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PromSec: Prompt Optimization for Secure Generation of Functional Source Code with Large Language Models (LLMs)

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arxiv 2409.12699 v1 pith:XEYQNDNZ submitted 2024-09-19 cs.SE cs.LG

classification cs.SEcs.LG
keywords codepromsecgenerationsecurellmsfunctionalsecurityvulnerabilities
verification ladder T0 review T1 audit T2 compute T3 formal

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The capability of generating high-quality source code using large language models (LLMs) reduces software development time and costs. However, they often introduce security vulnerabilities due to training on insecure open-source data. This highlights the need for ensuring secure and functional code generation. This paper introduces PromSec, an algorithm for prom optimization for secure and functioning code generation using LLMs. In PromSec, we combine 1) code vulnerability clearing using a generative adversarial graph neural network, dubbed as gGAN, to fix and reduce security vulnerabilities in generated codes and 2) code generation using an LLM into an interactive loop, such that the outcome of the gGAN drives the LLM with enhanced prompts to generate secure codes while preserving their functionality. Introducing a new contrastive learning approach in gGAN, we formulate code-clearing and generation as a dual-objective optimization problem, enabling PromSec to notably reduce the number of LLM inferences. PromSec offers a cost-effective and practical solution for generating secure, functional code. Extensive experiments conducted on Python and Java code datasets confirm that PromSec effectively enhances code security while upholding its intended functionality. Our experiments show that while a state-of-the-art approach fails to address all code vulnerabilities, PromSec effectively resolves them. Moreover, PromSec achieves more than an order-of-magnitude reduction in operation time, number of LLM queries, and security analysis costs. Furthermore, prompts optimized with PromSec for a certain LLM are transferable to other LLMs across programming languages and generalizable to unseen vulnerabilities in training. This study is a step in enhancing the trustworthiness of LLMs for secure and functional code generation, supporting their integration into real-world software development.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Security Tests as Executable Specifications for LLM Code Generation: Benefits, Trade-offs, and Coverage Limits

    cs.SE 2026-08 conditional novelty 6.0 of 10

    Showing failing security tests to an LLM during repair fixes a subset of insecure candidates, but visible test success leaves a measurable hidden coverage gap.

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