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Fabrizio Pastore
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2020 – today
- 2024
- [j22]Mohammed Oualid Attaoui, Hazem M. Fahmy, Fabrizio Pastore, Lionel C. Briand:
Supporting Safety Analysis of Image-processing DNNs through Clustering-based Approaches. ACM Trans. Softw. Eng. Methodol. 33(5): 130:1-130:48 (2024) - [j21]Chanh Duc Ngo, Fabrizio Pastore, Lionel C. Briand:
Testing Updated Apps by Adapting Learned Models. ACM Trans. Softw. Eng. Methodol. 33(6): 155 (2024) - [c42]Mohammed Oualid Attaoui, Fabrizio Pastore, Lionel C. Briand:
SAFE: Safety Analysis and Retraining of DNNs. ICSE Companion 2024: 74-78 - [c41]Jaekwon Lee, Enrico Viganò, Fabrizio Pastore, Lionel C. Briand:
MOTIF: A tool for Mutation Testing with Fuzzing. ICST 2024: 451-453 - [c40]Seung Yeob Shin, Fabrizio Pastore, Domenico Bianculli, Alexandra Baicoianu:
Towards Generating Executable Metamorphic Relations Using Large Language Models. QUATIC 2024: 126-141 - [i23]Seung Yeob Shin, Fabrizio Pastore, Domenico Bianculli, Alexandra Baicoianu:
Towards Generating Executable Metamorphic Relations Using Large Language Models. CoRR abs/2401.17019 (2024) - [i22]Nazanin Bayati Chaleshtari, Yoann Marquer, Fabrizio Pastore, Lionel C. Briand:
AIM: Automated Input Set Minimization for Metamorphic Security Testing. CoRR abs/2402.10773 (2024) - [i21]Jaekwon Lee, Enrico Viganò, Fabrizio Pastore, Lionel C. Briand:
MOTIF: A tool for Mutation Testing with Fuzzing. CoRR abs/2406.02398 (2024) - [i20]Mohammed Oualid Attaoui, Fabrizio Pastore, Lionel C. Briand:
Search-based DNN Testing and Retraining with GAN-enhanced Simulations. CoRR abs/2406.13359 (2024) - 2023
- [j20]Jahanzaib Malik, Fabrizio Pastore:
An empirical study of vulnerabilities in edge frameworks to support security testing improvement. Empir. Softw. Eng. 28(4): 99 (2023) - [j19]Mohammed Walid Attaoui, Hazem M. Fahmy, Fabrizio Pastore, Lionel C. Briand:
Black-box Safety Analysis and Retraining of DNNs based on Feature Extraction and Clustering. ACM Trans. Softw. Eng. Methodol. 32(3): 79:1-79:40 (2023) - [j18]Hazem M. Fahmy, Fabrizio Pastore, Lionel C. Briand, Thomas Stifter:
Simulator-based Explanation and Debugging of Hazard-triggering Events in DNN-based Safety-critical Systems. ACM Trans. Softw. Eng. Methodol. 32(4): 104:1-104:47 (2023) - [j17]Enrico Viganò, Oscar Cornejo, Fabrizio Pastore, Lionel C. Briand:
Data-Driven Mutation Analysis for Cyber-Physical Systems. IEEE Trans. Software Eng. 49(4): 2182-2201 (2023) - [j16]Nazanin Bayati Chaleshtari, Fabrizio Pastore, Arda Goknil, Lionel C. Briand:
Metamorphic Testing for Web System Security. IEEE Trans. Software Eng. 49(6): 3430-3471 (2023) - [c39]Enrico Viganò, Oscar Cornejo, Fabrizio Pastore, Lionel C. Briand:
DaMAT: A Data-driven Mutation Analysis Tool. ICSE Companion 2023: 165-169 - [c38]Jaekwon Lee, Enrico Viganò, Oscar Cornejo, Fabrizio Pastore, Lionel C. Briand:
Fuzzing for CPS Mutation Testing. ASE 2023: 1377-1389 - [i19]Mohammed Oualid Attaoui, Hazem M. Fahmy, Fabrizio Pastore, Lionel C. Briand:
DNN Explanation for Safety Analysis: an Empirical Evaluation of Clustering-based Approaches. CoRR abs/2301.13506 (2023) - [i18]Chanh Duc Ngo, Fabrizio Pastore, Lionel C. Briand:
Testing Updated Apps by Adapting Learned Models. CoRR abs/2308.05549 (2023) - [i17]Jaekwon Lee, Enrico Viganò, Oscar Cornejo, Fabrizio Pastore, Lionel C. Briand:
Fuzzing for CPS Mutation Testing. CoRR abs/2308.07949 (2023) - 2022
- [j15]Chanh Duc Ngo, Fabrizio Pastore, Lionel C. Briand:
Automated, Cost-effective, and Update-driven App Testing. ACM Trans. Softw. Eng. Methodol. 31(4): 61:1-61:51 (2022) - [j14]Chunhui Wang, Fabrizio Pastore, Arda Goknil, Lionel C. Briand:
Automatic Generation of Acceptance Test Cases From Use Case Specifications: An NLP-Based Approach. IEEE Trans. Software Eng. 48(2): 585-616 (2022) - [j13]Fabrizio Pastore, Daniela Micucci, Michell Guzmán, Leonardo Mariani:
TkT: Automatic Inference of Timed and Extended Pushdown Automata. IEEE Trans. Software Eng. 48(2): 617-636 (2022) - [j12]Oscar Cornejo, Fabrizio Pastore, Lionel C. Briand:
Mutation Analysis for Cyber-Physical Systems: Scalable Solutions and Results in the Space Domain. IEEE Trans. Software Eng. 48(10): 3913-3939 (2022) - [c37]Hazem M. Fahmy, Fabrizio Pastore, Lionel C. Briand:
HUDD: A tool to debug DNNs for safety analysis. ICSE-Companion 2022: 100-104 - [c36]Oscar Cornejo, Fabrizio Pastore, Lionel C. Briand:
MASS: A tool for Mutation Analysis of Space CPS. ICSE-Companion 2022: 134-138 - [c35]Fabrizio Pastore, Lingming Zhang:
Message from the Program Co-Chairs: ISSRE 2022. ISSRE 2022: xiv - [c34]Chanh Duc Ngo, Fabrizio Pastore, Lionel C. Briand:
ATUA: an update-driven app testing tool. ISSTA 2022: 765-768 - [i16]Mohammed Oualid Attaoui, Hazem M. Fahmy, Fabrizio Pastore, Lionel C. Briand:
Black-box Safety Analysis and Retraining of DNNs based on Feature Extraction and Clustering. CoRR abs/2201.05077 (2022) - [i15]Enrico Viganò, Oscar Cornejo, Fabrizio Pastore, Lionel C. Briand:
Data-driven Mutation Analysis for Cyber-Physical Systems. CoRR abs/2201.10160 (2022) - [i14]Hazem M. Fahmy, Fabrizio Pastore, Lionel C. Briand:
Simulator-based explanation and debugging of hazard-triggering events in DNN-based safety-critical systems. CoRR abs/2204.00480 (2022) - [i13]Nazanin Bayati Chaleshtari, Fabrizio Pastore, Arda Goknil, Lionel C. Briand:
Metamorphic Testing for Web System Security. CoRR abs/2208.09505 (2022) - [i12]Hazem M. Fahmy, Fabrizio Pastore, Lionel C. Briand:
HUDD: A tool to debug DNNs for safety analysis. CoRR abs/2210.08356 (2022) - 2021
- [j11]Hazem M. Fahmy, Fabrizio Pastore, Mojtaba Bagherzadeh, Lionel C. Briand:
Supporting Deep Neural Network Safety Analysis and Retraining Through Heatmap-Based Unsupervised Learning. IEEE Trans. Reliab. 70(4): 1641-1657 (2021) - [d6]Hazem M. Fahmy, Fabrizio Pastore, Mojtaba Bagherzadeh, Lionel Claude Briand:
Supporting DNN Safety Analysis and Retraining through Heatmap-based Unsupervised Learning. Version 2. Zenodo, 2021 [all versions] - [d5]Hazem M. Fahmy, Fabrizio Pastore, Mojtaba Bagherzadeh, Lionel C. Briand:
Supporting DNN Safety Analysis and Retraining through Heatmap-based Unsupervised Learning. Version 1. Zenodo, 2021 [all versions] - [d4]Phu Xuan Mai, Fabrizio Pastore, Arda Goknil, Lionel Claude Briand:
Metamorphic Security Testing for Web Systems. Version 4. Zenodo, 2021 [all versions] - [d3]Phu Xuan Mai, Fabrizio Pastore, Arda Goknil, Lionel C. Briand:
Metamorphic Security Testing for Web Systems. Version 1. Zenodo, 2021 [all versions] - [d2]Phu Xuan Mai, Fabrizio Pastore, Arda Goknil, Lionel C. Briand:
Metamorphic Security Testing for Web Systems. Version 2. Zenodo, 2021 [all versions] - [d1]Phu Xuan Mai, Fabrizio Pastore, Arda Goknil, Lionel C. Briand:
Metamorphic Security Testing for Web Systems. Version 3. Zenodo, 2021 [all versions] - [i11]Oscar Cornejo, Fabrizio Pastore, Lionel C. Briand:
Mutation Analysis for Cyber-Physical Systems: Scalable Solutions and Results in the Space Domain. CoRR abs/2101.05111 (2021) - 2020
- [j10]Ines Hajri, Arda Goknil, Fabrizio Pastore, Lionel C. Briand:
Automating system test case classification and prioritization for use case-driven testing in product lines. Empir. Softw. Eng. 25(5): 3711-3769 (2020) - [c33]Phu X. Mai, Arda Goknil, Fabrizio Pastore, Lionel C. Briand:
SMRL: a metamorphic security testing tool for web systems. ICSE (Companion Volume) 2020: 9-12 - [c32]Phu X. Mai, Fabrizio Pastore, Arda Goknil, Lionel C. Briand:
Metamorphic Security Testing for Web Systems. ICST 2020: 186-197 - [c31]Ezio Bartocci, Niveditha Manjunath, Leonardo Mariani, Cristinel Mateis, Dejan Nickovic, Fabrizio Pastore:
CPSDebug: a tool for explanation of failures in cyber-physical systems. ISSTA 2020: 569-572 - [i10]Hazem M. Fahmy, Mojtaba Bagherzadeh, Fabrizio Pastore, Lionel C. Briand:
Supporting DNN Safety Analysis and Retraining through Heatmap-based Unsupervised Learning. CoRR abs/2002.00863 (2020) - [i9]Chanh Duc Ngo, Fabrizio Pastore, Lionel C. Briand:
Automated, Cost-effective, and Update-driven App Testing. CoRR abs/2012.02471 (2020)
2010 – 2019
- 2019
- [j9]Chunhui Wang, Fabrizio Pastore, Lionel C. Briand:
Oracles for Testing Software Timeliness with Uncertainty. ACM Trans. Softw. Eng. Methodol. 28(1): 1:1-1:30 (2019) - [c30]Phu X. Mai, Fabrizio Pastore, Arda Goknil, Lionel C. Briand:
MCP: a security testing tool driven by requirements. ICSE (Companion Volume) 2019: 55-58 - [c29]Mauricio Alférez, Fabrizio Pastore, Mehrdad Sabetzadeh, Lionel C. Briand, Jean-Richard Riccardi:
Bridging the Gap between Requirements Modeling and Behavior-Driven Development. MoDELS 2019: 239-249 - [i8]Ines Hajri, Arda Goknil, Fabrizio Pastore, Lionel C. Briand:
Automating Test Case Classification and Prioritization for Use Case-Driven Testing in Product Lines. CoRR abs/1905.11699 (2019) - [i7]Chunhui Wang, Fabrizio Pastore, Arda Goknil, Lionel C. Briand:
Automatic Generation of System Test Cases from Use Case Specifications: an NLP-based Approach. CoRR abs/1907.08490 (2019) - [i6]Phu X. Mai, Fabrizio Pastore, Arda Goknil, Lionel C. Briand:
Metamorphic Security Testing for Web Systems. CoRR abs/1912.05278 (2019) - 2018
- [j8]Phu X. Mai, Arda Goknil, Lwin Khin Shar, Fabrizio Pastore, Lionel C. Briand, Shaban Shaame:
Modeling Security and Privacy Requirements: a Use Case-Driven Approach. Inf. Softw. Technol. 100: 165-182 (2018) - [j7]Victor R. Basili, Lionel C. Briand, Domenico Bianculli, Shiva Nejati, Fabrizio Pastore, Mehrdad Sabetzadeh:
Software Engineering Research and Industry: A Symbiotic Relationship to Foster Impact. IEEE Softw. 35(5): 44-49 (2018) - [c28]Chunhui Wang, Fabrizio Pastore, Lionel C. Briand:
Automated Generation of Constraints from Use Case Specifications to Support System Testing. ICST 2018: 23-33 - [c27]Phu X. Mai, Fabrizio Pastore, Arda Goknil, Lionel C. Briand:
A Natural Language Programming Approach for Requirements-Based Security Testing. ISSRE 2018: 58-69 - 2017
- [j6]Lionel C. Briand, Domenico Bianculli, Shiva Nejati, Fabrizio Pastore, Mehrdad Sabetzadeh:
The Case for Context-Driven Software Engineering Research: Generalizability Is Overrated. IEEE Softw. 34(5): 72-75 (2017) - [j5]Daniel Di Nardo, Fabrizio Pastore, Lionel C. Briand:
Augmenting Field Data for Testing Systems Subject to Incremental Requirements Changes. ACM Trans. Softw. Eng. Methodol. 26(1): 1:1-1:40 (2017) - [c26]Chunhui Wang, Fabrizio Pastore, Lionel C. Briand:
System Testing of Timing Requirements Based on Use Cases and Timed Automata. ICST 2017: 299-309 - [c25]Fabrizio Pastore, Daniela Micucci, Leonardo Mariani:
Timed k-Tail: Automatic Inference of Timed Automata. ICST 2017: 401-411 - [c24]Luca Gazzola, Leonardo Mariani, Fabrizio Pastore, Mauro Pezzè:
An Exploratory Study of Field Failures. ISSRE 2017: 67-77 - [c23]Fabrizio Pastore, Leonardo Mariani, Daniela Micucci:
BDCI: behavioral driven conflict identification. ESEC/SIGSOFT FSE 2017: 570-581 - [c22]Fabrizio Pastore, Leonardo Mariani:
VART: a tool for the automatic detection of regression faults. ESEC/SIGSOFT FSE 2017: 964-968 - [i5]Fabrizio Pastore, Daniela Micucci, Leonardo Mariani:
Timed k-Tail: Automatic Inference of Timed Automata. CoRR abs/1705.08399 (2017) - [i4]Fabrizio Pastore, Leonardo Mariani:
Dynamic Analysis of Regression Problems in Industrial Systems: Challenges and Solutions. CoRR abs/1705.08418 (2017) - [i3]Fabrizio Pastore, Leonardo Mariani, Daniela Micucci:
BDCI: Behavioral Driven Conflict Identification. CoRR abs/1708.01650 (2017) - [i2]Fabrizio Pastore, Leonardo Mariani:
VART: A Tool for the Automatic Detection of Regression Faults. CoRR abs/1708.02052 (2017) - [i1]Luca Gazzola, Leonardo Mariani, Fabrizio Pastore, Mauro Pezzè:
An Exploratory Study of Field Failures. CoRR abs/1708.09494 (2017) - 2016
- [c21]Fabrizio Pastore, Leonardo Mariani:
Dynamic Analysis of Regression Problems in Industrial Systems: Challenges and Solutions. ISoLA (2) 2016: 388-393 - 2015
- [c20]Fabrizio Pastore, Leonardo Mariani:
ZoomIn: Discovering Failures by Detecting Wrong Assertions. ICSE (1) 2015: 66-76 - [c19]Daniel Di Nardo, Fabrizio Pastore, Lionel C. Briand:
Generating Complex and Faulty Test Data through Model-Based Mutation Analysis. ICST 2015: 1-10 - [c18]Chunhui Wang, Fabrizio Pastore, Arda Goknil, Lionel C. Briand, Muhammad Zohaib Z. Iqbal:
Automatic generation of system test cases from use case specifications. ISSTA 2015: 385-396 - [c17]Daniel Di Nardo, Fabrizio Pastore, Andrea Arcuri, Lionel C. Briand:
Evolutionary Robustness Testing of Data Processing Systems Using Models and Data Mutation (T). ASE 2015: 126-137 - [c16]Chunhui Wang, Fabrizio Pastore, Arda Goknil, Lionel C. Briand, Muhammad Zohaib Z. Iqbal:
UMTG: a toolset to automatically generate system test cases from use case specifications. ESEC/SIGSOFT FSE 2015: 942-945 - [p2]Fabrizio Pastore, Leonardo Mariani, Alberto Goffi, Manuel Oriol, Michael Wahler:
RADAR: Dynamic Analysis of Upgrades in C/C++ Software. Validation of Evolving Software 2015: 85-105 - [p1]Fabrizio Pastore, Leonardo Mariani, Antti Eero Johannes Hyvärinen, Grigory Fedyukovich, Natasha Sharygina, Stephan Sehestedt, Ali Muhammad:
Regression Checking of Changes in C Software. Validation of Evolving Software 2015: 185-207 - 2014
- [j4]Mehdi MirzaAghaei, Fabrizio Pastore, Mauro Pezzè:
Automatic test case evolution. Softw. Test. Verification Reliab. 24(5): 386-411 (2014) - [c15]Leonardo Mariani, Daniela Micucci, Fabrizio Pastore:
Early Conflict Detection with Mined Models. ISSRE Workshops 2014: 126-127 - [c14]Fabrizio Pastore, Leonardo Mariani, Antti Eero Johannes Hyvärinen, Grigory Fedyukovich, Natasha Sharygina, Stephan Sehestedt, Ali Muhammad:
Verification-aided regression testing. ISSTA 2014: 37-48 - [c13]Daniele Zuddas, Wei Jin, Fabrizio Pastore, Leonardo Mariani, Alessandro Orso:
MIMIC: locating and understanding bugs by analyzing mimicked executions. ASE 2014: 815-826 - [e1]Gordon Fraser, Thomas D. LaToza, Leonardo Mariani, Fabrizio Pastore, Nikolai Tillmann:
Proceedings of the 1st International Workshop on CrowdSourcing in Software Engineering, CSI-SE 2014, Hyderabad, India, June 2, 2014. ACM 2014, ISBN 978-1-4503-2857-9 [contents] - 2013
- [j3]Leonardo Mariani, Fabrizio Pastore:
MASH: tool integration made easy. Softw. Pract. Exp. 43(4): 419-433 (2013) - [c12]Fabrizio Pastore, Leonardo Mariani, Alberto Goffi:
RADAR: a tool for debugging regression problems in C/C++ software. ICSE 2013: 1335-1338 - [c11]Fabrizio Pastore, Leonardo Mariani, Gordon Fraser:
CrowdOracles: Can the Crowd Solve the Oracle Problem? ICST 2013: 342-351 - [c10]Fabrizio Pastore, Leonardo Mariani:
AVA: Supporting Debugging with Failure Interpretations. ICST 2013: 416-421 - 2012
- [c9]Leonardo Mariani, Fabrizio Pastore:
MASH: A tool for end-user plug-in composition. ICSE 2012: 1387-1390 - [c8]Mehdi MirzaAghaei, Fabrizio Pastore, Mauro Pezzè:
Supporting Test Suite Evolution through Test Case Adaptation. ICST 2012: 231-240 - [c7]Fabrizio Pastore, Leonardo Mariani, Alberto Goffi, Manuel Oriol, Michael Wahler:
Dynamic Analysis of Upgrades in C/C++ Software. ISSRE 2012: 91-100 - 2011
- [j2]Leonardo Mariani, Fabrizio Pastore, Mauro Pezzè:
Dynamic Analysis for Diagnosing Integration Faults. IEEE Trans. Software Eng. 37(4): 486-508 (2011) - [c6]Leonardo Mariani, Fabrizio Pastore:
Supporting plug-in mashes to ease tool integration. TOPI@ICSE 2011: 1-4 - 2010
- [j1]Alessandra Gorla, Mauro Pezzè, Jochen Wuttke, Leonardo Mariani, Fabrizio Pastore:
Achieving Cost-Effective Software Reliability Through Self-Healing. Comput. Informatics 29(1): 93-115 (2010) - [c5]Mehdi MirzaAghaei, Fabrizio Pastore, Mauro Pezzè:
Automatically repairing test cases for evolving method declarations. ICSM 2010: 1-5
2000 – 2009
- 2009
- [c4]Leonardo Mariani, Fabrizio Pastore, Mauro Pezzè:
A toolset for automated failure analysis. ICSE 2009: 563-566 - [c3]Anton Babenko, Leonardo Mariani, Fabrizio Pastore:
AVA: automated interpretation of dynamically detected anomalies. ISSTA 2009: 237-248 - 2008
- [c2]Leonardo Mariani, Fabrizio Pastore:
Automated Identification of Failure Causes in System Logs. ISSRE 2008: 117-126 - 2007
- [c1]Domenico Cotroneo, Roberto Pietrantuono, Leonardo Mariani, Fabrizio Pastore:
Investigation of failure causes in workload-driven reliability testing. SOQUA 2007: 78-85
Coauthor Index
aka: Lionel Claude Briand
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