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Object combining: a new aggressive optimization for object intensive programs.

, , , and . Concurr. Pract. Exp., 17 (5-6): 439-464 (2005)

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A Programmer-friendly LL(1) Parser Generator., and . Softw. Pract. Exp., 18 (1): 29-38 (1988)Rewrite or Not Rewrite? ML-Based Algorithm Selection for Datalog Query Answering on Knowledge Graphs., , and . ECAI, volume 325 of Frontiers in Artificial Intelligence and Applications, page 792-799. IOS Press, (2020)Source-level global optimizations for fine-grain distributed shared memory systems., , , , and . PPoPP, page 83-92. ACM, (2001)Automatically Inserting Synchronization Statements in Divide-and-Conquer Programs., , , and . IPDPS Workshops, page 1233-1241. IEEE, (2011)Stepwise-refinement for performance: a methodology for many-core programming., , , and . Concurr. Comput. Pract. Exp., 27 (17): 4515-4554 (2015)Satin: A high-level and efficient grid programming model., , , and . ACM Trans. Program. Lang. Syst., 32 (3): 9:1-9:39 (2010)Cashmere: Heterogeneous Many-Core Computing., , , and . IPDPS, page 135-145. IEEE Computer Society, (2015)A Jungle Computing approach to common image source identification in large collections of images., , , , , and . Digit. Investig., (2018)A Task- and Data-Parallel Programming Language Based on Shared Objects., , and . ACM Trans. Program. Lang. Syst., 20 (6): 1131-1170 (1998)Generating synchronization statements in divide-and-conquer programs., , , and . Parallel Comput., 38 (1-2): 75-89 (2012)