This final installment of the "Information Architecture of Physical Reality" series proposes a unified computational framework for the stability of physical laws. We argue that physical constants serve as a quantum error-correction (QEC) code maintaining systemic consistency. In this model, the arrow of time emerges as a computational artifact of unidirectional clock cycles, while quantum uncertainty is interpreted as dynamic resolution optimization (LOD). This framework unifies the preceding five papers, characterizing black hole singularities as computational sandboxes for isolating segmentation faults. The series concludes by providing the complete specifications of the OS layer governing our reality.
Takeshi Abe (Sun,) studied this question.