
This integrated Hakozuna research preprint studies one architectural progression across HZ10, HZ11, and HZ12. HZ10 establishes route, lifecycle, and measurement boundaries; HZ11 provides an ownerless speed-first recycling baseline; and HZ12 introduces advisory ownership at cold batch and retirement boundaries to enable bounded whole-span reclamation without production per-operation diagnostic atomics. The current Japanese v0.2 draft reports bounded HZ11 synthetic and real-application evidence and an HZ12 Linux retirement-turnover result: 512 spans and 32 MiB reclaimed across eight owner generations, retirement p99 1.144 ms, and zero limbo spans. HZ8 remains the recommended balanced public allocator; this manuscript is a research study of the speed/reclaim tradeoff, not a universal tcmalloc replacement claim.
ownerless recycling, advisory ownership, low RSS, span reclamation, HZ12, memory allocator, Hakozuna, HZ10, HZ11
ownerless recycling, advisory ownership, low RSS, span reclamation, HZ12, memory allocator, Hakozuna, HZ10, HZ11
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