Analyses for specific defects in android applications: a survey
Explore this paper's citation graph
Summary
An investigation of existing works on the analysis of Android apps finds that various program analysis approaches with techniques in other fields are applied in analyzing Android apps; however, they can be improved with more precise techniques to be more applicable.
- Type
- article
- Published
- 2019-07-16
- Cited by
- 24
- References
- 121
- OpenAlex
- https://openalex.org/W2912624940
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:58953676
Keywords
Android (operating system), Computer science, Usability, Android application, Computer security
References
- WHYPER: Towards Automating Risk Assessment of Mobile Applications
- Static analysis of Android programs
- What is keeping my phone awake?: characterizing and detecting no-sleep energy bugs in smartphone apps
- SUPOR: Precise and Scalable Sensitive User Input Detection for Android Apps
- UIPicker: User-Input Privacy Identification in Mobile Applications
- Privacy Leakage in Mobile Computing: Tools, Methods, and Characteristics
- Effective inter-component communication mapping in Android with Epicc: an essential step towards holistic security analysis
- DroidScope: Seamlessly Reconstructing the OS and Dalvik Semantic Views for Dynamic Android Malware Analysis
- Permission Re-Delegation: Attacks and Defenses
- Detecting energy bugs and hotspots in mobile apps
- Boreas: an accurate and scalable token-based approach to code clone detection
- CLAPP: characterizing loops in Android applications
- Permlyzer: Analyzing permission usage in Android applications
- WuKong: a scalable and accurate two-phase approach to Android app clone detection
- Search-based software engineering: Trends, techniques and applications
- Retargeting Android applications to Java bytecode
- Estimating mobile application energy consumption using program analysis
- Vetting undesirable behaviors in android apps with permission use analysis
- EdgeMiner: Automatically Detecting Implicit Control Flow Transitions through the Android Framework
- Composite Constant Propagation: Application to Android Inter-Component Communication Analysis
Cited by
- Recommending New Features from Mobile App Descriptions
- Android Malware Family Classification and Analysis: Current Status and Future Directions
- Multiple-Entry Testing of Android Applications by Constructing Activity Launching Contexts
- Static asynchronous component misuse detection for Android applications
- Efficient testing of GUI applications by event sequence reduction
- Guided Bug Crush: Assist Manual GUI Testing of Android Apps via Hint Moves
- A model‐based framework for inter‐app Vulnerability analysis of Android applications
- Woodpecker: Identifying and Fixing Android UI Display Issues
- Ex pede Herculem: Augmenting Activity Transition Graph for Apps via Graph Convolution Network
- Fill in the Blank: Context-aware Automated Text Input Generation for Mobile GUI Testing
- Large Language Models for Mobile GUI Text Input Generation: An Empirical Study
- Edutainment as a Concept of Education and Entertainment
- Study of Camera Efficiency and Image Resolution
- A comprehensive framework for inter-app ICC security analysis of Android apps
- Vision-driven Automated Mobile GUI Testing via Multimodal Large Language Model
- The revolution and vision of explainable AI for Android malware detection and protection
- DMMPP: Constructing Dummy Main Methods for Android Apps with Path-Sensitive Predicates
- Assessing the Capability of Android Dynamic Analysis Tools to Combat Anti-Runtime Analysis Techniques
- Beyond Static GUI Agent: Evolving LLM-based GUI Testing via Dynamic Memory
- HACMony: Automatically Detecting Hopping-related Audio-stream Conflict Issues on HarmonyOS