t\tsource.updated ??= new Map();\n\n\t\t\t\t// For performance reasons, when not using $inspect.trace, we only start collecting stack traces\n\t\t\t\t// after the same source has been updated more than 5 times in the same flush cycle.\n\t\t\t\tconst count = (source.updated.get('')?.count ?? 0) + 1;\n\t\t\t\tsource.updated.set('', { error: /** @type {any} */ (null), count });\n\n\t\t\t\tif (tracing_mode_flag || count > 5) {\n\t\t\t\t\tconst error = get_error('updated at');\n\n\t\t\t\t\tif (error !== null) {\n\t\t\t\t\t\tlet entry = source.updated.get(error.stack);\n\n\t\t\t\t\t\tif (!entry) {\n\t\t\t\t\t\t\tentry = { error, count: 0 };\n\t\t\t\t\t\t\tsource.updated.set(error.stack, entry);\n\t\t\t\t\t\t}\n\n\t\t\t\t\t\tentry.count++;\n\t\t\t\t\t}\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tif (active_effect !== null) {\n\t\t\t\tsource.set_during_effect = true;\n\t\t\t}\n\t\t}\n\n\t\tif ((source.f & DERIVED) !== 0) {\n\t\t\tconst derived = /** @type {Derived} */ (source);\n\n\t\t\t// if we are assigning to a dirty derived we set it to clean/maybe dirty but we also eagerly execute it to track the dependencies\n\t\t\tif ((source.f & DIRTY) !== 0) {\n\t\t\t\texecute_derived(derived);\n\t\t\t}\n\n\t\t\t// During time traveling we don't want to reset the status so that\n\t\t\t// traversal of the graph in the other batches still happens\n\t\t\tif (batch_values === null) {\n\t\t\t\tupdate_derived_status(derived);\n\t\t\t}\n\t\t}\n\n\t\tsource.wv = increment_write_version();\n\n\t\t// For debugging, in case you want to know which reactions are being scheduled:\n\t\t// log_reactions(source);\n\t\tmark_reactions(source, DIRTY, updated_during_traversal);\n\n\t\t// It's possible that the current reaction might not have up-to-date dependencies\n\t\t// whilst it's actively running. So in the case of ensuring it registers the reaction\n\t\t// properly for itself, we need to ensure the current effect actually gets\n\t\t// scheduled. i.e: `$effect(() => x++)`\n\t\tif (\n\t\t\tis_runes() &&\n\t\t\tactive_effect !== null &&\n\t\t\t(active_effect.f & CLEAN) !== 0 &&\n\t\t\t(active_effect.f & (BRANCH_EFFECT | ROOT_EFFECT)) === 0\n\t\t) {\n\t\t\tif (untracked_writes === null) {\n\t\t\t\tset_untracked_writes([source]);\n\t\t\t} else {\n\t\t\t\tuntracked_writes.push(source);\n\t\t\t}\n\t\t}\n\n\t\tif (!batch.is_fork && eager_effects.size > 0 && !eager_effects_deferred) {\n\t\t\tflush_eager_effects();\n\t\t}\n\t}\n\n\treturn value;\n}\n\nexport function flush_eager_effects() {\n\teager_effects_deferred = false;\n\n\tfor (const effect of eager_effects) {\n\t\t// Mark clean inspect-effects as maybe dirty and then check their dirtiness\n\t\t// instead of just updating the effects - this way we avoid overfiring.\n\t\tif ((effect.f & CLEAN) !== 0) {\n\t\t\tset_signal_status(effect, MAYBE_DIRTY);\n\t\t}\n\n\t\tif (is_dirty(effect)) {\n\t\t\tupdate_effect(effect);\n\t\t}\n\t}\n\n\teager_effects.clear();\n}\n\n/**\n * @template {number | bigint} T\n * @param {Source} source\n * @param {1 | -1} [d]\n * @returns {T}\n */\nexport function update(source, d = 1) {\n\tvar value = get(source);\n\tvar result = d === 1 ? value++ : value--;\n\n\tset(source, value);\n\n\t// @ts-expect-error\n\treturn result;\n}\n\n/**\n * @template {number | bigint} T\n * @param {Source} source\n * @param {1 | -1} [d]\n * @returns {T}\n */\nexport function update_pre(source, d = 1) {\n\tvar value = get(source);\n\n\t// @ts-expect-error\n\t// eslint-disable-next-line no-useless-assignment -- `++`/`--` used for return value, not side effect on `value`\n\treturn set(source, d === 1 ? ++value : --value);\n}\n\n/**\n * Silently (without using `get`) increment a source\n * @param {Source} source\n */\nexport function increment(source) {\n\tset(source, source.v + 1);\n}\n\n/**\n * @param {Value} signal\n * @param {number} status should be DIRTY or MAYBE_DIRTY\n * @param {Effect[] | null} updated_during_traversal\n * @returns {void}\n */\nfunction mark_reactions(signal, status, updated_during_traversal) {\n\tvar reactions = signal.reactions;\n\tif (reactions === null) return;\n\n\tvar runes = is_runes();\n\tvar length = reactions.length;\n\n\tfor (var i = 0; i < length; i++) {\n\t\tvar reaction = reactions[i];\n\t\tvar flags = reaction.f;\n\n\t\t// In legacy mode, skip the current effect to prevent infinite loops\n\t\tif (!runes && reaction === active_effect) continue;\n\n\t\t// Inspect effects need to run immediately, so that the stack trace makes sense\n\t\tif (DEV && (flags & EAGER_EFFECT) !== 0) {\n\t\t\teager_effects.add(reaction);\n\t\t\tcontinue;\n\t\t}\n\n\t\tvar not_dirty = (flags & DIRTY) === 0;\n\n\t\t// don't set a DIRTY reaction to MAYBE_DIRTY\n\t\tif (not_dirty) {\n\t\t\tset_signal_status(reaction, status);\n\t\t}\n\n\t\tif ((flags & DERIVED) !== 0) {\n\t\t\tvar derived = /** @type {Derived} */ (reaction);\n\n\t\t\tbatch_values?.delete(derived);\n\n\t\t\tif ((flags & WAS_MARKED) === 0) {\n\t\t\t\t// Only connected deriveds being executed outside the update cycle can be reliably unmarked right away\n\t\t\t\tif (\n\t\t\t\t\tflags & CONNECTED &&\n\t\t\t\t\t(active_effect === null || (active_effect.f & REACTION_IS_UPDATING) === 0)\n\t\t\t\t) {\n\t\t\t\t\treaction.f |= WAS_MARKED;\n\t\t\t\t}\n\n\t\t\t\tmark_reactions(derived, MAYBE_DIRTY, updated_during_traversal);\n\t\t\t}\n\t\t} else if (not_dirty) {\n\t\t\tvar effect = /** @type {Effect} */ (reaction);\n\n\t\t\tif ((flags & BLOCK_EFFECT) !== 0 && eager_block_effects !== null) {\n\t\t\t\teager_block_effects.add(effect);\n\t\t\t}\n\n\t\t\tif (updated_during_traversal !== null) {\n\t\t\t\tupdated_during_traversal.push(effect);\n\t\t\t} else {\n\t\t\t\tschedule_effect(effect);\n\t\t\t}\n\t\t}\n\t}\n}\n","/** @import { Source } from '#client' */\nimport { DEV } from 'esm-env';\nimport {\n\tget,\n\tactive_effect,\n\tupdate_version,\n\tactive_reaction,\n\tset_update_version,\n\tset_active_reaction\n} from './runtime.js';\nimport {\n\tarray_prototype,\n\tget_descriptor,\n\tget_prototype_of,\n\tis_array,\n\tobject_prototype\n} from '../shared/utils.js';\nimport {\n\tstate as source,\n\tset,\n\tincrement,\n\tflush_eager_effects,\n\tset_eager_effects_deferred\n} from './reactivity/sources.js';\nimport { PROXY_PATH_SYMBOL, STATE_SYMBOL } from '#client/constants';\nimport { UNINITIALIZED } from '../../constants.js';\nimport * as e from './errors.js';\nimport { tag } from './dev/tracing.js';\nimport { get_error } from '../shared/dev.js';\nimport { tracing_mode_flag } from '../flags/index.js';\n\n// TODO move all regexes into shared module?\nconst regex_is_valid_identifier = /^[a-zA-Z_$][a-zA-Z_$0-9]*$/;\n\n/**\n * @template T\n * @param {T} value\n * @returns {T}\n */\nexport function proxy(value) {\n\t// if non-proxyable, or is already a proxy, return `value`\n\tif (typeof value !== 'object' || value === null || STATE_SYMBOL in value) {\n\t\treturn value;\n\t}\n\n\tconst prototype = get_prototype_of(value);\n\n\tif (prototype !== object_prototype && prototype !== array_prototype) {\n\t\treturn value;\n\t}\n\n\t/** @type {Map>} */\n\tvar sources = new Map();\n\tvar is_proxied_array = is_array(value);\n\tvar version = source(0);\n\n\tvar stack = DEV && tracing_mode_flag ? get_error('created at') : null;\n\tvar parent_version = update_version;\n\n\t/**\n\t * Executes the proxy in the context of the reaction it was originally created in, if any\n\t * @template T\n\t * @param {() => T} fn\n\t */\n\tvar with_parent = (fn) => {\n\t\tif (update_version === parent_version) {\n\t\t\treturn fn();\n\t\t}\n\n\t\t// child source is being created after the initial proxy —\n\t\t// prevent it from being associated with the current reaction\n\t\tvar reaction = active_reaction;\n\t\tvar version = update_version;\n\n\t\tset_active_reaction(null);\n\t\tset_update_version(parent_version);\n\n\t\tvar result = fn();\n\n\t\tset_active_reaction(reaction);\n\t\tset_update_version(version);\n\n\t\treturn result;\n\t};\n\n\tif (is_proxied_array) {\n\t\t// We need to create the length source eagerly to ensure that\n\t\t// mutations to the array are properly synced with our proxy\n\t\tsources.set('length', source(/** @type {any[]} */ (value).length, stack));\n\t\tif (DEV) {\n\t\t\tvalue = /** @type {any} */ (inspectable_array(/** @type {any[]} */ (value)));\n\t\t}\n\t}\n\n\t/** Used in dev for $inspect.trace() */\n\tvar path = '';\n\tlet updating = false;\n\t/** @param {string} new_path */\n\tfunction update_path(new_path) {\n\t\tif (updating) return;\n\t\tupdating = true;\n\t\tpath = new_path;\n\n\t\ttag(version, `${path} version`);\n\n\t\t// rename all child sources and child proxies\n\t\tfor (const [prop, source] of sources) {\n\t\t\ttag(source, get_label(path, prop));\n\t\t}\n\t\tupdating = false;\n\t}\n\n\treturn new Proxy(/** @type {any} */ (value), {\n\t\tdefineProperty(_, prop, descriptor) {\n\t\t\tif (\n\t\t\t\t!('value' in descriptor) ||\n\t\t\t\tdescriptor.configurable === false ||\n\t\t\t\tdescriptor.enumerable === false ||\n\t\t\t\tdescriptor.writable === false\n\t\t\t) {\n\t\t\t\t// we disallow non-basic descriptors, because unless they are applied to the\n\t\t\t\t// target object — which we avoid, so that state can be forked — we will run\n\t\t\t\t// afoul of the various invariants\n\t\t\t\t// https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Global_Objects/Proxy/Proxy/getOwnPropertyDescriptor#invariants\n\t\t\t\te.state_descriptors_fixed();\n\t\t\t}\n\t\t\tvar s = sources.get(prop);\n\t\t\tif (s === undefined) {\n\t\t\t\twith_parent(() => {\n\t\t\t\t\tvar s = source(descriptor.value, stack);\n\t\t\t\t\tsources.set(prop, s);\n\t\t\t\t\tif (DEV && typeof prop === 'string') {\n\t\t\t\t\t\ttag(s, get_label(path, prop));\n\t\t\t\t\t}\n\t\t\t\t\treturn s;\n\t\t\t\t});\n\t\t\t} else {\n\t\t\t\tset(s, descriptor.value, true);\n\t\t\t}\n\n\t\t\treturn true;\n\t\t},\n\n\t\tdeleteProperty(target, prop) {\n\t\t\tvar s = sources.get(prop);\n\n\t\t\tif (s === undefined) {\n\t\t\t\tif (prop in target) {\n\t\t\t\t\tconst s = with_parent(() => source(UNINITIALIZED, stack));\n\t\t\t\t\tsources.set(prop, s);\n\t\t\t\t\tincrement(version);\n\n\t\t\t\t\tif (DEV) {\n\t\t\t\t\t\ttag(s, get_label(path, prop));\n\t\t\t\t\t}\n\t\t\t\t}\n\t\t\t} else {\n\t\t\t\tset(s, UNINITIALIZED);\n\t\t\t\tincrement(version);\n\t\t\t}\n\n\t\t\treturn true;\n\t\t},\n\n\t\tget(target, prop, receiver) {\n\t\t\tif (prop === STATE_SYMBOL) {\n\t\t\t\treturn value;\n\t\t\t}\n\n\t\t\tif (DEV && prop === PROXY_PATH_SYMBOL) {\n\t\t\t\treturn update_path;\n\t\t\t}\n\n\t\t\tvar s = sources.get(prop);\n\t\t\tvar exists = prop in target;\n\n\t\t\t// create a source, but only if it's an own property and not a prototype property\n\t\t\tif (s === undefined && (!exists || get_descriptor(target, prop)?.writable)) {\n\t\t\t\ts = with_parent(() => {\n\t\t\t\t\tvar p = proxy(exists ? target[prop] : UNINITIALIZED);\n\t\t\t\t\tvar s = source(p, stack);\n\n\t\t\t\t\tif (DEV) {\n\t\t\t\t\t\ttag(s, get_label(path, prop));\n\t\t\t\t\t}\n\n\t\t\t\t\treturn s;\n\t\t\t\t});\n\n\t\t\t\tsources.set(prop, s);\n\t\t\t}\n\n\t\t\tif (s !== undefined) {\n\t\t\t\tvar v = get(s);\n\t\t\t\treturn v === UNINITIALIZED ? undefined : v;\n\t\t\t}\n\n\t\t\treturn Reflect.get(target, prop, receiver);\n\t\t},\n\n\t\tgetOwnPropertyDescriptor(target, prop) {\n\t\t\tvar descriptor = Reflect.getOwnPropertyDescriptor(target, prop);\n\n\t\t\tif (descriptor && 'value' in descriptor) {\n\t\t\t\tvar s = sources.get(prop);\n\t\t\t\tif (s) descriptor.value = get(s);\n\t\t\t} else if (descriptor === undefined) {\n\t\t\t\tvar source = sources.get(prop);\n\t\t\t\tvar value = source?.v;\n\n\t\t\t\tif (source !== undefined && value !== UNINITIALIZED) {\n\t\t\t\t\treturn {\n\t\t\t\t\t\tenumerable: true,\n\t\t\t\t\t\tconfigurable: true,\n\t\t\t\t\t\tvalue,\n\t\t\t\t\t\twritable: true\n\t\t\t\t\t};\n\t\t\t\t}\n\t\t\t}\n\n\t\t\treturn descriptor;\n\t\t},\n\n\t\thas(target, prop) {\n\t\t\tif (prop === STATE_SYMBOL) {\n\t\t\t\treturn true;\n\t\t\t}\n\n\t\t\tvar s = sources.get(prop);\n\t\t\tvar has = (s !== undefined && s.v !== UNINITIALIZED) || Reflect.has(target, prop);\n\n\t\t\tif (\n\t\t\t\ts !== undefined ||\n\t\t\t\t(active_effect !== null && (!has || get_descriptor(target, prop)?.writable))\n\t\t\t) {\n\t\t\t\tif (s === undefined) {\n\t\t\t\t\ts = with_parent(() => {\n\t\t\t\t\t\tvar p = has ? proxy(target[prop]) : UNINITIALIZED;\n\t\t\t\t\t\tvar s = source(p, stack);\n\n\t\t\t\t\t\tif (DEV) {\n\t\t\t\t\t\t\ttag(s, get_label(path, prop));\n\t\t\t\t\t\t}\n\n\t\t\t\t\t\treturn s;\n\t\t\t\t\t});\n\n\t\t\t\t\tsources.set(prop, s);\n\t\t\t\t}\n\n\t\t\t\tvar value = get(s);\n\t\t\t\tif (value === UNINITIALIZED) {\n\t\t\t\t\treturn false;\n\t\t\t\t}\n\t\t\t}\n\n\t\t\treturn has;\n\t\t},\n\n\t\tset(target, prop, value, receiver) {\n\t\t\tvar s = sources.get(prop);\n\t\t\tvar has = prop in target;\n\n\t\t\t// variable.length = value -> clear all signals with index >= value\n\t\t\tif (is_proxied_array && prop === 'length') {\n\t\t\t\tfor (var i = value; i < /** @type {Source} */ (s).v; i += 1) {\n\t\t\t\t\tvar other_s = sources.get(i + '');\n\t\t\t\t\tif (other_s !== undefined) {\n\t\t\t\t\t\tset(other_s, UNINITIALIZED);\n\t\t\t\t\t} else if (i in target) {\n\t\t\t\t\t\t// If the item exists in the original, we need to create an uninitialized source,\n\t\t\t\t\t\t// else a later read of the property would result in a source being created with\n\t\t\t\t\t\t// the value of the original item at that index.\n\t\t\t\t\t\tother_s = with_parent(() => source(UNINITIALIZED, stack));\n\t\t\t\t\t\tsources.set(i + '', other_s);\n\n\t\t\t\t\t\tif (DEV) {\n\t\t\t\t\t\t\ttag(other_s, get_label(path, i));\n\t\t\t\t\t\t}\n\t\t\t\t\t}\n\t\t\t\t}\n\t\t\t}\n\n\t\t\t// If we haven't yet created a source for this property, we need to ensure\n\t\t\t// we do so otherwise if we read it later, then the write won't be tracked and\n\t\t\t// the heuristics of effects will be different vs if we had read the proxied\n\t\t\t// object property before writing to that property.\n\t\t\tif (s === undefined) {\n\t\t\t\tif (!has || get_descriptor(target, prop)?.writable) {\n\t\t\t\t\ts = with_parent(() => source(undefined, stack));\n\n\t\t\t\t\tif (DEV) {\n\t\t\t\t\t\ttag(s, get_label(path, prop));\n\t\t\t\t\t}\n\t\t\t\t\tset(s, proxy(value));\n\n\t\t\t\t\tsources.set(prop, s);\n\t\t\t\t}\n\t\t\t} else {\n\t\t\t\thas = s.v !== UNINITIALIZED;\n\n\t\t\t\tvar p = with_parent(() => proxy(value));\n\t\t\t\tset(s, p);\n\t\t\t}\n\n\t\t\tvar descriptor = Reflect.getOwnPropertyDescriptor(target, prop);\n\n\t\t\t// Set the new value before updating any signals so that any listeners get the new value\n\t\t\tif (descriptor?.set) {\n\t\t\t\tdescriptor.set.call(receiver, value);\n\t\t\t}\n\n\t\t\tif (!has) {\n\t\t\t\t// If we have mutated an array directly, we might need to\n\t\t\t\t// signal that length has also changed. Do it before updating metadata\n\t\t\t\t// to ensure that iterating over the array as a result of a metadata update\n\t\t\t\t// will not cause the length to be out of sync.\n\t\t\t\tif (is_proxied_array && typeof prop === 'string') {\n\t\t\t\t\tvar ls = /** @type {Source} */ (sources.get('length'));\n\t\t\t\t\tvar n = Number(prop);\n\n\t\t\t\t\tif (Number.isInteger(n) && n >= ls.v) {\n\t\t\t\t\t\tset(ls, n + 1);\n\t\t\t\t\t}\n\t\t\t\t}\n\n\t\t\t\tincrement(version);\n\t\t\t}\n\n\t\t\treturn true;\n\t\t},\n\n\t\townKeys(target) {\n\t\t\tget(version);\n\n\t\t\tvar own_keys = Reflect.ownKeys(target).filter((key) => {\n\t\t\t\tvar source = sources.get(key);\n\t\t\t\treturn source === undefined || source.v !== UNINITIALIZED;\n\t\t\t});\n\n\t\t\tfor (var [key, source] of sources) {\n\t\t\t\tif (source.v !== UNINITIALIZED && !(key in target)) {\n\t\t\t\t\town_keys.push(key);\n\t\t\t\t}\n\t\t\t}\n\n\t\t\treturn own_keys;\n\t\t},\n\n\t\tsetPrototypeOf() {\n\t\t\te.state_prototype_fixed();\n\t\t}\n\t});\n}\n\n/**\n * @param {string} path\n * @param {string | symbol} prop\n */\nfunction get_label(path, prop) {\n\tif (typeof prop === 'symbol') return `${path}[Symbol(${prop.description ?? ''})]`;\n\tif (regex_is_valid_identifier.test(prop)) return `${path}.${prop}`;\n\treturn /^\\d+$/.test(prop) ? `${path}[${prop}]` : `${path}['${prop}']`;\n}\n\n/**\n * @param {any} value\n */\nexport function get_proxied_value(value) {\n\ttry {\n\t\tif (value !== null && typeof value === 'object' && STATE_SYMBOL in value) {\n\t\t\treturn value[STATE_SYMBOL];\n\t\t}\n\t} catch {\n\t\t// the above if check can throw an error if the value in question\n\t\t// is the contentWindow of an iframe on another domain, in which\n\t\t// case we want to just return the value (because it's definitely\n\t\t// not a proxied value) so we don't break any JavaScript interacting\n\t\t// with that iframe (such as various payment companies client side\n\t\t// JavaScript libraries interacting with their iframes on the same\n\t\t// domain)\n\t}\n\n\treturn value;\n}\n\n/**\n * @param {any} a\n * @param {any} b\n */\nexport function is(a, b) {\n\treturn Object.is(get_proxied_value(a), get_proxied_value(b));\n}\n\nconst ARRAY_MUTATING_METHODS = new Set([\n\t'copyWithin',\n\t'fill',\n\t'pop',\n\t'push',\n\t'reverse',\n\t'shift',\n\t'sort',\n\t'splice',\n\t'unshift'\n]);\n\n/**\n * Wrap array mutating methods so $inspect is triggered only once and\n * to prevent logging an array in intermediate state (e.g. with an empty slot)\n * @param {any[]} array\n */\nfunction inspectable_array(array) {\n\treturn new Proxy(array, {\n\t\tget(target, prop, receiver) {\n\t\t\tvar value = Reflect.get(target, prop, receiver);\n\t\t\tif (!ARRAY_MUTATING_METHODS.has(/** @type {string} */ (prop))) {\n\t\t\t\treturn value;\n\t\t\t}\n\n\t\t\t/**\n\t\t\t * @this {any[]}\n\t\t\t * @param {any[]} args\n\t\t\t */\n\t\t\treturn function (...args) {\n\t\t\t\tset_eager_effects_deferred();\n\t\t\t\tvar result = value.apply(this, args);\n\t\t\t\tflush_eager_effects();\n\t\t\t\treturn result;\n\t\t\t};\n\t\t}\n\t});\n}\n","import * as w from '../warnings.js';\nimport { get_proxied_value } from '../proxy.js';\n\nexport function init_array_prototype_warnings() {\n\tconst array_prototype = Array.prototype;\n\t// The REPL ends up here over and over, and this prevents it from adding more and more patches\n\t// of the same kind to the prototype, which would slow down everything over time.\n\t// @ts-expect-error\n\tconst cleanup = Array.__svelte_cleanup;\n\tif (cleanup) {\n\t\tcleanup();\n\t}\n\n\tconst { indexOf, lastIndexOf, includes } = array_prototype;\n\n\tarray_prototype.indexOf = function (item, from_index) {\n\t\tconst index = indexOf.call(this, item, from_index);\n\n\t\tif (index === -1) {\n\t\t\tfor (let i = from_index ?? 0; i < this.length; i += 1) {\n\t\t\t\tif (get_proxied_value(this[i]) === item) {\n\t\t\t\t\tw.state_proxy_equality_mismatch('array.indexOf(...)');\n\t\t\t\t\tbreak;\n\t\t\t\t}\n\t\t\t}\n\t\t}\n\n\t\treturn index;\n\t};\n\n\tarray_prototype.lastIndexOf = function (item, from_index) {\n\t\t// we need to specify this.length - 1 because it's probably using something like\n\t\t// `arguments` inside so passing undefined is different from not passing anything\n\t\tconst index = lastIndexOf.call(this, item, from_index ?? this.length - 1);\n\n\t\tif (index === -1) {\n\t\t\tfor (let i = 0; i <= (from_index ?? this.length - 1); i += 1) {\n\t\t\t\tif (get_proxied_value(this[i]) === item) {\n\t\t\t\t\tw.state_proxy_equality_mismatch('array.lastIndexOf(...)');\n\t\t\t\t\tbreak;\n\t\t\t\t}\n\t\t\t}\n\t\t}\n\n\t\treturn index;\n\t};\n\n\tarray_prototype.includes = function (item, from_index) {\n\t\tconst has = includes.call(this, item, from_index);\n\n\t\tif (!has) {\n\t\t\tfor (let i = 0; i < this.length; i += 1) {\n\t\t\t\tif (get_proxied_value(this[i]) === item) {\n\t\t\t\t\tw.state_proxy_equality_mismatch('array.includes(...)');\n\t\t\t\t\tbreak;\n\t\t\t\t}\n\t\t\t}\n\t\t}\n\n\t\treturn has;\n\t};\n\n\t// @ts-expect-error\n\tArray.__svelte_cleanup = () => {\n\t\tarray_prototype.indexOf = indexOf;\n\t\tarray_prototype.lastIndexOf = lastIndexOf;\n\t\tarray_prototype.includes = includes;\n\t};\n}\n\n/**\n * @param {any} a\n * @param {any} b\n * @param {boolean} equal\n * @returns {boolean}\n */\nexport function strict_equals(a, b, equal = true) {\n\t// try-catch needed because this tries to read properties of `a` and `b`,\n\t// which could be disallowed for example in a secure context\n\ttry {\n\t\tif ((a === b) !== (get_proxied_value(a) === get_proxied_value(b))) {\n\t\t\tw.state_proxy_equality_mismatch(equal ? '===' : '!==');\n\t\t}\n\t} catch {}\n\n\treturn (a === b) === equal;\n}\n\n/**\n * @param {any} a\n * @param {any} b\n * @param {boolean} equal\n * @returns {boolean}\n */\nexport function equals(a, b, equal = true) {\n\tif ((a == b) !== (get_proxied_value(a) == get_proxied_value(b))) {\n\t\tw.state_proxy_equality_mismatch(equal ? '==' : '!=');\n\t}\n\n\treturn (a == b) === equal;\n}\n","/** @import { Effect, TemplateNode } from '#client' */\nimport { hydrate_node, hydrating, set_hydrate_node } from './hydration.js';\nimport { DEV } from 'esm-env';\nimport { init_array_prototype_warnings } from '../dev/equality.js';\nimport { get_descriptor, is_extensible } from '../../shared/utils.js';\nimport { active_effect } from '../runtime.js';\nimport { async_mode_flag } from '../../flags/index.js';\nimport { TEXT_NODE, REACTION_RAN } from '#client/constants';\nimport { eager_block_effects } from '../reactivity/batch.js';\nimport { NAMESPACE_HTML } from '../../../constants.js';\n\n// export these for reference in the compiled code, making global name deduplication unnecessary\n/** @type {Window} */\nexport var $window;\n\n/** @type {Document} */\nexport var $document;\n\n/** @type {boolean} */\nexport var is_firefox;\n\n/** @type {() => Node | null} */\nvar first_child_getter;\n/** @type {() => Node | null} */\nvar next_sibling_getter;\n\n/**\n * Initialize these lazily to avoid issues when using the runtime in a server context\n * where these globals are not available while avoiding a separate server entry point\n */\nexport function init_operations() {\n\tif ($window !== undefined) {\n\t\treturn;\n\t}\n\n\t$window = window;\n\t$document = document;\n\tis_firefox = /Firefox/.test(navigator.userAgent);\n\n\tvar element_prototype = Element.prototype;\n\tvar node_prototype = Node.prototype;\n\tvar text_prototype = Text.prototype;\n\n\t// @ts-ignore\n\tfirst_child_getter = get_descriptor(node_prototype, 'firstChild').get;\n\t// @ts-ignore\n\tnext_sibling_getter = get_descriptor(node_prototype, 'nextSibling').get;\n\n\tif (is_extensible(element_prototype)) {\n\t\t// the following assignments improve perf of lookups on DOM nodes\n\t\t// @ts-expect-error\n\t\telement_prototype.__click = undefined;\n\t\t// @ts-expect-error\n\t\telement_prototype.__className = undefined;\n\t\t// @ts-expect-error\n\t\telement_prototype.__attributes = null;\n\t\t// @ts-expect-error\n\t\telement_prototype.__style = undefined;\n\t\t// @ts-expect-error\n\t\telement_prototype.__e = undefined;\n\t}\n\n\tif (is_extensible(text_prototype)) {\n\t\t// @ts-expect-error\n\t\ttext_prototype.__t = undefined;\n\t}\n\n\tif (DEV) {\n\t\t// @ts-expect-error\n\t\telement_prototype.__svelte_meta = null;\n\n\t\tinit_array_prototype_warnings();\n\t}\n}\n\n/**\n * @param {string} value\n * @returns {Text}\n */\nexport function create_text(value = '') {\n\treturn document.createTextNode(value);\n}\n\n/**\n * @template {Node} N\n * @param {N} node\n */\n/*@__NO_SIDE_EFFECTS__*/\nexport function get_first_child(node) {\n\treturn /** @type {TemplateNode | null} */ (first_child_getter.call(node));\n}\n\n/**\n * @template {Node} N\n * @param {N} node\n */\n/*@__NO_SIDE_EFFECTS__*/\nexport function get_next_sibling(node) {\n\treturn /** @type {TemplateNode | null} */ (next_sibling_getter.call(node));\n}\n\n/**\n * Don't mark this as side-effect-free, hydration needs to walk all nodes\n * @template {Node} N\n * @param {N} node\n * @param {boolean} is_text\n * @returns {TemplateNode | null}\n */\nexport function child(node, is_text) {\n\tif (!hydrating) {\n\t\treturn get_first_child(node);\n\t}\n\n\tvar child = get_first_child(hydrate_node);\n\n\t// Child can be null if we have an element with a single child, like `

{text}

`, where `text` is empty\n\tif (child === null) {\n\t\tchild = hydrate_node.appendChild(create_text());\n\t} else if (is_text && child.nodeType !== TEXT_NODE) {\n\t\tvar text = create_text();\n\t\tchild?.before(text);\n\t\tset_hydrate_node(text);\n\t\treturn text;\n\t}\n\n\tif (is_text) {\n\t\tmerge_text_nodes(/** @type {Text} */ (child));\n\t}\n\n\tset_hydrate_node(child);\n\treturn child;\n}\n\n/**\n * Don't mark this as side-effect-free, hydration needs to walk all nodes\n * @param {TemplateNode} node\n * @param {boolean} [is_text]\n * @returns {TemplateNode | null}\n */\nexport function first_child(node, is_text = false) {\n\tif (!hydrating) {\n\t\tvar first = get_first_child(node);\n\n\t\t// TODO prevent user comments with the empty string when preserveComments is true\n\t\tif (first instanceof Comment && first.data === '') return get_next_sibling(first);\n\n\t\treturn first;\n\t}\n\n\tif (is_text) {\n\t\t// if an {expression} is empty during SSR, there might be no\n\t\t// text node to hydrate — we must therefore create one\n\t\tif (hydrate_node?.nodeType !== TEXT_NODE) {\n\t\t\tvar text = create_text();\n\n\t\t\thydrate_node?.before(text);\n\t\t\tset_hydrate_node(text);\n\t\t\treturn text;\n\t\t}\n\n\t\tmerge_text_nodes(/** @type {Text} */ (hydrate_node));\n\t}\n\n\treturn hydrate_node;\n}\n\n/**\n * Don't mark this as side-effect-free, hydration needs to walk all nodes\n * @param {TemplateNode} node\n * @param {number} count\n * @param {boolean} is_text\n * @returns {TemplateNode | null}\n */\nexport function sibling(node, count = 1, is_text = false) {\n\tlet next_sibling = hydrating ? hydrate_node : node;\n\tvar last_sibling;\n\n\twhile (count--) {\n\t\tlast_sibling = next_sibling;\n\t\tnext_sibling = /** @type {TemplateNode} */ (get_next_sibling(next_sibling));\n\t}\n\n\tif (!hydrating) {\n\t\treturn next_sibling;\n\t}\n\n\tif (is_text) {\n\t\t// if a sibling {expression} is empty during SSR, there might be no\n\t\t// text node to hydrate — we must therefore create one\n\t\tif (next_sibling?.nodeType !== TEXT_NODE) {\n\t\t\tvar text = create_text();\n\t\t\t// If the next sibling is `null` and we're handling text then it's because\n\t\t\t// the SSR content was empty for the text, so we need to generate a new text\n\t\t\t// node and insert it after the last sibling\n\t\t\tif (next_sibling === null) {\n\t\t\t\tlast_sibling?.after(text);\n\t\t\t} else {\n\t\t\t\tnext_sibling.before(text);\n\t\t\t}\n\t\t\tset_hydrate_node(text);\n\t\t\treturn text;\n\t\t}\n\n\t\tmerge_text_nodes(/** @type {Text} */ (next_sibling));\n\t}\n\n\tset_hydrate_node(next_sibling);\n\treturn next_sibling;\n}\n\n/**\n * @template {Node} N\n * @param {N} node\n * @returns {void}\n */\nexport function clear_text_content(node) {\n\tnode.textContent = '';\n}\n\n/**\n * Returns `true` if we're updating the current block, for example `condition` in\n * an `{#if condition}` block just changed. In this case, the branch should be\n * appended (or removed) at the same time as other updates within the\n * current ``\n */\nexport function should_defer_append() {\n\tif (!async_mode_flag) return false;\n\tif (eager_block_effects !== null) return false;\n\n\tvar flags = /** @type {Effect} */ (active_effect).f;\n\treturn (flags & REACTION_RAN) !== 0;\n}\n\n/**\n * @template {keyof HTMLElementTagNameMap | string} T\n * @param {T} tag\n * @param {string} [namespace]\n * @param {string} [is]\n * @returns {T extends keyof HTMLElementTagNameMap ? HTMLElementTagNameMap[T] : Element}\n */\nexport function create_element(tag, namespace, is) {\n\tlet options = is ? { is } : undefined;\n\treturn /** @type {T extends keyof HTMLElementTagNameMap ? HTMLElementTagNameMap[T] : Element} */ (\n\t\tdocument.createElementNS(namespace ?? NAMESPACE_HTML, tag, options)\n\t);\n}\n\nexport function create_fragment() {\n\treturn document.createDocumentFragment();\n}\n\n/**\n * @param {string} data\n * @returns\n */\nexport function create_comment(data = '') {\n\treturn document.createComment(data);\n}\n\n/**\n * @param {Element} element\n * @param {string} key\n * @param {string} value\n * @returns\n */\nexport function set_attribute(element, key, value = '') {\n\tif (key.startsWith('xlink:')) {\n\t\telement.setAttributeNS('http://www.w3.org/1999/xlink', key, value);\n\t\treturn;\n\t}\n\treturn element.setAttribute(key, value);\n}\n\n/**\n * Browsers split text nodes larger than 65536 bytes when parsing.\n * For hydration to succeed, we need to stitch them back together\n * @param {Text} text\n */\nexport function merge_text_nodes(text) {\n\tif (/** @type {string} */ (text.nodeValue).length < 65536) {\n\t\treturn;\n\t}\n\n\tlet next = text.nextSibling;\n\n\twhile (next !== null && next.nodeType === TEXT_NODE) {\n\t\tnext.remove();\n\n\t\t/** @type {string} */ (text.nodeValue) += /** @type {string} */ (next.nodeValue);\n\n\t\tnext = text.nextSibling;\n\t}\n}\n","import { hydrating } from '../hydration.js';\nimport { clear_text_content, get_first_child } from '../operations.js';\nimport { queue_micro_task } from '../task.js';\n\n/**\n * @param {HTMLElement} dom\n * @param {boolean} value\n * @returns {void}\n */\nexport function autofocus(dom, value) {\n\tif (value) {\n\t\tconst body = document.body;\n\t\tdom.autofocus = true;\n\n\t\tqueue_micro_task(() => {\n\t\t\tif (document.activeElement === body) {\n\t\t\t\tdom.focus();\n\t\t\t}\n\t\t});\n\t}\n}\n\n/**\n * The child of a textarea actually corresponds to the defaultValue property, so we need\n * to remove it upon hydration to avoid a bug when someone resets the form value.\n * @param {HTMLTextAreaElement} dom\n * @returns {void}\n */\nexport function remove_textarea_child(dom) {\n\tif (hydrating && get_first_child(dom) !== null) {\n\t\tclear_text_content(dom);\n\t}\n}\n\nlet listening_to_form_reset = false;\n\nexport function add_form_reset_listener() {\n\tif (!listening_to_form_reset) {\n\t\tlistening_to_form_reset = true;\n\t\tdocument.addEventListener(\n\t\t\t'reset',\n\t\t\t(evt) => {\n\t\t\t\t// Needs to happen one tick later or else the dom properties of the form\n\t\t\t\t// elements have not updated to their reset values yet\n\t\t\t\tPromise.resolve().then(() => {\n\t\t\t\t\tif (!evt.defaultPrevented) {\n\t\t\t\t\t\tfor (const e of /**@type {HTMLFormElement} */ (evt.target).elements) {\n\t\t\t\t\t\t\t// @ts-expect-error\n\t\t\t\t\t\t\te.__on_r?.();\n\t\t\t\t\t\t}\n\t\t\t\t\t}\n\t\t\t\t});\n\t\t\t},\n\t\t\t// In the capture phase to guarantee we get noticed of it (no possibility of stopPropagation)\n\t\t\t{ capture: true }\n\t\t);\n\t}\n}\n","import { teardown } from '../../../reactivity/effects.js';\nimport {\n\tactive_effect,\n\tactive_reaction,\n\tset_active_effect,\n\tset_active_reaction\n} from '../../../runtime.js';\nimport { add_form_reset_listener } from '../misc.js';\n\n/**\n * Fires the handler once immediately (unless corresponding arg is set to `false`),\n * then listens to the given events until the render effect context is destroyed\n * @param {EventTarget} target\n * @param {Array} events\n * @param {(event?: Event) => void} handler\n * @param {any} call_handler_immediately\n */\nexport function listen(target, events, handler, call_handler_immediately = true) {\n\tif (call_handler_immediately) {\n\t\thandler();\n\t}\n\n\tfor (var name of events) {\n\t\ttarget.addEventListener(name, handler);\n\t}\n\n\tteardown(() => {\n\t\tfor (var name of events) {\n\t\t\ttarget.removeEventListener(name, handler);\n\t\t}\n\t});\n}\n\n/**\n * @template T\n * @param {() => T} fn\n */\nexport function without_reactive_context(fn) {\n\tvar previous_reaction = active_reaction;\n\tvar previous_effect = active_effect;\n\tset_active_reaction(null);\n\tset_active_effect(null);\n\ttry {\n\t\treturn fn();\n\t} finally {\n\t\tset_active_reaction(previous_reaction);\n\t\tset_active_effect(previous_effect);\n\t}\n}\n\n/**\n * Listen to the given event, and then instantiate a global form reset listener if not already done,\n * to notify all bindings when the form is reset\n * @param {HTMLElement} element\n * @param {string} event\n * @param {(is_reset?: true) => void} handler\n * @param {(is_reset?: true) => void} [on_reset]\n */\nexport function listen_to_event_and_reset_event(element, event, handler, on_reset = handler) {\n\telement.addEventListener(event, () => without_reactive_context(handler));\n\t// @ts-expect-error\n\tconst prev = element.__on_r;\n\tif (prev) {\n\t\t// special case for checkbox that can have multiple binds (group & checked)\n\t\t// @ts-expect-error\n\t\telement.__on_r = () => {\n\t\t\tprev();\n\t\t\ton_reset(true);\n\t\t};\n\t} else {\n\t\t// @ts-expect-error\n\t\telement.__on_r = () => on_reset(true);\n\t}\n\n\tadd_form_reset_listener();\n}\n","/** @import { Blocker, ComponentContext, ComponentContextLegacy, Derived, Effect, TemplateNode, TransitionManager } from '#client' */\nimport {\n\tis_dirty,\n\tactive_effect,\n\tactive_reaction,\n\tupdate_effect,\n\tget,\n\tis_destroying_effect,\n\tremove_reactions,\n\tset_active_reaction,\n\tset_is_destroying_effect,\n\tuntrack,\n\tuntracking,\n\tset_active_effect\n} from '../runtime.js';\nimport {\n\tDIRTY,\n\tBRANCH_EFFECT,\n\tRENDER_EFFECT,\n\tEFFECT,\n\tDESTROYED,\n\tINERT,\n\tREACTION_RAN,\n\tBLOCK_EFFECT,\n\tROOT_EFFECT,\n\tEFFECT_TRANSPARENT,\n\tDERIVED,\n\tCLEAN,\n\tEAGER_EFFECT,\n\tHEAD_EFFECT,\n\tMAYBE_DIRTY,\n\tEFFECT_PRESERVED,\n\tSTALE_REACTION,\n\tUSER_EFFECT,\n\tASYNC,\n\tCONNECTED,\n\tMANAGED_EFFECT,\n\tDESTROYING\n} from '#client/constants';\nimport * as e from '../errors.js';\nimport { DEV } from 'esm-env';\nimport { define_property } from '../../shared/utils.js';\nimport { get_next_sibling } from '../dom/operations.js';\nimport { component_context, dev_current_component_function, dev_stack } from '../context.js';\nimport { Batch, collected_effects, current_batch } from './batch.js';\nimport { flatten, increment_pending } from './async.js';\nimport { without_reactive_context } from '../dom/elements/bindings/shared.js';\nimport { set_signal_status } from './status.js';\n\n/**\n * @param {'$effect' | '$effect.pre' | '$inspect'} rune\n */\nexport function validate_effect(rune) {\n\tif (active_effect === null) {\n\t\tif (active_reaction === null) {\n\t\t\te.effect_orphan(rune);\n\t\t}\n\n\t\te.effect_in_unowned_derived();\n\t}\n\n\tif (is_destroying_effect) {\n\t\te.effect_in_teardown(rune);\n\t}\n}\n\n/**\n * @param {Effect} effect\n * @param {Effect} parent_effect\n */\nfunction push_effect(effect, parent_effect) {\n\tvar parent_last = parent_effect.last;\n\tif (parent_last === null) {\n\t\tparent_effect.last = parent_effect.first = effect;\n\t} else {\n\t\tparent_last.next = effect;\n\t\teffect.prev = parent_last;\n\t\tparent_effect.last = effect;\n\t}\n}\n\n/**\n * @param {number} type\n * @param {null | (() => void | (() => void))} fn\n * @returns {Effect}\n */\nfunction create_effect(type, fn) {\n\tvar parent = active_effect;\n\n\tif (DEV) {\n\t\t// Ensure the parent is never an inspect effect\n\t\twhile (parent !== null && (parent.f & EAGER_EFFECT) !== 0) {\n\t\t\tparent = parent.parent;\n\t\t}\n\t}\n\n\tif (parent !== null && (parent.f & INERT) !== 0) {\n\t\ttype |= INERT;\n\t}\n\n\t/** @type {Effect} */\n\tvar effect = {\n\t\tctx: component_context,\n\t\tdeps: null,\n\t\tnodes: null,\n\t\tf: type | DIRTY | CONNECTED,\n\t\tfirst: null,\n\t\tfn,\n\t\tlast: null,\n\t\tnext: null,\n\t\tparent,\n\t\tb: parent && parent.b,\n\t\tprev: null,\n\t\tteardown: null,\n\t\twv: 0,\n\t\tac: null\n\t};\n\n\tif (DEV) {\n\t\teffect.component_function = dev_current_component_function;\n\t}\n\n\tcurrent_batch?.register_created_effect(effect);\n\n\t/** @type {Effect | null} */\n\tvar e = effect;\n\n\tif ((type & EFFECT) !== 0) {\n\t\tif (collected_effects !== null) {\n\t\t\t// created during traversal — collect and run afterwards\n\t\t\tcollected_effects.push(effect);\n\t\t} else {\n\t\t\t// schedule for later\n\t\t\tBatch.ensure().schedule(effect);\n\t\t}\n\t} else if (fn !== null) {\n\t\ttry {\n\t\t\tupdate_effect(effect);\n\t\t} catch (e) {\n\t\t\tdestroy_effect(effect);\n\t\t\tthrow e;\n\t\t}\n\n\t\t// if an effect doesn't need to be kept in the tree (because it\n\t\t// won't re-run, has no DOM, and has no teardown etc)\n\t\t// then we skip it and go to its child (if any)\n\t\tif (\n\t\t\te.deps === null &&\n\t\t\te.teardown === null &&\n\t\t\te.nodes === null &&\n\t\t\te.first === e.last && // either `null`, or a singular child\n\t\t\t(e.f & EFFECT_PRESERVED) === 0\n\t\t) {\n\t\t\te = e.first;\n\t\t\tif ((type & BLOCK_EFFECT) !== 0 && (type & EFFECT_TRANSPARENT) !== 0 && e !== null) {\n\t\t\t\te.f |= EFFECT_TRANSPARENT;\n\t\t\t}\n\t\t}\n\t}\n\n\tif (e !== null) {\n\t\te.parent = parent;\n\n\t\tif (parent !== null) {\n\t\t\tpush_effect(e, parent);\n\t\t}\n\n\t\t// if we're in a derived, add the effect there too\n\t\tif (\n\t\t\tactive_reaction !== null &&\n\t\t\t(active_reaction.f & DERIVED) !== 0 &&\n\t\t\t(type & ROOT_EFFECT) === 0\n\t\t) {\n\t\t\tvar derived = /** @type {Derived} */ (active_reaction);\n\t\t\t(derived.effects ??= []).push(e);\n\t\t}\n\t}\n\n\treturn effect;\n}\n\n/**\n * Internal representation of `$effect.tracking()`\n * @returns {boolean}\n */\nexport function effect_tracking() {\n\treturn active_reaction !== null && !untracking;\n}\n\n/**\n * @param {() => void} fn\n */\nexport function teardown(fn) {\n\tconst effect = create_effect(RENDER_EFFECT, null);\n\tset_signal_status(effect, CLEAN);\n\teffect.teardown = fn;\n\treturn effect;\n}\n\n/**\n * Internal representation of `$effect(...)`\n * @param {() => void | (() => void)} fn\n */\nexport function user_effect(fn) {\n\tvalidate_effect('$effect');\n\n\tif (DEV) {\n\t\tdefine_property(fn, 'name', {\n\t\t\tvalue: '$effect'\n\t\t});\n\t}\n\n\t// Non-nested `$effect(...)` in a component should be deferred\n\t// until the component is mounted\n\tvar flags = /** @type {Effect} */ (active_effect).f;\n\tvar defer = !active_reaction && (flags & BRANCH_EFFECT) !== 0 && (flags & REACTION_RAN) === 0;\n\n\tif (defer) {\n\t\t// Top-level `$effect(...)` in an unmounted component — defer until mount\n\t\tvar context = /** @type {ComponentContext} */ (component_context);\n\t\t(context.e ??= []).push(fn);\n\t} else {\n\t\t// Everything else — create immediately\n\t\treturn create_user_effect(fn);\n\t}\n}\n\n/**\n * @param {() => void | (() => void)} fn\n */\nexport function create_user_effect(fn) {\n\treturn create_effect(EFFECT | USER_EFFECT, fn);\n}\n\n/**\n * Internal representation of `$effect.pre(...)`\n * @param {() => void | (() => void)} fn\n * @returns {Effect}\n */\nexport function user_pre_effect(fn) {\n\tvalidate_effect('$effect.pre');\n\tif (DEV) {\n\t\tdefine_property(fn, 'name', {\n\t\t\tvalue: '$effect.pre'\n\t\t});\n\t}\n\treturn create_effect(RENDER_EFFECT | USER_EFFECT, fn);\n}\n\n/** @param {() => void | (() => void)} fn */\nexport function eager_effect(fn) {\n\treturn create_effect(EAGER_EFFECT, fn);\n}\n\n/**\n * Internal representation of `$effect.root(...)`\n * @param {() => void | (() => void)} fn\n * @returns {() => void}\n */\nexport function effect_root(fn) {\n\tBatch.ensure();\n\tconst effect = create_effect(ROOT_EFFECT | EFFECT_PRESERVED, fn);\n\n\treturn () => {\n\t\tdestroy_effect(effect);\n\t};\n}\n\n/**\n * An effect root whose children can transition out\n * @param {() => void} fn\n * @returns {(options?: { outro?: boolean }) => Promise}\n */\nexport function component_root(fn) {\n\tBatch.ensure();\n\tconst effect = create_effect(ROOT_EFFECT | EFFECT_PRESERVED, fn);\n\n\treturn (options = {}) => {\n\t\treturn new Promise((fulfil) => {\n\t\t\tif (options.outro) {\n\t\t\t\tpause_effect(effect, () => {\n\t\t\t\t\tdestroy_effect(effect);\n\t\t\t\t\tfulfil(undefined);\n\t\t\t\t});\n\t\t\t} else {\n\t\t\t\tdestroy_effect(effect);\n\t\t\t\tfulfil(undefined);\n\t\t\t}\n\t\t});\n\t};\n}\n\n/**\n * @param {() => void | (() => void)} fn\n * @returns {Effect}\n */\nexport function effect(fn) {\n\treturn create_effect(EFFECT, fn);\n}\n\n/**\n * Internal representation of `$: ..`\n * @param {() => any} deps\n * @param {() => void | (() => void)} fn\n */\nexport function legacy_pre_effect(deps, fn) {\n\tvar context = /** @type {ComponentContextLegacy} */ (component_context);\n\n\t/** @type {{ effect: null | Effect, ran: boolean, deps: () => any }} */\n\tvar token = { effect: null, ran: false, deps };\n\n\tcontext.l.$.push(token);\n\n\ttoken.effect = render_effect(() => {\n\t\tdeps();\n\n\t\t// If this legacy pre effect has already run before the end of the reset, then\n\t\t// bail out to emulate the same behavior.\n\t\tif (token.ran) return;\n\n\t\ttoken.ran = true;\n\n\t\tvar effect = /** @type {Effect} */ (active_effect);\n\n\t\t// here, we lie: by setting `active_effect` to be the parent branch, any writes\n\t\t// that happen inside `fn` will _not_ cause an unnecessary reschedule, because\n\t\t// the affected effects will be children of `active_effect`. this is safe\n\t\t// because these effects are known to run in the correct order\n\t\ttry {\n\t\t\tset_active_effect(effect.parent);\n\t\t\tuntrack(fn);\n\t\t} finally {\n\t\t\tset_active_effect(effect);\n\t\t}\n\t});\n}\n\nexport function legacy_pre_effect_reset() {\n\tvar context = /** @type {ComponentContextLegacy} */ (component_context);\n\n\trender_effect(() => {\n\t\t// Run dirty `$:` statements\n\t\tfor (var token of context.l.$) {\n\t\t\ttoken.deps();\n\n\t\t\tvar effect = token.effect;\n\n\t\t\t// If the effect is CLEAN, then make it MAYBE_DIRTY. This ensures we traverse through\n\t\t\t// the effects dependencies and correctly ensure each dependency is up-to-date.\n\t\t\tif ((effect.f & CLEAN) !== 0 && effect.deps !== null) {\n\t\t\t\tset_signal_status(effect, MAYBE_DIRTY);\n\t\t\t}\n\n\t\t\tif (is_dirty(effect)) {\n\t\t\t\tupdate_effect(effect);\n\t\t\t}\n\n\t\t\ttoken.ran = false;\n\t\t}\n\t});\n}\n\n/**\n * @param {() => void | (() => void)} fn\n * @returns {Effect}\n */\nexport function async_effect(fn) {\n\treturn create_effect(ASYNC | EFFECT_PRESERVED, fn);\n}\n\n/**\n * @param {() => void | (() => void)} fn\n * @returns {Effect}\n */\nexport function render_effect(fn, flags = 0) {\n\treturn create_effect(RENDER_EFFECT | flags, fn);\n}\n\n/**\n * @param {(...expressions: any) => void | (() => void)} fn\n * @param {Array<() => any>} sync\n * @param {Array<() => Promise>} async\n * @param {Blocker[]} blockers\n */\nexport function template_effect(fn, sync = [], async = [], blockers = []) {\n\tflatten(blockers, sync, async, (values) => {\n\t\tcreate_effect(RENDER_EFFECT, () => fn(...values.map(get)));\n\t});\n}\n\n/**\n * Like `template_effect`, but with an effect which is deferred until the batch commits\n * @param {(...expressions: any) => void | (() => void)} fn\n * @param {Array<() => any>} sync\n * @param {Array<() => Promise>} async\n * @param {Blocker[]} blockers\n */\nexport function deferred_template_effect(fn, sync = [], async = [], blockers = []) {\n\tif (async.length > 0 || blockers.length > 0) {\n\t\tvar decrement_pending = increment_pending();\n\t}\n\n\tflatten(blockers, sync, async, (values) => {\n\t\tcreate_effect(EFFECT, () => fn(...values.map(get)));\n\n\t\tif (decrement_pending) {\n\t\t\tdecrement_pending();\n\t\t}\n\t});\n}\n\n/**\n * @param {(() => void)} fn\n * @param {number} flags\n */\nexport function block(fn, flags = 0) {\n\tvar effect = create_effect(BLOCK_EFFECT | flags, fn);\n\tif (DEV) {\n\t\teffect.dev_stack = dev_stack;\n\t}\n\treturn effect;\n}\n\n/**\n * @param {(() => void)} fn\n * @param {number} flags\n */\nexport function managed(fn, flags = 0) {\n\tvar effect = create_effect(MANAGED_EFFECT | flags, fn);\n\tif (DEV) {\n\t\teffect.dev_stack = dev_stack;\n\t}\n\treturn effect;\n}\n\n/**\n * @param {(() => void)} fn\n */\nexport function branch(fn) {\n\treturn create_effect(BRANCH_EFFECT | EFFECT_PRESERVED, fn);\n}\n\n/**\n * @param {Effect} effect\n */\nexport function execute_effect_teardown(effect) {\n\tvar teardown = effect.teardown;\n\tif (teardown !== null) {\n\t\tconst previously_destroying_effect = is_destroying_effect;\n\t\tconst previous_reaction = active_reaction;\n\t\tset_is_destroying_effect(true);\n\t\tset_active_reaction(null);\n\t\ttry {\n\t\t\tteardown.call(null);\n\t\t} finally {\n\t\t\tset_is_destroying_effect(previously_destroying_effect);\n\t\t\tset_active_reaction(previous_reaction);\n\t\t}\n\t}\n}\n\n/**\n * @param {Effect} signal\n * @param {boolean} remove_dom\n * @returns {void}\n */\nexport function destroy_effect_children(signal, remove_dom = false) {\n\tvar effect = signal.first;\n\tsignal.first = signal.last = null;\n\n\twhile (effect !== null) {\n\t\tconst controller = effect.ac;\n\n\t\tif (controller !== null) {\n\t\t\twithout_reactive_context(() => {\n\t\t\t\tcontroller.abort(STALE_REACTION);\n\t\t\t});\n\t\t}\n\n\t\tvar next = effect.next;\n\n\t\tif ((effect.f & ROOT_EFFECT) !== 0) {\n\t\t\t// this is now an independent root\n\t\t\teffect.parent = null;\n\t\t} else {\n\t\t\tdestroy_effect(effect, remove_dom);\n\t\t}\n\n\t\teffect = next;\n\t}\n}\n\n/**\n * @param {Effect} signal\n * @returns {void}\n */\nexport function destroy_block_effect_children(signal) {\n\tvar effect = signal.first;\n\n\twhile (effect !== null) {\n\t\tvar next = effect.next;\n\t\tif ((effect.f & BRANCH_EFFECT) === 0) {\n\t\t\tdestroy_effect(effect);\n\t\t}\n\t\teffect = next;\n\t}\n}\n\n/**\n * @param {Effect} effect\n * @param {boolean} [remove_dom]\n * @returns {void}\n */\nexport function destroy_effect(effect, remove_dom = true) {\n\tvar removed = false;\n\n\tif (\n\t\t(remove_dom || (effect.f & HEAD_EFFECT) !== 0) &&\n\t\teffect.nodes !== null &&\n\t\teffect.nodes.end !== null\n\t) {\n\t\tremove_effect_dom(effect.nodes.start, /** @type {TemplateNode} */ (effect.nodes.end));\n\t\tremoved = true;\n\t}\n\n\tset_signal_status(effect, DESTROYING);\n\tdestroy_effect_children(effect, remove_dom && !removed);\n\tremove_reactions(effect, 0);\n\n\tvar transitions = effect.nodes && effect.nodes.t;\n\n\tif (transitions !== null) {\n\t\tfor (const transition of transitions) {\n\t\t\ttransition.stop();\n\t\t}\n\t}\n\n\texecute_effect_teardown(effect);\n\n\teffect.f ^= DESTROYING;\n\teffect.f |= DESTROYED;\n\n\tvar parent = effect.parent;\n\n\t// If the parent doesn't have any children, then skip this work altogether\n\tif (parent !== null && parent.first !== null) {\n\t\tunlink_effect(effect);\n\t}\n\n\tif (DEV) {\n\t\teffect.component_function = null;\n\t}\n\n\t// `first` and `child` are nulled out in destroy_effect_children\n\t// we don't null out `parent` so that error propagation can work correctly\n\teffect.next =\n\t\teffect.prev =\n\t\teffect.teardown =\n\t\teffect.ctx =\n\t\teffect.deps =\n\t\teffect.fn =\n\t\teffect.nodes =\n\t\teffect.ac =\n\t\teffect.b =\n\t\t\tnull;\n}\n\n/**\n *\n * @param {TemplateNode | null} node\n * @param {TemplateNode} end\n */\nexport function remove_effect_dom(node, end) {\n\twhile (node !== null) {\n\t\t/** @type {TemplateNode | null} */\n\t\tvar next = node === end ? null : get_next_sibling(node);\n\n\t\tnode.remove();\n\t\tnode = next;\n\t}\n}\n\n/**\n * Detach an effect from the effect tree, freeing up memory and\n * reducing the amount of work that happens on subsequent traversals\n * @param {Effect} effect\n */\nexport function unlink_effect(effect) {\n\tvar parent = effect.parent;\n\tvar prev = effect.prev;\n\tvar next = effect.next;\n\n\tif (prev !== null) prev.next = next;\n\tif (next !== null) next.prev = prev;\n\n\tif (parent !== null) {\n\t\tif (parent.first === effect) parent.first = next;\n\t\tif (parent.last === effect) parent.last = prev;\n\t}\n}\n\n/**\n * When a block effect is removed, we don't immediately destroy it or yank it\n * out of the DOM, because it might have transitions. Instead, we 'pause' it.\n * It stays around (in memory, and in the DOM) until outro transitions have\n * completed, and if the state change is reversed then we _resume_ it.\n * A paused effect does not update, and the DOM subtree becomes inert.\n * @param {Effect} effect\n * @param {() => void} [callback]\n * @param {boolean} [destroy]\n */\nexport function pause_effect(effect, callback, destroy = true) {\n\t/** @type {TransitionManager[]} */\n\tvar transitions = [];\n\n\tpause_children(effect, transitions, true);\n\n\tvar fn = () => {\n\t\tif (destroy) destroy_effect(effect);\n\t\tif (callback) callback();\n\t};\n\n\tvar remaining = transitions.length;\n\tif (remaining > 0) {\n\t\tvar check = () => --remaining || fn();\n\t\tfor (var transition of transitions) {\n\t\t\ttransition.out(check);\n\t\t}\n\t} else {\n\t\tfn();\n\t}\n}\n\n/**\n * @param {Effect} effect\n * @param {TransitionManager[]} transitions\n * @param {boolean} local\n */\nfunction pause_children(effect, transitions, local) {\n\tif ((effect.f & INERT) !== 0) return;\n\teffect.f ^= INERT;\n\n\tvar t = effect.nodes && effect.nodes.t;\n\n\tif (t !== null) {\n\t\tfor (const transition of t) {\n\t\t\tif (transition.is_global || local) {\n\t\t\t\ttransitions.push(transition);\n\t\t\t}\n\t\t}\n\t}\n\n\tvar child = effect.first;\n\n\twhile (child !== null) {\n\t\tvar sibling = child.next;\n\n\t\t// If this child is a root effect, then it will become an independent root when its parent\n\t\t// is destroyed, it should therefore not become inert nor partake in transitions.\n\t\tif ((child.f & ROOT_EFFECT) === 0) {\n\t\t\tvar transparent =\n\t\t\t\t(child.f & EFFECT_TRANSPARENT) !== 0 ||\n\t\t\t\t// If this is a branch effect without a block effect parent,\n\t\t\t\t// it means the parent block effect was pruned. In that case,\n\t\t\t\t// transparency information was transferred to the branch effect.\n\t\t\t\t((child.f & BRANCH_EFFECT) !== 0 && (effect.f & BLOCK_EFFECT) !== 0);\n\t\t\t// TODO we don't need to call pause_children recursively with a linked list in place\n\t\t\t// it's slightly more involved though as we have to account for `transparent` changing\n\t\t\t// through the tree.\n\t\t\tpause_children(child, transitions, transparent ? local : false);\n\t\t}\n\n\t\tchild = sibling;\n\t}\n}\n\n/**\n * The opposite of `pause_effect`. We call this if (for example)\n * `x` becomes falsy then truthy: `{#if x}...{/if}`\n * @param {Effect} effect\n */\nexport function resume_effect(effect) {\n\tresume_children(effect, true);\n}\n\n/**\n * @param {Effect} effect\n * @param {boolean} local\n */\nfunction resume_children(effect, local) {\n\tif ((effect.f & INERT) === 0) return;\n\teffect.f ^= INERT;\n\n\t// If a dependency of this effect changed while it was paused,\n\t// schedule the effect to update. we don't use `is_dirty`\n\t// here because we don't want to eagerly recompute a derived like\n\t// `{#if foo}{foo.bar()}{/if}` if `foo` is now `undefined\n\tif ((effect.f & CLEAN) === 0) {\n\t\tset_signal_status(effect, DIRTY);\n\t\tBatch.ensure().schedule(effect); // Assumption: This happens during the commit phase of the batch, causing another flush, but it's safe\n\t}\n\n\tvar child = effect.first;\n\n\twhile (child !== null) {\n\t\tvar sibling = child.next;\n\t\tvar transparent = (child.f & EFFECT_TRANSPARENT) !== 0 || (child.f & BRANCH_EFFECT) !== 0;\n\t\t// TODO we don't need to call resume_children recursively with a linked list in place\n\t\t// it's slightly more involved though as we have to account for `transparent` changing\n\t\t// through the tree.\n\t\tresume_children(child, transparent ? local : false);\n\t\tchild = sibling;\n\t}\n\n\tvar t = effect.nodes && effect.nodes.t;\n\n\tif (t !== null) {\n\t\tfor (const transition of t) {\n\t\t\tif (transition.is_global || local) {\n\t\t\t\ttransition.in();\n\t\t\t}\n\t\t}\n\t}\n}\n\nexport function aborted(effect = /** @type {Effect} */ (active_effect)) {\n\treturn (effect.f & DESTROYED) !== 0;\n}\n\n/**\n * @param {Effect} effect\n * @param {DocumentFragment} fragment\n */\nexport function move_effect(effect, fragment) {\n\tif (!effect.nodes) return;\n\n\t/** @type {TemplateNode | null} */\n\tvar node = effect.nodes.start;\n\tvar end = effect.nodes.end;\n\n\twhile (node !== null) {\n\t\t/** @type {TemplateNode | null} */\n\t\tvar next = node === end ? null : get_next_sibling(node);\n\n\t\tfragment.append(node);\n\t\tnode = next;\n\t}\n}\n","/** @import { Derived, Effect, Reaction, Source, Value } from '#client' */\nimport { DEV } from 'esm-env';\nimport { get_descriptors, get_prototype_of, includes, index_of } from '../shared/utils.js';\nimport {\n\tdestroy_block_effect_children,\n\tdestroy_effect_children,\n\teffect_tracking,\n\texecute_effect_teardown\n} from './reactivity/effects.js';\nimport {\n\tDIRTY,\n\tMAYBE_DIRTY,\n\tCLEAN,\n\tDERIVED,\n\tDESTROYED,\n\tBRANCH_EFFECT,\n\tSTATE_SYMBOL,\n\tBLOCK_EFFECT,\n\tROOT_EFFECT,\n\tCONNECTED,\n\tREACTION_IS_UPDATING,\n\tSTALE_REACTION,\n\tERROR_VALUE,\n\tWAS_MARKED,\n\tMANAGED_EFFECT,\n\tREACTION_RAN\n} from './constants.js';\nimport { old_values } from './reactivity/sources.js';\nimport {\n\treactivity_loss_tracker,\n\texecute_derived,\n\tfreeze_derived_effects,\n\trecent_async_deriveds,\n\tunfreeze_derived_effects,\n\tupdate_derived\n} from './reactivity/deriveds.js';\nimport { async_mode_flag, tracing_mode_flag } from '../flags/index.js';\nimport { tracing_expressions } from './dev/tracing.js';\nimport { get_error } from '../shared/dev.js';\nimport {\n\tcomponent_context,\n\tdev_current_component_function,\n\tdev_stack,\n\tis_runes,\n\tset_component_context,\n\tset_dev_current_component_function,\n\tset_dev_stack\n} from './context.js';\nimport {\n\tBatch,\n\tbatch_values,\n\tcurrent_batch,\n\tflushSync,\n\tschedule_effect\n} from './reactivity/batch.js';\nimport { handle_error } from './error-handling.js';\nimport { UNINITIALIZED } from '../../constants.js';\nimport { captured_signals } from './legacy.js';\nimport { without_reactive_context } from './dom/elements/bindings/shared.js';\nimport { set_signal_status, update_derived_status } from './reactivity/status.js';\nimport * as w from './warnings.js';\n\nlet is_updating_effect = false;\n\nexport let is_destroying_effect = false;\n\n/** @param {boolean} value */\nexport function set_is_destroying_effect(value) {\n\tis_destroying_effect = value;\n}\n\n/** @type {null | Reaction} */\nexport let active_reaction = null;\n\nexport let untracking = false;\n\n/** @param {null | Reaction} reaction */\nexport function set_active_reaction(reaction) {\n\tactive_reaction = reaction;\n}\n\n/** @type {null | Effect} */\nexport let active_effect = null;\n\n/** @param {null | Effect} effect */\nexport function set_active_effect(effect) {\n\tactive_effect = effect;\n}\n\n/**\n * When sources are created within a reaction, reading and writing\n * them within that reaction should not cause a re-run\n * @type {null | Source[]}\n */\nexport let current_sources = null;\n\n/** @param {Value} value */\nexport function push_reaction_value(value) {\n\tif (active_reaction !== null && (!async_mode_flag || (active_reaction.f & DERIVED) !== 0)) {\n\t\tif (current_sources === null) {\n\t\t\tcurrent_sources = [value];\n\t\t} else {\n\t\t\tcurrent_sources.push(value);\n\t\t}\n\t}\n}\n\n/**\n * The dependencies of the reaction that is currently being executed. In many cases,\n * the dependencies are unchanged between runs, and so this will be `null` unless\n * and until a new dependency is accessed — we track this via `skipped_deps`\n * @type {null | Value[]}\n */\nexport let new_deps = null;\n\nexport let skipped_deps = 0;\n\n/**\n * Tracks writes that the effect it's executed in doesn't listen to yet,\n * so that the dependency can be added to the effect later on if it then reads it\n * @type {null | Source[]}\n */\nexport let untracked_writes = null;\n\n/** @param {null | Source[]} value */\nexport function set_untracked_writes(value) {\n\tuntracked_writes = value;\n}\n\n/**\n * @type {number} Used by sources and deriveds for handling updates.\n * Version starts from 1 so that unowned deriveds differentiate between a created effect and a run one for tracing\n **/\nexport let write_version = 1;\n\n/** @type {number} Used to version each read of a source of derived to avoid duplicating depedencies inside a reaction */\nlet read_version = 0;\n\nexport let update_version = read_version;\n\n/** @param {number} value */\nexport function set_update_version(value) {\n\tupdate_version = value;\n}\n\nexport function increment_write_version() {\n\treturn ++write_version;\n}\n\n/**\n * Determines whether a derived or effect is dirty.\n * If it is MAYBE_DIRTY, will set the status to CLEAN\n * @param {Reaction} reaction\n * @returns {boolean}\n */\nexport function is_dirty(reaction) {\n\tvar flags = reaction.f;\n\n\tif ((flags & DIRTY) !== 0) {\n\t\treturn true;\n\t}\n\n\tif (flags & DERIVED) {\n\t\treaction.f &= ~WAS_MARKED;\n\t}\n\n\tif ((flags & MAYBE_DIRTY) !== 0) {\n\t\tvar dependencies = /** @type {Value[]} */ (reaction.deps);\n\t\tvar length = dependencies.length;\n\n\t\tfor (var i = 0; i < length; i++) {\n\t\t\tvar dependency = dependencies[i];\n\n\t\t\tif (is_dirty(/** @type {Derived} */ (dependency))) {\n\t\t\t\tupdate_derived(/** @type {Derived} */ (dependency));\n\t\t\t}\n\n\t\t\tif (dependency.wv > reaction.wv) {\n\t\t\t\treturn true;\n\t\t\t}\n\t\t}\n\n\t\tif (\n\t\t\t(flags & CONNECTED) !== 0 &&\n\t\t\t// During time traveling we don't want to reset the status so that\n\t\t\t// traversal of the graph in the other batches still happens\n\t\t\tbatch_values === null\n\t\t) {\n\t\t\tset_signal_status(reaction, CLEAN);\n\t\t}\n\t}\n\n\treturn false;\n}\n\n/**\n * @param {Value} signal\n * @param {Effect} effect\n * @param {boolean} [root]\n */\nfunction schedule_possible_effect_self_invalidation(signal, effect, root = true) {\n\tvar reactions = signal.reactions;\n\tif (reactions === null) return;\n\n\tif (!async_mode_flag && current_sources !== null && includes.call(current_sources, signal)) {\n\t\treturn;\n\t}\n\n\tfor (var i = 0; i < reactions.length; i++) {\n\t\tvar reaction = reactions[i];\n\n\t\tif ((reaction.f & DERIVED) !== 0) {\n\t\t\tschedule_possible_effect_self_invalidation(/** @type {Derived} */ (reaction), effect, false);\n\t\t} else if (effect === reaction) {\n\t\t\tif (root) {\n\t\t\t\tset_signal_status(reaction, DIRTY);\n\t\t\t} else if ((reaction.f & CLEAN) !== 0) {\n\t\t\t\tset_signal_status(reaction, MAYBE_DIRTY);\n\t\t\t}\n\t\t\tschedule_effect(/** @type {Effect} */ (reaction));\n\t\t}\n\t}\n}\n\n/** @param {Reaction} reaction */\nexport function update_reaction(reaction) {\n\tvar previous_deps = new_deps;\n\tvar previous_skipped_deps = skipped_deps;\n\tvar previous_untracked_writes = untracked_writes;\n\tvar previous_reaction = active_reaction;\n\tvar previous_sources = current_sources;\n\tvar previous_component_context = component_context;\n\tvar previous_untracking = untracking;\n\tvar previous_update_version = update_version;\n\n\tvar flags = reaction.f;\n\n\tnew_deps = /** @type {null | Value[]} */ (null);\n\tskipped_deps = 0;\n\tuntracked_writes = null;\n\tactive_reaction = (flags & (BRANCH_EFFECT | ROOT_EFFECT)) === 0 ? reaction : null;\n\n\tcurrent_sources = null;\n\tset_component_context(reaction.ctx);\n\tuntracking = false;\n\tupdate_version = ++read_version;\n\n\tif (reaction.ac !== null) {\n\t\twithout_reactive_context(() => {\n\t\t\t/** @type {AbortController} */ (reaction.ac).abort(STALE_REACTION);\n\t\t});\n\n\t\treaction.ac = null;\n\t}\n\n\ttry {\n\t\treaction.f |= REACTION_IS_UPDATING;\n\t\tvar fn = /** @type {Function} */ (reaction.fn);\n\t\tvar result = fn();\n\t\treaction.f |= REACTION_RAN;\n\t\tvar deps = reaction.deps;\n\n\t\t// Don't remove reactions during fork;\n\t\t// they must remain for when fork is discarded\n\t\tvar is_fork = current_batch?.is_fork;\n\n\t\tif (new_deps !== null) {\n\t\t\tvar i;\n\n\t\t\tif (!is_fork) {\n\t\t\t\tremove_reactions(reaction, skipped_deps);\n\t\t\t}\n\n\t\t\tif (deps !== null && skipped_deps > 0) {\n\t\t\t\tdeps.length = skipped_deps + new_deps.length;\n\t\t\t\tfor (i = 0; i < new_deps.length; i++) {\n\t\t\t\t\tdeps[skipped_deps + i] = new_deps[i];\n\t\t\t\t}\n\t\t\t} else {\n\t\t\t\treaction.deps = deps = new_deps;\n\t\t\t}\n\n\t\t\tif (effect_tracking() && (reaction.f & CONNECTED) !== 0) {\n\t\t\t\tfor (i = skipped_deps; i < deps.length; i++) {\n\t\t\t\t\t(deps[i].reactions ??= []).push(reaction);\n\t\t\t\t}\n\t\t\t}\n\t\t} else if (!is_fork && deps !== null && skipped_deps < deps.length) {\n\t\t\tremove_reactions(reaction, skipped_deps);\n\t\t\tdeps.length = skipped_deps;\n\t\t}\n\n\t\t// If we're inside an effect and we have untracked writes, then we need to\n\t\t// ensure that if any of those untracked writes result in re-invalidation\n\t\t// of the current effect, then that happens accordingly\n\t\tif (\n\t\t\tis_runes() &&\n\t\t\tuntracked_writes !== null &&\n\t\t\t!untracking &&\n\t\t\tdeps !== null &&\n\t\t\t(reaction.f & (DERIVED | MAYBE_DIRTY | DIRTY)) === 0\n\t\t) {\n\t\t\tfor (i = 0; i < /** @type {Source[]} */ (untracked_writes).length; i++) {\n\t\t\t\tschedule_possible_effect_self_invalidation(\n\t\t\t\t\tuntracked_writes[i],\n\t\t\t\t\t/** @type {Effect} */ (reaction)\n\t\t\t\t);\n\t\t\t}\n\t\t}\n\n\t\t// If we are returning to an previous reaction then\n\t\t// we need to increment the read version to ensure that\n\t\t// any dependencies in this reaction aren't marked with\n\t\t// the same version\n\t\tif (previous_reaction !== null && previous_reaction !== reaction) {\n\t\t\tread_version++;\n\n\t\t\t// update the `rv` of the previous reaction's deps — both existing and new —\n\t\t\t// so that they are not added again\n\t\t\tif (previous_reaction.deps !== null) {\n\t\t\t\tfor (let i = 0; i < previous_skipped_deps; i += 1) {\n\t\t\t\t\tprevious_reaction.deps[i].rv = read_version;\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tif (previous_deps !== null) {\n\t\t\t\tfor (const dep of previous_deps) {\n\t\t\t\t\tdep.rv = read_version;\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tif (untracked_writes !== null) {\n\t\t\t\tif (previous_untracked_writes === null) {\n\t\t\t\t\tprevious_untracked_writes = untracked_writes;\n\t\t\t\t} else {\n\t\t\t\t\tprevious_untracked_writes.push(.../** @type {Source[]} */ (untracked_writes));\n\t\t\t\t}\n\t\t\t}\n\t\t}\n\n\t\tif ((reaction.f & ERROR_VALUE) !== 0) {\n\t\t\treaction.f ^= ERROR_VALUE;\n\t\t}\n\n\t\treturn result;\n\t} catch (error) {\n\t\treturn handle_error(error);\n\t} finally {\n\t\treaction.f ^= REACTION_IS_UPDATING;\n\t\tnew_deps = previous_deps;\n\t\tskipped_deps = previous_skipped_deps;\n\t\tuntracked_writes = previous_untracked_writes;\n\t\tactive_reaction = previous_reaction;\n\t\tcurrent_sources = previous_sources;\n\t\tset_component_context(previous_component_context);\n\t\tuntracking = previous_untracking;\n\t\tupdate_version = previous_update_version;\n\t}\n}\n\n/**\n * @template V\n * @param {Reaction} signal\n * @param {Value} dependency\n * @returns {void}\n */\nfunction remove_reaction(signal, dependency) {\n\tlet reactions = dependency.reactions;\n\tif (reactions !== null) {\n\t\tvar index = index_of.call(reactions, signal);\n\t\tif (index !== -1) {\n\t\t\tvar new_length = reactions.length - 1;\n\t\t\tif (new_length === 0) {\n\t\t\t\treactions = dependency.reactions = null;\n\t\t\t} else {\n\t\t\t\t// Swap with last element and then remove.\n\t\t\t\treactions[index] = reactions[new_length];\n\t\t\t\treactions.pop();\n\t\t\t}\n\t\t}\n\t}\n\n\t// If the derived has no reactions, then we can disconnect it from the graph,\n\t// allowing it to either reconnect in the future, or be GC'd by the VM.\n\tif (\n\t\treactions === null &&\n\t\t(dependency.f & DERIVED) !== 0 &&\n\t\t// Destroying a child effect while updating a parent effect can cause a dependency to appear\n\t\t// to be unused, when in fact it is used by the currently-updating parent. Checking `new_deps`\n\t\t// allows us to skip the expensive work of disconnecting and immediately reconnecting it\n\t\t(new_deps === null || !includes.call(new_deps, dependency))\n\t) {\n\t\tvar derived = /** @type {Derived} */ (dependency);\n\n\t\t// If we are working with a derived that is owned by an effect, then mark it as being\n\t\t// disconnected and remove the mark flag, as it cannot be reliably removed otherwise\n\t\tif ((derived.f & CONNECTED) !== 0) {\n\t\t\tderived.f ^= CONNECTED;\n\t\t\tderived.f &= ~WAS_MARKED;\n\t\t}\n\n\t\t// In a fork it's possible that a derived is executed and gets reactions, then commits, but is\n\t\t// never re-executed. This is possible when the derived is only executed once in the context\n\t\t// of a new branch which happens before fork.commit() runs. In this case, the derived still has\n\t\t// UNINITIALIZED as its value, and then when it's loosing its reactions we need to ensure it stays\n\t\t// DIRTY so it is reexecuted once someone wants its value again.\n\t\tif (derived.v !== UNINITIALIZED) {\n\t\t\tupdate_derived_status(derived);\n\t\t}\n\n\t\t// freeze any effects inside this derived\n\t\tfreeze_derived_effects(derived);\n\n\t\t// Disconnect any reactions owned by this reaction\n\t\tremove_reactions(derived, 0);\n\t}\n}\n\n/**\n * @param {Reaction} signal\n * @param {number} start_index\n * @returns {void}\n */\nexport function remove_reactions(signal, start_index) {\n\tvar dependencies = signal.deps;\n\tif (dependencies === null) return;\n\n\tfor (var i = start_index; i < dependencies.length; i++) {\n\t\tremove_reaction(signal, dependencies[i]);\n\t}\n}\n\n/**\n * @param {Effect} effect\n * @returns {void}\n */\nexport function update_effect(effect) {\n\tvar flags = effect.f;\n\n\tif ((flags & DESTROYED) !== 0) {\n\t\treturn;\n\t}\n\n\tset_signal_status(effect, CLEAN);\n\n\tvar previous_effect = active_effect;\n\tvar was_updating_effect = is_updating_effect;\n\n\tactive_effect = effect;\n\tis_updating_effect = true;\n\n\tif (DEV) {\n\t\tvar previous_component_fn = dev_current_component_function;\n\t\tset_dev_current_component_function(effect.component_function);\n\t\tvar previous_stack = /** @type {any} */ (dev_stack);\n\t\t// only block effects have a dev stack, keep the current one otherwise\n\t\tset_dev_stack(effect.dev_stack ?? dev_stack);\n\t}\n\n\ttry {\n\t\tif ((flags & (BLOCK_EFFECT | MANAGED_EFFECT)) !== 0) {\n\t\t\tdestroy_block_effect_children(effect);\n\t\t} else {\n\t\t\tdestroy_effect_children(effect);\n\t\t}\n\n\t\texecute_effect_teardown(effect);\n\t\tvar teardown = update_reaction(effect);\n\t\teffect.teardown = typeof teardown === 'function' ? teardown : null;\n\t\teffect.wv = write_version;\n\n\t\t// In DEV, increment versions of any sources that were written to during the effect,\n\t\t// so that they are correctly marked as dirty when the effect re-runs\n\t\tif (DEV && tracing_mode_flag && (effect.f & DIRTY) !== 0 && effect.deps !== null) {\n\t\t\tfor (var dep of effect.deps) {\n\t\t\t\tif (dep.set_during_effect) {\n\t\t\t\t\tdep.wv = increment_write_version();\n\t\t\t\t\tdep.set_during_effect = false;\n\t\t\t\t}\n\t\t\t}\n\t\t}\n\t} finally {\n\t\tis_updating_effect = was_updating_effect;\n\t\tactive_effect = previous_effect;\n\n\t\tif (DEV) {\n\t\t\tset_dev_current_component_function(previous_component_fn);\n\t\t\tset_dev_stack(previous_stack);\n\t\t}\n\t}\n}\n\n/**\n * Returns a promise that resolves once any pending state changes have been applied.\n * @returns {Promise}\n */\nexport async function tick() {\n\tif (async_mode_flag) {\n\t\treturn new Promise((f) => {\n\t\t\t// Race them against each other - in almost all cases requestAnimationFrame will fire first,\n\t\t\t// but e.g. in case the window is not focused or a view transition happens, requestAnimationFrame\n\t\t\t// will be delayed and setTimeout helps us resolve fast enough in that case\n\t\t\trequestAnimationFrame(() => f());\n\t\t\tsetTimeout(() => f());\n\t\t});\n\t}\n\n\tawait Promise.resolve();\n\n\t// By calling flushSync we guarantee that any pending state changes are applied after one tick.\n\t// TODO look into whether we can make flushing subsequent updates synchronously in the future.\n\tflushSync();\n}\n\n/**\n * Returns a promise that resolves once any state changes, and asynchronous work resulting from them,\n * have resolved and the DOM has been updated\n * @returns {Promise}\n * @since 5.36\n */\nexport function settled() {\n\treturn Batch.ensure().settled();\n}\n\n/**\n * @template V\n * @param {Value} signal\n * @returns {V}\n */\nexport function get(signal) {\n\tvar flags = signal.f;\n\tvar is_derived = (flags & DERIVED) !== 0;\n\n\tcaptured_signals?.add(signal);\n\n\t// Register the dependency on the current reaction signal.\n\tif (active_reaction !== null && !untracking) {\n\t\t// if we're in a derived that is being read inside an _async_ derived,\n\t\t// it's possible that the effect was already destroyed. In this case,\n\t\t// we don't add the dependency, because that would create a memory leak\n\t\tvar destroyed = active_effect !== null && (active_effect.f & DESTROYED) !== 0;\n\n\t\tif (!destroyed && (current_sources === null || !includes.call(current_sources, signal))) {\n\t\t\tvar deps = active_reaction.deps;\n\n\t\t\tif ((active_reaction.f & REACTION_IS_UPDATING) !== 0) {\n\t\t\t\t// we're in the effect init/update cycle\n\t\t\t\tif (signal.rv < read_version) {\n\t\t\t\t\tsignal.rv = read_version;\n\n\t\t\t\t\t// If the signal is accessing the same dependencies in the same\n\t\t\t\t\t// order as it did last time, increment `skipped_deps`\n\t\t\t\t\t// rather than updating `new_deps`, which creates GC cost\n\t\t\t\t\tif (new_deps === null && deps !== null && deps[skipped_deps] === signal) {\n\t\t\t\t\t\tskipped_deps++;\n\t\t\t\t\t} else if (new_deps === null) {\n\t\t\t\t\t\tnew_deps = [signal];\n\t\t\t\t\t} else {\n\t\t\t\t\t\tnew_deps.push(signal);\n\t\t\t\t\t}\n\t\t\t\t}\n\t\t\t} else {\n\t\t\t\t// we're adding a dependency outside the init/update cycle\n\t\t\t\t// (i.e. after an `await`)\n\t\t\t\t(active_reaction.deps ??= []).push(signal);\n\n\t\t\t\tvar reactions = signal.reactions;\n\n\t\t\t\tif (reactions === null) {\n\t\t\t\t\tsignal.reactions = [active_reaction];\n\t\t\t\t} else if (!includes.call(reactions, active_reaction)) {\n\t\t\t\t\treactions.push(active_reaction);\n\t\t\t\t}\n\t\t\t}\n\t\t}\n\t}\n\n\tif (DEV) {\n\t\tif (\n\t\t\t!untracking &&\n\t\t\treactivity_loss_tracker &&\n\t\t\t!reactivity_loss_tracker.warned &&\n\t\t\t(reactivity_loss_tracker.effect.f & REACTION_IS_UPDATING) === 0 &&\n\t\t\t!reactivity_loss_tracker.effect_deps.has(signal)\n\t\t) {\n\t\t\treactivity_loss_tracker.warned = true;\n\n\t\t\tw.await_reactivity_loss(/** @type {string} */ (signal.label));\n\n\t\t\tvar trace = get_error('traced at');\n\t\t\t// eslint-disable-next-line no-console\n\t\t\tif (trace) console.warn(trace);\n\t\t}\n\n\t\trecent_async_deriveds.delete(signal);\n\n\t\tif (\n\t\t\ttracing_mode_flag &&\n\t\t\t!untracking &&\n\t\t\ttracing_expressions !== null &&\n\t\t\tactive_reaction !== null &&\n\t\t\ttracing_expressions.reaction === active_reaction\n\t\t) {\n\t\t\t// Used when mapping state between special blocks like `each`\n\t\t\tif (signal.trace) {\n\t\t\t\tsignal.trace();\n\t\t\t} else {\n\t\t\t\ttrace = get_error('traced at');\n\n\t\t\t\tif (trace) {\n\t\t\t\t\tvar entry = tracing_expressions.entries.get(signal);\n\n\t\t\t\t\tif (entry === undefined) {\n\t\t\t\t\t\tentry = { traces: [] };\n\t\t\t\t\t\ttracing_expressions.entries.set(signal, entry);\n\t\t\t\t\t}\n\n\t\t\t\t\tvar last = entry.traces[entry.traces.length - 1];\n\n\t\t\t\t\t// traces can be duplicated, e.g. by `snapshot` invoking both\n\t\t\t\t\t// both `getOwnPropertyDescriptor` and `get` traps at once\n\t\t\t\t\tif (trace.stack !== last?.stack) {\n\t\t\t\t\t\tentry.traces.push(trace);\n\t\t\t\t\t}\n\t\t\t\t}\n\t\t\t}\n\t\t}\n\t}\n\n\tif (is_destroying_effect && old_values.has(signal)) {\n\t\treturn old_values.get(signal);\n\t}\n\n\tif (is_derived) {\n\t\tvar derived = /** @type {Derived} */ (signal);\n\n\t\tif (is_destroying_effect) {\n\t\t\tvar value = derived.v;\n\n\t\t\t// if the derived is dirty and has reactions, or depends on the values that just changed, re-execute\n\t\t\t// (a derived can be maybe_dirty due to the effect destroy removing its last reaction)\n\t\t\tif (\n\t\t\t\t((derived.f & CLEAN) === 0 && derived.reactions !== null) ||\n\t\t\t\tdepends_on_old_values(derived)\n\t\t\t) {\n\t\t\t\tvalue = execute_derived(derived);\n\t\t\t}\n\n\t\t\told_values.set(derived, value);\n\n\t\t\treturn value;\n\t\t}\n\n\t\t// connect disconnected deriveds if we are reading them inside an effect,\n\t\t// or inside another derived that is already connected\n\t\tvar should_connect =\n\t\t\t(derived.f & CONNECTED) === 0 &&\n\t\t\t!untracking &&\n\t\t\tactive_reaction !== null &&\n\t\t\t(is_updating_effect || (active_reaction.f & CONNECTED) !== 0);\n\n\t\tvar is_new = (derived.f & REACTION_RAN) === 0;\n\n\t\tif (is_dirty(derived)) {\n\t\t\tif (should_connect) {\n\t\t\t\t// set the flag before `update_derived`, so that the derived\n\t\t\t\t// is added as a reaction to its dependencies\n\t\t\t\tderived.f |= CONNECTED;\n\t\t\t}\n\n\t\t\tupdate_derived(derived);\n\t\t}\n\n\t\tif (should_connect && !is_new) {\n\t\t\tunfreeze_derived_effects(derived);\n\t\t\treconnect(derived);\n\t\t}\n\t}\n\n\tif (batch_values?.has(signal)) {\n\t\treturn batch_values.get(signal);\n\t}\n\n\tif ((signal.f & ERROR_VALUE) !== 0) {\n\t\tthrow signal.v;\n\t}\n\n\treturn signal.v;\n}\n\n/**\n * (Re)connect a disconnected derived, so that it is notified\n * of changes in `mark_reactions`\n * @param {Derived} derived\n */\nfunction reconnect(derived) {\n\tderived.f |= CONNECTED;\n\n\tif (derived.deps === null) return;\n\n\tfor (const dep of derived.deps) {\n\t\t(dep.reactions ??= []).push(derived);\n\n\t\tif ((dep.f & DERIVED) !== 0 && (dep.f & CONNECTED) === 0) {\n\t\t\tunfreeze_derived_effects(/** @type {Derived} */ (dep));\n\t\t\treconnect(/** @type {Derived} */ (dep));\n\t\t}\n\t}\n}\n\n/** @param {Derived} derived */\nfunction depends_on_old_values(derived) {\n\tif (derived.v === UNINITIALIZED) return true; // we don't know, so assume the worst\n\tif (derived.deps === null) return false;\n\n\tfor (const dep of derived.deps) {\n\t\tif (old_values.has(dep)) {\n\t\t\treturn true;\n\t\t}\n\n\t\tif ((dep.f & DERIVED) !== 0 && depends_on_old_values(/** @type {Derived} */ (dep))) {\n\t\t\treturn true;\n\t\t}\n\t}\n\n\treturn false;\n}\n\n/**\n * Like `get`, but checks for `undefined`. Used for `var` declarations because they can be accessed before being declared\n * @template V\n * @param {Value | undefined} signal\n * @returns {V | undefined}\n */\nexport function safe_get(signal) {\n\treturn signal && get(signal);\n}\n\n/**\n * When used inside a [`$derived`](https://svelte.dev/docs/svelte/$derived) or [`$effect`](https://svelte.dev/docs/svelte/$effect),\n * any state read inside `fn` will not be treated as a dependency.\n *\n * ```ts\n * $effect(() => {\n * // this will run when `data` changes, but not when `time` changes\n * save(data, {\n * timestamp: untrack(() => time)\n * });\n * });\n * ```\n * @template T\n * @param {() => T} fn\n * @returns {T}\n */\nexport function untrack(fn) {\n\tvar previous_untracking = untracking;\n\ttry {\n\t\tuntracking = true;\n\t\treturn fn();\n\t} finally {\n\t\tuntracking = previous_untracking;\n\t}\n}\n\n/**\n * Possibly traverse an object and read all its properties so that they're all reactive in case this is `$state`.\n * Does only check first level of an object for performance reasons (heuristic should be good for 99% of all cases).\n * @param {any} value\n * @returns {void}\n */\nexport function deep_read_state(value) {\n\tif (typeof value !== 'object' || !value || value instanceof EventTarget) {\n\t\treturn;\n\t}\n\n\tif (STATE_SYMBOL in value) {\n\t\tdeep_read(value);\n\t} else if (!Array.isArray(value)) {\n\t\tfor (let key in value) {\n\t\t\tconst prop = value[key];\n\t\t\tif (typeof prop === 'object' && prop && STATE_SYMBOL in prop) {\n\t\t\t\tdeep_read(prop);\n\t\t\t}\n\t\t}\n\t}\n}\n\n/**\n * Deeply traverse an object and read all its properties\n * so that they're all reactive in case this is `$state`\n * @param {any} value\n * @param {Set} visited\n * @returns {void}\n */\nexport function deep_read(value, visited = new Set()) {\n\tif (\n\t\ttypeof value === 'object' &&\n\t\tvalue !== null &&\n\t\t// We don't want to traverse DOM elements\n\t\t!(value instanceof EventTarget) &&\n\t\t!visited.has(value)\n\t) {\n\t\tvisited.add(value);\n\t\t// When working with a possible SvelteDate, this\n\t\t// will ensure we capture changes to it.\n\t\tif (value instanceof Date) {\n\t\t\tvalue.getTime();\n\t\t}\n\t\tfor (let key in value) {\n\t\t\ttry {\n\t\t\t\tdeep_read(value[key], visited);\n\t\t\t} catch (e) {\n\t\t\t\t// continue\n\t\t\t}\n\t\t}\n\t\tconst proto = get_prototype_of(value);\n\t\tif (\n\t\t\tproto !== Object.prototype &&\n\t\t\tproto !== Array.prototype &&\n\t\t\tproto !== Map.prototype &&\n\t\t\tproto !== Set.prototype &&\n\t\t\tproto !== Date.prototype\n\t\t) {\n\t\t\tconst descriptors = get_descriptors(proto);\n\t\t\tfor (let key in descriptors) {\n\t\t\t\tconst get = descriptors[key].get;\n\t\t\t\tif (get) {\n\t\t\t\t\ttry {\n\t\t\t\t\t\tget.call(value);\n\t\t\t\t\t} catch (e) {\n\t\t\t\t\t\t// continue\n\t\t\t\t\t}\n\t\t\t\t}\n\t\t\t}\n\t\t}\n\t}\n}\n","import { teardown } from '../../reactivity/effects.js';\nimport { define_property } from '../../../shared/utils.js';\nimport { hydrating } from '../hydration.js';\nimport { queue_micro_task } from '../task.js';\nimport { FILENAME } from '../../../../constants.js';\nimport * as w from '../../warnings.js';\nimport {\n\tactive_effect,\n\tactive_reaction,\n\tset_active_effect,\n\tset_active_reaction\n} from '../../runtime.js';\nimport { without_reactive_context } from './bindings/shared.js';\n\n/**\n * Used on elements, as a map of event type -> event handler,\n * and on events themselves to track which element handled an event\n */\nexport const event_symbol = Symbol('events');\n\n/** @type {Set} */\nexport const all_registered_events = new Set();\n\n/** @type {Set<(events: Array) => void>} */\nexport const root_event_handles = new Set();\n\n/**\n * SSR adds onload and onerror attributes to catch those events before the hydration.\n * This function detects those cases, removes the attributes and replays the events.\n * @param {HTMLElement} dom\n */\nexport function replay_events(dom) {\n\tif (!hydrating) return;\n\n\tdom.removeAttribute('onload');\n\tdom.removeAttribute('onerror');\n\t// @ts-expect-error\n\tconst event = dom.__e;\n\tif (event !== undefined) {\n\t\t// @ts-expect-error\n\t\tdom.__e = undefined;\n\t\tqueueMicrotask(() => {\n\t\t\tif (dom.isConnected) {\n\t\t\t\tdom.dispatchEvent(event);\n\t\t\t}\n\t\t});\n\t}\n}\n\n/**\n * @param {string} event_name\n * @param {EventTarget} dom\n * @param {EventListener} [handler]\n * @param {AddEventListenerOptions} [options]\n */\nexport function create_event(event_name, dom, handler, options = {}) {\n\t/**\n\t * @this {EventTarget}\n\t */\n\tfunction target_handler(/** @type {Event} */ event) {\n\t\tif (!options.capture) {\n\t\t\t// Only call in the bubble phase, else delegated events would be called before the capturing events\n\t\t\thandle_event_propagation.call(dom, event);\n\t\t}\n\t\tif (!event.cancelBubble) {\n\t\t\treturn without_reactive_context(() => {\n\t\t\t\treturn handler?.call(this, event);\n\t\t\t});\n\t\t}\n\t}\n\n\t// Chrome has a bug where pointer events don't work when attached to a DOM element that has been cloned\n\t// with cloneNode() and the DOM element is disconnected from the document. To ensure the event works, we\n\t// defer the attachment till after it's been appended to the document. TODO: remove this once Chrome fixes\n\t// this bug. The same applies to wheel events and touch events.\n\tif (\n\t\tevent_name.startsWith('pointer') ||\n\t\tevent_name.startsWith('touch') ||\n\t\tevent_name === 'wheel'\n\t) {\n\t\tqueue_micro_task(() => {\n\t\t\tdom.addEventListener(event_name, target_handler, options);\n\t\t});\n\t} else {\n\t\tdom.addEventListener(event_name, target_handler, options);\n\t}\n\n\treturn target_handler;\n}\n\n/**\n * Attaches an event handler to an element and returns a function that removes the handler. Using this\n * rather than `addEventListener` will preserve the correct order relative to handlers added declaratively\n * (with attributes like `onclick`), which use event delegation for performance reasons\n *\n * @param {EventTarget} element\n * @param {string} type\n * @param {EventListener} handler\n * @param {AddEventListenerOptions} [options]\n */\nexport function on(element, type, handler, options = {}) {\n\tvar target_handler = create_event(type, element, handler, options);\n\n\treturn () => {\n\t\telement.removeEventListener(type, target_handler, options);\n\t};\n}\n\n/**\n * @param {string} event_name\n * @param {Element} dom\n * @param {EventListener} [handler]\n * @param {boolean} [capture]\n * @param {boolean} [passive]\n * @returns {void}\n */\nexport function event(event_name, dom, handler, capture, passive) {\n\tvar options = { capture, passive };\n\tvar target_handler = create_event(event_name, dom, handler, options);\n\n\tif (\n\t\tdom === document.body ||\n\t\t// @ts-ignore\n\t\tdom === window ||\n\t\t// @ts-ignore\n\t\tdom === document ||\n\t\t// Firefox has quirky behavior, it can happen that we still get \"canplay\" events when the element is already removed\n\t\tdom instanceof HTMLMediaElement\n\t) {\n\t\tteardown(() => {\n\t\t\tdom.removeEventListener(event_name, target_handler, options);\n\t\t});\n\t}\n}\n\n/**\n * @param {string} event_name\n * @param {Element} element\n * @param {EventListener} [handler]\n * @returns {void}\n */\nexport function delegated(event_name, element, handler) {\n\t// @ts-expect-error\n\t(element[event_symbol] ??= {})[event_name] = handler;\n}\n\n/**\n * @param {Array} events\n * @returns {void}\n */\nexport function delegate(events) {\n\tfor (var i = 0; i < events.length; i++) {\n\t\tall_registered_events.add(events[i]);\n\t}\n\n\tfor (var fn of root_event_handles) {\n\t\tfn(events);\n\t}\n}\n\n// used to store the reference to the currently propagated event\n// to prevent garbage collection between microtasks in Firefox\n// If the event object is GCed too early, the expando __root property\n// set on the event object is lost, causing the event delegation\n// to process the event twice\nlet last_propagated_event = null;\n\n/**\n * @this {EventTarget}\n * @param {Event} event\n * @returns {void}\n */\nexport function handle_event_propagation(event) {\n\tvar handler_element = this;\n\tvar owner_document = /** @type {Node} */ (handler_element).ownerDocument;\n\tvar event_name = event.type;\n\tvar path = event.composedPath?.() || [];\n\tvar current_target = /** @type {null | Element} */ (path[0] || event.target);\n\n\tlast_propagated_event = event;\n\n\t// composedPath contains list of nodes the event has propagated through.\n\t// We check `event_symbol` to skip all nodes below it in case this is a\n\t// parent of the `event_symbol` node, which indicates that there's nested\n\t// mounted apps. In this case we don't want to trigger events multiple times.\n\tvar path_idx = 0;\n\n\t// the `last_propagated_event === event` check is redundant, but\n\t// without it the variable will be DCE'd and things will\n\t// fail mysteriously in Firefox\n\t// @ts-expect-error is added below\n\tvar handled_at = last_propagated_event === event && event[event_symbol];\n\n\tif (handled_at) {\n\t\tvar at_idx = path.indexOf(handled_at);\n\t\tif (\n\t\t\tat_idx !== -1 &&\n\t\t\t(handler_element === document || handler_element === /** @type {any} */ (window))\n\t\t) {\n\t\t\t// This is the fallback document listener or a window listener, but the event was already handled\n\t\t\t// -> ignore, but set handle_at to document/window so that we're resetting the event\n\t\t\t// chain in case someone manually dispatches the same event object again.\n\t\t\t// @ts-expect-error\n\t\t\tevent[event_symbol] = handler_element;\n\t\t\treturn;\n\t\t}\n\n\t\t// We're deliberately not skipping if the index is higher, because\n\t\t// someone could create an event programmatically and emit it multiple times,\n\t\t// in which case we want to handle the whole propagation chain properly each time.\n\t\t// (this will only be a false negative if the event is dispatched multiple times and\n\t\t// the fallback document listener isn't reached in between, but that's super rare)\n\t\tvar handler_idx = path.indexOf(handler_element);\n\t\tif (handler_idx === -1) {\n\t\t\t// handle_idx can theoretically be -1 (happened in some JSDOM testing scenarios with an event listener on the window object)\n\t\t\t// so guard against that, too, and assume that everything was handled at this point.\n\t\t\treturn;\n\t\t}\n\n\t\tif (at_idx <= handler_idx) {\n\t\t\tpath_idx = at_idx;\n\t\t}\n\t}\n\n\tcurrent_target = /** @type {Element} */ (path[path_idx] || event.target);\n\t// there can only be one delegated event per element, and we either already handled the current target,\n\t// or this is the very first target in the chain which has a non-delegated listener, in which case it's safe\n\t// to handle a possible delegated event on it later (through the root delegation listener for example).\n\tif (current_target === handler_element) return;\n\n\t// Proxy currentTarget to correct target\n\tdefine_property(event, 'currentTarget', {\n\t\tconfigurable: true,\n\t\tget() {\n\t\t\treturn current_target || owner_document;\n\t\t}\n\t});\n\n\t// This started because of Chromium issue https://chromestatus.com/feature/5128696823545856,\n\t// where removal or moving of of the DOM can cause sync `blur` events to fire, which can cause logic\n\t// to run inside the current `active_reaction`, which isn't what we want at all. However, on reflection,\n\t// it's probably best that all event handled by Svelte have this behaviour, as we don't really want\n\t// an event handler to run in the context of another reaction or effect.\n\tvar previous_reaction = active_reaction;\n\tvar previous_effect = active_effect;\n\tset_active_reaction(null);\n\tset_active_effect(null);\n\n\ttry {\n\t\t/**\n\t\t * @type {unknown}\n\t\t */\n\t\tvar throw_error;\n\t\t/**\n\t\t * @type {unknown[]}\n\t\t */\n\t\tvar other_errors = [];\n\n\t\twhile (current_target !== null) {\n\t\t\t/** @type {null | Element} */\n\t\t\tvar parent_element =\n\t\t\t\tcurrent_target.assignedSlot ||\n\t\t\t\tcurrent_target.parentNode ||\n\t\t\t\t/** @type {any} */ (current_target).host ||\n\t\t\t\tnull;\n\n\t\t\ttry {\n\t\t\t\t// @ts-expect-error\n\t\t\t\tvar delegated = current_target[event_symbol]?.[event_name];\n\n\t\t\t\tif (\n\t\t\t\t\tdelegated != null &&\n\t\t\t\t\t(!(/** @type {any} */ (current_target).disabled) ||\n\t\t\t\t\t\t// DOM could've been updated already by the time this is reached, so we check this as well\n\t\t\t\t\t\t// -> the target could not have been disabled because it emits the event in the first place\n\t\t\t\t\t\tevent.target === current_target)\n\t\t\t\t) {\n\t\t\t\t\tdelegated.call(current_target, event);\n\t\t\t\t}\n\t\t\t} catch (error) {\n\t\t\t\tif (throw_error) {\n\t\t\t\t\tother_errors.push(error);\n\t\t\t\t} else {\n\t\t\t\t\tthrow_error = error;\n\t\t\t\t}\n\t\t\t}\n\t\t\tif (event.cancelBubble || parent_element === handler_element || parent_element === null) {\n\t\t\t\tbreak;\n\t\t\t}\n\t\t\tcurrent_target = parent_element;\n\t\t}\n\n\t\tif (throw_error) {\n\t\t\tfor (let error of other_errors) {\n\t\t\t\t// Throw the rest of the errors, one-by-one on a microtask\n\t\t\t\tqueueMicrotask(() => {\n\t\t\t\t\tthrow error;\n\t\t\t\t});\n\t\t\t}\n\t\t\tthrow throw_error;\n\t\t}\n\t} finally {\n\t\t// @ts-expect-error is used above\n\t\tevent[event_symbol] = handler_element;\n\t\t// @ts-ignore remove proxy on currentTarget\n\t\tdelete event.currentTarget;\n\t\tset_active_reaction(previous_reaction);\n\t\tset_active_effect(previous_effect);\n\t}\n}\n\n/**\n * In dev, warn if an event handler is not a function, as it means the\n * user probably called the handler or forgot to add a `() =>`\n * @param {() => (event: Event, ...args: any) => void} thunk\n * @param {EventTarget} element\n * @param {[Event, ...any]} args\n * @param {any} component\n * @param {[number, number]} [loc]\n * @param {boolean} [remove_parens]\n */\nexport function apply(\n\tthunk,\n\telement,\n\targs,\n\tcomponent,\n\tloc,\n\thas_side_effects = false,\n\tremove_parens = false\n) {\n\tlet handler;\n\tlet error;\n\n\ttry {\n\t\thandler = thunk();\n\t} catch (e) {\n\t\terror = e;\n\t}\n\n\tif (typeof handler !== 'function' && (has_side_effects || handler != null || error)) {\n\t\tconst filename = component?.[FILENAME];\n\t\tconst location = loc ? ` at ${filename}:${loc[0]}:${loc[1]}` : ` in ${filename}`;\n\t\tconst phase = args[0]?.eventPhase < Event.BUBBLING_PHASE ? 'capture' : '';\n\t\tconst event_name = args[0]?.type + phase;\n\t\tconst description = `\\`${event_name}\\` handler${location}`;\n\t\tconst suggestion = remove_parens ? 'remove the trailing `()`' : 'add a leading `() =>`';\n\n\t\tw.event_handler_invalid(description, suggestion);\n\n\t\tif (error) {\n\t\t\tthrow error;\n\t\t}\n\t}\n\thandler?.apply(element, args);\n}\n","import { create_element } from './operations.js';\n\nconst policy =\n\t// We gotta write it like this because after downleveling the pure comment may end up in the wrong location\n\tglobalThis?.window?.trustedTypes &&\n\t/* @__PURE__ */ globalThis.window.trustedTypes.createPolicy('svelte-trusted-html', {\n\t\t/** @param {string} html */\n\t\tcreateHTML: (html) => {\n\t\t\treturn html;\n\t\t}\n\t});\n\n/** @param {string} html */\nexport function create_trusted_html(html) {\n\treturn /** @type {string} */ (policy?.createHTML(html) ?? html);\n}\n\n/**\n * @param {string} html\n */\nexport function create_fragment_from_html(html) {\n\tvar elem = create_element('template');\n\telem.innerHTML = create_trusted_html(html.replaceAll('', '')); // XHTML compliance\n\treturn elem.content;\n}\n","/** @import { Effect, EffectNodes, TemplateNode } from '#client' */\n/** @import { TemplateStructure } from './types' */\nimport { hydrate_next, hydrate_node, hydrating, set_hydrate_node } from './hydration.js';\nimport {\n\tcreate_text,\n\tget_first_child,\n\tget_next_sibling,\n\tis_firefox,\n\tcreate_element,\n\tcreate_fragment,\n\tcreate_comment,\n\tset_attribute,\n\tmerge_text_nodes\n} from './operations.js';\nimport { create_fragment_from_html } from './reconciler.js';\nimport { active_effect } from '../runtime.js';\nimport {\n\tNAMESPACE_MATHML,\n\tNAMESPACE_SVG,\n\tTEMPLATE_FRAGMENT,\n\tTEMPLATE_USE_IMPORT_NODE,\n\tTEMPLATE_USE_MATHML,\n\tTEMPLATE_USE_SVG\n} from '../../../constants.js';\nimport {\n\tCOMMENT_NODE,\n\tDOCUMENT_FRAGMENT_NODE,\n\tIS_XHTML,\n\tREACTION_RAN,\n\tTEXT_NODE\n} from '#client/constants';\n\nconst TEMPLATE_TAG = IS_XHTML ? 'template' : 'TEMPLATE';\nconst SCRIPT_TAG = IS_XHTML ? 'script' : 'SCRIPT';\n\n/**\n * @param {TemplateNode} start\n * @param {TemplateNode | null} end\n */\nexport function assign_nodes(start, end) {\n\tvar effect = /** @type {Effect} */ (active_effect);\n\tif (effect.nodes === null) {\n\t\teffect.nodes = { start, end, a: null, t: null };\n\t}\n}\n\n/**\n * @param {string} content\n * @param {number} flags\n * @returns {() => Node | Node[]}\n */\n/*#__NO_SIDE_EFFECTS__*/\nexport function from_html(content, flags) {\n\tvar is_fragment = (flags & TEMPLATE_FRAGMENT) !== 0;\n\tvar use_import_node = (flags & TEMPLATE_USE_IMPORT_NODE) !== 0;\n\n\t/** @type {Node} */\n\tvar node;\n\n\t/**\n\t * Whether or not the first item is a text/element node. If not, we need to\n\t * create an additional comment node to act as `effect.nodes.start`\n\t */\n\tvar has_start = !content.startsWith('');\n\n\treturn () => {\n\t\tif (hydrating) {\n\t\t\tassign_nodes(hydrate_node, null);\n\t\t\treturn hydrate_node;\n\t\t}\n\n\t\tif (node === undefined) {\n\t\t\tnode = create_fragment_from_html(has_start ? content : '' + content);\n\t\t\tif (!is_fragment) node = /** @type {TemplateNode} */ (get_first_child(node));\n\t\t}\n\n\t\tvar clone = /** @type {TemplateNode} */ (\n\t\t\tuse_import_node || is_firefox ? document.importNode(node, true) : node.cloneNode(true)\n\t\t);\n\n\t\tif (is_fragment) {\n\t\t\tvar start = /** @type {TemplateNode} */ (get_first_child(clone));\n\t\t\tvar end = /** @type {TemplateNode} */ (clone.lastChild);\n\n\t\t\tassign_nodes(start, end);\n\t\t} else {\n\t\t\tassign_nodes(clone, clone);\n\t\t}\n\n\t\treturn clone;\n\t};\n}\n\n/**\n * @param {string} content\n * @param {number} flags\n * @param {'svg' | 'math'} ns\n * @returns {() => Node | Node[]}\n */\n/*#__NO_SIDE_EFFECTS__*/\nfunction from_namespace(content, flags, ns = 'svg') {\n\t/**\n\t * Whether or not the first item is a text/element node. If not, we need to\n\t * create an additional comment node to act as `effect.nodes.start`\n\t */\n\tvar has_start = !content.startsWith('');\n\n\tvar is_fragment = (flags & TEMPLATE_FRAGMENT) !== 0;\n\tvar wrapped = `<${ns}>${has_start ? content : '' + content}`;\n\n\t/** @type {Element | DocumentFragment} */\n\tvar node;\n\n\treturn () => {\n\t\tif (hydrating) {\n\t\t\tassign_nodes(hydrate_node, null);\n\t\t\treturn hydrate_node;\n\t\t}\n\n\t\tif (!node) {\n\t\t\tvar fragment = /** @type {DocumentFragment} */ (create_fragment_from_html(wrapped));\n\t\t\tvar root = /** @type {Element} */ (get_first_child(fragment));\n\n\t\t\tif (is_fragment) {\n\t\t\t\tnode = document.createDocumentFragment();\n\t\t\t\twhile (get_first_child(root)) {\n\t\t\t\t\tnode.appendChild(/** @type {TemplateNode} */ (get_first_child(root)));\n\t\t\t\t}\n\t\t\t} else {\n\t\t\t\tnode = /** @type {Element} */ (get_first_child(root));\n\t\t\t}\n\t\t}\n\n\t\tvar clone = /** @type {TemplateNode} */ (node.cloneNode(true));\n\n\t\tif (is_fragment) {\n\t\t\tvar start = /** @type {TemplateNode} */ (get_first_child(clone));\n\t\t\tvar end = /** @type {TemplateNode} */ (clone.lastChild);\n\n\t\t\tassign_nodes(start, end);\n\t\t} else {\n\t\t\tassign_nodes(clone, clone);\n\t\t}\n\n\t\treturn clone;\n\t};\n}\n\n/**\n * @param {string} content\n * @param {number} flags\n */\n/*#__NO_SIDE_EFFECTS__*/\nexport function from_svg(content, flags) {\n\treturn from_namespace(content, flags, 'svg');\n}\n\n/**\n * @param {string} content\n * @param {number} flags\n */\n/*#__NO_SIDE_EFFECTS__*/\nexport function from_mathml(content, flags) {\n\treturn from_namespace(content, flags, 'math');\n}\n\n/**\n * @param {TemplateStructure[]} structure\n * @param {typeof NAMESPACE_SVG | typeof NAMESPACE_MATHML | undefined} [ns]\n */\nfunction fragment_from_tree(structure, ns) {\n\tvar fragment = create_fragment();\n\n\tfor (var item of structure) {\n\t\tif (typeof item === 'string') {\n\t\t\tfragment.append(create_text(item));\n\t\t\tcontinue;\n\t\t}\n\n\t\t// if `preserveComments === true`, comments are represented as `['// ']`\n\t\tif (item === undefined || item[0][0] === '/') {\n\t\t\tfragment.append(create_comment(item ? item[0].slice(3) : ''));\n\t\t\tcontinue;\n\t\t}\n\n\t\tconst [name, attributes, ...children] = item;\n\n\t\tconst namespace = name === 'svg' ? NAMESPACE_SVG : name === 'math' ? NAMESPACE_MATHML : ns;\n\n\t\tvar element = create_element(name, namespace, attributes?.is);\n\n\t\tfor (var key in attributes) {\n\t\t\tset_attribute(element, key, attributes[key]);\n\t\t}\n\n\t\tif (children.length > 0) {\n\t\t\tvar target =\n\t\t\t\telement.nodeName === TEMPLATE_TAG\n\t\t\t\t\t? /** @type {HTMLTemplateElement} */ (element).content\n\t\t\t\t\t: element;\n\n\t\t\ttarget.append(\n\t\t\t\tfragment_from_tree(children, element.nodeName === 'foreignObject' ? undefined : namespace)\n\t\t\t);\n\t\t}\n\n\t\tfragment.append(element);\n\t}\n\n\treturn fragment;\n}\n\n/**\n * @param {TemplateStructure[]} structure\n * @param {number} flags\n * @returns {() => Node | Node[]}\n */\n/*#__NO_SIDE_EFFECTS__*/\nexport function from_tree(structure, flags) {\n\tvar is_fragment = (flags & TEMPLATE_FRAGMENT) !== 0;\n\tvar use_import_node = (flags & TEMPLATE_USE_IMPORT_NODE) !== 0;\n\n\t/** @type {Node} */\n\tvar node;\n\n\treturn () => {\n\t\tif (hydrating) {\n\t\t\tassign_nodes(hydrate_node, null);\n\t\t\treturn hydrate_node;\n\t\t}\n\n\t\tif (node === undefined) {\n\t\t\tconst ns =\n\t\t\t\t(flags & TEMPLATE_USE_SVG) !== 0\n\t\t\t\t\t? NAMESPACE_SVG\n\t\t\t\t\t: (flags & TEMPLATE_USE_MATHML) !== 0\n\t\t\t\t\t\t? NAMESPACE_MATHML\n\t\t\t\t\t\t: undefined;\n\n\t\t\tnode = fragment_from_tree(structure, ns);\n\t\t\tif (!is_fragment) node = /** @type {TemplateNode} */ (get_first_child(node));\n\t\t}\n\n\t\tvar clone = /** @type {TemplateNode} */ (\n\t\t\tuse_import_node || is_firefox ? document.importNode(node, true) : node.cloneNode(true)\n\t\t);\n\n\t\tif (is_fragment) {\n\t\t\tvar start = /** @type {TemplateNode} */ (get_first_child(clone));\n\t\t\tvar end = /** @type {TemplateNode} */ (clone.lastChild);\n\n\t\t\tassign_nodes(start, end);\n\t\t} else {\n\t\t\tassign_nodes(clone, clone);\n\t\t}\n\n\t\treturn clone;\n\t};\n}\n\n/**\n * @param {() => Element | DocumentFragment} fn\n */\nexport function with_script(fn) {\n\treturn () => run_scripts(fn());\n}\n\n/**\n * Creating a document fragment from HTML that contains script tags will not execute\n * the scripts. We need to replace the script tags with new ones so that they are executed.\n * @param {Element | DocumentFragment} node\n * @returns {Node | Node[]}\n */\nfunction run_scripts(node) {\n\t// scripts were SSR'd, in which case they will run\n\tif (hydrating) return node;\n\n\tconst is_fragment = node.nodeType === DOCUMENT_FRAGMENT_NODE;\n\tconst scripts =\n\t\t/** @type {HTMLElement} */ (node).nodeName === SCRIPT_TAG\n\t\t\t? [/** @type {HTMLScriptElement} */ (node)]\n\t\t\t: node.querySelectorAll('script');\n\n\tconst effect = /** @type {Effect & { nodes: EffectNodes }} */ (active_effect);\n\n\tfor (const script of scripts) {\n\t\tconst clone = create_element('script');\n\t\tfor (var attribute of script.attributes) {\n\t\t\tclone.setAttribute(attribute.name, attribute.value);\n\t\t}\n\n\t\tclone.textContent = script.textContent;\n\n\t\t// The script has changed - if it's at the edges, the effect now points at dead nodes\n\t\tif (is_fragment ? node.firstChild === script : node === script) {\n\t\t\teffect.nodes.start = clone;\n\t\t}\n\t\tif (is_fragment ? node.lastChild === script : node === script) {\n\t\t\teffect.nodes.end = clone;\n\t\t}\n\n\t\tscript.replaceWith(clone);\n\t}\n\treturn node;\n}\n\n/**\n * Don't mark this as side-effect-free, hydration needs to walk all nodes\n * @param {any} value\n */\nexport function text(value = '') {\n\tif (!hydrating) {\n\t\tvar t = create_text(value + '');\n\t\tassign_nodes(t, t);\n\t\treturn t;\n\t}\n\n\tvar node = hydrate_node;\n\n\tif (node.nodeType !== TEXT_NODE) {\n\t\t// if an {expression} is empty during SSR, we need to insert an empty text node\n\t\tnode.before((node = create_text()));\n\t\tset_hydrate_node(node);\n\t} else {\n\t\tmerge_text_nodes(/** @type {Text} */ (node));\n\t}\n\n\tassign_nodes(node, node);\n\treturn node;\n}\n\n/**\n * @returns {TemplateNode | DocumentFragment}\n */\nexport function comment() {\n\t// we're not delegating to `template` here for performance reasons\n\tif (hydrating) {\n\t\tassign_nodes(hydrate_node, null);\n\t\treturn hydrate_node;\n\t}\n\n\tvar frag = document.createDocumentFragment();\n\tvar start = document.createComment('');\n\tvar anchor = create_text();\n\tfrag.append(start, anchor);\n\n\tassign_nodes(start, anchor);\n\n\treturn frag;\n}\n\n/**\n * Assign the created (or in hydration mode, traversed) dom elements to the current block\n * and insert the elements into the dom (in client mode).\n * @param {Text | Comment | Element} anchor\n * @param {DocumentFragment | Element} dom\n */\nexport function append(anchor, dom) {\n\tif (hydrating) {\n\t\tvar effect = /** @type {Effect & { nodes: EffectNodes }} */ (active_effect);\n\n\t\t// When hydrating and outer component and an inner component is async, i.e. blocked on a promise,\n\t\t// then by the time the inner resolves we have already advanced to the end of the hydrated nodes\n\t\t// of the parent component. Check for defined for that reason to avoid rewinding the parent's end marker.\n\t\tif ((effect.f & REACTION_RAN) === 0 || effect.nodes.end === null) {\n\t\t\teffect.nodes.end = hydrate_node;\n\t\t}\n\n\t\thydrate_next();\n\t\treturn;\n\t}\n\n\tif (anchor === null) {\n\t\t// edge case — void `` with content\n\t\treturn;\n\t}\n\n\tanchor.before(/** @type {Node} */ (dom));\n}\n\n/**\n * Create (or hydrate) an unique UID for the component instance.\n */\nexport function props_id() {\n\tif (\n\t\thydrating &&\n\t\thydrate_node &&\n\t\thydrate_node.nodeType === COMMENT_NODE &&\n\t\thydrate_node.textContent?.startsWith(`$`)\n\t) {\n\t\tconst id = hydrate_node.textContent.substring(1);\n\t\thydrate_next();\n\t\treturn id;\n\t}\n\n\t// @ts-expect-error This way we ensure the id is unique even across Svelte runtimes\n\t(window.__svelte ??= {}).uid ??= 1;\n\n\t// @ts-expect-error\n\treturn `c${window.__svelte.uid++}`;\n}\n","const regex_return_characters = /\\r/g;\n\n/**\n * @param {string} str\n * @returns {string}\n */\nexport function hash(str) {\n\tstr = str.replace(regex_return_characters, '');\n\tlet hash = 5381;\n\tlet i = str.length;\n\n\twhile (i--) hash = ((hash << 5) - hash) ^ str.charCodeAt(i);\n\treturn (hash >>> 0).toString(36);\n}\n\nconst VOID_ELEMENT_NAMES = [\n\t'area',\n\t'base',\n\t'br',\n\t'col',\n\t'command',\n\t'embed',\n\t'hr',\n\t'img',\n\t'input',\n\t'keygen',\n\t'link',\n\t'meta',\n\t'param',\n\t'source',\n\t'track',\n\t'wbr'\n];\n\n/**\n * Returns `true` if `name` is of a void element\n * @param {string} name\n */\nexport function is_void(name) {\n\treturn VOID_ELEMENT_NAMES.includes(name) || name.toLowerCase() === '!doctype';\n}\n\nconst RESERVED_WORDS = [\n\t'arguments',\n\t'await',\n\t'break',\n\t'case',\n\t'catch',\n\t'class',\n\t'const',\n\t'continue',\n\t'debugger',\n\t'default',\n\t'delete',\n\t'do',\n\t'else',\n\t'enum',\n\t'eval',\n\t'export',\n\t'extends',\n\t'false',\n\t'finally',\n\t'for',\n\t'function',\n\t'if',\n\t'implements',\n\t'import',\n\t'in',\n\t'instanceof',\n\t'interface',\n\t'let',\n\t'new',\n\t'null',\n\t'package',\n\t'private',\n\t'protected',\n\t'public',\n\t'return',\n\t'static',\n\t'super',\n\t'switch',\n\t'this',\n\t'throw',\n\t'true',\n\t'try',\n\t'typeof',\n\t'var',\n\t'void',\n\t'while',\n\t'with',\n\t'yield'\n];\n\n/**\n * Returns `true` if `word` is a reserved JavaScript keyword\n * @param {string} word\n */\nexport function is_reserved(word) {\n\treturn RESERVED_WORDS.includes(word);\n}\n\n/**\n * @param {string} name\n */\nexport function is_capture_event(name) {\n\treturn name.endsWith('capture') && name !== 'gotpointercapture' && name !== 'lostpointercapture';\n}\n\n/** List of Element events that will be delegated */\nconst DELEGATED_EVENTS = [\n\t'beforeinput',\n\t'click',\n\t'change',\n\t'dblclick',\n\t'contextmenu',\n\t'focusin',\n\t'focusout',\n\t'input',\n\t'keydown',\n\t'keyup',\n\t'mousedown',\n\t'mousemove',\n\t'mouseout',\n\t'mouseover',\n\t'mouseup',\n\t'pointerdown',\n\t'pointermove',\n\t'pointerout',\n\t'pointerover',\n\t'pointerup',\n\t'touchend',\n\t'touchmove',\n\t'touchstart'\n];\n\n/**\n * Returns `true` if `event_name` is a delegated event\n * @param {string} event_name\n */\nexport function can_delegate_event(event_name) {\n\treturn DELEGATED_EVENTS.includes(event_name);\n}\n\n/**\n * Attributes that are boolean, i.e. they are present or not present.\n */\nconst DOM_BOOLEAN_ATTRIBUTES = [\n\t'allowfullscreen',\n\t'async',\n\t'autofocus',\n\t'autoplay',\n\t'checked',\n\t'controls',\n\t'default',\n\t'disabled',\n\t'formnovalidate',\n\t'indeterminate',\n\t'inert',\n\t'ismap',\n\t'loop',\n\t'multiple',\n\t'muted',\n\t'nomodule',\n\t'novalidate',\n\t'open',\n\t'playsinline',\n\t'readonly',\n\t'required',\n\t'reversed',\n\t'seamless',\n\t'selected',\n\t'webkitdirectory',\n\t'defer',\n\t'disablepictureinpicture',\n\t'disableremoteplayback'\n];\n\n/**\n * Returns `true` if `name` is a boolean attribute\n * @param {string} name\n */\nexport function is_boolean_attribute(name) {\n\treturn DOM_BOOLEAN_ATTRIBUTES.includes(name);\n}\n\n/**\n * @type {Record}\n * List of attribute names that should be aliased to their property names\n * because they behave differently between setting them as an attribute and\n * setting them as a property.\n */\nconst ATTRIBUTE_ALIASES = {\n\t// no `class: 'className'` because we handle that separately\n\tformnovalidate: 'formNoValidate',\n\tismap: 'isMap',\n\tnomodule: 'noModule',\n\tplaysinline: 'playsInline',\n\treadonly: 'readOnly',\n\tdefaultvalue: 'defaultValue',\n\tdefaultchecked: 'defaultChecked',\n\tsrcobject: 'srcObject',\n\tnovalidate: 'noValidate',\n\tallowfullscreen: 'allowFullscreen',\n\tdisablepictureinpicture: 'disablePictureInPicture',\n\tdisableremoteplayback: 'disableRemotePlayback'\n};\n\n/**\n * @param {string} name\n */\nexport function normalize_attribute(name) {\n\tname = name.toLowerCase();\n\treturn ATTRIBUTE_ALIASES[name] ?? name;\n}\n\nconst DOM_PROPERTIES = [\n\t...DOM_BOOLEAN_ATTRIBUTES,\n\t'formNoValidate',\n\t'isMap',\n\t'noModule',\n\t'playsInline',\n\t'readOnly',\n\t'value',\n\t'volume',\n\t'defaultValue',\n\t'defaultChecked',\n\t'srcObject',\n\t'noValidate',\n\t'allowFullscreen',\n\t'disablePictureInPicture',\n\t'disableRemotePlayback'\n];\n\n/**\n * @param {string} name\n */\nexport function is_dom_property(name) {\n\treturn DOM_PROPERTIES.includes(name);\n}\n\nconst NON_STATIC_PROPERTIES = ['autofocus', 'muted', 'defaultValue', 'defaultChecked'];\n\n/**\n * Returns `true` if the given attribute cannot be set through the template\n * string, i.e. needs some kind of JavaScript handling to work.\n * @param {string} name\n */\nexport function cannot_be_set_statically(name) {\n\treturn NON_STATIC_PROPERTIES.includes(name);\n}\n\n/**\n * Subset of delegated events which should be passive by default.\n * These two are already passive via browser defaults on window, document and body.\n * But since\n * - we're delegating them\n * - they happen often\n * - they apply to mobile which is generally less performant\n * we're marking them as passive by default for other elements, too.\n */\nconst PASSIVE_EVENTS = ['touchstart', 'touchmove'];\n\n/**\n * Returns `true` if `name` is a passive event\n * @param {string} name\n */\nexport function is_passive_event(name) {\n\treturn PASSIVE_EVENTS.includes(name);\n}\n\nconst CONTENT_EDITABLE_BINDINGS = ['textContent', 'innerHTML', 'innerText'];\n\n/** @param {string} name */\nexport function is_content_editable_binding(name) {\n\treturn CONTENT_EDITABLE_BINDINGS.includes(name);\n}\n\nconst LOAD_ERROR_ELEMENTS = [\n\t'body',\n\t'embed',\n\t'iframe',\n\t'img',\n\t'link',\n\t'object',\n\t'script',\n\t'style',\n\t'track'\n];\n\n/**\n * Returns `true` if the element emits `load` and `error` events\n * @param {string} name\n */\nexport function is_load_error_element(name) {\n\treturn LOAD_ERROR_ELEMENTS.includes(name);\n}\n\nconst SVG_ELEMENTS = [\n\t'altGlyph',\n\t'altGlyphDef',\n\t'altGlyphItem',\n\t'animate',\n\t'animateColor',\n\t'animateMotion',\n\t'animateTransform',\n\t'circle',\n\t'clipPath',\n\t'color-profile',\n\t'cursor',\n\t'defs',\n\t'desc',\n\t'discard',\n\t'ellipse',\n\t'feBlend',\n\t'feColorMatrix',\n\t'feComponentTransfer',\n\t'feComposite',\n\t'feConvolveMatrix',\n\t'feDiffuseLighting',\n\t'feDisplacementMap',\n\t'feDistantLight',\n\t'feDropShadow',\n\t'feFlood',\n\t'feFuncA',\n\t'feFuncB',\n\t'feFuncG',\n\t'feFuncR',\n\t'feGaussianBlur',\n\t'feImage',\n\t'feMerge',\n\t'feMergeNode',\n\t'feMorphology',\n\t'feOffset',\n\t'fePointLight',\n\t'feSpecularLighting',\n\t'feSpotLight',\n\t'feTile',\n\t'feTurbulence',\n\t'filter',\n\t'font',\n\t'font-face',\n\t'font-face-format',\n\t'font-face-name',\n\t'font-face-src',\n\t'font-face-uri',\n\t'foreignObject',\n\t'g',\n\t'glyph',\n\t'glyphRef',\n\t'hatch',\n\t'hatchpath',\n\t'hkern',\n\t'image',\n\t'line',\n\t'linearGradient',\n\t'marker',\n\t'mask',\n\t'mesh',\n\t'meshgradient',\n\t'meshpatch',\n\t'meshrow',\n\t'metadata',\n\t'missing-glyph',\n\t'mpath',\n\t'path',\n\t'pattern',\n\t'polygon',\n\t'polyline',\n\t'radialGradient',\n\t'rect',\n\t'set',\n\t'solidcolor',\n\t'stop',\n\t'svg',\n\t'switch',\n\t'symbol',\n\t'text',\n\t'textPath',\n\t'tref',\n\t'tspan',\n\t'unknown',\n\t'use',\n\t'view',\n\t'vkern'\n];\n\n/** @param {string} name */\nexport function is_svg(name) {\n\treturn SVG_ELEMENTS.includes(name);\n}\n\nconst MATHML_ELEMENTS = [\n\t'annotation',\n\t'annotation-xml',\n\t'maction',\n\t'math',\n\t'merror',\n\t'mfrac',\n\t'mi',\n\t'mmultiscripts',\n\t'mn',\n\t'mo',\n\t'mover',\n\t'mpadded',\n\t'mphantom',\n\t'mprescripts',\n\t'mroot',\n\t'mrow',\n\t'ms',\n\t'mspace',\n\t'msqrt',\n\t'mstyle',\n\t'msub',\n\t'msubsup',\n\t'msup',\n\t'mtable',\n\t'mtd',\n\t'mtext',\n\t'mtr',\n\t'munder',\n\t'munderover',\n\t'semantics'\n];\n\n/** @param {string} name */\nexport function is_mathml(name) {\n\treturn MATHML_ELEMENTS.includes(name);\n}\n\nconst STATE_CREATION_RUNES = /** @type {const} */ ([\n\t'$state',\n\t'$state.raw',\n\t'$derived',\n\t'$derived.by'\n]);\n\nconst RUNES = /** @type {const} */ ([\n\t...STATE_CREATION_RUNES,\n\t'$state.eager',\n\t'$state.snapshot',\n\t'$props',\n\t'$props.id',\n\t'$bindable',\n\t'$effect',\n\t'$effect.pre',\n\t'$effect.tracking',\n\t'$effect.root',\n\t'$effect.pending',\n\t'$inspect',\n\t'$inspect().with',\n\t'$inspect.trace',\n\t'$host'\n]);\n\n/** @typedef {typeof RUNES[number]} RuneName */\n\n/**\n * @param {string} name\n * @returns {name is RuneName}\n */\nexport function is_rune(name) {\n\treturn RUNES.includes(/** @type {RuneName} */ (name));\n}\n\n/** @typedef {typeof STATE_CREATION_RUNES[number]} StateCreationRuneName */\n\n/**\n * @param {string} name\n * @returns {name is StateCreationRuneName}\n */\nexport function is_state_creation_rune(name) {\n\treturn STATE_CREATION_RUNES.includes(/** @type {StateCreationRuneName} */ (name));\n}\n\n/** List of elements that require raw contents and should not have SSR comments put in them */\nconst RAW_TEXT_ELEMENTS = /** @type {const} */ (['textarea', 'script', 'style', 'title']);\n\n/** @param {string} name */\nexport function is_raw_text_element(name) {\n\treturn RAW_TEXT_ELEMENTS.includes(/** @type {typeof RAW_TEXT_ELEMENTS[number]} */ (name));\n}\n\n// Matches valid HTML/SVG/MathML element names and custom element names.\n// https://html.spec.whatwg.org/multipage/custom-elements.html#valid-custom-element-name\n//\n// Standard elements: ASCII alpha start, followed by ASCII alphanumerics.\n// Custom elements: ASCII alpha start, followed by any mix of PCENChar (which\n// includes ASCII alphanumerics, `-`, `.`, `_`, and specified Unicode ranges),\n// with at least one hyphen required somewhere after the first character.\n//\n// Rejects strings containing whitespace, quotes, angle brackets, slashes, equals,\n// or other characters that could break out of a tag-name token and enable markup injection.\nexport const REGEX_VALID_TAG_NAME =\n\t/^[a-zA-Z][a-zA-Z0-9]*(-[a-zA-Z0-9.\\-_\\u00B7\\u00C0-\\u00D6\\u00D8-\\u00F6\\u00F8-\\u037D\\u037F-\\u1FFF\\u200C-\\u200D\\u203F-\\u2040\\u2070-\\u218F\\u2C00-\\u2FEF\\u3001-\\uD7FF\\uF900-\\uFDCF\\uFDF0-\\uFFFD\\u{10000}-\\u{EFFFF}]+)*$/u;\n\n/**\n * Prevent devtools trying to make `location` a clickable link by inserting a zero-width space\n * @template {string | undefined} T\n * @param {T} location\n * @returns {T};\n */\nexport function sanitize_location(location) {\n\treturn /** @type {T} */ (location?.replace(/\\//g, '/\\u200b'));\n}\n","/** @import { ComponentContext, Effect, EffectNodes, TemplateNode } from '#client' */\n/** @import { Component, ComponentType, SvelteComponent, MountOptions } from '../../index.js' */\nimport { DEV } from 'esm-env';\nimport {\n\tclear_text_content,\n\tcreate_text,\n\tget_first_child,\n\tget_next_sibling,\n\tinit_operations\n} from './dom/operations.js';\nimport { HYDRATION_END, HYDRATION_ERROR, HYDRATION_START } from '../../constants.js';\nimport { active_effect } from './runtime.js';\nimport { push, pop, component_context } from './context.js';\nimport { component_root } from './reactivity/effects.js';\nimport { hydrate_node, hydrating, set_hydrate_node, set_hydrating } from './dom/hydration.js';\nimport { array_from } from '../shared/utils.js';\nimport {\n\tall_registered_events,\n\thandle_event_propagation,\n\troot_event_handles\n} from './dom/elements/events.js';\nimport * as w from './warnings.js';\nimport * as e from './errors.js';\nimport { assign_nodes } from './dom/template.js';\nimport { is_passive_event } from '../../utils.js';\nimport { COMMENT_NODE, STATE_SYMBOL } from './constants.js';\nimport { boundary } from './dom/blocks/boundary.js';\n\n/**\n * This is normally true — block effects should run their intro transitions —\n * but is false during hydration (unless `options.intro` is `true`) and\n * when creating the children of a `` that just changed tag\n */\nexport let should_intro = true;\n\n/** @param {boolean} value */\nexport function set_should_intro(value) {\n\tshould_intro = value;\n}\n\n/**\n * @param {Element} text\n * @param {string} value\n * @returns {void}\n */\nexport function set_text(text, value) {\n\t// For objects, we apply string coercion (which might make things like $state array references in the template reactive) before diffing\n\tvar str = value == null ? '' : typeof value === 'object' ? `${value}` : value;\n\t// @ts-expect-error\n\tif (str !== (text.__t ??= text.nodeValue)) {\n\t\t// @ts-expect-error\n\t\ttext.__t = str;\n\t\ttext.nodeValue = `${str}`;\n\t}\n}\n\n/**\n * Mounts a component to the given target and returns the exports and potentially the props (if compiled with `accessors: true`) of the component.\n * Transitions will play during the initial render unless the `intro` option is set to `false`.\n *\n * @template {Record} Props\n * @template {Record} Exports\n * @param {ComponentType> | Component} component\n * @param {MountOptions} options\n * @returns {Exports}\n */\nexport function mount(component, options) {\n\treturn _mount(component, options);\n}\n\n/**\n * Hydrates a component on the given target and returns the exports and potentially the props (if compiled with `accessors: true`) of the component\n *\n * @template {Record} Props\n * @template {Record} Exports\n * @param {ComponentType> | Component} component\n * @param {{} extends Props ? {\n * \t\ttarget: Document | Element | ShadowRoot;\n * \t\tprops?: Props;\n * \t\tevents?: Record any>;\n * \tcontext?: Map;\n * \t\tintro?: boolean;\n * \t\trecover?: boolean;\n *\t\ttransformError?: (error: unknown) => unknown;\n * \t} : {\n * \t\ttarget: Document | Element | ShadowRoot;\n * \t\tprops: Props;\n * \t\tevents?: Record any>;\n * \tcontext?: Map;\n * \t\tintro?: boolean;\n * \t\trecover?: boolean;\n *\t\ttransformError?: (error: unknown) => unknown;\n * \t}} options\n * @returns {Exports}\n */\nexport function hydrate(component, options) {\n\tinit_operations();\n\toptions.intro = options.intro ?? false;\n\tconst target = options.target;\n\tconst was_hydrating = hydrating;\n\tconst previous_hydrate_node = hydrate_node;\n\n\ttry {\n\t\tvar anchor = get_first_child(target);\n\n\t\twhile (\n\t\t\tanchor &&\n\t\t\t(anchor.nodeType !== COMMENT_NODE || /** @type {Comment} */ (anchor).data !== HYDRATION_START)\n\t\t) {\n\t\t\tanchor = get_next_sibling(anchor);\n\t\t}\n\n\t\tif (!anchor) {\n\t\t\tthrow HYDRATION_ERROR;\n\t\t}\n\n\t\tset_hydrating(true);\n\t\tset_hydrate_node(/** @type {Comment} */ (anchor));\n\n\t\tconst instance = _mount(component, { ...options, anchor });\n\n\t\tset_hydrating(false);\n\n\t\treturn /** @type {Exports} */ (instance);\n\t} catch (error) {\n\t\t// re-throw Svelte errors - they are certainly not related to hydration\n\t\tif (\n\t\t\terror instanceof Error &&\n\t\t\terror.message.split('\\n').some((line) => line.startsWith('https://svelte.dev/e/'))\n\t\t) {\n\t\t\tthrow error;\n\t\t}\n\t\tif (error !== HYDRATION_ERROR) {\n\t\t\t// eslint-disable-next-line no-console\n\t\t\tconsole.warn('Failed to hydrate: ', error);\n\t\t}\n\n\t\tif (options.recover === false) {\n\t\t\te.hydration_failed();\n\t\t}\n\n\t\t// If an error occurred above, the operations might not yet have been initialised.\n\t\tinit_operations();\n\t\tclear_text_content(target);\n\n\t\tset_hydrating(false);\n\t\treturn mount(component, options);\n\t} finally {\n\t\tset_hydrating(was_hydrating);\n\t\tset_hydrate_node(previous_hydrate_node);\n\t}\n}\n\n/** @type {Map>} */\nconst listeners = new Map();\n\n/**\n * @template {Record} Exports\n * @param {ComponentType> | Component} Component\n * @param {MountOptions} options\n * @returns {Exports}\n */\nfunction _mount(\n\tComponent,\n\t{ target, anchor, props = {}, events, context, intro = true, transformError }\n) {\n\tinit_operations();\n\n\t/** @type {Exports} */\n\t// @ts-expect-error will be defined because the render effect runs synchronously\n\tvar component = undefined;\n\n\tvar unmount = component_root(() => {\n\t\tvar anchor_node = anchor ?? target.appendChild(create_text());\n\n\t\tboundary(\n\t\t\t/** @type {TemplateNode} */ (anchor_node),\n\t\t\t{\n\t\t\t\tpending: () => {}\n\t\t\t},\n\t\t\t(anchor_node) => {\n\t\t\t\tpush({});\n\t\t\t\tvar ctx = /** @type {ComponentContext} */ (component_context);\n\t\t\t\tif (context) ctx.c = context;\n\n\t\t\t\tif (events) {\n\t\t\t\t\t// We can't spread the object or else we'd lose the state proxy stuff, if it is one\n\t\t\t\t\t/** @type {any} */ (props).$$events = events;\n\t\t\t\t}\n\n\t\t\t\tif (hydrating) {\n\t\t\t\t\tassign_nodes(/** @type {TemplateNode} */ (anchor_node), null);\n\t\t\t\t}\n\n\t\t\t\tshould_intro = intro;\n\t\t\t\t// @ts-expect-error the public typings are not what the actual function looks like\n\t\t\t\tcomponent = Component(anchor_node, props) || {};\n\t\t\t\tshould_intro = true;\n\n\t\t\t\tif (hydrating) {\n\t\t\t\t\t/** @type {Effect & { nodes: EffectNodes }} */ (active_effect).nodes.end = hydrate_node;\n\n\t\t\t\t\tif (\n\t\t\t\t\t\thydrate_node === null ||\n\t\t\t\t\t\thydrate_node.nodeType !== COMMENT_NODE ||\n\t\t\t\t\t\t/** @type {Comment} */ (hydrate_node).data !== HYDRATION_END\n\t\t\t\t\t) {\n\t\t\t\t\t\tw.hydration_mismatch();\n\t\t\t\t\t\tthrow HYDRATION_ERROR;\n\t\t\t\t\t}\n\t\t\t\t}\n\n\t\t\t\tpop();\n\t\t\t},\n\t\t\ttransformError\n\t\t);\n\n\t\t// Setup event delegation _after_ component is mounted - if an error would happen during mount, it would otherwise not be cleaned up\n\t\t/** @type {Set} */\n\t\tvar registered_events = new Set();\n\n\t\t/** @param {Array} events */\n\t\tvar event_handle = (events) => {\n\t\t\tfor (var i = 0; i < events.length; i++) {\n\t\t\t\tvar event_name = events[i];\n\n\t\t\t\tif (registered_events.has(event_name)) continue;\n\t\t\t\tregistered_events.add(event_name);\n\n\t\t\t\tvar passive = is_passive_event(event_name);\n\n\t\t\t\t// Add the event listener to both the container and the document.\n\t\t\t\t// The container listener ensures we catch events from within in case\n\t\t\t\t// the outer content stops propagation of the event.\n\t\t\t\t//\n\t\t\t\t// The document listener ensures we catch events that originate from elements that were\n\t\t\t\t// manually moved outside of the container (e.g. via manual portals).\n\t\t\t\tfor (const node of [target, document]) {\n\t\t\t\t\tvar counts = listeners.get(node);\n\n\t\t\t\t\tif (counts === undefined) {\n\t\t\t\t\t\tcounts = new Map();\n\t\t\t\t\t\tlisteners.set(node, counts);\n\t\t\t\t\t}\n\n\t\t\t\t\tvar count = counts.get(event_name);\n\n\t\t\t\t\tif (count === undefined) {\n\t\t\t\t\t\tnode.addEventListener(event_name, handle_event_propagation, { passive });\n\t\t\t\t\t\tcounts.set(event_name, 1);\n\t\t\t\t\t} else {\n\t\t\t\t\t\tcounts.set(event_name, count + 1);\n\t\t\t\t\t}\n\t\t\t\t}\n\t\t\t}\n\t\t};\n\n\t\tevent_handle(array_from(all_registered_events));\n\t\troot_event_handles.add(event_handle);\n\n\t\treturn () => {\n\t\t\tfor (var event_name of registered_events) {\n\t\t\t\tfor (const node of [target, document]) {\n\t\t\t\t\tvar counts = /** @type {Map} */ (listeners.get(node));\n\t\t\t\t\tvar count = /** @type {number} */ (counts.get(event_name));\n\n\t\t\t\t\tif (--count == 0) {\n\t\t\t\t\t\tnode.removeEventListener(event_name, handle_event_propagation);\n\t\t\t\t\t\tcounts.delete(event_name);\n\n\t\t\t\t\t\tif (counts.size === 0) {\n\t\t\t\t\t\t\tlisteners.delete(node);\n\t\t\t\t\t\t}\n\t\t\t\t\t} else {\n\t\t\t\t\t\tcounts.set(event_name, count);\n\t\t\t\t\t}\n\t\t\t\t}\n\t\t\t}\n\n\t\t\troot_event_handles.delete(event_handle);\n\n\t\t\tif (anchor_node !== anchor) {\n\t\t\t\tanchor_node.parentNode?.removeChild(anchor_node);\n\t\t\t}\n\t\t};\n\t});\n\n\tmounted_components.set(component, unmount);\n\treturn component;\n}\n\n/**\n * References of the components that were mounted or hydrated.\n * Uses a `WeakMap` to avoid memory leaks.\n */\nlet mounted_components = new WeakMap();\n\n/**\n * Unmounts a component that was previously mounted using `mount` or `hydrate`.\n *\n * Since 5.13.0, if `options.outro` is `true`, [transitions](https://svelte.dev/docs/svelte/transition) will play before the component is removed from the DOM.\n *\n * Returns a `Promise` that resolves after transitions have completed if `options.outro` is true, or immediately otherwise (prior to 5.13.0, returns `void`).\n *\n * ```js\n * import { mount, unmount } from 'svelte';\n * import App from './App.svelte';\n *\n * const app = mount(App, { target: document.body });\n *\n * // later...\n * unmount(app, { outro: true });\n * ```\n * @param {Record} component\n * @param {{ outro?: boolean }} [options]\n * @returns {Promise}\n */\nexport function unmount(component, options) {\n\tconst fn = mounted_components.get(component);\n\n\tif (fn) {\n\t\tmounted_components.delete(component);\n\t\treturn fn(options);\n\t}\n\n\tif (DEV) {\n\t\tif (STATE_SYMBOL in component) {\n\t\t\tw.state_proxy_unmount();\n\t\t} else {\n\t\t\tw.lifecycle_double_unmount();\n\t\t}\n\t}\n\n\treturn Promise.resolve();\n}\n","/** @import { Effect, TemplateNode } from '#client' */\nimport { Batch, current_batch } from '../../reactivity/batch.js';\nimport {\n\tbranch,\n\tdestroy_effect,\n\tmove_effect,\n\tpause_effect,\n\tresume_effect\n} from '../../reactivity/effects.js';\nimport { HMR_ANCHOR } from '../../constants.js';\nimport { hydrate_node, hydrating } from '../hydration.js';\nimport { create_text, should_defer_append } from '../operations.js';\nimport { DEV } from 'esm-env';\n\n/**\n * @typedef {{ effect: Effect, fragment: DocumentFragment }} Branch\n */\n\n/**\n * @template Key\n */\nexport class BranchManager {\n\t/** @type {TemplateNode} */\n\tanchor;\n\n\t/** @type {Map} */\n\t#batches = new Map();\n\n\t/**\n\t * Map of keys to effects that are currently rendered in the DOM.\n\t * These effects are visible and actively part of the document tree.\n\t * Example:\n\t * ```\n\t * {#if condition}\n\t * \tfoo\n\t * {:else}\n\t * \tbar\n\t * {/if}\n\t * ```\n\t * Can result in the entries `true->Effect` and `false->Effect`\n\t * @type {Map}\n\t */\n\t#onscreen = new Map();\n\n\t/**\n\t * Similar to #onscreen with respect to the keys, but contains branches that are not yet\n\t * in the DOM, because their insertion is deferred.\n\t * @type {Map}\n\t */\n\t#offscreen = new Map();\n\n\t/**\n\t * Keys of effects that are currently outroing\n\t * @type {Set}\n\t */\n\t#outroing = new Set();\n\n\t/**\n\t * Whether to pause (i.e. outro) on change, or destroy immediately.\n\t * This is necessary for ``\n\t */\n\t#transition = true;\n\n\t/**\n\t * @param {TemplateNode} anchor\n\t * @param {boolean} transition\n\t */\n\tconstructor(anchor, transition = true) {\n\t\tthis.anchor = anchor;\n\t\tthis.#transition = transition;\n\t}\n\n\t/**\n\t * @param {Batch} batch\n\t */\n\t#commit = (batch) => {\n\t\t// if this batch was made obsolete, bail\n\t\tif (!this.#batches.has(batch)) return;\n\n\t\tvar key = /** @type {Key} */ (this.#batches.get(batch));\n\n\t\tvar onscreen = this.#onscreen.get(key);\n\n\t\tif (onscreen) {\n\t\t\t// effect is already in the DOM — abort any current outro\n\t\t\tresume_effect(onscreen);\n\t\t\tthis.#outroing.delete(key);\n\t\t} else {\n\t\t\t// effect is currently offscreen. put it in the DOM\n\t\t\tvar offscreen = this.#offscreen.get(key);\n\n\t\t\tif (offscreen) {\n\t\t\t\tthis.#onscreen.set(key, offscreen.effect);\n\t\t\t\tthis.#offscreen.delete(key);\n\n\t\t\t\tif (DEV) {\n\t\t\t\t\t// Tell hmr.js about the anchor it should use for updates,\n\t\t\t\t\t// since the initial one will be removed\n\t\t\t\t\t/** @type {any} */ (offscreen.fragment.lastChild)[HMR_ANCHOR] = this.anchor;\n\t\t\t\t}\n\n\t\t\t\t// remove the anchor...\n\t\t\t\t/** @type {TemplateNode} */ (offscreen.fragment.lastChild).remove();\n\n\t\t\t\t// ...and append the fragment\n\t\t\t\tthis.anchor.before(offscreen.fragment);\n\t\t\t\tonscreen = offscreen.effect;\n\t\t\t}\n\t\t}\n\n\t\tfor (const [b, k] of this.#batches) {\n\t\t\tthis.#batches.delete(b);\n\n\t\t\tif (b === batch) {\n\t\t\t\t// keep values for newer batches\n\t\t\t\tbreak;\n\t\t\t}\n\n\t\t\tconst offscreen = this.#offscreen.get(k);\n\n\t\t\tif (offscreen) {\n\t\t\t\t// for older batches, destroy offscreen effects\n\t\t\t\t// as they will never be committed\n\t\t\t\tdestroy_effect(offscreen.effect);\n\t\t\t\tthis.#offscreen.delete(k);\n\t\t\t}\n\t\t}\n\n\t\t// outro/destroy all onscreen effects...\n\t\tfor (const [k, effect] of this.#onscreen) {\n\t\t\t// ...except the one that was just committed\n\t\t\t// or those that are already outroing (else the transition is aborted and the effect destroyed right away)\n\t\t\tif (k === key || this.#outroing.has(k)) continue;\n\n\t\t\tconst on_destroy = () => {\n\t\t\t\tconst keys = Array.from(this.#batches.values());\n\n\t\t\t\tif (keys.includes(k)) {\n\t\t\t\t\t// keep the effect offscreen, as another batch will need it\n\t\t\t\t\tvar fragment = document.createDocumentFragment();\n\t\t\t\t\tmove_effect(effect, fragment);\n\n\t\t\t\t\tfragment.append(create_text()); // TODO can we avoid this?\n\n\t\t\t\t\tthis.#offscreen.set(k, { effect, fragment });\n\t\t\t\t} else {\n\t\t\t\t\tdestroy_effect(effect);\n\t\t\t\t}\n\n\t\t\t\tthis.#outroing.delete(k);\n\t\t\t\tthis.#onscreen.delete(k);\n\t\t\t};\n\n\t\t\tif (this.#transition || !onscreen) {\n\t\t\t\tthis.#outroing.add(k);\n\t\t\t\tpause_effect(effect, on_destroy, false);\n\t\t\t} else {\n\t\t\t\ton_destroy();\n\t\t\t}\n\t\t}\n\t};\n\n\t/**\n\t * @param {Batch} batch\n\t */\n\t#discard = (batch) => {\n\t\tthis.#batches.delete(batch);\n\n\t\tconst keys = Array.from(this.#batches.values());\n\n\t\tfor (const [k, branch] of this.#offscreen) {\n\t\t\tif (!keys.includes(k)) {\n\t\t\t\tdestroy_effect(branch.effect);\n\t\t\t\tthis.#offscreen.delete(k);\n\t\t\t}\n\t\t}\n\t};\n\n\t/**\n\t *\n\t * @param {any} key\n\t * @param {null | ((target: TemplateNode) => void)} fn\n\t */\n\tensure(key, fn) {\n\t\tvar batch = /** @type {Batch} */ (current_batch);\n\t\tvar defer = should_defer_append();\n\n\t\tif (fn && !this.#onscreen.has(key) && !this.#offscreen.has(key)) {\n\t\t\tif (defer) {\n\t\t\t\tvar fragment = document.createDocumentFragment();\n\t\t\t\tvar target = create_text();\n\n\t\t\t\tfragment.append(target);\n\n\t\t\t\tthis.#offscreen.set(key, {\n\t\t\t\t\teffect: branch(() => fn(target)),\n\t\t\t\t\tfragment\n\t\t\t\t});\n\t\t\t} else {\n\t\t\t\tthis.#onscreen.set(\n\t\t\t\t\tkey,\n\t\t\t\t\tbranch(() => fn(this.anchor))\n\t\t\t\t);\n\t\t\t}\n\t\t}\n\n\t\tthis.#batches.set(batch, key);\n\n\t\tif (defer) {\n\t\t\tfor (const [k, effect] of this.#onscreen) {\n\t\t\t\tif (k === key) {\n\t\t\t\t\tbatch.unskip_effect(effect);\n\t\t\t\t} else {\n\t\t\t\t\tbatch.skip_effect(effect);\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tfor (const [k, branch] of this.#offscreen) {\n\t\t\t\tif (k === key) {\n\t\t\t\t\tbatch.unskip_effect(branch.effect);\n\t\t\t\t} else {\n\t\t\t\t\tbatch.skip_effect(branch.effect);\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tbatch.oncommit(this.#commit);\n\t\t\tbatch.ondiscard(this.#discard);\n\t\t} else {\n\t\t\tif (hydrating) {\n\t\t\t\tthis.anchor = hydrate_node;\n\t\t\t}\n\n\t\t\tthis.#commit(batch);\n\t\t}\n\t}\n}\n","/** @import { ComponentContext, ComponentContextLegacy } from '#client' */\n/** @import { EventDispatcher } from './index.js' */\n/** @import { NotFunction } from './internal/types.js' */\nimport { active_reaction, untrack } from './internal/client/runtime.js';\nimport { is_array } from './internal/shared/utils.js';\nimport { user_effect } from './internal/client/index.js';\nimport * as e from './internal/client/errors.js';\nimport { legacy_mode_flag } from './internal/flags/index.js';\nimport { component_context } from './internal/client/context.js';\nimport { DEV } from 'esm-env';\n\nif (DEV) {\n\t/**\n\t * @param {string} rune\n\t */\n\tfunction throw_rune_error(rune) {\n\t\tif (!(rune in globalThis)) {\n\t\t\t// TODO if people start adjusting the \"this can contain runes\" config through v-p-s more, adjust this message\n\t\t\t/** @type {any} */\n\t\t\tlet value; // let's hope noone modifies this global, but belts and braces\n\t\t\tObject.defineProperty(globalThis, rune, {\n\t\t\t\tconfigurable: true,\n\t\t\t\t// eslint-disable-next-line getter-return\n\t\t\t\tget: () => {\n\t\t\t\t\tif (value !== undefined) {\n\t\t\t\t\t\treturn value;\n\t\t\t\t\t}\n\n\t\t\t\t\te.rune_outside_svelte(rune);\n\t\t\t\t},\n\t\t\t\tset: (v) => {\n\t\t\t\t\tvalue = v;\n\t\t\t\t}\n\t\t\t});\n\t\t}\n\t}\n\n\tthrow_rune_error('$state');\n\tthrow_rune_error('$effect');\n\tthrow_rune_error('$derived');\n\tthrow_rune_error('$inspect');\n\tthrow_rune_error('$props');\n\tthrow_rune_error('$bindable');\n}\n\n/**\n * Returns an [`AbortSignal`](https://developer.mozilla.org/en-US/docs/Web/API/AbortSignal) that aborts when the current [derived](https://svelte.dev/docs/svelte/$derived) or [effect](https://svelte.dev/docs/svelte/$effect) re-runs or is destroyed.\n *\n * Must be called while a derived or effect is running.\n *\n * ```svelte\n * \n * ```\n */\nexport function getAbortSignal() {\n\tif (active_reaction === null) {\n\t\te.get_abort_signal_outside_reaction();\n\t}\n\n\treturn (active_reaction.ac ??= new AbortController()).signal;\n}\n\n/**\n * `onMount`, like [`$effect`](https://svelte.dev/docs/svelte/$effect), schedules a function to run as soon as the component has been mounted to the DOM.\n * Unlike `$effect`, the provided function only runs once.\n *\n * It must be called during the component's initialisation (but doesn't need to live _inside_ the component;\n * it can be called from an external module). If a function is returned _synchronously_ from `onMount`,\n * it will be called when the component is unmounted.\n *\n * `onMount` functions do not run during [server-side rendering](https://svelte.dev/docs/svelte/svelte-server#render).\n *\n * @template T\n * @param {() => NotFunction | Promise> | (() => any)} fn\n * @returns {void}\n */\nexport function onMount(fn) {\n\tif (component_context === null) {\n\t\te.lifecycle_outside_component('onMount');\n\t}\n\n\tif (legacy_mode_flag && component_context.l !== null) {\n\t\tinit_update_callbacks(component_context).m.push(fn);\n\t} else {\n\t\tuser_effect(() => {\n\t\t\tconst cleanup = untrack(fn);\n\t\t\tif (typeof cleanup === 'function') return /** @type {() => void} */ (cleanup);\n\t\t});\n\t}\n}\n\n/**\n * Schedules a callback to run immediately before the component is unmounted.\n *\n * Out of `onMount`, `beforeUpdate`, `afterUpdate` and `onDestroy`, this is the\n * only one that runs inside a server-side component.\n *\n * @param {() => any} fn\n * @returns {void}\n */\nexport function onDestroy(fn) {\n\tif (component_context === null) {\n\t\te.lifecycle_outside_component('onDestroy');\n\t}\n\n\tonMount(() => () => untrack(fn));\n}\n\n/**\n * @template [T=any]\n * @param {string} type\n * @param {T} [detail]\n * @param {any}params_0\n * @returns {CustomEvent}\n */\nfunction create_custom_event(type, detail, { bubbles = false, cancelable = false } = {}) {\n\treturn new CustomEvent(type, { detail, bubbles, cancelable });\n}\n\n/**\n * Creates an event dispatcher that can be used to dispatch [component events](https://svelte.dev/docs/svelte/legacy-on#Component-events).\n * Event dispatchers are functions that can take two arguments: `name` and `detail`.\n *\n * Component events created with `createEventDispatcher` create a\n * [CustomEvent](https://developer.mozilla.org/en-US/docs/Web/API/CustomEvent).\n * These events do not [bubble](https://developer.mozilla.org/en-US/docs/Learn/JavaScript/Building_blocks/Events#Event_bubbling_and_capture).\n * The `detail` argument corresponds to the [CustomEvent.detail](https://developer.mozilla.org/en-US/docs/Web/API/CustomEvent/detail)\n * property and can contain any type of data.\n *\n * The event dispatcher can be typed to narrow the allowed event names and the type of the `detail` argument:\n * ```ts\n * const dispatch = createEventDispatcher<{\n * loaded: null; // does not take a detail argument\n * change: string; // takes a detail argument of type string, which is required\n * optional: number | null; // takes an optional detail argument of type number\n * }>();\n * ```\n *\n * @deprecated Use callback props and/or the `$host()` rune instead — see [migration guide](https://svelte.dev/docs/svelte/v5-migration-guide#Event-changes-Component-events)\n * @template {Record} [EventMap = any]\n * @returns {EventDispatcher}\n */\nexport function createEventDispatcher() {\n\tconst active_component_context = component_context;\n\tif (active_component_context === null) {\n\t\te.lifecycle_outside_component('createEventDispatcher');\n\t}\n\n\t/**\n\t * @param [detail]\n\t * @param [options]\n\t */\n\treturn (type, detail, options) => {\n\t\tconst events = /** @type {Record} */ (\n\t\t\tactive_component_context.s.$$events\n\t\t)?.[/** @type {string} */ (type)];\n\n\t\tif (events) {\n\t\t\tconst callbacks = is_array(events) ? events.slice() : [events];\n\t\t\t// TODO are there situations where events could be dispatched\n\t\t\t// in a server (non-DOM) environment?\n\t\t\tconst event = create_custom_event(/** @type {string} */ (type), detail, options);\n\t\t\tfor (const fn of callbacks) {\n\t\t\t\tfn.call(active_component_context.x, event);\n\t\t\t}\n\t\t\treturn !event.defaultPrevented;\n\t\t}\n\n\t\treturn true;\n\t};\n}\n\n// TODO mark beforeUpdate and afterUpdate as deprecated in Svelte 6\n\n/**\n * Schedules a callback to run immediately before the component is updated after any state change.\n *\n * The first time the callback runs will be before the initial `onMount`.\n *\n * In runes mode use `$effect.pre` instead.\n *\n * @deprecated Use [`$effect.pre`](https://svelte.dev/docs/svelte/$effect#$effect.pre) instead\n * @param {() => void} fn\n * @returns {void}\n */\nexport function beforeUpdate(fn) {\n\tif (component_context === null) {\n\t\te.lifecycle_outside_component('beforeUpdate');\n\t}\n\n\tif (component_context.l === null) {\n\t\te.lifecycle_legacy_only('beforeUpdate');\n\t}\n\n\tinit_update_callbacks(component_context).b.push(fn);\n}\n\n/**\n * Schedules a callback to run immediately after the component has been updated.\n *\n * The first time the callback runs will be after the initial `onMount`.\n *\n * In runes mode use `$effect` instead.\n *\n * @deprecated Use [`$effect`](https://svelte.dev/docs/svelte/$effect) instead\n * @param {() => void} fn\n * @returns {void}\n */\nexport function afterUpdate(fn) {\n\tif (component_context === null) {\n\t\te.lifecycle_outside_component('afterUpdate');\n\t}\n\n\tif (component_context.l === null) {\n\t\te.lifecycle_legacy_only('afterUpdate');\n\t}\n\n\tinit_update_callbacks(component_context).a.push(fn);\n}\n\n/**\n * Legacy-mode: Init callbacks object for onMount/beforeUpdate/afterUpdate\n * @param {ComponentContext} context\n */\nfunction init_update_callbacks(context) {\n\tvar l = /** @type {ComponentContextLegacy} */ (context).l;\n\treturn (l.u ??= { a: [], b: [], m: [] });\n}\n\nexport { flushSync, fork } from './internal/client/reactivity/batch.js';\nexport {\n\tcreateContext,\n\tgetContext,\n\tgetAllContexts,\n\thasContext,\n\tsetContext\n} from './internal/client/context.js';\nexport { hydratable } from './internal/client/hydratable.js';\nexport { hydrate, mount, unmount } from './internal/client/render.js';\nexport { tick, untrack, settled } from './internal/client/runtime.js';\nexport { createRawSnippet } from './internal/client/dom/blocks/snippet.js';\n","/** @import { TemplateNode } from '#client' */\nimport { EFFECT_TRANSPARENT } from '#client/constants';\nimport {\n\thydrate_next,\n\thydrating,\n\tread_hydration_instruction,\n\tskip_nodes,\n\tset_hydrate_node,\n\tset_hydrating,\n\thydrate_node\n} from '../hydration.js';\nimport { block } from '../../reactivity/effects.js';\nimport { BranchManager } from './branches.js';\n\n/**\n * @param {TemplateNode} node\n * @param {(branch: (fn: (anchor: Node) => void, key?: number | false) => void) => void} fn\n * @param {boolean} [elseif] True if this is an `{:else if ...}` block rather than an `{#if ...}`, as that affects which transitions are considered 'local'\n * @returns {void}\n */\nexport function if_block(node, fn, elseif = false) {\n\t/** @type {TemplateNode | undefined} */\n\tvar marker;\n\tif (hydrating) {\n\t\tmarker = hydrate_node;\n\t\thydrate_next();\n\t}\n\n\tvar branches = new BranchManager(node);\n\tvar flags = elseif ? EFFECT_TRANSPARENT : 0;\n\n\t/**\n\t * @param {number | false} key\n\t * @param {null | ((anchor: Node) => void)} fn\n\t */\n\tfunction update_branch(key, fn) {\n\t\tif (hydrating) {\n\t\t\tvar data = read_hydration_instruction(/** @type {TemplateNode} */ (marker));\n\n\t\t\t// \"[n\" = branch n, \"[-1\" = else\n\t\t\tif (key !== parseInt(data.substring(1))) {\n\t\t\t\t// Hydration mismatch: remove everything inside the anchor and start fresh.\n\t\t\t\t// This could happen with `{#if browser}...{/if}`, for example\n\t\t\t\tvar anchor = skip_nodes();\n\n\t\t\t\tset_hydrate_node(anchor);\n\t\t\t\tbranches.anchor = anchor;\n\n\t\t\t\tset_hydrating(false);\n\t\t\t\tbranches.ensure(key, fn);\n\t\t\t\tset_hydrating(true);\n\n\t\t\t\treturn;\n\t\t\t}\n\t\t}\n\n\t\tbranches.ensure(key, fn);\n\t}\n\n\tblock(() => {\n\t\tvar has_branch = false;\n\n\t\tfn((fn, key = 0) => {\n\t\t\thas_branch = true;\n\t\t\tupdate_branch(key, fn);\n\t\t});\n\n\t\tif (!has_branch) {\n\t\t\tupdate_branch(-1, null);\n\t\t}\n\t}, flags);\n}\n","/** @import { EachItem, EachOutroGroup, EachState, Effect, EffectNodes, MaybeSource, Source, TemplateNode, TransitionManager, Value } from '#client' */\n/** @import { Batch } from '../../reactivity/batch.js'; */\nimport {\n\tEACH_INDEX_REACTIVE,\n\tEACH_IS_ANIMATED,\n\tEACH_IS_CONTROLLED,\n\tEACH_ITEM_IMMUTABLE,\n\tEACH_ITEM_REACTIVE,\n\tHYDRATION_END,\n\tHYDRATION_START_ELSE\n} from '../../../../constants.js';\nimport {\n\thydrate_next,\n\thydrate_node,\n\thydrating,\n\tread_hydration_instruction,\n\tskip_nodes,\n\tset_hydrate_node,\n\tset_hydrating\n} from '../hydration.js';\nimport {\n\tclear_text_content,\n\tcreate_text,\n\tget_first_child,\n\tget_next_sibling,\n\tshould_defer_append\n} from '../operations.js';\nimport {\n\tblock,\n\tbranch,\n\tdestroy_effect,\n\tmove_effect,\n\tpause_effect,\n\tresume_effect\n} from '../../reactivity/effects.js';\nimport { source, mutable_source, internal_set } from '../../reactivity/sources.js';\nimport { array_from, is_array } from '../../../shared/utils.js';\nimport { BRANCH_EFFECT, COMMENT_NODE, DESTROYED, EFFECT_OFFSCREEN, INERT } from '#client/constants';\nimport { queue_micro_task } from '../task.js';\nimport { get } from '../../runtime.js';\nimport { DEV } from 'esm-env';\nimport { derived_safe_equal } from '../../reactivity/deriveds.js';\nimport { current_batch } from '../../reactivity/batch.js';\nimport * as e from '../../errors.js';\nimport { tag } from '../../dev/tracing.js';\n\n// When making substantive changes to this file, validate them with the each block stress test:\n// https://svelte.dev/playground/1972b2cf46564476ad8c8c6405b23b7b\n// This test also exists in this repo, as `packages/svelte/tests/manual/each-stress-test`\n\n/**\n * @param {any} _\n * @param {number} i\n */\nexport function index(_, i) {\n\treturn i;\n}\n\n/**\n * Pause multiple effects simultaneously, and coordinate their\n * subsequent destruction. Used in each blocks\n * @param {EachState} state\n * @param {Effect[]} to_destroy\n * @param {null | Node} controlled_anchor\n */\nfunction pause_effects(state, to_destroy, controlled_anchor) {\n\t/** @type {TransitionManager[]} */\n\tvar transitions = [];\n\tvar length = to_destroy.length;\n\n\t/** @type {EachOutroGroup} */\n\tvar group;\n\tvar remaining = to_destroy.length;\n\n\tfor (var i = 0; i < length; i++) {\n\t\tlet effect = to_destroy[i];\n\n\t\tpause_effect(\n\t\t\teffect,\n\t\t\t() => {\n\t\t\t\tif (group) {\n\t\t\t\t\tgroup.pending.delete(effect);\n\t\t\t\t\tgroup.done.add(effect);\n\n\t\t\t\t\tif (group.pending.size === 0) {\n\t\t\t\t\t\tvar groups = /** @type {Set} */ (state.outrogroups);\n\n\t\t\t\t\t\tdestroy_effects(state, array_from(group.done));\n\t\t\t\t\t\tgroups.delete(group);\n\n\t\t\t\t\t\tif (groups.size === 0) {\n\t\t\t\t\t\t\tstate.outrogroups = null;\n\t\t\t\t\t\t}\n\t\t\t\t\t}\n\t\t\t\t} else {\n\t\t\t\t\tremaining -= 1;\n\t\t\t\t}\n\t\t\t},\n\t\t\tfalse\n\t\t);\n\t}\n\n\tif (remaining === 0) {\n\t\t// If we're in a controlled each block (i.e. the block is the only child of an\n\t\t// element), and we are removing all items, _and_ there are no out transitions,\n\t\t// we can use the fast path — emptying the element and replacing the anchor\n\t\tvar fast_path = transitions.length === 0 && controlled_anchor !== null;\n\n\t\tif (fast_path) {\n\t\t\tvar anchor = /** @type {Element} */ (controlled_anchor);\n\t\t\tvar parent_node = /** @type {Element} */ (anchor.parentNode);\n\n\t\t\tclear_text_content(parent_node);\n\t\t\tparent_node.append(anchor);\n\n\t\t\tstate.items.clear();\n\t\t}\n\n\t\tdestroy_effects(state, to_destroy, !fast_path);\n\t} else {\n\t\tgroup = {\n\t\t\tpending: new Set(to_destroy),\n\t\t\tdone: new Set()\n\t\t};\n\n\t\t(state.outrogroups ??= new Set()).add(group);\n\t}\n}\n\n/**\n * @param {EachState} state\n * @param {Effect[]} to_destroy\n * @param {boolean} remove_dom\n */\nfunction destroy_effects(state, to_destroy, remove_dom = true) {\n\t/** @type {Set | undefined} */\n\tvar preserved_effects;\n\n\t// The loop-in-a-loop isn't ideal, but we should only hit this in relatively rare cases\n\tif (state.pending.size > 0) {\n\t\tpreserved_effects = new Set();\n\n\t\tfor (const keys of state.pending.values()) {\n\t\t\tfor (const key of keys) {\n\t\t\t\tpreserved_effects.add(/** @type {EachItem} */ (state.items.get(key)).e);\n\t\t\t}\n\t\t}\n\t}\n\n\tfor (var i = 0; i < to_destroy.length; i++) {\n\t\tvar e = to_destroy[i];\n\n\t\tif (preserved_effects?.has(e)) {\n\t\t\te.f |= EFFECT_OFFSCREEN;\n\n\t\t\tconst fragment = document.createDocumentFragment();\n\t\t\tmove_effect(e, fragment);\n\t\t} else {\n\t\t\tdestroy_effect(to_destroy[i], remove_dom);\n\t\t}\n\t}\n}\n\n/** @type {TemplateNode} */\nvar offscreen_anchor;\n\n/**\n * @template V\n * @param {Element | Comment} node The next sibling node, or the parent node if this is a 'controlled' block\n * @param {number} flags\n * @param {() => V[]} get_collection\n * @param {(value: V, index: number) => any} get_key\n * @param {(anchor: Node, item: MaybeSource, index: MaybeSource) => void} render_fn\n * @param {null | ((anchor: Node) => void)} fallback_fn\n * @returns {void}\n */\nexport function each(node, flags, get_collection, get_key, render_fn, fallback_fn = null) {\n\tvar anchor = node;\n\n\t/** @type {Map} */\n\tvar items = new Map();\n\n\tvar is_controlled = (flags & EACH_IS_CONTROLLED) !== 0;\n\n\tif (is_controlled) {\n\t\tvar parent_node = /** @type {Element} */ (node);\n\n\t\tanchor = hydrating\n\t\t\t? set_hydrate_node(get_first_child(parent_node))\n\t\t\t: parent_node.appendChild(create_text());\n\t}\n\n\tif (hydrating) {\n\t\thydrate_next();\n\t}\n\n\t/** @type {Effect | null} */\n\tvar fallback = null;\n\n\t// TODO: ideally we could use derived for runes mode but because of the ability\n\t// to use a store which can be mutated, we can't do that here as mutating a store\n\t// will still result in the collection array being the same from the store\n\tvar each_array = derived_safe_equal(() => {\n\t\tvar collection = get_collection();\n\n\t\treturn is_array(collection) ? collection : collection == null ? [] : array_from(collection);\n\t});\n\n\tif (DEV) {\n\t\ttag(each_array, '{#each ...}');\n\t}\n\n\t/** @type {V[]} */\n\tvar array;\n\n\t/** @type {Map>} */\n\tvar pending = new Map();\n\n\tvar first_run = true;\n\n\t/**\n\t * @param {Batch} batch\n\t */\n\tfunction commit(batch) {\n\t\tif ((state.effect.f & DESTROYED) !== 0) {\n\t\t\treturn;\n\t\t}\n\n\t\tstate.pending.delete(batch);\n\n\t\tstate.fallback = fallback;\n\t\treconcile(state, array, anchor, flags, get_key);\n\n\t\tif (fallback !== null) {\n\t\t\tif (array.length === 0) {\n\t\t\t\tif ((fallback.f & EFFECT_OFFSCREEN) === 0) {\n\t\t\t\t\tresume_effect(fallback);\n\t\t\t\t} else {\n\t\t\t\t\tfallback.f ^= EFFECT_OFFSCREEN;\n\t\t\t\t\tmove(fallback, null, anchor);\n\t\t\t\t}\n\t\t\t} else {\n\t\t\t\tpause_effect(fallback, () => {\n\t\t\t\t\t// TODO only null out if no pending batch needs it,\n\t\t\t\t\t// otherwise re-add `fallback.fragment` and move the\n\t\t\t\t\t// effect into it\n\t\t\t\t\tfallback = null;\n\t\t\t\t});\n\t\t\t}\n\t\t}\n\t}\n\n\t/**\n\t * @param {Batch} batch\n\t */\n\tfunction discard(batch) {\n\t\tstate.pending.delete(batch);\n\t}\n\n\tvar effect = block(() => {\n\t\tarray = /** @type {V[]} */ (get(each_array));\n\t\tvar length = array.length;\n\n\t\t/** `true` if there was a hydration mismatch. Needs to be a `let` or else it isn't treeshaken out */\n\t\tlet mismatch = false;\n\n\t\tif (hydrating) {\n\t\t\tvar is_else = read_hydration_instruction(anchor) === HYDRATION_START_ELSE;\n\n\t\t\tif (is_else !== (length === 0)) {\n\t\t\t\t// hydration mismatch — remove the server-rendered DOM and start over\n\t\t\t\tanchor = skip_nodes();\n\n\t\t\t\tset_hydrate_node(anchor);\n\t\t\t\tset_hydrating(false);\n\t\t\t\tmismatch = true;\n\t\t\t}\n\t\t}\n\n\t\tvar keys = new Set();\n\t\tvar batch = /** @type {Batch} */ (current_batch);\n\t\tvar defer = should_defer_append();\n\n\t\tfor (var index = 0; index < length; index += 1) {\n\t\t\tif (\n\t\t\t\thydrating &&\n\t\t\t\thydrate_node.nodeType === COMMENT_NODE &&\n\t\t\t\t/** @type {Comment} */ (hydrate_node).data === HYDRATION_END\n\t\t\t) {\n\t\t\t\t// The server rendered fewer items than expected,\n\t\t\t\t// so break out and continue appending non-hydrated items\n\t\t\t\tanchor = /** @type {Comment} */ (hydrate_node);\n\t\t\t\tmismatch = true;\n\t\t\t\tset_hydrating(false);\n\t\t\t}\n\n\t\t\tvar value = array[index];\n\t\t\tvar key = get_key(value, index);\n\n\t\t\tif (DEV) {\n\t\t\t\t// Check that the key function is idempotent (returns the same value when called twice)\n\t\t\t\tvar key_again = get_key(value, index);\n\t\t\t\tif (key !== key_again) {\n\t\t\t\t\te.each_key_volatile(String(index), String(key), String(key_again));\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tvar item = first_run ? null : items.get(key);\n\n\t\t\tif (item) {\n\t\t\t\t// update before reconciliation, to trigger any async updates\n\t\t\t\tif (item.v) internal_set(item.v, value);\n\t\t\t\tif (item.i) internal_set(item.i, index);\n\n\t\t\t\tif (defer) {\n\t\t\t\t\tbatch.unskip_effect(item.e);\n\t\t\t\t}\n\t\t\t} else {\n\t\t\t\titem = create_item(\n\t\t\t\t\titems,\n\t\t\t\t\tfirst_run ? anchor : (offscreen_anchor ??= create_text()),\n\t\t\t\t\tvalue,\n\t\t\t\t\tkey,\n\t\t\t\t\tindex,\n\t\t\t\t\trender_fn,\n\t\t\t\t\tflags,\n\t\t\t\t\tget_collection\n\t\t\t\t);\n\n\t\t\t\tif (!first_run) {\n\t\t\t\t\titem.e.f |= EFFECT_OFFSCREEN;\n\t\t\t\t}\n\n\t\t\t\titems.set(key, item);\n\t\t\t}\n\n\t\t\tkeys.add(key);\n\t\t}\n\n\t\tif (length === 0 && fallback_fn && !fallback) {\n\t\t\tif (first_run) {\n\t\t\t\tfallback = branch(() => fallback_fn(anchor));\n\t\t\t} else {\n\t\t\t\tfallback = branch(() => fallback_fn((offscreen_anchor ??= create_text())));\n\t\t\t\tfallback.f |= EFFECT_OFFSCREEN;\n\t\t\t}\n\t\t}\n\n\t\tif (length > keys.size) {\n\t\t\tif (DEV) {\n\t\t\t\tvalidate_each_keys(array, get_key);\n\t\t\t} else {\n\t\t\t\t// in prod, the additional information isn't printed, so don't bother computing it\n\t\t\t\te.each_key_duplicate('', '', '');\n\t\t\t}\n\t\t}\n\n\t\t// remove excess nodes\n\t\tif (hydrating && length > 0) {\n\t\t\tset_hydrate_node(skip_nodes());\n\t\t}\n\n\t\tif (!first_run) {\n\t\t\tpending.set(batch, keys);\n\n\t\t\tif (defer) {\n\t\t\t\tfor (const [key, item] of items) {\n\t\t\t\t\tif (!keys.has(key)) {\n\t\t\t\t\t\tbatch.skip_effect(item.e);\n\t\t\t\t\t}\n\t\t\t\t}\n\n\t\t\t\tbatch.oncommit(commit);\n\t\t\t\tbatch.ondiscard(discard);\n\t\t\t} else {\n\t\t\t\tcommit(batch);\n\t\t\t}\n\t\t}\n\n\t\tif (mismatch) {\n\t\t\t// continue in hydration mode\n\t\t\tset_hydrating(true);\n\t\t}\n\n\t\t// When we mount the each block for the first time, the collection won't be\n\t\t// connected to this effect as the effect hasn't finished running yet and its deps\n\t\t// won't be assigned. However, it's possible that when reconciling the each block\n\t\t// that a mutation occurred and it's made the collection MAYBE_DIRTY, so reading the\n\t\t// collection again can provide consistency to the reactive graph again as the deriveds\n\t\t// will now be `CLEAN`.\n\t\tget(each_array);\n\t});\n\n\t/** @type {EachState} */\n\tvar state = { effect, flags, items, pending, outrogroups: null, fallback };\n\n\tfirst_run = false;\n\n\tif (hydrating) {\n\t\tanchor = hydrate_node;\n\t}\n}\n\n/**\n * Skip past any non-branch effects (which could be created with `createSubscriber`, for example) to find the next branch effect\n * @param {Effect | null} effect\n * @returns {Effect | null}\n */\nfunction skip_to_branch(effect) {\n\twhile (effect !== null && (effect.f & BRANCH_EFFECT) === 0) {\n\t\teffect = effect.next;\n\t}\n\treturn effect;\n}\n\n/**\n * Add, remove, or reorder items output by an each block as its input changes\n * @template V\n * @param {EachState} state\n * @param {Array} array\n * @param {Element | Comment | Text} anchor\n * @param {number} flags\n * @param {(value: V, index: number) => any} get_key\n * @returns {void}\n */\nfunction reconcile(state, array, anchor, flags, get_key) {\n\tvar is_animated = (flags & EACH_IS_ANIMATED) !== 0;\n\n\tvar length = array.length;\n\tvar items = state.items;\n\tvar current = skip_to_branch(state.effect.first);\n\n\t/** @type {undefined | Set} */\n\tvar seen;\n\n\t/** @type {Effect | null} */\n\tvar prev = null;\n\n\t/** @type {undefined | Set} */\n\tvar to_animate;\n\n\t/** @type {Effect[]} */\n\tvar matched = [];\n\n\t/** @type {Effect[]} */\n\tvar stashed = [];\n\n\t/** @type {V} */\n\tvar value;\n\n\t/** @type {any} */\n\tvar key;\n\n\t/** @type {Effect | undefined} */\n\tvar effect;\n\n\t/** @type {number} */\n\tvar i;\n\n\tif (is_animated) {\n\t\tfor (i = 0; i < length; i += 1) {\n\t\t\tvalue = array[i];\n\t\t\tkey = get_key(value, i);\n\t\t\teffect = /** @type {EachItem} */ (items.get(key)).e;\n\n\t\t\t// offscreen == coming in now, no animation in that case,\n\t\t\t// else this would happen https://github.com/sveltejs/svelte/issues/17181\n\t\t\tif ((effect.f & EFFECT_OFFSCREEN) === 0) {\n\t\t\t\teffect.nodes?.a?.measure();\n\t\t\t\t(to_animate ??= new Set()).add(effect);\n\t\t\t}\n\t\t}\n\t}\n\n\tfor (i = 0; i < length; i += 1) {\n\t\tvalue = array[i];\n\t\tkey = get_key(value, i);\n\n\t\teffect = /** @type {EachItem} */ (items.get(key)).e;\n\n\t\tif (state.outrogroups !== null) {\n\t\t\tfor (const group of state.outrogroups) {\n\t\t\t\tgroup.pending.delete(effect);\n\t\t\t\tgroup.done.delete(effect);\n\t\t\t}\n\t\t}\n\n\t\tif ((effect.f & INERT) !== 0) {\n\t\t\tresume_effect(effect);\n\t\t\tif (is_animated) {\n\t\t\t\teffect.nodes?.a?.unfix();\n\t\t\t\t(to_animate ??= new Set()).delete(effect);\n\t\t\t}\n\t\t}\n\n\t\tif ((effect.f & EFFECT_OFFSCREEN) !== 0) {\n\t\t\teffect.f ^= EFFECT_OFFSCREEN;\n\n\t\t\tif (effect === current) {\n\t\t\t\tmove(effect, null, anchor);\n\t\t\t} else {\n\t\t\t\tvar next = prev ? prev.next : current;\n\n\t\t\t\tif (effect === state.effect.last) {\n\t\t\t\t\tstate.effect.last = effect.prev;\n\t\t\t\t}\n\n\t\t\t\tif (effect.prev) effect.prev.next = effect.next;\n\t\t\t\tif (effect.next) effect.next.prev = effect.prev;\n\t\t\t\tlink(state, prev, effect);\n\t\t\t\tlink(state, effect, next);\n\n\t\t\t\tmove(effect, next, anchor);\n\t\t\t\tprev = effect;\n\n\t\t\t\tmatched = [];\n\t\t\t\tstashed = [];\n\n\t\t\t\tcurrent = skip_to_branch(prev.next);\n\t\t\t\tcontinue;\n\t\t\t}\n\t\t}\n\n\t\tif (effect !== current) {\n\t\t\tif (seen !== undefined && seen.has(effect)) {\n\t\t\t\tif (matched.length < stashed.length) {\n\t\t\t\t\t// more efficient to move later items to the front\n\t\t\t\t\tvar start = stashed[0];\n\t\t\t\t\tvar j;\n\n\t\t\t\t\tprev = start.prev;\n\n\t\t\t\t\tvar a = matched[0];\n\t\t\t\t\tvar b = matched[matched.length - 1];\n\n\t\t\t\t\tfor (j = 0; j < matched.length; j += 1) {\n\t\t\t\t\t\tmove(matched[j], start, anchor);\n\t\t\t\t\t}\n\n\t\t\t\t\tfor (j = 0; j < stashed.length; j += 1) {\n\t\t\t\t\t\tseen.delete(stashed[j]);\n\t\t\t\t\t}\n\n\t\t\t\t\tlink(state, a.prev, b.next);\n\t\t\t\t\tlink(state, prev, a);\n\t\t\t\t\tlink(state, b, start);\n\n\t\t\t\t\tcurrent = start;\n\t\t\t\t\tprev = b;\n\t\t\t\t\ti -= 1;\n\n\t\t\t\t\tmatched = [];\n\t\t\t\t\tstashed = [];\n\t\t\t\t} else {\n\t\t\t\t\t// more efficient to move earlier items to the back\n\t\t\t\t\tseen.delete(effect);\n\t\t\t\t\tmove(effect, current, anchor);\n\n\t\t\t\t\tlink(state, effect.prev, effect.next);\n\t\t\t\t\tlink(state, effect, prev === null ? state.effect.first : prev.next);\n\t\t\t\t\tlink(state, prev, effect);\n\n\t\t\t\t\tprev = effect;\n\t\t\t\t}\n\n\t\t\t\tcontinue;\n\t\t\t}\n\n\t\t\tmatched = [];\n\t\t\tstashed = [];\n\n\t\t\twhile (current !== null && current !== effect) {\n\t\t\t\t(seen ??= new Set()).add(current);\n\t\t\t\tstashed.push(current);\n\t\t\t\tcurrent = skip_to_branch(current.next);\n\t\t\t}\n\n\t\t\tif (current === null) {\n\t\t\t\tcontinue;\n\t\t\t}\n\t\t}\n\n\t\tif ((effect.f & EFFECT_OFFSCREEN) === 0) {\n\t\t\tmatched.push(effect);\n\t\t}\n\n\t\tprev = effect;\n\t\tcurrent = skip_to_branch(effect.next);\n\t}\n\n\tif (state.outrogroups !== null) {\n\t\tfor (const group of state.outrogroups) {\n\t\t\tif (group.pending.size === 0) {\n\t\t\t\tdestroy_effects(state, array_from(group.done));\n\t\t\t\tstate.outrogroups?.delete(group);\n\t\t\t}\n\t\t}\n\n\t\tif (state.outrogroups.size === 0) {\n\t\t\tstate.outrogroups = null;\n\t\t}\n\t}\n\n\tif (current !== null || seen !== undefined) {\n\t\t/** @type {Effect[]} */\n\t\tvar to_destroy = [];\n\n\t\tif (seen !== undefined) {\n\t\t\tfor (effect of seen) {\n\t\t\t\tif ((effect.f & INERT) === 0) {\n\t\t\t\t\tto_destroy.push(effect);\n\t\t\t\t}\n\t\t\t}\n\t\t}\n\n\t\twhile (current !== null) {\n\t\t\t// If the each block isn't inert, then inert effects are currently outroing and will be removed once the transition is finished\n\t\t\tif ((current.f & INERT) === 0 && current !== state.fallback) {\n\t\t\t\tto_destroy.push(current);\n\t\t\t}\n\n\t\t\tcurrent = skip_to_branch(current.next);\n\t\t}\n\n\t\tvar destroy_length = to_destroy.length;\n\n\t\tif (destroy_length > 0) {\n\t\t\tvar controlled_anchor = (flags & EACH_IS_CONTROLLED) !== 0 && length === 0 ? anchor : null;\n\n\t\t\tif (is_animated) {\n\t\t\t\tfor (i = 0; i < destroy_length; i += 1) {\n\t\t\t\t\tto_destroy[i].nodes?.a?.measure();\n\t\t\t\t}\n\n\t\t\t\tfor (i = 0; i < destroy_length; i += 1) {\n\t\t\t\t\tto_destroy[i].nodes?.a?.fix();\n\t\t\t\t}\n\t\t\t}\n\n\t\t\tpause_effects(state, to_destroy, controlled_anchor);\n\t\t}\n\t}\n\n\tif (is_animated) {\n\t\tqueue_micro_task(() => {\n\t\t\tif (to_animate === undefined) return;\n\t\t\tfor (effect of to_animate) {\n\t\t\t\teffect.nodes?.a?.apply();\n\t\t\t}\n\t\t});\n\t}\n}\n\n/**\n * @template V\n * @param {Map} items\n * @param {Node} anchor\n * @param {V} value\n * @param {unknown} key\n * @param {number} index\n * @param {(anchor: Node, item: V | Source, index: number | Value, collection: () => V[]) => void} render_fn\n * @param {number} flags\n * @param {() => V[]} get_collection\n * @returns {EachItem}\n */\nfunction create_item(items, anchor, value, key, index, render_fn, flags, get_collection) {\n\tvar v =\n\t\t(flags & EACH_ITEM_REACTIVE) !== 0\n\t\t\t? (flags & EACH_ITEM_IMMUTABLE) === 0\n\t\t\t\t? mutable_source(value, false, false)\n\t\t\t\t: source(value)\n\t\t\t: null;\n\n\tvar i = (flags & EACH_INDEX_REACTIVE) !== 0 ? source(index) : null;\n\n\tif (DEV && v) {\n\t\t// For tracing purposes, we need to link the source signal we create with the\n\t\t// collection + index so that tracing works as intended\n\t\tv.trace = () => {\n\t\t\t// eslint-disable-next-line @typescript-eslint/no-unused-expressions\n\t\t\tget_collection()[i?.v ?? index];\n\t\t};\n\t}\n\n\treturn {\n\t\tv,\n\t\ti,\n\t\te: branch(() => {\n\t\t\trender_fn(anchor, v ?? value, i ?? index, get_collection);\n\n\t\t\treturn () => {\n\t\t\t\titems.delete(key);\n\t\t\t};\n\t\t})\n\t};\n}\n\n/**\n * @param {Effect} effect\n * @param {Effect | null} next\n * @param {Text | Element | Comment} anchor\n */\nfunction move(effect, next, anchor) {\n\tif (!effect.nodes) return;\n\n\tvar node = effect.nodes.start;\n\tvar end = effect.nodes.end;\n\n\tvar dest =\n\t\tnext && (next.f & EFFECT_OFFSCREEN) === 0\n\t\t\t? /** @type {EffectNodes} */ (next.nodes).start\n\t\t\t: anchor;\n\n\twhile (node !== null) {\n\t\tvar next_node = /** @type {TemplateNode} */ (get_next_sibling(node));\n\t\tdest.before(node);\n\n\t\tif (node === end) {\n\t\t\treturn;\n\t\t}\n\n\t\tnode = next_node;\n\t}\n}\n\n/**\n * @param {EachState} state\n * @param {Effect | null} prev\n * @param {Effect | null} next\n */\nfunction link(state, prev, next) {\n\tif (prev === null) {\n\t\tstate.effect.first = next;\n\t} else {\n\t\tprev.next = next;\n\t}\n\n\tif (next === null) {\n\t\tstate.effect.last = prev;\n\t} else {\n\t\tnext.prev = prev;\n\t}\n}\n\n/**\n * @param {Array} array\n * @param {(item: any, index: number) => string} key_fn\n * @returns {void}\n */\nfunction validate_each_keys(array, key_fn) {\n\tconst keys = new Map();\n\tconst length = array.length;\n\n\tfor (let i = 0; i < length; i++) {\n\t\tconst key = key_fn(array[i], i);\n\n\t\tif (keys.has(key)) {\n\t\t\tconst a = String(keys.get(key));\n\t\t\tconst b = String(i);\n\n\t\t\t/** @type {string | null} */\n\t\t\tlet k = String(key);\n\t\t\tif (k.startsWith('[object ')) k = null;\n\n\t\t\te.each_key_duplicate(a, b, k);\n\t\t}\n\n\t\tkeys.set(key, i);\n\t}\n}\n","/** @import { Effect, TemplateNode } from '#client' */\n/** @import {} from 'trusted-types' */\nimport {\n\tFILENAME,\n\tHYDRATION_ERROR,\n\tNAMESPACE_SVG,\n\tNAMESPACE_MATHML\n} from '../../../../constants.js';\nimport { remove_effect_dom, template_effect } from '../../reactivity/effects.js';\nimport { hydrate_next, hydrate_node, hydrating, set_hydrate_node } from '../hydration.js';\n\nimport { assign_nodes } from '../template.js';\nimport * as w from '../../warnings.js';\nimport { hash, sanitize_location } from '../../../../utils.js';\nimport { DEV } from 'esm-env';\nimport { dev_current_component_function } from '../../context.js';\nimport { create_element, get_first_child, get_next_sibling } from '../operations.js';\nimport { active_effect } from '../../runtime.js';\nimport { COMMENT_NODE } from '#client/constants';\n\n/**\n * @param {Element} element\n * @param {string | null} server_hash\n * @param {string | TrustedHTML} value\n */\nfunction check_hash(element, server_hash, value) {\n\tif (!server_hash || server_hash === hash(String(value ?? ''))) return;\n\n\tlet location;\n\n\t// @ts-expect-error\n\tconst loc = element.__svelte_meta?.loc;\n\tif (loc) {\n\t\tlocation = `near ${loc.file}:${loc.line}:${loc.column}`;\n\t} else if (dev_current_component_function?.[FILENAME]) {\n\t\tlocation = `in ${dev_current_component_function[FILENAME]}`;\n\t}\n\n\tw.hydration_html_changed(sanitize_location(location));\n}\n\n/**\n * @param {Element | Text | Comment} node\n * @param {() => string | TrustedHTML} get_value\n * @param {boolean} [is_controlled]\n * @param {boolean} [svg]\n * @param {boolean} [mathml]\n * @param {boolean} [skip_warning]\n * @returns {void}\n */\nexport function html(\n\tnode,\n\tget_value,\n\tis_controlled = false,\n\tsvg = false,\n\tmathml = false,\n\tskip_warning = false\n) {\n\tvar anchor = node;\n\n\t/** @type {string | TrustedHTML} */\n\tvar value = '';\n\n\tif (is_controlled) {\n\t\tvar parent_node = /** @type {Element} */ (node);\n\n\t\tif (hydrating) {\n\t\t\tanchor = set_hydrate_node(get_first_child(parent_node));\n\t\t}\n\t}\n\n\ttemplate_effect(() => {\n\t\tvar effect = /** @type {Effect} */ (active_effect);\n\n\t\tif (value === (value = get_value() ?? '')) {\n\t\t\tif (hydrating) hydrate_next();\n\t\t\treturn;\n\t\t}\n\n\t\tif (is_controlled && !hydrating) {\n\t\t\t// When @html is the only child, use innerHTML directly.\n\t\t\t// This also handles contenteditable, where the user may delete the anchor comment.\n\t\t\teffect.nodes = null;\n\t\t\tparent_node.innerHTML = /** @type {string} */ (value);\n\n\t\t\tif (value !== '') {\n\t\t\t\tassign_nodes(\n\t\t\t\t\t/** @type {TemplateNode} */ (get_first_child(parent_node)),\n\t\t\t\t\t/** @type {TemplateNode} */ (parent_node.lastChild)\n\t\t\t\t);\n\t\t\t}\n\n\t\t\treturn;\n\t\t}\n\n\t\tif (effect.nodes !== null) {\n\t\t\tremove_effect_dom(effect.nodes.start, /** @type {TemplateNode} */ (effect.nodes.end));\n\t\t\teffect.nodes = null;\n\t\t}\n\n\t\tif (value === '') return;\n\n\t\tif (hydrating) {\n\t\t\t// We're deliberately not trying to repair mismatches between server and client,\n\t\t\t// as it's costly and error-prone (and it's an edge case to have a mismatch anyway)\n\t\t\tvar hash = /** @type {Comment} */ (hydrate_node).data;\n\n\t\t\t/** @type {TemplateNode | null} */\n\t\t\tvar next = hydrate_next();\n\t\t\tvar last = next;\n\n\t\t\twhile (\n\t\t\t\tnext !== null &&\n\t\t\t\t(next.nodeType !== COMMENT_NODE || /** @type {Comment} */ (next).data !== '')\n\t\t\t) {\n\t\t\t\tlast = next;\n\t\t\t\tnext = get_next_sibling(next);\n\t\t\t}\n\n\t\t\tif (next === null) {\n\t\t\t\tw.hydration_mismatch();\n\t\t\t\tthrow HYDRATION_ERROR;\n\t\t\t}\n\n\t\t\tif (DEV && !skip_warning) {\n\t\t\t\tcheck_hash(/** @type {Element} */ (next.parentNode), hash, value);\n\t\t\t}\n\n\t\t\tassign_nodes(hydrate_node, last);\n\t\t\tanchor = set_hydrate_node(next);\n\t\t\treturn;\n\t\t}\n\n\t\t// Don't use create_fragment_with_script_from_html here because that would mean script tags are executed.\n\t\t// @html is basically `.innerHTML = ...` and that doesn't execute scripts either due to security reasons.\n\t\t// Use a