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cs.SE updates on arXiv.org

VLA Foundry: A Unified Framework for Training Vision-Language-Action Models Evaluating LLM-Generated Obfuscated XSS Payloads for Machine Learning-Based Detection Do Agents Dream of Root Shells? Partial-Credit Evaluation of LLM Agents in Capture the Flag Challenges Refute-or-Promote: An Adversarial Stage-Gated Multi-Agent Review Methodology for High-Precision LLM-Assisted Defect Discovery From Particles to Perils: SVGD-Based Hazardous Scenario Generation for Autonomous Driving Systems Testing Choose Your Own Adventure: Non-Linear AI-Assisted Programming with EvoGraph Human-Machine Co-Boosted Bug Report Identification with Mutualistic Neural Active Learning LLMSniffer: Detecting LLM-Generated Code via GraphCodeBERT and Supervised Contrastive Learning Neurosymbolic Repo-level Code Localization CodeMMR: Bridging Natural Language, Code, and Image for Unified Retrieval Symbolic Guardrails for Domain-Specific Agents: Stronger Safety and Security Guarantees Without Sacrificing Utility Verification Modulo Tested Library Contracts The Semi-Executable Stack: Agentic Software Engineering and the Expanding Scope of SE Scaling Test-Time Compute for Agentic Coding AI-Assisted Requirements Engineering: An Empirical Evaluation Relative to Expert Judgment From Procedural Skills to Strategy Genes: Towards Experience-Driven Test-Time Evolution Atropos: Improving Cost-Benefit Trade-off of LLM-based Agents under Self-Consistency with Early Termination and Model Hotswap Vibe-Coding: Feedback-Based Automated Verification with no Human Code Inspection, a Feasibility Study Benchmarks for Trajectory Safety Evaluation and Diagnosis in OpenClaw and Codex: ATBench-Claw and ATBench-Codex Bounded Autonomy for Enterprise AI: Typed Action Contracts and Consumer-Side Execution AIPC: Agent-Based Automation for AI Model Deployment with Qualcomm AI Runtime Analyzing Chain of Thought (CoT) Approaches in Control Flow Code Deobfuscation Tasks Asking What Matters: Reward-Driven Clarification for Software Engineering Tasks Prompt-Driven Code Summarization: A Systematic Literature Review LinuxArena: A Control Setting for AI Agents in Live Production Software Environments LLMs taking shortcuts in test generation: A study with SAP HANA and LevelDB Large Language Models to Enhance Business Process Modeling: Past, Present, and Future Trends CollabCoder: Plan-Code Co-Evolution via Collaborative Decision-Making for Efficient Code Generation Sentiment analysis for software engineering: How far can zero-shot learning (ZSL) go? Learning from Change: Predictive Models for Incident Prevention in a Regulated IT Environment
On Implementation of a Safer C Library, ISO/IEC TR 24731
Marc-André Laverdière, Serguei A. Mokhov, Djamel Benredjem · 2009-06-15 · via cs.SE updates on arXiv.org

The functions standardized as part of ISO C 1999 and their addendums improved very little the security options from the previously available library. The largest flaw remained that no function asked for the buffer size of destination buffers for any function copying data into a user-supplied buffer. According to earlier research we performed, we know that error condition handling was the first solution to security vulnerabilities, followed by precondition validation. The standard C functions typically perform little precondition validation and error handling, allowing for a wide range of security issues to be introduced in their use. ISO/IEC TR 24731, titled as "TR 24731: Safer C library functions", defines 41 new library functions for memory copying, string handling (both for normal and wide character strings), time printing, sorting, searching etc. Another innovation it brings is a constraint handling architecture, forcing error handling when certain security-related preconditions are violated when the functions are called. It also specifies the null-termination of all strings manipulated through its function and introduces a new unsigned integer type that helps preventing integer overflows and underflows. It is currently implemented by Microsoft as part of their Visual Studio 2005 and above. We examine the architecture of our implementation of ISO/IEC TR 24731. We first introduce our architectural philosophy before informing the reader about the Siemens Four View Model, an architectural methodology for the conception of large-scale software systems. Afterwards, we examine each of the view, as architected for our library. Finally, we conclude with other software engineering matters that were of high importance in the development of our implementation.