CPU Performance: Rendering Tests

Rendering is often a key target for processor workloads, lending itself to a professional environment. It comes in different formats as well, from 3D rendering through rasterization, such as games, or by ray tracing, and invokes the ability of the software to manage meshes, textures, collisions, aliasing, physics (in animations), and discarding unnecessary work. Most renderers offer CPU code paths, while a few use GPUs and select environments use FPGAs or dedicated ASICs. For big studios however, CPUs are still the hardware of choice.

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

Corona 1.3: Performance Render

An advanced performance based renderer for software such as 3ds Max and Cinema 4D, the Corona benchmark renders a generated scene as a standard under its 1.3 software version. Normally the GUI implementation of the benchmark shows the scene being built, and allows the user to upload the result as a ‘time to complete’.

We got in contact with the developer who gave us a command line version of the benchmark that does a direct output of results. Rather than reporting time, we report the average number of rays per second across six runs, as the performance scaling of a result per unit time is typically visually easier to understand.

The Corona benchmark website can be found at https://corona-renderer.com/benchmark

Corona 1.3 Benchmark

Being fully multithreaded, we see the order here follow core counts. That is except for the 32-core 2990WX sitting behind the 24-core 3960X, which goes to show how much extra performance is in the new TR generation.

Blender 2.79b: 3D Creation Suite

A high profile rendering tool, Blender is open-source allowing for massive amounts of configurability, and is used by a number of high-profile animation studios worldwide. The organization recently released a Blender benchmark package, a couple of weeks after we had narrowed our Blender test for our new suite, however their test can take over an hour. For our results, we run one of the sub-tests in that suite through the command line - a standard ‘bmw27’ scene in CPU only mode, and measure the time to complete the render.

Blender can be downloaded at https://www.blender.org/download/

Blender 2.79b bmw27_cpu Benchmark

We have new Threadripper records, with the 3970X almost getting to a minute to compute. Intel's nearest takes almost as long, but does only cost half as much. Again, the 3960X puts the 2990WX in its place.

LuxMark v3.1: LuxRender via Different Code Paths

As stated at the top, there are many different ways to process rendering data: CPU, GPU, Accelerator, and others. On top of that, there are many frameworks and APIs in which to program, depending on how the software will be used. LuxMark, a benchmark developed using the LuxRender engine, offers several different scenes and APIs.

In our test, we run the simple ‘Ball’ scene. This scene starts with a rough render and slowly improves the quality over two minutes, giving a final result in what is essentially an average ‘kilorays per second’.

LuxMark v3.1 C++

Our LuxMark test again pushes both TR3 processors out in the lead.

POV-Ray 3.7.1: Ray Tracing

The Persistence of Vision ray tracing engine is another well-known benchmarking tool, which was in a state of relative hibernation until AMD released its Zen processors, to which suddenly both Intel and AMD were submitting code to the main branch of the open source project. For our test, we use the built-in benchmark for all-cores, called from the command line.

POV-Ray can be downloaded from http://www.povray.org/

POV-Ray 3.7.1 Benchmark

More rendering, more wins for AMD. More losses for the 2990WX, even though on these tests it still beats the 10980XE quite easily.

Test Bed and Setup CPU Performance: System Tests
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  • Dizoja86 - Thursday, November 28, 2019 - link

    "Intel is going to have to have a shift its design strategy to compete."
  • im.thatoneguy - Tuesday, December 3, 2019 - link

    Any temperature stats? You recommend a good water cooler so it would be helpful to know how the thermaltake ring did under load.
  • cdb000 - Sunday, January 26, 2020 - link

    Seconded!
    In fact, a good write-up on how to cool a 280W CPU that is continuously running flat out.
    My (old, slow) 1950X is cooled by a 280mm AIO and gets to ~61C when run flat out. These new Threadrippers use 55% more power which suggests that a 420mm or 480mm radiator will be required.
  • pvrvideoman - Thursday, December 5, 2019 - link

    Great for AMD! Popular YouTube tech reviewers and others really need to stop saying that AMD has "crushed" Intel. That is just stupid. What they have done is deliver a very powerful, competitively priced product that delivers mostly the same or better performance at different price points. The desktop market is small. It's not making AMD or Intel all that much money. But it is great when companies like Amazon and Google talk about moving forward or transitioning to AMD Epyc line of processors. The enterprise and High Performance Computing contracts are where the real victory lies.
  • tamalero - Tuesday, December 24, 2019 - link

    holy intel apologist batman..
  • alpha754293 - Monday, December 16, 2019 - link

    When are the results from the benchmarking for the AMD Threadripper 3970X going to be on the benchmarking database?

    I tried looking for it just now and couldn't find it listed when I wanted to compare that and the AMD Ryzen 3950X.

    Thanks.
  • lxxxxl - Thursday, December 19, 2019 - link

    Is Chromium compilation still on the list of tests?
    And these new Threadrippers are not in Bench database?
  • soultorntech - Monday, December 23, 2019 - link

    People concerned about the price between AMD and Intel HEDT processors need to calculate the per core cost and they will find out that the cost between the HEDT processors are pretty close. Add in the fact that Threadripper has a lot more L3 cache than the 10980XE plus can utilize up to 4 times as much RAM then the price of Threadripper 3 processors are a little easier to justify.
  • stefanbatros - Sunday, December 29, 2019 - link

    Hi everyone,

    I bought a 3970x + a Gigabyte Designare mobo. These will be used in a 4GPU setup for rendering and physics simulations.

    Right now I have to chose between these 2 Ram kits, which are available and at a decent price in my country:
    1. Corsair VENGEANCE® 128GB 3000MHz C16 -750$
    2. G.Skill TridentZ 3000MHz C14 - 981$

    Do you guys think that the C14 Gskill justifies the 200$ dollar difference? Will it be great improvement over the C16?
    I am leaning toward the Vengence more because of price +is in stock in store + it is low profile and it will fit better with the Noctua nh-u14s tr4-sp3.

    Any suggestions will ge appreciated.

    Thanks,
    Stefan
  • InfernusTitan - Friday, January 3, 2020 - link

    A GTX 1080?Not Bottlenecking a 32 Core CPU in any ways??? I know core counts doesnt matter that much but still.

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