1 // SPDX-License-Identifier: GPL-2.0
3 * Basic Node interface support
6 #include <linux/module.h>
7 #include <linux/init.h>
9 #include <linux/memory.h>
10 #include <linux/vmstat.h>
11 #include <linux/notifier.h>
12 #include <linux/node.h>
13 #include <linux/hugetlb.h>
14 #include <linux/compaction.h>
15 #include <linux/cpumask.h>
16 #include <linux/topology.h>
17 #include <linux/nodemask.h>
18 #include <linux/cpu.h>
19 #include <linux/device.h>
20 #include <linux/pm_runtime.h>
21 #include <linux/swap.h>
22 #include <linux/slab.h>
24 static struct bus_type node_subsys = {
30 static ssize_t node_read_cpumap(struct device *dev, bool list, char *buf)
34 struct node *node_dev = to_node(dev);
36 /* 2008/04/07: buf currently PAGE_SIZE, need 9 chars per 32 bits. */
37 BUILD_BUG_ON((NR_CPUS/32 * 9) > (PAGE_SIZE-1));
39 if (!alloc_cpumask_var(&mask, GFP_KERNEL))
42 cpumask_and(mask, cpumask_of_node(node_dev->dev.id), cpu_online_mask);
43 n = cpumap_print_to_pagebuf(list, buf, mask);
44 free_cpumask_var(mask);
49 static inline ssize_t cpumap_show(struct device *dev,
50 struct device_attribute *attr,
53 return node_read_cpumap(dev, false, buf);
56 static DEVICE_ATTR_RO(cpumap);
58 static inline ssize_t cpulist_show(struct device *dev,
59 struct device_attribute *attr,
62 return node_read_cpumap(dev, true, buf);
65 static DEVICE_ATTR_RO(cpulist);
68 * struct node_access_nodes - Access class device to hold user visible
69 * relationships to other nodes.
70 * @dev: Device for this memory access class
71 * @list_node: List element in the node's access list
72 * @access: The access class rank
73 * @hmem_attrs: Heterogeneous memory performance attributes
75 struct node_access_nodes {
77 struct list_head list_node;
79 #ifdef CONFIG_HMEM_REPORTING
80 struct node_hmem_attrs hmem_attrs;
83 #define to_access_nodes(dev) container_of(dev, struct node_access_nodes, dev)
85 static struct attribute *node_init_access_node_attrs[] = {
89 static struct attribute *node_targ_access_node_attrs[] = {
93 static const struct attribute_group initiators = {
95 .attrs = node_init_access_node_attrs,
98 static const struct attribute_group targets = {
100 .attrs = node_targ_access_node_attrs,
103 static const struct attribute_group *node_access_node_groups[] = {
109 static void node_remove_accesses(struct node *node)
111 struct node_access_nodes *c, *cnext;
113 list_for_each_entry_safe(c, cnext, &node->access_list, list_node) {
114 list_del(&c->list_node);
115 device_unregister(&c->dev);
119 static void node_access_release(struct device *dev)
121 kfree(to_access_nodes(dev));
124 static struct node_access_nodes *node_init_node_access(struct node *node,
127 struct node_access_nodes *access_node;
130 list_for_each_entry(access_node, &node->access_list, list_node)
131 if (access_node->access == access)
134 access_node = kzalloc(sizeof(*access_node), GFP_KERNEL);
138 access_node->access = access;
139 dev = &access_node->dev;
140 dev->parent = &node->dev;
141 dev->release = node_access_release;
142 dev->groups = node_access_node_groups;
143 if (dev_set_name(dev, "access%u", access))
146 if (device_register(dev))
149 pm_runtime_no_callbacks(dev);
150 list_add_tail(&access_node->list_node, &node->access_list);
153 kfree_const(dev->kobj.name);
159 #ifdef CONFIG_HMEM_REPORTING
160 #define ACCESS_ATTR(name) \
161 static ssize_t name##_show(struct device *dev, \
162 struct device_attribute *attr, \
165 return sysfs_emit(buf, "%u\n", \
166 to_access_nodes(dev)->hmem_attrs.name); \
168 static DEVICE_ATTR_RO(name)
170 ACCESS_ATTR(read_bandwidth);
171 ACCESS_ATTR(read_latency);
172 ACCESS_ATTR(write_bandwidth);
173 ACCESS_ATTR(write_latency);
175 static struct attribute *access_attrs[] = {
176 &dev_attr_read_bandwidth.attr,
177 &dev_attr_read_latency.attr,
178 &dev_attr_write_bandwidth.attr,
179 &dev_attr_write_latency.attr,
184 * node_set_perf_attrs - Set the performance values for given access class
185 * @nid: Node identifier to be set
186 * @hmem_attrs: Heterogeneous memory performance attributes
187 * @access: The access class the for the given attributes
189 void node_set_perf_attrs(unsigned int nid, struct node_hmem_attrs *hmem_attrs,
192 struct node_access_nodes *c;
196 if (WARN_ON_ONCE(!node_online(nid)))
199 node = node_devices[nid];
200 c = node_init_node_access(node, access);
204 c->hmem_attrs = *hmem_attrs;
205 for (i = 0; access_attrs[i] != NULL; i++) {
206 if (sysfs_add_file_to_group(&c->dev.kobj, access_attrs[i],
208 pr_info("failed to add performance attribute to node %d\n",
216 * struct node_cache_info - Internal tracking for memory node caches
217 * @dev: Device represeting the cache level
218 * @node: List element for tracking in the node
219 * @cache_attrs:Attributes for this cache level
221 struct node_cache_info {
223 struct list_head node;
224 struct node_cache_attrs cache_attrs;
226 #define to_cache_info(device) container_of(device, struct node_cache_info, dev)
228 #define CACHE_ATTR(name, fmt) \
229 static ssize_t name##_show(struct device *dev, \
230 struct device_attribute *attr, \
233 return sysfs_emit(buf, fmt "\n", \
234 to_cache_info(dev)->cache_attrs.name); \
236 DEVICE_ATTR_RO(name);
238 CACHE_ATTR(size, "%llu")
239 CACHE_ATTR(line_size, "%u")
240 CACHE_ATTR(indexing, "%u")
241 CACHE_ATTR(write_policy, "%u")
243 static struct attribute *cache_attrs[] = {
244 &dev_attr_indexing.attr,
246 &dev_attr_line_size.attr,
247 &dev_attr_write_policy.attr,
250 ATTRIBUTE_GROUPS(cache);
252 static void node_cache_release(struct device *dev)
257 static void node_cacheinfo_release(struct device *dev)
259 struct node_cache_info *info = to_cache_info(dev);
263 static void node_init_cache_dev(struct node *node)
267 dev = kzalloc(sizeof(*dev), GFP_KERNEL);
271 dev->parent = &node->dev;
272 dev->release = node_cache_release;
273 if (dev_set_name(dev, "memory_side_cache"))
276 if (device_register(dev))
279 pm_runtime_no_callbacks(dev);
280 node->cache_dev = dev;
283 kfree_const(dev->kobj.name);
289 * node_add_cache() - add cache attribute to a memory node
290 * @nid: Node identifier that has new cache attributes
291 * @cache_attrs: Attributes for the cache being added
293 void node_add_cache(unsigned int nid, struct node_cache_attrs *cache_attrs)
295 struct node_cache_info *info;
299 if (!node_online(nid) || !node_devices[nid])
302 node = node_devices[nid];
303 list_for_each_entry(info, &node->cache_attrs, node) {
304 if (info->cache_attrs.level == cache_attrs->level) {
306 "attempt to add duplicate cache level:%d\n",
312 if (!node->cache_dev)
313 node_init_cache_dev(node);
314 if (!node->cache_dev)
317 info = kzalloc(sizeof(*info), GFP_KERNEL);
322 dev->parent = node->cache_dev;
323 dev->release = node_cacheinfo_release;
324 dev->groups = cache_groups;
325 if (dev_set_name(dev, "index%d", cache_attrs->level))
328 info->cache_attrs = *cache_attrs;
329 if (device_register(dev)) {
330 dev_warn(&node->dev, "failed to add cache level:%d\n",
334 pm_runtime_no_callbacks(dev);
335 list_add_tail(&info->node, &node->cache_attrs);
338 kfree_const(dev->kobj.name);
343 static void node_remove_caches(struct node *node)
345 struct node_cache_info *info, *next;
347 if (!node->cache_dev)
350 list_for_each_entry_safe(info, next, &node->cache_attrs, node) {
351 list_del(&info->node);
352 device_unregister(&info->dev);
354 device_unregister(node->cache_dev);
357 static void node_init_caches(unsigned int nid)
359 INIT_LIST_HEAD(&node_devices[nid]->cache_attrs);
362 static void node_init_caches(unsigned int nid) { }
363 static void node_remove_caches(struct node *node) { }
366 #define K(x) ((x) << (PAGE_SHIFT - 10))
367 static ssize_t node_read_meminfo(struct device *dev,
368 struct device_attribute *attr, char *buf)
372 struct pglist_data *pgdat = NODE_DATA(nid);
374 unsigned long sreclaimable, sunreclaimable;
376 si_meminfo_node(&i, nid);
377 sreclaimable = node_page_state_pages(pgdat, NR_SLAB_RECLAIMABLE_B);
378 sunreclaimable = node_page_state_pages(pgdat, NR_SLAB_UNRECLAIMABLE_B);
379 len = sysfs_emit_at(buf, len,
380 "Node %d MemTotal: %8lu kB\n"
381 "Node %d MemFree: %8lu kB\n"
382 "Node %d MemUsed: %8lu kB\n"
383 "Node %d Active: %8lu kB\n"
384 "Node %d Inactive: %8lu kB\n"
385 "Node %d Active(anon): %8lu kB\n"
386 "Node %d Inactive(anon): %8lu kB\n"
387 "Node %d Active(file): %8lu kB\n"
388 "Node %d Inactive(file): %8lu kB\n"
389 "Node %d Unevictable: %8lu kB\n"
390 "Node %d Mlocked: %8lu kB\n",
393 nid, K(i.totalram - i.freeram),
394 nid, K(node_page_state(pgdat, NR_ACTIVE_ANON) +
395 node_page_state(pgdat, NR_ACTIVE_FILE)),
396 nid, K(node_page_state(pgdat, NR_INACTIVE_ANON) +
397 node_page_state(pgdat, NR_INACTIVE_FILE)),
398 nid, K(node_page_state(pgdat, NR_ACTIVE_ANON)),
399 nid, K(node_page_state(pgdat, NR_INACTIVE_ANON)),
400 nid, K(node_page_state(pgdat, NR_ACTIVE_FILE)),
401 nid, K(node_page_state(pgdat, NR_INACTIVE_FILE)),
402 nid, K(node_page_state(pgdat, NR_UNEVICTABLE)),
403 nid, K(sum_zone_node_page_state(nid, NR_MLOCK)));
405 #ifdef CONFIG_HIGHMEM
406 len += sysfs_emit_at(buf, len,
407 "Node %d HighTotal: %8lu kB\n"
408 "Node %d HighFree: %8lu kB\n"
409 "Node %d LowTotal: %8lu kB\n"
410 "Node %d LowFree: %8lu kB\n",
413 nid, K(i.totalram - i.totalhigh),
414 nid, K(i.freeram - i.freehigh));
416 len += sysfs_emit_at(buf, len,
417 "Node %d Dirty: %8lu kB\n"
418 "Node %d Writeback: %8lu kB\n"
419 "Node %d FilePages: %8lu kB\n"
420 "Node %d Mapped: %8lu kB\n"
421 "Node %d AnonPages: %8lu kB\n"
422 "Node %d Shmem: %8lu kB\n"
423 "Node %d KernelStack: %8lu kB\n"
424 #ifdef CONFIG_SHADOW_CALL_STACK
425 "Node %d ShadowCallStack:%8lu kB\n"
427 "Node %d PageTables: %8lu kB\n"
428 "Node %d NFS_Unstable: %8lu kB\n"
429 "Node %d Bounce: %8lu kB\n"
430 "Node %d WritebackTmp: %8lu kB\n"
431 "Node %d KReclaimable: %8lu kB\n"
432 "Node %d Slab: %8lu kB\n"
433 "Node %d SReclaimable: %8lu kB\n"
434 "Node %d SUnreclaim: %8lu kB\n"
435 #ifdef CONFIG_TRANSPARENT_HUGEPAGE
436 "Node %d AnonHugePages: %8lu kB\n"
437 "Node %d ShmemHugePages: %8lu kB\n"
438 "Node %d ShmemPmdMapped: %8lu kB\n"
439 "Node %d FileHugePages: %8lu kB\n"
440 "Node %d FilePmdMapped: %8lu kB\n"
443 nid, K(node_page_state(pgdat, NR_FILE_DIRTY)),
444 nid, K(node_page_state(pgdat, NR_WRITEBACK)),
445 nid, K(node_page_state(pgdat, NR_FILE_PAGES)),
446 nid, K(node_page_state(pgdat, NR_FILE_MAPPED)),
447 nid, K(node_page_state(pgdat, NR_ANON_MAPPED)),
449 nid, node_page_state(pgdat, NR_KERNEL_STACK_KB),
450 #ifdef CONFIG_SHADOW_CALL_STACK
451 nid, node_page_state(pgdat, NR_KERNEL_SCS_KB),
453 nid, K(node_page_state(pgdat, NR_PAGETABLE)),
455 nid, K(sum_zone_node_page_state(nid, NR_BOUNCE)),
456 nid, K(node_page_state(pgdat, NR_WRITEBACK_TEMP)),
457 nid, K(sreclaimable +
458 node_page_state(pgdat, NR_KERNEL_MISC_RECLAIMABLE)),
459 nid, K(sreclaimable + sunreclaimable),
460 nid, K(sreclaimable),
461 nid, K(sunreclaimable)
462 #ifdef CONFIG_TRANSPARENT_HUGEPAGE
464 nid, K(node_page_state(pgdat, NR_ANON_THPS)),
465 nid, K(node_page_state(pgdat, NR_SHMEM_THPS)),
466 nid, K(node_page_state(pgdat, NR_SHMEM_PMDMAPPED) *
468 nid, K(node_page_state(pgdat, NR_FILE_THPS)),
469 nid, K(node_page_state(pgdat, NR_FILE_PMDMAPPED) *
473 len += hugetlb_report_node_meminfo(buf, len, nid);
478 static DEVICE_ATTR(meminfo, 0444, node_read_meminfo, NULL);
480 static ssize_t node_read_numastat(struct device *dev,
481 struct device_attribute *attr, char *buf)
483 return sysfs_emit(buf,
487 "interleave_hit %lu\n"
490 sum_zone_numa_state(dev->id, NUMA_HIT),
491 sum_zone_numa_state(dev->id, NUMA_MISS),
492 sum_zone_numa_state(dev->id, NUMA_FOREIGN),
493 sum_zone_numa_state(dev->id, NUMA_INTERLEAVE_HIT),
494 sum_zone_numa_state(dev->id, NUMA_LOCAL),
495 sum_zone_numa_state(dev->id, NUMA_OTHER));
497 static DEVICE_ATTR(numastat, 0444, node_read_numastat, NULL);
499 static ssize_t node_read_vmstat(struct device *dev,
500 struct device_attribute *attr, char *buf)
503 struct pglist_data *pgdat = NODE_DATA(nid);
507 for (i = 0; i < NR_VM_ZONE_STAT_ITEMS; i++)
508 len += sysfs_emit_at(buf, len, "%s %lu\n",
510 sum_zone_node_page_state(nid, i));
513 for (i = 0; i < NR_VM_NUMA_STAT_ITEMS; i++)
514 len += sysfs_emit_at(buf, len, "%s %lu\n",
516 sum_zone_numa_state(nid, i));
519 for (i = 0; i < NR_VM_NODE_STAT_ITEMS; i++) {
520 unsigned long pages = node_page_state_pages(pgdat, i);
522 if (vmstat_item_print_in_thp(i))
523 pages /= HPAGE_PMD_NR;
524 len += sysfs_emit_at(buf, len, "%s %lu\n", node_stat_name(i),
530 static DEVICE_ATTR(vmstat, 0444, node_read_vmstat, NULL);
532 static ssize_t node_read_distance(struct device *dev,
533 struct device_attribute *attr, char *buf)
540 * buf is currently PAGE_SIZE in length and each node needs 4 chars
541 * at the most (distance + space or newline).
543 BUILD_BUG_ON(MAX_NUMNODES * 4 > PAGE_SIZE);
545 for_each_online_node(i) {
546 len += sysfs_emit_at(buf, len, "%s%d",
547 i ? " " : "", node_distance(nid, i));
550 len += sysfs_emit_at(buf, len, "\n");
553 static DEVICE_ATTR(distance, 0444, node_read_distance, NULL);
555 static struct attribute *node_dev_attrs[] = {
556 &dev_attr_cpumap.attr,
557 &dev_attr_cpulist.attr,
558 &dev_attr_meminfo.attr,
559 &dev_attr_numastat.attr,
560 &dev_attr_distance.attr,
561 &dev_attr_vmstat.attr,
564 ATTRIBUTE_GROUPS(node_dev);
566 #ifdef CONFIG_HUGETLBFS
568 * hugetlbfs per node attributes registration interface:
569 * When/if hugetlb[fs] subsystem initializes [sometime after this module],
570 * it will register its per node attributes for all online nodes with
571 * memory. It will also call register_hugetlbfs_with_node(), below, to
572 * register its attribute registration functions with this node driver.
573 * Once these hooks have been initialized, the node driver will call into
574 * the hugetlb module to [un]register attributes for hot-plugged nodes.
576 static node_registration_func_t __hugetlb_register_node;
577 static node_registration_func_t __hugetlb_unregister_node;
579 static inline bool hugetlb_register_node(struct node *node)
581 if (__hugetlb_register_node &&
582 node_state(node->dev.id, N_MEMORY)) {
583 __hugetlb_register_node(node);
589 static inline void hugetlb_unregister_node(struct node *node)
591 if (__hugetlb_unregister_node)
592 __hugetlb_unregister_node(node);
595 void register_hugetlbfs_with_node(node_registration_func_t doregister,
596 node_registration_func_t unregister)
598 __hugetlb_register_node = doregister;
599 __hugetlb_unregister_node = unregister;
602 static inline void hugetlb_register_node(struct node *node) {}
604 static inline void hugetlb_unregister_node(struct node *node) {}
607 static void node_device_release(struct device *dev)
609 struct node *node = to_node(dev);
611 #if defined(CONFIG_MEMORY_HOTPLUG_SPARSE) && defined(CONFIG_HUGETLBFS)
613 * We schedule the work only when a memory section is
614 * onlined/offlined on this node. When we come here,
615 * all the memory on this node has been offlined,
616 * so we won't enqueue new work to this work.
618 * The work is using node->node_work, so we should
619 * flush work before freeing the memory.
621 flush_work(&node->node_work);
627 * register_node - Setup a sysfs device for a node.
628 * @num - Node number to use when creating the device.
630 * Initialize and register the node device.
632 static int register_node(struct node *node, int num)
637 node->dev.bus = &node_subsys;
638 node->dev.release = node_device_release;
639 node->dev.groups = node_dev_groups;
640 error = device_register(&node->dev);
643 put_device(&node->dev);
645 hugetlb_register_node(node);
647 compaction_register_node(node);
653 * unregister_node - unregister a node device
654 * @node: node going away
656 * Unregisters a node device @node. All the devices on the node must be
657 * unregistered before calling this function.
659 void unregister_node(struct node *node)
661 hugetlb_unregister_node(node); /* no-op, if memoryless node */
662 node_remove_accesses(node);
663 node_remove_caches(node);
664 device_unregister(&node->dev);
667 struct node *node_devices[MAX_NUMNODES];
670 * register cpu under node
672 int register_cpu_under_node(unsigned int cpu, unsigned int nid)
677 if (!node_online(nid))
680 obj = get_cpu_device(cpu);
684 ret = sysfs_create_link(&node_devices[nid]->dev.kobj,
686 kobject_name(&obj->kobj));
690 return sysfs_create_link(&obj->kobj,
691 &node_devices[nid]->dev.kobj,
692 kobject_name(&node_devices[nid]->dev.kobj));
696 * register_memory_node_under_compute_node - link memory node to its compute
697 * node for a given access class.
698 * @mem_nid: Memory node number
699 * @cpu_nid: Cpu node number
700 * @access: Access class to register
703 * For use with platforms that may have separate memory and compute nodes.
704 * This function will export node relationships linking which memory
705 * initiator nodes can access memory targets at a given ranked access
708 int register_memory_node_under_compute_node(unsigned int mem_nid,
709 unsigned int cpu_nid,
712 struct node *init_node, *targ_node;
713 struct node_access_nodes *initiator, *target;
716 if (!node_online(cpu_nid) || !node_online(mem_nid))
719 init_node = node_devices[cpu_nid];
720 targ_node = node_devices[mem_nid];
721 initiator = node_init_node_access(init_node, access);
722 target = node_init_node_access(targ_node, access);
723 if (!initiator || !target)
726 ret = sysfs_add_link_to_group(&initiator->dev.kobj, "targets",
727 &targ_node->dev.kobj,
728 dev_name(&targ_node->dev));
732 ret = sysfs_add_link_to_group(&target->dev.kobj, "initiators",
733 &init_node->dev.kobj,
734 dev_name(&init_node->dev));
740 sysfs_remove_link_from_group(&initiator->dev.kobj, "targets",
741 dev_name(&targ_node->dev));
745 int unregister_cpu_under_node(unsigned int cpu, unsigned int nid)
749 if (!node_online(nid))
752 obj = get_cpu_device(cpu);
756 sysfs_remove_link(&node_devices[nid]->dev.kobj,
757 kobject_name(&obj->kobj));
758 sysfs_remove_link(&obj->kobj,
759 kobject_name(&node_devices[nid]->dev.kobj));
764 #ifdef CONFIG_MEMORY_HOTPLUG_SPARSE
765 static int __ref get_nid_for_pfn(unsigned long pfn)
767 if (!pfn_valid_within(pfn))
769 #ifdef CONFIG_DEFERRED_STRUCT_PAGE_INIT
770 if (system_state < SYSTEM_RUNNING)
771 return early_pfn_to_nid(pfn);
773 return pfn_to_nid(pfn);
776 static void do_register_memory_block_under_node(int nid,
777 struct memory_block *mem_blk)
782 * If this memory block spans multiple nodes, we only indicate
783 * the last processed node.
787 ret = sysfs_create_link_nowarn(&node_devices[nid]->dev.kobj,
789 kobject_name(&mem_blk->dev.kobj));
790 if (ret && ret != -EEXIST)
791 dev_err_ratelimited(&node_devices[nid]->dev,
792 "can't create link to %s in sysfs (%d)\n",
793 kobject_name(&mem_blk->dev.kobj), ret);
795 ret = sysfs_create_link_nowarn(&mem_blk->dev.kobj,
796 &node_devices[nid]->dev.kobj,
797 kobject_name(&node_devices[nid]->dev.kobj));
798 if (ret && ret != -EEXIST)
799 dev_err_ratelimited(&mem_blk->dev,
800 "can't create link to %s in sysfs (%d)\n",
801 kobject_name(&node_devices[nid]->dev.kobj),
805 /* register memory section under specified node if it spans that node */
806 static int register_mem_block_under_node_early(struct memory_block *mem_blk,
809 unsigned long memory_block_pfns = memory_block_size_bytes() / PAGE_SIZE;
810 unsigned long start_pfn = section_nr_to_pfn(mem_blk->start_section_nr);
811 unsigned long end_pfn = start_pfn + memory_block_pfns - 1;
812 int nid = *(int *)arg;
815 for (pfn = start_pfn; pfn <= end_pfn; pfn++) {
819 * memory block could have several absent sections from start.
820 * skip pfn range from absent section
822 if (!pfn_in_present_section(pfn)) {
823 pfn = round_down(pfn + PAGES_PER_SECTION,
824 PAGES_PER_SECTION) - 1;
829 * We need to check if page belongs to nid only at the boot
830 * case because node's ranges can be interleaved.
832 page_nid = get_nid_for_pfn(pfn);
838 do_register_memory_block_under_node(nid, mem_blk);
841 /* mem section does not span the specified node */
846 * During hotplug we know that all pages in the memory block belong to the same
849 static int register_mem_block_under_node_hotplug(struct memory_block *mem_blk,
852 int nid = *(int *)arg;
854 do_register_memory_block_under_node(nid, mem_blk);
859 * Unregister a memory block device under the node it spans. Memory blocks
860 * with multiple nodes cannot be offlined and therefore also never be removed.
862 void unregister_memory_block_under_nodes(struct memory_block *mem_blk)
864 if (mem_blk->nid == NUMA_NO_NODE)
867 sysfs_remove_link(&node_devices[mem_blk->nid]->dev.kobj,
868 kobject_name(&mem_blk->dev.kobj));
869 sysfs_remove_link(&mem_blk->dev.kobj,
870 kobject_name(&node_devices[mem_blk->nid]->dev.kobj));
873 void link_mem_sections(int nid, unsigned long start_pfn, unsigned long end_pfn,
874 enum meminit_context context)
876 walk_memory_blocks_func_t func;
878 if (context == MEMINIT_HOTPLUG)
879 func = register_mem_block_under_node_hotplug;
881 func = register_mem_block_under_node_early;
883 walk_memory_blocks(PFN_PHYS(start_pfn), PFN_PHYS(end_pfn - start_pfn),
888 #ifdef CONFIG_HUGETLBFS
890 * Handle per node hstate attribute [un]registration on transistions
891 * to/from memoryless state.
893 static void node_hugetlb_work(struct work_struct *work)
895 struct node *node = container_of(work, struct node, node_work);
898 * We only get here when a node transitions to/from memoryless state.
899 * We can detect which transition occurred by examining whether the
900 * node has memory now. hugetlb_register_node() already check this
901 * so we try to register the attributes. If that fails, then the
902 * node has transitioned to memoryless, try to unregister the
905 if (!hugetlb_register_node(node))
906 hugetlb_unregister_node(node);
909 static void init_node_hugetlb_work(int nid)
911 INIT_WORK(&node_devices[nid]->node_work, node_hugetlb_work);
914 static int node_memory_callback(struct notifier_block *self,
915 unsigned long action, void *arg)
917 struct memory_notify *mnb = arg;
918 int nid = mnb->status_change_nid;
924 * offload per node hstate [un]registration to a work thread
925 * when transitioning to/from memoryless state.
927 if (nid != NUMA_NO_NODE)
928 schedule_work(&node_devices[nid]->node_work);
931 case MEM_GOING_ONLINE:
932 case MEM_GOING_OFFLINE:
933 case MEM_CANCEL_ONLINE:
934 case MEM_CANCEL_OFFLINE:
941 #endif /* CONFIG_HUGETLBFS */
942 #endif /* CONFIG_MEMORY_HOTPLUG_SPARSE */
944 #if !defined(CONFIG_MEMORY_HOTPLUG_SPARSE) || \
945 !defined(CONFIG_HUGETLBFS)
946 static inline int node_memory_callback(struct notifier_block *self,
947 unsigned long action, void *arg)
952 static void init_node_hugetlb_work(int nid) { }
956 int __register_one_node(int nid)
961 node_devices[nid] = kzalloc(sizeof(struct node), GFP_KERNEL);
962 if (!node_devices[nid])
965 error = register_node(node_devices[nid], nid);
967 /* link cpu under this node */
968 for_each_present_cpu(cpu) {
969 if (cpu_to_node(cpu) == nid)
970 register_cpu_under_node(cpu, nid);
973 INIT_LIST_HEAD(&node_devices[nid]->access_list);
974 /* initialize work queue for memory hot plug */
975 init_node_hugetlb_work(nid);
976 node_init_caches(nid);
981 void unregister_one_node(int nid)
983 if (!node_devices[nid])
986 unregister_node(node_devices[nid]);
987 node_devices[nid] = NULL;
991 * node states attributes
995 struct device_attribute attr;
996 enum node_states state;
999 static ssize_t show_node_state(struct device *dev,
1000 struct device_attribute *attr, char *buf)
1002 struct node_attr *na = container_of(attr, struct node_attr, attr);
1004 return sysfs_emit(buf, "%*pbl\n",
1005 nodemask_pr_args(&node_states[na->state]));
1008 #define _NODE_ATTR(name, state) \
1009 { __ATTR(name, 0444, show_node_state, NULL), state }
1011 static struct node_attr node_state_attr[] = {
1012 [N_POSSIBLE] = _NODE_ATTR(possible, N_POSSIBLE),
1013 [N_ONLINE] = _NODE_ATTR(online, N_ONLINE),
1014 [N_NORMAL_MEMORY] = _NODE_ATTR(has_normal_memory, N_NORMAL_MEMORY),
1015 #ifdef CONFIG_HIGHMEM
1016 [N_HIGH_MEMORY] = _NODE_ATTR(has_high_memory, N_HIGH_MEMORY),
1018 [N_MEMORY] = _NODE_ATTR(has_memory, N_MEMORY),
1019 [N_CPU] = _NODE_ATTR(has_cpu, N_CPU),
1020 [N_GENERIC_INITIATOR] = _NODE_ATTR(has_generic_initiator,
1021 N_GENERIC_INITIATOR),
1024 static struct attribute *node_state_attrs[] = {
1025 &node_state_attr[N_POSSIBLE].attr.attr,
1026 &node_state_attr[N_ONLINE].attr.attr,
1027 &node_state_attr[N_NORMAL_MEMORY].attr.attr,
1028 #ifdef CONFIG_HIGHMEM
1029 &node_state_attr[N_HIGH_MEMORY].attr.attr,
1031 &node_state_attr[N_MEMORY].attr.attr,
1032 &node_state_attr[N_CPU].attr.attr,
1033 &node_state_attr[N_GENERIC_INITIATOR].attr.attr,
1037 static struct attribute_group memory_root_attr_group = {
1038 .attrs = node_state_attrs,
1041 static const struct attribute_group *cpu_root_attr_groups[] = {
1042 &memory_root_attr_group,
1046 #define NODE_CALLBACK_PRI 2 /* lower than SLAB */
1047 static int __init register_node_type(void)
1051 BUILD_BUG_ON(ARRAY_SIZE(node_state_attr) != NR_NODE_STATES);
1052 BUILD_BUG_ON(ARRAY_SIZE(node_state_attrs)-1 != NR_NODE_STATES);
1054 ret = subsys_system_register(&node_subsys, cpu_root_attr_groups);
1056 static struct notifier_block node_memory_callback_nb = {
1057 .notifier_call = node_memory_callback,
1058 .priority = NODE_CALLBACK_PRI,
1060 register_hotmemory_notifier(&node_memory_callback_nb);
1064 * Note: we're not going to unregister the node class if we fail
1065 * to register the node state class attribute files.
1069 postcore_initcall(register_node_type);