size = node_remap_size[nid];
size += ALIGN(sizeof(pg_data_t), PAGE_SIZE);
- /* convert size to large (pmd size) pages, rounding up */
- size = (size + LARGE_PAGE_BYTES - 1) / LARGE_PAGE_BYTES;
- /* now the roundup is correct, convert to PAGE_SIZE pages */
- size = size * PTRS_PER_PTE;
+ /* align to large page */
+ size = ALIGN(size, LARGE_PAGE_BYTES);
node_pa = memblock_find_in_range(node_start_pfn[nid] << PAGE_SHIFT,
(u64)node_end_pfn[nid] << PAGE_SHIFT,
- (u64)size << PAGE_SHIFT,
- LARGE_PAGE_BYTES);
+ size, LARGE_PAGE_BYTES);
if (node_pa == MEMBLOCK_ERROR)
panic("Can not get kva ram\n");
- node_remap_size[nid] = size;
+ node_remap_size[nid] = size >> PAGE_SHIFT;
node_remap_offset[nid] = offset;
printk(KERN_DEBUG "Reserving %ld pages of KVA for lmem_map of node %d at %llx\n",
- size, nid, node_pa >> PAGE_SHIFT);
+ size >> PAGE_SHIFT, nid, node_pa >> PAGE_SHIFT);
/*
* prevent kva address below max_low_pfn want it on system
* So memblock_x86_reserve_range here, hope we don't run out
* of that array
*/
- memblock_x86_reserve_range(node_pa, node_pa + ((u64)size << PAGE_SHIFT),
- "KVA RAM");
+ memblock_x86_reserve_range(node_pa, node_pa + size, "KVA RAM");
node_remap_start_pfn[nid] = node_pa >> PAGE_SHIFT;
- return size;
+ return size >> PAGE_SHIFT;
}
static void init_remap_allocator(int nid)