import assert from "node:assert/strict"; import { test } from "node:test"; // The web runtime is the WEB Host: it parses the injected seed, reports its // platform, and delegates action generation to the shared picker. These tests // guard the Host surface and the seed-precision contract. DOM candidate // enumeration is exercised against a minimal querySelectorAll stub. // A 64-bit seed that loses precision as a JS Number must survive as a BigInt. process.env.SANDERLING_SEED = "9007199254740993"; // cssEscape delegates to the browser's CSS.escape, absent in node. Install the // WHATWG CSSOM escape algorithm so selector-builder tests exercise the real // escaping production relies on, not a stub. if (!(globalThis as { CSS?: unknown }).CSS) { (globalThis as { CSS?: { escape(v: string): string } }).CSS = { escape(value: string): string { let out = ""; for (let i = 0; i < value.length; i++) { const c = value.charCodeAt(i); if (c === 0) { out += "�"; } else if ( (c >= 0x1 && c <= 0x1f) || c === 0x7f || (i === 0 && c >= 0x30 && c <= 0x39) || (i === 1 && c >= 0x30 && c <= 0x39 && value.charCodeAt(0) === 0x2d) ) { out += "\\" + c.toString(16) + " "; } else if (i === 0 && c === 0x2d && value.length === 1) { out += "\\" + value[i]; } else if ( c >= 0x80 || c === 0x2d || c === 0x5f || (c >= 0x30 && c <= 0x39) || (c >= 0x41 && c <= 0x5a) || (c >= 0x61 && c <= 0x7a) ) { out += value[i]; } else { out += "\\" + value[i]; } } return out; }, }; } const { __testing__ } = await import("../src/web-runtime.ts"); const { host } = __testing__; test("platform is web", () => { assert.equal(host.platform(), "web"); }); test("seedHi parses the injected 64-bit seed without Number precision loss", () => { assert.equal(host.seedHi(), 9007199254740993n); }); test("seedLo is 0 to match goja rand.NewPCG(seed, 0)", () => { assert.equal(host.seedLo(), 0n); }); test("reportUnsupported warns once via console.warn", () => { const original = console.warn; const messages: string[] = []; console.warn = (m: string) => messages.push(m); try { host.reportUnsupported("swipes"); } finally { console.warn = original; } assert.equal(messages.length, 1); assert.match(messages[0]!, /swipes/); }); // installRuntime locked the next-action and extractor globals at import. test("installRuntime defined the host-invoked globals", () => { const g = globalThis as Record; assert.equal(typeof g.__sanderlingNextAction__, "function"); assert.equal(typeof g.__sanderlingExtractors__, "function"); assert.equal(typeof g.__sanderling__, "object"); }); const { fakeElement, withFakeDocument } = await import("./web-dom-harness.ts"); type FakeElementSpec = Parameters[0]; // The host reports facts and never routes verbs: which of these a verb may act // on is decided by the shared rule in src/targets.ts, exercised across both // engines by host-parity.test.ts. test("queryTargets reports the tappable selector set as clickable", () => { const button = fakeElement({ tag: "button", x: 10, y: 20, width: 40, height: 8, clickable: true }); const plain = fakeElement({ tag: "div", x: 0, y: 0, width: 100, height: 100 }); withFakeDocument([button, plain], () => { const targets = host.queryTargets(); assert.equal(targets.length, 2); assert.equal(targets[0]!.clickable, true); assert.deepEqual({ x: targets[0]!.x, y: targets[0]!.y }, { x: 30, y: 24 }); assert.equal(targets[1]!.clickable, false); }); }); test("queryTargets reports only real text inputs as editable", () => { const input = fakeElement({ tag: "input", x: 0, y: 0, width: 100, height: 20, editable: true }); const checkbox = fakeElement({ tag: "input", x: 0, y: 40, width: 20, height: 20, editable: true }); checkbox.type = "checkbox"; withFakeDocument([input, checkbox], () => { const targets = host.queryTargets(); assert.equal(targets[0]!.editable, true); assert.deepEqual({ x: targets[0]!.x, y: targets[0]!.y }, { x: 50, y: 10 }); assert.equal(targets[1]!.editable, false); }); }); // A disabled control used to be dropped from every verb's candidates, because // the web host folded `disabled` into its visibility check. It is a fact of its // own now, so `taps` still skips it while `swipes` can still start on it, which // is what the native host has always done. test("queryTargets reports a disabled control rather than dropping it", () => { const disabled = fakeElement({ tag: "button", x: 0, y: 0, width: 40, height: 20, clickable: true, disabled: true, }); withFakeDocument([disabled], () => { const targets = host.queryTargets(); assert.equal(targets.length, 1); assert.equal(targets[0]!.clickable, true); assert.equal(targets[0]!.enabled, false); }); }); // A target with no selector is a target no property can name. The action the // picker builds from it carries coordinates only, so `lastAction.on` is empty // and any property matching on WHICH control was acted upon cannot fire. test("queryTargets names a uniquely identified target", () => { const submit = fakeElement({ tag: "button", x: 0, y: 0, width: 40, height: 20, clickable: true, id: "TxnSubmit", }); const byTestid = fakeElement({ tag: "button", x: 0, y: 40, width: 40, height: 20, clickable: true, testid: "cancel", }); const byLabel = fakeElement({ tag: "button", x: 0, y: 80, width: 40, height: 20, clickable: true, label: "Close", }); // alt and title are the fallbacks the hierarchy dump folds into content-desc, // so the host has to fall back to them in the same order or a name it calls // unique resolves to a different element on the Go side. const byAlt = fakeElement({ tag: "img", x: 0, y: 120, width: 40, height: 20, alt: "Logo" }); const byTitle = fakeElement({ tag: "div", x: 0, y: 160, width: 40, height: 20, title: "Help" }); const anonymous = fakeElement({ tag: "div", x: 0, y: 200, width: 10, height: 10 }); withFakeDocument([submit, byTestid, byLabel, byAlt, byTitle, anonymous], () => { const targets = host.queryTargets(); assert.equal(targets[0]!.selector, "id:TxnSubmit"); assert.equal(targets[1]!.selector, "data-testid:cancel"); assert.equal(targets[2]!.selector, "desc:Close"); assert.equal(targets[3]!.selector, "desc:Logo"); assert.equal(targets[4]!.selector, "desc:Help"); assert.equal(targets[5]!.selector, undefined); }); }); // A repeated id (folio's Home screen renders one AccountCard testTag per // account) names no single element, so the runner would re-resolve the action // onto whichever sibling it found first. Better unnamed than mis-aimed. test("queryTargets leaves duplicated identities unnamed", () => { const first = fakeElement({ tag: "div", x: 0, y: 0, width: 40, height: 20, clickable: true, id: "AccountCard", }); const second = fakeElement({ tag: "div", x: 0, y: 40, width: 40, height: 20, clickable: true, id: "AccountCard", }); withFakeDocument([first, second], () => { const targets = host.queryTargets(); assert.equal(targets[0]!.selector, undefined); assert.equal(targets[1]!.selector, undefined); }); }); // The enumeration ORDER is the parity contract. buildTree in // internal/driver/chrome/driver.go emits a host's shadow children before its // light ones, and TestHierarchy_DerivesTheSameFactsAsTheWebRuntime compares the // two enumerations position by position. test("queryTargets splices shadow content in before the host's light children", () => { const page = fakeElement({ tag: "div", x: 0, y: 0, width: 400, height: 800, id: "page", children: [ { tag: "div", x: 0, y: 0, width: 400, height: 100, id: "mount", shadow: [ { tag: "button", x: 0, y: 0, width: 40, height: 20, id: "shadow-save", clickable: true }, ], children: [{ tag: "div", x: 0, y: 20, width: 40, height: 20, id: "mount-light-child" }], }, { tag: "div", x: 0, y: 100, width: 400, height: 100, id: "after" }, ], }); withFakeDocument([page], () => { assert.deepEqual( host.queryTargets().map((target) => target.selector), ["id:page", "id:mount", "id:shadow-save", "id:mount-light-child", "id:after"], ); }); }); // The tappable set is resolved by selector, and querySelectorAll stops dead at // a shadow boundary, so a control inside a shadow root carries the clickable // fact only if the selector sweep descends. A Compose for Web app keeps every // control it has on the far side of one boundary. test("queryTargets reports a shadow-hosted control as clickable", () => { const mount = fakeElement({ tag: "div", x: 0, y: 0, width: 400, height: 100, id: "mount", shadow: [ { tag: "button", x: 0, y: 0, width: 40, height: 20, id: "shadow-save", clickable: true }, { tag: "input", x: 0, y: 20, width: 40, height: 20, id: "shadow-amount", editable: true }, ], }); withFakeDocument([mount], () => { const targets = host.queryTargets(); assert.deepEqual( targets.map((target) => target.selector), ["id:mount", "id:shadow-save", "id:shadow-amount"], ); assert.equal(targets[1]!.clickable, true); assert.equal(targets[2]!.editable, true); }); }); test("queryTargets caches within a tick until reset", () => { const button = fakeElement({ tag: "button", x: 0, y: 0, width: 10, height: 10, clickable: true }); withFakeDocument([button], () => { const first = host.queryTargets(); const second = host.queryTargets(); assert.equal(first, second); __testing__.resetTargetCache(); assert.notEqual(host.queryTargets(), first); }); }); // evaluateExtractors builds State, which references document and window. const emptyDocument = { querySelector: () => null, querySelectorAll: () => [], }; function withState(run: () => void) { const g = globalThis as Record; const originalDocument = g.document; const originalWindow = g.window; g.document = emptyDocument; g.window = {}; try { run(); } finally { g.document = originalDocument; g.window = originalWindow; } } // Every reading leaves the runtime inside a {value} envelope, so an extractor // whose getter returned undefined keeps its index instead of being dropped by // JSON.stringify. function readingOf(values: Record, index: number): unknown { return values[index]!.value; } test("named() sets the extractor's display name", () => { const handle = __testing__.runtime.extract(() => "home").named("route"); const entry = __testing__.extractors.find((e) => e.handle === handle); assert.equal(entry?.name, "route"); }); test("reading another extractor's current inside a getter throws", () => { const first = __testing__.runtime.extract(() => 1); let caught: Error | undefined; __testing__.runtime.extract(() => { try { return first.current; } catch (error) { caught = error as Error; return undefined; } }); withState(() => __testing__.evaluateExtractors()); assert.match( caught?.message ?? "", /inside another extractor is not allowed/, ); }); // An uncaught cross-extractor read must abort evaluateExtractors loudly, exactly // like goja's PushSnapshot. If the getter throw were swallowed, web would // silently yield undefined and the guard would be a no-op for real authors. test("an uncaught cross-extractor read aborts evaluateExtractors", () => { __testing__.extractors.length = 0; const first = __testing__.runtime.extract(() => 1); __testing__.runtime.extract(() => first.previous); let thrown: Error | undefined; withState(() => { try { __testing__.evaluateExtractors(); } catch (error) { thrown = error as Error; } }); assert.match( thrown?.message ?? "", /inside another extractor is not allowed/, ); }); // JSON.stringify drops an undefined-valued key, so a reading written straight // into the table took the extractor's whole INDEX with it when the getter // returned undefined - folio's on(route, tag) off its own screen, which is most // of its extractors on most steps. The host then kept goja's dump-derived value // for those and the page's for the rest, and a property comparing previous to // current across that split convicts an app that did nothing wrong. test("an extractor that returned undefined keeps its index through JSON", () => { __testing__.extractors.length = 0; __testing__.runtime.extract(() => undefined); __testing__.runtime.extract(() => null); __testing__.runtime.extract(() => 5); let table: Record = {}; withState(() => { table = __testing__.evaluateExtractors(); }); const overTheWire = JSON.parse(JSON.stringify(table)) as Record; assert.deepEqual(Object.keys(overTheWire), ["0", "1", "2"]); // undefined and null have to stay distinguishable across the wire: the goja // host records undefined for a getter that returned undefined, so reporting // null instead would make `x.current === undefined` answer one thing on // native and another on web. assert.equal("value" in overTheWire["0"]!, false); assert.equal(overTheWire["1"]!.value, null); assert.equal(overTheWire["2"]!.value, 5); }); // state.lastAction is the one piece of state the page cannot observe for // itself: only the runner knows which action it actually applied. While the web // runtime hardcoded null there, a spec property gated on the last action (e.g. // folio's submitMovesBalanceByAtMostTypedAmount, which only looks at taps on // TxnSubmit) was vacuously true on web forever, and the run went green having // checked nothing. function lastActionSeenByASpec(pushed: unknown): unknown { const setLastAction = (globalThis as Record) .__sanderlingSetLastAction__ as (value: unknown) => void; __testing__.extractors.length = 0; __testing__.runtime.extract((state) => (state as { lastAction: unknown }).lastAction); let out: Record = {}; withState(() => { setLastAction(pushed); out = __testing__.evaluateExtractors(); }); return readingOf(out, 0); } test("state.lastAction carries the action the host pushed", () => { const action = { kind: "Tap", on: "id:TxnSubmit" }; assert.deepEqual(lastActionSeenByASpec(action), action); }); test("state.lastAction is null when the host pushed nothing", () => { // The first step of a run, and any step whose action was never applied: the // goja host reports null there, so the web host must too. assert.equal(lastActionSeenByASpec(null), null); }); // state.logs is the same kind of hole. Console output reaches the runner over // CDP, so the page cannot read it back, and while the web runtime hardcoded [] // there the default noLogcatErrors counted an empty array on every web run: a // page whose console was full of errors went green having checked nothing. function logsSeenByASpec(pushed: unknown): unknown { const setLogs = (globalThis as Record).__sanderlingSetLogs__ as ( value: unknown, ) => void; __testing__.extractors.length = 0; __testing__.runtime.extract((state) => (state as { logs: unknown }).logs); let out: Record = {}; withState(() => { setLogs(pushed); out = __testing__.evaluateExtractors(); }); return readingOf(out, 0); } test("state.logs carries the entries the host pushed", () => { const entries = [ { unixMillis: 1700000000123, level: "E", tag: "console", message: "boom from the page" }, ]; assert.deepEqual(logsSeenByASpec(entries), entries); }); test("state.logs is empty when the host pushed no entries", () => { assert.deepEqual(logsSeenByASpec([]), []); }); // sanitize runs over every extractor's return value before it leaves the // runtime. A user extractor that returns a page object reachable from // document/window can be self-referential, carry functions, or nest deeply; // without cycle, function, and depth guards extraction overflows the stack or // emits non-serializable values. These exercise sanitize via the real path. function sanitizeViaExtract(value: unknown): unknown { __testing__.extractors.length = 0; __testing__.runtime.extract(() => value); let out: Record = {}; withState(() => { out = __testing__.evaluateExtractors(); }); return readingOf(out, 0); } test("sanitize breaks a self-referential cycle instead of overflowing", () => { const cyclic: Record = { name: "root" }; cyclic.self = cyclic; const result = sanitizeViaExtract(cyclic) as Record; assert.equal(result.name, "root"); assert.equal(result.self, null); }); test("sanitize drops function-valued properties", () => { const result = sanitizeViaExtract({ keep: 1, fn: () => 7 }) as Record; assert.deepEqual(result, { keep: 1 }); }); test("sanitize drops a top-level function to undefined", () => { assert.equal(sanitizeViaExtract(() => 7), undefined); }); test("sanitize bounds recursion past its depth limit", () => { let deep: Record = { leaf: true }; for (let i = 0; i < 40; i++) deep = { next: deep }; // Walk to the depth cap; beyond it sanitize must yield null, not recurse on. let node: unknown = sanitizeViaExtract(deep); for (let i = 0; i < 32 && node && typeof node === "object"; i++) { node = (node as Record).next; } assert.equal(node, null); }); test("sanitize preserves arrays and nested plain values", () => { const result = sanitizeViaExtract({ items: [1, "two", { ok: true }] }); assert.deepEqual(result, { items: [1, "two", { ok: true }] }); }); // xpathStringLiteral builds XPath 1.0 string literals by hand (no escape // syntax in XPath 1.0). A value carrying a quote that isn't wrapped or // concat()-composed produces a malformed expression, so document.evaluate // throws or, worse, matches the wrong node by truncating at the quote. const { xpathStringLiteral } = __testing__; test("xpathStringLiteral table: quote handling stays well-formed", () => { const cases: Array<[string, string]> = [ ["plain", '"plain"'], ['has"double', `'has"double'`], ["has'single", `"has'single"`], [`both"and'`, `concat("both", '"', "and'")`], [`"`, `'"'`], ]; for (const [input, want] of cases) { assert.equal(xpathStringLiteral(input), want, input); } }); // selectorFromString routes a "kind:value" prefix; text becomes an XPath // equality, everything else a CSS attribute selector. A value containing a // colon must not be re-split, and a quote in a text value must reach the // well-formed XPath literal rather than corrupting the predicate. const { selectorFromString, selectorFromObject } = __testing__; test("selectorFromString routes text to a normalize-space XPath", () => { assert.deepEqual(selectorFromString("text:Hello"), { xpath: `//*[normalize-space(text())="Hello"]`, }); }); test("selectorFromString keeps colons in the value intact", () => { // Only the first colon splits kind from value; the rest is the value. assert.deepEqual(selectorFromString("text:a:b:c"), { xpath: `//*[normalize-space(text())="a:b:c"]`, }); }); test("selectorFromString text value with both quote kinds uses concat", () => { assert.deepEqual(selectorFromString(`text:say "hi" o'clock`), { xpath: `//*[normalize-space(text())=concat("say ", '"', "hi", '"', " o'clock")]`, }); }); test("selectorFromObject escapes attribute values to prevent injection", () => { // A quote in an id value, left unescaped, would close the attribute selector // early and match a different element. assert.deepEqual(selectorFromObject({ id: 'a"]' }), { css: `[id="a\\"\\]"]`, }); }); test("selectorFromObject maps known keys to their canonical attribute", () => { assert.deepEqual(selectorFromObject({ testID: "submit" }), { css: `[data-testid="submit"]`, }); }); // Compose Multiplatform emits its testTag into `id`, which the native table // already accepts via the resource-id alias. The web table must not be the one // place that rejects it. test("selectorFromObject resolves testTag through data-testid or id", () => { assert.deepEqual(selectorFromObject({ testTag: "LoginSubmit" }), { css: `:is([data-testid="LoginSubmit"], [id="LoginSubmit"])`, }); }); // Multi-key selectors concatenate their parts into one compound, so the // two-attribute testTag match has to stay a single compound piece. test("selectorFromObject composes testTag with a second key", () => { assert.deepEqual(selectorFromObject({ testTag: "Row", "aria-label": "first" }), { css: `:is([data-testid="Row"], [id="Row"])[aria-label="first"]`, }); }); test("selectorFromObject falls back to a literal attribute for unknown keys", () => { assert.deepEqual(selectorFromObject({ "data-foo": "bar" }), { css: `[data-foo="bar"]`, }); }); test("selectorFromObject text-only selector becomes an XPath", () => { assert.deepEqual(selectorFromObject({ text: "Go" }), { xpath: `//*[normalize-space(text())="Go"]`, }); }); // An ax element is labelled with the selector it was found by, in the same // canonical grammar selectorStringFromJS emits in internal/verifier/marshal.go. // The label is what a spec's own Tap({ on: state.ax.find(...) }) carries to the // runner: with no label the action is coordinates only, `lastAction.on` is // empty, and a property matching on WHICH control was tapped cannot fire. const { selectorTag } = __testing__; test("selectorTag renders the selector shapes the goja host renders", () => { assert.equal(selectorTag("testTag:TxnSubmit"), "testTag:TxnSubmit"); assert.equal(selectorTag({ testTag: "TxnSubmit" }), "testTag:TxnSubmit"); assert.equal( selectorTag([{ testTag: "AddTransactionScreen" }, { testTag: "TxnSubmit" }]), "testTag:AddTransactionScreen > testTag:TxnSubmit", ); assert.equal(selectorTag({ testTag: "Row", "aria-label": "first" }), "testTag:Row aria-label:first"); assert.equal(selectorTag(undefined), ""); }); // A selector path scopes the second segment to each match of the first. It // returned nothing at all on web while returning matches on native, so folio's // accounts/totalBalance extractors (findAll([{HomeScreen}, {AccountCard}])) // were empty on every web step and the properties over them checked nothing. test("ax.findAll resolves a selector path segment by segment", () => { const card = (id: string, y: number): FakeElementSpec => ({ tag: "div", x: 0, y, width: 10, height: 10, testid: "AccountCard", text: id, }); // The stray card is outside HomeScreen, so a document-wide sweep for the // second segment picks it up and the scoping assertion below fails. const page = fakeElement({ tag: "div", x: 0, y: 0, width: 100, height: 100, children: [ { tag: "div", x: 0, y: 0, width: 100, height: 50, testid: "HomeScreen", children: [card("first", 0), card("second", 10)], }, card("stray", 60), ], }); withFakeDocument([page], () => { __testing__.extractors.length = 0; __testing__.runtime.extract((state) => { const ax = (state as { ax: { findAll(s: unknown): Record[] } }).ax; return ax .findAll([{ testTag: "HomeScreen" }, { testTag: "AccountCard" }]) .map((card) => card.text); }); const values = __testing__.evaluateExtractors(); // Scoped to the head match: the cards come from the HomeScreen node, not // from a document-wide sweep for AccountCard. assert.deepEqual(readingOf(values, 0), ["first", "second"]); }); }); test("ax.find and ax.findAll label the element with its selector", () => { const submit = fakeElement({ tag: "div", x: 0, y: 0, width: 10, height: 10, id: "TxnSubmit", text: "Submit", }); withFakeDocument([submit], () => { __testing__.extractors.length = 0; __testing__.runtime.extract((state) => { const ax = (state as { ax: { find(s: unknown): Record | undefined } }).ax; return ax.find({ testTag: "TxnSubmit" }); }); __testing__.runtime.extract((state) => { const ax = (state as { ax: { findAll(s: unknown): Record[] } }).ax; return ax.findAll({ testTag: "TxnSubmit" }); }); const values = __testing__.evaluateExtractors(); const found = readingOf(values, 0) as Record; assert.equal(found.__sanderlingSelector, "testTag:TxnSubmit"); // findAll passes each element through map(); passing the callback by // reference would hand the array INDEX to the runtime as the selector. const all = readingOf(values, 1) as Record[]; assert.equal(all[0]!.__sanderlingSelector, "testTag:TxnSubmit"); }); }); // One page, one selector, two hosts. The goja host resolves a selector against // the hierarchy dump, whose buildTree (internal/driver/chrome/driver.go) emits // a host's shadow children BEFORE its light ones, so a pre-order search there // reaches a shadow-hosted match first. deepQueryAll swept the whole light DOM // first and only then descended, so this page answered find({id:"x"}) with the // light node in V8 and the shadow node in goja, and on web V8's answer is the // one that reaches the properties. test("ax.find resolves the shadow-hosted match the hierarchy dump reaches first", () => { const page = fakeElement({ tag: "div", x: 0, y: 0, width: 400, height: 800, id: "page", children: [ { tag: "div", x: 0, y: 0, width: 400, height: 100, id: "mount", shadow: [{ tag: "span", x: 0, y: 0, width: 40, height: 20, id: "x", text: "shadow" }], }, { tag: "span", x: 0, y: 100, width: 40, height: 20, id: "x", text: "light" }, ], }); withFakeDocument([page], () => { __testing__.extractors.length = 0; __testing__.runtime.extract((state) => { const ax = (state as { ax: { find(s: unknown): Record | undefined } }).ax; return ax.find("id:x")?.text; }); __testing__.runtime.extract((state) => { const ax = (state as { ax: { findAll(s: unknown): Record[] } }).ax; return ax.findAll("id:x").map((element) => element.text); }); const values = __testing__.evaluateExtractors(); assert.equal(readingOf(values, 0), "shadow"); assert.deepEqual(readingOf(values, 1), ["shadow", "light"]); }); }); // A nested undefined is the one reading shape the two hosts do NOT encode // alike, and this pins the split instead of hiding it. JSON has no undefined, // so the key goes with the value here; goja marshals the same member as null, // and it cannot do otherwise, because an exported goja object reports undefined // and null identically, so dropping those keys there would drop the genuine // nulls this host keeps. Carrying the member across would take a wire format // that can express undefined. // // What both hosts DO agree on is the member's value: reading it answers // undefined either way, and that is the guarantee a property may rely on. Key // presence (`in`, Object.keys) is not. // TestExtractorEncoding_NestedUndefinedIsNotOnTheWire in // internal/verifier/extractor_encoding_test.go pins the other half. test("a nested undefined leaves the page as a dropped key, a nested null does not", () => { __testing__.extractors.length = 0; __testing__.runtime.extract(() => ({ absent: undefined, empty: null, present: 1 })); let wire = ""; withState(() => { // Exactly what extractorScript in internal/driver/chrome/driver.go sends. wire = JSON.stringify(__testing__.evaluateExtractors()); }); assert.equal(wire, `{"0":{"value":{"empty":null,"present":1}}}`); });