xref: /openbmc/linux/mm/ksm.c (revision ba2929159000dc7015cc01cdf7bb72542e19952a)
17a338472SThomas Gleixner // SPDX-License-Identifier: GPL-2.0-only
2f8af4da3SHugh Dickins /*
331dbd01fSIzik Eidus  * Memory merging support.
431dbd01fSIzik Eidus  *
531dbd01fSIzik Eidus  * This code enables dynamic sharing of identical pages found in different
631dbd01fSIzik Eidus  * memory areas, even if they are not shared by fork()
731dbd01fSIzik Eidus  *
836b2528dSIzik Eidus  * Copyright (C) 2008-2009 Red Hat, Inc.
931dbd01fSIzik Eidus  * Authors:
1031dbd01fSIzik Eidus  *	Izik Eidus
1131dbd01fSIzik Eidus  *	Andrea Arcangeli
1231dbd01fSIzik Eidus  *	Chris Wright
1336b2528dSIzik Eidus  *	Hugh Dickins
14f8af4da3SHugh Dickins  */
15f8af4da3SHugh Dickins 
16f8af4da3SHugh Dickins #include <linux/errno.h>
1731dbd01fSIzik Eidus #include <linux/mm.h>
1836090defSArnd Bergmann #include <linux/mm_inline.h>
1931dbd01fSIzik Eidus #include <linux/fs.h>
20f8af4da3SHugh Dickins #include <linux/mman.h>
2131dbd01fSIzik Eidus #include <linux/sched.h>
226e84f315SIngo Molnar #include <linux/sched/mm.h>
23f7ccbae4SIngo Molnar #include <linux/sched/coredump.h>
2431dbd01fSIzik Eidus #include <linux/rwsem.h>
2531dbd01fSIzik Eidus #include <linux/pagemap.h>
2631dbd01fSIzik Eidus #include <linux/rmap.h>
2731dbd01fSIzik Eidus #include <linux/spinlock.h>
2859e1a2f4STimofey Titovets #include <linux/xxhash.h>
2931dbd01fSIzik Eidus #include <linux/delay.h>
3031dbd01fSIzik Eidus #include <linux/kthread.h>
3131dbd01fSIzik Eidus #include <linux/wait.h>
3231dbd01fSIzik Eidus #include <linux/slab.h>
3331dbd01fSIzik Eidus #include <linux/rbtree.h>
3462b61f61SHugh Dickins #include <linux/memory.h>
3531dbd01fSIzik Eidus #include <linux/mmu_notifier.h>
362c6854fdSIzik Eidus #include <linux/swap.h>
37f8af4da3SHugh Dickins #include <linux/ksm.h>
384ca3a69bSSasha Levin #include <linux/hashtable.h>
39878aee7dSAndrea Arcangeli #include <linux/freezer.h>
4072788c38SDavid Rientjes #include <linux/oom.h>
4190bd6fd3SPetr Holasek #include <linux/numa.h>
42d7c0e68dSDavid Hildenbrand #include <linux/pagewalk.h>
43f8af4da3SHugh Dickins 
4431dbd01fSIzik Eidus #include <asm/tlbflush.h>
4573848b46SHugh Dickins #include "internal.h"
4658730ab6SQi Zheng #include "mm_slot.h"
4731dbd01fSIzik Eidus 
48739100c8SStefan Roesch #define CREATE_TRACE_POINTS
49739100c8SStefan Roesch #include <trace/events/ksm.h>
50739100c8SStefan Roesch 
51e850dcf5SHugh Dickins #ifdef CONFIG_NUMA
52e850dcf5SHugh Dickins #define NUMA(x)		(x)
53e850dcf5SHugh Dickins #define DO_NUMA(x)	do { (x); } while (0)
54e850dcf5SHugh Dickins #else
55e850dcf5SHugh Dickins #define NUMA(x)		(0)
56e850dcf5SHugh Dickins #define DO_NUMA(x)	do { } while (0)
57e850dcf5SHugh Dickins #endif
58e850dcf5SHugh Dickins 
595a2ca3efSMike Rapoport /**
605a2ca3efSMike Rapoport  * DOC: Overview
615a2ca3efSMike Rapoport  *
6231dbd01fSIzik Eidus  * A few notes about the KSM scanning process,
6331dbd01fSIzik Eidus  * to make it easier to understand the data structures below:
6431dbd01fSIzik Eidus  *
6531dbd01fSIzik Eidus  * In order to reduce excessive scanning, KSM sorts the memory pages by their
6631dbd01fSIzik Eidus  * contents into a data structure that holds pointers to the pages' locations.
6731dbd01fSIzik Eidus  *
6831dbd01fSIzik Eidus  * Since the contents of the pages may change at any moment, KSM cannot just
6931dbd01fSIzik Eidus  * insert the pages into a normal sorted tree and expect it to find anything.
7031dbd01fSIzik Eidus  * Therefore KSM uses two data structures - the stable and the unstable tree.
7131dbd01fSIzik Eidus  *
7231dbd01fSIzik Eidus  * The stable tree holds pointers to all the merged pages (ksm pages), sorted
7331dbd01fSIzik Eidus  * by their contents.  Because each such page is write-protected, searching on
7431dbd01fSIzik Eidus  * this tree is fully assured to be working (except when pages are unmapped),
7531dbd01fSIzik Eidus  * and therefore this tree is called the stable tree.
7631dbd01fSIzik Eidus  *
775a2ca3efSMike Rapoport  * The stable tree node includes information required for reverse
785a2ca3efSMike Rapoport  * mapping from a KSM page to virtual addresses that map this page.
795a2ca3efSMike Rapoport  *
805a2ca3efSMike Rapoport  * In order to avoid large latencies of the rmap walks on KSM pages,
815a2ca3efSMike Rapoport  * KSM maintains two types of nodes in the stable tree:
825a2ca3efSMike Rapoport  *
835a2ca3efSMike Rapoport  * * the regular nodes that keep the reverse mapping structures in a
845a2ca3efSMike Rapoport  *   linked list
855a2ca3efSMike Rapoport  * * the "chains" that link nodes ("dups") that represent the same
865a2ca3efSMike Rapoport  *   write protected memory content, but each "dup" corresponds to a
875a2ca3efSMike Rapoport  *   different KSM page copy of that content
885a2ca3efSMike Rapoport  *
895a2ca3efSMike Rapoport  * Internally, the regular nodes, "dups" and "chains" are represented
9021fbd591SQi Zheng  * using the same struct ksm_stable_node structure.
915a2ca3efSMike Rapoport  *
9231dbd01fSIzik Eidus  * In addition to the stable tree, KSM uses a second data structure called the
9331dbd01fSIzik Eidus  * unstable tree: this tree holds pointers to pages which have been found to
9431dbd01fSIzik Eidus  * be "unchanged for a period of time".  The unstable tree sorts these pages
9531dbd01fSIzik Eidus  * by their contents, but since they are not write-protected, KSM cannot rely
9631dbd01fSIzik Eidus  * upon the unstable tree to work correctly - the unstable tree is liable to
9731dbd01fSIzik Eidus  * be corrupted as its contents are modified, and so it is called unstable.
9831dbd01fSIzik Eidus  *
9931dbd01fSIzik Eidus  * KSM solves this problem by several techniques:
10031dbd01fSIzik Eidus  *
10131dbd01fSIzik Eidus  * 1) The unstable tree is flushed every time KSM completes scanning all
10231dbd01fSIzik Eidus  *    memory areas, and then the tree is rebuilt again from the beginning.
10331dbd01fSIzik Eidus  * 2) KSM will only insert into the unstable tree, pages whose hash value
10431dbd01fSIzik Eidus  *    has not changed since the previous scan of all memory areas.
10531dbd01fSIzik Eidus  * 3) The unstable tree is a RedBlack Tree - so its balancing is based on the
10631dbd01fSIzik Eidus  *    colors of the nodes and not on their contents, assuring that even when
10731dbd01fSIzik Eidus  *    the tree gets "corrupted" it won't get out of balance, so scanning time
10831dbd01fSIzik Eidus  *    remains the same (also, searching and inserting nodes in an rbtree uses
10931dbd01fSIzik Eidus  *    the same algorithm, so we have no overhead when we flush and rebuild).
11031dbd01fSIzik Eidus  * 4) KSM never flushes the stable tree, which means that even if it were to
11131dbd01fSIzik Eidus  *    take 10 attempts to find a page in the unstable tree, once it is found,
11231dbd01fSIzik Eidus  *    it is secured in the stable tree.  (When we scan a new page, we first
11331dbd01fSIzik Eidus  *    compare it against the stable tree, and then against the unstable tree.)
1148fdb3dbfSHugh Dickins  *
1158fdb3dbfSHugh Dickins  * If the merge_across_nodes tunable is unset, then KSM maintains multiple
1168fdb3dbfSHugh Dickins  * stable trees and multiple unstable trees: one of each for each NUMA node.
11731dbd01fSIzik Eidus  */
11831dbd01fSIzik Eidus 
11931dbd01fSIzik Eidus /**
12021fbd591SQi Zheng  * struct ksm_mm_slot - ksm information per mm that is being scanned
12158730ab6SQi Zheng  * @slot: hash lookup from mm to mm_slot
1226514d511SHugh Dickins  * @rmap_list: head for this mm_slot's singly-linked list of rmap_items
12331dbd01fSIzik Eidus  */
12421fbd591SQi Zheng struct ksm_mm_slot {
12558730ab6SQi Zheng 	struct mm_slot slot;
12621fbd591SQi Zheng 	struct ksm_rmap_item *rmap_list;
12731dbd01fSIzik Eidus };
12831dbd01fSIzik Eidus 
12931dbd01fSIzik Eidus /**
13031dbd01fSIzik Eidus  * struct ksm_scan - cursor for scanning
13131dbd01fSIzik Eidus  * @mm_slot: the current mm_slot we are scanning
13231dbd01fSIzik Eidus  * @address: the next address inside that to be scanned
1336514d511SHugh Dickins  * @rmap_list: link to the next rmap to be scanned in the rmap_list
13431dbd01fSIzik Eidus  * @seqnr: count of completed full scans (needed when removing unstable node)
13531dbd01fSIzik Eidus  *
13631dbd01fSIzik Eidus  * There is only the one ksm_scan instance of this cursor structure.
13731dbd01fSIzik Eidus  */
13831dbd01fSIzik Eidus struct ksm_scan {
13921fbd591SQi Zheng 	struct ksm_mm_slot *mm_slot;
14031dbd01fSIzik Eidus 	unsigned long address;
14121fbd591SQi Zheng 	struct ksm_rmap_item **rmap_list;
14231dbd01fSIzik Eidus 	unsigned long seqnr;
14331dbd01fSIzik Eidus };
14431dbd01fSIzik Eidus 
14531dbd01fSIzik Eidus /**
14621fbd591SQi Zheng  * struct ksm_stable_node - node of the stable rbtree
1477b6ba2c7SHugh Dickins  * @node: rb node of this ksm page in the stable tree
1484146d2d6SHugh Dickins  * @head: (overlaying parent) &migrate_nodes indicates temporarily on that list
1492c653d0eSAndrea Arcangeli  * @hlist_dup: linked into the stable_node->hlist with a stable_node chain
1504146d2d6SHugh Dickins  * @list: linked into migrate_nodes, pending placement in the proper node tree
1517b6ba2c7SHugh Dickins  * @hlist: hlist head of rmap_items using this ksm page
1524146d2d6SHugh Dickins  * @kpfn: page frame number of this ksm page (perhaps temporarily on wrong nid)
1532c653d0eSAndrea Arcangeli  * @chain_prune_time: time of the last full garbage collection
1542c653d0eSAndrea Arcangeli  * @rmap_hlist_len: number of rmap_item entries in hlist or STABLE_NODE_CHAIN
1554146d2d6SHugh Dickins  * @nid: NUMA node id of stable tree in which linked (may not match kpfn)
1567b6ba2c7SHugh Dickins  */
15721fbd591SQi Zheng struct ksm_stable_node {
1584146d2d6SHugh Dickins 	union {
1594146d2d6SHugh Dickins 		struct rb_node node;	/* when node of stable tree */
1604146d2d6SHugh Dickins 		struct {		/* when listed for migration */
1614146d2d6SHugh Dickins 			struct list_head *head;
1622c653d0eSAndrea Arcangeli 			struct {
1632c653d0eSAndrea Arcangeli 				struct hlist_node hlist_dup;
1644146d2d6SHugh Dickins 				struct list_head list;
1654146d2d6SHugh Dickins 			};
1664146d2d6SHugh Dickins 		};
1672c653d0eSAndrea Arcangeli 	};
1687b6ba2c7SHugh Dickins 	struct hlist_head hlist;
1692c653d0eSAndrea Arcangeli 	union {
17062b61f61SHugh Dickins 		unsigned long kpfn;
1712c653d0eSAndrea Arcangeli 		unsigned long chain_prune_time;
1722c653d0eSAndrea Arcangeli 	};
1732c653d0eSAndrea Arcangeli 	/*
1742c653d0eSAndrea Arcangeli 	 * STABLE_NODE_CHAIN can be any negative number in
1752c653d0eSAndrea Arcangeli 	 * rmap_hlist_len negative range, but better not -1 to be able
1762c653d0eSAndrea Arcangeli 	 * to reliably detect underflows.
1772c653d0eSAndrea Arcangeli 	 */
1782c653d0eSAndrea Arcangeli #define STABLE_NODE_CHAIN -1024
1792c653d0eSAndrea Arcangeli 	int rmap_hlist_len;
1804146d2d6SHugh Dickins #ifdef CONFIG_NUMA
1814146d2d6SHugh Dickins 	int nid;
1824146d2d6SHugh Dickins #endif
1837b6ba2c7SHugh Dickins };
1847b6ba2c7SHugh Dickins 
1857b6ba2c7SHugh Dickins /**
18621fbd591SQi Zheng  * struct ksm_rmap_item - reverse mapping item for virtual addresses
1876514d511SHugh Dickins  * @rmap_list: next rmap_item in mm_slot's singly-linked rmap_list
188db114b83SHugh Dickins  * @anon_vma: pointer to anon_vma for this mm,address, when in stable tree
189bc56620bSHugh Dickins  * @nid: NUMA node id of unstable tree in which linked (may not match page)
19031dbd01fSIzik Eidus  * @mm: the memory structure this rmap_item is pointing into
19131dbd01fSIzik Eidus  * @address: the virtual address this rmap_item tracks (+ flags in low bits)
19231dbd01fSIzik Eidus  * @oldchecksum: previous checksum of the page at that virtual address
1937b6ba2c7SHugh Dickins  * @node: rb node of this rmap_item in the unstable tree
1947b6ba2c7SHugh Dickins  * @head: pointer to stable_node heading this list in the stable tree
1957b6ba2c7SHugh Dickins  * @hlist: link into hlist of rmap_items hanging off that stable_node
19631dbd01fSIzik Eidus  */
19721fbd591SQi Zheng struct ksm_rmap_item {
19821fbd591SQi Zheng 	struct ksm_rmap_item *rmap_list;
199bc56620bSHugh Dickins 	union {
200db114b83SHugh Dickins 		struct anon_vma *anon_vma;	/* when stable */
201bc56620bSHugh Dickins #ifdef CONFIG_NUMA
202bc56620bSHugh Dickins 		int nid;		/* when node of unstable tree */
203bc56620bSHugh Dickins #endif
204bc56620bSHugh Dickins 	};
20531dbd01fSIzik Eidus 	struct mm_struct *mm;
20631dbd01fSIzik Eidus 	unsigned long address;		/* + low bits used for flags below */
20731dbd01fSIzik Eidus 	unsigned int oldchecksum;	/* when unstable */
20831dbd01fSIzik Eidus 	union {
2097b6ba2c7SHugh Dickins 		struct rb_node node;	/* when node of unstable tree */
2107b6ba2c7SHugh Dickins 		struct {		/* when listed from stable tree */
21121fbd591SQi Zheng 			struct ksm_stable_node *head;
2127b6ba2c7SHugh Dickins 			struct hlist_node hlist;
2137b6ba2c7SHugh Dickins 		};
21431dbd01fSIzik Eidus 	};
21531dbd01fSIzik Eidus };
21631dbd01fSIzik Eidus 
21731dbd01fSIzik Eidus #define SEQNR_MASK	0x0ff	/* low bits of unstable tree seqnr */
2187b6ba2c7SHugh Dickins #define UNSTABLE_FLAG	0x100	/* is a node of the unstable tree */
2197b6ba2c7SHugh Dickins #define STABLE_FLAG	0x200	/* is listed from the stable tree */
22031dbd01fSIzik Eidus 
22131dbd01fSIzik Eidus /* The stable and unstable tree heads */
222ef53d16cSHugh Dickins static struct rb_root one_stable_tree[1] = { RB_ROOT };
223ef53d16cSHugh Dickins static struct rb_root one_unstable_tree[1] = { RB_ROOT };
224ef53d16cSHugh Dickins static struct rb_root *root_stable_tree = one_stable_tree;
225ef53d16cSHugh Dickins static struct rb_root *root_unstable_tree = one_unstable_tree;
22631dbd01fSIzik Eidus 
2274146d2d6SHugh Dickins /* Recently migrated nodes of stable tree, pending proper placement */
2284146d2d6SHugh Dickins static LIST_HEAD(migrate_nodes);
2292c653d0eSAndrea Arcangeli #define STABLE_NODE_DUP_HEAD ((struct list_head *)&migrate_nodes.prev)
2304146d2d6SHugh Dickins 
2314ca3a69bSSasha Levin #define MM_SLOTS_HASH_BITS 10
2324ca3a69bSSasha Levin static DEFINE_HASHTABLE(mm_slots_hash, MM_SLOTS_HASH_BITS);
23331dbd01fSIzik Eidus 
23421fbd591SQi Zheng static struct ksm_mm_slot ksm_mm_head = {
23558730ab6SQi Zheng 	.slot.mm_node = LIST_HEAD_INIT(ksm_mm_head.slot.mm_node),
23631dbd01fSIzik Eidus };
23731dbd01fSIzik Eidus static struct ksm_scan ksm_scan = {
23831dbd01fSIzik Eidus 	.mm_slot = &ksm_mm_head,
23931dbd01fSIzik Eidus };
24031dbd01fSIzik Eidus 
24131dbd01fSIzik Eidus static struct kmem_cache *rmap_item_cache;
2427b6ba2c7SHugh Dickins static struct kmem_cache *stable_node_cache;
24331dbd01fSIzik Eidus static struct kmem_cache *mm_slot_cache;
24431dbd01fSIzik Eidus 
245b348b5feSStefan Roesch /* The number of pages scanned */
246b348b5feSStefan Roesch static unsigned long ksm_pages_scanned;
247b348b5feSStefan Roesch 
24831dbd01fSIzik Eidus /* The number of nodes in the stable tree */
249b4028260SHugh Dickins static unsigned long ksm_pages_shared;
25031dbd01fSIzik Eidus 
251e178dfdeSHugh Dickins /* The number of page slots additionally sharing those nodes */
252b4028260SHugh Dickins static unsigned long ksm_pages_sharing;
25331dbd01fSIzik Eidus 
254473b0ce4SHugh Dickins /* The number of nodes in the unstable tree */
255473b0ce4SHugh Dickins static unsigned long ksm_pages_unshared;
256473b0ce4SHugh Dickins 
257473b0ce4SHugh Dickins /* The number of rmap_items in use: to calculate pages_volatile */
258473b0ce4SHugh Dickins static unsigned long ksm_rmap_items;
259473b0ce4SHugh Dickins 
2602c653d0eSAndrea Arcangeli /* The number of stable_node chains */
2612c653d0eSAndrea Arcangeli static unsigned long ksm_stable_node_chains;
2622c653d0eSAndrea Arcangeli 
2632c653d0eSAndrea Arcangeli /* The number of stable_node dups linked to the stable_node chains */
2642c653d0eSAndrea Arcangeli static unsigned long ksm_stable_node_dups;
2652c653d0eSAndrea Arcangeli 
2662c653d0eSAndrea Arcangeli /* Delay in pruning stale stable_node_dups in the stable_node_chains */
267584ff0dfSZhansaya Bagdauletkyzy static unsigned int ksm_stable_node_chains_prune_millisecs = 2000;
2682c653d0eSAndrea Arcangeli 
2692c653d0eSAndrea Arcangeli /* Maximum number of page slots sharing a stable node */
2702c653d0eSAndrea Arcangeli static int ksm_max_page_sharing = 256;
2712c653d0eSAndrea Arcangeli 
27231dbd01fSIzik Eidus /* Number of pages ksmd should scan in one batch */
2732c6854fdSIzik Eidus static unsigned int ksm_thread_pages_to_scan = 100;
27431dbd01fSIzik Eidus 
27531dbd01fSIzik Eidus /* Milliseconds ksmd should sleep between batches */
2762ffd8679SHugh Dickins static unsigned int ksm_thread_sleep_millisecs = 20;
27731dbd01fSIzik Eidus 
278e86c59b1SClaudio Imbrenda /* Checksum of an empty (zeroed) page */
279e86c59b1SClaudio Imbrenda static unsigned int zero_checksum __read_mostly;
280e86c59b1SClaudio Imbrenda 
281e86c59b1SClaudio Imbrenda /* Whether to merge empty (zeroed) pages with actual zero pages */
282e86c59b1SClaudio Imbrenda static bool ksm_use_zero_pages __read_mostly;
283e86c59b1SClaudio Imbrenda 
284e2942062Sxu xin /* The number of zero pages which is placed by KSM */
285*99ed145fSChengming Zhou atomic_long_t ksm_zero_pages = ATOMIC_LONG_INIT(0);
286e2942062Sxu xin 
287e850dcf5SHugh Dickins #ifdef CONFIG_NUMA
28890bd6fd3SPetr Holasek /* Zeroed when merging across nodes is not allowed */
28990bd6fd3SPetr Holasek static unsigned int ksm_merge_across_nodes = 1;
290ef53d16cSHugh Dickins static int ksm_nr_node_ids = 1;
291e850dcf5SHugh Dickins #else
292e850dcf5SHugh Dickins #define ksm_merge_across_nodes	1U
293ef53d16cSHugh Dickins #define ksm_nr_node_ids		1
294e850dcf5SHugh Dickins #endif
29590bd6fd3SPetr Holasek 
29631dbd01fSIzik Eidus #define KSM_RUN_STOP	0
29731dbd01fSIzik Eidus #define KSM_RUN_MERGE	1
29831dbd01fSIzik Eidus #define KSM_RUN_UNMERGE	2
299ef4d43a8SHugh Dickins #define KSM_RUN_OFFLINE	4
300ef4d43a8SHugh Dickins static unsigned long ksm_run = KSM_RUN_STOP;
301ef4d43a8SHugh Dickins static void wait_while_offlining(void);
30231dbd01fSIzik Eidus 
30331dbd01fSIzik Eidus static DECLARE_WAIT_QUEUE_HEAD(ksm_thread_wait);
304fcf9a0efSKirill Tkhai static DECLARE_WAIT_QUEUE_HEAD(ksm_iter_wait);
30531dbd01fSIzik Eidus static DEFINE_MUTEX(ksm_thread_mutex);
30631dbd01fSIzik Eidus static DEFINE_SPINLOCK(ksm_mmlist_lock);
30731dbd01fSIzik Eidus 
30821fbd591SQi Zheng #define KSM_KMEM_CACHE(__struct, __flags) kmem_cache_create(#__struct,\
30931dbd01fSIzik Eidus 		sizeof(struct __struct), __alignof__(struct __struct),\
31031dbd01fSIzik Eidus 		(__flags), NULL)
31131dbd01fSIzik Eidus 
ksm_slab_init(void)31231dbd01fSIzik Eidus static int __init ksm_slab_init(void)
31331dbd01fSIzik Eidus {
31421fbd591SQi Zheng 	rmap_item_cache = KSM_KMEM_CACHE(ksm_rmap_item, 0);
31531dbd01fSIzik Eidus 	if (!rmap_item_cache)
31631dbd01fSIzik Eidus 		goto out;
31731dbd01fSIzik Eidus 
31821fbd591SQi Zheng 	stable_node_cache = KSM_KMEM_CACHE(ksm_stable_node, 0);
3197b6ba2c7SHugh Dickins 	if (!stable_node_cache)
3207b6ba2c7SHugh Dickins 		goto out_free1;
3217b6ba2c7SHugh Dickins 
32221fbd591SQi Zheng 	mm_slot_cache = KSM_KMEM_CACHE(ksm_mm_slot, 0);
32331dbd01fSIzik Eidus 	if (!mm_slot_cache)
3247b6ba2c7SHugh Dickins 		goto out_free2;
32531dbd01fSIzik Eidus 
32631dbd01fSIzik Eidus 	return 0;
32731dbd01fSIzik Eidus 
3287b6ba2c7SHugh Dickins out_free2:
3297b6ba2c7SHugh Dickins 	kmem_cache_destroy(stable_node_cache);
3307b6ba2c7SHugh Dickins out_free1:
33131dbd01fSIzik Eidus 	kmem_cache_destroy(rmap_item_cache);
33231dbd01fSIzik Eidus out:
33331dbd01fSIzik Eidus 	return -ENOMEM;
33431dbd01fSIzik Eidus }
33531dbd01fSIzik Eidus 
ksm_slab_free(void)33631dbd01fSIzik Eidus static void __init ksm_slab_free(void)
33731dbd01fSIzik Eidus {
33831dbd01fSIzik Eidus 	kmem_cache_destroy(mm_slot_cache);
3397b6ba2c7SHugh Dickins 	kmem_cache_destroy(stable_node_cache);
34031dbd01fSIzik Eidus 	kmem_cache_destroy(rmap_item_cache);
34131dbd01fSIzik Eidus 	mm_slot_cache = NULL;
34231dbd01fSIzik Eidus }
34331dbd01fSIzik Eidus 
is_stable_node_chain(struct ksm_stable_node * chain)34421fbd591SQi Zheng static __always_inline bool is_stable_node_chain(struct ksm_stable_node *chain)
3452c653d0eSAndrea Arcangeli {
3462c653d0eSAndrea Arcangeli 	return chain->rmap_hlist_len == STABLE_NODE_CHAIN;
3472c653d0eSAndrea Arcangeli }
3482c653d0eSAndrea Arcangeli 
is_stable_node_dup(struct ksm_stable_node * dup)34921fbd591SQi Zheng static __always_inline bool is_stable_node_dup(struct ksm_stable_node *dup)
3502c653d0eSAndrea Arcangeli {
3512c653d0eSAndrea Arcangeli 	return dup->head == STABLE_NODE_DUP_HEAD;
3522c653d0eSAndrea Arcangeli }
3532c653d0eSAndrea Arcangeli 
stable_node_chain_add_dup(struct ksm_stable_node * dup,struct ksm_stable_node * chain)35421fbd591SQi Zheng static inline void stable_node_chain_add_dup(struct ksm_stable_node *dup,
35521fbd591SQi Zheng 					     struct ksm_stable_node *chain)
3562c653d0eSAndrea Arcangeli {
3572c653d0eSAndrea Arcangeli 	VM_BUG_ON(is_stable_node_dup(dup));
3582c653d0eSAndrea Arcangeli 	dup->head = STABLE_NODE_DUP_HEAD;
3592c653d0eSAndrea Arcangeli 	VM_BUG_ON(!is_stable_node_chain(chain));
3602c653d0eSAndrea Arcangeli 	hlist_add_head(&dup->hlist_dup, &chain->hlist);
3612c653d0eSAndrea Arcangeli 	ksm_stable_node_dups++;
3622c653d0eSAndrea Arcangeli }
3632c653d0eSAndrea Arcangeli 
__stable_node_dup_del(struct ksm_stable_node * dup)36421fbd591SQi Zheng static inline void __stable_node_dup_del(struct ksm_stable_node *dup)
3652c653d0eSAndrea Arcangeli {
366b4fecc67SAndrea Arcangeli 	VM_BUG_ON(!is_stable_node_dup(dup));
3672c653d0eSAndrea Arcangeli 	hlist_del(&dup->hlist_dup);
3682c653d0eSAndrea Arcangeli 	ksm_stable_node_dups--;
3692c653d0eSAndrea Arcangeli }
3702c653d0eSAndrea Arcangeli 
stable_node_dup_del(struct ksm_stable_node * dup)37121fbd591SQi Zheng static inline void stable_node_dup_del(struct ksm_stable_node *dup)
3722c653d0eSAndrea Arcangeli {
3732c653d0eSAndrea Arcangeli 	VM_BUG_ON(is_stable_node_chain(dup));
3742c653d0eSAndrea Arcangeli 	if (is_stable_node_dup(dup))
3752c653d0eSAndrea Arcangeli 		__stable_node_dup_del(dup);
3762c653d0eSAndrea Arcangeli 	else
3772c653d0eSAndrea Arcangeli 		rb_erase(&dup->node, root_stable_tree + NUMA(dup->nid));
3782c653d0eSAndrea Arcangeli #ifdef CONFIG_DEBUG_VM
3792c653d0eSAndrea Arcangeli 	dup->head = NULL;
3802c653d0eSAndrea Arcangeli #endif
3812c653d0eSAndrea Arcangeli }
3822c653d0eSAndrea Arcangeli 
alloc_rmap_item(void)38321fbd591SQi Zheng static inline struct ksm_rmap_item *alloc_rmap_item(void)
38431dbd01fSIzik Eidus {
38521fbd591SQi Zheng 	struct ksm_rmap_item *rmap_item;
386473b0ce4SHugh Dickins 
3875b398e41Szhong jiang 	rmap_item = kmem_cache_zalloc(rmap_item_cache, GFP_KERNEL |
3885b398e41Szhong jiang 						__GFP_NORETRY | __GFP_NOWARN);
389473b0ce4SHugh Dickins 	if (rmap_item)
390473b0ce4SHugh Dickins 		ksm_rmap_items++;
391473b0ce4SHugh Dickins 	return rmap_item;
39231dbd01fSIzik Eidus }
39331dbd01fSIzik Eidus 
free_rmap_item(struct ksm_rmap_item * rmap_item)39421fbd591SQi Zheng static inline void free_rmap_item(struct ksm_rmap_item *rmap_item)
39531dbd01fSIzik Eidus {
396473b0ce4SHugh Dickins 	ksm_rmap_items--;
397cb4df4caSxu xin 	rmap_item->mm->ksm_rmap_items--;
39831dbd01fSIzik Eidus 	rmap_item->mm = NULL;	/* debug safety */
39931dbd01fSIzik Eidus 	kmem_cache_free(rmap_item_cache, rmap_item);
40031dbd01fSIzik Eidus }
40131dbd01fSIzik Eidus 
alloc_stable_node(void)40221fbd591SQi Zheng static inline struct ksm_stable_node *alloc_stable_node(void)
4037b6ba2c7SHugh Dickins {
4046213055fSzhong jiang 	/*
4056213055fSzhong jiang 	 * The allocation can take too long with GFP_KERNEL when memory is under
4066213055fSzhong jiang 	 * pressure, which may lead to hung task warnings.  Adding __GFP_HIGH
4076213055fSzhong jiang 	 * grants access to memory reserves, helping to avoid this problem.
4086213055fSzhong jiang 	 */
4096213055fSzhong jiang 	return kmem_cache_alloc(stable_node_cache, GFP_KERNEL | __GFP_HIGH);
4107b6ba2c7SHugh Dickins }
4117b6ba2c7SHugh Dickins 
free_stable_node(struct ksm_stable_node * stable_node)41221fbd591SQi Zheng static inline void free_stable_node(struct ksm_stable_node *stable_node)
4137b6ba2c7SHugh Dickins {
4142c653d0eSAndrea Arcangeli 	VM_BUG_ON(stable_node->rmap_hlist_len &&
4152c653d0eSAndrea Arcangeli 		  !is_stable_node_chain(stable_node));
4167b6ba2c7SHugh Dickins 	kmem_cache_free(stable_node_cache, stable_node);
4177b6ba2c7SHugh Dickins }
4187b6ba2c7SHugh Dickins 
41931dbd01fSIzik Eidus /*
420a913e182SHugh Dickins  * ksmd, and unmerge_and_remove_all_rmap_items(), must not touch an mm's
421a913e182SHugh Dickins  * page tables after it has passed through ksm_exit() - which, if necessary,
422c1e8d7c6SMichel Lespinasse  * takes mmap_lock briefly to serialize against them.  ksm_exit() does not set
423a913e182SHugh Dickins  * a special flag: they can just back out as soon as mm_users goes to zero.
424a913e182SHugh Dickins  * ksm_test_exit() is used throughout to make this test for exit: in some
425a913e182SHugh Dickins  * places for correctness, in some places just to avoid unnecessary work.
426a913e182SHugh Dickins  */
ksm_test_exit(struct mm_struct * mm)427a913e182SHugh Dickins static inline bool ksm_test_exit(struct mm_struct *mm)
428a913e182SHugh Dickins {
429a913e182SHugh Dickins 	return atomic_read(&mm->mm_users) == 0;
430a913e182SHugh Dickins }
431a913e182SHugh Dickins 
break_ksm_pmd_entry(pmd_t * pmd,unsigned long addr,unsigned long next,struct mm_walk * walk)432d7c0e68dSDavid Hildenbrand static int break_ksm_pmd_entry(pmd_t *pmd, unsigned long addr, unsigned long next,
433d7c0e68dSDavid Hildenbrand 			struct mm_walk *walk)
434d7c0e68dSDavid Hildenbrand {
435d7c0e68dSDavid Hildenbrand 	struct page *page = NULL;
436d7c0e68dSDavid Hildenbrand 	spinlock_t *ptl;
437d7c0e68dSDavid Hildenbrand 	pte_t *pte;
438c33c7948SRyan Roberts 	pte_t ptent;
439d7c0e68dSDavid Hildenbrand 	int ret;
440d7c0e68dSDavid Hildenbrand 
441d7c0e68dSDavid Hildenbrand 	pte = pte_offset_map_lock(walk->mm, pmd, addr, &ptl);
44204dee9e8SHugh Dickins 	if (!pte)
44304dee9e8SHugh Dickins 		return 0;
444c33c7948SRyan Roberts 	ptent = ptep_get(pte);
445c33c7948SRyan Roberts 	if (pte_present(ptent)) {
446c33c7948SRyan Roberts 		page = vm_normal_page(walk->vma, addr, ptent);
447c33c7948SRyan Roberts 	} else if (!pte_none(ptent)) {
448c33c7948SRyan Roberts 		swp_entry_t entry = pte_to_swp_entry(ptent);
449d7c0e68dSDavid Hildenbrand 
450d7c0e68dSDavid Hildenbrand 		/*
451d7c0e68dSDavid Hildenbrand 		 * As KSM pages remain KSM pages until freed, no need to wait
452d7c0e68dSDavid Hildenbrand 		 * here for migration to end.
453d7c0e68dSDavid Hildenbrand 		 */
454d7c0e68dSDavid Hildenbrand 		if (is_migration_entry(entry))
455d7c0e68dSDavid Hildenbrand 			page = pfn_swap_entry_to_page(entry);
456d7c0e68dSDavid Hildenbrand 	}
45779271476Sxu xin 	/* return 1 if the page is an normal ksm page or KSM-placed zero page */
45879271476Sxu xin 	ret = (page && PageKsm(page)) || is_ksm_zero_pte(*pte);
459d7c0e68dSDavid Hildenbrand 	pte_unmap_unlock(pte, ptl);
460d7c0e68dSDavid Hildenbrand 	return ret;
461d7c0e68dSDavid Hildenbrand }
462d7c0e68dSDavid Hildenbrand 
463d7c0e68dSDavid Hildenbrand static const struct mm_walk_ops break_ksm_ops = {
464d7c0e68dSDavid Hildenbrand 	.pmd_entry = break_ksm_pmd_entry,
46549b06385SSuren Baghdasaryan 	.walk_lock = PGWALK_RDLOCK,
46649b06385SSuren Baghdasaryan };
46749b06385SSuren Baghdasaryan 
46849b06385SSuren Baghdasaryan static const struct mm_walk_ops break_ksm_lock_vma_ops = {
46949b06385SSuren Baghdasaryan 	.pmd_entry = break_ksm_pmd_entry,
47049b06385SSuren Baghdasaryan 	.walk_lock = PGWALK_WRLOCK,
471d7c0e68dSDavid Hildenbrand };
472d7c0e68dSDavid Hildenbrand 
473a913e182SHugh Dickins /*
4746cce3314SDavid Hildenbrand  * We use break_ksm to break COW on a ksm page by triggering unsharing,
4756cce3314SDavid Hildenbrand  * such that the ksm page will get replaced by an exclusive anonymous page.
47631dbd01fSIzik Eidus  *
4776cce3314SDavid Hildenbrand  * We take great care only to touch a ksm page, in a VM_MERGEABLE vma,
47831dbd01fSIzik Eidus  * in case the application has unmapped and remapped mm,addr meanwhile.
47931dbd01fSIzik Eidus  * Could a ksm page appear anywhere else?  Actually yes, in a VM_PFNMAP
480bbcd53c9SDavid Hildenbrand  * mmap of /dev/mem, where we would not want to touch it.
4811b2ee126SDave Hansen  *
4826cce3314SDavid Hildenbrand  * FAULT_FLAG_REMOTE/FOLL_REMOTE are because we do this outside the context
4831b2ee126SDave Hansen  * of the process that owns 'vma'.  We also do not want to enforce
4841b2ee126SDave Hansen  * protection keys here anyway.
48531dbd01fSIzik Eidus  */
break_ksm(struct vm_area_struct * vma,unsigned long addr,bool lock_vma)48649b06385SSuren Baghdasaryan static int break_ksm(struct vm_area_struct *vma, unsigned long addr, bool lock_vma)
48731dbd01fSIzik Eidus {
48850a7ca3cSSouptick Joarder 	vm_fault_t ret = 0;
48949b06385SSuren Baghdasaryan 	const struct mm_walk_ops *ops = lock_vma ?
49049b06385SSuren Baghdasaryan 				&break_ksm_lock_vma_ops : &break_ksm_ops;
49131dbd01fSIzik Eidus 
49231dbd01fSIzik Eidus 	do {
493d7c0e68dSDavid Hildenbrand 		int ksm_page;
49458f595c6SDavid Hildenbrand 
49531dbd01fSIzik Eidus 		cond_resched();
49649b06385SSuren Baghdasaryan 		ksm_page = walk_page_range_vma(vma, addr, addr + 1, ops, NULL);
497d7c0e68dSDavid Hildenbrand 		if (WARN_ON_ONCE(ksm_page < 0))
498d7c0e68dSDavid Hildenbrand 			return ksm_page;
49958f595c6SDavid Hildenbrand 		if (!ksm_page)
50058f595c6SDavid Hildenbrand 			return 0;
501dcddffd4SKirill A. Shutemov 		ret = handle_mm_fault(vma, addr,
5026cce3314SDavid Hildenbrand 				      FAULT_FLAG_UNSHARE | FAULT_FLAG_REMOTE,
503bce617edSPeter Xu 				      NULL);
50458f595c6SDavid Hildenbrand 	} while (!(ret & (VM_FAULT_SIGBUS | VM_FAULT_SIGSEGV | VM_FAULT_OOM)));
505d952b791SHugh Dickins 	/*
50658f595c6SDavid Hildenbrand 	 * We must loop until we no longer find a KSM page because
50758f595c6SDavid Hildenbrand 	 * handle_mm_fault() may back out if there's any difficulty e.g. if
50858f595c6SDavid Hildenbrand 	 * pte accessed bit gets updated concurrently.
509d952b791SHugh Dickins 	 *
510d952b791SHugh Dickins 	 * VM_FAULT_SIGBUS could occur if we race with truncation of the
511d952b791SHugh Dickins 	 * backing file, which also invalidates anonymous pages: that's
512d952b791SHugh Dickins 	 * okay, that truncation will have unmapped the PageKsm for us.
513d952b791SHugh Dickins 	 *
514d952b791SHugh Dickins 	 * VM_FAULT_OOM: at the time of writing (late July 2009), setting
515d952b791SHugh Dickins 	 * aside mem_cgroup limits, VM_FAULT_OOM would only be set if the
516d952b791SHugh Dickins 	 * current task has TIF_MEMDIE set, and will be OOM killed on return
517d952b791SHugh Dickins 	 * to user; and ksmd, having no mm, would never be chosen for that.
518d952b791SHugh Dickins 	 *
519d952b791SHugh Dickins 	 * But if the mm is in a limited mem_cgroup, then the fault may fail
520d952b791SHugh Dickins 	 * with VM_FAULT_OOM even if the current task is not TIF_MEMDIE; and
521d952b791SHugh Dickins 	 * even ksmd can fail in this way - though it's usually breaking ksm
522d952b791SHugh Dickins 	 * just to undo a merge it made a moment before, so unlikely to oom.
523d952b791SHugh Dickins 	 *
524d952b791SHugh Dickins 	 * That's a pity: we might therefore have more kernel pages allocated
525d952b791SHugh Dickins 	 * than we're counting as nodes in the stable tree; but ksm_do_scan
526d952b791SHugh Dickins 	 * will retry to break_cow on each pass, so should recover the page
527d952b791SHugh Dickins 	 * in due course.  The important thing is to not let VM_MERGEABLE
528d952b791SHugh Dickins 	 * be cleared while any such pages might remain in the area.
529d952b791SHugh Dickins 	 */
530d952b791SHugh Dickins 	return (ret & VM_FAULT_OOM) ? -ENOMEM : 0;
53131dbd01fSIzik Eidus }
53231dbd01fSIzik Eidus 
vma_ksm_compatible(struct vm_area_struct * vma)533d7597f59SStefan Roesch static bool vma_ksm_compatible(struct vm_area_struct *vma)
534d7597f59SStefan Roesch {
535d7597f59SStefan Roesch 	if (vma->vm_flags & (VM_SHARED  | VM_MAYSHARE   | VM_PFNMAP  |
536d7597f59SStefan Roesch 			     VM_IO      | VM_DONTEXPAND | VM_HUGETLB |
537d7597f59SStefan Roesch 			     VM_MIXEDMAP))
538d7597f59SStefan Roesch 		return false;		/* just ignore the advice */
539d7597f59SStefan Roesch 
540d7597f59SStefan Roesch 	if (vma_is_dax(vma))
541d7597f59SStefan Roesch 		return false;
542d7597f59SStefan Roesch 
543d7597f59SStefan Roesch #ifdef VM_SAO
544d7597f59SStefan Roesch 	if (vma->vm_flags & VM_SAO)
545d7597f59SStefan Roesch 		return false;
546d7597f59SStefan Roesch #endif
547d7597f59SStefan Roesch #ifdef VM_SPARC_ADI
548d7597f59SStefan Roesch 	if (vma->vm_flags & VM_SPARC_ADI)
549d7597f59SStefan Roesch 		return false;
550d7597f59SStefan Roesch #endif
551d7597f59SStefan Roesch 
552d7597f59SStefan Roesch 	return true;
553d7597f59SStefan Roesch }
554d7597f59SStefan Roesch 
find_mergeable_vma(struct mm_struct * mm,unsigned long addr)555ef694222SBob Liu static struct vm_area_struct *find_mergeable_vma(struct mm_struct *mm,
556ef694222SBob Liu 		unsigned long addr)
557ef694222SBob Liu {
558ef694222SBob Liu 	struct vm_area_struct *vma;
559ef694222SBob Liu 	if (ksm_test_exit(mm))
560ef694222SBob Liu 		return NULL;
561ff69fb81SLiam Howlett 	vma = vma_lookup(mm, addr);
562ff69fb81SLiam Howlett 	if (!vma || !(vma->vm_flags & VM_MERGEABLE) || !vma->anon_vma)
563ef694222SBob Liu 		return NULL;
564ef694222SBob Liu 	return vma;
565ef694222SBob Liu }
566ef694222SBob Liu 
break_cow(struct ksm_rmap_item * rmap_item)56721fbd591SQi Zheng static void break_cow(struct ksm_rmap_item *rmap_item)
56831dbd01fSIzik Eidus {
5698dd3557aSHugh Dickins 	struct mm_struct *mm = rmap_item->mm;
5708dd3557aSHugh Dickins 	unsigned long addr = rmap_item->address;
57131dbd01fSIzik Eidus 	struct vm_area_struct *vma;
57231dbd01fSIzik Eidus 
5734035c07aSHugh Dickins 	/*
5744035c07aSHugh Dickins 	 * It is not an accident that whenever we want to break COW
5754035c07aSHugh Dickins 	 * to undo, we also need to drop a reference to the anon_vma.
5764035c07aSHugh Dickins 	 */
5779e60109fSPeter Zijlstra 	put_anon_vma(rmap_item->anon_vma);
5784035c07aSHugh Dickins 
579d8ed45c5SMichel Lespinasse 	mmap_read_lock(mm);
580ef694222SBob Liu 	vma = find_mergeable_vma(mm, addr);
581ef694222SBob Liu 	if (vma)
58249b06385SSuren Baghdasaryan 		break_ksm(vma, addr, false);
583d8ed45c5SMichel Lespinasse 	mmap_read_unlock(mm);
58431dbd01fSIzik Eidus }
58531dbd01fSIzik Eidus 
get_mergeable_page(struct ksm_rmap_item * rmap_item)58621fbd591SQi Zheng static struct page *get_mergeable_page(struct ksm_rmap_item *rmap_item)
58731dbd01fSIzik Eidus {
58831dbd01fSIzik Eidus 	struct mm_struct *mm = rmap_item->mm;
58931dbd01fSIzik Eidus 	unsigned long addr = rmap_item->address;
59031dbd01fSIzik Eidus 	struct vm_area_struct *vma;
59131dbd01fSIzik Eidus 	struct page *page;
59231dbd01fSIzik Eidus 
593d8ed45c5SMichel Lespinasse 	mmap_read_lock(mm);
594ef694222SBob Liu 	vma = find_mergeable_vma(mm, addr);
595ef694222SBob Liu 	if (!vma)
59631dbd01fSIzik Eidus 		goto out;
59731dbd01fSIzik Eidus 
59831dbd01fSIzik Eidus 	page = follow_page(vma, addr, FOLL_GET);
599f7091ed6SHaiyue Wang 	if (IS_ERR_OR_NULL(page))
60031dbd01fSIzik Eidus 		goto out;
601f7091ed6SHaiyue Wang 	if (is_zone_device_page(page))
602f7091ed6SHaiyue Wang 		goto out_putpage;
603f765f540SKirill A. Shutemov 	if (PageAnon(page)) {
60431dbd01fSIzik Eidus 		flush_anon_page(vma, page, addr);
60531dbd01fSIzik Eidus 		flush_dcache_page(page);
60631dbd01fSIzik Eidus 	} else {
607f7091ed6SHaiyue Wang out_putpage:
60831dbd01fSIzik Eidus 		put_page(page);
609c8f95ed1SAndrea Arcangeli out:
610c8f95ed1SAndrea Arcangeli 		page = NULL;
61131dbd01fSIzik Eidus 	}
612d8ed45c5SMichel Lespinasse 	mmap_read_unlock(mm);
61331dbd01fSIzik Eidus 	return page;
61431dbd01fSIzik Eidus }
61531dbd01fSIzik Eidus 
61690bd6fd3SPetr Holasek /*
61790bd6fd3SPetr Holasek  * This helper is used for getting right index into array of tree roots.
61890bd6fd3SPetr Holasek  * When merge_across_nodes knob is set to 1, there are only two rb-trees for
61990bd6fd3SPetr Holasek  * stable and unstable pages from all nodes with roots in index 0. Otherwise,
62090bd6fd3SPetr Holasek  * every node has its own stable and unstable tree.
62190bd6fd3SPetr Holasek  */
get_kpfn_nid(unsigned long kpfn)62290bd6fd3SPetr Holasek static inline int get_kpfn_nid(unsigned long kpfn)
62390bd6fd3SPetr Holasek {
624d8fc16a8SHugh Dickins 	return ksm_merge_across_nodes ? 0 : NUMA(pfn_to_nid(kpfn));
62590bd6fd3SPetr Holasek }
62690bd6fd3SPetr Holasek 
alloc_stable_node_chain(struct ksm_stable_node * dup,struct rb_root * root)62721fbd591SQi Zheng static struct ksm_stable_node *alloc_stable_node_chain(struct ksm_stable_node *dup,
6282c653d0eSAndrea Arcangeli 						   struct rb_root *root)
6292c653d0eSAndrea Arcangeli {
63021fbd591SQi Zheng 	struct ksm_stable_node *chain = alloc_stable_node();
6312c653d0eSAndrea Arcangeli 	VM_BUG_ON(is_stable_node_chain(dup));
6322c653d0eSAndrea Arcangeli 	if (likely(chain)) {
6332c653d0eSAndrea Arcangeli 		INIT_HLIST_HEAD(&chain->hlist);
6342c653d0eSAndrea Arcangeli 		chain->chain_prune_time = jiffies;
6352c653d0eSAndrea Arcangeli 		chain->rmap_hlist_len = STABLE_NODE_CHAIN;
6362c653d0eSAndrea Arcangeli #if defined (CONFIG_DEBUG_VM) && defined(CONFIG_NUMA)
63798fa15f3SAnshuman Khandual 		chain->nid = NUMA_NO_NODE; /* debug */
6382c653d0eSAndrea Arcangeli #endif
6392c653d0eSAndrea Arcangeli 		ksm_stable_node_chains++;
6402c653d0eSAndrea Arcangeli 
6412c653d0eSAndrea Arcangeli 		/*
6422c653d0eSAndrea Arcangeli 		 * Put the stable node chain in the first dimension of
6432c653d0eSAndrea Arcangeli 		 * the stable tree and at the same time remove the old
6442c653d0eSAndrea Arcangeli 		 * stable node.
6452c653d0eSAndrea Arcangeli 		 */
6462c653d0eSAndrea Arcangeli 		rb_replace_node(&dup->node, &chain->node, root);
6472c653d0eSAndrea Arcangeli 
6482c653d0eSAndrea Arcangeli 		/*
6492c653d0eSAndrea Arcangeli 		 * Move the old stable node to the second dimension
6502c653d0eSAndrea Arcangeli 		 * queued in the hlist_dup. The invariant is that all
6512c653d0eSAndrea Arcangeli 		 * dup stable_nodes in the chain->hlist point to pages
652457aef94SEthon Paul 		 * that are write protected and have the exact same
6532c653d0eSAndrea Arcangeli 		 * content.
6542c653d0eSAndrea Arcangeli 		 */
6552c653d0eSAndrea Arcangeli 		stable_node_chain_add_dup(dup, chain);
6562c653d0eSAndrea Arcangeli 	}
6572c653d0eSAndrea Arcangeli 	return chain;
6582c653d0eSAndrea Arcangeli }
6592c653d0eSAndrea Arcangeli 
free_stable_node_chain(struct ksm_stable_node * chain,struct rb_root * root)66021fbd591SQi Zheng static inline void free_stable_node_chain(struct ksm_stable_node *chain,
6612c653d0eSAndrea Arcangeli 					  struct rb_root *root)
6622c653d0eSAndrea Arcangeli {
6632c653d0eSAndrea Arcangeli 	rb_erase(&chain->node, root);
6642c653d0eSAndrea Arcangeli 	free_stable_node(chain);
6652c653d0eSAndrea Arcangeli 	ksm_stable_node_chains--;
6662c653d0eSAndrea Arcangeli }
6672c653d0eSAndrea Arcangeli 
remove_node_from_stable_tree(struct ksm_stable_node * stable_node)66821fbd591SQi Zheng static void remove_node_from_stable_tree(struct ksm_stable_node *stable_node)
6694035c07aSHugh Dickins {
67021fbd591SQi Zheng 	struct ksm_rmap_item *rmap_item;
6714035c07aSHugh Dickins 
6722c653d0eSAndrea Arcangeli 	/* check it's not STABLE_NODE_CHAIN or negative */
6732c653d0eSAndrea Arcangeli 	BUG_ON(stable_node->rmap_hlist_len < 0);
6742c653d0eSAndrea Arcangeli 
675b67bfe0dSSasha Levin 	hlist_for_each_entry(rmap_item, &stable_node->hlist, hlist) {
676739100c8SStefan Roesch 		if (rmap_item->hlist.next) {
6774035c07aSHugh Dickins 			ksm_pages_sharing--;
678739100c8SStefan Roesch 			trace_ksm_remove_rmap_item(stable_node->kpfn, rmap_item, rmap_item->mm);
679739100c8SStefan Roesch 		} else {
6804035c07aSHugh Dickins 			ksm_pages_shared--;
681739100c8SStefan Roesch 		}
68276093853Sxu xin 
68376093853Sxu xin 		rmap_item->mm->ksm_merging_pages--;
68476093853Sxu xin 
6852c653d0eSAndrea Arcangeli 		VM_BUG_ON(stable_node->rmap_hlist_len <= 0);
6862c653d0eSAndrea Arcangeli 		stable_node->rmap_hlist_len--;
6879e60109fSPeter Zijlstra 		put_anon_vma(rmap_item->anon_vma);
6884035c07aSHugh Dickins 		rmap_item->address &= PAGE_MASK;
6894035c07aSHugh Dickins 		cond_resched();
6904035c07aSHugh Dickins 	}
6914035c07aSHugh Dickins 
6922c653d0eSAndrea Arcangeli 	/*
6932c653d0eSAndrea Arcangeli 	 * We need the second aligned pointer of the migrate_nodes
6942c653d0eSAndrea Arcangeli 	 * list_head to stay clear from the rb_parent_color union
6952c653d0eSAndrea Arcangeli 	 * (aligned and different than any node) and also different
6962c653d0eSAndrea Arcangeli 	 * from &migrate_nodes. This will verify that future list.h changes
697815f0ddbSNick Desaulniers 	 * don't break STABLE_NODE_DUP_HEAD. Only recent gcc can handle it.
6982c653d0eSAndrea Arcangeli 	 */
6992c653d0eSAndrea Arcangeli 	BUILD_BUG_ON(STABLE_NODE_DUP_HEAD <= &migrate_nodes);
7002c653d0eSAndrea Arcangeli 	BUILD_BUG_ON(STABLE_NODE_DUP_HEAD >= &migrate_nodes + 1);
7012c653d0eSAndrea Arcangeli 
702739100c8SStefan Roesch 	trace_ksm_remove_ksm_page(stable_node->kpfn);
7034146d2d6SHugh Dickins 	if (stable_node->head == &migrate_nodes)
7044146d2d6SHugh Dickins 		list_del(&stable_node->list);
7054146d2d6SHugh Dickins 	else
7062c653d0eSAndrea Arcangeli 		stable_node_dup_del(stable_node);
7074035c07aSHugh Dickins 	free_stable_node(stable_node);
7084035c07aSHugh Dickins }
7094035c07aSHugh Dickins 
7102cee57d1SYang Shi enum get_ksm_page_flags {
7112cee57d1SYang Shi 	GET_KSM_PAGE_NOLOCK,
7122cee57d1SYang Shi 	GET_KSM_PAGE_LOCK,
7132cee57d1SYang Shi 	GET_KSM_PAGE_TRYLOCK
7142cee57d1SYang Shi };
7152cee57d1SYang Shi 
7164035c07aSHugh Dickins /*
7174035c07aSHugh Dickins  * get_ksm_page: checks if the page indicated by the stable node
7184035c07aSHugh Dickins  * is still its ksm page, despite having held no reference to it.
7194035c07aSHugh Dickins  * In which case we can trust the content of the page, and it
7204035c07aSHugh Dickins  * returns the gotten page; but if the page has now been zapped,
7214035c07aSHugh Dickins  * remove the stale node from the stable tree and return NULL.
722c8d6553bSHugh Dickins  * But beware, the stable node's page might be being migrated.
7234035c07aSHugh Dickins  *
7244035c07aSHugh Dickins  * You would expect the stable_node to hold a reference to the ksm page.
7254035c07aSHugh Dickins  * But if it increments the page's count, swapping out has to wait for
7264035c07aSHugh Dickins  * ksmd to come around again before it can free the page, which may take
7274035c07aSHugh Dickins  * seconds or even minutes: much too unresponsive.  So instead we use a
7284035c07aSHugh Dickins  * "keyhole reference": access to the ksm page from the stable node peeps
7294035c07aSHugh Dickins  * out through its keyhole to see if that page still holds the right key,
7304035c07aSHugh Dickins  * pointing back to this stable node.  This relies on freeing a PageAnon
7314035c07aSHugh Dickins  * page to reset its page->mapping to NULL, and relies on no other use of
7324035c07aSHugh Dickins  * a page to put something that might look like our key in page->mapping.
7334035c07aSHugh Dickins  * is on its way to being freed; but it is an anomaly to bear in mind.
7344035c07aSHugh Dickins  */
get_ksm_page(struct ksm_stable_node * stable_node,enum get_ksm_page_flags flags)73521fbd591SQi Zheng static struct page *get_ksm_page(struct ksm_stable_node *stable_node,
7362cee57d1SYang Shi 				 enum get_ksm_page_flags flags)
7374035c07aSHugh Dickins {
7384035c07aSHugh Dickins 	struct page *page;
7394035c07aSHugh Dickins 	void *expected_mapping;
740c8d6553bSHugh Dickins 	unsigned long kpfn;
7414035c07aSHugh Dickins 
742bda807d4SMinchan Kim 	expected_mapping = (void *)((unsigned long)stable_node |
743bda807d4SMinchan Kim 					PAGE_MAPPING_KSM);
744c8d6553bSHugh Dickins again:
74508df4774SPaul E. McKenney 	kpfn = READ_ONCE(stable_node->kpfn); /* Address dependency. */
746c8d6553bSHugh Dickins 	page = pfn_to_page(kpfn);
7474db0c3c2SJason Low 	if (READ_ONCE(page->mapping) != expected_mapping)
7484035c07aSHugh Dickins 		goto stale;
749c8d6553bSHugh Dickins 
750c8d6553bSHugh Dickins 	/*
751c8d6553bSHugh Dickins 	 * We cannot do anything with the page while its refcount is 0.
752c8d6553bSHugh Dickins 	 * Usually 0 means free, or tail of a higher-order page: in which
753c8d6553bSHugh Dickins 	 * case this node is no longer referenced, and should be freed;
7541c4c3b99SJiang Biao 	 * however, it might mean that the page is under page_ref_freeze().
755c8d6553bSHugh Dickins 	 * The __remove_mapping() case is easy, again the node is now stale;
75652d1e606SKirill Tkhai 	 * the same is in reuse_ksm_page() case; but if page is swapcache
7579800562fSMatthew Wilcox (Oracle) 	 * in folio_migrate_mapping(), it might still be our page,
75852d1e606SKirill Tkhai 	 * in which case it's essential to keep the node.
759c8d6553bSHugh Dickins 	 */
760c8d6553bSHugh Dickins 	while (!get_page_unless_zero(page)) {
761c8d6553bSHugh Dickins 		/*
762c8d6553bSHugh Dickins 		 * Another check for page->mapping != expected_mapping would
763c8d6553bSHugh Dickins 		 * work here too.  We have chosen the !PageSwapCache test to
764c8d6553bSHugh Dickins 		 * optimize the common case, when the page is or is about to
765c8d6553bSHugh Dickins 		 * be freed: PageSwapCache is cleared (under spin_lock_irq)
7661c4c3b99SJiang Biao 		 * in the ref_freeze section of __remove_mapping(); but Anon
767c8d6553bSHugh Dickins 		 * page->mapping reset to NULL later, in free_pages_prepare().
768c8d6553bSHugh Dickins 		 */
769c8d6553bSHugh Dickins 		if (!PageSwapCache(page))
7704035c07aSHugh Dickins 			goto stale;
771c8d6553bSHugh Dickins 		cpu_relax();
772c8d6553bSHugh Dickins 	}
773c8d6553bSHugh Dickins 
7744db0c3c2SJason Low 	if (READ_ONCE(page->mapping) != expected_mapping) {
7754035c07aSHugh Dickins 		put_page(page);
7764035c07aSHugh Dickins 		goto stale;
7774035c07aSHugh Dickins 	}
778c8d6553bSHugh Dickins 
7792cee57d1SYang Shi 	if (flags == GET_KSM_PAGE_TRYLOCK) {
7802cee57d1SYang Shi 		if (!trylock_page(page)) {
7812cee57d1SYang Shi 			put_page(page);
7822cee57d1SYang Shi 			return ERR_PTR(-EBUSY);
7832cee57d1SYang Shi 		}
7842cee57d1SYang Shi 	} else if (flags == GET_KSM_PAGE_LOCK)
7858aafa6a4SHugh Dickins 		lock_page(page);
7862cee57d1SYang Shi 
7872cee57d1SYang Shi 	if (flags != GET_KSM_PAGE_NOLOCK) {
7884db0c3c2SJason Low 		if (READ_ONCE(page->mapping) != expected_mapping) {
7898aafa6a4SHugh Dickins 			unlock_page(page);
7908aafa6a4SHugh Dickins 			put_page(page);
7918aafa6a4SHugh Dickins 			goto stale;
7928aafa6a4SHugh Dickins 		}
7938aafa6a4SHugh Dickins 	}
7944035c07aSHugh Dickins 	return page;
795c8d6553bSHugh Dickins 
7964035c07aSHugh Dickins stale:
797c8d6553bSHugh Dickins 	/*
798c8d6553bSHugh Dickins 	 * We come here from above when page->mapping or !PageSwapCache
799c8d6553bSHugh Dickins 	 * suggests that the node is stale; but it might be under migration.
80019138349SMatthew Wilcox (Oracle) 	 * We need smp_rmb(), matching the smp_wmb() in folio_migrate_ksm(),
801c8d6553bSHugh Dickins 	 * before checking whether node->kpfn has been changed.
802c8d6553bSHugh Dickins 	 */
803c8d6553bSHugh Dickins 	smp_rmb();
8044db0c3c2SJason Low 	if (READ_ONCE(stable_node->kpfn) != kpfn)
805c8d6553bSHugh Dickins 		goto again;
8064035c07aSHugh Dickins 	remove_node_from_stable_tree(stable_node);
8074035c07aSHugh Dickins 	return NULL;
8084035c07aSHugh Dickins }
8094035c07aSHugh Dickins 
81031dbd01fSIzik Eidus /*
81131dbd01fSIzik Eidus  * Removing rmap_item from stable or unstable tree.
81231dbd01fSIzik Eidus  * This function will clean the information from the stable/unstable tree.
81331dbd01fSIzik Eidus  */
remove_rmap_item_from_tree(struct ksm_rmap_item * rmap_item)81421fbd591SQi Zheng static void remove_rmap_item_from_tree(struct ksm_rmap_item *rmap_item)
81531dbd01fSIzik Eidus {
8167b6ba2c7SHugh Dickins 	if (rmap_item->address & STABLE_FLAG) {
81721fbd591SQi Zheng 		struct ksm_stable_node *stable_node;
8185ad64688SHugh Dickins 		struct page *page;
81931dbd01fSIzik Eidus 
8207b6ba2c7SHugh Dickins 		stable_node = rmap_item->head;
82162862290SHugh Dickins 		page = get_ksm_page(stable_node, GET_KSM_PAGE_LOCK);
8224035c07aSHugh Dickins 		if (!page)
8234035c07aSHugh Dickins 			goto out;
8245ad64688SHugh Dickins 
8257b6ba2c7SHugh Dickins 		hlist_del(&rmap_item->hlist);
82662862290SHugh Dickins 		unlock_page(page);
8275ad64688SHugh Dickins 		put_page(page);
82808beca44SHugh Dickins 
82998666f8aSAndrea Arcangeli 		if (!hlist_empty(&stable_node->hlist))
8304035c07aSHugh Dickins 			ksm_pages_sharing--;
8314035c07aSHugh Dickins 		else
832b4028260SHugh Dickins 			ksm_pages_shared--;
83376093853Sxu xin 
83476093853Sxu xin 		rmap_item->mm->ksm_merging_pages--;
83576093853Sxu xin 
8362c653d0eSAndrea Arcangeli 		VM_BUG_ON(stable_node->rmap_hlist_len <= 0);
8372c653d0eSAndrea Arcangeli 		stable_node->rmap_hlist_len--;
83831dbd01fSIzik Eidus 
8399e60109fSPeter Zijlstra 		put_anon_vma(rmap_item->anon_vma);
840c89a384eSMiaohe Lin 		rmap_item->head = NULL;
84193d17715SHugh Dickins 		rmap_item->address &= PAGE_MASK;
84231dbd01fSIzik Eidus 
8437b6ba2c7SHugh Dickins 	} else if (rmap_item->address & UNSTABLE_FLAG) {
84431dbd01fSIzik Eidus 		unsigned char age;
84531dbd01fSIzik Eidus 		/*
8469ba69294SHugh Dickins 		 * Usually ksmd can and must skip the rb_erase, because
84731dbd01fSIzik Eidus 		 * root_unstable_tree was already reset to RB_ROOT.
8489ba69294SHugh Dickins 		 * But be careful when an mm is exiting: do the rb_erase
8499ba69294SHugh Dickins 		 * if this rmap_item was inserted by this scan, rather
8509ba69294SHugh Dickins 		 * than left over from before.
85131dbd01fSIzik Eidus 		 */
85231dbd01fSIzik Eidus 		age = (unsigned char)(ksm_scan.seqnr - rmap_item->address);
853cd551f97SHugh Dickins 		BUG_ON(age > 1);
85431dbd01fSIzik Eidus 		if (!age)
85590bd6fd3SPetr Holasek 			rb_erase(&rmap_item->node,
856ef53d16cSHugh Dickins 				 root_unstable_tree + NUMA(rmap_item->nid));
85793d17715SHugh Dickins 		ksm_pages_unshared--;
85831dbd01fSIzik Eidus 		rmap_item->address &= PAGE_MASK;
85993d17715SHugh Dickins 	}
8604035c07aSHugh Dickins out:
86131dbd01fSIzik Eidus 	cond_resched();		/* we're called from many long loops */
86231dbd01fSIzik Eidus }
86331dbd01fSIzik Eidus 
remove_trailing_rmap_items(struct ksm_rmap_item ** rmap_list)86421fbd591SQi Zheng static void remove_trailing_rmap_items(struct ksm_rmap_item **rmap_list)
86531dbd01fSIzik Eidus {
8666514d511SHugh Dickins 	while (*rmap_list) {
86721fbd591SQi Zheng 		struct ksm_rmap_item *rmap_item = *rmap_list;
8686514d511SHugh Dickins 		*rmap_list = rmap_item->rmap_list;
86931dbd01fSIzik Eidus 		remove_rmap_item_from_tree(rmap_item);
87031dbd01fSIzik Eidus 		free_rmap_item(rmap_item);
87131dbd01fSIzik Eidus 	}
87231dbd01fSIzik Eidus }
87331dbd01fSIzik Eidus 
87431dbd01fSIzik Eidus /*
875e850dcf5SHugh Dickins  * Though it's very tempting to unmerge rmap_items from stable tree rather
87631dbd01fSIzik Eidus  * than check every pte of a given vma, the locking doesn't quite work for
87731dbd01fSIzik Eidus  * that - an rmap_item is assigned to the stable tree after inserting ksm
878c1e8d7c6SMichel Lespinasse  * page and upping mmap_lock.  Nor does it fit with the way we skip dup'ing
87931dbd01fSIzik Eidus  * rmap_items from parent to child at fork time (so as not to waste time
88031dbd01fSIzik Eidus  * if exit comes before the next scan reaches it).
88181464e30SHugh Dickins  *
88281464e30SHugh Dickins  * Similarly, although we'd like to remove rmap_items (so updating counts
88381464e30SHugh Dickins  * and freeing memory) when unmerging an area, it's easier to leave that
88481464e30SHugh Dickins  * to the next pass of ksmd - consider, for example, how ksmd might be
88581464e30SHugh Dickins  * in cmp_and_merge_page on one of the rmap_items we would be removing.
88631dbd01fSIzik Eidus  */
unmerge_ksm_pages(struct vm_area_struct * vma,unsigned long start,unsigned long end,bool lock_vma)887d952b791SHugh Dickins static int unmerge_ksm_pages(struct vm_area_struct *vma,
88849b06385SSuren Baghdasaryan 			     unsigned long start, unsigned long end, bool lock_vma)
88931dbd01fSIzik Eidus {
89031dbd01fSIzik Eidus 	unsigned long addr;
891d952b791SHugh Dickins 	int err = 0;
89231dbd01fSIzik Eidus 
893d952b791SHugh Dickins 	for (addr = start; addr < end && !err; addr += PAGE_SIZE) {
8949ba69294SHugh Dickins 		if (ksm_test_exit(vma->vm_mm))
8959ba69294SHugh Dickins 			break;
896d952b791SHugh Dickins 		if (signal_pending(current))
897d952b791SHugh Dickins 			err = -ERESTARTSYS;
898d952b791SHugh Dickins 		else
89949b06385SSuren Baghdasaryan 			err = break_ksm(vma, addr, lock_vma);
900d952b791SHugh Dickins 	}
901d952b791SHugh Dickins 	return err;
90231dbd01fSIzik Eidus }
90331dbd01fSIzik Eidus 
folio_stable_node(struct folio * folio)90421fbd591SQi Zheng static inline struct ksm_stable_node *folio_stable_node(struct folio *folio)
90519138349SMatthew Wilcox (Oracle) {
90619138349SMatthew Wilcox (Oracle) 	return folio_test_ksm(folio) ? folio_raw_mapping(folio) : NULL;
90719138349SMatthew Wilcox (Oracle) }
90819138349SMatthew Wilcox (Oracle) 
page_stable_node(struct page * page)90921fbd591SQi Zheng static inline struct ksm_stable_node *page_stable_node(struct page *page)
91088484826SMike Rapoport {
91119138349SMatthew Wilcox (Oracle) 	return folio_stable_node(page_folio(page));
91288484826SMike Rapoport }
91388484826SMike Rapoport 
set_page_stable_node(struct page * page,struct ksm_stable_node * stable_node)91488484826SMike Rapoport static inline void set_page_stable_node(struct page *page,
91521fbd591SQi Zheng 					struct ksm_stable_node *stable_node)
91688484826SMike Rapoport {
9176c287605SDavid Hildenbrand 	VM_BUG_ON_PAGE(PageAnon(page) && PageAnonExclusive(page), page);
91888484826SMike Rapoport 	page->mapping = (void *)((unsigned long)stable_node | PAGE_MAPPING_KSM);
91988484826SMike Rapoport }
92088484826SMike Rapoport 
9212ffd8679SHugh Dickins #ifdef CONFIG_SYSFS
9222ffd8679SHugh Dickins /*
9232ffd8679SHugh Dickins  * Only called through the sysfs control interface:
9242ffd8679SHugh Dickins  */
remove_stable_node(struct ksm_stable_node * stable_node)92521fbd591SQi Zheng static int remove_stable_node(struct ksm_stable_node *stable_node)
926cbf86cfeSHugh Dickins {
927cbf86cfeSHugh Dickins 	struct page *page;
928cbf86cfeSHugh Dickins 	int err;
929cbf86cfeSHugh Dickins 
9302cee57d1SYang Shi 	page = get_ksm_page(stable_node, GET_KSM_PAGE_LOCK);
931cbf86cfeSHugh Dickins 	if (!page) {
932cbf86cfeSHugh Dickins 		/*
933cbf86cfeSHugh Dickins 		 * get_ksm_page did remove_node_from_stable_tree itself.
934cbf86cfeSHugh Dickins 		 */
935cbf86cfeSHugh Dickins 		return 0;
936cbf86cfeSHugh Dickins 	}
937cbf86cfeSHugh Dickins 
938cbf86cfeSHugh Dickins 	/*
9399a63236fSAndrey Ryabinin 	 * Page could be still mapped if this races with __mmput() running in
9409a63236fSAndrey Ryabinin 	 * between ksm_exit() and exit_mmap(). Just refuse to let
9419a63236fSAndrey Ryabinin 	 * merge_across_nodes/max_page_sharing be switched.
9428fdb3dbfSHugh Dickins 	 */
9438fdb3dbfSHugh Dickins 	err = -EBUSY;
9449a63236fSAndrey Ryabinin 	if (!page_mapped(page)) {
9458fdb3dbfSHugh Dickins 		/*
9468fdb3dbfSHugh Dickins 		 * The stable node did not yet appear stale to get_ksm_page(),
9478fdb3dbfSHugh Dickins 		 * since that allows for an unmapped ksm page to be recognized
9488fdb3dbfSHugh Dickins 		 * right up until it is freed; but the node is safe to remove.
9491fec6890SMatthew Wilcox (Oracle) 		 * This page might be in an LRU cache waiting to be freed,
950cbf86cfeSHugh Dickins 		 * or it might be PageSwapCache (perhaps under writeback),
951cbf86cfeSHugh Dickins 		 * or it might have been removed from swapcache a moment ago.
952cbf86cfeSHugh Dickins 		 */
953cbf86cfeSHugh Dickins 		set_page_stable_node(page, NULL);
954cbf86cfeSHugh Dickins 		remove_node_from_stable_tree(stable_node);
955cbf86cfeSHugh Dickins 		err = 0;
956cbf86cfeSHugh Dickins 	}
957cbf86cfeSHugh Dickins 
958cbf86cfeSHugh Dickins 	unlock_page(page);
959cbf86cfeSHugh Dickins 	put_page(page);
960cbf86cfeSHugh Dickins 	return err;
961cbf86cfeSHugh Dickins }
962cbf86cfeSHugh Dickins 
remove_stable_node_chain(struct ksm_stable_node * stable_node,struct rb_root * root)96321fbd591SQi Zheng static int remove_stable_node_chain(struct ksm_stable_node *stable_node,
9642c653d0eSAndrea Arcangeli 				    struct rb_root *root)
9652c653d0eSAndrea Arcangeli {
96621fbd591SQi Zheng 	struct ksm_stable_node *dup;
9672c653d0eSAndrea Arcangeli 	struct hlist_node *hlist_safe;
9682c653d0eSAndrea Arcangeli 
9692c653d0eSAndrea Arcangeli 	if (!is_stable_node_chain(stable_node)) {
9702c653d0eSAndrea Arcangeli 		VM_BUG_ON(is_stable_node_dup(stable_node));
9712c653d0eSAndrea Arcangeli 		if (remove_stable_node(stable_node))
9722c653d0eSAndrea Arcangeli 			return true;
9732c653d0eSAndrea Arcangeli 		else
9742c653d0eSAndrea Arcangeli 			return false;
9752c653d0eSAndrea Arcangeli 	}
9762c653d0eSAndrea Arcangeli 
9772c653d0eSAndrea Arcangeli 	hlist_for_each_entry_safe(dup, hlist_safe,
9782c653d0eSAndrea Arcangeli 				  &stable_node->hlist, hlist_dup) {
9792c653d0eSAndrea Arcangeli 		VM_BUG_ON(!is_stable_node_dup(dup));
9802c653d0eSAndrea Arcangeli 		if (remove_stable_node(dup))
9812c653d0eSAndrea Arcangeli 			return true;
9822c653d0eSAndrea Arcangeli 	}
9832c653d0eSAndrea Arcangeli 	BUG_ON(!hlist_empty(&stable_node->hlist));
9842c653d0eSAndrea Arcangeli 	free_stable_node_chain(stable_node, root);
9852c653d0eSAndrea Arcangeli 	return false;
9862c653d0eSAndrea Arcangeli }
9872c653d0eSAndrea Arcangeli 
remove_all_stable_nodes(void)988cbf86cfeSHugh Dickins static int remove_all_stable_nodes(void)
989cbf86cfeSHugh Dickins {
99021fbd591SQi Zheng 	struct ksm_stable_node *stable_node, *next;
991cbf86cfeSHugh Dickins 	int nid;
992cbf86cfeSHugh Dickins 	int err = 0;
993cbf86cfeSHugh Dickins 
994ef53d16cSHugh Dickins 	for (nid = 0; nid < ksm_nr_node_ids; nid++) {
995cbf86cfeSHugh Dickins 		while (root_stable_tree[nid].rb_node) {
996cbf86cfeSHugh Dickins 			stable_node = rb_entry(root_stable_tree[nid].rb_node,
99721fbd591SQi Zheng 						struct ksm_stable_node, node);
9982c653d0eSAndrea Arcangeli 			if (remove_stable_node_chain(stable_node,
9992c653d0eSAndrea Arcangeli 						     root_stable_tree + nid)) {
1000cbf86cfeSHugh Dickins 				err = -EBUSY;
1001cbf86cfeSHugh Dickins 				break;	/* proceed to next nid */
1002cbf86cfeSHugh Dickins 			}
1003cbf86cfeSHugh Dickins 			cond_resched();
1004cbf86cfeSHugh Dickins 		}
1005cbf86cfeSHugh Dickins 	}
100603640418SGeliang Tang 	list_for_each_entry_safe(stable_node, next, &migrate_nodes, list) {
10074146d2d6SHugh Dickins 		if (remove_stable_node(stable_node))
10084146d2d6SHugh Dickins 			err = -EBUSY;
10094146d2d6SHugh Dickins 		cond_resched();
10104146d2d6SHugh Dickins 	}
1011cbf86cfeSHugh Dickins 	return err;
1012cbf86cfeSHugh Dickins }
1013cbf86cfeSHugh Dickins 
unmerge_and_remove_all_rmap_items(void)1014d952b791SHugh Dickins static int unmerge_and_remove_all_rmap_items(void)
101531dbd01fSIzik Eidus {
101621fbd591SQi Zheng 	struct ksm_mm_slot *mm_slot;
101758730ab6SQi Zheng 	struct mm_slot *slot;
101831dbd01fSIzik Eidus 	struct mm_struct *mm;
101931dbd01fSIzik Eidus 	struct vm_area_struct *vma;
1020d952b791SHugh Dickins 	int err = 0;
102131dbd01fSIzik Eidus 
1022d952b791SHugh Dickins 	spin_lock(&ksm_mmlist_lock);
102358730ab6SQi Zheng 	slot = list_entry(ksm_mm_head.slot.mm_node.next,
102458730ab6SQi Zheng 			  struct mm_slot, mm_node);
102558730ab6SQi Zheng 	ksm_scan.mm_slot = mm_slot_entry(slot, struct ksm_mm_slot, slot);
1026d952b791SHugh Dickins 	spin_unlock(&ksm_mmlist_lock);
1027d952b791SHugh Dickins 
1028a5f18ba0SMatthew Wilcox (Oracle) 	for (mm_slot = ksm_scan.mm_slot; mm_slot != &ksm_mm_head;
1029a5f18ba0SMatthew Wilcox (Oracle) 	     mm_slot = ksm_scan.mm_slot) {
103058730ab6SQi Zheng 		VMA_ITERATOR(vmi, mm_slot->slot.mm, 0);
1031a5f18ba0SMatthew Wilcox (Oracle) 
103258730ab6SQi Zheng 		mm = mm_slot->slot.mm;
1033d8ed45c5SMichel Lespinasse 		mmap_read_lock(mm);
10346db504ceSLiam R. Howlett 
10356db504ceSLiam R. Howlett 		/*
10366db504ceSLiam R. Howlett 		 * Exit right away if mm is exiting to avoid lockdep issue in
10376db504ceSLiam R. Howlett 		 * the maple tree
10386db504ceSLiam R. Howlett 		 */
10399ba69294SHugh Dickins 		if (ksm_test_exit(mm))
10406db504ceSLiam R. Howlett 			goto mm_exiting;
10416db504ceSLiam R. Howlett 
10426db504ceSLiam R. Howlett 		for_each_vma(vmi, vma) {
104331dbd01fSIzik Eidus 			if (!(vma->vm_flags & VM_MERGEABLE) || !vma->anon_vma)
104431dbd01fSIzik Eidus 				continue;
1045d952b791SHugh Dickins 			err = unmerge_ksm_pages(vma,
104649b06385SSuren Baghdasaryan 						vma->vm_start, vma->vm_end, false);
10479ba69294SHugh Dickins 			if (err)
10489ba69294SHugh Dickins 				goto error;
1049d952b791SHugh Dickins 		}
10509ba69294SHugh Dickins 
10516db504ceSLiam R. Howlett mm_exiting:
1052420be4edSChengyang Fan 		remove_trailing_rmap_items(&mm_slot->rmap_list);
1053d8ed45c5SMichel Lespinasse 		mmap_read_unlock(mm);
105431dbd01fSIzik Eidus 
105531dbd01fSIzik Eidus 		spin_lock(&ksm_mmlist_lock);
105658730ab6SQi Zheng 		slot = list_entry(mm_slot->slot.mm_node.next,
105758730ab6SQi Zheng 				  struct mm_slot, mm_node);
105858730ab6SQi Zheng 		ksm_scan.mm_slot = mm_slot_entry(slot, struct ksm_mm_slot, slot);
10599ba69294SHugh Dickins 		if (ksm_test_exit(mm)) {
106058730ab6SQi Zheng 			hash_del(&mm_slot->slot.hash);
106158730ab6SQi Zheng 			list_del(&mm_slot->slot.mm_node);
106231dbd01fSIzik Eidus 			spin_unlock(&ksm_mmlist_lock);
10639ba69294SHugh Dickins 
106458730ab6SQi Zheng 			mm_slot_free(mm_slot_cache, mm_slot);
10659ba69294SHugh Dickins 			clear_bit(MMF_VM_MERGEABLE, &mm->flags);
1066d7597f59SStefan Roesch 			clear_bit(MMF_VM_MERGE_ANY, &mm->flags);
10679ba69294SHugh Dickins 			mmdrop(mm);
10687496fea9SZhou Chengming 		} else
10699ba69294SHugh Dickins 			spin_unlock(&ksm_mmlist_lock);
107031dbd01fSIzik Eidus 	}
107131dbd01fSIzik Eidus 
1072cbf86cfeSHugh Dickins 	/* Clean up stable nodes, but don't worry if some are still busy */
1073cbf86cfeSHugh Dickins 	remove_all_stable_nodes();
1074d952b791SHugh Dickins 	ksm_scan.seqnr = 0;
10759ba69294SHugh Dickins 	return 0;
10769ba69294SHugh Dickins 
10779ba69294SHugh Dickins error:
1078d8ed45c5SMichel Lespinasse 	mmap_read_unlock(mm);
1079d952b791SHugh Dickins 	spin_lock(&ksm_mmlist_lock);
1080d952b791SHugh Dickins 	ksm_scan.mm_slot = &ksm_mm_head;
1081d952b791SHugh Dickins 	spin_unlock(&ksm_mmlist_lock);
1082d952b791SHugh Dickins 	return err;
1083d952b791SHugh Dickins }
10842ffd8679SHugh Dickins #endif /* CONFIG_SYSFS */
1085d952b791SHugh Dickins 
calc_checksum(struct page * page)108631dbd01fSIzik Eidus static u32 calc_checksum(struct page *page)
108731dbd01fSIzik Eidus {
108831dbd01fSIzik Eidus 	u32 checksum;
10899b04c5feSCong Wang 	void *addr = kmap_atomic(page);
109059e1a2f4STimofey Titovets 	checksum = xxhash(addr, PAGE_SIZE, 0);
10919b04c5feSCong Wang 	kunmap_atomic(addr);
109231dbd01fSIzik Eidus 	return checksum;
109331dbd01fSIzik Eidus }
109431dbd01fSIzik Eidus 
write_protect_page(struct vm_area_struct * vma,struct page * page,pte_t * orig_pte)109531dbd01fSIzik Eidus static int write_protect_page(struct vm_area_struct *vma, struct page *page,
109631dbd01fSIzik Eidus 			      pte_t *orig_pte)
109731dbd01fSIzik Eidus {
109831dbd01fSIzik Eidus 	struct mm_struct *mm = vma->vm_mm;
1099eed05e54SMatthew Wilcox (Oracle) 	DEFINE_PAGE_VMA_WALK(pvmw, page, vma, 0, 0);
110031dbd01fSIzik Eidus 	int swapped;
110131dbd01fSIzik Eidus 	int err = -EFAULT;
1102ac46d4f3SJérôme Glisse 	struct mmu_notifier_range range;
11036c287605SDavid Hildenbrand 	bool anon_exclusive;
1104c33c7948SRyan Roberts 	pte_t entry;
110531dbd01fSIzik Eidus 
110636eaff33SKirill A. Shutemov 	pvmw.address = page_address_in_vma(page, vma);
110736eaff33SKirill A. Shutemov 	if (pvmw.address == -EFAULT)
110831dbd01fSIzik Eidus 		goto out;
110931dbd01fSIzik Eidus 
111029ad768cSAndrea Arcangeli 	BUG_ON(PageTransCompound(page));
11116bdb913fSHaggai Eran 
11127d4a8be0SAlistair Popple 	mmu_notifier_range_init(&range, MMU_NOTIFY_CLEAR, 0, mm, pvmw.address,
1113ac46d4f3SJérôme Glisse 				pvmw.address + PAGE_SIZE);
1114ac46d4f3SJérôme Glisse 	mmu_notifier_invalidate_range_start(&range);
11156bdb913fSHaggai Eran 
111636eaff33SKirill A. Shutemov 	if (!page_vma_mapped_walk(&pvmw))
11176bdb913fSHaggai Eran 		goto out_mn;
111836eaff33SKirill A. Shutemov 	if (WARN_ONCE(!pvmw.pte, "Unexpected PMD mapping?"))
111936eaff33SKirill A. Shutemov 		goto out_unlock;
112031dbd01fSIzik Eidus 
11216c287605SDavid Hildenbrand 	anon_exclusive = PageAnonExclusive(page);
1122c33c7948SRyan Roberts 	entry = ptep_get(pvmw.pte);
1123c33c7948SRyan Roberts 	if (pte_write(entry) || pte_dirty(entry) ||
11246c287605SDavid Hildenbrand 	    anon_exclusive || mm_tlb_flush_pending(mm)) {
112531dbd01fSIzik Eidus 		swapped = PageSwapCache(page);
112636eaff33SKirill A. Shutemov 		flush_cache_page(vma, pvmw.address, page_to_pfn(page));
112731dbd01fSIzik Eidus 		/*
112825985edcSLucas De Marchi 		 * Ok this is tricky, when get_user_pages_fast() run it doesn't
112931dbd01fSIzik Eidus 		 * take any lock, therefore the check that we are going to make
1130f0953a1bSIngo Molnar 		 * with the pagecount against the mapcount is racy and
113131dbd01fSIzik Eidus 		 * O_DIRECT can happen right after the check.
113231dbd01fSIzik Eidus 		 * So we clear the pte and flush the tlb before the check
113331dbd01fSIzik Eidus 		 * this assure us that no O_DIRECT can happen after the check
113431dbd01fSIzik Eidus 		 * or in the middle of the check.
11350f10851eSJérôme Glisse 		 *
11360f10851eSJérôme Glisse 		 * No need to notify as we are downgrading page table to read
11370f10851eSJérôme Glisse 		 * only not changing it to point to a new page.
11380f10851eSJérôme Glisse 		 *
1139ee65728eSMike Rapoport 		 * See Documentation/mm/mmu_notifier.rst
114031dbd01fSIzik Eidus 		 */
11410f10851eSJérôme Glisse 		entry = ptep_clear_flush(vma, pvmw.address, pvmw.pte);
114231dbd01fSIzik Eidus 		/*
114331dbd01fSIzik Eidus 		 * Check that no O_DIRECT or similar I/O is in progress on the
114431dbd01fSIzik Eidus 		 * page
114531dbd01fSIzik Eidus 		 */
114631e855eaSHugh Dickins 		if (page_mapcount(page) + 1 + swapped != page_count(page)) {
114736eaff33SKirill A. Shutemov 			set_pte_at(mm, pvmw.address, pvmw.pte, entry);
114831dbd01fSIzik Eidus 			goto out_unlock;
114931dbd01fSIzik Eidus 		}
11506c287605SDavid Hildenbrand 
1151088b8aa5SDavid Hildenbrand 		/* See page_try_share_anon_rmap(): clear PTE first. */
11526c287605SDavid Hildenbrand 		if (anon_exclusive && page_try_share_anon_rmap(page)) {
11536c287605SDavid Hildenbrand 			set_pte_at(mm, pvmw.address, pvmw.pte, entry);
11546c287605SDavid Hildenbrand 			goto out_unlock;
11556c287605SDavid Hildenbrand 		}
11566c287605SDavid Hildenbrand 
11574e31635cSHugh Dickins 		if (pte_dirty(entry))
11584e31635cSHugh Dickins 			set_page_dirty(page);
11596a56ccbcSDavid Hildenbrand 		entry = pte_mkclean(entry);
1160595cd8f2SAneesh Kumar K.V 
11616a56ccbcSDavid Hildenbrand 		if (pte_write(entry))
11626a56ccbcSDavid Hildenbrand 			entry = pte_wrprotect(entry);
11636a56ccbcSDavid Hildenbrand 
116436eaff33SKirill A. Shutemov 		set_pte_at_notify(mm, pvmw.address, pvmw.pte, entry);
116531dbd01fSIzik Eidus 	}
1166c33c7948SRyan Roberts 	*orig_pte = entry;
116731dbd01fSIzik Eidus 	err = 0;
116831dbd01fSIzik Eidus 
116931dbd01fSIzik Eidus out_unlock:
117036eaff33SKirill A. Shutemov 	page_vma_mapped_walk_done(&pvmw);
11716bdb913fSHaggai Eran out_mn:
1172ac46d4f3SJérôme Glisse 	mmu_notifier_invalidate_range_end(&range);
117331dbd01fSIzik Eidus out:
117431dbd01fSIzik Eidus 	return err;
117531dbd01fSIzik Eidus }
117631dbd01fSIzik Eidus 
117731dbd01fSIzik Eidus /**
117831dbd01fSIzik Eidus  * replace_page - replace page in vma by new ksm page
11798dd3557aSHugh Dickins  * @vma:      vma that holds the pte pointing to page
11808dd3557aSHugh Dickins  * @page:     the page we are replacing by kpage
11818dd3557aSHugh Dickins  * @kpage:    the ksm page we replace page by
118231dbd01fSIzik Eidus  * @orig_pte: the original value of the pte
118331dbd01fSIzik Eidus  *
118431dbd01fSIzik Eidus  * Returns 0 on success, -EFAULT on failure.
118531dbd01fSIzik Eidus  */
replace_page(struct vm_area_struct * vma,struct page * page,struct page * kpage,pte_t orig_pte)11868dd3557aSHugh Dickins static int replace_page(struct vm_area_struct *vma, struct page *page,
11878dd3557aSHugh Dickins 			struct page *kpage, pte_t orig_pte)
118831dbd01fSIzik Eidus {
118931dbd01fSIzik Eidus 	struct mm_struct *mm = vma->vm_mm;
1190b4e6f66eSMatthew Wilcox (Oracle) 	struct folio *folio;
119131dbd01fSIzik Eidus 	pmd_t *pmd;
119250722804SZach O'Keefe 	pmd_t pmde;
119331dbd01fSIzik Eidus 	pte_t *ptep;
1194e86c59b1SClaudio Imbrenda 	pte_t newpte;
119531dbd01fSIzik Eidus 	spinlock_t *ptl;
119631dbd01fSIzik Eidus 	unsigned long addr;
119731dbd01fSIzik Eidus 	int err = -EFAULT;
1198ac46d4f3SJérôme Glisse 	struct mmu_notifier_range range;
119931dbd01fSIzik Eidus 
12008dd3557aSHugh Dickins 	addr = page_address_in_vma(page, vma);
120131dbd01fSIzik Eidus 	if (addr == -EFAULT)
120231dbd01fSIzik Eidus 		goto out;
120331dbd01fSIzik Eidus 
12046219049aSBob Liu 	pmd = mm_find_pmd(mm, addr);
12056219049aSBob Liu 	if (!pmd)
120631dbd01fSIzik Eidus 		goto out;
120750722804SZach O'Keefe 	/*
120850722804SZach O'Keefe 	 * Some THP functions use the sequence pmdp_huge_clear_flush(), set_pmd_at()
120950722804SZach O'Keefe 	 * without holding anon_vma lock for write.  So when looking for a
121050722804SZach O'Keefe 	 * genuine pmde (in which to find pte), test present and !THP together.
121150722804SZach O'Keefe 	 */
121226e1a0c3SHugh Dickins 	pmde = pmdp_get_lockless(pmd);
121350722804SZach O'Keefe 	if (!pmd_present(pmde) || pmd_trans_huge(pmde))
121450722804SZach O'Keefe 		goto out;
121531dbd01fSIzik Eidus 
12167d4a8be0SAlistair Popple 	mmu_notifier_range_init(&range, MMU_NOTIFY_CLEAR, 0, mm, addr,
12176f4f13e8SJérôme Glisse 				addr + PAGE_SIZE);
1218ac46d4f3SJérôme Glisse 	mmu_notifier_invalidate_range_start(&range);
12196bdb913fSHaggai Eran 
122031dbd01fSIzik Eidus 	ptep = pte_offset_map_lock(mm, pmd, addr, &ptl);
122104dee9e8SHugh Dickins 	if (!ptep)
122204dee9e8SHugh Dickins 		goto out_mn;
1223c33c7948SRyan Roberts 	if (!pte_same(ptep_get(ptep), orig_pte)) {
122431dbd01fSIzik Eidus 		pte_unmap_unlock(ptep, ptl);
12256bdb913fSHaggai Eran 		goto out_mn;
122631dbd01fSIzik Eidus 	}
12276c287605SDavid Hildenbrand 	VM_BUG_ON_PAGE(PageAnonExclusive(page), page);
12286c287605SDavid Hildenbrand 	VM_BUG_ON_PAGE(PageAnon(kpage) && PageAnonExclusive(kpage), kpage);
122931dbd01fSIzik Eidus 
1230e86c59b1SClaudio Imbrenda 	/*
1231e86c59b1SClaudio Imbrenda 	 * No need to check ksm_use_zero_pages here: we can only have a
1232457aef94SEthon Paul 	 * zero_page here if ksm_use_zero_pages was enabled already.
1233e86c59b1SClaudio Imbrenda 	 */
1234e86c59b1SClaudio Imbrenda 	if (!is_zero_pfn(page_to_pfn(kpage))) {
12358dd3557aSHugh Dickins 		get_page(kpage);
1236f1e2db12SDavid Hildenbrand 		page_add_anon_rmap(kpage, vma, addr, RMAP_NONE);
1237e86c59b1SClaudio Imbrenda 		newpte = mk_pte(kpage, vma->vm_page_prot);
1238e86c59b1SClaudio Imbrenda 	} else {
123979271476Sxu xin 		/*
124079271476Sxu xin 		 * Use pte_mkdirty to mark the zero page mapped by KSM, and then
124179271476Sxu xin 		 * we can easily track all KSM-placed zero pages by checking if
124279271476Sxu xin 		 * the dirty bit in zero page's PTE is set.
124379271476Sxu xin 		 */
124479271476Sxu xin 		newpte = pte_mkdirty(pte_mkspecial(pfn_pte(page_to_pfn(kpage), vma->vm_page_prot)));
1245*99ed145fSChengming Zhou 		ksm_map_zero_page(mm);
1246a38c015fSClaudio Imbrenda 		/*
1247a38c015fSClaudio Imbrenda 		 * We're replacing an anonymous page with a zero page, which is
1248a38c015fSClaudio Imbrenda 		 * not anonymous. We need to do proper accounting otherwise we
1249a38c015fSClaudio Imbrenda 		 * will get wrong values in /proc, and a BUG message in dmesg
1250a38c015fSClaudio Imbrenda 		 * when tearing down the mm.
1251a38c015fSClaudio Imbrenda 		 */
1252a38c015fSClaudio Imbrenda 		dec_mm_counter(mm, MM_ANONPAGES);
1253e86c59b1SClaudio Imbrenda 	}
125431dbd01fSIzik Eidus 
1255c33c7948SRyan Roberts 	flush_cache_page(vma, addr, pte_pfn(ptep_get(ptep)));
12560f10851eSJérôme Glisse 	/*
12570f10851eSJérôme Glisse 	 * No need to notify as we are replacing a read only page with another
12580f10851eSJérôme Glisse 	 * read only page with the same content.
12590f10851eSJérôme Glisse 	 *
1260ee65728eSMike Rapoport 	 * See Documentation/mm/mmu_notifier.rst
12610f10851eSJérôme Glisse 	 */
12620f10851eSJérôme Glisse 	ptep_clear_flush(vma, addr, ptep);
1263e86c59b1SClaudio Imbrenda 	set_pte_at_notify(mm, addr, ptep, newpte);
126431dbd01fSIzik Eidus 
1265b4e6f66eSMatthew Wilcox (Oracle) 	folio = page_folio(page);
1266cea86fe2SHugh Dickins 	page_remove_rmap(page, vma, false);
1267b4e6f66eSMatthew Wilcox (Oracle) 	if (!folio_mapped(folio))
1268b4e6f66eSMatthew Wilcox (Oracle) 		folio_free_swap(folio);
1269b4e6f66eSMatthew Wilcox (Oracle) 	folio_put(folio);
127031dbd01fSIzik Eidus 
127131dbd01fSIzik Eidus 	pte_unmap_unlock(ptep, ptl);
127231dbd01fSIzik Eidus 	err = 0;
12736bdb913fSHaggai Eran out_mn:
1274ac46d4f3SJérôme Glisse 	mmu_notifier_invalidate_range_end(&range);
127531dbd01fSIzik Eidus out:
127631dbd01fSIzik Eidus 	return err;
127731dbd01fSIzik Eidus }
127831dbd01fSIzik Eidus 
127931dbd01fSIzik Eidus /*
128031dbd01fSIzik Eidus  * try_to_merge_one_page - take two pages and merge them into one
12818dd3557aSHugh Dickins  * @vma: the vma that holds the pte pointing to page
12828dd3557aSHugh Dickins  * @page: the PageAnon page that we want to replace with kpage
128380e14822SHugh Dickins  * @kpage: the PageKsm page that we want to map instead of page,
128480e14822SHugh Dickins  *         or NULL the first time when we want to use page as kpage.
128531dbd01fSIzik Eidus  *
128631dbd01fSIzik Eidus  * This function returns 0 if the pages were merged, -EFAULT otherwise.
128731dbd01fSIzik Eidus  */
try_to_merge_one_page(struct vm_area_struct * vma,struct page * page,struct page * kpage)128831dbd01fSIzik Eidus static int try_to_merge_one_page(struct vm_area_struct *vma,
12898dd3557aSHugh Dickins 				 struct page *page, struct page *kpage)
129031dbd01fSIzik Eidus {
129131dbd01fSIzik Eidus 	pte_t orig_pte = __pte(0);
129231dbd01fSIzik Eidus 	int err = -EFAULT;
129331dbd01fSIzik Eidus 
1294db114b83SHugh Dickins 	if (page == kpage)			/* ksm page forked */
1295db114b83SHugh Dickins 		return 0;
1296db114b83SHugh Dickins 
12978dd3557aSHugh Dickins 	if (!PageAnon(page))
129831dbd01fSIzik Eidus 		goto out;
129931dbd01fSIzik Eidus 
130031dbd01fSIzik Eidus 	/*
130131dbd01fSIzik Eidus 	 * We need the page lock to read a stable PageSwapCache in
130231dbd01fSIzik Eidus 	 * write_protect_page().  We use trylock_page() instead of
130331dbd01fSIzik Eidus 	 * lock_page() because we don't want to wait here - we
130431dbd01fSIzik Eidus 	 * prefer to continue scanning and merging different pages,
130531dbd01fSIzik Eidus 	 * then come back to this page when it is unlocked.
130631dbd01fSIzik Eidus 	 */
13078dd3557aSHugh Dickins 	if (!trylock_page(page))
130831e855eaSHugh Dickins 		goto out;
1309f765f540SKirill A. Shutemov 
1310f765f540SKirill A. Shutemov 	if (PageTransCompound(page)) {
1311a7306c34SAndrea Arcangeli 		if (split_huge_page(page))
1312f765f540SKirill A. Shutemov 			goto out_unlock;
1313f765f540SKirill A. Shutemov 	}
1314f765f540SKirill A. Shutemov 
131531dbd01fSIzik Eidus 	/*
131631dbd01fSIzik Eidus 	 * If this anonymous page is mapped only here, its pte may need
131731dbd01fSIzik Eidus 	 * to be write-protected.  If it's mapped elsewhere, all of its
131831dbd01fSIzik Eidus 	 * ptes are necessarily already write-protected.  But in either
131931dbd01fSIzik Eidus 	 * case, we need to lock and check page_count is not raised.
132031dbd01fSIzik Eidus 	 */
132180e14822SHugh Dickins 	if (write_protect_page(vma, page, &orig_pte) == 0) {
132280e14822SHugh Dickins 		if (!kpage) {
132380e14822SHugh Dickins 			/*
132480e14822SHugh Dickins 			 * While we hold page lock, upgrade page from
132580e14822SHugh Dickins 			 * PageAnon+anon_vma to PageKsm+NULL stable_node:
132680e14822SHugh Dickins 			 * stable_tree_insert() will update stable_node.
132780e14822SHugh Dickins 			 */
132880e14822SHugh Dickins 			set_page_stable_node(page, NULL);
132980e14822SHugh Dickins 			mark_page_accessed(page);
1330337ed7ebSMinchan Kim 			/*
1331337ed7ebSMinchan Kim 			 * Page reclaim just frees a clean page with no dirty
1332337ed7ebSMinchan Kim 			 * ptes: make sure that the ksm page would be swapped.
1333337ed7ebSMinchan Kim 			 */
1334337ed7ebSMinchan Kim 			if (!PageDirty(page))
1335337ed7ebSMinchan Kim 				SetPageDirty(page);
133680e14822SHugh Dickins 			err = 0;
133780e14822SHugh Dickins 		} else if (pages_identical(page, kpage))
13388dd3557aSHugh Dickins 			err = replace_page(vma, page, kpage, orig_pte);
133980e14822SHugh Dickins 	}
134031dbd01fSIzik Eidus 
1341f765f540SKirill A. Shutemov out_unlock:
13428dd3557aSHugh Dickins 	unlock_page(page);
134331dbd01fSIzik Eidus out:
134431dbd01fSIzik Eidus 	return err;
134531dbd01fSIzik Eidus }
134631dbd01fSIzik Eidus 
134731dbd01fSIzik Eidus /*
134881464e30SHugh Dickins  * try_to_merge_with_ksm_page - like try_to_merge_two_pages,
134981464e30SHugh Dickins  * but no new kernel page is allocated: kpage must already be a ksm page.
13508dd3557aSHugh Dickins  *
13518dd3557aSHugh Dickins  * This function returns 0 if the pages were merged, -EFAULT otherwise.
135281464e30SHugh Dickins  */
try_to_merge_with_ksm_page(struct ksm_rmap_item * rmap_item,struct page * page,struct page * kpage)135321fbd591SQi Zheng static int try_to_merge_with_ksm_page(struct ksm_rmap_item *rmap_item,
13548dd3557aSHugh Dickins 				      struct page *page, struct page *kpage)
135581464e30SHugh Dickins {
13568dd3557aSHugh Dickins 	struct mm_struct *mm = rmap_item->mm;
135781464e30SHugh Dickins 	struct vm_area_struct *vma;
135881464e30SHugh Dickins 	int err = -EFAULT;
135981464e30SHugh Dickins 
1360d8ed45c5SMichel Lespinasse 	mmap_read_lock(mm);
136185c6e8ddSAndrea Arcangeli 	vma = find_mergeable_vma(mm, rmap_item->address);
136285c6e8ddSAndrea Arcangeli 	if (!vma)
13639ba69294SHugh Dickins 		goto out;
13649ba69294SHugh Dickins 
13658dd3557aSHugh Dickins 	err = try_to_merge_one_page(vma, page, kpage);
1366db114b83SHugh Dickins 	if (err)
1367db114b83SHugh Dickins 		goto out;
1368db114b83SHugh Dickins 
1369bc56620bSHugh Dickins 	/* Unstable nid is in union with stable anon_vma: remove first */
1370bc56620bSHugh Dickins 	remove_rmap_item_from_tree(rmap_item);
1371bc56620bSHugh Dickins 
1372c1e8d7c6SMichel Lespinasse 	/* Must get reference to anon_vma while still holding mmap_lock */
13739e60109fSPeter Zijlstra 	rmap_item->anon_vma = vma->anon_vma;
13749e60109fSPeter Zijlstra 	get_anon_vma(vma->anon_vma);
137581464e30SHugh Dickins out:
1376d8ed45c5SMichel Lespinasse 	mmap_read_unlock(mm);
1377739100c8SStefan Roesch 	trace_ksm_merge_with_ksm_page(kpage, page_to_pfn(kpage ? kpage : page),
1378739100c8SStefan Roesch 				rmap_item, mm, err);
137981464e30SHugh Dickins 	return err;
138081464e30SHugh Dickins }
138181464e30SHugh Dickins 
138281464e30SHugh Dickins /*
138331dbd01fSIzik Eidus  * try_to_merge_two_pages - take two identical pages and prepare them
138431dbd01fSIzik Eidus  * to be merged into one page.
138531dbd01fSIzik Eidus  *
13868dd3557aSHugh Dickins  * This function returns the kpage if we successfully merged two identical
13878dd3557aSHugh Dickins  * pages into one ksm page, NULL otherwise.
138831dbd01fSIzik Eidus  *
138980e14822SHugh Dickins  * Note that this function upgrades page to ksm page: if one of the pages
139031dbd01fSIzik Eidus  * is already a ksm page, try_to_merge_with_ksm_page should be used.
139131dbd01fSIzik Eidus  */
try_to_merge_two_pages(struct ksm_rmap_item * rmap_item,struct page * page,struct ksm_rmap_item * tree_rmap_item,struct page * tree_page)139221fbd591SQi Zheng static struct page *try_to_merge_two_pages(struct ksm_rmap_item *rmap_item,
13938dd3557aSHugh Dickins 					   struct page *page,
139421fbd591SQi Zheng 					   struct ksm_rmap_item *tree_rmap_item,
13958dd3557aSHugh Dickins 					   struct page *tree_page)
139631dbd01fSIzik Eidus {
139780e14822SHugh Dickins 	int err;
139831dbd01fSIzik Eidus 
139980e14822SHugh Dickins 	err = try_to_merge_with_ksm_page(rmap_item, page, NULL);
140031dbd01fSIzik Eidus 	if (!err) {
14018dd3557aSHugh Dickins 		err = try_to_merge_with_ksm_page(tree_rmap_item,
140280e14822SHugh Dickins 							tree_page, page);
140331dbd01fSIzik Eidus 		/*
140481464e30SHugh Dickins 		 * If that fails, we have a ksm page with only one pte
140581464e30SHugh Dickins 		 * pointing to it: so break it.
140631dbd01fSIzik Eidus 		 */
14074035c07aSHugh Dickins 		if (err)
14088dd3557aSHugh Dickins 			break_cow(rmap_item);
140931dbd01fSIzik Eidus 	}
141080e14822SHugh Dickins 	return err ? NULL : page;
141131dbd01fSIzik Eidus }
141231dbd01fSIzik Eidus 
14132c653d0eSAndrea Arcangeli static __always_inline
__is_page_sharing_candidate(struct ksm_stable_node * stable_node,int offset)141421fbd591SQi Zheng bool __is_page_sharing_candidate(struct ksm_stable_node *stable_node, int offset)
14152c653d0eSAndrea Arcangeli {
14162c653d0eSAndrea Arcangeli 	VM_BUG_ON(stable_node->rmap_hlist_len < 0);
14172c653d0eSAndrea Arcangeli 	/*
14182c653d0eSAndrea Arcangeli 	 * Check that at least one mapping still exists, otherwise
14192c653d0eSAndrea Arcangeli 	 * there's no much point to merge and share with this
14202c653d0eSAndrea Arcangeli 	 * stable_node, as the underlying tree_page of the other
14212c653d0eSAndrea Arcangeli 	 * sharer is going to be freed soon.
14222c653d0eSAndrea Arcangeli 	 */
14232c653d0eSAndrea Arcangeli 	return stable_node->rmap_hlist_len &&
14242c653d0eSAndrea Arcangeli 		stable_node->rmap_hlist_len + offset < ksm_max_page_sharing;
14252c653d0eSAndrea Arcangeli }
14262c653d0eSAndrea Arcangeli 
14272c653d0eSAndrea Arcangeli static __always_inline
is_page_sharing_candidate(struct ksm_stable_node * stable_node)142821fbd591SQi Zheng bool is_page_sharing_candidate(struct ksm_stable_node *stable_node)
14292c653d0eSAndrea Arcangeli {
14302c653d0eSAndrea Arcangeli 	return __is_page_sharing_candidate(stable_node, 0);
14312c653d0eSAndrea Arcangeli }
14322c653d0eSAndrea Arcangeli 
stable_node_dup(struct ksm_stable_node ** _stable_node_dup,struct ksm_stable_node ** _stable_node,struct rb_root * root,bool prune_stale_stable_nodes)143321fbd591SQi Zheng static struct page *stable_node_dup(struct ksm_stable_node **_stable_node_dup,
143421fbd591SQi Zheng 				    struct ksm_stable_node **_stable_node,
14352c653d0eSAndrea Arcangeli 				    struct rb_root *root,
14362c653d0eSAndrea Arcangeli 				    bool prune_stale_stable_nodes)
14372c653d0eSAndrea Arcangeli {
143821fbd591SQi Zheng 	struct ksm_stable_node *dup, *found = NULL, *stable_node = *_stable_node;
14392c653d0eSAndrea Arcangeli 	struct hlist_node *hlist_safe;
14408dc5ffcdSAndrea Arcangeli 	struct page *_tree_page, *tree_page = NULL;
14412c653d0eSAndrea Arcangeli 	int nr = 0;
14422c653d0eSAndrea Arcangeli 	int found_rmap_hlist_len;
14432c653d0eSAndrea Arcangeli 
14442c653d0eSAndrea Arcangeli 	if (!prune_stale_stable_nodes ||
14452c653d0eSAndrea Arcangeli 	    time_before(jiffies, stable_node->chain_prune_time +
14462c653d0eSAndrea Arcangeli 			msecs_to_jiffies(
14472c653d0eSAndrea Arcangeli 				ksm_stable_node_chains_prune_millisecs)))
14482c653d0eSAndrea Arcangeli 		prune_stale_stable_nodes = false;
14492c653d0eSAndrea Arcangeli 	else
14502c653d0eSAndrea Arcangeli 		stable_node->chain_prune_time = jiffies;
14512c653d0eSAndrea Arcangeli 
14522c653d0eSAndrea Arcangeli 	hlist_for_each_entry_safe(dup, hlist_safe,
14532c653d0eSAndrea Arcangeli 				  &stable_node->hlist, hlist_dup) {
14542c653d0eSAndrea Arcangeli 		cond_resched();
14552c653d0eSAndrea Arcangeli 		/*
14562c653d0eSAndrea Arcangeli 		 * We must walk all stable_node_dup to prune the stale
14572c653d0eSAndrea Arcangeli 		 * stable nodes during lookup.
14582c653d0eSAndrea Arcangeli 		 *
14592c653d0eSAndrea Arcangeli 		 * get_ksm_page can drop the nodes from the
14602c653d0eSAndrea Arcangeli 		 * stable_node->hlist if they point to freed pages
14612c653d0eSAndrea Arcangeli 		 * (that's why we do a _safe walk). The "dup"
14622c653d0eSAndrea Arcangeli 		 * stable_node parameter itself will be freed from
14632c653d0eSAndrea Arcangeli 		 * under us if it returns NULL.
14642c653d0eSAndrea Arcangeli 		 */
14652cee57d1SYang Shi 		_tree_page = get_ksm_page(dup, GET_KSM_PAGE_NOLOCK);
14662c653d0eSAndrea Arcangeli 		if (!_tree_page)
14672c653d0eSAndrea Arcangeli 			continue;
14682c653d0eSAndrea Arcangeli 		nr += 1;
14692c653d0eSAndrea Arcangeli 		if (is_page_sharing_candidate(dup)) {
14702c653d0eSAndrea Arcangeli 			if (!found ||
14712c653d0eSAndrea Arcangeli 			    dup->rmap_hlist_len > found_rmap_hlist_len) {
14722c653d0eSAndrea Arcangeli 				if (found)
14738dc5ffcdSAndrea Arcangeli 					put_page(tree_page);
14742c653d0eSAndrea Arcangeli 				found = dup;
14752c653d0eSAndrea Arcangeli 				found_rmap_hlist_len = found->rmap_hlist_len;
14768dc5ffcdSAndrea Arcangeli 				tree_page = _tree_page;
14772c653d0eSAndrea Arcangeli 
14788dc5ffcdSAndrea Arcangeli 				/* skip put_page for found dup */
14792c653d0eSAndrea Arcangeli 				if (!prune_stale_stable_nodes)
14802c653d0eSAndrea Arcangeli 					break;
14812c653d0eSAndrea Arcangeli 				continue;
14822c653d0eSAndrea Arcangeli 			}
14832c653d0eSAndrea Arcangeli 		}
14842c653d0eSAndrea Arcangeli 		put_page(_tree_page);
14852c653d0eSAndrea Arcangeli 	}
14862c653d0eSAndrea Arcangeli 
148780b18dfaSAndrea Arcangeli 	if (found) {
14882c653d0eSAndrea Arcangeli 		/*
148980b18dfaSAndrea Arcangeli 		 * nr is counting all dups in the chain only if
149080b18dfaSAndrea Arcangeli 		 * prune_stale_stable_nodes is true, otherwise we may
149180b18dfaSAndrea Arcangeli 		 * break the loop at nr == 1 even if there are
149280b18dfaSAndrea Arcangeli 		 * multiple entries.
14932c653d0eSAndrea Arcangeli 		 */
149480b18dfaSAndrea Arcangeli 		if (prune_stale_stable_nodes && nr == 1) {
14952c653d0eSAndrea Arcangeli 			/*
14962c653d0eSAndrea Arcangeli 			 * If there's not just one entry it would
14972c653d0eSAndrea Arcangeli 			 * corrupt memory, better BUG_ON. In KSM
14982c653d0eSAndrea Arcangeli 			 * context with no lock held it's not even
14992c653d0eSAndrea Arcangeli 			 * fatal.
15002c653d0eSAndrea Arcangeli 			 */
15012c653d0eSAndrea Arcangeli 			BUG_ON(stable_node->hlist.first->next);
15022c653d0eSAndrea Arcangeli 
15032c653d0eSAndrea Arcangeli 			/*
15042c653d0eSAndrea Arcangeli 			 * There's just one entry and it is below the
15052c653d0eSAndrea Arcangeli 			 * deduplication limit so drop the chain.
15062c653d0eSAndrea Arcangeli 			 */
15072c653d0eSAndrea Arcangeli 			rb_replace_node(&stable_node->node, &found->node,
15082c653d0eSAndrea Arcangeli 					root);
15092c653d0eSAndrea Arcangeli 			free_stable_node(stable_node);
15102c653d0eSAndrea Arcangeli 			ksm_stable_node_chains--;
15112c653d0eSAndrea Arcangeli 			ksm_stable_node_dups--;
1512b4fecc67SAndrea Arcangeli 			/*
15130ba1d0f7SAndrea Arcangeli 			 * NOTE: the caller depends on the stable_node
15140ba1d0f7SAndrea Arcangeli 			 * to be equal to stable_node_dup if the chain
15150ba1d0f7SAndrea Arcangeli 			 * was collapsed.
1516b4fecc67SAndrea Arcangeli 			 */
15170ba1d0f7SAndrea Arcangeli 			*_stable_node = found;
15180ba1d0f7SAndrea Arcangeli 			/*
1519f0953a1bSIngo Molnar 			 * Just for robustness, as stable_node is
15200ba1d0f7SAndrea Arcangeli 			 * otherwise left as a stable pointer, the
15210ba1d0f7SAndrea Arcangeli 			 * compiler shall optimize it away at build
15220ba1d0f7SAndrea Arcangeli 			 * time.
15230ba1d0f7SAndrea Arcangeli 			 */
15240ba1d0f7SAndrea Arcangeli 			stable_node = NULL;
152580b18dfaSAndrea Arcangeli 		} else if (stable_node->hlist.first != &found->hlist_dup &&
152680b18dfaSAndrea Arcangeli 			   __is_page_sharing_candidate(found, 1)) {
15272c653d0eSAndrea Arcangeli 			/*
152880b18dfaSAndrea Arcangeli 			 * If the found stable_node dup can accept one
152980b18dfaSAndrea Arcangeli 			 * more future merge (in addition to the one
153080b18dfaSAndrea Arcangeli 			 * that is underway) and is not at the head of
153180b18dfaSAndrea Arcangeli 			 * the chain, put it there so next search will
153280b18dfaSAndrea Arcangeli 			 * be quicker in the !prune_stale_stable_nodes
153380b18dfaSAndrea Arcangeli 			 * case.
153480b18dfaSAndrea Arcangeli 			 *
153580b18dfaSAndrea Arcangeli 			 * NOTE: it would be inaccurate to use nr > 1
153680b18dfaSAndrea Arcangeli 			 * instead of checking the hlist.first pointer
153780b18dfaSAndrea Arcangeli 			 * directly, because in the
153880b18dfaSAndrea Arcangeli 			 * prune_stale_stable_nodes case "nr" isn't
153980b18dfaSAndrea Arcangeli 			 * the position of the found dup in the chain,
154080b18dfaSAndrea Arcangeli 			 * but the total number of dups in the chain.
15412c653d0eSAndrea Arcangeli 			 */
15422c653d0eSAndrea Arcangeli 			hlist_del(&found->hlist_dup);
15432c653d0eSAndrea Arcangeli 			hlist_add_head(&found->hlist_dup,
15442c653d0eSAndrea Arcangeli 				       &stable_node->hlist);
15452c653d0eSAndrea Arcangeli 		}
15462c653d0eSAndrea Arcangeli 	}
15472c653d0eSAndrea Arcangeli 
15488dc5ffcdSAndrea Arcangeli 	*_stable_node_dup = found;
15498dc5ffcdSAndrea Arcangeli 	return tree_page;
15502c653d0eSAndrea Arcangeli }
15512c653d0eSAndrea Arcangeli 
stable_node_dup_any(struct ksm_stable_node * stable_node,struct rb_root * root)155221fbd591SQi Zheng static struct ksm_stable_node *stable_node_dup_any(struct ksm_stable_node *stable_node,
15532c653d0eSAndrea Arcangeli 					       struct rb_root *root)
15542c653d0eSAndrea Arcangeli {
15552c653d0eSAndrea Arcangeli 	if (!is_stable_node_chain(stable_node))
15562c653d0eSAndrea Arcangeli 		return stable_node;
15572c653d0eSAndrea Arcangeli 	if (hlist_empty(&stable_node->hlist)) {
15582c653d0eSAndrea Arcangeli 		free_stable_node_chain(stable_node, root);
15592c653d0eSAndrea Arcangeli 		return NULL;
15602c653d0eSAndrea Arcangeli 	}
15612c653d0eSAndrea Arcangeli 	return hlist_entry(stable_node->hlist.first,
15622c653d0eSAndrea Arcangeli 			   typeof(*stable_node), hlist_dup);
15632c653d0eSAndrea Arcangeli }
15642c653d0eSAndrea Arcangeli 
15658dc5ffcdSAndrea Arcangeli /*
15668dc5ffcdSAndrea Arcangeli  * Like for get_ksm_page, this function can free the *_stable_node and
15678dc5ffcdSAndrea Arcangeli  * *_stable_node_dup if the returned tree_page is NULL.
15688dc5ffcdSAndrea Arcangeli  *
15698dc5ffcdSAndrea Arcangeli  * It can also free and overwrite *_stable_node with the found
15708dc5ffcdSAndrea Arcangeli  * stable_node_dup if the chain is collapsed (in which case
15718dc5ffcdSAndrea Arcangeli  * *_stable_node will be equal to *_stable_node_dup like if the chain
15728dc5ffcdSAndrea Arcangeli  * never existed). It's up to the caller to verify tree_page is not
15738dc5ffcdSAndrea Arcangeli  * NULL before dereferencing *_stable_node or *_stable_node_dup.
15748dc5ffcdSAndrea Arcangeli  *
15758dc5ffcdSAndrea Arcangeli  * *_stable_node_dup is really a second output parameter of this
15768dc5ffcdSAndrea Arcangeli  * function and will be overwritten in all cases, the caller doesn't
15778dc5ffcdSAndrea Arcangeli  * need to initialize it.
15788dc5ffcdSAndrea Arcangeli  */
__stable_node_chain(struct ksm_stable_node ** _stable_node_dup,struct ksm_stable_node ** _stable_node,struct rb_root * root,bool prune_stale_stable_nodes)157921fbd591SQi Zheng static struct page *__stable_node_chain(struct ksm_stable_node **_stable_node_dup,
158021fbd591SQi Zheng 					struct ksm_stable_node **_stable_node,
15812c653d0eSAndrea Arcangeli 					struct rb_root *root,
15822c653d0eSAndrea Arcangeli 					bool prune_stale_stable_nodes)
15832c653d0eSAndrea Arcangeli {
158421fbd591SQi Zheng 	struct ksm_stable_node *stable_node = *_stable_node;
15852c653d0eSAndrea Arcangeli 	if (!is_stable_node_chain(stable_node)) {
15862c653d0eSAndrea Arcangeli 		if (is_page_sharing_candidate(stable_node)) {
15878dc5ffcdSAndrea Arcangeli 			*_stable_node_dup = stable_node;
15882cee57d1SYang Shi 			return get_ksm_page(stable_node, GET_KSM_PAGE_NOLOCK);
15892c653d0eSAndrea Arcangeli 		}
15908dc5ffcdSAndrea Arcangeli 		/*
15918dc5ffcdSAndrea Arcangeli 		 * _stable_node_dup set to NULL means the stable_node
15928dc5ffcdSAndrea Arcangeli 		 * reached the ksm_max_page_sharing limit.
15938dc5ffcdSAndrea Arcangeli 		 */
15948dc5ffcdSAndrea Arcangeli 		*_stable_node_dup = NULL;
15952c653d0eSAndrea Arcangeli 		return NULL;
15962c653d0eSAndrea Arcangeli 	}
15978dc5ffcdSAndrea Arcangeli 	return stable_node_dup(_stable_node_dup, _stable_node, root,
15982c653d0eSAndrea Arcangeli 			       prune_stale_stable_nodes);
15992c653d0eSAndrea Arcangeli }
16002c653d0eSAndrea Arcangeli 
chain_prune(struct ksm_stable_node ** s_n_d,struct ksm_stable_node ** s_n,struct rb_root * root)160121fbd591SQi Zheng static __always_inline struct page *chain_prune(struct ksm_stable_node **s_n_d,
160221fbd591SQi Zheng 						struct ksm_stable_node **s_n,
16032c653d0eSAndrea Arcangeli 						struct rb_root *root)
16042c653d0eSAndrea Arcangeli {
16058dc5ffcdSAndrea Arcangeli 	return __stable_node_chain(s_n_d, s_n, root, true);
16062c653d0eSAndrea Arcangeli }
16072c653d0eSAndrea Arcangeli 
chain(struct ksm_stable_node ** s_n_d,struct ksm_stable_node * s_n,struct rb_root * root)160821fbd591SQi Zheng static __always_inline struct page *chain(struct ksm_stable_node **s_n_d,
160921fbd591SQi Zheng 					  struct ksm_stable_node *s_n,
16102c653d0eSAndrea Arcangeli 					  struct rb_root *root)
16112c653d0eSAndrea Arcangeli {
161221fbd591SQi Zheng 	struct ksm_stable_node *old_stable_node = s_n;
16138dc5ffcdSAndrea Arcangeli 	struct page *tree_page;
16148dc5ffcdSAndrea Arcangeli 
16158dc5ffcdSAndrea Arcangeli 	tree_page = __stable_node_chain(s_n_d, &s_n, root, false);
16168dc5ffcdSAndrea Arcangeli 	/* not pruning dups so s_n cannot have changed */
16178dc5ffcdSAndrea Arcangeli 	VM_BUG_ON(s_n != old_stable_node);
16188dc5ffcdSAndrea Arcangeli 	return tree_page;
16192c653d0eSAndrea Arcangeli }
16202c653d0eSAndrea Arcangeli 
162131dbd01fSIzik Eidus /*
16228dd3557aSHugh Dickins  * stable_tree_search - search for page inside the stable tree
162331dbd01fSIzik Eidus  *
162431dbd01fSIzik Eidus  * This function checks if there is a page inside the stable tree
162531dbd01fSIzik Eidus  * with identical content to the page that we are scanning right now.
162631dbd01fSIzik Eidus  *
16277b6ba2c7SHugh Dickins  * This function returns the stable tree node of identical content if found,
162831dbd01fSIzik Eidus  * NULL otherwise.
162931dbd01fSIzik Eidus  */
stable_tree_search(struct page * page)163062b61f61SHugh Dickins static struct page *stable_tree_search(struct page *page)
163131dbd01fSIzik Eidus {
163290bd6fd3SPetr Holasek 	int nid;
1633ef53d16cSHugh Dickins 	struct rb_root *root;
16344146d2d6SHugh Dickins 	struct rb_node **new;
16354146d2d6SHugh Dickins 	struct rb_node *parent;
163621fbd591SQi Zheng 	struct ksm_stable_node *stable_node, *stable_node_dup, *stable_node_any;
163721fbd591SQi Zheng 	struct ksm_stable_node *page_node;
163831dbd01fSIzik Eidus 
16394146d2d6SHugh Dickins 	page_node = page_stable_node(page);
16404146d2d6SHugh Dickins 	if (page_node && page_node->head != &migrate_nodes) {
16414146d2d6SHugh Dickins 		/* ksm page forked */
164208beca44SHugh Dickins 		get_page(page);
164362b61f61SHugh Dickins 		return page;
164408beca44SHugh Dickins 	}
164508beca44SHugh Dickins 
164690bd6fd3SPetr Holasek 	nid = get_kpfn_nid(page_to_pfn(page));
1647ef53d16cSHugh Dickins 	root = root_stable_tree + nid;
16484146d2d6SHugh Dickins again:
1649ef53d16cSHugh Dickins 	new = &root->rb_node;
16504146d2d6SHugh Dickins 	parent = NULL;
165190bd6fd3SPetr Holasek 
16524146d2d6SHugh Dickins 	while (*new) {
16534035c07aSHugh Dickins 		struct page *tree_page;
165431dbd01fSIzik Eidus 		int ret;
165531dbd01fSIzik Eidus 
165631dbd01fSIzik Eidus 		cond_resched();
165721fbd591SQi Zheng 		stable_node = rb_entry(*new, struct ksm_stable_node, node);
16582c653d0eSAndrea Arcangeli 		stable_node_any = NULL;
16598dc5ffcdSAndrea Arcangeli 		tree_page = chain_prune(&stable_node_dup, &stable_node,	root);
1660b4fecc67SAndrea Arcangeli 		/*
1661b4fecc67SAndrea Arcangeli 		 * NOTE: stable_node may have been freed by
1662b4fecc67SAndrea Arcangeli 		 * chain_prune() if the returned stable_node_dup is
1663b4fecc67SAndrea Arcangeli 		 * not NULL. stable_node_dup may have been inserted in
1664b4fecc67SAndrea Arcangeli 		 * the rbtree instead as a regular stable_node (in
1665b4fecc67SAndrea Arcangeli 		 * order to collapse the stable_node chain if a single
16660ba1d0f7SAndrea Arcangeli 		 * stable_node dup was found in it). In such case the
16673413b2c8SJulia Lawall 		 * stable_node is overwritten by the callee to point
16680ba1d0f7SAndrea Arcangeli 		 * to the stable_node_dup that was collapsed in the
16690ba1d0f7SAndrea Arcangeli 		 * stable rbtree and stable_node will be equal to
16700ba1d0f7SAndrea Arcangeli 		 * stable_node_dup like if the chain never existed.
1671b4fecc67SAndrea Arcangeli 		 */
16722c653d0eSAndrea Arcangeli 		if (!stable_node_dup) {
16732c653d0eSAndrea Arcangeli 			/*
16742c653d0eSAndrea Arcangeli 			 * Either all stable_node dups were full in
16752c653d0eSAndrea Arcangeli 			 * this stable_node chain, or this chain was
16762c653d0eSAndrea Arcangeli 			 * empty and should be rb_erased.
16772c653d0eSAndrea Arcangeli 			 */
16782c653d0eSAndrea Arcangeli 			stable_node_any = stable_node_dup_any(stable_node,
16792c653d0eSAndrea Arcangeli 							      root);
16802c653d0eSAndrea Arcangeli 			if (!stable_node_any) {
16812c653d0eSAndrea Arcangeli 				/* rb_erase just run */
16822c653d0eSAndrea Arcangeli 				goto again;
16832c653d0eSAndrea Arcangeli 			}
16842c653d0eSAndrea Arcangeli 			/*
16852c653d0eSAndrea Arcangeli 			 * Take any of the stable_node dups page of
16862c653d0eSAndrea Arcangeli 			 * this stable_node chain to let the tree walk
16872c653d0eSAndrea Arcangeli 			 * continue. All KSM pages belonging to the
16882c653d0eSAndrea Arcangeli 			 * stable_node dups in a stable_node chain
16892c653d0eSAndrea Arcangeli 			 * have the same content and they're
1690457aef94SEthon Paul 			 * write protected at all times. Any will work
16912c653d0eSAndrea Arcangeli 			 * fine to continue the walk.
16922c653d0eSAndrea Arcangeli 			 */
16932cee57d1SYang Shi 			tree_page = get_ksm_page(stable_node_any,
16942cee57d1SYang Shi 						 GET_KSM_PAGE_NOLOCK);
16952c653d0eSAndrea Arcangeli 		}
16962c653d0eSAndrea Arcangeli 		VM_BUG_ON(!stable_node_dup ^ !!stable_node_any);
1697f2e5ff85SAndrea Arcangeli 		if (!tree_page) {
1698f2e5ff85SAndrea Arcangeli 			/*
1699f2e5ff85SAndrea Arcangeli 			 * If we walked over a stale stable_node,
1700f2e5ff85SAndrea Arcangeli 			 * get_ksm_page() will call rb_erase() and it
1701f2e5ff85SAndrea Arcangeli 			 * may rebalance the tree from under us. So
1702f2e5ff85SAndrea Arcangeli 			 * restart the search from scratch. Returning
1703f2e5ff85SAndrea Arcangeli 			 * NULL would be safe too, but we'd generate
1704f2e5ff85SAndrea Arcangeli 			 * false negative insertions just because some
1705f2e5ff85SAndrea Arcangeli 			 * stable_node was stale.
1706f2e5ff85SAndrea Arcangeli 			 */
1707f2e5ff85SAndrea Arcangeli 			goto again;
1708f2e5ff85SAndrea Arcangeli 		}
170931dbd01fSIzik Eidus 
17104035c07aSHugh Dickins 		ret = memcmp_pages(page, tree_page);
1711c8d6553bSHugh Dickins 		put_page(tree_page);
171231dbd01fSIzik Eidus 
17134146d2d6SHugh Dickins 		parent = *new;
1714c8d6553bSHugh Dickins 		if (ret < 0)
17154146d2d6SHugh Dickins 			new = &parent->rb_left;
1716c8d6553bSHugh Dickins 		else if (ret > 0)
17174146d2d6SHugh Dickins 			new = &parent->rb_right;
1718c8d6553bSHugh Dickins 		else {
17192c653d0eSAndrea Arcangeli 			if (page_node) {
17202c653d0eSAndrea Arcangeli 				VM_BUG_ON(page_node->head != &migrate_nodes);
17212c653d0eSAndrea Arcangeli 				/*
17222c653d0eSAndrea Arcangeli 				 * Test if the migrated page should be merged
17232c653d0eSAndrea Arcangeli 				 * into a stable node dup. If the mapcount is
17242c653d0eSAndrea Arcangeli 				 * 1 we can migrate it with another KSM page
17252c653d0eSAndrea Arcangeli 				 * without adding it to the chain.
17262c653d0eSAndrea Arcangeli 				 */
17272c653d0eSAndrea Arcangeli 				if (page_mapcount(page) > 1)
17282c653d0eSAndrea Arcangeli 					goto chain_append;
17292c653d0eSAndrea Arcangeli 			}
17302c653d0eSAndrea Arcangeli 
17312c653d0eSAndrea Arcangeli 			if (!stable_node_dup) {
17322c653d0eSAndrea Arcangeli 				/*
17332c653d0eSAndrea Arcangeli 				 * If the stable_node is a chain and
17342c653d0eSAndrea Arcangeli 				 * we got a payload match in memcmp
17352c653d0eSAndrea Arcangeli 				 * but we cannot merge the scanned
17362c653d0eSAndrea Arcangeli 				 * page in any of the existing
17372c653d0eSAndrea Arcangeli 				 * stable_node dups because they're
17382c653d0eSAndrea Arcangeli 				 * all full, we need to wait the
17392c653d0eSAndrea Arcangeli 				 * scanned page to find itself a match
17402c653d0eSAndrea Arcangeli 				 * in the unstable tree to create a
17412c653d0eSAndrea Arcangeli 				 * brand new KSM page to add later to
17422c653d0eSAndrea Arcangeli 				 * the dups of this stable_node.
17432c653d0eSAndrea Arcangeli 				 */
17442c653d0eSAndrea Arcangeli 				return NULL;
17452c653d0eSAndrea Arcangeli 			}
17462c653d0eSAndrea Arcangeli 
1747c8d6553bSHugh Dickins 			/*
1748c8d6553bSHugh Dickins 			 * Lock and unlock the stable_node's page (which
1749c8d6553bSHugh Dickins 			 * might already have been migrated) so that page
1750c8d6553bSHugh Dickins 			 * migration is sure to notice its raised count.
1751c8d6553bSHugh Dickins 			 * It would be more elegant to return stable_node
1752c8d6553bSHugh Dickins 			 * than kpage, but that involves more changes.
1753c8d6553bSHugh Dickins 			 */
17542cee57d1SYang Shi 			tree_page = get_ksm_page(stable_node_dup,
17552cee57d1SYang Shi 						 GET_KSM_PAGE_TRYLOCK);
17562cee57d1SYang Shi 
17572cee57d1SYang Shi 			if (PTR_ERR(tree_page) == -EBUSY)
17582cee57d1SYang Shi 				return ERR_PTR(-EBUSY);
17592cee57d1SYang Shi 
17602c653d0eSAndrea Arcangeli 			if (unlikely(!tree_page))
17612c653d0eSAndrea Arcangeli 				/*
17622c653d0eSAndrea Arcangeli 				 * The tree may have been rebalanced,
17632c653d0eSAndrea Arcangeli 				 * so re-evaluate parent and new.
17642c653d0eSAndrea Arcangeli 				 */
17652c653d0eSAndrea Arcangeli 				goto again;
1766c8d6553bSHugh Dickins 			unlock_page(tree_page);
17672c653d0eSAndrea Arcangeli 
17682c653d0eSAndrea Arcangeli 			if (get_kpfn_nid(stable_node_dup->kpfn) !=
17692c653d0eSAndrea Arcangeli 			    NUMA(stable_node_dup->nid)) {
17704146d2d6SHugh Dickins 				put_page(tree_page);
17714146d2d6SHugh Dickins 				goto replace;
17724146d2d6SHugh Dickins 			}
177362b61f61SHugh Dickins 			return tree_page;
177431dbd01fSIzik Eidus 		}
1775c8d6553bSHugh Dickins 	}
177631dbd01fSIzik Eidus 
17774146d2d6SHugh Dickins 	if (!page_node)
177831dbd01fSIzik Eidus 		return NULL;
17794146d2d6SHugh Dickins 
17804146d2d6SHugh Dickins 	list_del(&page_node->list);
17814146d2d6SHugh Dickins 	DO_NUMA(page_node->nid = nid);
17824146d2d6SHugh Dickins 	rb_link_node(&page_node->node, parent, new);
1783ef53d16cSHugh Dickins 	rb_insert_color(&page_node->node, root);
17842c653d0eSAndrea Arcangeli out:
17852c653d0eSAndrea Arcangeli 	if (is_page_sharing_candidate(page_node)) {
17864146d2d6SHugh Dickins 		get_page(page);
17874146d2d6SHugh Dickins 		return page;
17882c653d0eSAndrea Arcangeli 	} else
17892c653d0eSAndrea Arcangeli 		return NULL;
17904146d2d6SHugh Dickins 
17914146d2d6SHugh Dickins replace:
1792b4fecc67SAndrea Arcangeli 	/*
1793b4fecc67SAndrea Arcangeli 	 * If stable_node was a chain and chain_prune collapsed it,
17940ba1d0f7SAndrea Arcangeli 	 * stable_node has been updated to be the new regular
17950ba1d0f7SAndrea Arcangeli 	 * stable_node. A collapse of the chain is indistinguishable
17960ba1d0f7SAndrea Arcangeli 	 * from the case there was no chain in the stable
17970ba1d0f7SAndrea Arcangeli 	 * rbtree. Otherwise stable_node is the chain and
17980ba1d0f7SAndrea Arcangeli 	 * stable_node_dup is the dup to replace.
1799b4fecc67SAndrea Arcangeli 	 */
18000ba1d0f7SAndrea Arcangeli 	if (stable_node_dup == stable_node) {
1801b4fecc67SAndrea Arcangeli 		VM_BUG_ON(is_stable_node_chain(stable_node_dup));
1802b4fecc67SAndrea Arcangeli 		VM_BUG_ON(is_stable_node_dup(stable_node_dup));
18032c653d0eSAndrea Arcangeli 		/* there is no chain */
18044146d2d6SHugh Dickins 		if (page_node) {
18052c653d0eSAndrea Arcangeli 			VM_BUG_ON(page_node->head != &migrate_nodes);
18064146d2d6SHugh Dickins 			list_del(&page_node->list);
18074146d2d6SHugh Dickins 			DO_NUMA(page_node->nid = nid);
1808b4fecc67SAndrea Arcangeli 			rb_replace_node(&stable_node_dup->node,
1809b4fecc67SAndrea Arcangeli 					&page_node->node,
18102c653d0eSAndrea Arcangeli 					root);
18112c653d0eSAndrea Arcangeli 			if (is_page_sharing_candidate(page_node))
18124146d2d6SHugh Dickins 				get_page(page);
18132c653d0eSAndrea Arcangeli 			else
18142c653d0eSAndrea Arcangeli 				page = NULL;
18154146d2d6SHugh Dickins 		} else {
1816b4fecc67SAndrea Arcangeli 			rb_erase(&stable_node_dup->node, root);
18174146d2d6SHugh Dickins 			page = NULL;
18184146d2d6SHugh Dickins 		}
18192c653d0eSAndrea Arcangeli 	} else {
18202c653d0eSAndrea Arcangeli 		VM_BUG_ON(!is_stable_node_chain(stable_node));
18212c653d0eSAndrea Arcangeli 		__stable_node_dup_del(stable_node_dup);
18222c653d0eSAndrea Arcangeli 		if (page_node) {
18232c653d0eSAndrea Arcangeli 			VM_BUG_ON(page_node->head != &migrate_nodes);
18242c653d0eSAndrea Arcangeli 			list_del(&page_node->list);
18252c653d0eSAndrea Arcangeli 			DO_NUMA(page_node->nid = nid);
18262c653d0eSAndrea Arcangeli 			stable_node_chain_add_dup(page_node, stable_node);
18272c653d0eSAndrea Arcangeli 			if (is_page_sharing_candidate(page_node))
18282c653d0eSAndrea Arcangeli 				get_page(page);
18292c653d0eSAndrea Arcangeli 			else
18302c653d0eSAndrea Arcangeli 				page = NULL;
18312c653d0eSAndrea Arcangeli 		} else {
18322c653d0eSAndrea Arcangeli 			page = NULL;
18332c653d0eSAndrea Arcangeli 		}
18342c653d0eSAndrea Arcangeli 	}
18352c653d0eSAndrea Arcangeli 	stable_node_dup->head = &migrate_nodes;
18362c653d0eSAndrea Arcangeli 	list_add(&stable_node_dup->list, stable_node_dup->head);
18374146d2d6SHugh Dickins 	return page;
18382c653d0eSAndrea Arcangeli 
18392c653d0eSAndrea Arcangeli chain_append:
18402c653d0eSAndrea Arcangeli 	/* stable_node_dup could be null if it reached the limit */
18412c653d0eSAndrea Arcangeli 	if (!stable_node_dup)
18422c653d0eSAndrea Arcangeli 		stable_node_dup = stable_node_any;
1843b4fecc67SAndrea Arcangeli 	/*
1844b4fecc67SAndrea Arcangeli 	 * If stable_node was a chain and chain_prune collapsed it,
18450ba1d0f7SAndrea Arcangeli 	 * stable_node has been updated to be the new regular
18460ba1d0f7SAndrea Arcangeli 	 * stable_node. A collapse of the chain is indistinguishable
18470ba1d0f7SAndrea Arcangeli 	 * from the case there was no chain in the stable
18480ba1d0f7SAndrea Arcangeli 	 * rbtree. Otherwise stable_node is the chain and
18490ba1d0f7SAndrea Arcangeli 	 * stable_node_dup is the dup to replace.
1850b4fecc67SAndrea Arcangeli 	 */
18510ba1d0f7SAndrea Arcangeli 	if (stable_node_dup == stable_node) {
1852b4fecc67SAndrea Arcangeli 		VM_BUG_ON(is_stable_node_dup(stable_node_dup));
18532c653d0eSAndrea Arcangeli 		/* chain is missing so create it */
18542c653d0eSAndrea Arcangeli 		stable_node = alloc_stable_node_chain(stable_node_dup,
18552c653d0eSAndrea Arcangeli 						      root);
18562c653d0eSAndrea Arcangeli 		if (!stable_node)
18572c653d0eSAndrea Arcangeli 			return NULL;
18582c653d0eSAndrea Arcangeli 	}
18592c653d0eSAndrea Arcangeli 	/*
18602c653d0eSAndrea Arcangeli 	 * Add this stable_node dup that was
18612c653d0eSAndrea Arcangeli 	 * migrated to the stable_node chain
18622c653d0eSAndrea Arcangeli 	 * of the current nid for this page
18632c653d0eSAndrea Arcangeli 	 * content.
18642c653d0eSAndrea Arcangeli 	 */
1865b4fecc67SAndrea Arcangeli 	VM_BUG_ON(!is_stable_node_dup(stable_node_dup));
18662c653d0eSAndrea Arcangeli 	VM_BUG_ON(page_node->head != &migrate_nodes);
18672c653d0eSAndrea Arcangeli 	list_del(&page_node->list);
18682c653d0eSAndrea Arcangeli 	DO_NUMA(page_node->nid = nid);
18692c653d0eSAndrea Arcangeli 	stable_node_chain_add_dup(page_node, stable_node);
18702c653d0eSAndrea Arcangeli 	goto out;
187131dbd01fSIzik Eidus }
187231dbd01fSIzik Eidus 
187331dbd01fSIzik Eidus /*
1874e850dcf5SHugh Dickins  * stable_tree_insert - insert stable tree node pointing to new ksm page
187531dbd01fSIzik Eidus  * into the stable tree.
187631dbd01fSIzik Eidus  *
18777b6ba2c7SHugh Dickins  * This function returns the stable tree node just allocated on success,
18787b6ba2c7SHugh Dickins  * NULL otherwise.
187931dbd01fSIzik Eidus  */
stable_tree_insert(struct page * kpage)188021fbd591SQi Zheng static struct ksm_stable_node *stable_tree_insert(struct page *kpage)
188131dbd01fSIzik Eidus {
188290bd6fd3SPetr Holasek 	int nid;
188390bd6fd3SPetr Holasek 	unsigned long kpfn;
1884ef53d16cSHugh Dickins 	struct rb_root *root;
188590bd6fd3SPetr Holasek 	struct rb_node **new;
1886f2e5ff85SAndrea Arcangeli 	struct rb_node *parent;
188721fbd591SQi Zheng 	struct ksm_stable_node *stable_node, *stable_node_dup, *stable_node_any;
18882c653d0eSAndrea Arcangeli 	bool need_chain = false;
188931dbd01fSIzik Eidus 
189090bd6fd3SPetr Holasek 	kpfn = page_to_pfn(kpage);
189190bd6fd3SPetr Holasek 	nid = get_kpfn_nid(kpfn);
1892ef53d16cSHugh Dickins 	root = root_stable_tree + nid;
1893f2e5ff85SAndrea Arcangeli again:
1894f2e5ff85SAndrea Arcangeli 	parent = NULL;
1895ef53d16cSHugh Dickins 	new = &root->rb_node;
189690bd6fd3SPetr Holasek 
189731dbd01fSIzik Eidus 	while (*new) {
18984035c07aSHugh Dickins 		struct page *tree_page;
189931dbd01fSIzik Eidus 		int ret;
190031dbd01fSIzik Eidus 
190131dbd01fSIzik Eidus 		cond_resched();
190221fbd591SQi Zheng 		stable_node = rb_entry(*new, struct ksm_stable_node, node);
19032c653d0eSAndrea Arcangeli 		stable_node_any = NULL;
19048dc5ffcdSAndrea Arcangeli 		tree_page = chain(&stable_node_dup, stable_node, root);
19052c653d0eSAndrea Arcangeli 		if (!stable_node_dup) {
19062c653d0eSAndrea Arcangeli 			/*
19072c653d0eSAndrea Arcangeli 			 * Either all stable_node dups were full in
19082c653d0eSAndrea Arcangeli 			 * this stable_node chain, or this chain was
19092c653d0eSAndrea Arcangeli 			 * empty and should be rb_erased.
19102c653d0eSAndrea Arcangeli 			 */
19112c653d0eSAndrea Arcangeli 			stable_node_any = stable_node_dup_any(stable_node,
19122c653d0eSAndrea Arcangeli 							      root);
19132c653d0eSAndrea Arcangeli 			if (!stable_node_any) {
19142c653d0eSAndrea Arcangeli 				/* rb_erase just run */
19152c653d0eSAndrea Arcangeli 				goto again;
19162c653d0eSAndrea Arcangeli 			}
19172c653d0eSAndrea Arcangeli 			/*
19182c653d0eSAndrea Arcangeli 			 * Take any of the stable_node dups page of
19192c653d0eSAndrea Arcangeli 			 * this stable_node chain to let the tree walk
19202c653d0eSAndrea Arcangeli 			 * continue. All KSM pages belonging to the
19212c653d0eSAndrea Arcangeli 			 * stable_node dups in a stable_node chain
19222c653d0eSAndrea Arcangeli 			 * have the same content and they're
1923457aef94SEthon Paul 			 * write protected at all times. Any will work
19242c653d0eSAndrea Arcangeli 			 * fine to continue the walk.
19252c653d0eSAndrea Arcangeli 			 */
19262cee57d1SYang Shi 			tree_page = get_ksm_page(stable_node_any,
19272cee57d1SYang Shi 						 GET_KSM_PAGE_NOLOCK);
19282c653d0eSAndrea Arcangeli 		}
19292c653d0eSAndrea Arcangeli 		VM_BUG_ON(!stable_node_dup ^ !!stable_node_any);
1930f2e5ff85SAndrea Arcangeli 		if (!tree_page) {
1931f2e5ff85SAndrea Arcangeli 			/*
1932f2e5ff85SAndrea Arcangeli 			 * If we walked over a stale stable_node,
1933f2e5ff85SAndrea Arcangeli 			 * get_ksm_page() will call rb_erase() and it
1934f2e5ff85SAndrea Arcangeli 			 * may rebalance the tree from under us. So
1935f2e5ff85SAndrea Arcangeli 			 * restart the search from scratch. Returning
1936f2e5ff85SAndrea Arcangeli 			 * NULL would be safe too, but we'd generate
1937f2e5ff85SAndrea Arcangeli 			 * false negative insertions just because some
1938f2e5ff85SAndrea Arcangeli 			 * stable_node was stale.
1939f2e5ff85SAndrea Arcangeli 			 */
1940f2e5ff85SAndrea Arcangeli 			goto again;
1941f2e5ff85SAndrea Arcangeli 		}
194231dbd01fSIzik Eidus 
19434035c07aSHugh Dickins 		ret = memcmp_pages(kpage, tree_page);
19444035c07aSHugh Dickins 		put_page(tree_page);
194531dbd01fSIzik Eidus 
194631dbd01fSIzik Eidus 		parent = *new;
194731dbd01fSIzik Eidus 		if (ret < 0)
194831dbd01fSIzik Eidus 			new = &parent->rb_left;
194931dbd01fSIzik Eidus 		else if (ret > 0)
195031dbd01fSIzik Eidus 			new = &parent->rb_right;
195131dbd01fSIzik Eidus 		else {
19522c653d0eSAndrea Arcangeli 			need_chain = true;
19532c653d0eSAndrea Arcangeli 			break;
195431dbd01fSIzik Eidus 		}
195531dbd01fSIzik Eidus 	}
195631dbd01fSIzik Eidus 
19572c653d0eSAndrea Arcangeli 	stable_node_dup = alloc_stable_node();
19582c653d0eSAndrea Arcangeli 	if (!stable_node_dup)
19597b6ba2c7SHugh Dickins 		return NULL;
196031dbd01fSIzik Eidus 
19612c653d0eSAndrea Arcangeli 	INIT_HLIST_HEAD(&stable_node_dup->hlist);
19622c653d0eSAndrea Arcangeli 	stable_node_dup->kpfn = kpfn;
19632c653d0eSAndrea Arcangeli 	set_page_stable_node(kpage, stable_node_dup);
19642c653d0eSAndrea Arcangeli 	stable_node_dup->rmap_hlist_len = 0;
19652c653d0eSAndrea Arcangeli 	DO_NUMA(stable_node_dup->nid = nid);
19662c653d0eSAndrea Arcangeli 	if (!need_chain) {
19672c653d0eSAndrea Arcangeli 		rb_link_node(&stable_node_dup->node, parent, new);
19682c653d0eSAndrea Arcangeli 		rb_insert_color(&stable_node_dup->node, root);
19692c653d0eSAndrea Arcangeli 	} else {
19702c653d0eSAndrea Arcangeli 		if (!is_stable_node_chain(stable_node)) {
197121fbd591SQi Zheng 			struct ksm_stable_node *orig = stable_node;
19722c653d0eSAndrea Arcangeli 			/* chain is missing so create it */
19732c653d0eSAndrea Arcangeli 			stable_node = alloc_stable_node_chain(orig, root);
19742c653d0eSAndrea Arcangeli 			if (!stable_node) {
19752c653d0eSAndrea Arcangeli 				free_stable_node(stable_node_dup);
19762c653d0eSAndrea Arcangeli 				return NULL;
19772c653d0eSAndrea Arcangeli 			}
19782c653d0eSAndrea Arcangeli 		}
19792c653d0eSAndrea Arcangeli 		stable_node_chain_add_dup(stable_node_dup, stable_node);
19802c653d0eSAndrea Arcangeli 	}
198108beca44SHugh Dickins 
19822c653d0eSAndrea Arcangeli 	return stable_node_dup;
198331dbd01fSIzik Eidus }
198431dbd01fSIzik Eidus 
198531dbd01fSIzik Eidus /*
19868dd3557aSHugh Dickins  * unstable_tree_search_insert - search for identical page,
19878dd3557aSHugh Dickins  * else insert rmap_item into the unstable tree.
198831dbd01fSIzik Eidus  *
198931dbd01fSIzik Eidus  * This function searches for a page in the unstable tree identical to the
199031dbd01fSIzik Eidus  * page currently being scanned; and if no identical page is found in the
199131dbd01fSIzik Eidus  * tree, we insert rmap_item as a new object into the unstable tree.
199231dbd01fSIzik Eidus  *
199331dbd01fSIzik Eidus  * This function returns pointer to rmap_item found to be identical
199431dbd01fSIzik Eidus  * to the currently scanned page, NULL otherwise.
199531dbd01fSIzik Eidus  *
199631dbd01fSIzik Eidus  * This function does both searching and inserting, because they share
199731dbd01fSIzik Eidus  * the same walking algorithm in an rbtree.
199831dbd01fSIzik Eidus  */
19998dd3557aSHugh Dickins static
unstable_tree_search_insert(struct ksm_rmap_item * rmap_item,struct page * page,struct page ** tree_pagep)200021fbd591SQi Zheng struct ksm_rmap_item *unstable_tree_search_insert(struct ksm_rmap_item *rmap_item,
20018dd3557aSHugh Dickins 					      struct page *page,
20028dd3557aSHugh Dickins 					      struct page **tree_pagep)
200331dbd01fSIzik Eidus {
200490bd6fd3SPetr Holasek 	struct rb_node **new;
200590bd6fd3SPetr Holasek 	struct rb_root *root;
200631dbd01fSIzik Eidus 	struct rb_node *parent = NULL;
200790bd6fd3SPetr Holasek 	int nid;
200890bd6fd3SPetr Holasek 
200990bd6fd3SPetr Holasek 	nid = get_kpfn_nid(page_to_pfn(page));
2010ef53d16cSHugh Dickins 	root = root_unstable_tree + nid;
201190bd6fd3SPetr Holasek 	new = &root->rb_node;
201231dbd01fSIzik Eidus 
201331dbd01fSIzik Eidus 	while (*new) {
201421fbd591SQi Zheng 		struct ksm_rmap_item *tree_rmap_item;
20158dd3557aSHugh Dickins 		struct page *tree_page;
201631dbd01fSIzik Eidus 		int ret;
201731dbd01fSIzik Eidus 
2018d178f27fSHugh Dickins 		cond_resched();
201921fbd591SQi Zheng 		tree_rmap_item = rb_entry(*new, struct ksm_rmap_item, node);
20208dd3557aSHugh Dickins 		tree_page = get_mergeable_page(tree_rmap_item);
2021c8f95ed1SAndrea Arcangeli 		if (!tree_page)
202231dbd01fSIzik Eidus 			return NULL;
202331dbd01fSIzik Eidus 
202431dbd01fSIzik Eidus 		/*
20258dd3557aSHugh Dickins 		 * Don't substitute a ksm page for a forked page.
202631dbd01fSIzik Eidus 		 */
20278dd3557aSHugh Dickins 		if (page == tree_page) {
20288dd3557aSHugh Dickins 			put_page(tree_page);
202931dbd01fSIzik Eidus 			return NULL;
203031dbd01fSIzik Eidus 		}
203131dbd01fSIzik Eidus 
20328dd3557aSHugh Dickins 		ret = memcmp_pages(page, tree_page);
203331dbd01fSIzik Eidus 
203431dbd01fSIzik Eidus 		parent = *new;
203531dbd01fSIzik Eidus 		if (ret < 0) {
20368dd3557aSHugh Dickins 			put_page(tree_page);
203731dbd01fSIzik Eidus 			new = &parent->rb_left;
203831dbd01fSIzik Eidus 		} else if (ret > 0) {
20398dd3557aSHugh Dickins 			put_page(tree_page);
204031dbd01fSIzik Eidus 			new = &parent->rb_right;
2041b599cbdfSHugh Dickins 		} else if (!ksm_merge_across_nodes &&
2042b599cbdfSHugh Dickins 			   page_to_nid(tree_page) != nid) {
2043b599cbdfSHugh Dickins 			/*
2044b599cbdfSHugh Dickins 			 * If tree_page has been migrated to another NUMA node,
2045b599cbdfSHugh Dickins 			 * it will be flushed out and put in the right unstable
2046b599cbdfSHugh Dickins 			 * tree next time: only merge with it when across_nodes.
2047b599cbdfSHugh Dickins 			 */
2048b599cbdfSHugh Dickins 			put_page(tree_page);
2049b599cbdfSHugh Dickins 			return NULL;
205031dbd01fSIzik Eidus 		} else {
20518dd3557aSHugh Dickins 			*tree_pagep = tree_page;
205231dbd01fSIzik Eidus 			return tree_rmap_item;
205331dbd01fSIzik Eidus 		}
205431dbd01fSIzik Eidus 	}
205531dbd01fSIzik Eidus 
20567b6ba2c7SHugh Dickins 	rmap_item->address |= UNSTABLE_FLAG;
205731dbd01fSIzik Eidus 	rmap_item->address |= (ksm_scan.seqnr & SEQNR_MASK);
2058e850dcf5SHugh Dickins 	DO_NUMA(rmap_item->nid = nid);
205931dbd01fSIzik Eidus 	rb_link_node(&rmap_item->node, parent, new);
206090bd6fd3SPetr Holasek 	rb_insert_color(&rmap_item->node, root);
206131dbd01fSIzik Eidus 
2062473b0ce4SHugh Dickins 	ksm_pages_unshared++;
206331dbd01fSIzik Eidus 	return NULL;
206431dbd01fSIzik Eidus }
206531dbd01fSIzik Eidus 
206631dbd01fSIzik Eidus /*
206731dbd01fSIzik Eidus  * stable_tree_append - add another rmap_item to the linked list of
206831dbd01fSIzik Eidus  * rmap_items hanging off a given node of the stable tree, all sharing
206931dbd01fSIzik Eidus  * the same ksm page.
207031dbd01fSIzik Eidus  */
stable_tree_append(struct ksm_rmap_item * rmap_item,struct ksm_stable_node * stable_node,bool max_page_sharing_bypass)207121fbd591SQi Zheng static void stable_tree_append(struct ksm_rmap_item *rmap_item,
207221fbd591SQi Zheng 			       struct ksm_stable_node *stable_node,
20732c653d0eSAndrea Arcangeli 			       bool max_page_sharing_bypass)
207431dbd01fSIzik Eidus {
20752c653d0eSAndrea Arcangeli 	/*
20762c653d0eSAndrea Arcangeli 	 * rmap won't find this mapping if we don't insert the
20772c653d0eSAndrea Arcangeli 	 * rmap_item in the right stable_node
20782c653d0eSAndrea Arcangeli 	 * duplicate. page_migration could break later if rmap breaks,
20792c653d0eSAndrea Arcangeli 	 * so we can as well crash here. We really need to check for
20802c653d0eSAndrea Arcangeli 	 * rmap_hlist_len == STABLE_NODE_CHAIN, but we can as well check
2081457aef94SEthon Paul 	 * for other negative values as an underflow if detected here
20822c653d0eSAndrea Arcangeli 	 * for the first time (and not when decreasing rmap_hlist_len)
20832c653d0eSAndrea Arcangeli 	 * would be sign of memory corruption in the stable_node.
20842c653d0eSAndrea Arcangeli 	 */
20852c653d0eSAndrea Arcangeli 	BUG_ON(stable_node->rmap_hlist_len < 0);
20862c653d0eSAndrea Arcangeli 
20872c653d0eSAndrea Arcangeli 	stable_node->rmap_hlist_len++;
20882c653d0eSAndrea Arcangeli 	if (!max_page_sharing_bypass)
20892c653d0eSAndrea Arcangeli 		/* possibly non fatal but unexpected overflow, only warn */
20902c653d0eSAndrea Arcangeli 		WARN_ON_ONCE(stable_node->rmap_hlist_len >
20912c653d0eSAndrea Arcangeli 			     ksm_max_page_sharing);
20922c653d0eSAndrea Arcangeli 
20937b6ba2c7SHugh Dickins 	rmap_item->head = stable_node;
209431dbd01fSIzik Eidus 	rmap_item->address |= STABLE_FLAG;
20957b6ba2c7SHugh Dickins 	hlist_add_head(&rmap_item->hlist, &stable_node->hlist);
2096e178dfdeSHugh Dickins 
20977b6ba2c7SHugh Dickins 	if (rmap_item->hlist.next)
2098e178dfdeSHugh Dickins 		ksm_pages_sharing++;
20997b6ba2c7SHugh Dickins 	else
21007b6ba2c7SHugh Dickins 		ksm_pages_shared++;
210176093853Sxu xin 
210276093853Sxu xin 	rmap_item->mm->ksm_merging_pages++;
210331dbd01fSIzik Eidus }
210431dbd01fSIzik Eidus 
210531dbd01fSIzik Eidus /*
210681464e30SHugh Dickins  * cmp_and_merge_page - first see if page can be merged into the stable tree;
210781464e30SHugh Dickins  * if not, compare checksum to previous and if it's the same, see if page can
210881464e30SHugh Dickins  * be inserted into the unstable tree, or merged with a page already there and
210981464e30SHugh Dickins  * both transferred to the stable tree.
211031dbd01fSIzik Eidus  *
211131dbd01fSIzik Eidus  * @page: the page that we are searching identical page to.
211231dbd01fSIzik Eidus  * @rmap_item: the reverse mapping into the virtual address of this page
211331dbd01fSIzik Eidus  */
cmp_and_merge_page(struct page * page,struct ksm_rmap_item * rmap_item)211421fbd591SQi Zheng static void cmp_and_merge_page(struct page *page, struct ksm_rmap_item *rmap_item)
211531dbd01fSIzik Eidus {
21164b22927fSKirill Tkhai 	struct mm_struct *mm = rmap_item->mm;
211721fbd591SQi Zheng 	struct ksm_rmap_item *tree_rmap_item;
21188dd3557aSHugh Dickins 	struct page *tree_page = NULL;
211921fbd591SQi Zheng 	struct ksm_stable_node *stable_node;
21208dd3557aSHugh Dickins 	struct page *kpage;
212131dbd01fSIzik Eidus 	unsigned int checksum;
212231dbd01fSIzik Eidus 	int err;
21232c653d0eSAndrea Arcangeli 	bool max_page_sharing_bypass = false;
212431dbd01fSIzik Eidus 
21254146d2d6SHugh Dickins 	stable_node = page_stable_node(page);
21264146d2d6SHugh Dickins 	if (stable_node) {
21274146d2d6SHugh Dickins 		if (stable_node->head != &migrate_nodes &&
21282c653d0eSAndrea Arcangeli 		    get_kpfn_nid(READ_ONCE(stable_node->kpfn)) !=
21292c653d0eSAndrea Arcangeli 		    NUMA(stable_node->nid)) {
21302c653d0eSAndrea Arcangeli 			stable_node_dup_del(stable_node);
21314146d2d6SHugh Dickins 			stable_node->head = &migrate_nodes;
21324146d2d6SHugh Dickins 			list_add(&stable_node->list, stable_node->head);
21334146d2d6SHugh Dickins 		}
21344146d2d6SHugh Dickins 		if (stable_node->head != &migrate_nodes &&
21354146d2d6SHugh Dickins 		    rmap_item->head == stable_node)
21364146d2d6SHugh Dickins 			return;
21372c653d0eSAndrea Arcangeli 		/*
21382c653d0eSAndrea Arcangeli 		 * If it's a KSM fork, allow it to go over the sharing limit
21392c653d0eSAndrea Arcangeli 		 * without warnings.
21402c653d0eSAndrea Arcangeli 		 */
21412c653d0eSAndrea Arcangeli 		if (!is_page_sharing_candidate(stable_node))
21422c653d0eSAndrea Arcangeli 			max_page_sharing_bypass = true;
21434146d2d6SHugh Dickins 	}
214431dbd01fSIzik Eidus 
214531dbd01fSIzik Eidus 	/* We first start with searching the page inside the stable tree */
214662b61f61SHugh Dickins 	kpage = stable_tree_search(page);
21474146d2d6SHugh Dickins 	if (kpage == page && rmap_item->head == stable_node) {
21484146d2d6SHugh Dickins 		put_page(kpage);
21494146d2d6SHugh Dickins 		return;
21504146d2d6SHugh Dickins 	}
21514146d2d6SHugh Dickins 
21524146d2d6SHugh Dickins 	remove_rmap_item_from_tree(rmap_item);
21534146d2d6SHugh Dickins 
215462b61f61SHugh Dickins 	if (kpage) {
21552cee57d1SYang Shi 		if (PTR_ERR(kpage) == -EBUSY)
21562cee57d1SYang Shi 			return;
21572cee57d1SYang Shi 
215808beca44SHugh Dickins 		err = try_to_merge_with_ksm_page(rmap_item, page, kpage);
215931dbd01fSIzik Eidus 		if (!err) {
216031dbd01fSIzik Eidus 			/*
216131dbd01fSIzik Eidus 			 * The page was successfully merged:
216231dbd01fSIzik Eidus 			 * add its rmap_item to the stable tree.
216331dbd01fSIzik Eidus 			 */
21645ad64688SHugh Dickins 			lock_page(kpage);
21652c653d0eSAndrea Arcangeli 			stable_tree_append(rmap_item, page_stable_node(kpage),
21662c653d0eSAndrea Arcangeli 					   max_page_sharing_bypass);
21675ad64688SHugh Dickins 			unlock_page(kpage);
216831dbd01fSIzik Eidus 		}
21698dd3557aSHugh Dickins 		put_page(kpage);
217031dbd01fSIzik Eidus 		return;
217131dbd01fSIzik Eidus 	}
217231dbd01fSIzik Eidus 
217331dbd01fSIzik Eidus 	/*
21744035c07aSHugh Dickins 	 * If the hash value of the page has changed from the last time
21754035c07aSHugh Dickins 	 * we calculated it, this page is changing frequently: therefore we
21764035c07aSHugh Dickins 	 * don't want to insert it in the unstable tree, and we don't want
21774035c07aSHugh Dickins 	 * to waste our time searching for something identical to it there.
217831dbd01fSIzik Eidus 	 */
217931dbd01fSIzik Eidus 	checksum = calc_checksum(page);
218031dbd01fSIzik Eidus 	if (rmap_item->oldchecksum != checksum) {
218131dbd01fSIzik Eidus 		rmap_item->oldchecksum = checksum;
218231dbd01fSIzik Eidus 		return;
218331dbd01fSIzik Eidus 	}
218431dbd01fSIzik Eidus 
2185e86c59b1SClaudio Imbrenda 	/*
2186e86c59b1SClaudio Imbrenda 	 * Same checksum as an empty page. We attempt to merge it with the
2187e86c59b1SClaudio Imbrenda 	 * appropriate zero page if the user enabled this via sysfs.
2188e86c59b1SClaudio Imbrenda 	 */
2189e86c59b1SClaudio Imbrenda 	if (ksm_use_zero_pages && (checksum == zero_checksum)) {
2190e86c59b1SClaudio Imbrenda 		struct vm_area_struct *vma;
2191e86c59b1SClaudio Imbrenda 
2192d8ed45c5SMichel Lespinasse 		mmap_read_lock(mm);
21934b22927fSKirill Tkhai 		vma = find_mergeable_vma(mm, rmap_item->address);
219456df70a6SMuchun Song 		if (vma) {
2195e86c59b1SClaudio Imbrenda 			err = try_to_merge_one_page(vma, page,
2196e86c59b1SClaudio Imbrenda 					ZERO_PAGE(rmap_item->address));
2197739100c8SStefan Roesch 			trace_ksm_merge_one_page(
2198739100c8SStefan Roesch 				page_to_pfn(ZERO_PAGE(rmap_item->address)),
2199739100c8SStefan Roesch 				rmap_item, mm, err);
220056df70a6SMuchun Song 		} else {
220156df70a6SMuchun Song 			/*
220256df70a6SMuchun Song 			 * If the vma is out of date, we do not need to
220356df70a6SMuchun Song 			 * continue.
220456df70a6SMuchun Song 			 */
220556df70a6SMuchun Song 			err = 0;
220656df70a6SMuchun Song 		}
2207d8ed45c5SMichel Lespinasse 		mmap_read_unlock(mm);
2208e86c59b1SClaudio Imbrenda 		/*
2209e86c59b1SClaudio Imbrenda 		 * In case of failure, the page was not really empty, so we
2210e86c59b1SClaudio Imbrenda 		 * need to continue. Otherwise we're done.
2211e86c59b1SClaudio Imbrenda 		 */
2212e86c59b1SClaudio Imbrenda 		if (!err)
2213e86c59b1SClaudio Imbrenda 			return;
2214e86c59b1SClaudio Imbrenda 	}
22158dd3557aSHugh Dickins 	tree_rmap_item =
22168dd3557aSHugh Dickins 		unstable_tree_search_insert(rmap_item, page, &tree_page);
221731dbd01fSIzik Eidus 	if (tree_rmap_item) {
221877da2ba0SClaudio Imbrenda 		bool split;
221977da2ba0SClaudio Imbrenda 
22208dd3557aSHugh Dickins 		kpage = try_to_merge_two_pages(rmap_item, page,
22218dd3557aSHugh Dickins 						tree_rmap_item, tree_page);
222277da2ba0SClaudio Imbrenda 		/*
222377da2ba0SClaudio Imbrenda 		 * If both pages we tried to merge belong to the same compound
222477da2ba0SClaudio Imbrenda 		 * page, then we actually ended up increasing the reference
222577da2ba0SClaudio Imbrenda 		 * count of the same compound page twice, and split_huge_page
222677da2ba0SClaudio Imbrenda 		 * failed.
222777da2ba0SClaudio Imbrenda 		 * Here we set a flag if that happened, and we use it later to
222877da2ba0SClaudio Imbrenda 		 * try split_huge_page again. Since we call put_page right
222977da2ba0SClaudio Imbrenda 		 * afterwards, the reference count will be correct and
223077da2ba0SClaudio Imbrenda 		 * split_huge_page should succeed.
223177da2ba0SClaudio Imbrenda 		 */
223277da2ba0SClaudio Imbrenda 		split = PageTransCompound(page)
223377da2ba0SClaudio Imbrenda 			&& compound_head(page) == compound_head(tree_page);
22348dd3557aSHugh Dickins 		put_page(tree_page);
22358dd3557aSHugh Dickins 		if (kpage) {
2236bc56620bSHugh Dickins 			/*
2237bc56620bSHugh Dickins 			 * The pages were successfully merged: insert new
2238bc56620bSHugh Dickins 			 * node in the stable tree and add both rmap_items.
2239bc56620bSHugh Dickins 			 */
22405ad64688SHugh Dickins 			lock_page(kpage);
22417b6ba2c7SHugh Dickins 			stable_node = stable_tree_insert(kpage);
22427b6ba2c7SHugh Dickins 			if (stable_node) {
22432c653d0eSAndrea Arcangeli 				stable_tree_append(tree_rmap_item, stable_node,
22442c653d0eSAndrea Arcangeli 						   false);
22452c653d0eSAndrea Arcangeli 				stable_tree_append(rmap_item, stable_node,
22462c653d0eSAndrea Arcangeli 						   false);
22477b6ba2c7SHugh Dickins 			}
22485ad64688SHugh Dickins 			unlock_page(kpage);
22497b6ba2c7SHugh Dickins 
225031dbd01fSIzik Eidus 			/*
225131dbd01fSIzik Eidus 			 * If we fail to insert the page into the stable tree,
225231dbd01fSIzik Eidus 			 * we will have 2 virtual addresses that are pointing
225331dbd01fSIzik Eidus 			 * to a ksm page left outside the stable tree,
225431dbd01fSIzik Eidus 			 * in which case we need to break_cow on both.
225531dbd01fSIzik Eidus 			 */
22567b6ba2c7SHugh Dickins 			if (!stable_node) {
22578dd3557aSHugh Dickins 				break_cow(tree_rmap_item);
22588dd3557aSHugh Dickins 				break_cow(rmap_item);
225931dbd01fSIzik Eidus 			}
226077da2ba0SClaudio Imbrenda 		} else if (split) {
226177da2ba0SClaudio Imbrenda 			/*
226277da2ba0SClaudio Imbrenda 			 * We are here if we tried to merge two pages and
226377da2ba0SClaudio Imbrenda 			 * failed because they both belonged to the same
226477da2ba0SClaudio Imbrenda 			 * compound page. We will split the page now, but no
226577da2ba0SClaudio Imbrenda 			 * merging will take place.
226677da2ba0SClaudio Imbrenda 			 * We do not want to add the cost of a full lock; if
226777da2ba0SClaudio Imbrenda 			 * the page is locked, it is better to skip it and
226877da2ba0SClaudio Imbrenda 			 * perhaps try again later.
226977da2ba0SClaudio Imbrenda 			 */
227077da2ba0SClaudio Imbrenda 			if (!trylock_page(page))
227177da2ba0SClaudio Imbrenda 				return;
227277da2ba0SClaudio Imbrenda 			split_huge_page(page);
227377da2ba0SClaudio Imbrenda 			unlock_page(page);
227431dbd01fSIzik Eidus 		}
227531dbd01fSIzik Eidus 	}
227631dbd01fSIzik Eidus }
227731dbd01fSIzik Eidus 
get_next_rmap_item(struct ksm_mm_slot * mm_slot,struct ksm_rmap_item ** rmap_list,unsigned long addr)227821fbd591SQi Zheng static struct ksm_rmap_item *get_next_rmap_item(struct ksm_mm_slot *mm_slot,
227921fbd591SQi Zheng 					    struct ksm_rmap_item **rmap_list,
228031dbd01fSIzik Eidus 					    unsigned long addr)
228131dbd01fSIzik Eidus {
228221fbd591SQi Zheng 	struct ksm_rmap_item *rmap_item;
228331dbd01fSIzik Eidus 
22846514d511SHugh Dickins 	while (*rmap_list) {
22856514d511SHugh Dickins 		rmap_item = *rmap_list;
228693d17715SHugh Dickins 		if ((rmap_item->address & PAGE_MASK) == addr)
228731dbd01fSIzik Eidus 			return rmap_item;
228831dbd01fSIzik Eidus 		if (rmap_item->address > addr)
228931dbd01fSIzik Eidus 			break;
22906514d511SHugh Dickins 		*rmap_list = rmap_item->rmap_list;
229131dbd01fSIzik Eidus 		remove_rmap_item_from_tree(rmap_item);
229231dbd01fSIzik Eidus 		free_rmap_item(rmap_item);
229331dbd01fSIzik Eidus 	}
229431dbd01fSIzik Eidus 
229531dbd01fSIzik Eidus 	rmap_item = alloc_rmap_item();
229631dbd01fSIzik Eidus 	if (rmap_item) {
229731dbd01fSIzik Eidus 		/* It has already been zeroed */
229858730ab6SQi Zheng 		rmap_item->mm = mm_slot->slot.mm;
2299cb4df4caSxu xin 		rmap_item->mm->ksm_rmap_items++;
230031dbd01fSIzik Eidus 		rmap_item->address = addr;
23016514d511SHugh Dickins 		rmap_item->rmap_list = *rmap_list;
23026514d511SHugh Dickins 		*rmap_list = rmap_item;
230331dbd01fSIzik Eidus 	}
230431dbd01fSIzik Eidus 	return rmap_item;
230531dbd01fSIzik Eidus }
230631dbd01fSIzik Eidus 
scan_get_next_rmap_item(struct page ** page)230721fbd591SQi Zheng static struct ksm_rmap_item *scan_get_next_rmap_item(struct page **page)
230831dbd01fSIzik Eidus {
230931dbd01fSIzik Eidus 	struct mm_struct *mm;
231058730ab6SQi Zheng 	struct ksm_mm_slot *mm_slot;
231158730ab6SQi Zheng 	struct mm_slot *slot;
231231dbd01fSIzik Eidus 	struct vm_area_struct *vma;
231321fbd591SQi Zheng 	struct ksm_rmap_item *rmap_item;
2314a5f18ba0SMatthew Wilcox (Oracle) 	struct vma_iterator vmi;
231590bd6fd3SPetr Holasek 	int nid;
231631dbd01fSIzik Eidus 
231758730ab6SQi Zheng 	if (list_empty(&ksm_mm_head.slot.mm_node))
231831dbd01fSIzik Eidus 		return NULL;
231931dbd01fSIzik Eidus 
232058730ab6SQi Zheng 	mm_slot = ksm_scan.mm_slot;
232158730ab6SQi Zheng 	if (mm_slot == &ksm_mm_head) {
2322739100c8SStefan Roesch 		trace_ksm_start_scan(ksm_scan.seqnr, ksm_rmap_items);
2323739100c8SStefan Roesch 
23242919bfd0SHugh Dickins 		/*
23251fec6890SMatthew Wilcox (Oracle) 		 * A number of pages can hang around indefinitely in per-cpu
23261fec6890SMatthew Wilcox (Oracle) 		 * LRU cache, raised page count preventing write_protect_page
23272919bfd0SHugh Dickins 		 * from merging them.  Though it doesn't really matter much,
23282919bfd0SHugh Dickins 		 * it is puzzling to see some stuck in pages_volatile until
23292919bfd0SHugh Dickins 		 * other activity jostles them out, and they also prevented
23302919bfd0SHugh Dickins 		 * LTP's KSM test from succeeding deterministically; so drain
23312919bfd0SHugh Dickins 		 * them here (here rather than on entry to ksm_do_scan(),
23322919bfd0SHugh Dickins 		 * so we don't IPI too often when pages_to_scan is set low).
23332919bfd0SHugh Dickins 		 */
23342919bfd0SHugh Dickins 		lru_add_drain_all();
23352919bfd0SHugh Dickins 
23364146d2d6SHugh Dickins 		/*
23374146d2d6SHugh Dickins 		 * Whereas stale stable_nodes on the stable_tree itself
23384146d2d6SHugh Dickins 		 * get pruned in the regular course of stable_tree_search(),
23394146d2d6SHugh Dickins 		 * those moved out to the migrate_nodes list can accumulate:
23404146d2d6SHugh Dickins 		 * so prune them once before each full scan.
23414146d2d6SHugh Dickins 		 */
23424146d2d6SHugh Dickins 		if (!ksm_merge_across_nodes) {
234321fbd591SQi Zheng 			struct ksm_stable_node *stable_node, *next;
23444146d2d6SHugh Dickins 			struct page *page;
23454146d2d6SHugh Dickins 
234603640418SGeliang Tang 			list_for_each_entry_safe(stable_node, next,
234703640418SGeliang Tang 						 &migrate_nodes, list) {
23482cee57d1SYang Shi 				page = get_ksm_page(stable_node,
23492cee57d1SYang Shi 						    GET_KSM_PAGE_NOLOCK);
23504146d2d6SHugh Dickins 				if (page)
23514146d2d6SHugh Dickins 					put_page(page);
23524146d2d6SHugh Dickins 				cond_resched();
23534146d2d6SHugh Dickins 			}
23544146d2d6SHugh Dickins 		}
23554146d2d6SHugh Dickins 
2356ef53d16cSHugh Dickins 		for (nid = 0; nid < ksm_nr_node_ids; nid++)
235790bd6fd3SPetr Holasek 			root_unstable_tree[nid] = RB_ROOT;
235831dbd01fSIzik Eidus 
235931dbd01fSIzik Eidus 		spin_lock(&ksm_mmlist_lock);
236058730ab6SQi Zheng 		slot = list_entry(mm_slot->slot.mm_node.next,
236158730ab6SQi Zheng 				  struct mm_slot, mm_node);
236258730ab6SQi Zheng 		mm_slot = mm_slot_entry(slot, struct ksm_mm_slot, slot);
236358730ab6SQi Zheng 		ksm_scan.mm_slot = mm_slot;
236431dbd01fSIzik Eidus 		spin_unlock(&ksm_mmlist_lock);
23652b472611SHugh Dickins 		/*
23662b472611SHugh Dickins 		 * Although we tested list_empty() above, a racing __ksm_exit
23672b472611SHugh Dickins 		 * of the last mm on the list may have removed it since then.
23682b472611SHugh Dickins 		 */
236958730ab6SQi Zheng 		if (mm_slot == &ksm_mm_head)
23702b472611SHugh Dickins 			return NULL;
237131dbd01fSIzik Eidus next_mm:
237231dbd01fSIzik Eidus 		ksm_scan.address = 0;
237358730ab6SQi Zheng 		ksm_scan.rmap_list = &mm_slot->rmap_list;
237431dbd01fSIzik Eidus 	}
237531dbd01fSIzik Eidus 
237658730ab6SQi Zheng 	slot = &mm_slot->slot;
237731dbd01fSIzik Eidus 	mm = slot->mm;
2378a5f18ba0SMatthew Wilcox (Oracle) 	vma_iter_init(&vmi, mm, ksm_scan.address);
2379a5f18ba0SMatthew Wilcox (Oracle) 
2380d8ed45c5SMichel Lespinasse 	mmap_read_lock(mm);
23819ba69294SHugh Dickins 	if (ksm_test_exit(mm))
2382a5f18ba0SMatthew Wilcox (Oracle) 		goto no_vmas;
23839ba69294SHugh Dickins 
2384a5f18ba0SMatthew Wilcox (Oracle) 	for_each_vma(vmi, vma) {
238531dbd01fSIzik Eidus 		if (!(vma->vm_flags & VM_MERGEABLE))
238631dbd01fSIzik Eidus 			continue;
238731dbd01fSIzik Eidus 		if (ksm_scan.address < vma->vm_start)
238831dbd01fSIzik Eidus 			ksm_scan.address = vma->vm_start;
238931dbd01fSIzik Eidus 		if (!vma->anon_vma)
239031dbd01fSIzik Eidus 			ksm_scan.address = vma->vm_end;
239131dbd01fSIzik Eidus 
239231dbd01fSIzik Eidus 		while (ksm_scan.address < vma->vm_end) {
23939ba69294SHugh Dickins 			if (ksm_test_exit(mm))
23949ba69294SHugh Dickins 				break;
239531dbd01fSIzik Eidus 			*page = follow_page(vma, ksm_scan.address, FOLL_GET);
2396f7091ed6SHaiyue Wang 			if (IS_ERR_OR_NULL(*page)) {
239721ae5b01SAndrea Arcangeli 				ksm_scan.address += PAGE_SIZE;
239821ae5b01SAndrea Arcangeli 				cond_resched();
239921ae5b01SAndrea Arcangeli 				continue;
240021ae5b01SAndrea Arcangeli 			}
2401f7091ed6SHaiyue Wang 			if (is_zone_device_page(*page))
2402f7091ed6SHaiyue Wang 				goto next_page;
2403f765f540SKirill A. Shutemov 			if (PageAnon(*page)) {
240431dbd01fSIzik Eidus 				flush_anon_page(vma, *page, ksm_scan.address);
240531dbd01fSIzik Eidus 				flush_dcache_page(*page);
240658730ab6SQi Zheng 				rmap_item = get_next_rmap_item(mm_slot,
24076514d511SHugh Dickins 					ksm_scan.rmap_list, ksm_scan.address);
240831dbd01fSIzik Eidus 				if (rmap_item) {
24096514d511SHugh Dickins 					ksm_scan.rmap_list =
24106514d511SHugh Dickins 							&rmap_item->rmap_list;
241131dbd01fSIzik Eidus 					ksm_scan.address += PAGE_SIZE;
241231dbd01fSIzik Eidus 				} else
241331dbd01fSIzik Eidus 					put_page(*page);
2414d8ed45c5SMichel Lespinasse 				mmap_read_unlock(mm);
241531dbd01fSIzik Eidus 				return rmap_item;
241631dbd01fSIzik Eidus 			}
2417f7091ed6SHaiyue Wang next_page:
241831dbd01fSIzik Eidus 			put_page(*page);
241931dbd01fSIzik Eidus 			ksm_scan.address += PAGE_SIZE;
242031dbd01fSIzik Eidus 			cond_resched();
242131dbd01fSIzik Eidus 		}
242231dbd01fSIzik Eidus 	}
242331dbd01fSIzik Eidus 
24249ba69294SHugh Dickins 	if (ksm_test_exit(mm)) {
2425a5f18ba0SMatthew Wilcox (Oracle) no_vmas:
24269ba69294SHugh Dickins 		ksm_scan.address = 0;
242758730ab6SQi Zheng 		ksm_scan.rmap_list = &mm_slot->rmap_list;
24289ba69294SHugh Dickins 	}
242931dbd01fSIzik Eidus 	/*
243031dbd01fSIzik Eidus 	 * Nuke all the rmap_items that are above this current rmap:
243131dbd01fSIzik Eidus 	 * because there were no VM_MERGEABLE vmas with such addresses.
243231dbd01fSIzik Eidus 	 */
2433420be4edSChengyang Fan 	remove_trailing_rmap_items(ksm_scan.rmap_list);
243431dbd01fSIzik Eidus 
243531dbd01fSIzik Eidus 	spin_lock(&ksm_mmlist_lock);
243658730ab6SQi Zheng 	slot = list_entry(mm_slot->slot.mm_node.next,
243758730ab6SQi Zheng 			  struct mm_slot, mm_node);
243858730ab6SQi Zheng 	ksm_scan.mm_slot = mm_slot_entry(slot, struct ksm_mm_slot, slot);
2439cd551f97SHugh Dickins 	if (ksm_scan.address == 0) {
2440cd551f97SHugh Dickins 		/*
2441c1e8d7c6SMichel Lespinasse 		 * We've completed a full scan of all vmas, holding mmap_lock
2442cd551f97SHugh Dickins 		 * throughout, and found no VM_MERGEABLE: so do the same as
2443cd551f97SHugh Dickins 		 * __ksm_exit does to remove this mm from all our lists now.
24449ba69294SHugh Dickins 		 * This applies either when cleaning up after __ksm_exit
24459ba69294SHugh Dickins 		 * (but beware: we can reach here even before __ksm_exit),
24469ba69294SHugh Dickins 		 * or when all VM_MERGEABLE areas have been unmapped (and
2447c1e8d7c6SMichel Lespinasse 		 * mmap_lock then protects against race with MADV_MERGEABLE).
2448cd551f97SHugh Dickins 		 */
244958730ab6SQi Zheng 		hash_del(&mm_slot->slot.hash);
245058730ab6SQi Zheng 		list_del(&mm_slot->slot.mm_node);
24519ba69294SHugh Dickins 		spin_unlock(&ksm_mmlist_lock);
24529ba69294SHugh Dickins 
245358730ab6SQi Zheng 		mm_slot_free(mm_slot_cache, mm_slot);
2454cd551f97SHugh Dickins 		clear_bit(MMF_VM_MERGEABLE, &mm->flags);
2455d7597f59SStefan Roesch 		clear_bit(MMF_VM_MERGE_ANY, &mm->flags);
2456d8ed45c5SMichel Lespinasse 		mmap_read_unlock(mm);
24579ba69294SHugh Dickins 		mmdrop(mm);
24589ba69294SHugh Dickins 	} else {
2459d8ed45c5SMichel Lespinasse 		mmap_read_unlock(mm);
24607496fea9SZhou Chengming 		/*
24613e4e28c5SMichel Lespinasse 		 * mmap_read_unlock(mm) first because after
24627496fea9SZhou Chengming 		 * spin_unlock(&ksm_mmlist_lock) run, the "mm" may
24637496fea9SZhou Chengming 		 * already have been freed under us by __ksm_exit()
24647496fea9SZhou Chengming 		 * because the "mm_slot" is still hashed and
24657496fea9SZhou Chengming 		 * ksm_scan.mm_slot doesn't point to it anymore.
24667496fea9SZhou Chengming 		 */
24677496fea9SZhou Chengming 		spin_unlock(&ksm_mmlist_lock);
24689ba69294SHugh Dickins 	}
246931dbd01fSIzik Eidus 
247031dbd01fSIzik Eidus 	/* Repeat until we've completed scanning the whole list */
247158730ab6SQi Zheng 	mm_slot = ksm_scan.mm_slot;
247258730ab6SQi Zheng 	if (mm_slot != &ksm_mm_head)
247331dbd01fSIzik Eidus 		goto next_mm;
247431dbd01fSIzik Eidus 
2475739100c8SStefan Roesch 	trace_ksm_stop_scan(ksm_scan.seqnr, ksm_rmap_items);
247631dbd01fSIzik Eidus 	ksm_scan.seqnr++;
247731dbd01fSIzik Eidus 	return NULL;
247831dbd01fSIzik Eidus }
247931dbd01fSIzik Eidus 
248031dbd01fSIzik Eidus /**
248131dbd01fSIzik Eidus  * ksm_do_scan  - the ksm scanner main worker function.
2482b7701a5fSMike Rapoport  * @scan_npages:  number of pages we want to scan before we return.
248331dbd01fSIzik Eidus  */
ksm_do_scan(unsigned int scan_npages)248431dbd01fSIzik Eidus static void ksm_do_scan(unsigned int scan_npages)
248531dbd01fSIzik Eidus {
248621fbd591SQi Zheng 	struct ksm_rmap_item *rmap_item;
24873f649ab7SKees Cook 	struct page *page;
248831dbd01fSIzik Eidus 
24890a82b46aSChengming Zhou 	while (scan_npages-- && likely(!freezing(current))) {
249031dbd01fSIzik Eidus 		cond_resched();
249131dbd01fSIzik Eidus 		rmap_item = scan_get_next_rmap_item(&page);
249231dbd01fSIzik Eidus 		if (!rmap_item)
249331dbd01fSIzik Eidus 			return;
249431dbd01fSIzik Eidus 		cmp_and_merge_page(page, rmap_item);
249531dbd01fSIzik Eidus 		put_page(page);
24960a82b46aSChengming Zhou 		ksm_pages_scanned++;
249731dbd01fSIzik Eidus 	}
249831dbd01fSIzik Eidus }
249931dbd01fSIzik Eidus 
ksmd_should_run(void)25006e158384SHugh Dickins static int ksmd_should_run(void)
25016e158384SHugh Dickins {
250258730ab6SQi Zheng 	return (ksm_run & KSM_RUN_MERGE) && !list_empty(&ksm_mm_head.slot.mm_node);
25036e158384SHugh Dickins }
25046e158384SHugh Dickins 
ksm_scan_thread(void * nothing)250531dbd01fSIzik Eidus static int ksm_scan_thread(void *nothing)
250631dbd01fSIzik Eidus {
2507fcf9a0efSKirill Tkhai 	unsigned int sleep_ms;
2508fcf9a0efSKirill Tkhai 
2509878aee7dSAndrea Arcangeli 	set_freezable();
2510339aa624SIzik Eidus 	set_user_nice(current, 5);
251131dbd01fSIzik Eidus 
251231dbd01fSIzik Eidus 	while (!kthread_should_stop()) {
251331dbd01fSIzik Eidus 		mutex_lock(&ksm_thread_mutex);
2514ef4d43a8SHugh Dickins 		wait_while_offlining();
25156e158384SHugh Dickins 		if (ksmd_should_run())
251631dbd01fSIzik Eidus 			ksm_do_scan(ksm_thread_pages_to_scan);
251731dbd01fSIzik Eidus 		mutex_unlock(&ksm_thread_mutex);
25186e158384SHugh Dickins 
2519878aee7dSAndrea Arcangeli 		try_to_freeze();
2520878aee7dSAndrea Arcangeli 
25216e158384SHugh Dickins 		if (ksmd_should_run()) {
2522fcf9a0efSKirill Tkhai 			sleep_ms = READ_ONCE(ksm_thread_sleep_millisecs);
2523fcf9a0efSKirill Tkhai 			wait_event_interruptible_timeout(ksm_iter_wait,
2524fcf9a0efSKirill Tkhai 				sleep_ms != READ_ONCE(ksm_thread_sleep_millisecs),
2525fcf9a0efSKirill Tkhai 				msecs_to_jiffies(sleep_ms));
252631dbd01fSIzik Eidus 		} else {
2527878aee7dSAndrea Arcangeli 			wait_event_freezable(ksm_thread_wait,
25286e158384SHugh Dickins 				ksmd_should_run() || kthread_should_stop());
252931dbd01fSIzik Eidus 		}
253031dbd01fSIzik Eidus 	}
253131dbd01fSIzik Eidus 	return 0;
253231dbd01fSIzik Eidus }
253331dbd01fSIzik Eidus 
__ksm_add_vma(struct vm_area_struct * vma)2534d7597f59SStefan Roesch static void __ksm_add_vma(struct vm_area_struct *vma)
2535d7597f59SStefan Roesch {
2536d7597f59SStefan Roesch 	unsigned long vm_flags = vma->vm_flags;
2537d7597f59SStefan Roesch 
2538d7597f59SStefan Roesch 	if (vm_flags & VM_MERGEABLE)
2539d7597f59SStefan Roesch 		return;
2540d7597f59SStefan Roesch 
2541d7597f59SStefan Roesch 	if (vma_ksm_compatible(vma))
2542d7597f59SStefan Roesch 		vm_flags_set(vma, VM_MERGEABLE);
2543d7597f59SStefan Roesch }
2544d7597f59SStefan Roesch 
__ksm_del_vma(struct vm_area_struct * vma)254524139c07SDavid Hildenbrand static int __ksm_del_vma(struct vm_area_struct *vma)
254624139c07SDavid Hildenbrand {
254724139c07SDavid Hildenbrand 	int err;
254824139c07SDavid Hildenbrand 
254924139c07SDavid Hildenbrand 	if (!(vma->vm_flags & VM_MERGEABLE))
255024139c07SDavid Hildenbrand 		return 0;
255124139c07SDavid Hildenbrand 
255224139c07SDavid Hildenbrand 	if (vma->anon_vma) {
255349b06385SSuren Baghdasaryan 		err = unmerge_ksm_pages(vma, vma->vm_start, vma->vm_end, true);
255424139c07SDavid Hildenbrand 		if (err)
255524139c07SDavid Hildenbrand 			return err;
255624139c07SDavid Hildenbrand 	}
255724139c07SDavid Hildenbrand 
255824139c07SDavid Hildenbrand 	vm_flags_clear(vma, VM_MERGEABLE);
255924139c07SDavid Hildenbrand 	return 0;
256024139c07SDavid Hildenbrand }
2561d7597f59SStefan Roesch /**
2562d7597f59SStefan Roesch  * ksm_add_vma - Mark vma as mergeable if compatible
2563d7597f59SStefan Roesch  *
2564d7597f59SStefan Roesch  * @vma:  Pointer to vma
2565d7597f59SStefan Roesch  */
ksm_add_vma(struct vm_area_struct * vma)2566d7597f59SStefan Roesch void ksm_add_vma(struct vm_area_struct *vma)
2567d7597f59SStefan Roesch {
2568d7597f59SStefan Roesch 	struct mm_struct *mm = vma->vm_mm;
2569d7597f59SStefan Roesch 
2570d7597f59SStefan Roesch 	if (test_bit(MMF_VM_MERGE_ANY, &mm->flags))
2571d7597f59SStefan Roesch 		__ksm_add_vma(vma);
2572d7597f59SStefan Roesch }
2573d7597f59SStefan Roesch 
ksm_add_vmas(struct mm_struct * mm)2574d7597f59SStefan Roesch static void ksm_add_vmas(struct mm_struct *mm)
2575d7597f59SStefan Roesch {
2576d7597f59SStefan Roesch 	struct vm_area_struct *vma;
2577d7597f59SStefan Roesch 
2578d7597f59SStefan Roesch 	VMA_ITERATOR(vmi, mm, 0);
2579d7597f59SStefan Roesch 	for_each_vma(vmi, vma)
2580d7597f59SStefan Roesch 		__ksm_add_vma(vma);
2581d7597f59SStefan Roesch }
2582d7597f59SStefan Roesch 
ksm_del_vmas(struct mm_struct * mm)258324139c07SDavid Hildenbrand static int ksm_del_vmas(struct mm_struct *mm)
258424139c07SDavid Hildenbrand {
258524139c07SDavid Hildenbrand 	struct vm_area_struct *vma;
258624139c07SDavid Hildenbrand 	int err;
258724139c07SDavid Hildenbrand 
258824139c07SDavid Hildenbrand 	VMA_ITERATOR(vmi, mm, 0);
258924139c07SDavid Hildenbrand 	for_each_vma(vmi, vma) {
259024139c07SDavid Hildenbrand 		err = __ksm_del_vma(vma);
259124139c07SDavid Hildenbrand 		if (err)
259224139c07SDavid Hildenbrand 			return err;
259324139c07SDavid Hildenbrand 	}
259424139c07SDavid Hildenbrand 	return 0;
259524139c07SDavid Hildenbrand }
259624139c07SDavid Hildenbrand 
2597d7597f59SStefan Roesch /**
2598d7597f59SStefan Roesch  * ksm_enable_merge_any - Add mm to mm ksm list and enable merging on all
2599d7597f59SStefan Roesch  *                        compatible VMA's
2600d7597f59SStefan Roesch  *
2601d7597f59SStefan Roesch  * @mm:  Pointer to mm
2602d7597f59SStefan Roesch  *
2603d7597f59SStefan Roesch  * Returns 0 on success, otherwise error code
2604d7597f59SStefan Roesch  */
ksm_enable_merge_any(struct mm_struct * mm)2605d7597f59SStefan Roesch int ksm_enable_merge_any(struct mm_struct *mm)
2606d7597f59SStefan Roesch {
2607d7597f59SStefan Roesch 	int err;
2608d7597f59SStefan Roesch 
2609d7597f59SStefan Roesch 	if (test_bit(MMF_VM_MERGE_ANY, &mm->flags))
2610d7597f59SStefan Roesch 		return 0;
2611d7597f59SStefan Roesch 
2612d7597f59SStefan Roesch 	if (!test_bit(MMF_VM_MERGEABLE, &mm->flags)) {
2613d7597f59SStefan Roesch 		err = __ksm_enter(mm);
2614d7597f59SStefan Roesch 		if (err)
2615d7597f59SStefan Roesch 			return err;
2616d7597f59SStefan Roesch 	}
2617d7597f59SStefan Roesch 
2618d7597f59SStefan Roesch 	set_bit(MMF_VM_MERGE_ANY, &mm->flags);
2619d7597f59SStefan Roesch 	ksm_add_vmas(mm);
2620d7597f59SStefan Roesch 
2621d7597f59SStefan Roesch 	return 0;
2622d7597f59SStefan Roesch }
2623d7597f59SStefan Roesch 
262424139c07SDavid Hildenbrand /**
262524139c07SDavid Hildenbrand  * ksm_disable_merge_any - Disable merging on all compatible VMA's of the mm,
262624139c07SDavid Hildenbrand  *			   previously enabled via ksm_enable_merge_any().
262724139c07SDavid Hildenbrand  *
262824139c07SDavid Hildenbrand  * Disabling merging implies unmerging any merged pages, like setting
262924139c07SDavid Hildenbrand  * MADV_UNMERGEABLE would. If unmerging fails, the whole operation fails and
263024139c07SDavid Hildenbrand  * merging on all compatible VMA's remains enabled.
263124139c07SDavid Hildenbrand  *
263224139c07SDavid Hildenbrand  * @mm: Pointer to mm
263324139c07SDavid Hildenbrand  *
263424139c07SDavid Hildenbrand  * Returns 0 on success, otherwise error code
263524139c07SDavid Hildenbrand  */
ksm_disable_merge_any(struct mm_struct * mm)263624139c07SDavid Hildenbrand int ksm_disable_merge_any(struct mm_struct *mm)
263724139c07SDavid Hildenbrand {
263824139c07SDavid Hildenbrand 	int err;
263924139c07SDavid Hildenbrand 
264024139c07SDavid Hildenbrand 	if (!test_bit(MMF_VM_MERGE_ANY, &mm->flags))
264124139c07SDavid Hildenbrand 		return 0;
264224139c07SDavid Hildenbrand 
264324139c07SDavid Hildenbrand 	err = ksm_del_vmas(mm);
264424139c07SDavid Hildenbrand 	if (err) {
264524139c07SDavid Hildenbrand 		ksm_add_vmas(mm);
264624139c07SDavid Hildenbrand 		return err;
264724139c07SDavid Hildenbrand 	}
264824139c07SDavid Hildenbrand 
264924139c07SDavid Hildenbrand 	clear_bit(MMF_VM_MERGE_ANY, &mm->flags);
265024139c07SDavid Hildenbrand 	return 0;
265124139c07SDavid Hildenbrand }
265224139c07SDavid Hildenbrand 
ksm_disable(struct mm_struct * mm)26532c281f54SDavid Hildenbrand int ksm_disable(struct mm_struct *mm)
26542c281f54SDavid Hildenbrand {
26552c281f54SDavid Hildenbrand 	mmap_assert_write_locked(mm);
26562c281f54SDavid Hildenbrand 
26572c281f54SDavid Hildenbrand 	if (!test_bit(MMF_VM_MERGEABLE, &mm->flags))
26582c281f54SDavid Hildenbrand 		return 0;
26592c281f54SDavid Hildenbrand 	if (test_bit(MMF_VM_MERGE_ANY, &mm->flags))
26602c281f54SDavid Hildenbrand 		return ksm_disable_merge_any(mm);
26612c281f54SDavid Hildenbrand 	return ksm_del_vmas(mm);
26622c281f54SDavid Hildenbrand }
26632c281f54SDavid Hildenbrand 
ksm_madvise(struct vm_area_struct * vma,unsigned long start,unsigned long end,int advice,unsigned long * vm_flags)2664f8af4da3SHugh Dickins int ksm_madvise(struct vm_area_struct *vma, unsigned long start,
2665f8af4da3SHugh Dickins 		unsigned long end, int advice, unsigned long *vm_flags)
2666f8af4da3SHugh Dickins {
2667f8af4da3SHugh Dickins 	struct mm_struct *mm = vma->vm_mm;
2668d952b791SHugh Dickins 	int err;
2669f8af4da3SHugh Dickins 
2670f8af4da3SHugh Dickins 	switch (advice) {
2671f8af4da3SHugh Dickins 	case MADV_MERGEABLE:
2672d7597f59SStefan Roesch 		if (vma->vm_flags & VM_MERGEABLE)
2673e1fb4a08SDave Jiang 			return 0;
2674d7597f59SStefan Roesch 		if (!vma_ksm_compatible(vma))
267512564485SShawn Anastasio 			return 0;
2676cc2383ecSKonstantin Khlebnikov 
2677d952b791SHugh Dickins 		if (!test_bit(MMF_VM_MERGEABLE, &mm->flags)) {
2678d952b791SHugh Dickins 			err = __ksm_enter(mm);
2679d952b791SHugh Dickins 			if (err)
2680d952b791SHugh Dickins 				return err;
2681d952b791SHugh Dickins 		}
2682f8af4da3SHugh Dickins 
2683f8af4da3SHugh Dickins 		*vm_flags |= VM_MERGEABLE;
2684f8af4da3SHugh Dickins 		break;
2685f8af4da3SHugh Dickins 
2686f8af4da3SHugh Dickins 	case MADV_UNMERGEABLE:
2687f8af4da3SHugh Dickins 		if (!(*vm_flags & VM_MERGEABLE))
2688f8af4da3SHugh Dickins 			return 0;		/* just ignore the advice */
2689f8af4da3SHugh Dickins 
2690d952b791SHugh Dickins 		if (vma->anon_vma) {
269149b06385SSuren Baghdasaryan 			err = unmerge_ksm_pages(vma, start, end, true);
2692d952b791SHugh Dickins 			if (err)
2693d952b791SHugh Dickins 				return err;
2694d952b791SHugh Dickins 		}
2695f8af4da3SHugh Dickins 
2696f8af4da3SHugh Dickins 		*vm_flags &= ~VM_MERGEABLE;
2697f8af4da3SHugh Dickins 		break;
2698f8af4da3SHugh Dickins 	}
2699f8af4da3SHugh Dickins 
2700f8af4da3SHugh Dickins 	return 0;
2701f8af4da3SHugh Dickins }
270233cf1707SBharata B Rao EXPORT_SYMBOL_GPL(ksm_madvise);
2703f8af4da3SHugh Dickins 
__ksm_enter(struct mm_struct * mm)2704f8af4da3SHugh Dickins int __ksm_enter(struct mm_struct *mm)
2705f8af4da3SHugh Dickins {
270621fbd591SQi Zheng 	struct ksm_mm_slot *mm_slot;
270758730ab6SQi Zheng 	struct mm_slot *slot;
27086e158384SHugh Dickins 	int needs_wakeup;
27096e158384SHugh Dickins 
271058730ab6SQi Zheng 	mm_slot = mm_slot_alloc(mm_slot_cache);
271131dbd01fSIzik Eidus 	if (!mm_slot)
271231dbd01fSIzik Eidus 		return -ENOMEM;
271331dbd01fSIzik Eidus 
271458730ab6SQi Zheng 	slot = &mm_slot->slot;
271558730ab6SQi Zheng 
27166e158384SHugh Dickins 	/* Check ksm_run too?  Would need tighter locking */
271758730ab6SQi Zheng 	needs_wakeup = list_empty(&ksm_mm_head.slot.mm_node);
27186e158384SHugh Dickins 
271931dbd01fSIzik Eidus 	spin_lock(&ksm_mmlist_lock);
272058730ab6SQi Zheng 	mm_slot_insert(mm_slots_hash, mm, slot);
272131dbd01fSIzik Eidus 	/*
2722cbf86cfeSHugh Dickins 	 * When KSM_RUN_MERGE (or KSM_RUN_STOP),
2723cbf86cfeSHugh Dickins 	 * insert just behind the scanning cursor, to let the area settle
272431dbd01fSIzik Eidus 	 * down a little; when fork is followed by immediate exec, we don't
272531dbd01fSIzik Eidus 	 * want ksmd to waste time setting up and tearing down an rmap_list.
2726cbf86cfeSHugh Dickins 	 *
2727cbf86cfeSHugh Dickins 	 * But when KSM_RUN_UNMERGE, it's important to insert ahead of its
2728cbf86cfeSHugh Dickins 	 * scanning cursor, otherwise KSM pages in newly forked mms will be
2729cbf86cfeSHugh Dickins 	 * missed: then we might as well insert at the end of the list.
273031dbd01fSIzik Eidus 	 */
2731cbf86cfeSHugh Dickins 	if (ksm_run & KSM_RUN_UNMERGE)
273258730ab6SQi Zheng 		list_add_tail(&slot->mm_node, &ksm_mm_head.slot.mm_node);
2733cbf86cfeSHugh Dickins 	else
273458730ab6SQi Zheng 		list_add_tail(&slot->mm_node, &ksm_scan.mm_slot->slot.mm_node);
273531dbd01fSIzik Eidus 	spin_unlock(&ksm_mmlist_lock);
273631dbd01fSIzik Eidus 
2737f8af4da3SHugh Dickins 	set_bit(MMF_VM_MERGEABLE, &mm->flags);
2738f1f10076SVegard Nossum 	mmgrab(mm);
27396e158384SHugh Dickins 
27406e158384SHugh Dickins 	if (needs_wakeup)
27416e158384SHugh Dickins 		wake_up_interruptible(&ksm_thread_wait);
27426e158384SHugh Dickins 
2743739100c8SStefan Roesch 	trace_ksm_enter(mm);
2744f8af4da3SHugh Dickins 	return 0;
2745f8af4da3SHugh Dickins }
2746f8af4da3SHugh Dickins 
__ksm_exit(struct mm_struct * mm)27471c2fb7a4SAndrea Arcangeli void __ksm_exit(struct mm_struct *mm)
2748f8af4da3SHugh Dickins {
274921fbd591SQi Zheng 	struct ksm_mm_slot *mm_slot;
275058730ab6SQi Zheng 	struct mm_slot *slot;
27519ba69294SHugh Dickins 	int easy_to_free = 0;
2752cd551f97SHugh Dickins 
275331dbd01fSIzik Eidus 	/*
27549ba69294SHugh Dickins 	 * This process is exiting: if it's straightforward (as is the
27559ba69294SHugh Dickins 	 * case when ksmd was never running), free mm_slot immediately.
27569ba69294SHugh Dickins 	 * But if it's at the cursor or has rmap_items linked to it, use
2757c1e8d7c6SMichel Lespinasse 	 * mmap_lock to synchronize with any break_cows before pagetables
27589ba69294SHugh Dickins 	 * are freed, and leave the mm_slot on the list for ksmd to free.
27599ba69294SHugh Dickins 	 * Beware: ksm may already have noticed it exiting and freed the slot.
276031dbd01fSIzik Eidus 	 */
27619ba69294SHugh Dickins 
2762cd551f97SHugh Dickins 	spin_lock(&ksm_mmlist_lock);
276358730ab6SQi Zheng 	slot = mm_slot_lookup(mm_slots_hash, mm);
276458730ab6SQi Zheng 	mm_slot = mm_slot_entry(slot, struct ksm_mm_slot, slot);
27659ba69294SHugh Dickins 	if (mm_slot && ksm_scan.mm_slot != mm_slot) {
27666514d511SHugh Dickins 		if (!mm_slot->rmap_list) {
276758730ab6SQi Zheng 			hash_del(&slot->hash);
276858730ab6SQi Zheng 			list_del(&slot->mm_node);
27699ba69294SHugh Dickins 			easy_to_free = 1;
27709ba69294SHugh Dickins 		} else {
277158730ab6SQi Zheng 			list_move(&slot->mm_node,
277258730ab6SQi Zheng 				  &ksm_scan.mm_slot->slot.mm_node);
27739ba69294SHugh Dickins 		}
27749ba69294SHugh Dickins 	}
2775cd551f97SHugh Dickins 	spin_unlock(&ksm_mmlist_lock);
2776cd551f97SHugh Dickins 
27779ba69294SHugh Dickins 	if (easy_to_free) {
277858730ab6SQi Zheng 		mm_slot_free(mm_slot_cache, mm_slot);
2779d7597f59SStefan Roesch 		clear_bit(MMF_VM_MERGE_ANY, &mm->flags);
2780cd551f97SHugh Dickins 		clear_bit(MMF_VM_MERGEABLE, &mm->flags);
27819ba69294SHugh Dickins 		mmdrop(mm);
27829ba69294SHugh Dickins 	} else if (mm_slot) {
2783d8ed45c5SMichel Lespinasse 		mmap_write_lock(mm);
2784d8ed45c5SMichel Lespinasse 		mmap_write_unlock(mm);
27859ba69294SHugh Dickins 	}
2786739100c8SStefan Roesch 
2787739100c8SStefan Roesch 	trace_ksm_exit(mm);
2788f8af4da3SHugh Dickins }
278931dbd01fSIzik Eidus 
ksm_might_need_to_copy(struct page * page,struct vm_area_struct * vma,unsigned long address)2790cbf86cfeSHugh Dickins struct page *ksm_might_need_to_copy(struct page *page,
27915ad64688SHugh Dickins 			struct vm_area_struct *vma, unsigned long address)
27925ad64688SHugh Dickins {
2793e05b3453SMatthew Wilcox (Oracle) 	struct folio *folio = page_folio(page);
2794e05b3453SMatthew Wilcox (Oracle) 	struct anon_vma *anon_vma = folio_anon_vma(folio);
27955ad64688SHugh Dickins 	struct page *new_page;
27965ad64688SHugh Dickins 
2797cbf86cfeSHugh Dickins 	if (PageKsm(page)) {
2798cbf86cfeSHugh Dickins 		if (page_stable_node(page) &&
2799cbf86cfeSHugh Dickins 		    !(ksm_run & KSM_RUN_UNMERGE))
2800cbf86cfeSHugh Dickins 			return page;	/* no need to copy it */
2801cbf86cfeSHugh Dickins 	} else if (!anon_vma) {
2802cbf86cfeSHugh Dickins 		return page;		/* no need to copy it */
2803e1c63e11SNanyong Sun 	} else if (page->index == linear_page_index(vma, address) &&
2804e1c63e11SNanyong Sun 			anon_vma->root == vma->anon_vma->root) {
2805cbf86cfeSHugh Dickins 		return page;		/* still no need to copy it */
2806cbf86cfeSHugh Dickins 	}
2807f985fc32SMiaohe Lin 	if (PageHWPoison(page))
2808f985fc32SMiaohe Lin 		return ERR_PTR(-EHWPOISON);
2809cbf86cfeSHugh Dickins 	if (!PageUptodate(page))
2810cbf86cfeSHugh Dickins 		return page;		/* let do_swap_page report the error */
2811cbf86cfeSHugh Dickins 
28125ad64688SHugh Dickins 	new_page = alloc_page_vma(GFP_HIGHUSER_MOVABLE, vma, address);
28138f425e4eSMatthew Wilcox (Oracle) 	if (new_page &&
28148f425e4eSMatthew Wilcox (Oracle) 	    mem_cgroup_charge(page_folio(new_page), vma->vm_mm, GFP_KERNEL)) {
281562fdb163SHugh Dickins 		put_page(new_page);
281662fdb163SHugh Dickins 		new_page = NULL;
281762fdb163SHugh Dickins 	}
28185ad64688SHugh Dickins 	if (new_page) {
28196b970599SKefeng Wang 		if (copy_mc_user_highpage(new_page, page, address, vma)) {
28206b970599SKefeng Wang 			put_page(new_page);
28216b970599SKefeng Wang 			memory_failure_queue(page_to_pfn(page), 0);
28226b970599SKefeng Wang 			return ERR_PTR(-EHWPOISON);
28236b970599SKefeng Wang 		}
28245ad64688SHugh Dickins 		SetPageDirty(new_page);
28255ad64688SHugh Dickins 		__SetPageUptodate(new_page);
282648c935adSKirill A. Shutemov 		__SetPageLocked(new_page);
28274d45c3afSYang Yang #ifdef CONFIG_SWAP
28284d45c3afSYang Yang 		count_vm_event(KSM_SWPIN_COPY);
28294d45c3afSYang Yang #endif
28305ad64688SHugh Dickins 	}
28315ad64688SHugh Dickins 
28325ad64688SHugh Dickins 	return new_page;
28335ad64688SHugh Dickins }
28345ad64688SHugh Dickins 
rmap_walk_ksm(struct folio * folio,struct rmap_walk_control * rwc)28356d4675e6SMinchan Kim void rmap_walk_ksm(struct folio *folio, struct rmap_walk_control *rwc)
2836e9995ef9SHugh Dickins {
283721fbd591SQi Zheng 	struct ksm_stable_node *stable_node;
283821fbd591SQi Zheng 	struct ksm_rmap_item *rmap_item;
2839e9995ef9SHugh Dickins 	int search_new_forks = 0;
2840e9995ef9SHugh Dickins 
28412f031c6fSMatthew Wilcox (Oracle) 	VM_BUG_ON_FOLIO(!folio_test_ksm(folio), folio);
28429f32624bSJoonsoo Kim 
28439f32624bSJoonsoo Kim 	/*
28449f32624bSJoonsoo Kim 	 * Rely on the page lock to protect against concurrent modifications
28459f32624bSJoonsoo Kim 	 * to that page's node of the stable tree.
28469f32624bSJoonsoo Kim 	 */
28472f031c6fSMatthew Wilcox (Oracle) 	VM_BUG_ON_FOLIO(!folio_test_locked(folio), folio);
2848e9995ef9SHugh Dickins 
28492f031c6fSMatthew Wilcox (Oracle) 	stable_node = folio_stable_node(folio);
2850e9995ef9SHugh Dickins 	if (!stable_node)
28511df631aeSMinchan Kim 		return;
2852e9995ef9SHugh Dickins again:
2853b67bfe0dSSasha Levin 	hlist_for_each_entry(rmap_item, &stable_node->hlist, hlist) {
2854e9995ef9SHugh Dickins 		struct anon_vma *anon_vma = rmap_item->anon_vma;
28555beb4930SRik van Riel 		struct anon_vma_chain *vmac;
2856e9995ef9SHugh Dickins 		struct vm_area_struct *vma;
2857e9995ef9SHugh Dickins 
2858ad12695fSAndrea Arcangeli 		cond_resched();
28596d4675e6SMinchan Kim 		if (!anon_vma_trylock_read(anon_vma)) {
28606d4675e6SMinchan Kim 			if (rwc->try_lock) {
28616d4675e6SMinchan Kim 				rwc->contended = true;
28626d4675e6SMinchan Kim 				return;
28636d4675e6SMinchan Kim 			}
2864b6b19f25SHugh Dickins 			anon_vma_lock_read(anon_vma);
28656d4675e6SMinchan Kim 		}
2866bf181b9fSMichel Lespinasse 		anon_vma_interval_tree_foreach(vmac, &anon_vma->rb_root,
2867bf181b9fSMichel Lespinasse 					       0, ULONG_MAX) {
28681105a2fcSJia He 			unsigned long addr;
28691105a2fcSJia He 
2870ad12695fSAndrea Arcangeli 			cond_resched();
28715beb4930SRik van Riel 			vma = vmac->vma;
28721105a2fcSJia He 
28731105a2fcSJia He 			/* Ignore the stable/unstable/sqnr flags */
2874cd7fae26SMiaohe Lin 			addr = rmap_item->address & PAGE_MASK;
28751105a2fcSJia He 
28761105a2fcSJia He 			if (addr < vma->vm_start || addr >= vma->vm_end)
2877e9995ef9SHugh Dickins 				continue;
2878e9995ef9SHugh Dickins 			/*
2879e9995ef9SHugh Dickins 			 * Initially we examine only the vma which covers this
2880e9995ef9SHugh Dickins 			 * rmap_item; but later, if there is still work to do,
2881e9995ef9SHugh Dickins 			 * we examine covering vmas in other mms: in case they
2882e9995ef9SHugh Dickins 			 * were forked from the original since ksmd passed.
2883e9995ef9SHugh Dickins 			 */
2884e9995ef9SHugh Dickins 			if ((rmap_item->mm == vma->vm_mm) == search_new_forks)
2885e9995ef9SHugh Dickins 				continue;
2886e9995ef9SHugh Dickins 
28870dd1c7bbSJoonsoo Kim 			if (rwc->invalid_vma && rwc->invalid_vma(vma, rwc->arg))
28880dd1c7bbSJoonsoo Kim 				continue;
28890dd1c7bbSJoonsoo Kim 
28902f031c6fSMatthew Wilcox (Oracle) 			if (!rwc->rmap_one(folio, vma, addr, rwc->arg)) {
2891b6b19f25SHugh Dickins 				anon_vma_unlock_read(anon_vma);
28921df631aeSMinchan Kim 				return;
2893e9995ef9SHugh Dickins 			}
28942f031c6fSMatthew Wilcox (Oracle) 			if (rwc->done && rwc->done(folio)) {
28950dd1c7bbSJoonsoo Kim 				anon_vma_unlock_read(anon_vma);
28961df631aeSMinchan Kim 				return;
28970dd1c7bbSJoonsoo Kim 			}
2898e9995ef9SHugh Dickins 		}
2899b6b19f25SHugh Dickins 		anon_vma_unlock_read(anon_vma);
2900e9995ef9SHugh Dickins 	}
2901e9995ef9SHugh Dickins 	if (!search_new_forks++)
2902e9995ef9SHugh Dickins 		goto again;
2903e9995ef9SHugh Dickins }
2904e9995ef9SHugh Dickins 
29054248d008SLonglong Xia #ifdef CONFIG_MEMORY_FAILURE
29064248d008SLonglong Xia /*
29074248d008SLonglong Xia  * Collect processes when the error hit an ksm page.
29084248d008SLonglong Xia  */
collect_procs_ksm(struct page * page,struct list_head * to_kill,int force_early)29094248d008SLonglong Xia void collect_procs_ksm(struct page *page, struct list_head *to_kill,
29104248d008SLonglong Xia 		       int force_early)
29114248d008SLonglong Xia {
29124248d008SLonglong Xia 	struct ksm_stable_node *stable_node;
29134248d008SLonglong Xia 	struct ksm_rmap_item *rmap_item;
29144248d008SLonglong Xia 	struct folio *folio = page_folio(page);
29154248d008SLonglong Xia 	struct vm_area_struct *vma;
29164248d008SLonglong Xia 	struct task_struct *tsk;
29174248d008SLonglong Xia 
29184248d008SLonglong Xia 	stable_node = folio_stable_node(folio);
29194248d008SLonglong Xia 	if (!stable_node)
29204248d008SLonglong Xia 		return;
29214248d008SLonglong Xia 	hlist_for_each_entry(rmap_item, &stable_node->hlist, hlist) {
29224248d008SLonglong Xia 		struct anon_vma *av = rmap_item->anon_vma;
29234248d008SLonglong Xia 
29244248d008SLonglong Xia 		anon_vma_lock_read(av);
2925d256d1cdSTong Tiangen 		rcu_read_lock();
29264248d008SLonglong Xia 		for_each_process(tsk) {
29274248d008SLonglong Xia 			struct anon_vma_chain *vmac;
29284248d008SLonglong Xia 			unsigned long addr;
29294248d008SLonglong Xia 			struct task_struct *t =
29304248d008SLonglong Xia 				task_early_kill(tsk, force_early);
29314248d008SLonglong Xia 			if (!t)
29324248d008SLonglong Xia 				continue;
29334248d008SLonglong Xia 			anon_vma_interval_tree_foreach(vmac, &av->rb_root, 0,
29344248d008SLonglong Xia 						       ULONG_MAX)
29354248d008SLonglong Xia 			{
29364248d008SLonglong Xia 				vma = vmac->vma;
29374248d008SLonglong Xia 				if (vma->vm_mm == t->mm) {
29384248d008SLonglong Xia 					addr = rmap_item->address & PAGE_MASK;
29394248d008SLonglong Xia 					add_to_kill_ksm(t, page, vma, to_kill,
29404248d008SLonglong Xia 							addr);
29414248d008SLonglong Xia 				}
29424248d008SLonglong Xia 			}
29434248d008SLonglong Xia 		}
2944d256d1cdSTong Tiangen 		rcu_read_unlock();
29454248d008SLonglong Xia 		anon_vma_unlock_read(av);
29464248d008SLonglong Xia 	}
29474248d008SLonglong Xia }
29484248d008SLonglong Xia #endif
29494248d008SLonglong Xia 
295052629506SJoonsoo Kim #ifdef CONFIG_MIGRATION
folio_migrate_ksm(struct folio * newfolio,struct folio * folio)295119138349SMatthew Wilcox (Oracle) void folio_migrate_ksm(struct folio *newfolio, struct folio *folio)
2952e9995ef9SHugh Dickins {
295321fbd591SQi Zheng 	struct ksm_stable_node *stable_node;
2954e9995ef9SHugh Dickins 
295519138349SMatthew Wilcox (Oracle) 	VM_BUG_ON_FOLIO(!folio_test_locked(folio), folio);
295619138349SMatthew Wilcox (Oracle) 	VM_BUG_ON_FOLIO(!folio_test_locked(newfolio), newfolio);
295719138349SMatthew Wilcox (Oracle) 	VM_BUG_ON_FOLIO(newfolio->mapping != folio->mapping, newfolio);
2958e9995ef9SHugh Dickins 
295919138349SMatthew Wilcox (Oracle) 	stable_node = folio_stable_node(folio);
2960e9995ef9SHugh Dickins 	if (stable_node) {
296119138349SMatthew Wilcox (Oracle) 		VM_BUG_ON_FOLIO(stable_node->kpfn != folio_pfn(folio), folio);
296219138349SMatthew Wilcox (Oracle) 		stable_node->kpfn = folio_pfn(newfolio);
2963c8d6553bSHugh Dickins 		/*
296419138349SMatthew Wilcox (Oracle) 		 * newfolio->mapping was set in advance; now we need smp_wmb()
2965c8d6553bSHugh Dickins 		 * to make sure that the new stable_node->kpfn is visible
296619138349SMatthew Wilcox (Oracle) 		 * to get_ksm_page() before it can see that folio->mapping
296719138349SMatthew Wilcox (Oracle) 		 * has gone stale (or that folio_test_swapcache has been cleared).
2968c8d6553bSHugh Dickins 		 */
2969c8d6553bSHugh Dickins 		smp_wmb();
297019138349SMatthew Wilcox (Oracle) 		set_page_stable_node(&folio->page, NULL);
2971e9995ef9SHugh Dickins 	}
2972e9995ef9SHugh Dickins }
2973e9995ef9SHugh Dickins #endif /* CONFIG_MIGRATION */
2974e9995ef9SHugh Dickins 
297562b61f61SHugh Dickins #ifdef CONFIG_MEMORY_HOTREMOVE
wait_while_offlining(void)2976ef4d43a8SHugh Dickins static void wait_while_offlining(void)
2977ef4d43a8SHugh Dickins {
2978ef4d43a8SHugh Dickins 	while (ksm_run & KSM_RUN_OFFLINE) {
2979ef4d43a8SHugh Dickins 		mutex_unlock(&ksm_thread_mutex);
2980ef4d43a8SHugh Dickins 		wait_on_bit(&ksm_run, ilog2(KSM_RUN_OFFLINE),
298174316201SNeilBrown 			    TASK_UNINTERRUPTIBLE);
2982ef4d43a8SHugh Dickins 		mutex_lock(&ksm_thread_mutex);
2983ef4d43a8SHugh Dickins 	}
2984ef4d43a8SHugh Dickins }
2985ef4d43a8SHugh Dickins 
stable_node_dup_remove_range(struct ksm_stable_node * stable_node,unsigned long start_pfn,unsigned long end_pfn)298621fbd591SQi Zheng static bool stable_node_dup_remove_range(struct ksm_stable_node *stable_node,
29872c653d0eSAndrea Arcangeli 					 unsigned long start_pfn,
29882c653d0eSAndrea Arcangeli 					 unsigned long end_pfn)
29892c653d0eSAndrea Arcangeli {
29902c653d0eSAndrea Arcangeli 	if (stable_node->kpfn >= start_pfn &&
29912c653d0eSAndrea Arcangeli 	    stable_node->kpfn < end_pfn) {
29922c653d0eSAndrea Arcangeli 		/*
29932c653d0eSAndrea Arcangeli 		 * Don't get_ksm_page, page has already gone:
29942c653d0eSAndrea Arcangeli 		 * which is why we keep kpfn instead of page*
29952c653d0eSAndrea Arcangeli 		 */
29962c653d0eSAndrea Arcangeli 		remove_node_from_stable_tree(stable_node);
29972c653d0eSAndrea Arcangeli 		return true;
29982c653d0eSAndrea Arcangeli 	}
29992c653d0eSAndrea Arcangeli 	return false;
30002c653d0eSAndrea Arcangeli }
30012c653d0eSAndrea Arcangeli 
stable_node_chain_remove_range(struct ksm_stable_node * stable_node,unsigned long start_pfn,unsigned long end_pfn,struct rb_root * root)300221fbd591SQi Zheng static bool stable_node_chain_remove_range(struct ksm_stable_node *stable_node,
30032c653d0eSAndrea Arcangeli 					   unsigned long start_pfn,
30042c653d0eSAndrea Arcangeli 					   unsigned long end_pfn,
30052c653d0eSAndrea Arcangeli 					   struct rb_root *root)
30062c653d0eSAndrea Arcangeli {
300721fbd591SQi Zheng 	struct ksm_stable_node *dup;
30082c653d0eSAndrea Arcangeli 	struct hlist_node *hlist_safe;
30092c653d0eSAndrea Arcangeli 
30102c653d0eSAndrea Arcangeli 	if (!is_stable_node_chain(stable_node)) {
30112c653d0eSAndrea Arcangeli 		VM_BUG_ON(is_stable_node_dup(stable_node));
30122c653d0eSAndrea Arcangeli 		return stable_node_dup_remove_range(stable_node, start_pfn,
30132c653d0eSAndrea Arcangeli 						    end_pfn);
30142c653d0eSAndrea Arcangeli 	}
30152c653d0eSAndrea Arcangeli 
30162c653d0eSAndrea Arcangeli 	hlist_for_each_entry_safe(dup, hlist_safe,
30172c653d0eSAndrea Arcangeli 				  &stable_node->hlist, hlist_dup) {
30182c653d0eSAndrea Arcangeli 		VM_BUG_ON(!is_stable_node_dup(dup));
30192c653d0eSAndrea Arcangeli 		stable_node_dup_remove_range(dup, start_pfn, end_pfn);
30202c653d0eSAndrea Arcangeli 	}
30212c653d0eSAndrea Arcangeli 	if (hlist_empty(&stable_node->hlist)) {
30222c653d0eSAndrea Arcangeli 		free_stable_node_chain(stable_node, root);
30232c653d0eSAndrea Arcangeli 		return true; /* notify caller that tree was rebalanced */
30242c653d0eSAndrea Arcangeli 	} else
30252c653d0eSAndrea Arcangeli 		return false;
30262c653d0eSAndrea Arcangeli }
30272c653d0eSAndrea Arcangeli 
ksm_check_stable_tree(unsigned long start_pfn,unsigned long end_pfn)3028ee0ea59cSHugh Dickins static void ksm_check_stable_tree(unsigned long start_pfn,
302962b61f61SHugh Dickins 				  unsigned long end_pfn)
303062b61f61SHugh Dickins {
303121fbd591SQi Zheng 	struct ksm_stable_node *stable_node, *next;
303262b61f61SHugh Dickins 	struct rb_node *node;
303390bd6fd3SPetr Holasek 	int nid;
303462b61f61SHugh Dickins 
3035ef53d16cSHugh Dickins 	for (nid = 0; nid < ksm_nr_node_ids; nid++) {
3036ef53d16cSHugh Dickins 		node = rb_first(root_stable_tree + nid);
3037ee0ea59cSHugh Dickins 		while (node) {
303821fbd591SQi Zheng 			stable_node = rb_entry(node, struct ksm_stable_node, node);
30392c653d0eSAndrea Arcangeli 			if (stable_node_chain_remove_range(stable_node,
30402c653d0eSAndrea Arcangeli 							   start_pfn, end_pfn,
30412c653d0eSAndrea Arcangeli 							   root_stable_tree +
30422c653d0eSAndrea Arcangeli 							   nid))
3043ef53d16cSHugh Dickins 				node = rb_first(root_stable_tree + nid);
30442c653d0eSAndrea Arcangeli 			else
3045ee0ea59cSHugh Dickins 				node = rb_next(node);
3046ee0ea59cSHugh Dickins 			cond_resched();
304762b61f61SHugh Dickins 		}
3048ee0ea59cSHugh Dickins 	}
304903640418SGeliang Tang 	list_for_each_entry_safe(stable_node, next, &migrate_nodes, list) {
30504146d2d6SHugh Dickins 		if (stable_node->kpfn >= start_pfn &&
30514146d2d6SHugh Dickins 		    stable_node->kpfn < end_pfn)
30524146d2d6SHugh Dickins 			remove_node_from_stable_tree(stable_node);
30534146d2d6SHugh Dickins 		cond_resched();
30544146d2d6SHugh Dickins 	}
305562b61f61SHugh Dickins }
305662b61f61SHugh Dickins 
ksm_memory_callback(struct notifier_block * self,unsigned long action,void * arg)305762b61f61SHugh Dickins static int ksm_memory_callback(struct notifier_block *self,
305862b61f61SHugh Dickins 			       unsigned long action, void *arg)
305962b61f61SHugh Dickins {
306062b61f61SHugh Dickins 	struct memory_notify *mn = arg;
306162b61f61SHugh Dickins 
306262b61f61SHugh Dickins 	switch (action) {
306362b61f61SHugh Dickins 	case MEM_GOING_OFFLINE:
306462b61f61SHugh Dickins 		/*
3065ef4d43a8SHugh Dickins 		 * Prevent ksm_do_scan(), unmerge_and_remove_all_rmap_items()
3066ef4d43a8SHugh Dickins 		 * and remove_all_stable_nodes() while memory is going offline:
3067ef4d43a8SHugh Dickins 		 * it is unsafe for them to touch the stable tree at this time.
3068ef4d43a8SHugh Dickins 		 * But unmerge_ksm_pages(), rmap lookups and other entry points
3069ef4d43a8SHugh Dickins 		 * which do not need the ksm_thread_mutex are all safe.
307062b61f61SHugh Dickins 		 */
3071ef4d43a8SHugh Dickins 		mutex_lock(&ksm_thread_mutex);
3072ef4d43a8SHugh Dickins 		ksm_run |= KSM_RUN_OFFLINE;
3073ef4d43a8SHugh Dickins 		mutex_unlock(&ksm_thread_mutex);
307462b61f61SHugh Dickins 		break;
307562b61f61SHugh Dickins 
307662b61f61SHugh Dickins 	case MEM_OFFLINE:
307762b61f61SHugh Dickins 		/*
307862b61f61SHugh Dickins 		 * Most of the work is done by page migration; but there might
307962b61f61SHugh Dickins 		 * be a few stable_nodes left over, still pointing to struct
3080ee0ea59cSHugh Dickins 		 * pages which have been offlined: prune those from the tree,
3081ee0ea59cSHugh Dickins 		 * otherwise get_ksm_page() might later try to access a
3082ee0ea59cSHugh Dickins 		 * non-existent struct page.
308362b61f61SHugh Dickins 		 */
3084ee0ea59cSHugh Dickins 		ksm_check_stable_tree(mn->start_pfn,
3085ee0ea59cSHugh Dickins 				      mn->start_pfn + mn->nr_pages);
3086e4a9bc58SJoe Perches 		fallthrough;
308762b61f61SHugh Dickins 	case MEM_CANCEL_OFFLINE:
3088ef4d43a8SHugh Dickins 		mutex_lock(&ksm_thread_mutex);
3089ef4d43a8SHugh Dickins 		ksm_run &= ~KSM_RUN_OFFLINE;
309062b61f61SHugh Dickins 		mutex_unlock(&ksm_thread_mutex);
3091ef4d43a8SHugh Dickins 
3092ef4d43a8SHugh Dickins 		smp_mb();	/* wake_up_bit advises this */
3093ef4d43a8SHugh Dickins 		wake_up_bit(&ksm_run, ilog2(KSM_RUN_OFFLINE));
309462b61f61SHugh Dickins 		break;
309562b61f61SHugh Dickins 	}
309662b61f61SHugh Dickins 	return NOTIFY_OK;
309762b61f61SHugh Dickins }
3098ef4d43a8SHugh Dickins #else
wait_while_offlining(void)3099ef4d43a8SHugh Dickins static void wait_while_offlining(void)
3100ef4d43a8SHugh Dickins {
3101ef4d43a8SHugh Dickins }
310262b61f61SHugh Dickins #endif /* CONFIG_MEMORY_HOTREMOVE */
310362b61f61SHugh Dickins 
3104d21077fbSStefan Roesch #ifdef CONFIG_PROC_FS
ksm_process_profit(struct mm_struct * mm)3105d21077fbSStefan Roesch long ksm_process_profit(struct mm_struct *mm)
3106d21077fbSStefan Roesch {
3107*99ed145fSChengming Zhou 	return (long)(mm->ksm_merging_pages + mm_ksm_zero_pages(mm)) * PAGE_SIZE -
3108d21077fbSStefan Roesch 		mm->ksm_rmap_items * sizeof(struct ksm_rmap_item);
3109d21077fbSStefan Roesch }
3110d21077fbSStefan Roesch #endif /* CONFIG_PROC_FS */
3111d21077fbSStefan Roesch 
31122ffd8679SHugh Dickins #ifdef CONFIG_SYSFS
31132ffd8679SHugh Dickins /*
31142ffd8679SHugh Dickins  * This all compiles without CONFIG_SYSFS, but is a waste of space.
31152ffd8679SHugh Dickins  */
31162ffd8679SHugh Dickins 
311731dbd01fSIzik Eidus #define KSM_ATTR_RO(_name) \
311831dbd01fSIzik Eidus 	static struct kobj_attribute _name##_attr = __ATTR_RO(_name)
311931dbd01fSIzik Eidus #define KSM_ATTR(_name) \
31201bad2e5cSMiaohe Lin 	static struct kobj_attribute _name##_attr = __ATTR_RW(_name)
312131dbd01fSIzik Eidus 
sleep_millisecs_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)312231dbd01fSIzik Eidus static ssize_t sleep_millisecs_show(struct kobject *kobj,
312331dbd01fSIzik Eidus 				    struct kobj_attribute *attr, char *buf)
312431dbd01fSIzik Eidus {
3125ae7a927dSJoe Perches 	return sysfs_emit(buf, "%u\n", ksm_thread_sleep_millisecs);
312631dbd01fSIzik Eidus }
312731dbd01fSIzik Eidus 
sleep_millisecs_store(struct kobject * kobj,struct kobj_attribute * attr,const char * buf,size_t count)312831dbd01fSIzik Eidus static ssize_t sleep_millisecs_store(struct kobject *kobj,
312931dbd01fSIzik Eidus 				     struct kobj_attribute *attr,
313031dbd01fSIzik Eidus 				     const char *buf, size_t count)
313131dbd01fSIzik Eidus {
3132dfefd226SAlexey Dobriyan 	unsigned int msecs;
313331dbd01fSIzik Eidus 	int err;
313431dbd01fSIzik Eidus 
3135dfefd226SAlexey Dobriyan 	err = kstrtouint(buf, 10, &msecs);
3136dfefd226SAlexey Dobriyan 	if (err)
313731dbd01fSIzik Eidus 		return -EINVAL;
313831dbd01fSIzik Eidus 
313931dbd01fSIzik Eidus 	ksm_thread_sleep_millisecs = msecs;
3140fcf9a0efSKirill Tkhai 	wake_up_interruptible(&ksm_iter_wait);
314131dbd01fSIzik Eidus 
314231dbd01fSIzik Eidus 	return count;
314331dbd01fSIzik Eidus }
314431dbd01fSIzik Eidus KSM_ATTR(sleep_millisecs);
314531dbd01fSIzik Eidus 
pages_to_scan_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)314631dbd01fSIzik Eidus static ssize_t pages_to_scan_show(struct kobject *kobj,
314731dbd01fSIzik Eidus 				  struct kobj_attribute *attr, char *buf)
314831dbd01fSIzik Eidus {
3149ae7a927dSJoe Perches 	return sysfs_emit(buf, "%u\n", ksm_thread_pages_to_scan);
315031dbd01fSIzik Eidus }
315131dbd01fSIzik Eidus 
pages_to_scan_store(struct kobject * kobj,struct kobj_attribute * attr,const char * buf,size_t count)315231dbd01fSIzik Eidus static ssize_t pages_to_scan_store(struct kobject *kobj,
315331dbd01fSIzik Eidus 				   struct kobj_attribute *attr,
315431dbd01fSIzik Eidus 				   const char *buf, size_t count)
315531dbd01fSIzik Eidus {
3156dfefd226SAlexey Dobriyan 	unsigned int nr_pages;
315731dbd01fSIzik Eidus 	int err;
315831dbd01fSIzik Eidus 
3159dfefd226SAlexey Dobriyan 	err = kstrtouint(buf, 10, &nr_pages);
3160dfefd226SAlexey Dobriyan 	if (err)
316131dbd01fSIzik Eidus 		return -EINVAL;
316231dbd01fSIzik Eidus 
316331dbd01fSIzik Eidus 	ksm_thread_pages_to_scan = nr_pages;
316431dbd01fSIzik Eidus 
316531dbd01fSIzik Eidus 	return count;
316631dbd01fSIzik Eidus }
316731dbd01fSIzik Eidus KSM_ATTR(pages_to_scan);
316831dbd01fSIzik Eidus 
run_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)316931dbd01fSIzik Eidus static ssize_t run_show(struct kobject *kobj, struct kobj_attribute *attr,
317031dbd01fSIzik Eidus 			char *buf)
317131dbd01fSIzik Eidus {
3172ae7a927dSJoe Perches 	return sysfs_emit(buf, "%lu\n", ksm_run);
317331dbd01fSIzik Eidus }
317431dbd01fSIzik Eidus 
run_store(struct kobject * kobj,struct kobj_attribute * attr,const char * buf,size_t count)317531dbd01fSIzik Eidus static ssize_t run_store(struct kobject *kobj, struct kobj_attribute *attr,
317631dbd01fSIzik Eidus 			 const char *buf, size_t count)
317731dbd01fSIzik Eidus {
3178dfefd226SAlexey Dobriyan 	unsigned int flags;
317931dbd01fSIzik Eidus 	int err;
318031dbd01fSIzik Eidus 
3181dfefd226SAlexey Dobriyan 	err = kstrtouint(buf, 10, &flags);
3182dfefd226SAlexey Dobriyan 	if (err)
318331dbd01fSIzik Eidus 		return -EINVAL;
318431dbd01fSIzik Eidus 	if (flags > KSM_RUN_UNMERGE)
318531dbd01fSIzik Eidus 		return -EINVAL;
318631dbd01fSIzik Eidus 
318731dbd01fSIzik Eidus 	/*
318831dbd01fSIzik Eidus 	 * KSM_RUN_MERGE sets ksmd running, and 0 stops it running.
318931dbd01fSIzik Eidus 	 * KSM_RUN_UNMERGE stops it running and unmerges all rmap_items,
3190d0f209f6SHugh Dickins 	 * breaking COW to free the pages_shared (but leaves mm_slots
3191d0f209f6SHugh Dickins 	 * on the list for when ksmd may be set running again).
319231dbd01fSIzik Eidus 	 */
319331dbd01fSIzik Eidus 
319431dbd01fSIzik Eidus 	mutex_lock(&ksm_thread_mutex);
3195ef4d43a8SHugh Dickins 	wait_while_offlining();
319631dbd01fSIzik Eidus 	if (ksm_run != flags) {
319731dbd01fSIzik Eidus 		ksm_run = flags;
3198d952b791SHugh Dickins 		if (flags & KSM_RUN_UNMERGE) {
3199e1e12d2fSDavid Rientjes 			set_current_oom_origin();
3200d952b791SHugh Dickins 			err = unmerge_and_remove_all_rmap_items();
3201e1e12d2fSDavid Rientjes 			clear_current_oom_origin();
3202d952b791SHugh Dickins 			if (err) {
3203d952b791SHugh Dickins 				ksm_run = KSM_RUN_STOP;
3204d952b791SHugh Dickins 				count = err;
3205d952b791SHugh Dickins 			}
3206d952b791SHugh Dickins 		}
320731dbd01fSIzik Eidus 	}
320831dbd01fSIzik Eidus 	mutex_unlock(&ksm_thread_mutex);
320931dbd01fSIzik Eidus 
321031dbd01fSIzik Eidus 	if (flags & KSM_RUN_MERGE)
321131dbd01fSIzik Eidus 		wake_up_interruptible(&ksm_thread_wait);
321231dbd01fSIzik Eidus 
321331dbd01fSIzik Eidus 	return count;
321431dbd01fSIzik Eidus }
321531dbd01fSIzik Eidus KSM_ATTR(run);
321631dbd01fSIzik Eidus 
321790bd6fd3SPetr Holasek #ifdef CONFIG_NUMA
merge_across_nodes_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)321890bd6fd3SPetr Holasek static ssize_t merge_across_nodes_show(struct kobject *kobj,
321990bd6fd3SPetr Holasek 				       struct kobj_attribute *attr, char *buf)
322090bd6fd3SPetr Holasek {
3221ae7a927dSJoe Perches 	return sysfs_emit(buf, "%u\n", ksm_merge_across_nodes);
322290bd6fd3SPetr Holasek }
322390bd6fd3SPetr Holasek 
merge_across_nodes_store(struct kobject * kobj,struct kobj_attribute * attr,const char * buf,size_t count)322490bd6fd3SPetr Holasek static ssize_t merge_across_nodes_store(struct kobject *kobj,
322590bd6fd3SPetr Holasek 				   struct kobj_attribute *attr,
322690bd6fd3SPetr Holasek 				   const char *buf, size_t count)
322790bd6fd3SPetr Holasek {
322890bd6fd3SPetr Holasek 	int err;
322990bd6fd3SPetr Holasek 	unsigned long knob;
323090bd6fd3SPetr Holasek 
323190bd6fd3SPetr Holasek 	err = kstrtoul(buf, 10, &knob);
323290bd6fd3SPetr Holasek 	if (err)
323390bd6fd3SPetr Holasek 		return err;
323490bd6fd3SPetr Holasek 	if (knob > 1)
323590bd6fd3SPetr Holasek 		return -EINVAL;
323690bd6fd3SPetr Holasek 
323790bd6fd3SPetr Holasek 	mutex_lock(&ksm_thread_mutex);
3238ef4d43a8SHugh Dickins 	wait_while_offlining();
323990bd6fd3SPetr Holasek 	if (ksm_merge_across_nodes != knob) {
3240cbf86cfeSHugh Dickins 		if (ksm_pages_shared || remove_all_stable_nodes())
324190bd6fd3SPetr Holasek 			err = -EBUSY;
3242ef53d16cSHugh Dickins 		else if (root_stable_tree == one_stable_tree) {
3243ef53d16cSHugh Dickins 			struct rb_root *buf;
3244ef53d16cSHugh Dickins 			/*
3245ef53d16cSHugh Dickins 			 * This is the first time that we switch away from the
3246ef53d16cSHugh Dickins 			 * default of merging across nodes: must now allocate
3247ef53d16cSHugh Dickins 			 * a buffer to hold as many roots as may be needed.
3248ef53d16cSHugh Dickins 			 * Allocate stable and unstable together:
3249ef53d16cSHugh Dickins 			 * MAXSMP NODES_SHIFT 10 will use 16kB.
3250ef53d16cSHugh Dickins 			 */
3251bafe1e14SJoe Perches 			buf = kcalloc(nr_node_ids + nr_node_ids, sizeof(*buf),
3252bafe1e14SJoe Perches 				      GFP_KERNEL);
3253ef53d16cSHugh Dickins 			/* Let us assume that RB_ROOT is NULL is zero */
3254ef53d16cSHugh Dickins 			if (!buf)
3255ef53d16cSHugh Dickins 				err = -ENOMEM;
3256ef53d16cSHugh Dickins 			else {
3257ef53d16cSHugh Dickins 				root_stable_tree = buf;
3258ef53d16cSHugh Dickins 				root_unstable_tree = buf + nr_node_ids;
3259ef53d16cSHugh Dickins 				/* Stable tree is empty but not the unstable */
3260ef53d16cSHugh Dickins 				root_unstable_tree[0] = one_unstable_tree[0];
3261ef53d16cSHugh Dickins 			}
3262ef53d16cSHugh Dickins 		}
3263ef53d16cSHugh Dickins 		if (!err) {
326490bd6fd3SPetr Holasek 			ksm_merge_across_nodes = knob;
3265ef53d16cSHugh Dickins 			ksm_nr_node_ids = knob ? 1 : nr_node_ids;
3266ef53d16cSHugh Dickins 		}
326790bd6fd3SPetr Holasek 	}
326890bd6fd3SPetr Holasek 	mutex_unlock(&ksm_thread_mutex);
326990bd6fd3SPetr Holasek 
327090bd6fd3SPetr Holasek 	return err ? err : count;
327190bd6fd3SPetr Holasek }
327290bd6fd3SPetr Holasek KSM_ATTR(merge_across_nodes);
327390bd6fd3SPetr Holasek #endif
327490bd6fd3SPetr Holasek 
use_zero_pages_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)3275e86c59b1SClaudio Imbrenda static ssize_t use_zero_pages_show(struct kobject *kobj,
3276e86c59b1SClaudio Imbrenda 				   struct kobj_attribute *attr, char *buf)
3277e86c59b1SClaudio Imbrenda {
3278ae7a927dSJoe Perches 	return sysfs_emit(buf, "%u\n", ksm_use_zero_pages);
3279e86c59b1SClaudio Imbrenda }
use_zero_pages_store(struct kobject * kobj,struct kobj_attribute * attr,const char * buf,size_t count)3280e86c59b1SClaudio Imbrenda static ssize_t use_zero_pages_store(struct kobject *kobj,
3281e86c59b1SClaudio Imbrenda 				   struct kobj_attribute *attr,
3282e86c59b1SClaudio Imbrenda 				   const char *buf, size_t count)
3283e86c59b1SClaudio Imbrenda {
3284e86c59b1SClaudio Imbrenda 	int err;
3285e86c59b1SClaudio Imbrenda 	bool value;
3286e86c59b1SClaudio Imbrenda 
3287e86c59b1SClaudio Imbrenda 	err = kstrtobool(buf, &value);
3288e86c59b1SClaudio Imbrenda 	if (err)
3289e86c59b1SClaudio Imbrenda 		return -EINVAL;
3290e86c59b1SClaudio Imbrenda 
3291e86c59b1SClaudio Imbrenda 	ksm_use_zero_pages = value;
3292e86c59b1SClaudio Imbrenda 
3293e86c59b1SClaudio Imbrenda 	return count;
3294e86c59b1SClaudio Imbrenda }
3295e86c59b1SClaudio Imbrenda KSM_ATTR(use_zero_pages);
3296e86c59b1SClaudio Imbrenda 
max_page_sharing_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)32972c653d0eSAndrea Arcangeli static ssize_t max_page_sharing_show(struct kobject *kobj,
32982c653d0eSAndrea Arcangeli 				     struct kobj_attribute *attr, char *buf)
32992c653d0eSAndrea Arcangeli {
3300ae7a927dSJoe Perches 	return sysfs_emit(buf, "%u\n", ksm_max_page_sharing);
33012c653d0eSAndrea Arcangeli }
33022c653d0eSAndrea Arcangeli 
max_page_sharing_store(struct kobject * kobj,struct kobj_attribute * attr,const char * buf,size_t count)33032c653d0eSAndrea Arcangeli static ssize_t max_page_sharing_store(struct kobject *kobj,
33042c653d0eSAndrea Arcangeli 				      struct kobj_attribute *attr,
33052c653d0eSAndrea Arcangeli 				      const char *buf, size_t count)
33062c653d0eSAndrea Arcangeli {
33072c653d0eSAndrea Arcangeli 	int err;
33082c653d0eSAndrea Arcangeli 	int knob;
33092c653d0eSAndrea Arcangeli 
33102c653d0eSAndrea Arcangeli 	err = kstrtoint(buf, 10, &knob);
33112c653d0eSAndrea Arcangeli 	if (err)
33122c653d0eSAndrea Arcangeli 		return err;
33132c653d0eSAndrea Arcangeli 	/*
33142c653d0eSAndrea Arcangeli 	 * When a KSM page is created it is shared by 2 mappings. This
33152c653d0eSAndrea Arcangeli 	 * being a signed comparison, it implicitly verifies it's not
33162c653d0eSAndrea Arcangeli 	 * negative.
33172c653d0eSAndrea Arcangeli 	 */
33182c653d0eSAndrea Arcangeli 	if (knob < 2)
33192c653d0eSAndrea Arcangeli 		return -EINVAL;
33202c653d0eSAndrea Arcangeli 
33212c653d0eSAndrea Arcangeli 	if (READ_ONCE(ksm_max_page_sharing) == knob)
33222c653d0eSAndrea Arcangeli 		return count;
33232c653d0eSAndrea Arcangeli 
33242c653d0eSAndrea Arcangeli 	mutex_lock(&ksm_thread_mutex);
33252c653d0eSAndrea Arcangeli 	wait_while_offlining();
33262c653d0eSAndrea Arcangeli 	if (ksm_max_page_sharing != knob) {
33272c653d0eSAndrea Arcangeli 		if (ksm_pages_shared || remove_all_stable_nodes())
33282c653d0eSAndrea Arcangeli 			err = -EBUSY;
33292c653d0eSAndrea Arcangeli 		else
33302c653d0eSAndrea Arcangeli 			ksm_max_page_sharing = knob;
33312c653d0eSAndrea Arcangeli 	}
33322c653d0eSAndrea Arcangeli 	mutex_unlock(&ksm_thread_mutex);
33332c653d0eSAndrea Arcangeli 
33342c653d0eSAndrea Arcangeli 	return err ? err : count;
33352c653d0eSAndrea Arcangeli }
33362c653d0eSAndrea Arcangeli KSM_ATTR(max_page_sharing);
33372c653d0eSAndrea Arcangeli 
pages_scanned_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)3338b348b5feSStefan Roesch static ssize_t pages_scanned_show(struct kobject *kobj,
3339b348b5feSStefan Roesch 				  struct kobj_attribute *attr, char *buf)
3340b348b5feSStefan Roesch {
3341b348b5feSStefan Roesch 	return sysfs_emit(buf, "%lu\n", ksm_pages_scanned);
3342b348b5feSStefan Roesch }
3343b348b5feSStefan Roesch KSM_ATTR_RO(pages_scanned);
3344b348b5feSStefan Roesch 
pages_shared_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)3345b4028260SHugh Dickins static ssize_t pages_shared_show(struct kobject *kobj,
3346b4028260SHugh Dickins 				 struct kobj_attribute *attr, char *buf)
3347b4028260SHugh Dickins {
3348ae7a927dSJoe Perches 	return sysfs_emit(buf, "%lu\n", ksm_pages_shared);
3349b4028260SHugh Dickins }
3350b4028260SHugh Dickins KSM_ATTR_RO(pages_shared);
3351b4028260SHugh Dickins 
pages_sharing_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)3352b4028260SHugh Dickins static ssize_t pages_sharing_show(struct kobject *kobj,
3353b4028260SHugh Dickins 				  struct kobj_attribute *attr, char *buf)
3354b4028260SHugh Dickins {
3355ae7a927dSJoe Perches 	return sysfs_emit(buf, "%lu\n", ksm_pages_sharing);
3356b4028260SHugh Dickins }
3357b4028260SHugh Dickins KSM_ATTR_RO(pages_sharing);
3358b4028260SHugh Dickins 
pages_unshared_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)3359473b0ce4SHugh Dickins static ssize_t pages_unshared_show(struct kobject *kobj,
3360473b0ce4SHugh Dickins 				   struct kobj_attribute *attr, char *buf)
3361473b0ce4SHugh Dickins {
3362ae7a927dSJoe Perches 	return sysfs_emit(buf, "%lu\n", ksm_pages_unshared);
3363473b0ce4SHugh Dickins }
3364473b0ce4SHugh Dickins KSM_ATTR_RO(pages_unshared);
3365473b0ce4SHugh Dickins 
pages_volatile_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)3366473b0ce4SHugh Dickins static ssize_t pages_volatile_show(struct kobject *kobj,
3367473b0ce4SHugh Dickins 				   struct kobj_attribute *attr, char *buf)
3368473b0ce4SHugh Dickins {
3369473b0ce4SHugh Dickins 	long ksm_pages_volatile;
3370473b0ce4SHugh Dickins 
3371473b0ce4SHugh Dickins 	ksm_pages_volatile = ksm_rmap_items - ksm_pages_shared
3372473b0ce4SHugh Dickins 				- ksm_pages_sharing - ksm_pages_unshared;
3373473b0ce4SHugh Dickins 	/*
3374473b0ce4SHugh Dickins 	 * It was not worth any locking to calculate that statistic,
3375473b0ce4SHugh Dickins 	 * but it might therefore sometimes be negative: conceal that.
3376473b0ce4SHugh Dickins 	 */
3377473b0ce4SHugh Dickins 	if (ksm_pages_volatile < 0)
3378473b0ce4SHugh Dickins 		ksm_pages_volatile = 0;
3379ae7a927dSJoe Perches 	return sysfs_emit(buf, "%ld\n", ksm_pages_volatile);
3380473b0ce4SHugh Dickins }
3381473b0ce4SHugh Dickins KSM_ATTR_RO(pages_volatile);
3382473b0ce4SHugh Dickins 
ksm_zero_pages_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)3383e2942062Sxu xin static ssize_t ksm_zero_pages_show(struct kobject *kobj,
3384e2942062Sxu xin 				struct kobj_attribute *attr, char *buf)
3385e2942062Sxu xin {
3386*99ed145fSChengming Zhou 	return sysfs_emit(buf, "%ld\n", atomic_long_read(&ksm_zero_pages));
3387e2942062Sxu xin }
3388e2942062Sxu xin KSM_ATTR_RO(ksm_zero_pages);
3389e2942062Sxu xin 
general_profit_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)3390d21077fbSStefan Roesch static ssize_t general_profit_show(struct kobject *kobj,
3391d21077fbSStefan Roesch 				   struct kobj_attribute *attr, char *buf)
3392d21077fbSStefan Roesch {
3393d21077fbSStefan Roesch 	long general_profit;
3394d21077fbSStefan Roesch 
3395*99ed145fSChengming Zhou 	general_profit = (ksm_pages_sharing + atomic_long_read(&ksm_zero_pages)) * PAGE_SIZE -
3396d21077fbSStefan Roesch 				ksm_rmap_items * sizeof(struct ksm_rmap_item);
3397d21077fbSStefan Roesch 
3398d21077fbSStefan Roesch 	return sysfs_emit(buf, "%ld\n", general_profit);
3399d21077fbSStefan Roesch }
3400d21077fbSStefan Roesch KSM_ATTR_RO(general_profit);
3401d21077fbSStefan Roesch 
stable_node_dups_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)34022c653d0eSAndrea Arcangeli static ssize_t stable_node_dups_show(struct kobject *kobj,
34032c653d0eSAndrea Arcangeli 				     struct kobj_attribute *attr, char *buf)
34042c653d0eSAndrea Arcangeli {
3405ae7a927dSJoe Perches 	return sysfs_emit(buf, "%lu\n", ksm_stable_node_dups);
34062c653d0eSAndrea Arcangeli }
34072c653d0eSAndrea Arcangeli KSM_ATTR_RO(stable_node_dups);
34082c653d0eSAndrea Arcangeli 
stable_node_chains_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)34092c653d0eSAndrea Arcangeli static ssize_t stable_node_chains_show(struct kobject *kobj,
34102c653d0eSAndrea Arcangeli 				       struct kobj_attribute *attr, char *buf)
34112c653d0eSAndrea Arcangeli {
3412ae7a927dSJoe Perches 	return sysfs_emit(buf, "%lu\n", ksm_stable_node_chains);
34132c653d0eSAndrea Arcangeli }
34142c653d0eSAndrea Arcangeli KSM_ATTR_RO(stable_node_chains);
34152c653d0eSAndrea Arcangeli 
34162c653d0eSAndrea Arcangeli static ssize_t
stable_node_chains_prune_millisecs_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)34172c653d0eSAndrea Arcangeli stable_node_chains_prune_millisecs_show(struct kobject *kobj,
34182c653d0eSAndrea Arcangeli 					struct kobj_attribute *attr,
34192c653d0eSAndrea Arcangeli 					char *buf)
34202c653d0eSAndrea Arcangeli {
3421ae7a927dSJoe Perches 	return sysfs_emit(buf, "%u\n", ksm_stable_node_chains_prune_millisecs);
34222c653d0eSAndrea Arcangeli }
34232c653d0eSAndrea Arcangeli 
34242c653d0eSAndrea Arcangeli static ssize_t
stable_node_chains_prune_millisecs_store(struct kobject * kobj,struct kobj_attribute * attr,const char * buf,size_t count)34252c653d0eSAndrea Arcangeli stable_node_chains_prune_millisecs_store(struct kobject *kobj,
34262c653d0eSAndrea Arcangeli 					 struct kobj_attribute *attr,
34272c653d0eSAndrea Arcangeli 					 const char *buf, size_t count)
34282c653d0eSAndrea Arcangeli {
3429584ff0dfSZhansaya Bagdauletkyzy 	unsigned int msecs;
34302c653d0eSAndrea Arcangeli 	int err;
34312c653d0eSAndrea Arcangeli 
3432584ff0dfSZhansaya Bagdauletkyzy 	err = kstrtouint(buf, 10, &msecs);
3433584ff0dfSZhansaya Bagdauletkyzy 	if (err)
34342c653d0eSAndrea Arcangeli 		return -EINVAL;
34352c653d0eSAndrea Arcangeli 
34362c653d0eSAndrea Arcangeli 	ksm_stable_node_chains_prune_millisecs = msecs;
34372c653d0eSAndrea Arcangeli 
34382c653d0eSAndrea Arcangeli 	return count;
34392c653d0eSAndrea Arcangeli }
34402c653d0eSAndrea Arcangeli KSM_ATTR(stable_node_chains_prune_millisecs);
34412c653d0eSAndrea Arcangeli 
full_scans_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)3442473b0ce4SHugh Dickins static ssize_t full_scans_show(struct kobject *kobj,
3443473b0ce4SHugh Dickins 			       struct kobj_attribute *attr, char *buf)
3444473b0ce4SHugh Dickins {
3445ae7a927dSJoe Perches 	return sysfs_emit(buf, "%lu\n", ksm_scan.seqnr);
3446473b0ce4SHugh Dickins }
3447473b0ce4SHugh Dickins KSM_ATTR_RO(full_scans);
3448473b0ce4SHugh Dickins 
344931dbd01fSIzik Eidus static struct attribute *ksm_attrs[] = {
345031dbd01fSIzik Eidus 	&sleep_millisecs_attr.attr,
345131dbd01fSIzik Eidus 	&pages_to_scan_attr.attr,
345231dbd01fSIzik Eidus 	&run_attr.attr,
3453b348b5feSStefan Roesch 	&pages_scanned_attr.attr,
3454b4028260SHugh Dickins 	&pages_shared_attr.attr,
3455b4028260SHugh Dickins 	&pages_sharing_attr.attr,
3456473b0ce4SHugh Dickins 	&pages_unshared_attr.attr,
3457473b0ce4SHugh Dickins 	&pages_volatile_attr.attr,
3458e2942062Sxu xin 	&ksm_zero_pages_attr.attr,
3459473b0ce4SHugh Dickins 	&full_scans_attr.attr,
346090bd6fd3SPetr Holasek #ifdef CONFIG_NUMA
346190bd6fd3SPetr Holasek 	&merge_across_nodes_attr.attr,
346290bd6fd3SPetr Holasek #endif
34632c653d0eSAndrea Arcangeli 	&max_page_sharing_attr.attr,
34642c653d0eSAndrea Arcangeli 	&stable_node_chains_attr.attr,
34652c653d0eSAndrea Arcangeli 	&stable_node_dups_attr.attr,
34662c653d0eSAndrea Arcangeli 	&stable_node_chains_prune_millisecs_attr.attr,
3467e86c59b1SClaudio Imbrenda 	&use_zero_pages_attr.attr,
3468d21077fbSStefan Roesch 	&general_profit_attr.attr,
346931dbd01fSIzik Eidus 	NULL,
347031dbd01fSIzik Eidus };
347131dbd01fSIzik Eidus 
3472f907c26aSArvind Yadav static const struct attribute_group ksm_attr_group = {
347331dbd01fSIzik Eidus 	.attrs = ksm_attrs,
347431dbd01fSIzik Eidus 	.name = "ksm",
347531dbd01fSIzik Eidus };
34762ffd8679SHugh Dickins #endif /* CONFIG_SYSFS */
347731dbd01fSIzik Eidus 
ksm_init(void)347831dbd01fSIzik Eidus static int __init ksm_init(void)
347931dbd01fSIzik Eidus {
348031dbd01fSIzik Eidus 	struct task_struct *ksm_thread;
348131dbd01fSIzik Eidus 	int err;
348231dbd01fSIzik Eidus 
3483e86c59b1SClaudio Imbrenda 	/* The correct value depends on page size and endianness */
3484e86c59b1SClaudio Imbrenda 	zero_checksum = calc_checksum(ZERO_PAGE(0));
3485e86c59b1SClaudio Imbrenda 	/* Default to false for backwards compatibility */
3486e86c59b1SClaudio Imbrenda 	ksm_use_zero_pages = false;
3487e86c59b1SClaudio Imbrenda 
348831dbd01fSIzik Eidus 	err = ksm_slab_init();
348931dbd01fSIzik Eidus 	if (err)
349031dbd01fSIzik Eidus 		goto out;
349131dbd01fSIzik Eidus 
349231dbd01fSIzik Eidus 	ksm_thread = kthread_run(ksm_scan_thread, NULL, "ksmd");
349331dbd01fSIzik Eidus 	if (IS_ERR(ksm_thread)) {
349425acde31SPaul McQuade 		pr_err("ksm: creating kthread failed\n");
349531dbd01fSIzik Eidus 		err = PTR_ERR(ksm_thread);
3496d9f8984cSLai Jiangshan 		goto out_free;
349731dbd01fSIzik Eidus 	}
349831dbd01fSIzik Eidus 
34992ffd8679SHugh Dickins #ifdef CONFIG_SYSFS
350031dbd01fSIzik Eidus 	err = sysfs_create_group(mm_kobj, &ksm_attr_group);
350131dbd01fSIzik Eidus 	if (err) {
350225acde31SPaul McQuade 		pr_err("ksm: register sysfs failed\n");
35032ffd8679SHugh Dickins 		kthread_stop(ksm_thread);
3504d9f8984cSLai Jiangshan 		goto out_free;
350531dbd01fSIzik Eidus 	}
3506c73602adSHugh Dickins #else
3507c73602adSHugh Dickins 	ksm_run = KSM_RUN_MERGE;	/* no way for user to start it */
3508c73602adSHugh Dickins 
35092ffd8679SHugh Dickins #endif /* CONFIG_SYSFS */
351031dbd01fSIzik Eidus 
351162b61f61SHugh Dickins #ifdef CONFIG_MEMORY_HOTREMOVE
3512ef4d43a8SHugh Dickins 	/* There is no significance to this priority 100 */
35131eeaa4fdSLiu Shixin 	hotplug_memory_notifier(ksm_memory_callback, KSM_CALLBACK_PRI);
351462b61f61SHugh Dickins #endif
351531dbd01fSIzik Eidus 	return 0;
351631dbd01fSIzik Eidus 
3517d9f8984cSLai Jiangshan out_free:
351831dbd01fSIzik Eidus 	ksm_slab_free();
351931dbd01fSIzik Eidus out:
352031dbd01fSIzik Eidus 	return err;
352131dbd01fSIzik Eidus }
3522a64fb3cdSPaul Gortmaker subsys_initcall(ksm_init);
3523