Myrmics: A scalable runtime system for global address spaces
Explore this paper's citation graph
Summary
The author’s personal views are his own and not necessarily those of the publishers.
- Type
- article
- Published
- 2013-01-01
- Cited by
- 7
- References
- 115
- OpenAlex
- https://openalex.org/W356205370
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:14425013
Keywords
Scalability, Computer science, Computer security, Database
References
- BEE3: Revitalizing Computer Architecture Research
- JFFS : The Journalling Flash File System
- Direct communication and synchronization mechanisms in chip multiprocessors
- The Bowyer-Watson algorithm; An efficient implementation in a database environment
- DeNovo: Rethinking Hardware for Disciplined Parallelism
- GASNet Specification, v1.1
- The Nas Parallel Benchmarks
- MPI: The Complete Reference
- The 48-core SCC Processor: the Programmer's View
- Power challenges may end the multicore era
- A 48-Core IA-32 message-passing processor with DVFS in 45nm CMOS
- Habanero-Java: the new adventures of old X10
- BEE2: a high-end reconfigurable computing system
- Prefetching and cache management using task lifetimes
- Handling task dependencies under strided and aliased references
- High Performance RDMA-Based MPI Implementation over InfiniBand
- Scalable lock-free dynamic memory allocation
- A performance model for X10 applications: what's going on under the hood?
- DeNovo: Rethinking the Memory Hierarchy for Disciplined Parallelism
- Inference and declaration of independence: Impact on deterministic task parallelism
Cited by
- Micro-checkpointing in fault tolerant runtimes
- JDMM: a java memory model for non-cache-coherent memory architectures
- BDDT-SCC: A Task-parallel Runtime for Non Cache-Coherent Multicores
- Scalable Task Scheduling and Synchronization Using Hierarchical Effects
- Distributed runtime system with global address space and software cache coherence for a data-flow task model. (Système distribué à adressage global et cohérence logicielle pourl'exécution d'un modèle de tâche à flot de données)
- Enhancing the scalability of many-core systems towards utilizing fine-grain parallelism in task-based programming models
- Distributed Memory Management
Related papers
- A RUNTIME SUPPORT SYSTEM FOR RECONFIGURABLE COMPUTING
- Efficient runtime support for embedded MPSoCs
- Efficient reconfiguration methods to enable rapid deployment of runtime reconfigurable systems
- Multi-accelerator cluster runtime adaptation for enabling discrete concurrent-task applications
- An FPGA-based Scalable Hardware Scheduler for Data-Flow Models
- An Abstract Object Oriented Runtime System for Heterogeneous Parallel Architecture
- A data-flow execution engine for scalable embedded computing