MarsBit piece argues modern IT is still stacked on a fragile von Neumann foundation
MarsBit has published a long-form commentary that uses a single diagram to dissect the structure of modern IT infrastructure, arguing that the industry keeps adding new layers while leaving its oldest bottlenecks largely untouched. The article centers on the von Neumann bottleneck, describing it as the thin support column under today’s computing stack: CPUs keep getting faster, but memory and bus bandwidth remain limiting factors, and growing software complexity only increases data movement between memory and processors. The commentary walks from electricity and semiconductor fabs up through operating systems, high-bandwidth memory, CPUs and GPUs, C projects, JVM-based software, web tooling, and end-user applications. Its core claim is that each layer may look well engineered on its own, yet the full stack is less a unified design than an accumulation of temporary fixes, compatibility compromises, and maintenance patches. It also frames the current AI boom as a source of additional strain rather than a fix for the base layer. According to the article, AI training and inference sharply increase power demand, GPU usage, and data retrieval pressure, while AI-generated code and content can introduce quality and security problems into open-source and web ecosystems. The author extends that criticism to large tech companies, which are portrayed as repeatedly disrupting existing frameworks and standards, and to independent developers, whose fragmented projects can add flexibility but also disorder and maintenance risk.








