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Wlodzimierz Bielecki
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2020 – today
- 2023
- [j19]Marek Palkowski, Wlodzimierz Bielecki:
NPDP benchmark suite for the evaluation of the effectiveness of automatic optimizing compilers. Parallel Comput. 116: 103016 (2023) - [c39]Wlodzimierz Bielecki, Marek Palkowski, Piotr Blaszynski, Maciej Poliwoda:
Polyhedral Tiling Strategies for the Zuker Algorithm Optimization. FedCSIS (Communication Papers) 2023: 37-41 - 2022
- [c38]Wlodzimierz Bielecki, Marek Palkowski, Maciej Poliwoda:
Automatic code optimization for computing the McCaskill partition functions. FedCSIS 2022: 475-478 - [c37]Marek Palkowski, Wlodzimierz Bielecki:
NPDP Benchmark Suite for Loop Tiling Effectiveness Evaluation. PPAM (2) 2022: 51-62 - 2021
- [j18]Wlodzimierz Bielecki, Piotr Blaszynski, Maciej Poliwoda:
3D parallel tiled code implementing a modified Knuth's optimal binary search tree algorithm. J. Comput. Sci. 48: 101246 (2021) - [c36]Wlodzimierz Bielecki, Maciej Poliwoda:
Automatic Parallel Tiled Code Generation Based on Dependence Approximation. PaCT 2021: 260-275 - 2020
- [j17]Marek Palkowski, Wlodzimierz Bielecki:
Parallel tiled cache and energy efficient codes for O(n4) RNA folding algorithms. J. Parallel Distributed Comput. 137: 252-258 (2020) - [c35]Marek Palkowski, Wlodzimierz Bielecki, Mateusz Gruzewski:
Automatic Generation of Parallel Cache-Efficient Code Implementing Zuker's RNA Folding. ICAISC (1) 2020: 646-654
2010 – 2019
- 2019
- [j16]Marek Palkowski, Wlodzimierz Bielecki:
Tiling Nussinov's RNA folding loop nest with a space-time approach. BMC Bioinform. 20(1): 208:1-208:11 (2019) - [j15]Wlodzimierz Bielecki, Piotr Skotnicki:
Insight into tiles generated by means of a correction technique. J. Supercomput. 75(5): 2665-2690 (2019) - [c34]Marek Palkowski, Wlodzimierz Bielecki:
Parallel cache-efficient code for computing the McCaskill partition functions. FedCSIS 2019: 207-210 - [c33]Marek Palkowski, Wlodzimierz Bielecki:
Parallel Tiled Cache and Energy Efficient Code for Zuker's RNA Folding. PPAM (2) 2019: 25-34 - 2018
- [j14]Marek Palkowski, Wlodzimierz Bielecki:
Tuning iteration space slicing based tiled multi-core code implementing Nussinov's RNA folding. BMC Bioinform. 19(1): 12:1-12:12 (2018) - [j13]Wlodzimierz Bielecki, Marek Palkowski, Piotr Skotnicki:
Generation of parallel synchronization-free tiled code. Computing 100(3): 277-302 (2018) - [j12]Marek Palkowski, Wlodzimierz Bielecki:
Parallel Tiled Codes Implementing the Smith-Waterman Alignment Algorithm for Two and Three Sequences. J. Comput. Biol. 25(10): 1106-1119 (2018) - [c32]Wlodzimierz Bielecki, Marek Palkowski:
Transitive Closure Based Schedule of Loop Nest Statement Instances. ACS 2018: 122-131 - [c31]Marek Palkowski, Wlodzimierz Bielecki:
Accelerating Minimum Cost Polygon Triangulation Code with the TRACO Compiler. FedCSIS (Communication Papers) 2018: 111-114 - [c30]Marek Palkowski, Krzysztof Siedlecki, Wlodzimierz Bielecki:
Parallel Cache Efficient Algorithm and Implementation of Needleman-Wunsch Global Sequence Alignment. ICAISC (2) 2018: 207-216 - 2017
- [j11]Wlodzimierz Bielecki, Piotr Skotnicki:
Dynamic Tile Free Scheduling for Code with Acyclic Inter-Tile Dependence Graphs. Comput. Sci. 18(2): 195- (2017) - [j10]Marek Palkowski, Wlodzimierz Bielecki:
Parallel tiled Nussinov RNA folding loop nest generated using both dependence graph transitive closure and loop skewing. BMC Bioinform. 18(1): 290 (2017) - [j9]Marek Palkowski, Wlodzimierz Bielecki:
Parallel Tiled Code Generation with Loop Permutation within Tiles. Comput. Informatics 36(6): 1261-1282 (2017) - [c29]Marek Palkowski, Wlodzimierz Bielecki:
Optimizing Numerical Code by means of the Transitive Closure of Dependence Graphs. FedCSIS 2017: 523-526 - [c28]Marek Palkowski, Wlodzimierz Bielecki, Piotr Skotnicki:
Improving Data Locality of RNA Secondary Structure Prediction Code. ICAISC (1) 2017: 690-699 - [c27]Marek Palkowski, Wlodzimierz Bielecki:
A Practical Approach to Tiling Zuker's RNA Folding Using the Transitive Closure of Loop Dependence Graphs. ISAT (2) 2017: 200-209 - 2016
- [j8]Agnieszka Kaminska, Wlodzimierz Bielecki:
Statistical models to accelerate software development by means of iterative compilation. Comput. Sci. 17(3): 407- (2016) - [j7]Wlodzimierz Bielecki, Marek Palkowski:
Tiling arbitrarily nested loops by means of the transitive closure of dependence graphs. Int. J. Appl. Math. Comput. Sci. 26(4): 919-939 (2016) - [j6]Marek Palkowski, Wlodzimierz Bielecki:
TRACO: Source-to-Source Parallelizing Compiler. Comput. Informatics 35(6): 1277-1306 (2016) - [c26]Wlodzimierz Bielecki, Marek Palkowski:
Loop Nest Tiling for Image Processing and Communication Applications. ACS 2016: 305-314 - [c25]Wlodzimierz Bielecki, Piotr Skotnicki:
Tile Merging Technique to Generate Valid Tiled Code by Means of the Transitive Closure of a Dependence Graph. ACS 2016: 315-327 - [c24]Marek Palkowski, Wlodzimierz Bielecki:
An Iteration Space Visualizer for Polyhedral Loop Transformations in Numerical Programming. FedCSIS 2016: 705-708 - [c23]Tomasz Klimek, Marek Palkowski, Wlodzimierz Bielecki:
Synchronization-Free Automatic Parallelization for Arbitrarily Nested Affine Loops. SBAC-PAD (Workshops) 2016: 43-48 - 2015
- [j5]Wlodzimierz Bielecki, Krzysztof Kraska, Tomasz Klimek:
Using basis dependence distance vectors in the modified Floyd-Warshall algorithm. J. Comb. Optim. 30(2): 253-275 (2015) - [c22]Marek Palkowski, Tomasz Klimek, Wlodzimierz Bielecki:
TRACO: An automatic loop nest parallelizer for numerical applications. FedCSIS 2015: 681-686 - [c21]Marek Palkowski, Wlodzimierz Bielecki:
Using an Artificial Neural Network to Predict Loop Transformation Time. ICAISC (1) 2015: 102-111 - [c20]Wlodzimierz Bielecki, Marek Palkowski, Tomasz Klimek:
Free Scheduling of Tiles Based on the Transitive Closure of Dependence Graphs. PPAM (2) 2015: 133-142 - 2014
- [c19]Wlodzimierz Bielecki, Marek Palkowski:
Perfectly Nested Loop Tiling Transformations Based on the Transitive Closure of the Program Dependence Graph. ACS 2014: 309-320 - [c18]Marek Palkowski, Wlodzimierz Bielecki:
TRACO Parallelizing Compiler. ACS 2014: 409-421 - [c17]Marek Palkowski, Wlodzimierz Bielecki:
Usage of the TRACO Compiler for Neural Network Parallelization. ICAISC (1) 2014: 121-130 - 2013
- [c16]Wlodzimierz Bielecki, Krzysztof Kraska, Tomasz Klimek:
Using Basis Dependence Distance Vectors to Calculate the Transitive Closure of Dependence Relations by Means of the Floyd-Warshall Algorithm. COCOA 2013: 129-140 - [c15]Wlodzimierz Bielecki, Krzysztof Kraska, Tomasz Klimek:
Transitive Closure of a Union of Dependence Relations for Parameterized Perfectly-Nested Loops. PaCT 2013: 37-50 - 2012
- [j4]Wlodzimierz Bielecki, Tomasz Klimek, Marek Palkowski, Anna Beletska:
An Iterative Algorithm of Computing the Transitive Closure of a Union of Parametrized Affine Integer Tuple Relations. Discret. Math. Algorithms Appl. 4(1) (2012) - [j3]Wlodzimierz Bielecki, Marek Palkowski, Tomasz Klimek:
Free scheduling for statement instances of parameterized arbitrarily nested affine loops. Parallel Comput. 38(9): 518-532 (2012) - 2011
- [j2]Anna Beletska, Wlodzimierz Bielecki, Albert Cohen, Marek Palkowski, Krzysztof Siedlecki:
Coarse-grained loop parallelization: Iteration Space Slicing vs affine transformations. Parallel Comput. 37(8): 479-497 (2011) - [c14]Wlodzimierz Bielecki, Marek Palkowski:
Using Free Scheduling for Programming Graphic Cards. Facing the Multicore-Challenge 2011: 72-83 - [c13]Wlodzimierz Bielecki, Krzysztof Kraska:
Extracting Coarse-Grained Parallelism for Affine Perfectly Nested Quasi-uniform Loops. PPAM (1) 2011: 307-316 - 2010
- [c12]Wlodzimierz Bielecki, Tomasz Klimek, Marek Palkowski, Anna Beletska:
An Iterative Algorithm of Computing the Transitive Closure of a Union of Parameterized Affine Integer Tuple Relations. COCOA (1) 2010: 104-113 - [c11]Wlodzimierz Bielecki, Marek Palkowski:
Coarse-Grained Loop Parallelization for Image Processing and Communication Applications. IP&C 2010: 307-314
2000 – 2009
- 2009
- [j1]Wlodzimierz Bielecki, Tomasz Klimek, Konrad Trifunovic:
Calculating Exact Transitive Closure for a Normalized Affine Integer Tuple Relation. Electron. Notes Discret. Math. 33: 7-14 (2009) - [c10]Anna Beletska, Denis Barthou, Wlodzimierz Bielecki, Albert Cohen:
Computing the Transitive Closure of a Union of Affine Integer Tuple Relations. COCOA 2009: 98-109 - [c9]Anna Beletska, Wlodzimierz Bielecki, Albert Cohen, Marek Palkowski, Krzysztof Siedlecki:
Coarse-Grained Loop Parallelization: Iteration Space Slicing vs Affine Transformations. ISPDC 2009: 73-80 - [c8]Anna Beletska, Wlodzimierz Bielecki, Albert Cohen, Marek Palkowski:
Synchronization-Free Automatic Parallelization: Beyond Affine Iteration-Space Slicing. LCPC 2009: 233-246 - [c7]Wlodzimierz Bielecki, Marek Palkowski:
Extracting Both Affine and Non-linear Synchronization-Free Slices in Program Loops. PPAM (1) 2009: 196-205 - 2008
- [c6]Wlodzimierz Bielecki, Anna Beletska, Marek Palkowski, Pierluigi San Pietro:
Finding Synchronization-Free Parallelism Represented with Trees of Dependent Operations. ICA3PP 2008: 185-195 - [c5]Anna Beletska, Wlodzimierz Bielecki, Krzysztof Siedlecki, Pierluigi San Pietro:
Finding Synchronization-Free Slices of Operations in Arbitrarily Nested Loops. ICCSA (2) 2008: 871-886 - [c4]Wlodzimierz Bielecki, Marek Palkowski:
Using Message Passing for Developing Coarse-Grained Applications in OpenMP. ICSOFT (PL/DPS/KE) 2008: 145-152 - 2007
- [c3]Anna Beletska, Wlodzimierz Bielecki, Pierluigi San Pietro:
Extracting Coarse-Grained Parallelism in Program Loops with the Slicing Framework. ISPDC 2007: 203-210 - [p3]Wlodzimierz Bielecki, Dariusz Burak:
Parallelization Method of Encryption Algorithms. Advances in Information Processing and Protection 2007: 191-204 - [p2]Wlodzimierz Bielecki, Maciej Poliwoda:
Hyperplane Method Implementation for Loops Parallelization in the .NET Environment. Advances in Information Processing and Protection 2007: 431-445 - 2006
- [c2]Piotr Dziurzanski, Wlodzimierz Bielecki, Konrad Trifunovic, M. Kleszczonek:
A System for Transforming an ANSI C Code with OpenMP Directives into a SystemC Description. DDECS 2006: 153-154 - [p1]Wlodzimierz Bielecki, Dariusz Burak:
Parallelization of Standard Modes of Operation for Symmetric Key Block Ciphers. Biometrics, Computer Security Systems and Artificial Intelligence Applications 2006: 101-110 - 2004
- [c1]Wlodzimierz Bielecki, Rafal Kocisz:
A Modified Vertex Method for Parallelization of Arbitrary Nested Loops. PARELEC 2004: 91-96
Coauthor Index
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