kmem_cpu_cache_t
kmastat_cpu_avail(uintptr_t addr, const kmem_cpu_cache_t *ccp, int *avail)
kmastat_cpu_alloc(uintptr_t addr, const kmem_cpu_cache_t *ccp, int *alloc)
kmem_cpu_cache_t *ccp = &cp->cache_cpu[cpu];
kmem_cpu_cache_t cc;
if (mdb_vread(&cc, sizeof (kmem_cpu_cache_t), caddr) == -1) {
kmem_cpu_reload(kmem_cpu_cache_t *ccp, kmem_magazine_t *mp, int rounds)
kmem_cpu_cache_t *ccp = KMEM_CPU_CACHE(cp);
kmem_cpu_cache_t *ccp = KMEM_CPU_CACHE(cp);
kmem_cpucache_magazine_alloc(kmem_cpu_cache_t *ccp, kmem_cache_t *cp)
kmem_cpu_cache_t *ccp = KMEM_CPU_CACHE(cp);
kmem_cpu_cache_t *ccp = KMEM_CPU_CACHE(cp);
kmem_cpu_cache_t *ccp;
kmem_cpu_cache_t *ccp = &cp->cache_cpu[cpu_seqid];
kmem_cpu_cache_t *ccp = &cp->cache_cpu[cpu_seqid];
kmem_cpu_cache_t *ccp = &cp->cache_cpu[cpu_seqid];
ASSERT(sizeof (kmem_cpu_cache_t) == KMEM_CPU_CACHE_SIZE);
((kmem_cpu_cache_t *)((char *)(&cp->cache_cpu) + CPU->cpu_cache_offset))
kmem_cpu_cache_t cache_cpu[1]; /* max_ncpus actual elements */