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The role of potential WebXPRT 4 auxiliary workloads

As we mentioned in our most recent blog post, we’re seeking suggestions for ways to improve WebXPRT 4. We’re open to the prospect of adding both non-workload features and new auxiliary tests, e.g., a battery life or WebGPU-based graphics test scenario.

To prevent any confusion among WebXPRT 4 testers, we want to reiterate that any auxiliary workloads we might add will not affect existing WebXPRT 4 subtest or overall scores in any way. Auxiliary tests would be experimental or targeted workloads that run separately from the main test and produce their own scores. Current and future WebXPRT 4 results will be comparable to one another, so users who’ve already built a database of WebXPRT 4 scores will not have to retest their devices. Any new tests will be add-ons that allow us to continue expanding the rapidly growing body of published WebXPRT 4 test results while making the benchmark even more valuable to users overall.

If you have any thoughts about potential browser performance workloads, or any specific web technologies that you’d like to test, please let us know.

Justin

How we evaluate new WebXPRT workload proposals

A key value of the BenchmarkXPRT Development Community is our openness to user feedback. Whether it’s positive feedback about our benchmarks, constructive criticism, ideas for completely new benchmarks, or proposed workload scenarios for existing benchmarks, we appreciate your input and give it serious consideration.

We’re currently accepting ideas and suggestions for ways we can improve WebXPRT 4. We are open to adding both non-workload features and new auxiliary tests, which can be experimental or targeted workloads that run separately from the main test and produce their own scores. You can read more about experimental WebXPRT 4 workloads here. However, a recent user question about possible WebGPU workloads has prompted us to explain the types of parameters that we consider when we evaluate a new WebXPRT workload proposal.

Community interest and real-life relevance

The first two parameters we use when evaluating a WebXPRT workload proposal are straightforward: are people interested in the workload and is it relevant to real life? We originally developed WebXPRT to evaluate device performance using the types of web-based tasks that people are likely to encounter daily, and real-life relevancy continues to be an important criterion for us during development. There are many technologies, functions, and use cases that we could test in a web environment, but only some of them are both relevant to common applications or usage patterns and likely to be interesting to lab testers and tech reviewers.

Maximum cross-platform support

Currently, WebXPRT runs in almost any web browser, on almost any device that has a web browser, and we would ideally maintain that broad level of cross-platform support when introducing new workloads. However, technical differences in the ways that different browsers execute tasks mean that some types of scenarios would be impossible to include without breaking our cross-platform commitment.

One reason that we’re considering auxiliary workloads with WebXPRT, e.g., a battery life rundown, is that those workloads would allow WebXPRT to offer additional value to users while maintaining the cross-platform nature of the main test. Even if a battery life test ran on only one major browser, it could still be very useful to many people.

Performance differentiation

Computer benchmarks such as the XPRTs exist to provide users with reliable metrics that they can use to gauge how well target platforms or technologies perform certain tasks. With a broadly targeted benchmark such as WebXPRT, if the workloads are so heavy that most devices can’t handle them, or so light that most devices complete them without being taxed, the results will have little to no use for OEM labs, the tech press, or independent users when evaluating devices or making purchasing decisions.

Consequently, with any new WebXPRT workload, we try to find a sweet spot in terms of how demanding it is. We want it to run on a wide range of devices—from low-end devices that are several years old to brand-new high-end devices and everything in between. We also want users to see a wide range of workload scores and resulting overall scores, so they can easily grasp the different performance capabilities of the devices under test.

Consistency and replicability

Finally, workloads should produce scores that consistently fall within an acceptable margin of error, and are easily to replicate with additional testing or comparable gear. Some web technologies are very sensitive to uncontrollable or unpredictable variables, such as internet speed. A workload that measures one of those technologies would be unlikely to produce results that are consistent and easily replicated.

We hope this post will be useful for folks who are contemplating potential new WebXPRT workloads. If you have any general thoughts about browser performance testing, or specific workload ideas that you’d like us to consider, please let us know.

Justin

WebXPRT’s global reach

In our last blog post, we reflected on the 10-year anniversary of the WebXPRT launch by looking at the consistent growth in the number of WebXPRT runs over the last decade. Today, we wrap up our focus on WebXPRT’s anniversary by sharing some data about the benchmark’s truly global reach.

We occasionally update the community on some of the reach metrics we track by publishing a new version of the “XPRTs around the world” infographic. The metrics include completed test runs, benchmark downloads, and mentions of the XPRTs in advertisements, articles, and tech reviews. This information gives us insight into how many people are using the XPRT tools, and publishing the infographic helps readers and community members see the impact the XPRTs are having around the world.

WebXPRT is our most widely used benchmark by far, and is responsible for much of the XPRT’s global reach. Since February 2013, users have run WebXPRT more than 1,176,000 times. Those test runs took place in over 924 cities located in 81 countries on six continents. Some interesting new locations for completed WebXPRT runs include Rajarampur, Bangladesh; Al Muharraq, Bahrain; Manila, The Philippines; Skopje, Macedonia; and Ljubljana, Slovenia.

We’re pleased that WebXPRT has proven to be a useful and reliable performance evaluation tool for so many people in so many geographically distant locations. If you’ve ever run WebXPRT in a country that is not highlighted in the “XPRTs around the world” infographic, we’d love to hear about it!

Justin

WebXPRT runs: A decade of growth

In our last blog post, we celebrated the 10-year anniversary of the WebXPRT launch by looking back on the WebXPRT team’s accomplishments over the last decade. The incremental steps and milestone improvements we discussed all contributed to carving out a lasting place for WebXPRT in the benchmarking world and helped to grow its reputation for being a reliable, effective, and easy to use measurement tool.

WebXPRT’s growth is most evident when we look at the rising number of completed test runs over the last 10 years. Since the first WebXPRT launch in 2013, we’ve seen a steady increase in the number of tests people are running. To put the increase in perspective, we had more runs last month alone (17,300) than we recorded in the first 10 months that WebXPRT was available (11,984).

That growth has helped us to reach and surpass the million-run mark, but the most exciting aspect of seeing a consistent increase in WebXPRT testing is the knowledge that the benchmark is proving to be useful to more people in more places around the world. In our next blog post, we’ll discuss WebXPRT’s truly global reach and some of the surprising cities and countries where people have been using it to test their gear.

We’re grateful for all the testers that have helped WebXPRT grow during the last decade. If you have any questions or comments about using WebXPRT, let us know!

Justin

The Mobile World Congress 2023 recap video is live!

Once again, the talented studio team here at Principled Technologies has worked with the XPRT team to put together some great content. This week, we published a recap video of Mark’s recent trip to Mobile World Congress (MWC) 2023 in Barcelona. In the video, Mark discusses how “velocity” was the headline theme of this year’s MWC, but infrastructure was the true backbone of the show. The challenges of developing the infrastructure necessary for tomorrow’s tech aren’t limited to obvious topics like 5G deployment, bandwidth, and accessibility; they also include “soft” infrastructure topics like security, management, and reliability. As everything gets faster, we’ll need tools such as the XPRTs to provide reliable information about which devices can handle the increased demands of tomorrow’s tech.

We encourage you to check out the video, along with Mark’s blog post from the show and MWC-related photos on social media. To view the video, you can follow this link or click the screenshot below. If you attended or followed MWC this year and have any thoughts about how the XPRTs can help to evaluate cutting-edge technologies, we’d love to hear from you!

Justin

Mobile World Congress 2023: Infrastructure led the way

When the tech industry is at its best, a virtuous cycle of capabilities and use cases chases its own tail to produce ever-better tech for us all. Faster CPUs drive new usage models, which in turn emerge and swamp the CPUs, which then must get faster. Better screens make us want higher-quality video, which requires more bandwidth to deliver and causes us to desire even better displays. Apps connect us in more ways, but those connections require more bandwidth, which leads to new apps that can take advantage of those faster connections. And on and on.

Put a finger on the cycle at any given moment, and you’ll see that while all the elements are in motion, some are the stars of the moment. To keep the cycle going, it’s crucial for these areas to improve the most. At Mobile World Congress 2023 (#MWC23), that distinction belonged to infrastructure. Yes, some new mobile phones were on display, Lenovo showed off new ThinkPads, and other mobile devices were in abundance, but as I walked the eight huge halls, I couldn’t help but notice the heavy emphasis on infrastructure.

5G, for example, is real now—but it’s far from everywhere. Telecom providers have to figure out how to profitably build out the networks necessary to support it. The whole industry must solve the problems of delivering 5G at huge scale, handle the traffic increases it will bring, switch and route the data, and ultimately make sure the end devices can take full advantage of that data. Management and security remain vital whenever data is flying around, so those softer pieces of infrastructure also matter greatly.

Inevitably and always, to know if we as an industry are meeting these challenges, we must measure performance—both in the raw speed sense and in the broader sense of the word. Are we seeing the full bandwidth we expect? Are devices handling the data properly and at speed? Where’s the bottleneck now? Are we delivering on the schedules we promised? Questions such as these are key concerns in every tech cycle—and some of them are exactly what the XPRTs focus on.

As we improve our infrastructure, we hope to see the benefits at a personal level. When you’re using a device—whether it’s a smart watch, a mobile phone, or a laptop—you need it to do its job well, respond to you quickly, and show you what you want when you want it. When your device makes you wait, it can be helpful to know if the bandwidth feeding data to the device is the bottleneck or if the device simply can’t keep up with the flow of data it’s receiving. The XPRTs can help you figure out what’s going on, and they will continue to be useful and important as the tech cycle spins on. If history is our guide, the infrastructure focus of MWC23 will lead to greater capabilities that require even better devices down the line. We look forward to testing them.

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