Towards Enabling An Artificial Self-Construction Software Life-cycle via Autopoietic Architectures

Fuente: arXiv
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Autores principales: Rodriguez-Cardenas, Daniel, Palacio, David Nader, Poshyvanyk, Denys
Formato: Preprint
Publicado: 2026
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author Rodriguez-Cardenas, Daniel
Palacio, David Nader
Poshyvanyk, Denys
author_facet Rodriguez-Cardenas, Daniel
Palacio, David Nader
Poshyvanyk, Denys
contents Software engineering research has focused on automating maintenance and evolution processes to reduce costs and improve reliability. The emergence of foundation models (FMs) with strong code understanding and reasoning abilities offers new opportunities for autonomous software behavior. Inspired by Artificial Life (ALife), we propose a fundamental shift in the Software Development Life-Cycle (SDLC) by introducing self-construction mechanisms that enable software to evolve and maintain autonomously. This position paper explores the potential of Autopoietic Architectures, specifically Psi-Arch, as a foundational framework for self-constructing software. We first analyze the limitations of traditional maintenance approaches and identify gaps in current SDLC automation. Subsequently, we outline the core challenges in achieving self-construction, including the integration of foundation-model-based reasoning units and the establishment of novel architectural paradigms. Although this paper does not present a definitive solution, it seeks to catalyze discourse and inspire research toward a new paradigm in software engineering, one in which self-constructing software represents the next frontier in SDLC automation.
format Preprint
id arxiv_https___arxiv_org_abs_2604_13934
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Towards Enabling An Artificial Self-Construction Software Life-cycle via Autopoietic Architectures
Rodriguez-Cardenas, Daniel
Palacio, David Nader
Poshyvanyk, Denys
Software Engineering
Software engineering research has focused on automating maintenance and evolution processes to reduce costs and improve reliability. The emergence of foundation models (FMs) with strong code understanding and reasoning abilities offers new opportunities for autonomous software behavior. Inspired by Artificial Life (ALife), we propose a fundamental shift in the Software Development Life-Cycle (SDLC) by introducing self-construction mechanisms that enable software to evolve and maintain autonomously. This position paper explores the potential of Autopoietic Architectures, specifically Psi-Arch, as a foundational framework for self-constructing software. We first analyze the limitations of traditional maintenance approaches and identify gaps in current SDLC automation. Subsequently, we outline the core challenges in achieving self-construction, including the integration of foundation-model-based reasoning units and the establishment of novel architectural paradigms. Although this paper does not present a definitive solution, it seeks to catalyze discourse and inspire research toward a new paradigm in software engineering, one in which self-constructing software represents the next frontier in SDLC automation.
title Towards Enabling An Artificial Self-Construction Software Life-cycle via Autopoietic Architectures
topic Software Engineering
url https://arxiv.org/abs/2604.13934