CPU Performance: Web and Legacy Tests

While more the focus of low-end and small form factor systems, web-based benchmarks are notoriously difficult to standardize. Modern web browsers are frequently updated, with no recourse to disable those updates, and as such there is difficulty in keeping a common platform. The fast paced nature of browser development means that version numbers (and performance) can change from week to week. Despite this, web tests are often a good measure of user experience: a lot of what most office work is today revolves around web applications, particularly email and office apps, but also interfaces and development environments. Our web tests include some of the industry standard tests, as well as a few popular but older tests.

We have also included our legacy benchmarks in this section, representing a stack of older code for popular benchmarks.

All of our benchmark results can also be found in our benchmark engine, Bench.

WebXPRT 3: Modern Real-World Web Tasks, including AI

The company behind the XPRT test suites, Principled Technologies, has recently released the latest web-test, and rather than attach a year to the name have just called it ‘3’. This latest test (as we started the suite) has built upon and developed the ethos of previous tests: user interaction, office compute, graph generation, list sorting, HTML5, image manipulation, and even goes as far as some AI testing.

For our benchmark, we run the standard test which goes through the benchmark list seven times and provides a final result. We run this standard test four times, and take an average.

Users can access the WebXPRT test at http://principledtechnologies.com/benchmarkxprt/webxprt/

WebXPRT 3 (2018)

WebXPRT 2015: HTML5 and Javascript Web UX Testing

The older version of WebXPRT is the 2015 edition, which focuses on a slightly different set of web technologies and frameworks that are in use today. This is still a relevant test, especially for users interacting with not-the-latest web applications in the market, of which there are a lot. Web framework development is often very quick but with high turnover, meaning that frameworks are quickly developed, built-upon, used, and then developers move on to the next, and adjusting an application to a new framework is a difficult arduous task, especially with rapid development cycles. This leaves a lot of applications as ‘fixed-in-time’, and relevant to user experience for many years.

Similar to WebXPRT3, the main benchmark is a sectional run repeated seven times, with a final score. We repeat the whole thing four times, and average those final scores.

WebXPRT15

Speedometer 2: JavaScript Frameworks

Our newest web test is Speedometer 2, which is a accrued test over a series of javascript frameworks to do three simple things: built a list, enable each item in the list, and remove the list. All the frameworks implement the same visual cues, but obviously apply them from different coding angles.

Our test goes through the list of frameworks, and produces a final score indicative of ‘rpm’, one of the benchmarks internal metrics. We report this final score.

Speedometer 2

Google Octane 2.0: Core Web Compute

A popular web test for several years, but now no longer being updated, is Octane, developed by Google. Version 2.0 of the test performs the best part of two-dozen compute related tasks, such as regular expressions, cryptography, ray tracing, emulation, and Navier-Stokes physics calculations.

The test gives each sub-test a score and produces a geometric mean of the set as a final result. We run the full benchmark four times, and average the final results.

Google Octane 2.0

Mozilla Kraken 1.1: Core Web Compute

Even older than Octane is Kraken, this time developed by Mozilla. This is an older test that does similar computational mechanics, such as audio processing or image filtering. Kraken seems to produce a highly variable result depending on the browser version, as it is a test that is keenly optimized for.

The main benchmark runs through each of the sub-tests ten times and produces an average time to completion for each loop, given in milliseconds. We run the full benchmark four times and take an average of the time taken.

Mozilla Kraken 1.1

3DPM v1: Naïve Code Variant of 3DPM v2.1

The first legacy test in the suite is the first version of our 3DPM benchmark. This is the ultimate naïve version of the code, as if it was written by scientist with no knowledge of how computer hardware, compilers, or optimization works (which in fact, it was at the start). This represents a large body of scientific simulation out in the wild, where getting the answer is more important than it being fast (getting a result in 4 days is acceptable if it’s correct, rather than sending someone away for a year to learn to code and getting the result in 5 minutes).

In this version, the only real optimization was in the compiler flags (-O2, -fp:fast), compiling it in release mode, and enabling OpenMP in the main compute loops. The loops were not configured for function size, and one of the key slowdowns is false sharing in the cache. It also has long dependency chains based on the random number generation, which leads to relatively poor performance on specific compute microarchitectures.

3DPM v1 can be downloaded with our 3DPM v2 code here: 3DPMv2.1.rar (13.0 MB)

3DPM v1 Single Threaded3DPM v1 Multi-Threaded

x264 HD 3.0: Older Transcode Test

This transcoding test is super old, and was used by Anand back in the day of Pentium 4 and Athlon II processors. Here a standardized 720p video is transcoded with a two-pass conversion, with the benchmark showing the frames-per-second of each pass. This benchmark is single-threaded, and between some micro-architectures we seem to actually hit an instructions-per-clock wall.

x264 HD 3.0 Pass 1x264 HD 3.0 Pass 2

CPU Performance: Encoding Tests Gaming: World of Tanks enCore
Comments Locked

274 Comments

View All Comments

  • SanX - Thursday, October 25, 2018 - link

    How come i7-7800x outperforms i9-9900 by the killing factor of 3-4 in particle movement? Is it not as "hand tunable" as older gen chips?
  • davidk3501 - Thursday, October 25, 2018 - link

    This is an overclockable processor, allowing users to push the frequency if the cooling is sufficient, and despite the memory controller still rated at DDR4-2666, higher speed memory should work in almost every chip. The Core i9-9900K also gets a fully-enabled cache, with 2 MB available per core for a chip-wide total of 16 MB
  • ashlord - Thursday, October 25, 2018 - link

    My son's 4690K just blew up at such a shitty time. 8th gen 8400 is a decent replacement but 9th gen is out, so I don't really want to buy a previous gen item. I am guessing the '9400' will be out in a month or two. Going the AMD route has its issues too. It seems that AMD processors still have some issues with virtual appliances built using an older kernel. And in the past 30 years of computer ownership, I have never upgraded the processor. Components like motherboard or ram usually fail way before the CPU goes poof.

    In my country, R5 2600 w/Gigabyte Aorus B450M, 16GB of TridentZ RGB and a Cryorig M9+ goes for S$751. 8400 with MSI H310M Pro-M2, G.Skill Ripjaws V2400 and the same cooler goes for S$710.

    ARgh!!! Don't know what to choose! Or maybe I should just give him my 6700K and get myself a new shiny toy.
  • nukunukoo - Friday, October 26, 2018 - link

    I'm glad competition from AMD is back. Just a little over three years ago, an 8-core Intel would be a Xeon costing an arm and a leg!
  • Dragonrider - Monday, October 29, 2018 - link

    Just a note re the IGP. If you are going to try to watch 4k Blu-ray on your computer, you NEED that Intel IGP. I don't think there is any other solution to the DRM. For some, that alone would be a reason to get the Intel processor, all else being in the same ballpark.
  • y2k1 - Wednesday, October 31, 2018 - link

    What about performance pet watt? Is it basically the same as last gen?
  • hanselltc - Thursday, November 1, 2018 - link

    wat bout 9700k vs 9900k in gaming tho
  • Always_winter - Wednesday, November 28, 2018 - link

    what cpu cooler did you use
  • poohbear - Monday, December 10, 2018 - link

    Wow that 10nm CPU is taking forever eh? AMD is to release 7nm CPUs next month, and intel can't produce 10nm in 2019? What happened exactly?
  • ROGnation7 - Saturday, February 23, 2019 - link

    Watching all these benchmarks nowadays and taking count on how well optimised games are these days , at last the AAA titles , makes you think if it even worth it to spend more than 300-350 bucks on CPUs for gaming . Just look at i5-9600k and r5 2600x going toe to toe with high end CPUs with a decent graphics card.

Log in

Don't have an account? Sign up now