2015 · 27 citations · 22 references
Cluster ComputingEngineeringComputer ArchitectureLarge Virtual MemoryMemory Model (Programming)Hardware SecurityGeneral-purpose Memory AllocationShared MemoryGlobal Data StructuresLow-fragmentation Memory AllocationParallel ComputingManycore ProcessorMemory ManagementMulticore ScalabilityFree MemoryComputer EngineeringComputer ScienceVirtual MemoryMemory ArchitectureEdge ComputingCloud ComputingMany-core ArchitectureVirtual Resource PartitioningParallel Programming
We demonstrate that general-purpose memory allocation involving many threads on many cores can be done with high performance, multicore scalability, and low memory consumption. For this purpose, we have designed and implemented scalloc, a concurrent allocator that generally performs and scales in our experiments better than other allocators while using less memory, and is still competitive otherwise. The main ideas behind the design of scalloc are: uniform treatment of small and big objects through so-called virtual spans, efficiently and effectively reclaiming free memory through fast and scalable global data structures, and constant-time (modulo synchronization) allocation and deallocation operations that trade off memory reuse and spatial locality without being subject to false sharing.
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Emery D. Berger, Kathryn S. McKinley, Robert D. Blumofe et al. · ACM SIGPLAN Notices · 2000 · 447 citations · Full text
The art of multiprocessor programming
Maurice Herlihy · 2006 · 375 citations