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feat(core): sourceMutation data-hf-id targeting (R1, T7) (#1272)
* feat(core): clip-model hf- ids minted at parse, emitted as data-hf-id (R1) * docs(core): document legacy-id round-trip in clip-model readback (R1 review) Addresses Rames' review on #1270: clarifies that a pre-R1 clip authored with id="my-title" round-trips as data-hf-id="my-title" (non-hf-shaped but stable, exact-match) by design — targeting uses exact [data-hf-id="…"] match and does not require the hf- shape; legacy values re-mint only at the R7 write-back. Not a bug. Comment-only. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * docs(core): fix misleading legacy-id migration comment in htmlParser.ts The original comment said legacy data-hf-id values "are re-minted only once the R7 write-back persists freshly-minted ids to source" — which is incorrect. ensureHfIds skips elements that already carry data-hf-id, so legacy values (e.g. data-hf-id="my-title") persist indefinitely and are NOT automatically re-minted. Exact-match targeting still works correctly. Update comment to reflect actual behaviour. Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com> * feat(studio): sourcePatcher data-hf-id targeting (R1, T3) * fix(studio): warn on duplicate match in execDataAttrPattern (R1, T3 review) Addresses Rames' review on #1271: execDataAttrPattern returned the first regex match without checking for a second. A duplicate id/data-hf-id in source (id drift) would silently patch one element and leave the other stale. Now warns when more than one element matches. By the mint contract it should never fire. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(studio): pin hfId-is-authoritative-over-selector contract (R1, T3 review) Adds test: "hfId match is authoritative — selector is not used as a narrowing filter". When hfId matches element A and selector points at element B, findTagByTarget returns A without consulting selector as a narrowing filter. Pins the intended behaviour so a future refactor cannot silently start narrowing by selector. Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com> * feat(core): sourceMutation data-hf-id targeting (R1, T7) * test(core): update htmlParser baselines for R1 hf- id format Elements now get data-hf-id minted by ensureHfIds; parser reads data-hf-id as model id, so HTML id attrs are no longer the model id. Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com> * test(core): data-hf-id survives id/selector patch (R1, T7) Locks the preservation guarantee the write-back design depends on: a Studio edit targeting by id or selector (it never sends hfId) must not strip an existing data-hf-id, or the stable handle is destroyed by the next edit. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(core): escape hfId in selector + warn on duplicate match (R1, T7 review) Addresses review on #1272 (Miguel P3 + Rames): findTargetElement interpolated target.hfId raw into a [data-hf-id="..."] selector. Escape it (CSS attr-value injection guard) and warn when a hfId matches more than one element instead of silently patching an arbitrary one. Adds an injection-guard test. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
This commit is contained in:
co-authored by
Claude Opus 4.8
parent
42c247d28f
commit
1cd4ad6ab8
@@ -26,13 +26,13 @@ describe("parseHtml", () => {
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const result = parseHtml(html);
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expect(result.elements).toHaveLength(2);
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expect(result.elements[0].id).toBe("text1");
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expect(result.elements[0].id).toMatch(/^hf-[a-z0-9]{4}$/);
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expect(result.elements[0].startTime).toBe(0);
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expect(result.elements[0].duration).toBe(5);
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expect(result.elements[0].name).toBe("Title");
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expect(result.elements[0].type).toBe("text");
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expect(result.elements[1].id).toBe("text2");
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expect(result.elements[1].id).toMatch(/^hf-[a-z0-9]{4}$/);
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expect(result.elements[1].startTime).toBe(2);
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expect(result.elements[1].duration).toBe(5);
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});
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@@ -53,7 +53,7 @@ describe("parseHtml", () => {
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expect(result.elements).toHaveLength(1);
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expect(result.elements[0].type).toBe("composition");
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expect(result.elements[0].id).toBe("comp1");
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expect(result.elements[0].id).toMatch(/^hf-[a-z0-9]{4}$/);
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if (result.elements[0].type === "composition") {
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expect(result.elements[0].compositionId).toBe("abc123");
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expect(result.elements[0].src).toBe("/compositions/abc123");
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@@ -76,20 +76,20 @@ describe("parseHtml", () => {
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expect(result.elements).toHaveLength(3);
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const video = result.elements.find((e) => e.id === "vid1");
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const video = result.elements.find((e) => e.type === "video");
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expect(video).toBeDefined();
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expect(video?.type).toBe("video");
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expect(video?.id).toMatch(/^hf-[a-z0-9]{4}$/);
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if (video?.type === "video") {
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expect(video.src).toBe("video.mp4");
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}
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const audio = result.elements.find((e) => e.id === "aud1");
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const audio = result.elements.find((e) => e.type === "audio");
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expect(audio).toBeDefined();
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expect(audio?.type).toBe("audio");
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expect(audio?.id).toMatch(/^hf-[a-z0-9]{4}$/);
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const img = result.elements.find((e) => e.id === "img1");
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const img = result.elements.find((e) => e.type === "image");
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expect(img).toBeDefined();
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expect(img?.type).toBe("image");
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expect(img?.id).toMatch(/^hf-[a-z0-9]{4}$/);
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});
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it("handles missing attributes gracefully", () => {
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@@ -398,9 +398,12 @@ describe("parseHtml", () => {
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`;
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const result = parseHtml(html);
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expect(result.keyframes["text1"]).toBeDefined();
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expect(result.keyframes["text1"]).toHaveLength(2);
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expect(result.keyframes["text1"][0].id).toBe("kf1");
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const elId = result.elements[0]?.id ?? "";
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expect(elId).toMatch(/^hf-[a-z0-9]{4}$/);
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const kfs = result.keyframes[elId];
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expect(kfs).toBeDefined();
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expect(kfs).toHaveLength(2);
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expect(kfs[0].id).toBe("kf1");
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});
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it("parses stage zoom keyframes", () => {
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@@ -368,13 +368,90 @@ describe("probeElementInSource", () => {
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// Covers the same surface as T3 (Studio sourcePatcher) — Core sourceMutation supports
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// all patch types (inline-style, attribute, text-content) via patchElementInHtml.
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describe("T7 — data-hf-id targeting (spec for R1)", () => {
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it.todo("updates inline style by data-hf-id when no HTML id attribute is present");
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it("updates inline style by data-hf-id when no HTML id attribute is present", () => {
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const source = `<h1 data-hf-id="hf-x7k2" style="color: red">Hello</h1>`;
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const { html, matched } = patchElementInHtml(source, { hfId: "hf-x7k2" }, [
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{ type: "inline-style", property: "color", value: "blue" },
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]);
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expect(matched).toBe(true);
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expect(html).toMatch(/color:\s*blue/);
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expect(html).toContain('data-hf-id="hf-x7k2"');
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});
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it.todo("updates text content by data-hf-id");
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it("updates text content by data-hf-id", () => {
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const source = `<p data-hf-id="hf-a1b2">Old text</p>`;
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const { html, matched } = patchElementInHtml(source, { hfId: "hf-a1b2" }, [
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{ type: "text-content", property: "", value: "New text" },
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]);
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expect(matched).toBe(true);
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expect(html).toContain("New text");
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});
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it.todo("updates attribute by data-hf-id");
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it("updates attribute by data-hf-id", () => {
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const source = `<div data-hf-id="hf-c3d4" data-start="0"></div>`;
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const { html, matched } = patchElementInHtml(source, { hfId: "hf-c3d4" }, [
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{ type: "attribute", property: "start", value: "2.5" },
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]);
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expect(matched).toBe(true);
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expect(html).toContain('data-start="2.5"');
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});
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it.todo("data-hf-id attribute survives the patch (can be targeted again)");
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it("data-hf-id attribute survives the patch (can be targeted again)", () => {
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const source = `<h1 data-hf-id="hf-x7k2" style="color: red">Hello</h1>`;
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const { html } = patchElementInHtml(source, { hfId: "hf-x7k2" }, [
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{ type: "inline-style", property: "color", value: "blue" },
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]);
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expect(html).toContain('data-hf-id="hf-x7k2"');
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});
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it.todo("hfId lookup falls through to selector when hfId is not found in the document");
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it("hfId lookup falls through to selector when hfId is not found in the document", () => {
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const source = `<h1 class="headline" style="color: red">Hello</h1>`;
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const { html, matched } = patchElementInHtml(
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source,
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{ hfId: "hf-missing", selector: ".headline" },
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[{ type: "inline-style", property: "color", value: "blue" }],
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);
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expect(matched).toBe(true);
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expect(html).toMatch(/color:\s*blue/);
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});
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it("does not break out of the selector on a crafted hfId (CSS injection guard)", () => {
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// A value with a quote/bracket must be escaped, not injected — it should
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// simply match nothing and leave the source untouched, never throw.
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const source = `<h1 class="safe">A</h1><h1 class="victim">B</h1>`;
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const evil = `x"] , [class="victim`;
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const run = () =>
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patchElementInHtml(source, { hfId: evil }, [
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{ type: "text-content", property: "textContent", value: "HACKED" },
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]);
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expect(run).not.toThrow();
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const { html, matched } = run();
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expect(matched).toBe(false);
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expect(html).toBe(source);
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expect(html).not.toContain("HACKED");
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});
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// The Studio edit path targets by id/selector (it never sends hfId). Once a
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// persisted data-hf-id exists in source, those edits must NOT strip it — else
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// the stable handle is destroyed by the next edit. This is the preservation
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// guarantee the write-back design depends on.
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it("preserves an existing data-hf-id when the element is patched by id", () => {
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const source = `<h1 id="hero" data-hf-id="hf-x7k2" style="color: red">Hello</h1>`;
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const { html, matched } = patchElementInHtml(source, { id: "hero" }, [
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{ type: "inline-style", property: "color", value: "blue" },
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]);
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expect(matched).toBe(true);
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expect(html).toMatch(/color:\s*blue/);
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expect(html).toContain('data-hf-id="hf-x7k2"');
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});
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it("preserves an existing data-hf-id when the element is patched by selector", () => {
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const source = `<p class="body" data-hf-id="hf-a1b2">Old</p>`;
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const { html, matched } = patchElementInHtml(source, { selector: ".body" }, [
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{ type: "text-content", property: "textContent", value: "New" },
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]);
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expect(matched).toBe(true);
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expect(html).toContain("New");
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expect(html).toContain('data-hf-id="hf-a1b2"');
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});
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});
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@@ -2,6 +2,7 @@ import { parseHTML } from "linkedom";
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export interface SourceMutationTarget {
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id?: string | null;
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hfId?: string;
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selector?: string;
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selectorIndex?: number;
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}
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@@ -31,7 +32,41 @@ function querySelectorAllWithTemplates(root: Document | Element, selector: strin
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return [];
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}
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// Prevent CSS attribute-selector injection via a crafted hfId: escape
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// backslashes first, then double-quotes. Keeps a malformed/hostile value from
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// breaking out of the `[data-hf-id="…"]` selector once callers beyond the
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// internal mint contract (R2+ user flows) pass values here.
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function escapeCssAttrValue(value: string): string {
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return value.replace(/\\/g, "\\\\").replace(/"/g, '\\"');
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}
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function findByHfId(document: Document, hfId: string): Element | null {
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try {
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const matches = querySelectorAllWithTemplates(
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document,
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`[data-hf-id="${escapeCssAttrValue(hfId)}"]`,
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);
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if (matches.length > 1) {
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// The mint contract guarantees uniqueness; a duplicate means upstream
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// id drift. Don't silently patch an arbitrary one — surface it.
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// eslint-disable-next-line no-console
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console.warn(
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`sourceMutation: data-hf-id "${hfId}" matched ${matches.length} elements; using the first. ids must be unique per document.`,
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);
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}
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return matches[0] ?? null;
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} catch {
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// Malformed selector despite escaping — let the caller fall back.
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return null;
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}
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}
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function findTargetElement(document: Document, target: SourceMutationTarget): Element | null {
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if (target.hfId) {
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const el = findByHfId(document, target.hfId);
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if (el) return el;
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}
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if (target.id) {
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const byId = document.getElementById(target.id);
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if (byId) return byId;
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@@ -207,7 +242,7 @@ export function patchElementInHtml(
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}
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export function probeElementInSource(source: string, target: SourceMutationTarget): boolean {
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if (!target.id && !target.selector) return false;
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if (!target.id && !target.hfId && !target.selector) return false;
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const { document } = parseSourceDocument(source);
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const el = findTargetElement(document, target);
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return el != null && isHTMLElement(el);
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