Real-world PIM on UPMEM accelerates cryptographic algorithms when computation is distributed across multiple DRAM ranks, outperforming CPUs at full scale.
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PIM-CACHE reduces mandatory coarse-grained transfers in UPMEM-style PIM by dynamically staging only non-redundant data via content-aware copy that exploits workload similarity.
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Taking Cryptography Out of the Data Path via Near-Memory Processing in DRAM
Real-world PIM on UPMEM accelerates cryptographic algorithms when computation is distributed across multiple DRAM ranks, outperforming CPUs at full scale.
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PIM-CACHE: High-Efficiency Content-Aware Copy for Processing-In-Memory
PIM-CACHE reduces mandatory coarse-grained transfers in UPMEM-style PIM by dynamically staging only non-redundant data via content-aware copy that exploits workload similarity.