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cs.CR updates on arXiv.org

Agentic Vulnerability Reasoning on Windows COM Binaries From Beats to Breaches:How Offensive AI Infers Sensitive User Information from Playlists Undetectable Backdoors in Model Parameters: Hiding Sparse Secrets in High Dimensions When Embedding-Based Defenses Fail: Rethinking Safety in LLM-Based Multi-Agent Systems Token-Efficient Change Detection in LLM APIs Selfie-Capture Dynamics as an Auxiliary Signal Against Deepfakes and Injection Attacks for Mobile Identity Verification Trident: Improving Malware Detection with LLMs and Behavioral Features When Alignment Isn't Enough: Response-Path Attacks on LLM Agents RefusalGuard: Geometry-Preserving Fine-Tuning for Safety in LLMs Checkerboard: A Simple, Effective, Efficient and Learning-free Clean Label Backdoor Attack with Low Poisoning Budget Block-wise Codeword Embedding for Reliable Multi-bit Text Watermarking Secret Stealing Attacks on Local LLM Fine-Tuning through Supply-Chain Model Code Backdoors Enhancing Linux Privilege Escalation Attack Capabilities of Local LLM Agents Defusing the Trigger: Plug-and-Play Defense for Backdoored LLMs via Tail-Risk Intrinsic Geometric Smoothing Evaluating Jailbreaking Vulnerabilities in LLMs Deployed as Assistants for Smart Grid Operations: A Benchmark Against NERC Standards Behavioral Canaries: Auditing Private Retrieved Context Usage in RL Fine-Tuning FlexServe: A Fast and Secure LLM Serving System for Mobile Devices with Flexible Resource Isolation Breaking MCP with Function Hijacking Attacks: Novel Threats for Function Calling and Agentic Models Text Steganography with Dynamic Codebook and Multimodal Large Language Model An AI Agent Execution Environment to Safeguard User Data TwoHamsters: Benchmarking Multi-Concept Compositional Unsafety in Text-to-Image Models Fundamental Limitations of Favorable Privacy-Utility Guarantees for DP-SGD Symbolic Guardrails for Domain-Specific Agents: Stronger Safety and Security Guarantees Without Sacrificing Utility Hardening x402: PII-Safe Agentic Payments via Pre-Execution Metadata Filtering QShield: Securing Neural Networks Against Adversarial Attacks using Quantum Circuits Hijacking Text Heritage: Hiding the Human Signature through Homoglyphic Substitution Like a Hammer, It Can Build, It Can Break: Large Language Model Uses, Perceptions, and Adoption in Cybersecurity Operations on Reddit Private Seeds, Public LLMs: Realistic and Privacy-Preserving Synthetic Data Generation One Word at a Time: Incremental Completion Decomposition Breaks LLM Safety Measuring and Exploiting Contextual Bias in LLM-Assisted Security Code Review
Data After Death: Australian User Preferences and Future ...
Andrew Reeves, Arash Shaghaghi, Shiri Krebs, Debi Ashenden · 2024-07-01 · via cs.CR updates on arXiv.org

The digital footprints of today's internet-active individuals are a testament to their lives, and have the potential to become digital legacies once they pass on. Future descendants of those alive today will greatly appreciate the unprecedented insight into the lives of their long since deceased ancestors, but this can only occur if today we have a process for data preservation and handover after death. Many prominent online platforms offer nebulous or altogether absent policies regarding posthumous data handling, and despite recent advances it is currently unclear who the average Australian would like their data to be managed after their death (i.e., social media platforms, a trusted individual, or another digital executor). While at present the management of deceased accounts is largely performed by the platform (e.g., Facebook), it is conceivable that many Australians may not trust such platforms to do so with integrity. This study aims to further the academic conversation around posthumous data by delving deeper into the preferences of the Australian Public regarding the management of their data after death, ultimately to inform future development of research programs and industry solutions. A survey of 1020 Australians revealed that most desired a level of control over how their data is managed after death. Australians currently prefer to entrust the management of their data to a trusted close individual or third party software that they can administrate themselves. As expected, social media companies ranked low regarding both trust and convenience to manage data after death. Future research focus should be to conceptualise and develop a third-party solution that enables these preferences to be realised. Such a solution could interface with the major online vendors (social media, cloud hosting etc.) to action the deceased's will.