01 European origin
Jira Data Center and protected business data remain in the existing European infrastructure.
We use CDNetworks technology—backed by its China-based parent company, Wangsu Science & Technology—to accelerate your business in mainland China.
PW / RUM-CHINA-07A 1.034 s B 0.939 sWe combine CDNetworks infrastructure with software built around Jira Data Center: real-user instrumentation, cache control, API-driven configuration, and traffic verification.
01 Jira Data Center and protected business data remain in the existing European infrastructure.
02 CDN Pro delivers static files through a Near-China edge. Origin Fast Route is used separately for selected attachment traffic between the edge and European origin.
03 Our Service Worker and release tooling normalize versioned resources, remove stale duplicates, cache safe static bundles, and pre-warm new releases through the CDN API.
04 Our RUM plugin measures browser behavior across real traffic: page load, TTFB, backend and frontend time, resource waterfalls, JavaScript errors, and cache state.
05 / CONTROL LOOP We manage versioned CDN configuration, validation, deployment, and edge prefetch through APIs. Access logs and reporting expose client region and ISP, cache HIT or MISS, edge node, response timing, traffic volume, and OFR usage.
The baseline contained approximately 8,400 production page-load samples. The long tail was concentrated in mainland China, while server processing above five seconds was effectively absent. The bottleneck was not a slow database query: it was the interaction between distance, network delivery, frontend weight, and browser caching.
Without browser-level evidence, each layer could plausibly blame another. We needed a measurement system capable of separating backend processing, time to first byte, frontend execution, resource waterfalls, client errors, and cache state for real sessions.
The monitoring system ran inside Jira Data Center and measured what users actually experienced rather than relying on origin-side averages.
01 A Jira Data Center plugin captured page load, DOM readiness, TTFB, backend/frontend split, resource waterfalls, transferred bytes, slow resources, and JavaScript failures from real browsers.
02 Mainland traffic was segmented to direct consumer ISPs. Hosting, proxy, and VPN paths were excluded so the result measured the delivery architecture being changed.
03 Timing decomposition separated application processing from the network leg and frontend execution. This prevented infrastructure changes from being justified by an unrelated server metric.
04 Real-user cohorts were cross-checked with repeated distributed measurements from 130 mainland locations and delivery logs confirming route and cache behavior.
The services were evaluated as separate interventions. The headline page-load result belongs to CDN Pro with Near-China delivery, not to a blended infrastructure claim.
CDNETWORKS / 01 CDN Pro with Near-China delivery moved the user-facing delivery layer closer to mainland users. This is the primary intervention associated with the verified reduction in median page-load time.
7.00 s → 1.24 sCDNETWORKS / 02 Origin Fast Route was enabled later for selected attachment traffic between the edge and origin. It was evaluated separately and is not included in the headline 82% page-load claim.
Measured separatelyRUM · n=513 → n=456RUM · n=513 → n=456Comparable regional cohortsTwo repeated post-change runs averaged 1.034 seconds and 0.939 seconds across 130 mainland locations, compared with an approximately 6-second baseline.
A later sample of 395 real mainland sessions measured 1.20-second median load, 2.449-second p90, and 282-millisecond median TTFB. No regression was visible in those medians.
Resource-level analysis identified unnecessary plugin bundles. Conditional loading reduced the production JavaScript payload from 31 MB to 9.9 MB.
Our Service Worker keeps large, unchanged Jira plugin bundles in the browser, so repeat visits do not download them again from Europe. Version-aware keys, stale-version pruning, and cache resets preserve the speed benefit without serving outdated resources after releases.
A separate attachment-upload change produced only four post-change mainland samples with mixed timings. That sample was too small for a causal performance conclusion, so no upload speed-up is claimed in this case study.
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