mem_free
return mem_free;
return mem_free;
unsigned int mem_free; /* first location, where OS can be loaded */
*(unsigned long *)(virt + kexec_free_mem_offset) = PAGE0->mem_free;
kbuf.buf_min = PAGE0->mem_free + PAGE_SIZE;
memblock_reserve(0UL, (unsigned long)(PAGE0->mem_free +
goto mem_free;
mem_free:
goto mem_free;
goto mem_free;
goto mem_free;
mem_free:
goto mem_free;
goto mem_free;
goto mem_free;
mem_free:
goto mem_free;
goto mem_free;
mem_free:
.fn.fini = mem_free,
.fn.fini = mem_free,
mem_free,
mem_free,
mem_free,
mem_free,
node->mem_free = mem;
if (node->mem_total && node->mem_free)
u64 mem_free;
u64 mem_free;
n->node, n->mem_total, n->mem_free);
if (do_read_u64(ff, &n->mem_free))
ret = do_write(ff, &n->mem_free, sizeof(u64));
mem_free = mem_free * 0.8;
nr_hugepages_ul = mem_free / hugepage_size / 2;
compaction_index = mem_free/(nr_hugepages_ul * hugepage_size);
unsigned long mem_free = 0;
if (read_memory_info(&mem_free, &hugepage_size) != 0)
mem_fragmentable_MB = mem_free * 0.8 / 1024;
if (check_compaction(mem_free, hugepage_size,
int check_compaction(unsigned long mem_free, unsigned long hugepage_size,