VLDB 2026 Research / reviewers in the wild / expert
Amanda Raybuck
dblp:304/2178
· DBLP profile ↗
3ranked-venue papers
1as first author
3since 2021 · last 2022
—ORCID · none
Domains — the database's venue-derived domains; a paper can count in several
Software engineering, systems software and programming languages · 3 · 1 first-author · 3 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2022 | zIO: Accelerating IO-Intensive Applications with Transparent Zero-Copy IO
Tim Stamler, Deukyeon Hwang, Amanda Raybuck, Simon Peter 0001 |
OSDI | 3 |
| 2021 | HeMem: Scalable Tiered Memory Management for Big Data Applications and Real NVMabstractHigh-capacity non-volatile memory (NVM) is a new main memory tier. Tiered DRAM+NVM servers increase total memory capacity by up to 8x, but can diminish memory bandwidth by up to 7x and inflate latency by up to 63% if not managed well. We study existing hardware and software tiered memory management systems on the recently available Intel Optane DC NVM with big data applications and find that no existing system maximizes application performance on real NVM. Amanda Raybuck, Tim Stamler, Mattan Erez, Simon Peter 0001 |
SOSP | 1 |
| 2021 | The Demikernel Datapath OS Architecture for Microsecond-scale Datacenter SystemsabstractDatacenter systems and I/O devices now run at single-digit microsecond latencies, requiring ns-scale operating systems. Traditional kernel-based operating systems impose an unaffordable overhead, so recent kernel-bypass OSes [73] and libraries [23] eliminate the OS kernel from the I/O datapath. However, none of these systems offer a general-purpose datapath OS replacement that meet the needs of μs-scale systems.' [email protected] paper proposes Demikernel, a flexible datapath OS and architecture designed for heterogenous kernel-bypass devices and μs-scale datacenter systems. We build two prototype Demikernel OSes and show that minimal effort is needed to port existing μs-scale systems. Once ported, Demikernel lets applications run across heterogenous kernel-bypass devices with ns-scale overheads and no code changes. Irene Zhang, Amanda Raybuck, Pratyush Patel, Kirk Olynyk, Jacob Nelson 0001, Omar S. Navarro Leija, Ashlie Martinez, Anna Kornfeld Simpson, Sujay Jayakar, Pedro Henrique de Mello Morado Penna, Max Demoulin, Piali Choudhury, Anirudh Badam |
SOSP | 2 |