Searched refs:aged (Results 1 – 6 of 6) sorted by relevance
71 cache_t *aged[2]; /* .. LRU list */ member126 cap->link[Prev] = (cache_t *)chp->aged; in get_cache()127 cap->link[Next] = chp->aged[Frst]; in get_cache()128 chp->aged[Frst]->link[Prev] = cap; in get_cache()129 chp->aged[Frst] = cap; in get_cache()244 cap->link[Next] = chp->aged[Frst]; in set_cache()
286 int aged = 0; in ss_alloc_write() local314 if (aged) { in ss_alloc_write()319 aged++; in ss_alloc_write()
91 centry has aged sufficiently to have its memory deallocated and for it to 120 The host/parasite subchain is examined. If all entries are fully aged the 168 sdbc_cache_aging_ct1 -- 1 to 255: fully aged count (everything but meta and 170 sdbc_cache_aging_ct2 -- 1 to 255: fully aged count for meta-data entries171 sdbc_cache_aging_ct3 -- 1 to 255: fully aged count for holdovers192 sdbc_candidates ------- cache entries ready to be aged or released197 sdbc_holds ------------ number of holdovers (fully aged w/memory and requeued)
263 sdbc_cache_aging_ct1 -- 1 to 255: fully aged count (everything but meta and 265 sdbc_cache_aging_ct2 -- 1 to 255: fully aged count for meta-data entries266 sdbc_cache_aging_ct3 -- 1 to 255: fully aged count for holdovers287 sdbc_candidates ------- cache entries ready to be aged or released292 sdbc_holds ------------ number of holdovers (fully aged w/memory and requeued)
1951 int aged = 1; in fmd_case_discard_resolved() local1954 fmd_asru_check_if_aged, &aged); in fmd_case_discard_resolved()1955 if (!aged) { in fmd_case_discard_resolved()
1101 # would be made for people aged 61 and over, who "can apply in writing