This upload contains Version 5 of a standalone CRGE/JS-SH gravity and four-interaction origin-layer manuscript and its accompanying reproducibility package. The manuscript develops an anti-infinity closure framework from a closed-wave mirror-depth origin layer. The central object is a closed wave state W. The electron branch is interpreted as an outward shell endpoint, while the proton branch is interpreted as an inward z-depth endpoint. Under the reciprocal mirror representation Re (d) = dR0 and Rp (d) = R0/d, the same limit d -> infinity produces both outward unbounded expansion and inward zero-radius collapse. The manuscript proposes that an admissible closed wave rejects both limits through an anti-infinity closure condition. Gravity is then interpreted as the external readout of the closure reaction required to prevent this double-infinity failure. The external inverse-square form is treated as a spherical surface-flux readout of closure burden over 4πr². Inertia reads the same test-object closure burden that appears in gravitational coupling, so the test-object burden cancels from free-fall acceleration in the proposed origin-layer grammar. The four interactions are organized as projection readouts of one closed state W: electromagnetism as signed endpoint difference, gravity as unsigned closure burden over spherical surface area, the strong interaction as high-density inward proton/neutral core-lock, and the weak interaction as channel-reclosure conversion with total closure bookkeeping preserved. This version integrates the updated JS-SH route-gated Schrodinger recovery framework and the updated element-wave mirror-depth model as related origin-layer records. It uses the latest related DOI references for the element-wave record and the JS-SH route-gated Schrodinger recovery record. The manuscript remains a standalone preprint and does not claim to replace general relativity, quantum field theory, QCD, electroweak theory, or precision experimental physics. The black-hole implication is stated as a bounded structural prediction: if the outward branch is forbidden from becoming an unbounded line, the mirror inward branch should also be forbidden from becoming a true zero-radius point. The manuscript therefore predicts a finite closure-limited core rather than a physical point singularity, while explicitly leaving the physical core radius, stress-energy model, equation of state, and observational signatures as future work. The reproducibility package preserves the existing code folder structure and includes the audit materials for CODE 8100-503 through CODE 8100-508, together with the manuscript source and supporting files. Current DOI for this record: 10. 5281/zenodo. 21200354 =================================== UPDATE CRGEGRAVITYFOURFORCEORIGINLAYERV3MANUSCRIPT CRGEGRAVITYFOURFORCEORIGINLAYERV4INTEGRATEDORIGINLAYERMANUSCRIPT CRGEGRAVITYFOURFORCEORIGINLAYERV5DOI₂1200354MANUSCRIPT
S. W. Hong (Sun,) studied this question.