Skip to content
Main Navigation Puget Systems Logo
  • Solutions
    • Media & Entertainment
      • Photo Editing
        • Recommended Systems For:
        • Adobe Lightroom Classic
        • Adobe Photoshop
        • Stable Diffusion
      • Video Editing & Motion Graphics
        • Recommended Systems For:
        • Adobe After Effects
        • Adobe Premiere Pro
        • DaVinci Resolve
        • Foundry Nuke
      • 3D Design & Animation
        • Recommended Systems For:
        • Autodesk 3ds Max
        • Autodesk Maya
        • Blender
        • Cinema 4D
        • Houdini
        • ZBrush
      • Live Video Production
        • Recommended Systems For:
        • vMix
        • Live Streaming
      • Real-Time Engines
        • Recommended Systems For:
        • Game Development
        • Unity
        • Unreal Engine
        • Virtual Production
      • Rendering
        • Recommended Systems For:
        • Keyshot
        • OctaneRender
        • Redshift
        • V-Ray
      • Digital Audio
        • Recommended Systems For:
        • Ableton Live
        • FL Studio
        • Pro Tools
    • Engineering
      • Architecture & CAD
        • Recommended Systems For:
        • Autodesk AutoCAD
        • Autodesk Inventor
        • Autodesk Revit
        • SOLIDWORKS
      • Visualization
        • Recommended Systems For:
        • Enscape
        • Keyshot
        • Lumion
        • Twinmotion
      • Photogrammetry & GIS
        • Recommended Systems For:
        • ArcGIS Pro
        • Agisoft Metashape
        • Pix4D
        • RealityScan
    • AI & HPC
      • AI Development & Deployment
        • Recommended Systems For:
        • AI Development
        • AI Deployment & Inference
        • Servers for Scaling AI & LLMs
      • High Performance Computing
        • Recommended Systems For:
        • Data Science
        • Scientific Computing
    • More
      • Recommended Systems For:
      • Compact Size
      • NVIDIA RTX Studio
      • Quiet Operation
      • Virtual Reality
    • Business & Enterprise
      We can empower your company
    • Government & Education
      Services tailored for your organization
  • Products
    • Puget Mobile
      Powerful laptop workstations
      • Puget Mobile 16″
        Intel Core Ultra + NVIDIA GeForce
    • Puget Workstations
      High-performance Desktop PCs
      • AMD Ryzen
        Powerful CPUs with up to 16 cores
      • AMD Threadripper
        High core counts and lots of PCIe lanes
      • AMD EPYC
        Server-class CPUs in a workstation
      • Intel Core Ultra
        Balanced single- and multi-core performance
      • Intel Xeon
        Workstation CPUs with AVX512
      • Configure a Custom PC Workstation
        Configure a PC for your workflow
    • Puget Rackstations
      Workstations in rackmount chassis
      • AMD
        Ryzen, Threadripper, and EPYC CPUs
      • Intel
        Core Ultra and Xeon Processors
      • Configure a Custom Rackmount Workstation
        Tailored 4U, 5U, and 6U rack systems
    • Puget Servers
      Enterprise-class rackmount servers
      • 1U Rackmount
        Dense CPU compute servers
      • 2U Rackmount
        Mixed CPU and GPU solutions
      • 4U Rackmount
        High-density GPU computing
      • Comino Grando GPU Servers
        Liquid-cooled GPU rackmount systems
      • Custom Servers
        Engineered to meet your unique needs
    • Puget Storage
      Solutions from desktop to datacenter
      • Network-Attached Storage
        Synology desktop and rackmount NAS
      • Software-Defined Storage
        Datacenter solutions with QuantaStor
    • Recommended Third Party Peripherals
      Curated list of accessories for your workstation
    • Puget Bench for Creators
      Professional benchmarking tools
  • Publications
    • Articles
    • Blog Posts
    • Case Studies
    • HPC Blog
    • Podcasts
    • Press
  • Support
    • Contact Support
    • Onsite Services
    • Support Articles
    • Unboxing
    • Warranty Details
  • About Us
    • About Us
    • Careers
    • Contact Us
    • Enterprise
    • Gov & Edu
    • Our Customers
    • Press Kit
    • Puget Gear
    • Testimonials
  • Talk to an Expert
  • My Account
  1. Home
  2. /
  3. Hardware Articles
  4. /
  5. Testing Dynamic Local Mode on AMD Threadripper 2970WX – Rendering

Testing Dynamic Local Mode on AMD Threadripper 2970WX – Rendering

Posted on December 12, 2018 by William George | Last updated: December 12, 2018
LinkedIn Twitter
Always look at the date when you read an article. Some of the content in this article is most likely out of date, as it was written on December 12, 2018. For newer information, see our more recent articles.

Table of Contents

  • Introduction
  • Test Hardware
  • Methodology
  • Results
  • Conclusion

Introduction

Dynamic Local Mode is a new feature on AMD's biggest Threadripper processors. These CPUs have cores grouped internally, some with direct access to system memory and some which have to communicate through those other cores to access data in memory. DLM prioritizes running code on the cores which have a direct line to the memory, helping to improve performance in situations where not all of the cores are in use. How does that translate to real-world workloads, though? Let's take a look at two CPU-based rendering applications – Cinema 4D and V-Ray – and see how the 24-core 2970WX behaves with this feature on and off.

Test Hardware

The CPU platform for this had to be AMD's X399 chipset since that is the only option for Threadripper. We utilized the recently-released 2970WX since we already have test data for the bigger 32-core 2990WX, and these are the only two models which support (or need) Dynamic Local Model. If you want to see full system specs, with links to part pages, click here to expand a comprehensive hardware list.

Testing Hardware
Motherboard: MSI MEG X399 Creation
CPU: AMD TR 2970WX 3.0GHz (4.2GHz Turbo) 24 Core
RAM: 8x Crucial DDR4-2666 16GB (128GB total)
GPU: NVIDIA GeForce RTX 2080 8GB
Storage Drive: Samsung 960 Pro M.2 PCI-E x4 NVMe SSD
OS: Windows 10 Pro 64-bit
Software: V-Ray Benchmark 1.0.8 & Cinebench R15

Methodology

Both Chaos Group and Maxon provide benchmarks which measure rendering performance in their applications, and although they are both a little dated we find that they are still very helpful in comparing CPU performance. Since we are focusing on the CPU in this case and not the video card, we are going to disregard the scores for GPUs (in V-Ray) and OpenGL (in Cinebench). There can be some variance in these tests from one run to another, so we ran each benchmark three times and selected the fastest result – the lowest times for V-Ray and highest scores for Cinebench – to be included in the charts below.

Results

Here are the results for V-Ray Benchmark 1.0.8, with Dynamic Local Mode turned On and Off. Results are in seconds, lower is better:

AMD Threadripper 2970WX Dynamic Local Mode Comparison in V-Ray Benchmark 1.0.8

DLM Off took a slight lead in V-Ray, but I would consider this within the margin of error. Across three runs, all three came back at 32 seconds with DLM On and two came back with 32 and one with 31 seconds when DLM was turned Off. I am sticking to our official approach to listing the results, as described previously, but I really don't think DLM is having any true impact here.

What about Cinebench, though? Let's take a look at both the Multi CPU (all cores active) result, as well as Single CPU (one core):

AMD Threadripper 2970WX Dynamic Local Mode Comparison in Cinebench R15 Multi CPU

AMD Threadripper 2970WX Dynamic Local Mode Comparison in Cinebench R15 Single CPU

In the Multi CPU test, DLM Off was slightly faster again, as we saw in V-Ray, but in the same vein, the results are so close that I would say they are within the margin of error. We are only talking about half a percent here, with a 22 point difference out of more than 4,200.

On the Single CPU side, DLM On comes away with a small lead. This may also be within the margin of error, but the difference was a little larger at about a 1.1% increase when enabling Dynamic Local Mode.

Conclusion

AMD's Dynamic Local Mode makes very little performance difference in CPU-based rendering applications, and that shouldn't be a big surprise. The main goal of DLM is to improve performance in situations where not all of the CPU's cores are active, by prioritizing thread placement on cores which have direct access to system memory, but CPU-based rendering does a good job of utilizing all available cores. Even in the case of Cinebench's single CPU test, which is more reflective of 3D modeling and animation performance, since only a single core is used there isn't much impact there either.

Regardless of DLM's impact, or lack thereof, AMD's Threadripper processors are still fantastic choices for CPU rendering!

CTA Image
Cinema 4D Workstations

Puget Systems offers a range of powerful and reliable systems that are tailor-made for your unique workflow.

Configure a System!
CTA Image
Labs Consultation Service

Our Labs team is available to provide in-depth hardware recommendations based on your workflow.

Find Out More!

Related Content

  • Rendering Benchmarks vs Reality
  • Exploring PIX4Dmatic Hardware Performance
  • Intel Xeon 6: P-cores vs E-cores for CPU Rendering
  • Effects of Parsec Remote Desktop on Workstation Performance
View All Related Content

Latest Content

  • Standing Up AI Development Quickly for Supercomputing 2025
  • Rendering Benchmarks vs Reality
  • Puget Bench for Creators Fall Feature Pass Released!
  • Exploring PIX4Dmatic Hardware Performance
View All
CTA Image
V-Ray Workstations

Puget Systems offers a range of powerful and reliable systems that are tailor-made for your unique workflow.

Configure a System!
CTA Image
Labs Consultation Service

Our Labs team is available to provide in-depth hardware recommendations based on your workflow.

Find Out More!
Tags: 4D, Cinebench, Cinema, CPU, DLM, Dynamic, Local, Mode, Performance, Rendering, V-Ray

Who is Puget Systems?

Puget Systems builds custom workstations, servers and storage solutions tailored for your work.

We provide:

Extensive performance testing
making you more productive and giving better value for your money

Reliable computers
with fewer crashes means more time working & less time waiting

Support that understands
your complex workflows and can get you back up & running ASAP

A proven track record
as shown by our case studies and customer testimonials

Get Started

Browse Systems

Puget Systems Mobile Laptop Workstation Icon

Mobile

Puget Systems Tower Workstation Icon

Workstations

Puget Systems Rackmount Workstation Icon

Rackstations

Puget Systems Rackmount Server Icon

Servers

Puget Systems Rackmount Storage Icon

Storage

Latest Articles

  • Standing Up AI Development Quickly for Supercomputing 2025
  • Rendering Benchmarks vs Reality
  • Puget Bench for Creators Fall Feature Pass Released!
  • Exploring PIX4Dmatic Hardware Performance
  • How Disk Cache Impacts After Effects Preview Playback
View All

Post navigation

 Testing Dynamic Local Mode on AMD Threadripper 2970WX – PhotogrammetryPremiere Pro CC 2019 CPU Roundup: Intel vs AMD vs Mac 
Puget Systems Logo
Build Your Own PC Site Map FAQ
facebook instagram linkedin rss twitter youtube

Optimized Solutions

  • Adobe Premiere
  • Adobe Photoshop
  • Solidworks
  • Autodesk AutoCAD
  • Machine Learning

Workstations

  • Media & Entertainment
  • Engineering
  • Scientific PCs
  • More

Support

  • Online Guides
  • Request Support
  • Remote Help

Publications

  • All News
  • Puget Blog
  • HPC Blog
  • Hardware Articles
  • Case Studies

Policies

  • Warranty & Return
  • Terms and Conditions
  • Privacy Policy
  • Delivery Times
  • Accessibility

About Us

  • Testimonials
  • Careers
  • About Us
  • Contact Us
  • Newsletter

© Copyright 2025 - Puget Systems, All Rights Reserved.