CPU Encoding Tests

One of the interesting elements on modern processors is encoding performance. This includes encryption/decryption, as well as video transcoding from one video format to another. In the encrypt/decrypt scenario, this remains pertinent to on-the-fly encryption of sensitive data - a process by which more modern devices are leaning to for software security. Video transcoding as a tool to adjust the quality, file size and resolution of a video file has boomed in recent years, such as providing the optimum video for devices before consumption, or for game streamers who are wanting to upload the output from their video camera in real-time. As we move into live 3D video, this task will only get more strenuous, and it turns out that the performance of certain algorithms is a function of the input/output of the content.

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

7-Zip 9.2: link

One of the freeware compression tools that offers good scaling performance between processors is 7-Zip. It runs under an open-source licence, is fast, and easy to use tool for power users. We run the benchmark mode via the command line for four loops and take the output score.

Encoding: 7-Zip Combined Score

Encoding: 7-Zip CompressionEncoding: 7-Zip Decompression

At the request of a few users, we've gone back through our saved benchmark data and pulled out compression/decompression numbers for 7-zip. AMD clearly makes a win here in decompression by a long way with all the threads, and the 1800X beats the 1950X in Game Mode due to frequency.

WinRAR 5.40: link

For the 2017 test suite, we move to the latest version of WinRAR in our compression test. WinRAR in some quarters is more user friendly that 7-Zip, hence its inclusion. Rather than use a benchmark mode as we did with 7-Zip, here we take a set of files representative of a generic stack (33 video files in 1.37 GB, 2834 smaller website files in 370 folders in 150 MB) of compressible and incompressible formats. The results shown are the time taken to encode the file. Due to DRAM caching, we run the test 10 times and take the average of the last five runs when the benchmark is in a steady state.

Encoding: WinRAR 5.40

WinRAR encoding is another test that doesn't scale up especially well with thread counts. After only a few threads, most of its MT performance gains have been achieved. The balance here is with memory and frequency, to which the 1800X wins. The 1800X takes a sizeable gain over the 1950X in Game Mode too, likely due to far memory latency.

AES Encoding

Algorithms using AES coding have spread far and wide as a ubiquitous tool for encryption. Again, this is another CPU limited test, and modern CPUs have special AES pathways to accelerate their performance. We often see scaling in both frequency and cores with this benchmark. We use the latest version of TrueCrypt and run its benchmark mode over 1GB of in-DRAM data. Results shown are the GB/s average of encryption and decryption.

Encoding: AES

HandBrake v1.0.2 H264 and HEVC: link

As mentioned above, video transcoding (both encode and decode) is a hot topic in performance metrics as more and more content is being created. First consideration is the standard in which the video is encoded, which can be lossless or lossy, trade performance for file-size, trade quality for file-size, or all of the above can increase encoding rates to help accelerate decoding rates. Alongside Google's favorite codec, VP9, there are two others that are taking hold: H264, the older codec, is practically everywhere and is designed to be optimized for 1080p video, and HEVC (or H265) that is aimed to provide the same quality as H264 but at a lower file-size (or better quality for the same size). HEVC is important as 4K is streamed over the air, meaning less bits need to be transferred for the same quality content.

Handbrake is a favored tool for transcoding, and so our test regime takes care of three areas.

Low Quality/Resolution H264: Here we transcode a 640x266 H264 rip of a 2 hour film, and change the encoding from Main profile to High profile, using the very-fast preset.

Encoding: Handbrake H264 (LQ)

High Quality/Resolution H264: A similar test, but this time we take a ten-minute double 4K (3840x4320) file running at 60 Hz and transcode from Main to High, using the very-fast preset.

Encoding: Handbrake H264 (HQ)

HEVC Test: Using the same video in HQ, we change the resolution and codec of the original video from 4K60 in H264 into 4K60 HEVC.

Encoding: Handbrake HEVC (4K)

 

Benchmarking Performance: CPU Web Tests Benchmarking Performance: CPU Office Tests
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  • Gigaplex - Thursday, August 17, 2017 - link

    How is Windows supposed to know when a specific app will run better with SMT enabled/disabled, NUMA, or even settings like SLI/Crossfire and PCIe lane distribution between peripheral cards? If your answer is app profiles based on benchmark testing, there's no way Microsoft will do that for all the near infinite configurations of hardware against all the Windows software out there. They've cut back on their own testing and fired most of their testing team. It's mostly customer beta testing instead.
  • peevee - Friday, August 18, 2017 - link

    Windows does not know whether it is a critical gaming thread or not. Setting thread affinity is not a rocket science - unless you are some Java "programmer".
  • Spoelie - Friday, August 18, 2017 - link

    And anyone not writing directly in assembly should be shot on sight, right?
  • peevee - Friday, August 18, 2017 - link

    You don't need to write in assembly to set thread affinities.
  • Glock24 - Thursday, August 17, 2017 - link

    Seems like the 1800X is a better all around CPU. If you really need and can use more than 8C/16T then get TR.

    For mixed workloads of gaming and productivity the 1800X or any of the smaller siblings is a better choice.
  • msroadkill612 - Friday, August 18, 2017 - link

    The decision watershed is pcie3 lanes imo. Otherwise, the ryzen is a mighty advance in the mainstream sweet spot over ~6 months ago.

    OTH, I see lane hungry nvme ports as a boon to expanding a pcs abilities later. The premium for an 8 core TR & mobo over ryzen seems cost justifiable expandability.
  • Luckz - Friday, August 18, 2017 - link

    It seems that the 1800X has the NVIDIA spend less time doing weird stuff.
  • franzeal - Thursday, August 17, 2017 - link

    If you're going to reference Intel in your benchmark summaries (Rocket League is one place I noticed it), either include them or don't forget to edit them out of your copy/paste job.
  • Luckz - Friday, August 18, 2017 - link

    WCCFTech-Level writing, eh.
  • franzeal - Thursday, August 17, 2017 - link

    Again, as with the original article, the description for the Dolphin render benchmarks is incorrectly stating that the results are shown in minutes.

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