Travelled to:
1 × India
1 × United Kingdom
16 × USA
2 × Germany
3 × France
4 × Canada
Collaborated with:
S.Eyerman A.Georges K.D.Bosschere D.Buytaert J.B.Sartor J.Hamers K.Hoste K.Venstermans L.V.Ertvelde Y.Chen O.Temam C.Wu D.Genbrugge H.Sbeyti S.Niar K.D.Bosschere Xia Zhao 0004 Magnus Jahre K.D.Bois A.M.Joshi L.K.John C.Isen T.Karkhanis J.E.Smith J.Maebe Shoaib Akram K.S.McKinley S.Fang W.Heirman T.E.Carlson K.V.Craeynest I.Hur A.Jaleel R.Leupers G.Martin F.Schirrmeister N.P.Topham X.Chen M.Hind M.Arnold Y.Huang G.Fursin L.Peng
Talks about:
java (8) level (6) processor (5) perform (5) thread (5) virtual (4) compil (4) applic (4) smt (4) architectur (3)
Person: Lieven Eeckhout
DBLP: Eeckhout:Lieven
Contributed to:
Wrote 30 papers:
- ASPLOS-2014-EyermanE #concurrent #flexibility #manycore #parallel #smt #thread #towards
- The benefit of SMT in the multi-core era: flexibility towards degrees of thread-level parallelism (SE, LE), pp. 591–606.
- HPCA-2014-HeirmanCCHJE #architecture #clustering #thread
- Undersubscribed threading on clustered cache architectures (WH, TEC, KVC, IH, AJ, LE), pp. 678–689.
- OOPSLA-2013-BoisSEE #concurrent #graph #multi #scalability #thread #visualisation
- Bottle graphs: visualizing scalability bottlenecks in multi-threaded applications (KDB, JBS, SE, LE), pp. 355–372.
- ASPLOS-2012-ChenFETW #optimisation
- Iterative optimization for the data center (YC, SF, LE, OT, CW), pp. 49–60.
- OOPSLA-2012-SartorE #concurrent #hardware #java #manycore #performance #thread
- Exploring multi-threaded Java application performance on multicore hardware (JBS, LE), pp. 281–296.
- DATE-2011-LeupersEMSTC #manycore #towards
- Virtual Manycore platforms: Moving towards 100+ processor cores (RL, LE, GM, FS, NPT, XC), pp. 715–720.
- ASPLOS-2010-EyermanE #modelling #probability #scheduling #smt
- Probabilistic job symbiosis modeling for SMT processor scheduling (SE, LE), pp. 91–102.
- CGO-2010-HosteGE #automation #compilation
- Automated just-in-time compiler tuning (KH, AG, LE), pp. 62–72.
- HPCA-2010-GenbruggeEE #abstraction #architecture #simulation
- Interval simulation: Raising the level of abstraction in architectural simulation (DG, SE, LE), pp. 1–12.
- PLDI-2010-ChenHEFPTW #dataset #optimisation
- Evaluating iterative optimization across 1000 datasets (YC, YH, LE, GF, LP, OT, CW), pp. 448–459.
- ASPLOS-2009-EyermanE #smt #thread
- Per-thread cycle accounting in SMT processors (SE, LE), pp. 133–144.
- ASPLOS-2008-ErtveldeE #benchmark #metric
- Dispersing proprietary applications as benchmarks through code mutation (LVE, LE), pp. 201–210.
- CGO-2008-HosteE #compilation #named #optimisation
- Cole: compiler optimization level exploration (KH, LE), pp. 165–174.
- DAC-2008-HamersE #automation #identification #independence
- Automated hardware-independent scenario identification (JH, LE), pp. 954–959.
- HPCA-2008-JoshiEJI #automation #generative
- Automated microprocessor stressmark generation (AMJ, LE, LKJ, CI), pp. 229–239.
- OOPSLA-2008-GeorgesEB #compilation #evaluation #java #performance
- Java performance evaluation through rigorous replay compilation (AG, LE, DB), pp. 367–384.
- DATE-2007-HamersE #predict
- Resource prediction for media stream decoding (JH, LE), pp. 594–599.
- ECOOP-2007-VenstermansEB #java #pointer #virtual machine
- Object-Relative Addressing: Compressed Pointers in 64-Bit Java Virtual Machines (KV, LE, KDB), pp. 79–100.
- HPCA-2007-EyermanE #parallel #policy #smt
- A Memory-Level Parallelism Aware Fetch Policy for SMT Processors (SE, LE), pp. 240–249.
- OOPSLA-2007-BuytaertGHAEB #compilation #using
- Using hpm-sampling to drive dynamic compilation (DB, AG, MH, MA, LE, KDB), pp. 553–568.
- OOPSLA-2007-GeorgesBE #evaluation #java #performance #statistics
- Statistically rigorous java performance evaluation (AG, DB, LE), pp. 57–76.
- ASPLOS-2006-EyermanEKS #architecture #component #performance
- A performance counter architecture for computing accurate CPI components (SE, LE, TK, JES), pp. 175–184.
- CGO-2006-VenstermansEB #java
- Space-Efficient 64-bit Java Objects through Selective Typed Virtual Addressing (KV, LE, KDB), pp. 76–86.
- DATE-2006-EyermanEB #design #embedded #performance
- Efficient design space exploration of high performance embedded out-of-order processors (SE, LE, KDB), pp. 351–356.
- OOPSLA-2006-MaebeBEB #java #named #program analysis #tool support
- Javana: a system for building customized Java program analysis tools (JM, DB, LE, KDB), pp. 153–168.
- DATE-v2-2004-SbeytiNE #adaptation #embedded #multi
- Adaptive Prefetching for Multimedia Applications in Embedded Systems (HS, SN, LE), pp. 1350–1351.
- OOPSLA-2004-GeorgesBEB #behaviour #java
- Method-level phase behavior in java workloads (AG, DB, LE, KDB), pp. 270–287.
- OOPSLA-2003-EeckhoutGB #architecture #how #java #source code #virtual machine
- How java programs interact with virtual machines at the microarchitectural level (LE, AG, KDB), pp. 169–186.
- PLDI-2018-AkramSME #garbage collection #hybrid
- Write-rationing garbage collection for hybrid memories (SA, JBS, KSM, LE), pp. 62–77.
- ASPLOS-2020-0004JE #hybrid #multi #named
- HSM: A Hybrid Slowdown Model for Multitasking GPUs (XZ0, MJ, LE), pp. 1371–1385.