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Watch Meta’s engineers discuss optimizing large-scale networks

Engineering at Meta

Also, the pivot to metaverse has led to a significant increase in AI, HPC, and machine learning workloads that demand huge networking bandwidth and compute capacity and pose challenges around safe co-existence of existing web, legacy and modern workloads.

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Meta’s open AI hardware vision

Engineering at Meta

Networking and bandwidth play an important role in ensuring the clusters’ performance. Our systems consist of a tightly integrated HPC compute system and an isolated high-bandwidth compute network that connects all our GPUs and domain-specific accelerators. Building AI clusters requires more than just GPUs.

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OCP Summit 2024: The open future of networking hardware for AI

Engineering at Meta

DSF-based fabrics allow us to build large, non-blocking fabrics to support high-bandwidth AI clusters. DSF extends our disaggregating network systems to our VoQ-based switched systems that are powered by the open OCP-SAI standard and FBOSS , Meta’s own network operating system for controlling network switches.

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What is Network-as-a-Service and Why WAN Transformation Needs NaaS and SASE

CATO Networks

NaaS offerings deliver network functionality as a service, which include the following capabilities: elf-service capability on-demand usage, Ability to scale up and down. billed on an opex model consumption-based, via a metered metric (such as ports, bandwidth or users), (not based on network devices/appliances).

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