Run 2 summary

https://it.wikipedia.org/wiki/Jannik_Sinner

Tested 2026-07-28 00:02:30 using Chrome 150.0.7871.186 (runtime settings)

SummaryWaterfallMetricsRenderingCoachPageXrayCPU

Summary

Google Web Vitals

403 msTTFB
1.232 sLargest Contentful Paint
0.000Cumulative Layout Shift
934 msTotal Blocking Time

Loading

972 msFirst Paint
3.111 sFully Loaded
258 msMax Potential FID

Page weight & requests

643.6 KBTotal transfer size
2.4 MBTotal content size
37Requests

CPU

12Long tasks
4.177 sLast long task at

Visual progress

967 msFirst Visual Change
1.126 sSpeed Index
1.267 sVisual Complete 85%
3.433 sVisual Complete 99%
3.433 sLast Visual Change
Screenshot
Run 2 · after page complete

Waterfall

First paintFCPLCPDOMContentLoadedDOM interactiveLoadRender-blockingRedirectError

Rendering

Run 2
0.000 s
0s1s2s3s

The red band on the timeline marks when the main thread was busy with long tasks: moments when the page could not paint or respond, however the video looks.

Download video

Filmstrip

16 frames

Use --filmstrip.showAll to show all filmstrips.

Frame at 0 ms
0 ms
0 %
Frame at 800 ms
800 ms
0 %
Frame at 1.000 s
1.000 s
61 %
Frame at 1.300 s
1.300 s
98 %
Frame at 1.400 s
1.400 s
98 %
Frame at 1.500 s
1.500 s
98 %
Frame at 1.600 s
1.600 s
98 %
Frame at 2.100 s
2.100 s
98 %
Frame at 2.400 s
2.400 s
98 %
Frame at 2.600 s
2.600 s
98 %
Frame at 2.700 s
2.700 s
98 %
Frame at 2.800 s
2.800 s
98 %
Frame at 3.000 s
3.000 s
98 %
Frame at 3.200 s
3.200 s
98 %
Frame at 3.300 s
3.300 s
98 %
Frame at 3.500 s
3.500 s
100 %

Click a frame to seek the video to that moment. The dot marks frames where the page changed visually.

Visual instability

42.42 % of pixels ever changed · 0 % changed 5+ times
Heatmap of how often each pixel changed while the page loaded

The whole recording in one image: every pixel is tinted by how often it changed. Amber changed once, deep red changed ten or more times. The scale is fixed, so heatmaps from different runs compare directly.

Flat amber is a page that painted once and stayed put. Red speckle in the shape of the text means the same pixels repainted over and over, usually invisible rendering noise that inflates Last Visual Change and Speed Index. A solid red block is a genuinely restless area, like an ad or a carousel.

Frames

How smoothly Chrome delivered frames to the screen during the test. Dropped counts only frames Chrome flags as affecting smoothness. On mostly-static pages the longest gap includes idle time where there was simply nothing to draw.

Frames shown27
Partial15
Dropped10
Effective FPS10.5
Longest gap1.825 sat 1.607 s

Why was rendering delayed?

Rendering was not meaningfully delayed. First paint landed at 972 ms on a 403 ms first byte; the 2 render-blocking requests were done by 686 ms and the remaining ~286 ms is style and layout work (111 ms of it measured style recalculation). The largest paint followed at 1.232 s.

Style recalculation

measured by Chrome during this run

Style the browser had to recalculate before it could paint: many elements or a lot of time spent here points at expensive CSS on the critical rendering path. The recalculation count and the largest single one tell the two problems apart: one massive style change touching most of the page (few recalculations, the largest close to the total) needs different medicine than thousands of tiny ones (many recalculations, each tiny).

One large recalculation dominates. Restyling 521 elements cost 111 ms before the page painted (11.5 % of the time to First Contentful Paint), and a single recalculation of 513 elements accounts for 108 ms of it. Look for one class or inline-style change on a large container near the top of the DOM that restyles the whole subtree at once. The changes driving it are listed under Style invalidations below.

Before first contentful paint

Recalculations4
Elements521
Total time111.345 ms
Largest recalculation513 elements · 108.152 ms

Before largest contentful paint

Recalculations17
Elements577
Total time122.613 ms
Largest recalculation513 elements · 108.152 ms

The recalculation work before first paint is 11.5 % of the time to First Contentful Paint.

Render blocking requests

3 requests · 44.9 KB

Blocking requests delay both paints: the browser renders nothing until they arrive, so they push First Contentful Paint and everything after it, including the largest paint (LCP). Requests that block the parser inside the body stall everything after them in the document. Load JavaScript with defer or async, and keep non-critical CSS off the critical path with media attributes. Bars show when each request loaded on a clock that runs to the last paint (the dashed line is FCP, the clock ends at LCP); the gap after the bars is style and layout work.

RequestWhen it loadedTransferDownload
document
it.wikipedia.org · TTFB 403 ms
620 ms
88.2 KB619 ms
site.stylesblocking
css · load.php styles batch · it.wikipedia.org
229 ms
1.1 KB229 ms
ext.cite.parsoid.styles + 13 more modulesblocking
css · load.php styles batch · it.wikipedia.org
201 ms
21.9 KB201 ms
startuppotentially blocking
javascript · load.php startup · it.wikipedia.org
225 ms
21.9 KB225 ms
LCP resource
500px-Jannik_Sinner_US_Open_2025_%28cropped%29.jpg — downloaded by 1.094 s, rendered at 1.232 s
634 ms
80.3 KB634 ms
0308 ms616 msFCP 972 msLCP 1.232 s

Style invalidations

Why the browser had to recalculate style and layout: every DOM/style change invalidates some set of nodes, and the same class or attribute churning over and over is the pattern to hunt. Counts, not milliseconds: the time is in the style recalculation numbers above.

Chase what keeps changing after the page is up. 386 style recalculations and 324 layout invalidations fired after first paint, on a page the user was already looking at. The biggest driver is attribute title (142×). Start with the script under "Scripts causing invalidations" that keeps triggering it.

Style recalculations392386 after first paint
Layout invalidations1 104324 after first paint

Changes that keep invalidating

top 15
  • attribute: title142×
  • pseudo: has44×
  • class: mf-collapsible-heading22×
  • class: mf-collapsible-content11×
  • pseudo: disabled
  • pseudo: enabled
  • attribute: disabled
  • class: content
  • class: touch-events
  • attribute: href
  • pseudo: visited
  • class: minerva-animations-ready
  • class: active
  • class: page-actions-menu__list-item
  • class: cdx-button

Invalidation reasons

split at first paint

Between first and largest paint

Invalidations while the largest paint was still pending, so these delayed it.

ReasonStyle recalculationsLayout
A node was inserted into the page26
An element entered layout70
An element's size changed17
Unknown7

After the largest paint

Churn on the fully rendered page: wasted work and possible jank, but no paint delay.

ReasonStyle recalculationsLayout
A :has() selector was re-evaluated:has() re-checks a whole subtree on any change inside it. Scope it tightly, or toggle a class in JavaScript instead.103
A node was inserted into the page60
Related style rule84
A stylesheet rule changed77
An animation updated stylesAnimate transform and opacity so the compositor can run it off the main thread.25
Attribute11
An element entered layout184
An element left layout29
An element's size changed5
Unknown5
A style change forced layout5
An SVG element changed2

Before first paint: building the page

The page being constructed and styled for the first render. Expected work, shown for scale.

ReasonStyle recalculationsLayout
A node was inserted into the page4
A stylesheet rule changed1
A pseudo-class state changed (:hover, :focus, …)1
An element entered layout773
An element left layout3
An element's size changed1
Unknown3

Scripts causing invalidations

top 1

2 animations run on the main thread instead of on the browser's fast path that animates without blocking other page work (the compositor); they can make the rendering you see above janky. See them on the CPU tab.

Coach

The coach helps you find performance problems on your web page using web performance best practice rules. And gives you advice on privacy and best practices. Tested using Coach-core version 9.2.1.

Performance advice

84
11 warnings2 info
warn(0)Avoid CPU Long TaskslongTasks

The page has 13 CPU long tasks with the total of 2.068 s. The total blocking time is 1.218 s and 1 long task before first contentful paint with total time of 250 ms. However the CPU Long Task is depending on the computer/phones actual CPU speed, so you should measure this on the same type of the device that your user is using. Use Geckoprofiler for Firefox or Chromes tracelog to debug your long tasks.

Long CPU tasks locks the thread. To the user this is commonly visible as a "locked up" page where the browser is unable to respond to user input; this is a major source of bad user experience on the web today. However the CPU Long Task is depending on the computer/phones actual CPU speed, so you should measure this on the same type of the device that your user is using. To debug you should use the Chrome timeline log and drag/drop it into devtools or use Firefox Geckoprofiler.

Offenders
  • unknown
  • self
  • unknown
  • self
  • self
  • self
  • self
  • self
  • self
  • self
  • self
  • self
  • unknown
warn(0)Serve images in modern formats (AVIF, WebP)modernImageFormats

The page ships 62 images (out of 62) in JPEG/PNG/GIF without a modern alternative. Wrap them in a <picture> with a <source type="image/avif"> or "image/webp" before the legacy <img>, or serve modern formats from your image pipeline directly. AVIF and WebP usually deliver 25–50% smaller files at the same quality.

AVIF and WebP routinely deliver 25–50% smaller files than JPEG and PNG at the same perceived quality, and every browser version still under support understands at least one of them. Ship modern formats either through a <picture> element with <source type="image/avif"> / "image/webp" entries in front of the legacy <img>, or directly from a content-negotiating image pipeline that returns AVIF / WebP when the client accepts it. https://web.dev/articles/serve-images-webp

Offenders
warn(0)Avoid extra requests by setting cache headerscacheHeaders

The page has 12 requests that are missing a cache time. Configure a cache time so the browser doesn't need to download them every time. It will save 109.2 kB the next access.

The easiest way to make your page fast is to avoid doing requests to the server. Setting a cache header on your server response will tell the browser that it doesn't need to download the asset again during the configured cache time! Always try to set a cache time if the content doesn't change for every request.

Offenders
warn(0)Total JavaScript size shouldn't be too bigjavascriptSize

The total JavaScript transfer size is 409.9 kB and the uncompressed size is 1.6 MB. This is totally crazy! There is really room for improvement here.

A lot of JavaScript often means you are downloading more than you need. How complex is the page and what can the user do on the page? Do you use multiple JavaScript frameworks?

Offenders
URLTransferContent
https://it.wikipedia.org/w/load.php?lang=it&modules=startup&only=scripts&raw=1&skin=minerva21.9 KB66.3 KB
https://it.wikipedia.org/w/load.php...ia.org/w/load.php3.5 KB6.8 KB
https://it.wikipedia.org/w/load.php...ia.org/w/load.php9.1 KB25.7 KB
https://it.wikipedia.org/w/load.php...ia.org/w/load.php364.3 KB1.5 MB
https://auth.wikimedia.org/metawiki/wiki/Special:CentralAutoLogin/checkLoggedIn...gin/checkLoggedIn1.5 KB254 B
warn(70)Apply the right priority hints to the LCP imagelcpImageHints

The LCP image is missing fetchpriority="high". Adding it tells the browser to fetch the image with high priority instead of the default heuristic (which often deprioritises hero images that are loaded after the HTML has been parsed).

When the Largest Contentful Paint element is an image, the browser priority hints applied to that element directly affect the LCP metric. The image must NOT be loading="lazy" (that defers the fetch until near-viewport, which is the opposite of what an LCP image needs) and SHOULD be fetchpriority="high" (so the browser fetches it with high priority instead of guessing). https://web.dev/articles/fetch-priority

Offenders
  • <img resource="https://it.wikipedia.org/wiki/File:Jannik_Sinner_US_Open_2025_(cropped).jpg" src="//upload.wikimedia.org/wikipedia/commons/thumb/4/48/Jannik_Sinner_US_Open_2025_%28cropped%29.jpg/250px-Jannik_Sinner_US_Open_2025_%28cropped%29.jpg?utm_source=it.wikipedia.org&amp;utm_campaign=parser&amp;utm_content=thumbnail" decoding="async" data-file-width="1204" data-file-height="2000" data-file-type="bitmap" height="300" width="180" srcset="//upload.wikimedia.org/wikipedia/commons/thumb/4/48/Jannik_Sinner_US_Open_2025_%28cropped%29.jpg/500px-Jannik_Sinner_US_Open_2025_%28cropped%29.jpg?utm_source=it.wikipedia.org&amp;utm_campaign=parser&amp;utm_content=thumbnail 2x" class="mw-file-element">
infoLong cache headers is goodcacheHeadersLong

The page has 21 requests that have a shorter cache time than one year (but still a cache time).

Setting a cache header is good. Setting a long cache header (a year) is even better because the asset will stay in the browser cache across visits. For content-hashed URLs (e.g. app.4af2.css) you can safely use Cache-Control: max-age=31536000, immutable. For unversioned URLs that may change, use a revalidating strategy instead.

Offenders
warn(80)Don't scale images in the browseravoidScalingImages

The page has 2 images that are scaled more than 100 pixels. It would be better if those images are sent so the browser don't need to scale them.

It's easy to scale images in the browser and make sure they look good in different devices, however that is bad for performance! Scaling images in the browser takes extra CPU time and will hurt performance on mobile. And the user will download extra kilobytes (sometimes megabytes) of data that could be avoided. Don't do that, make sure you create multiple version of the same image server-side and serve the appropriate one.

Offenders
warn(80)Don't use private headers on static contentprivateAssets

The page has 3 requests with private headers. The main page has a private header. It could be right in some cases where the user can be logged in and served specific content. But if your asset is static it should never be private. Make sure that the assets really should be private and only used by one user. Otherwise, make it cacheable for everyone.

If you set private headers on content, that means that the content are specific for that user. Static content should be able to be cached and used by everyone. Avoid setting the cache header to private.

Offenders
warn(90)Avoid doing redirectsassetsRedirects

The page has 1 redirect. 1 of the redirects are from the base domain, please fix them!

A redirect is one extra step for the user to download the asset. Avoid that if you want to be fast. Redirects are even more of a showstopper on mobile.

Offenders
infoAdd decoding="async" to non-critical imagesdecodingAsync

The page has 5 images (out of 66) without a decoding hint. Add decoding="async" to non-critical images so the browser can decode them off the main thread.

Setting decoding="async" on an <img> tells the browser it can decode the image off the main thread, which keeps the page responsive to user interactions while images are being processed. The default ("auto") leaves the choice to the browser. https://developer.mozilla.org/en-US/docs/Web/HTML/Element/img#decoding

Offenders
warn(95)Inline CSS for faster first renderinlineCss

The page has both inline CSS and CSS requests even though it uses a HTTP/2-ish connection. If you have many users on slow connections, it can be better to only inline the CSS. Run your own tests and check the waterfall graph to see what happens.

In the early days of the Internet, inlining CSS was one of the ugliest things you can do. That has changed if you want your page to start rendering fast for your user. Always inline the critical CSS when you use HTTP/1 and HTTP/2 (avoid doing CSS requests that block rendering) and lazy load and cache the rest of the CSS. It is a little more complicated when using HTTP/2. Does your server support HTTP push? Then maybe that can help. Do you have a lot of users on a slow connection and are serving large chunks of HTML? Then it could be better to use the inline technique, becasue some servers always prioritize HTML content over CSS so the user needs to download the HTML first, before the CSS is downloaded.

warn(95)Lazy-load below-the-fold imageslazyLoadingImages

The page has 3 below-the-fold images without loading="lazy". Add loading="lazy" so the browser defers downloading and decoding them until the user scrolls them into view.

Adding loading="lazy" to an <img> tells the browser not to download or decode it until it is close to the viewport. For images that the user may never see (deep in the page, behind a tab, in a footer carousel), this saves bandwidth and main-thread time during initial render. The LCP image and any image in the initial viewport should NOT be lazy-loaded — that delays the first paint. https://developer.mozilla.org/en-US/docs/Web/HTML/Element/img#loading

Offenders
warn(99)Avoid slowing down the critical rendering pathavoidRenderBlocking

The page has 2 blocking requests and 0 in body parser blocking (0 JavaScript and 2 CSS). There are 1 potentially render blocking requests. You need to verify if it is render blocking: https://it.wikipedia.org/w/load.php?lang=it&modules=startup&only=scripts&raw=1&skin=minerva

The critical rendering path is what the browser needs to do to start rendering the page. Every file requested inside of the head element will postpone the rendering of the page, because the browser need to do the request. Avoid loading JavaScript synchronously inside of the head (you should not need JavaScript to render the page), request files from the same domain as the main document (to avoid DNS lookups) and inline CSS for really fast rendering and a short rendering path.

Offenders

Best practice advice

80
4 info
infoGive every image a textual alternativeimageAltText
infoMeta descriptionmetaDescription

The page is missing a meta description.

Use a page description to make the page more relevant to search engines.

infoAvoid unnecessary headersunnecessaryHeaders

There are 24 responses that sets both a max-age and expires header. There are 37 responses that sets a server header.

Do not send headers that you don't need. We look for p3p, cache-control and max-age, pragma, server and x-frame-options headers. Have a look at Andrew Betts - Headers for Hackers talk as a guide https://www.youtube.com/watch?v=k92ZbrY815c or read https://www.fastly.com/blog/headers-we-dont-want.

Offenders
infoDo not send too long headerslongHeaders

https://it.wikipedia...iki/Jannik_Sinner has a header content-security-policy that is 4501 characters long. https://it.wikipedia...ia.org/w/load.php has a header sourcemap that is 1342 characters long.

Do not send response headers that are too long.

Offenders

Privacy advice

80
4 warnings2 info
infoSet a Cross-Origin-Embedder-Policy header so cross-origin subresources opt in to being embedded.crossOriginEmbedderPolicyHeader

Set a Cross-Origin-Embedder-Policy header (typically require-corp or credentialless) on the document response to control cross-origin embedding.

Cross-Origin-Embedder-Policy (COEP) makes the page refuse to load cross-origin subresources unless they explicitly opt in via CORP or CORS. Together with Cross-Origin-Opener-Policy it puts the page in a cross-origin isolated context, which mitigates cross-window side-channel attacks (Spectre) and unlocks high-resolution timers and SharedArrayBuffer. https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Cross-Origin-Embedder-Policy

Offenders
warn(0)Set a Cross-Origin-Opener-Policy header to isolate the page from cross-origin windows.crossOriginOpenerPolicyHeader

Set a Cross-Origin-Opener-Policy header (typically same-origin) on the document response to isolate the page from cross-origin windows.

Cross-Origin-Opener-Policy (COOP) lets a page sever its window-group ties to cross-origin documents that opened it or that it opens. Together with Cross-Origin-Embedder-Policy it puts the page in a cross-origin isolated context, which mitigates cross-window side-channel attacks (Spectre) and unlocks high-resolution timers and SharedArrayBuffer. https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Cross-Origin-Opener-Policy

Offenders
infoSet a Cross-Origin-Resource-Policy header to limit who may embed the page.crossOriginResourcePolicyHeader

Set a Cross-Origin-Resource-Policy header (same-origin, same-site or cross-origin) on the document response to limit who may embed it.

Cross-Origin-Resource-Policy (CORP) is a per-response opt-in that tells the browser which origins are allowed to embed the resource. It blocks cross-origin or cross-site no-cors embedding (img, script, iframe, etc.) and is one of the building blocks of cross-origin isolation. https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Cross-Origin-Resource-Policy

Offenders
warn(0)Set a Permissions-Policy header to control which browser features the page can use.permissionsPolicyHeader

Set a Permissions-Policy header to control which browser features the page can use.

The Permissions-Policy response header (the successor to Feature-Policy) lets a site explicitly opt in or out of powerful browser features such as camera, microphone, geolocation, payment and clipboard. Setting a strict policy reduces the attack surface and limits what embedded third parties can do. https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Permissions-Policy

Offenders
warn(0)Set a referrer-policy header to make sure you do not leak user information.referrerPolicyHeader

Set a referrer-policy header to make sure you do not leak user information.

Referrer Policy is a new header that allows a site to control how much information the browser includes with navigations away from a document and should be set by all sites. https://scotthelme.co.uk/a-new-security-header-referrer-policy/.

Offenders
warn(30)Use a strict Content-Security-Policy header to mitigate cross-site scripting (XSS) attacks.contentSecurityPolicyHeader

The policy allows 'unsafe-inline', which lets the browser execute inline scripts and styles directly from the page. Move to nonces or hashes plus 'strict-dynamic' so that inline injection cannot run. The policy allows 'unsafe-eval', which lets the page call eval() and Function(). Almost no application needs this; remove it.

A Content-Security-Policy response header tells the browser which sources of script, style, and other content are allowed. The most effective form is a strict CSP using nonces or hashes together with strict-dynamic; the worst is a missing header, with unsafe-inline and unsafe-eval close behind. https://web.dev/articles/strict-csp

Page info

A snapshot of what the browser actually built for this page: the document, how big and deep the DOM tree is and what it kept in storage. Big, deep trees are slower to style and lay out, so the counts Chrome warns about carry a flag.

Page info

Document

What the page says it is and how large it rendered.

TitleJannik Sinner - WikipediaThe document title, shown in the browser tab and used by search results.
GeneratorMediaWiki 1.47.0-wmf.12The tool or CMS that generated the HTML, from the page generator meta tag.
Layout viewport360 × 4428 pxThe width the page laid out at, and the full height of the rendered document.

DOM structure

How much markup the browser has to build, style and lay out.

DOM elements4,346Very large, slows layout and styleTotal HTML elements. Fewer means less for the browser to style, lay out and paint.
Avg DOM depth14How deeply elements are nested on average.
Max DOM depth21The deepest nesting on the page. Deep branches cost more style recalculation.
Iframes0No embedded documents on this page.
Script tags7Number of script elements. More scripts usually means more main-thread work.

Storage and connection

What the page stored on the client, and the network it was tested on.

Local storage932.2 KBData the page saved in localStorage, kept across visits.
Session storage0 bData kept in sessionStorage for this tab session only.
Connection type4GWhat the Network Information API reported for the test connection.

Resource hints

3 hints
dns-prefetch
  • https://meta.wikimedia.org/
  • https://it.wikipedia.org/wiki/auth.wikimedia.org
preconnect
  • https://upload.wikimedia.org/

Technologies used to build the page

Data collected using Coach-core version 9.2.1. With updated code from Webappanalyzer 2026-05-04. Use --browsertime.firefox.includeResponseBodies html or --browsertime.chrome.includeResponseBodies html to help Wappalyzer find more information about technologies used.

Detected technologies

4 technologies

Visual Metrics

Visual milestones

all times from navigation start
Speed Index1.13 show quickly the page looked done
First Visual Change0.97 sfirst paint reaches the screen
Last Visual Change3.43 sscreen stops changing · 2.47 s after first
nothing painted yet
≥95% rendered
First Visual Change0.97 s
1.27 sVisual Complete 85% · Visual Complete 95%
Visual Complete 99% · Last Visual Change3.43 s
Visual Readiness2.47 s· first to last change
01.0 s2.0 s3.0 s
Visual progress
Visual progress at 0 s0.0s
Visual progress at 1 s1.0s
Visual progress at 1.4 s1.4s
Visual progress at 1.6 s1.6s
Visual progress at 2.6 s2.6s
Visual progress at 2.8 s2.8s
Visual progress at 3.2 s3.2s
Visual progress at 3.5 s3.5s
FCP0.97s
LCP1.23s
VC851.27s
Long tasks
0.0s0.7s1.4s2.1s2.8s3.5s

Google Web Vitals

Largest Contentful Paint

When the page main content is rendered, collected via the Largest Contentful Paint API. Read more about Largest Contentful Paint.

1.232 sLCP render time

Phase breakdown

  • TTFB403 ms
  • Resource load delay60 ms
  • Resource load duration636 ms
  • Element render delay133 ms

Element

Element type
<img>
Size (w × h)
54000
URL
https://upload.wikim...%28cropped%29.jpg
Load time
1.114 s
Style recalculation before LCP
17 recalculations touching 577 elements (122.613 ms) — the largest touched 513 elements (108.152 ms)

DOM path

body > div#mw-mf-viewport > div#mw-mf-page-center > main#content > div#bodyContent > div#mw-content-text > div:eq(0) > section#mwAQ > table > tbody > tr:eq(1) > td > figure > a > img
LCP

The LCP element is highlighted in the screenshot. If nothing is highlighted the element was removed before the screenshot or the LCP API couldn't find it.

The Largest Contentful Paint API matched this image:

LCP element

Cumulative Layout Shift

How much the page's content shifts as it loads, collected via the Cumulative Layout Shift API.

0.000cumulative layout shift score

No layout shifts were detected on this page.

Browser Metrics

Navigation Timing
Extra timings
User Timing marks
mwStartup1.526 s

Server timings

Timing data the server chose to expose through Server-Timing response headers on the main document — typically backend time, cache status or experiment flags.

Server timings

3 entries
NameDurationDescription
cache0 mshit-front
host0 mscp3070
co_id0 ms4284592391

Custom metrics collected through JavaScript

There are no custom configured scripts.

Extra metrics collected using scripting

There are no custom extra metrics from scripting.

Chrome internal metrics (CDP)33
Audio handlers0
Audio worklet processors0
Documents45
Frames26
JS event listeners278
Layout objects1039
Media key sessions0
Media keys0
Nodes8970
Resources57
Context lifecycle state observers66
V8 per context datas3
Worker global scopes0
Uacss resources0
Rtc peer connections0
Resource fetchers45
Ad subframes0
Detached script states2
Array buffer contents4
Layout count12
Recalc style count27
Layout duration119
Recalc style duration320
Dev tools command duration876
Script duration1358
V8 compile duration18
Task duration3795
Task other duration1105
Thread time10
Process time13
JS heap used size10620748
JS heap total size13508608
First meaningful paint969
Visual Elements3
LargestImage250px-Jannik_Sinner_US_Open_2025_%28cropped%29.jpg?utm_source=it.wikipedia.org&utm_campaign=parser&utm_content=thumbnail
Display time3.433 s
Position (x, y)90, 312
Size (w × h)180 × 299
HTML snippet
<img resource="https://it.wikipedia.org/wiki/File:Jannik_Sinner_US_Open_2025_(cropped).jpg" src="//upload.wikimedia.org/wikipedia/commons/thumb/4/48/Jannik_Sinner_US_Open_2025_%28cropped%29.jpg/250px-Jannik_Sinner_US_Open_2025_%28cropped%29.jpg?utm_source=it.wikipedia.org&amp;utm_campaign=parser&amp;utm_content=thumbnail" decoding="async" data-file-width="1204" data-file-height="2000" data-file-type="bitmap" height="300" width="180" srcset="//upload.wikimedia.org/wikipedia/commons/thumb/4/48/Jannik_Sinner_US_Open_2025_%28cropped%29.jpg/500px-Jannik_Sinner_US_Open_2025_%28cropped%29.jpg?utm_source=it.wikipedia.org&amp;utm_campaign=parser&amp;utm_content=thumbnail 2x" class="mw-file-element">
Heading
Display time967 ms
Position (x, y)16, 75
Size (w × h)328 × 37
HTML snippet
<h1 id="firstHeading" class="firstHeading mw-first-heading"></h1>
LargestContentfulPaint250px-Jannik_Sinner_US_Open_2025_%28cropped%29.jpg?utm_source=it.wikipedia.org&utm_campaign=parser&utm_content=thumbnail
Display time3.433 s
Position (x, y)90, 312
Size (w × h)180 × 299
HTML snippet
<img resource="https://it.wikipedia.org/wiki/File:Jannik_Sinner_US_Open_2025_(cropped).jpg" src="//upload.wikimedia.org/wikipedia/commons/thumb/4/48/Jannik_Sinner_US_Open_2025_%28cropped%29.jpg/250px-Jannik_Sinner_US_Open_2025_%28cropped%29.jpg?utm_source=it.wikipedia.org&amp;utm_campaign=parser&amp;utm_content=thumbnail" decoding="async" data-file-width="1204" data-file-height="2000" data-file-type="bitmap" height="300" width="180" srcset="//upload.wikimedia.org/wikipedia/commons/thumb/4/48/Jannik_Sinner_US_Open_2025_%28cropped%29.jpg/500px-Jannik_Sinner_US_Open_2025_%28cropped%29.jpg?utm_source=it.wikipedia.org&amp;utm_campaign=parser&amp;utm_content=thumbnail 2x" class="mw-file-element">

PageXray

How the page is built.

HTTP versionHTTP/2.0
Total requests37
Total domains3
Transfer size643.6 KB
Content size2.4 MB
Missing compression0
Cookies160 third-party

Main document

status 200 · 0 redirects

https://it.wikipedia.org/wiki/Jannik_Sinner

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content-typetext/html; charset=UTF-8
dateMon, 27 Jul 2026 16:37:31 GMT
last-modifiedMon, 27 Jul 2026 15:49:55 GMT
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reporting-endpointscsp-report-to-endpoint='/w/api.php?action=cspreport&format=json';
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varyAccept-Encoding,X-Subdomain,Cookie,Authorization,User-Agent
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x-cachecp3070 miss, cp3070 hit/13
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Response codes

200
3697.3%
302
12.7%

Requests and sizes per content type

7 types

Transfer size643.6 KB

  • javascript62.2%
  • image16.7%
  • html13.7%
  • css3.6%
  • svg3.3%
  • favicon0.28%
  • json0.28%

Content size2.4 MB

  • javascript66.4%
  • html22.4%
  • css6.8%
  • image3.7%
  • svg0.62%
  • favicon0.11%
  • json0.01%

Requests36

  • svg41.7%
  • image30.6%
  • javascript13.9%
  • css5.6%
  • html2.8%
  • favicon2.8%
  • json2.8%
ContentHeader SizeTransfer SizeContent SizeRequests
html0 b88.2 KB540.8 KB1
css0 b23.0 KB164.5 KB2
javascript0 b400.3 KB1.6 MB5
image0 b107.2 KB88.2 KB11
favicon0 b1.8 KB2.7 KB1
svg0 b21.2 KB14.9 KB15
json0 b1.8 KB296 B1
Total0 b643.6 KB2.4 MB36

Data per domain

3 domains
DomainTotal download timeTransfer SizeContent SizeRequests
it.wikipedia.org4.533 s537.0 KB2.3 MB26
upload.wikimedia.org4.614 s105.1 KB86.9 KB10
auth.wikimedia.org186 ms1.5 KB254 B1

Expires & last-modified statistics

typeminmedianmax
Expires0 seconds4 weeks1 year
Last modified48 minutes8 weeks13 years

Console log

1 message

The page logs the following messages to the console.

LevelMessage
INFOhttps://it.wikipedia.org/w/load.php?lang=it&modules=%40wikimedia%2Fcodex%2Ccodex-styles%2Cjquery%2Coojs%2Csite%2Cvue%7Cext.centralNotice.choiceData%2Cdisplay%2CgeoIP%2CimpressionDiet%2CkvStore%2CstartUp%7Cext.centralauth.ForeignApi%2Ccentralautologin%7Cext.checkUser.clientHints%7Cext.cite.ux-enhancements%7Cext.cx.entrypoints.languagesearcher.v2%7Cext.cx.eventlogging.campaigns%7Cext.cx.model%7Cext.echo.centralauth%7Cext.eventLogging%2CnavigationTiming%2Cpopups%2CtestKitchen%2CwikimediaEvents%7Cext.eventLogging.metricsPlatform%7Cext.quicksurveys.init%2Clib%7Cext.relatedArticles.readMore.bootstrap%7Cext.uls.interface%2Cpreferences%2Cwebfonts%7Cext.uls.rewrite.entrypoints%7Cext.urlShortener.toolbar%7Cext.wikimediaEvents.testKitchen%7Cjquery.client%2Cspinner%2CtextSelection%7Cjquery.spinner.styles%7Cjquery.uls.data%7Cmediawiki.DateFormatter%2CForeignApi%2CString%2CTitle%2Capi%2Cbase%2Ccldr%2Ccookie%2Cexperiments%2CjqueryMsg%2Clanguage%2Crouter%2Cstorage%2Ctemplate%2Cuser%2Cutil%2CvisibleTimeout%7Cmediawiki.ForeignApi.core%7Cmediawiki.libs.pluralruleparser%7Cmediawiki.page.media%2Cready%7Cmediawiki.page.watch.ajax%7Cmediawiki.template.mustache%7Cmmv.bootstrap%2Ccodex%7Cmobile.codex.styles%7Cmobile.init%2Cstartup%7Cmw.cx.SiteMapper%7Cmw.externalguidance.init%7Cskins.minerva.scripts%7Cwikibase.databox.fromWikidata&skin=minerva&version=2jb5k 830:14143 "Learn more about how we build our mobile site @ https://www.mediawiki.org/wiki/Special:MyLanguage/Extension:MobileFrontend"

Requests loaded after onLoad event

4 requests

Includes requests done after load event end.

ContentTransfer SizeRequests
html0 b0
css0 b0
javascript1.5 KB1
image2.1 KB1
font0 b0
favicon1.8 KB1
Total5.3 KB4

Requests loaded after onContentLoad

7 requests

Includes requests done after DOM content loaded.

ContentTransfer SizeRequests
html0 b0
css0 b0
javascript378.4 KB4
image2.1 KB1
font0 b0
favicon1.8 KB1
Total382.3 KB7

CPU

load.php[startup] is responsible for 72% of blocking time
714 ms of 997 ms total. Defer it, replace it with a lighter alternative, or move its work off the main thread to recover most of your TBT.

Long tasks

Tasks ≥ 50 ms blocking the main thread, collected via the Long Task API.

TBT934 ms
Max potential input delay258 ms
Total long tasks12
Total time1.734 s
Last task at4.177 s
Before first paint250 ms1 task
Before FCP250 ms1 task
Before LCP250 ms1 task
After load1.290 s8 tasks

Long Animation Frames

A long animation frame (LOAF) is a frame that took ≥ 50 ms from input to the next paint. The part beyond the threshold is blocking time, the number that hurts Interaction to Next Paint and Total Blocking Time. Break long tasks up (scheduler.yield(), smaller chunks) or move the work off the main thread. Read more about the Long Animation Frames API.

Long animation frames11showing the 10 with the most blocking time
Blocking time1.253 sacross all long frames — what hurts INP and TBT
Forced style & layout48.7 msscripts reading layout mid-frame
Blocking before LCP164.4 msdelaying the largest paint — fix these first
Blocking after load1.014 safter the load event — didn't delay page load

What to fix first

ScriptFramesTime runningBlocking (share by run time)Forced style & layoutTriggered by
load.php[startup]4857.6 ms714.4 ms46.7 mstimer or animation callback
load.php[scripts:@wikimedia/codex]4424 ms278.5 ms2 mstimer or animation callback, script tag
Jannik_Sinner110 ms3.7 msscript tag

A frame's blocking time is split between its scripts by their share of the frame's work, capped at each script's own run time — blocking from work no script owns (HTML parsing, browser internals) stays unattributed. The per-script blocking view below uses the same attribution.

Long animation frame #1 · 388.9 msat 2.092 s · after load
blocking 338.9 ms
  • Scripts & other work258.6 ms
  • Animation callbacks96.9 ms
  • Style & layout33.4 ms
  • Render0 ms
2 scripts ran during this frame
Ran for
258.6 ms
Started by
IdleRequestCallback
How it started
timer or animation callback
Source function
doPropagation
Position in source
character 4314 into the file (locate it via DevTools → Performance → the Long Animation Frames track)
Ran for
96.8 ms
Started by
FrameRequestCallback
How it started
timer or animation callback
Source function
flushCssBuffer
Position in source
character 3240 into the file (locate it via DevTools → Performance → the Long Animation Frames track)
Long animation frame #2 · 321 msat 2.916 s · after load
blocking 212.3 ms
  • Scripts & other work76.3 ms
  • Animation callbacks209.4 ms
  • Style & layout35.3 ms
  • Render0 ms
5 scripts ran during this frame · forced style & layout 48.7 ms
Ran for
10 ms
Started by
TimerHandler:setTimeout
How it started
timer or animation callback
Position in source
character 413619 into the file (locate it via DevTools → Performance → the Long Animation Frames track)
Ran for
12.1 ms
Started by
TimerHandler:setTimeout
How it started
timer or animation callback
Position in source
character 413619 into the file (locate it via DevTools → Performance → the Long Animation Frames track)
Ran for
11 ms
Started by
IdleRequestCallback
How it started
timer or animation callback
Source function
doPropagation
Position in source
character 4314 into the file (locate it via DevTools → Performance → the Long Animation Frames track)
Ran for
17.5 ms
Forced style and layout
2 ms
Started by
TimerHandler:setTimeout
How it started
timer or animation callback
Position in source
character 413619 into the file (locate it via DevTools → Performance → the Long Animation Frames track)
Ran for
207.7 ms
Forced style and layout
46.7 ms
Started by
FrameRequestCallback
How it started
timer or animation callback
Source function
flushCssBuffer
Position in source
character 3240 into the file (locate it via DevTools → Performance → the Long Animation Frames track)
Long animation frame #3 · 452.9 msat 473.7 ms · before LCP
blocking 164.4 ms
  • Scripts & other work448.6 ms
  • Animation callbacks3.1 ms
  • Style & layout1.2 ms
  • Render0 ms
1 script ran during this frame
Ran for
10 ms
Queued before running
2.9 ms
How it started
script tag
Long animation frame #4 · 217.9 msat 2.694 s · after load
blocking 160 ms
  • Scripts & other work213.9 ms
  • Animation callbacks4 ms
  • Style & layout0 ms
  • Render0 ms
1 script ran during this frame
Ran for
205.9 ms
Started by
TimerHandler:setTimeout
How it started
timer or animation callback
Position in source
character 413619 into the file (locate it via DevTools → Performance → the Long Animation Frames track)
Long animation frame #5 · 163.1 msat 2.515 s · after load
blocking 111.7 ms
  • Scripts & other work95.2 ms
  • Animation callbacks56.7 ms
  • Style & layout11.2 ms
  • Render0 ms
2 scripts ran during this frame
Ran for
93.8 ms
Started by
IdleRequestCallback
How it started
timer or animation callback
Source function
doPropagation
Position in source
character 4314 into the file (locate it via DevTools → Performance → the Long Animation Frames track)
Ran for
55.6 ms
Started by
FrameRequestCallback
How it started
timer or animation callback
Source function
flushCssBuffer
Position in source
character 3240 into the file (locate it via DevTools → Performance → the Long Animation Frames track)
Long animation frame #6 · 178.3 msat 3.250 s · after load
blocking 107.3 ms
  • Scripts & other work151.6 ms
  • Animation callbacks26.7 ms
  • Style & layout0 ms
  • Render0 ms
1 script ran during this frame
Ran for
129 ms
Started by
TimerHandler:setTimeout
How it started
timer or animation callback
Position in source
character 413619 into the file (locate it via DevTools → Performance → the Long Animation Frames track)
Long animation frame #7 · 134.1 msat 4.177 s · after load
blocking 84.1 ms
  • Scripts & other work134.1 ms
  • Animation callbacks0 ms
  • Style & layout0 ms
  • Render0 ms
1 script ran during this frame
Ran for
134.1 ms
Started by
IdleRequestCallback
How it started
timer or animation callback
Source function
flushWrites
Position in source
character 19340 into the file (locate it via DevTools → Performance → the Long Animation Frames track)
Long animation frame #8 · 129.1 msat 1.276 s · before load
blocking 73.3 ms
  • Scripts & other work68.8 ms
  • Animation callbacks60.3 ms
  • Style & layout0 ms
  • Render0 ms

The browser did not report which script was responsible for this frame — typically its own style/layout work, or a cross-origin script it will not name.

Long animation frame #9 · 50.6 msat 2.032 s · before load
blocking 0.6 ms
  • Scripts & other work50.6 ms
  • Animation callbacks0 ms
  • Style & layout0 ms
  • Render0 ms
1 script ran during this frame
Ran for
49.5 ms
Queued before running
13.9 ms
How it started
script tag

1 more long frame carried no blocking time (nothing ran past the 50 ms threshold) — long, but harmless to INP and TBT.

Blocking time per script (browser-reported)

How much each script blocked the main thread, derived from the Long Animation Frame API. Each frame's blocking time is split between its scripts by their share of the frame's work, capped at each script's own run time — blocking from work no script owns (HTML parsing, browser internals) is not attributed (older data credits the script that started the frame). The closest answer to "which script should I fix to improve TBT" the platform exposes.

Top scripts blocking the main thread

3 of 3 scripts
load.php[startup]
714 ms · 7 frames · worst 247 ms
load.php[scripts:@wikimedia/codex]
278 ms · 6 frames · worst 154 ms
https://it.wikipedia.org/wiki/Jannik_Sinner
4 ms · 1 frame · worst 4 ms

Blocking time per script (trace)

Total Blocking Time attributed per script from the Chrome trace: every main-thread task longer than 50 ms blocks input for the remainder, and each blocking task is credited to the script whose own code ran the longest during that task.

TBT1.241 s
Blocking tasks15
TBT before LCP213.3 ms2 tasks

What kind of work blocked

mostly running javascript · 1.241 s total
Running JavaScript852.9 ms68.7%
Style & layout270.9 ms21.8%
Other browser work43.3 ms3.5%
Paint & composite40.1 ms3.2%
Parsing HTML & CSS23.8 ms1.9%
Garbage collection8.5 ms0.7%
Parsing & compiling JavaScript1.6 ms0.1%
Running JavaScript (69%): the scripts responsible are listed right below. See Slowest JS functions · Timers
Style & layout (22%): usually a large DOM, expensive CSS selectors or JavaScript forcing synchronous layout. See Forced reflows · Forced layout per script · Style invalidations (Rendering tab)

Top scripts blocking the main thread

4 of 4 scripts
load.php[startup]
661 ms · 7 tasks
Browser's own work (no script responsible)
330 ms · 4 tasks

Where the time went

All main-thread work during the full page load, not just the share that blocked input. Calculated from the Chrome trace.

Categories

3.198 s total
Running JavaScript1.544 s48.3%
Other browser work (scheduling)636 ms19.9%
Style & layout456 ms14.3%
Parsing HTML & CSS377 ms11.8%
Paint & composite145 ms4.5%
Parsing & compiling JavaScript25 ms0.8%
Garbage collection15 ms0.5%
What do these categories mean?
Parsing HTML & CSSparseHTML
Reading the HTML and CSS and building the page structure. Grows with document size — a big server-rendered page costs more here.
Style & layoutstyleLayout
Working out which CSS rules apply and where every element goes on the page. Grows with DOM size and selector complexity.
Parsing & compiling JavaScriptscriptParseCompile
Parsing and compiling JavaScript before it can run — the cost of shipping bytes of JS, even unused ones.
Running JavaScriptscriptEvaluation
Running JavaScript: event handlers, timers, promise callbacks and script execution.
Paint & compositepaintCompositeRender
Painting pixels and assembling layers into the frames you see on screen.
Garbage collectiongarbageCollection
Reclaiming memory JavaScript no longer uses. A lot of it means allocation-heavy code.
Other browser work (scheduling)other
Chrome’s own task management: per-task overhead and thousands of sub-millisecond scheduler ticks — not page work you can attribute or optimize away. On this page 628 ms of it is this per-task bookkeeping (RunTask self time in the trace).

CPU time per script

Slowest JS functions

The functions where main-thread JavaScript time was actually spent, sampled by Chrome's JavaScript profiler. Self time is spent in the function itself; total time includes the functions it called. For loader/dispatcher functions whose total dwarfs their self time, the runs line shows the top functions and modules (up to five, ≥ 1 ms) the total was actually spent running.

Functions by self time

15 of 50 functions
FunctionWhereSelf timeTotal time
flushWrites
runs: load.php[startup] (19.1 ms)
load.php[startup]111.9 ms131.0 ms
setAttributeBrowser internal (not your code)70.0 ms70.0 ms
insertBeforeBrowser internal (not your code)66.6 ms66.6 ms
runScript
runs: load.php[scripts:@wikimedia/codex] (358.6 ms)
load.php[startup]56.6 ms619.6 ms
require
runs: load.php[scripts:@wikimedia/codex] (53.2 ms)
load.php[startup]52.1 ms125.5 ms
querySelectorAllBrowser internal (not your code)50.0 ms50.0 ms
(anonymous)load.php[scripts:@wikimedia/codex]48.5 ms48.5 ms
setTimeoutBrowser internal (not your code)35.1 ms35.1 ms
find
runs: querySelectorAll (46.7 ms), load.php[scripts:@wikimedia/codex] (15.4 ms), getElementsByTagName (1.6 ms)
load.php[scripts:@wikimedia/codex]30.6 ms94.5 ms
impl
runs: load.php[startup] (3.1 ms), load.php[scripts:@wikimedia/codex] (2.3 ms)
load.php[startup]29.7 ms38.7 ms
t
runs: load.php[scripts:@wikimedia/codex] (209.6 ms)
load.php[scripts:@wikimedia/codex]25.7 ms199.1 ms
(anonymous)
runs: after (10.6 ms)
load.php[scripts:@wikimedia/codex]24.8 ms35.5 ms
resources/lib/vue/vue.js
runs: load.php[scripts:@wikimedia/codex] (11.8 ms)
load.php[scripts:@wikimedia/codex]20.7 ms32.4 ms
doPropagation
runs: load.php[startup] (340.3 ms)
load.php[startup]19.3 ms360.4 ms
updateTooltipOnElement
runs: load.php[scripts:@wikimedia/codex] (5.4 ms)
load.php[scripts:@wikimedia/codex]18.5 ms24.0 ms

Timers

How much setTimeout/setInterval work the page runs, credited to the script that scheduled each timer. Many zero-delay timers mean work sliced into a machine-gun of tiny tasks; repeating timers are polling.

Timers set58
Times fired56
Fire time447.6 ms
Zero-delay timers53
Repeating timers0
Zero-delay slicing: load.php[scripts:@wikimedia/codex] split work into 51 back-to-back tasks costing 428 ms. Consider batching the work or moving it to requestIdleCallback or a worker.

Timer cost by script

2 scripts
load.php[scripts:@wikimedia/codex]
268 ms · set 57 times · fired 40 times
load.php[startup]
180 ms · set 1 time · fired 16 times

The timers, by where they were set

top 7 by fire time

Forced reflows

A forced reflow happens when JavaScript reads a layout-triggering property (offsetTop, getBoundingClientRect, …) inside a handler, forcing the browser to synchronously recompute layout. The scripts below caused most of the page's reflows. Fix them in priority order.

Scripts causing reflows

2 reflows ≥ 2 ms across 2 scripts
load.php[startup]
46 ms · 1 reflow · worst 46 ms
load.php[scripts:@wikimedia/codex]
2 ms · 1 reflow · worst 2 ms

Forced layout per script

Each long animation frame reports how much time each script spent forcing synchronous style and layout, i.e. JavaScript reading layout-triggering properties mid-execution. Same actionable answer as forced reflows above but measured directly by the browser instead of inferred from the trace.

Scripts forcing layout

2 of 2 scripts
load.php[startup]
47 ms · across 1 frame

First vs third party CPU time

Main-thread CPU time from the Chrome trace split by domain. First party is wikipedia.org.

First party1.453 s
Third party0 ms
Domains1

Non-composited animations

Animations that fell back from the compositor to the main thread, blocking each frame instead of running on the GPU.

Each chip below is a CSS property the page tried to animate that Chrome couldn't hand to the compositor. Swap it for a transform or opacity equivalent where you can.

Properties to fix

1 property · 2 animations
  • color

Want to dig deeper? Download the Chrome trace and drag-and-drop it into Performance in DevTools.