Travelled to:
1 × China
1 × Estonia
1 × Iceland
13 × USA
3 × Italy
4 × Canada
Collaborated with:
R.Harper P.Cheng J.Greiner U.A.Acar J.Shun ∅ P.B.Gibbons R.Ley-Wild S.Chatterjee J.T.Fineman G.J.Narlikar K.Tangwongsan A.Kyrola C.Guestrin V.Vassilevska R.Williams A.Nanevski A.L.Fisher Ananya Kumar R.H.0001 Laxman Dhulipala D.Spoonhower M.Blume D.Türkoglu J.C.Hardwick J.Sipelstein M.Zagha K.Dhamdhere E.Halperin R.Ravi R.Schwartz S.Sridhar
Talks about:
parallel (11) function (7) space (5) graph (5) time (5) implement (4) comput (4) algorithm (3) program (3) garbag (3)
Person: Guy E. Blelloch
DBLP: Blelloch:Guy_E=
Contributed to:
Wrote 27 papers:
- POPL-2013-BlellochH #algorithm #functional
- Cache and I/O efficent functional algorithms (GEB, RH), pp. 39–50.
- PPoPP-2013-ShunB #framework #graph #lightweight #memory management #named
- Ligra: a lightweight graph processing framework for shared memory (JS, GEB), pp. 135–146.
- PPoPP-2013-ShunBFG
- Reducing contention through priority updates (JS, GEB, JTF, PBG), pp. 299–300.
- ESOP-2012-Ley-WildAB #self
- Non-monotonic Self-Adjusting Computation (RLW, UAA, GEB), pp. 476–496.
- OSDI-2012-KyrolaBG #graph #named #scalability
- GraphChi: Large-Scale Graph Computation on Just a PC (AK, GEB, CG), pp. 31–46.
- PPoPP-2012-BlellochFGS #algorithm #parallel #performance
- Internally deterministic parallel algorithms can be fast (GEB, JTF, PBG, JS), pp. 181–192.
- ICFP-2010-Blelloch #algorithm #functional #parallel
- Functional parallel algorithms (GEB), pp. 247–248.
- PLDI-2010-AcarBLTT #data type #self
- Traceable data types for self-adjusting computation (UAA, GEB, RLW, KT, DT), pp. 483–496.
- PPoPP-2009-Blelloch #parallel
- Parallel thinking (GEB), pp. 1–2.
- ICALP-A-2008-BlellochVW #approach #combinator #graph #problem
- A New Combinatorial Approach for Sparse Graph Problems (GEB, VV, RW), pp. 108–120.
- ICFP-2008-SpoonhowerBHG #functional #parallel #profiling #source code
- Space profiling for parallel functional programs (DS, GEB, RH, PBG), pp. 253–264.
- ICALP-v1-2006-BlellochDHRSS #parametricity #re-engineering
- Fixed Parameter Tractability of Binary Near-Perfect Phylogenetic Tree Reconstruction (GEB, KD, EH, RR, RS, SS), pp. 667–678.
- PLDI-2006-AcarBBT #analysis #self
- An experimental analysis of self-adjusting computation (UAA, GEB, MB, KT), pp. 96–107.
- POPL-2003-AcarBH
- Selective memoization (UAA, GEB, RH), pp. 14–25.
- POPL-2002-AcarBH #adaptation #functional #programming
- Adaptive functional programming (UAA, GEB, RH), pp. 247–259.
- ICFP-2001-NanevskiBH #automation #generative #geometry #staged
- Automatic Generation of Staged Geometric Predicates (AN, GEB, RH), pp. 217–228.
- PLDI-2001-ChengB #garbage collection #parallel #realtime
- A Parallel, Real-Time Garbage Collector (PC, GEB), pp. 125–136.
- Best-of-PLDI-1999-BlellochC99a #bound #garbage collection #multi #on the
- On bounding time and space for multiprocessor garbage collection (with retrospective) (GEB, PC), pp. 626–641.
- PLDI-1999-BlellochC #bound #garbage collection #multi #on the
- On Bounding Time and Space for Multiprocessor Garbage Collection (GEB, PC), pp. 104–117.
- PPoPP-1997-NarlikarB #implementation #parallel
- Space-Efficient Implementation of Nested Parallelism (GJN, GEB), pp. 25–36.
- ICFP-1996-BlellochG #implementation #performance
- A Provable Time and Space Efficient Implementation of NESL (GEB, JG), pp. 213–225.
- POPL-1996-GreinerB #implementation #parallel
- A Provably Time-Efficient Parallel Implementation of Full Speculation (JG, GEB), pp. 309–321.
- FPCA-1995-BlellochG #functional #parallel
- Parallelism in Sequential Functional Languages (GEB, JG), pp. 226–237.
- PPoPP-1993-BlellochCHSZ #implementation
- Implementation of a Portable Nested Data-Parallel Language (GEB, SC, JCH, JS, MZ), pp. 102–111.
- PLDI-1991-ChatterjeeBF #source code
- Size and Access Inference for Data-Parallel Programs (SC, GEB, ALF), pp. 130–144.
- POPL-2017-KumarBH #array #functional #parallel
- Parallel functional arrays (AK, GEB, RH0), pp. 706–718.
- PLDI-2019-DhulipalaBS #graph #streaming #using
- Low-latency graph streaming using compressed purely-functional trees (LD, GEB, JS), pp. 918–934.