scrollToLoad walks a progressively-loading list to the bottom before the steps that act on its items run. Stopping is two-part: no new matches appeared AND the container was already pinned to the bottom — counting alone stops early on a slow fetch. Hitting the scroll cap is reported rather than passed off as done, so a later step never works quietly on a partial list. The scrolling element is usually not the window. Lists like this live in a div with its own overflow, and scrolling the document does nothing at all, so the step walks up from a matched item to the ancestor that actually scrolls — overflow allows it and there is more content than fits — with containerSelector to name one outright when the guess is wrong. Verified against a page whose document also scrolls, which is the case that tells the two apart: it found the inner div and pulled 12 items up to 60 in 7 scrolls. waitFor gains `absent`, for waiting on something to go rather than arrive — a modal closing after a reset. It only accepts a genuine "selector matched nothing"; an unreachable extension looks the same from a distance and would otherwise satisfy the gate for the wrong reason, sending the next iteration into a page that still has the modal open. The locate queue carries a free-form options blob now, so a new kind of request stops meaning a new column each time. Also fixes a missing comma in the reset flow that broke the build. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
536 lines
22 KiB
JavaScript
536 lines
22 KiB
JavaScript
/* AutoFirmer Capture — MV3 service worker.
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*
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* Loop: poll GET /api/autobuyer/status. While `enabled` is true, scrape the
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* target tab's HTML and POST it to /api/autobuyer/capture. The dashboard's
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* AutoBuyer page renders whatever landed there.
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*/
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const DEFAULTS = {
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apiBase: 'http://localhost:3000',
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pollSeconds: 3,
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// Optional CSS selector — matching elements get their on-screen position
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// measured alongside the HTML.
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elementSelector: '',
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};
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let timer = null;
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let pendingLocate = 0;
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// ── Config / state ──────────────────────────────────────────────────────────
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async function getConfig() {
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const stored = await chrome.storage.local.get(Object.keys(DEFAULTS));
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const cfg = { ...DEFAULTS, ...stored };
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cfg.apiBase = String(cfg.apiBase).replace(/\/+$/, '');
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return cfg;
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}
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/** Mirror the worker's status into storage so the popup can render it. */
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async function setState(patch) {
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const { state: prev } = await chrome.storage.local.get('state');
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await chrome.storage.local.set({ state: { ...(prev || {}), ...patch, updatedAt: Date.now() } });
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}
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function setBadge(connected, enabled) {
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chrome.action.setBadgeText({ text: !connected ? '!' : enabled ? 'ON' : '' });
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chrome.action.setBadgeBackgroundColor({ color: !connected ? '#ef4444' : '#22c55e' });
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}
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// ── The injected scraper ────────────────────────────────────────────────────
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/** Runs in the page's own world. Must be self-contained — nothing from this
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* file's scope is available inside it. */
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function pageCapture(selector) {
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// getBoundingClientRect() measures from the top-left of the viewport, so
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// rect.left / rect.top ARE the element's position relative to the window.
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// + scrollX/scrollY -> position within the document
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// + screenX/screenY and the chrome height -> absolute desktop coordinates,
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// which is what an OS-level clicker needs.
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const chromeHeight = window.outerHeight - window.innerHeight;
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const elements = selector
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? Array.from(document.querySelectorAll(selector)).slice(0, 200).map((el, index) => {
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const r = el.getBoundingClientRect();
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return {
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index,
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tag: el.tagName.toLowerCase(),
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id: el.id || null,
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text: (el.textContent || '').trim().slice(0, 80),
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// Off-screen or display:none elements still return a rect — all zeroes.
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visible: r.width > 0 && r.height > 0,
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inViewport: r.top < window.innerHeight && r.bottom > 0 && r.left < window.innerWidth && r.right > 0,
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viewport: { x: r.left, y: r.top, width: r.width, height: r.height },
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page: { x: r.left + window.scrollX, y: r.top + window.scrollY },
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// Centre of the element in desktop coordinates (CSS pixels —
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// multiply by devicePixelRatio for physical pixels on HiDPI).
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screen: {
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x: window.screenX + r.left + r.width / 2,
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y: window.screenY + chromeHeight + r.top + r.height / 2,
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},
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};
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})
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: [];
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return {
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url: location.href,
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title: document.title,
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html: document.documentElement.outerHTML,
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viewport: {
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scrollX: window.scrollX,
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scrollY: window.scrollY,
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innerWidth: window.innerWidth,
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innerHeight: window.innerHeight,
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outerWidth: window.outerWidth,
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outerHeight: window.outerHeight,
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screenX: window.screenX,
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screenY: window.screenY,
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chromeHeight,
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devicePixelRatio: window.devicePixelRatio,
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},
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elements,
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};
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}
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// ── Capture pipeline ────────────────────────────────────────────────────────
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/** The sites this extension is allowed to touch, taken from the manifest rather
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* than from a setting.
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*
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* These are the same hosts host_permissions grants, so they cannot drift out of
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* sync with what the extension can actually read, and adding a firm — which
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* means adding its host to the manifest anyway — scopes capture automatically.
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* localhost is filtered out: that is the dashboard, and capturing it would just
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* mirror our own output back. */
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function firmPatterns() {
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return chrome.runtime.getManifest().host_permissions
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.filter((p) => !/\/\/(localhost|127\.0\.0\.1)/.test(p));
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}
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async function pickTab(cfg) {
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const tabs = (await chrome.tabs.query({ url: firmPatterns() }))
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.filter((t) => /^https?:/.test(t.url || ''));
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if (tabs.length === 0) return undefined;
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// Prefer the one being looked at, so with two firms open the capture follows
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// attention rather than tab order.
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return tabs.find((t) => t.active) ?? tabs[0];
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}
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async function captureAndSend(cfg) {
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const tab = await pickTab(cfg);
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if (!tab) {
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await setState({ connected: true, enabled: true, error: null, waiting: 'No eligible tab to capture' });
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return;
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}
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const [injection] = await chrome.scripting.executeScript({
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target: { tabId: tab.id },
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func: pageCapture,
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args: [cfg.elementSelector || ''],
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});
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const result = injection?.result;
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if (!result) throw new Error('Injection returned nothing');
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const res = await fetch(`${cfg.apiBase}/api/autobuyer/capture`, {
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method: 'POST',
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headers: { 'Content-Type': 'application/json' },
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body: JSON.stringify({
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...result,
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// Stamp the build so the dashboard side can tell which version of this
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// worker is actually live — Chrome keeps running the old one until the
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// extension is reloaded, which is invisible from the server otherwise.
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viewport: { ...result.viewport, extVersion: chrome.runtime.getManifest().version },
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capturedAt: Date.now(),
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}),
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});
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if (!res.ok) throw new Error(`Capture POST failed: HTTP ${res.status}`);
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await setState({
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connected: true,
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enabled: true,
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error: null,
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waiting: null,
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lastCapture: { url: result.url, title: result.title, bytes: result.html.length, at: Date.now() },
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});
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}
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/** Which browser is hosting this extension.
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*
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* The clicker has to raise *this* browser before clicking, and picking by list
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* order gets it wrong the moment two are installed — it would raise Edge while
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* the coordinates came from a tab in Chrome, landing every click in the wrong
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* window. So the answer travels with the measurement.
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*/
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function detectBrowser() {
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const ua = navigator.userAgent || '';
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if (/\bEdg\//.test(ua)) return 'edge';
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if (/\bOPR\//.test(ua)) return 'opera';
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if (/\bVivaldi\//.test(ua)) return 'vivaldi';
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try {
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if (navigator.brave) return 'brave'; // Brave otherwise reports as Chrome
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} catch { /* not Brave */ }
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return 'chrome';
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}
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// ── Locate: turn a CSS selector into desktop coordinates ────────────────────
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/** Runs in the page. Scrolls the element into view, then reports where it ended up. */
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function pageLocate(selector, index) {
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const matches = document.querySelectorAll(selector);
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if (matches.length === 0) return { error: `No element matches ${selector}` };
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const el = matches[index];
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if (!el) return { error: `Selector ${selector} matched ${matches.length} element(s), no index ${index}` };
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// Centre it in the viewport first — an element scrolled off-screen has a rect,
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// but clicking those coordinates would hit whatever is actually displayed there.
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el.scrollIntoView({ block: 'center', inline: 'center', behavior: 'instant' });
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const r = el.getBoundingClientRect();
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if (r.width === 0 || r.height === 0) {
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return { error: `Element ${selector} has zero size (hidden or display:none)` };
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}
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if (r.bottom <= 0 || r.top >= window.innerHeight || r.right <= 0 || r.left >= window.innerWidth) {
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return { error: `Element ${selector} is outside the viewport even after scrolling` };
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}
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const chromeHeight = window.outerHeight - window.innerHeight;
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const cx = r.left + r.width / 2;
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const cy = r.top + r.height / 2;
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// What sits at that point? If it's not our element (or a descendant), something
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// is covering it — a cookie banner, a modal — and the click would hit that instead.
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const atPoint = document.elementFromPoint(cx, cy);
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const covered = atPoint && atPoint !== el && !el.contains(atPoint);
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// Current contents, so the caller can confirm afterwards that what it typed
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// actually landed — a field that silently ignored the keystrokes (masked,
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// read-only, or never focused) is otherwise indistinguishable from success.
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const isField = el.tagName === 'INPUT' || el.tagName === 'TEXTAREA';
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const value = isField ? el.value : (el.isContentEditable ? el.innerText : null);
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return {
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tag: el.tagName.toLowerCase(),
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text: (el.textContent || '').trim().slice(0, 80),
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matchCount: matches.length,
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value,
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editable: (isField || el.isContentEditable) && !el.disabled && !el.readOnly,
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inputType: isField ? (el.type || null) : null,
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covered: !!covered,
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coveredBy: covered ? `${atPoint.tagName.toLowerCase()}${atPoint.id ? '#' + atPoint.id : ''}` : null,
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viewport: { x: r.left, y: r.top, width: r.width, height: r.height },
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// Desktop coordinates of the element's centre, in CSS pixels.
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screen: { x: window.screenX + cx, y: window.screenY + chromeHeight + cy },
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// Lets the Python side work out whether the OS uses a different pixel
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// scale than CSS does (Windows display scaling, some Linux setups).
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screenSize: { width: window.screen.width, height: window.screen.height },
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devicePixelRatio: window.devicePixelRatio,
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chromeHeight,
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url: location.href,
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};
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}
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/** Is the tab already showing this page? Compares origin and path only —
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* query strings and hashes shouldn't force a reload. */
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function alreadyAt(current, target) {
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try {
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const a = new URL(current);
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const b = new URL(target);
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return a.origin === b.origin && a.pathname.replace(/\/$/, '') === b.pathname.replace(/\/$/, '');
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} catch {
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return false;
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}
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}
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/** Resolve after the tab reports `complete`. A tab that has only just been
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* created has no DOM to inject into yet. */
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function waitForTabLoad(tabId, timeoutMs = 15000) {
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return new Promise((resolve, reject) => {
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const started = Date.now();
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const check = async () => {
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let tab;
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try {
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tab = await chrome.tabs.get(tabId);
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} catch {
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return reject(new Error('the tab was closed while loading'));
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}
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if (tab.status === 'complete') return resolve(tab);
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if (Date.now() - started > timeoutMs) {
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return reject(new Error(`the page did not finish loading within ${timeoutMs / 1000}s`));
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}
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setTimeout(check, 200);
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};
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check();
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});
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}
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/** Runs in the page. Scrolls until the list stops growing, then reports what it
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* ended up with.
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*
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* The scrolling element is often NOT the window — lists like this usually live
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* in a div with its own overflow, and scrolling the document does nothing at
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* all. So walk up from a matched item looking for the ancestor that actually
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* scrolls, and let the caller name one outright when the guess is wrong.
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*/
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async function pageScrollToLoad(selector, containerSelector, maxScrolls, settleMs, stableRounds) {
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const sleep = (ms) => new Promise((r) => setTimeout(r, ms));
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const count = () => document.querySelectorAll(selector).length;
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function scroller() {
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if (containerSelector) {
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const named = document.querySelector(containerSelector);
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if (!named) return { error: `No element matches container ${containerSelector}` };
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return { el: named };
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}
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// An ancestor that can actually scroll: overflow allows it, and there is
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// more content than fits.
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let node = document.querySelector(selector)?.parentElement ?? null;
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while (node && node !== document.body) {
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const overflow = getComputedStyle(node).overflowY;
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if (/(auto|scroll)/.test(overflow) && node.scrollHeight > node.clientHeight + 4) {
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return { el: node };
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}
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node = node.parentElement;
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}
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return { el: document.scrollingElement || document.documentElement, isDocument: true };
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}
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const found = scroller();
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if (found.error) return { error: found.error };
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const el = found.el;
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const before = count();
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let last = before;
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let stable = 0;
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let scrolls = 0;
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while (scrolls < maxScrolls) {
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const wasAtBottom = el.scrollTop + el.clientHeight >= el.scrollHeight - 4;
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el.scrollTop = el.scrollHeight;
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scrolls++;
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await sleep(settleMs);
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const now = count();
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// Nothing new AND we were already pinned to the bottom: the list is done
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// growing, not merely slow.
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stable = (now > last) ? 0 : stable + (wasAtBottom ? 1 : 0);
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last = now;
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if (stable >= stableRounds) break;
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}
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return {
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before,
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after: last,
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scrolls,
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exhausted: stable >= stableRounds,
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container: found.isDocument ? 'document' : (el.className || el.tagName || 'element').toString().slice(0, 60),
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url: location.href,
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};
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}
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async function resolveLocateTab(cfg, request) {
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// Every step carries its firm's pattern; the manifest hosts are the fallback
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// for a bare request (the CLI's locate without --url).
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const pattern = request.urlPattern || firmPatterns();
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if (pattern) {
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const tabs = await chrome.tabs.query({ url: pattern });
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const tab = tabs.find((t) => /^https?:/.test(t.url || ''));
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if (tab) return { tab, opened: false };
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// Nothing matching is open. Open it rather than failing the run — but only
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// to the URL the firm declared, never to something a request supplied that
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// we have no host permission for.
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if (request.openUrl) {
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const created = await chrome.tabs.create({ url: request.openUrl, active: true });
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await waitForTabLoad(created.id);
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return { tab: await chrome.tabs.get(created.id), opened: true };
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}
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throw new Error(`No open tab matches ${pattern}, and no URL is configured to open`);
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}
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const [tab] = await chrome.tabs.query({ active: true, lastFocusedWindow: true });
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if (!tab || !/^https?:/.test(tab.url || '')) throw new Error('No eligible active tab');
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return { tab, opened: false };
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}
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/** Returns true if a request was handled, false if the queue was empty. */
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async function serveLocateRequest(cfg) {
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const claim = await fetch(`${cfg.apiBase}/api/autobuyer/locate/claim`, { method: 'POST' });
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if (!claim.ok) throw new Error(`Claim failed: HTTP ${claim.status}`);
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const { request } = await claim.json();
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if (!request) return false;
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let result = null;
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let error = null;
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try {
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let { tab, opened } = await resolveLocateTab(cfg, request);
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// A navigate step points the tab at a specific page first. Skip it when we
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// are already there — reloading would throw away page state for nothing,
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// and the common case is that the tab is on the right page already.
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if (request.navigateUrl && !alreadyAt(tab.url, request.navigateUrl)) {
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await chrome.tabs.update(tab.id, { url: request.navigateUrl });
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await waitForTabLoad(tab.id);
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tab = await chrome.tabs.get(tab.id);
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opened = true; // treat as a cold load: the app still has to mount
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}
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// The reported coordinates are only worth anything if that tab is the one
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// actually visible: raise its window and bring the tab to the front.
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// Only un-minimise — passing state:'normal' unconditionally would drop a
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// maximised or fullscreen window out of that state on every single click.
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const win = await chrome.windows.get(tab.windowId);
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const focus = win.state === 'minimized'
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? { focused: true, state: 'normal' }
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: { focused: true };
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await chrome.windows.update(tab.windowId, focus);
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await chrome.tabs.update(tab.id, { active: true });
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await new Promise((r) => setTimeout(r, 250)); // let the OS finish raising it
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// A scroll request is a different operation on the same channel: no
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// element is measured, the page is just walked to the bottom.
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if (request.options && request.options.op === 'scrollToLoad') {
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const [scrolled] = await chrome.scripting.executeScript({
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target: { tabId: tab.id },
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func: pageScrollToLoad,
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args: [
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request.selector,
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request.options.containerSelector || '',
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Number(request.options.maxScrolls) || 25,
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Number(request.options.settleMs) || 800,
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Number(request.options.stableRounds) || 2,
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],
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});
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const out = scrolled?.result;
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if (!out) throw new Error('Scroll injection returned nothing');
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if (out.error) throw new Error(out.error);
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result = { ...out, tabId: tab.id, windowId: tab.windowId, browser: detectBrowser() };
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await fetch(`${cfg.apiBase}/api/autobuyer/locate/result`, {
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method: 'POST',
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headers: { 'Content-Type': 'application/json' },
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body: JSON.stringify({ id: request.id, result, error: null }),
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});
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return true;
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}
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// `complete` only means the document loaded — a React app still has to
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// mount and paint. Retry briefly rather than declaring the element missing,
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// with a longer budget when we just opened the page from cold.
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const deadline = Date.now() + (opened ? 8000 : 2500);
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let out;
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for (;;) {
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const [injection] = await chrome.scripting.executeScript({
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target: { tabId: tab.id },
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func: pageLocate,
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args: [request.selector, request.index || 0],
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});
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out = injection?.result;
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if (!out) throw new Error('Injection returned nothing');
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if (!out.error) break;
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if (Date.now() >= deadline) throw new Error(out.error);
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await new Promise((r) => setTimeout(r, 350));
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}
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result = {
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...out,
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tabId: tab.id,
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windowId: tab.windowId,
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openedTab: opened,
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browser: detectBrowser(),
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};
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} catch (err) {
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error = err.message;
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}
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await fetch(`${cfg.apiBase}/api/autobuyer/locate/result`, {
|
|
method: 'POST',
|
|
headers: { 'Content-Type': 'application/json' },
|
|
body: JSON.stringify({ id: request.id, result, error }),
|
|
});
|
|
return true;
|
|
}
|
|
|
|
async function tick() {
|
|
const cfg = await getConfig();
|
|
|
|
let enabled;
|
|
try {
|
|
const res = await fetch(`${cfg.apiBase}/api/autobuyer/status`, { cache: 'no-store' });
|
|
if (!res.ok) throw new Error(`HTTP ${res.status}`);
|
|
const status = await res.json();
|
|
enabled = !!status.enabled;
|
|
pendingLocate = Number(status.pendingLocate) || 0;
|
|
} catch (err) {
|
|
setBadge(false, false);
|
|
await setState({ connected: false, enabled: false, error: `Cannot reach ${cfg.apiBase} — ${err.message}` });
|
|
return;
|
|
}
|
|
|
|
setBadge(true, enabled);
|
|
if (!enabled) {
|
|
await setState({ connected: true, enabled: false, error: null, waiting: null });
|
|
return;
|
|
}
|
|
|
|
// Serve queued clicks before capturing — the Python side is waiting on these,
|
|
// and a capture of a megabyte page shouldn't sit in front of them.
|
|
// Failures inside a request are reported back to the caller; a failure of the
|
|
// queue plumbing itself lands here, and must not take the capture loop down.
|
|
try {
|
|
for (let i = 0; i < pendingLocate; i++) {
|
|
if (!(await serveLocateRequest(cfg))) break;
|
|
}
|
|
} catch (err) {
|
|
await setState({ connected: true, enabled: true, error: `Locate queue: ${err.message}` });
|
|
}
|
|
|
|
try {
|
|
await captureAndSend(cfg);
|
|
} catch (err) {
|
|
await setState({ connected: true, enabled: true, error: err.message });
|
|
}
|
|
}
|
|
|
|
// ── Scheduling ──────────────────────────────────────────────────────────────
|
|
|
|
async function restart() {
|
|
if (timer) clearInterval(timer);
|
|
const cfg = await getConfig();
|
|
// Re-check after the await: restart() is called from several places at startup,
|
|
// and without this a concurrent call leaks an untracked interval — two polling
|
|
// loops in one worker, capturing everything twice.
|
|
if (timer) clearInterval(timer);
|
|
const ms = Math.max(1, Number(cfg.pollSeconds) || DEFAULTS.pollSeconds) * 1000;
|
|
timer = setInterval(tick, ms);
|
|
tick();
|
|
}
|
|
|
|
chrome.runtime.onInstalled.addListener(restart);
|
|
chrome.runtime.onStartup.addListener(restart);
|
|
|
|
// The setInterval above only survives while the worker is alive. Each tick makes
|
|
// an extension API call, which resets the idle timer, so in practice the loop
|
|
// keeps itself running — this alarm is the safety net that revives it if Chrome
|
|
// tears the worker down anyway. 30s is the shortest period Chrome honours.
|
|
chrome.alarms.create('keepalive', { periodInMinutes: 0.5 });
|
|
chrome.alarms.onAlarm.addListener(() => {
|
|
if (timer) tick(); else restart();
|
|
});
|
|
|
|
chrome.storage.onChanged.addListener((changes, area) => {
|
|
if (area !== 'local') return;
|
|
if (Object.keys(DEFAULTS).some((k) => k in changes)) restart();
|
|
});
|
|
|
|
chrome.runtime.onMessage.addListener((msg, _sender, sendResponse) => {
|
|
if (msg?.type !== 'capture-now') return;
|
|
getConfig()
|
|
.then(captureAndSend)
|
|
.then(() => sendResponse({ ok: true }))
|
|
.catch((err) => sendResponse({ ok: false, error: err.message }));
|
|
return true; // keep the message channel open for the async response
|
|
});
|
|
|
|
restart();
|