From: Mel Gorman <mgorman@suse.de>
To: Jiri Slaby <jslaby@suse.cz>
Cc: Linux-Stable <stable@vger.kernel.org>,
LKML <linux-kernel@vger.kernel.org>, Mel Gorman <mgorman@suse.de>
Subject: [PATCH 09/97] swap: change swap_info singly-linked list to list_head
Date: Thu, 28 Aug 2014 19:34:17 +0100 [thread overview]
Message-ID: <1409250945-30874-10-git-send-email-mgorman@suse.de> (raw)
In-Reply-To: <1409250945-30874-1-git-send-email-mgorman@suse.de>
From: Dan Streetman <ddstreet@ieee.org>
commit adfab836f4908deb049a5128082719e689eed964 upstream.
The logic controlling the singly-linked list of swap_info_struct entries
for all active, i.e. swapon'ed, swap targets is rather complex, because:
- it stores the entries in priority order
- there is a pointer to the highest priority entry
- there is a pointer to the highest priority not-full entry
- there is a highest_priority_index variable set outside the swap_lock
- swap entries of equal priority should be used equally
this complexity leads to bugs such as: https://lkml.org/lkml/2014/2/13/181
where different priority swap targets are incorrectly used equally.
That bug probably could be solved with the existing singly-linked lists,
but I think it would only add more complexity to the already difficult to
understand get_swap_page() swap_list iteration logic.
The first patch changes from a singly-linked list to a doubly-linked list
using list_heads; the highest_priority_index and related code are removed
and get_swap_page() starts each iteration at the highest priority
swap_info entry, even if it's full. While this does introduce unnecessary
list iteration (i.e. Schlemiel the painter's algorithm) in the case where
one or more of the highest priority entries are full, the iteration and
manipulation code is much simpler and behaves correctly re: the above bug;
and the fourth patch removes the unnecessary iteration.
The second patch adds some minor plist helper functions; nothing new
really, just functions to match existing regular list functions. These
are used by the next two patches.
The third patch adds plist_requeue(), which is used by get_swap_page() in
the next patch - it performs the requeueing of same-priority entries
(which moves the entry to the end of its priority in the plist), so that
all equal-priority swap_info_structs get used equally.
The fourth patch converts the main list into a plist, and adds a new plist
that contains only swap_info entries that are both active and not full.
As Mel suggested using plists allows removing all the ordering code from
swap - plists handle ordering automatically. The list naming is also
clarified now that there are two lists, with the original list changed
from swap_list_head to swap_active_head and the new list named
swap_avail_head. A new spinlock is also added for the new list, so
swap_info entries can be added or removed from the new list immediately as
they become full or not full.
This patch (of 4):
Replace the singly-linked list tracking active, i.e. swapon'ed,
swap_info_struct entries with a doubly-linked list using struct
list_heads. Simplify the logic iterating and manipulating the list of
entries, especially get_swap_page(), by using standard list_head
functions, and removing the highest priority iteration logic.
The change fixes the bug:
https://lkml.org/lkml/2014/2/13/181
in which different priority swap entries after the highest priority entry
are incorrectly used equally in pairs. The swap behavior is now as
advertised, i.e. different priority swap entries are used in order, and
equal priority swap targets are used concurrently.
Signed-off-by: Dan Streetman <ddstreet@ieee.org>
Acked-by: Mel Gorman <mgorman@suse.de>
Cc: Shaohua Li <shli@fusionio.com>
Cc: Hugh Dickins <hughd@google.com>
Cc: Dan Streetman <ddstreet@ieee.org>
Cc: Michal Hocko <mhocko@suse.cz>
Cc: Christian Ehrhardt <ehrhardt@linux.vnet.ibm.com>
Cc: Weijie Yang <weijieut@gmail.com>
Cc: Rik van Riel <riel@redhat.com>
Cc: Johannes Weiner <hannes@cmpxchg.org>
Cc: Bob Liu <bob.liu@oracle.com>
Cc: Steven Rostedt <rostedt@goodmis.org>
Cc: Peter Zijlstra <peterz@infradead.org>
Cc: Paul Gortmaker <paul.gortmaker@windriver.com>
Cc: Thomas Gleixner <tglx@linutronix.de>
Signed-off-by: Andrew Morton <akpm@linux-foundation.org>
Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
Signed-off-by: Mel Gorman <mgorman@suse.de>
---
include/linux/swap.h | 7 +-
include/linux/swapfile.h | 2 +-
mm/frontswap.c | 13 ++--
mm/swapfile.c | 171 ++++++++++++++++++++---------------------------
4 files changed, 78 insertions(+), 115 deletions(-)
diff --git a/include/linux/swap.h b/include/linux/swap.h
index 46ba0c6..8eaec00 100644
--- a/include/linux/swap.h
+++ b/include/linux/swap.h
@@ -214,8 +214,8 @@ struct percpu_cluster {
struct swap_info_struct {
unsigned long flags; /* SWP_USED etc: see above */
signed short prio; /* swap priority of this type */
+ struct list_head list; /* entry in swap list */
signed char type; /* strange name for an index */
- signed char next; /* next type on the swap list */
unsigned int max; /* extent of the swap_map */
unsigned char *swap_map; /* vmalloc'ed array of usage counts */
struct swap_cluster_info *cluster_info; /* cluster info. Only for SSD */
@@ -255,11 +255,6 @@ struct swap_info_struct {
struct swap_cluster_info discard_cluster_tail; /* list tail of discard clusters */
};
-struct swap_list_t {
- int head; /* head of priority-ordered swapfile list */
- int next; /* swapfile to be used next */
-};
-
/* linux/mm/page_alloc.c */
extern unsigned long totalram_pages;
extern unsigned long totalreserve_pages;
diff --git a/include/linux/swapfile.h b/include/linux/swapfile.h
index e282624..2eab382 100644
--- a/include/linux/swapfile.h
+++ b/include/linux/swapfile.h
@@ -6,7 +6,7 @@
* want to expose them to the dozens of source files that include swap.h
*/
extern spinlock_t swap_lock;
-extern struct swap_list_t swap_list;
+extern struct list_head swap_list_head;
extern struct swap_info_struct *swap_info[];
extern int try_to_unuse(unsigned int, bool, unsigned long);
diff --git a/mm/frontswap.c b/mm/frontswap.c
index 1b24bdc..fae1160 100644
--- a/mm/frontswap.c
+++ b/mm/frontswap.c
@@ -327,15 +327,12 @@ EXPORT_SYMBOL(__frontswap_invalidate_area);
static unsigned long __frontswap_curr_pages(void)
{
- int type;
unsigned long totalpages = 0;
struct swap_info_struct *si = NULL;
assert_spin_locked(&swap_lock);
- for (type = swap_list.head; type >= 0; type = si->next) {
- si = swap_info[type];
+ list_for_each_entry(si, &swap_list_head, list)
totalpages += atomic_read(&si->frontswap_pages);
- }
return totalpages;
}
@@ -347,11 +344,9 @@ static int __frontswap_unuse_pages(unsigned long total, unsigned long *unused,
int si_frontswap_pages;
unsigned long total_pages_to_unuse = total;
unsigned long pages = 0, pages_to_unuse = 0;
- int type;
assert_spin_locked(&swap_lock);
- for (type = swap_list.head; type >= 0; type = si->next) {
- si = swap_info[type];
+ list_for_each_entry(si, &swap_list_head, list) {
si_frontswap_pages = atomic_read(&si->frontswap_pages);
if (total_pages_to_unuse < si_frontswap_pages) {
pages = pages_to_unuse = total_pages_to_unuse;
@@ -366,7 +361,7 @@ static int __frontswap_unuse_pages(unsigned long total, unsigned long *unused,
}
vm_unacct_memory(pages);
*unused = pages_to_unuse;
- *swapid = type;
+ *swapid = si->type;
ret = 0;
break;
}
@@ -413,7 +408,7 @@ void frontswap_shrink(unsigned long target_pages)
/*
* we don't want to hold swap_lock while doing a very
* lengthy try_to_unuse, but swap_list may change
- * so restart scan from swap_list.head each time
+ * so restart scan from swap_list_head each time
*/
spin_lock(&swap_lock);
ret = __frontswap_shrink(target_pages, &pages_to_unuse, &type);
diff --git a/mm/swapfile.c b/mm/swapfile.c
index 0ec2eaf..d40f39e 100644
--- a/mm/swapfile.c
+++ b/mm/swapfile.c
@@ -51,14 +51,17 @@ atomic_long_t nr_swap_pages;
/* protected with swap_lock. reading in vm_swap_full() doesn't need lock */
long total_swap_pages;
static int least_priority;
-static atomic_t highest_priority_index = ATOMIC_INIT(-1);
static const char Bad_file[] = "Bad swap file entry ";
static const char Unused_file[] = "Unused swap file entry ";
static const char Bad_offset[] = "Bad swap offset entry ";
static const char Unused_offset[] = "Unused swap offset entry ";
-struct swap_list_t swap_list = {-1, -1};
+/*
+ * all active swap_info_structs
+ * protected with swap_lock, and ordered by priority.
+ */
+LIST_HEAD(swap_list_head);
struct swap_info_struct *swap_info[MAX_SWAPFILES];
@@ -639,66 +642,54 @@ no_page:
swp_entry_t get_swap_page(void)
{
- struct swap_info_struct *si;
+ struct swap_info_struct *si, *next;
pgoff_t offset;
- int type, next;
- int wrapped = 0;
- int hp_index;
+ struct list_head *tmp;
spin_lock(&swap_lock);
if (atomic_long_read(&nr_swap_pages) <= 0)
goto noswap;
atomic_long_dec(&nr_swap_pages);
- for (type = swap_list.next; type >= 0 && wrapped < 2; type = next) {
- hp_index = atomic_xchg(&highest_priority_index, -1);
- /*
- * highest_priority_index records current highest priority swap
- * type which just frees swap entries. If its priority is
- * higher than that of swap_list.next swap type, we use it. It
- * isn't protected by swap_lock, so it can be an invalid value
- * if the corresponding swap type is swapoff. We double check
- * the flags here. It's even possible the swap type is swapoff
- * and swapon again and its priority is changed. In such rare
- * case, low prority swap type might be used, but eventually
- * high priority swap will be used after several rounds of
- * swap.
- */
- if (hp_index != -1 && hp_index != type &&
- swap_info[type]->prio < swap_info[hp_index]->prio &&
- (swap_info[hp_index]->flags & SWP_WRITEOK)) {
- type = hp_index;
- swap_list.next = type;
- }
-
- si = swap_info[type];
- next = si->next;
- if (next < 0 ||
- (!wrapped && si->prio != swap_info[next]->prio)) {
- next = swap_list.head;
- wrapped++;
- }
-
+ list_for_each(tmp, &swap_list_head) {
+ si = list_entry(tmp, typeof(*si), list);
spin_lock(&si->lock);
- if (!si->highest_bit) {
- spin_unlock(&si->lock);
- continue;
- }
- if (!(si->flags & SWP_WRITEOK)) {
+ if (!si->highest_bit || !(si->flags & SWP_WRITEOK)) {
spin_unlock(&si->lock);
continue;
}
- swap_list.next = next;
+ /*
+ * rotate the current swap_info that we're going to use
+ * to after any other swap_info that have the same prio,
+ * so that all equal-priority swap_info get used equally
+ */
+ next = si;
+ list_for_each_entry_continue(next, &swap_list_head, list) {
+ if (si->prio != next->prio)
+ break;
+ list_rotate_left(&si->list);
+ next = si;
+ }
spin_unlock(&swap_lock);
/* This is called for allocating swap entry for cache */
offset = scan_swap_map(si, SWAP_HAS_CACHE);
spin_unlock(&si->lock);
if (offset)
- return swp_entry(type, offset);
+ return swp_entry(si->type, offset);
spin_lock(&swap_lock);
- next = swap_list.next;
+ /*
+ * if we got here, it's likely that si was almost full before,
+ * and since scan_swap_map() can drop the si->lock, multiple
+ * callers probably all tried to get a page from the same si
+ * and it filled up before we could get one. So we need to
+ * try again. Since we dropped the swap_lock, there may now
+ * be non-full higher priority swap_infos, and this si may have
+ * even been removed from the list (although very unlikely).
+ * Let's start over.
+ */
+ tmp = &swap_list_head;
}
atomic_long_inc(&nr_swap_pages);
@@ -765,27 +756,6 @@ out:
return NULL;
}
-/*
- * This swap type frees swap entry, check if it is the highest priority swap
- * type which just frees swap entry. get_swap_page() uses
- * highest_priority_index to search highest priority swap type. The
- * swap_info_struct.lock can't protect us if there are multiple swap types
- * active, so we use atomic_cmpxchg.
- */
-static void set_highest_priority_index(int type)
-{
- int old_hp_index, new_hp_index;
-
- do {
- old_hp_index = atomic_read(&highest_priority_index);
- if (old_hp_index != -1 &&
- swap_info[old_hp_index]->prio >= swap_info[type]->prio)
- break;
- new_hp_index = type;
- } while (atomic_cmpxchg(&highest_priority_index,
- old_hp_index, new_hp_index) != old_hp_index);
-}
-
static unsigned char swap_entry_free(struct swap_info_struct *p,
swp_entry_t entry, unsigned char usage)
{
@@ -829,7 +799,6 @@ static unsigned char swap_entry_free(struct swap_info_struct *p,
p->lowest_bit = offset;
if (offset > p->highest_bit)
p->highest_bit = offset;
- set_highest_priority_index(p->type);
atomic_long_inc(&nr_swap_pages);
p->inuse_pages--;
frontswap_invalidate_page(p->type, offset);
@@ -1764,7 +1733,7 @@ static void _enable_swap_info(struct swap_info_struct *p, int prio,
unsigned char *swap_map,
struct swap_cluster_info *cluster_info)
{
- int i, prev;
+ struct swap_info_struct *si;
if (prio >= 0)
p->prio = prio;
@@ -1776,18 +1745,28 @@ static void _enable_swap_info(struct swap_info_struct *p, int prio,
atomic_long_add(p->pages, &nr_swap_pages);
total_swap_pages += p->pages;
- /* insert swap space into swap_list: */
- prev = -1;
- for (i = swap_list.head; i >= 0; i = swap_info[i]->next) {
- if (p->prio >= swap_info[i]->prio)
- break;
- prev = i;
+ assert_spin_locked(&swap_lock);
+ BUG_ON(!list_empty(&p->list));
+ /*
+ * insert into swap list; the list is in priority order,
+ * so that get_swap_page() can get a page from the highest
+ * priority swap_info_struct with available page(s), and
+ * swapoff can adjust the auto-assigned (i.e. negative) prio
+ * values for any lower-priority swap_info_structs when
+ * removing a negative-prio swap_info_struct
+ */
+ list_for_each_entry(si, &swap_list_head, list) {
+ if (p->prio >= si->prio) {
+ list_add_tail(&p->list, &si->list);
+ return;
+ }
}
- p->next = i;
- if (prev < 0)
- swap_list.head = swap_list.next = p->type;
- else
- swap_info[prev]->next = p->type;
+ /*
+ * this covers two cases:
+ * 1) p->prio is less than all existing prio
+ * 2) the swap list is empty
+ */
+ list_add_tail(&p->list, &swap_list_head);
}
static void enable_swap_info(struct swap_info_struct *p, int prio,
@@ -1822,8 +1801,7 @@ SYSCALL_DEFINE1(swapoff, const char __user *, specialfile)
struct address_space *mapping;
struct inode *inode;
struct filename *pathname;
- int i, type, prev;
- int err;
+ int err, found = 0;
unsigned int old_block_size;
if (!capable(CAP_SYS_ADMIN))
@@ -1841,17 +1819,16 @@ SYSCALL_DEFINE1(swapoff, const char __user *, specialfile)
goto out;
mapping = victim->f_mapping;
- prev = -1;
spin_lock(&swap_lock);
- for (type = swap_list.head; type >= 0; type = swap_info[type]->next) {
- p = swap_info[type];
+ list_for_each_entry(p, &swap_list_head, list) {
if (p->flags & SWP_WRITEOK) {
- if (p->swap_file->f_mapping == mapping)
+ if (p->swap_file->f_mapping == mapping) {
+ found = 1;
break;
+ }
}
- prev = type;
}
- if (type < 0) {
+ if (!found) {
err = -EINVAL;
spin_unlock(&swap_lock);
goto out_dput;
@@ -1863,20 +1840,16 @@ SYSCALL_DEFINE1(swapoff, const char __user *, specialfile)
spin_unlock(&swap_lock);
goto out_dput;
}
- if (prev < 0)
- swap_list.head = p->next;
- else
- swap_info[prev]->next = p->next;
- if (type == swap_list.next) {
- /* just pick something that's safe... */
- swap_list.next = swap_list.head;
- }
spin_lock(&p->lock);
if (p->prio < 0) {
- for (i = p->next; i >= 0; i = swap_info[i]->next)
- swap_info[i]->prio = p->prio--;
+ struct swap_info_struct *si = p;
+
+ list_for_each_entry_continue(si, &swap_list_head, list) {
+ si->prio++;
+ }
least_priority++;
}
+ list_del_init(&p->list);
atomic_long_sub(p->pages, &nr_swap_pages);
total_swap_pages -= p->pages;
p->flags &= ~SWP_WRITEOK;
@@ -1884,7 +1857,7 @@ SYSCALL_DEFINE1(swapoff, const char __user *, specialfile)
spin_unlock(&swap_lock);
set_current_oom_origin();
- err = try_to_unuse(type, false, 0); /* force all pages to be unused */
+ err = try_to_unuse(p->type, false, 0); /* force unuse all pages */
clear_current_oom_origin();
if (err) {
@@ -1926,7 +1899,7 @@ SYSCALL_DEFINE1(swapoff, const char __user *, specialfile)
frontswap_map_set(p, NULL);
spin_unlock(&p->lock);
spin_unlock(&swap_lock);
- frontswap_invalidate_area(type);
+ frontswap_invalidate_area(p->type);
mutex_unlock(&swapon_mutex);
free_percpu(p->percpu_cluster);
p->percpu_cluster = NULL;
@@ -1934,7 +1907,7 @@ SYSCALL_DEFINE1(swapoff, const char __user *, specialfile)
vfree(cluster_info);
vfree(frontswap_map);
/* Destroy swap account informatin */
- swap_cgroup_swapoff(type);
+ swap_cgroup_swapoff(p->type);
inode = mapping->host;
if (S_ISBLK(inode->i_mode)) {
@@ -2141,8 +2114,8 @@ static struct swap_info_struct *alloc_swap_info(void)
*/
}
INIT_LIST_HEAD(&p->first_swap_extent.list);
+ INIT_LIST_HEAD(&p->list);
p->flags = SWP_USED;
- p->next = -1;
spin_unlock(&swap_lock);
spin_lock_init(&p->lock);
--
1.8.4.5
next prev parent reply other threads:[~2014-08-28 18:36 UTC|newest]
Thread overview: 101+ messages / expand[flat|nested] mbox.gz Atom feed top
2014-08-28 18:34 [PATCH 00/97] Misc series of functional/performance fixes for 3.12-stable Mel Gorman
2014-08-28 18:34 ` [PATCH 01/97] mm: thp: cleanup: mv alloc_hugepage to better place Mel Gorman
2014-08-28 18:34 ` [PATCH 02/97] mm: thp: khugepaged: add policy for finding target node Mel Gorman
2014-08-28 18:34 ` [PATCH 03/97] slab: correct pfmemalloc check Mel Gorman
2014-08-28 18:34 ` [PATCH 04/97] mm: prevent setting of a value less than 0 to min_free_kbytes Mel Gorman
2014-08-28 18:34 ` [PATCH 05/97] mm: fix bad rss-counter if remap_file_pages raced migration Mel Gorman
2014-08-28 18:34 ` [PATCH 06/97] hugetlb: ensure hugepage access is denied if hugepages are not supported Mel Gorman
2014-08-28 18:34 ` [PATCH 07/97] mm: exclude memoryless nodes from zone_reclaim Mel Gorman
2014-08-28 18:34 ` [PATCH 08/97] mm, thp: do not allow thp faults to avoid cpuset restrictions Mel Gorman
2014-09-26 9:53 ` Jiri Slaby
2014-10-13 15:17 ` Mel Gorman
2014-08-28 18:34 ` Mel Gorman [this message]
2014-08-28 18:34 ` [PATCH 10/97] lib/plist: add helper functions Mel Gorman
2014-08-28 18:34 ` [PATCH 11/97] lib/plist: add plist_requeue Mel Gorman
2014-08-28 18:34 ` [PATCH 12/97] swap: change swap_list_head to plist, add swap_avail_head Mel Gorman
2014-08-28 18:34 ` [PATCH 13/97] readahead: fix sequential read cache miss detection Mel Gorman
2014-08-28 18:34 ` [PATCH 14/97] mm: get rid of unnecessary overhead of trace_mm_page_alloc_extfrag() Mel Gorman
2014-08-28 18:34 ` [PATCH 15/97] mm: __rmqueue_fallback() should respect pageblock type Mel Gorman
2014-08-28 18:34 ` [PATCH 16/97] mm, x86: Account for TLB flushes only when debugging Mel Gorman
2014-08-28 18:34 ` [PATCH 17/97] x86/mm: Clean up inconsistencies when flushing TLB ranges Mel Gorman
2014-08-28 18:34 ` [PATCH 18/97] x86/mm: Eliminate redundant page table walk during TLB range flushing Mel Gorman
2014-08-28 18:34 ` [PATCH 19/97] mm: compaction: trace compaction begin and end Mel Gorman
2014-08-28 18:34 ` [PATCH 20/97] mm: compaction: encapsulate defer reset logic Mel Gorman
2014-08-28 18:34 ` [PATCH 21/97] mm: compaction: do not mark unmovable pageblocks as skipped in async compaction Mel Gorman
2014-08-28 18:34 ` [PATCH 22/97] mm: compaction: reset scanner positions immediately when they meet Mel Gorman
2014-08-28 18:34 ` [PATCH 23/97] swap: add a simple detector for inappropriate swapin readahead Mel Gorman
2014-08-28 18:34 ` [PATCH 24/97] mm: vmscan: shrink all slab objects if tight on memory Mel Gorman
2014-08-28 18:34 ` [PATCH 25/97] mm: vmscan: call NUMA-unaware shrinkers irrespective of nodemask Mel Gorman
2014-08-28 18:34 ` [PATCH 26/97] mm: get rid of unnecessary pageblock scanning in setup_zone_migrate_reserve Mel Gorman
2014-08-28 18:34 ` [PATCH 27/97] mm, compaction: avoid isolating pinned pages Mel Gorman
2014-08-28 18:34 ` [PATCH 28/97] mm/compaction: disallow high-order page for migration target Mel Gorman
2014-08-28 18:34 ` [PATCH 29/97] mm/compaction: do not call suitable_migration_target() on every page Mel Gorman
2014-08-28 18:34 ` [PATCH 30/97] mm/compaction: change the timing to check to drop the spinlock Mel Gorman
2014-08-28 18:34 ` [PATCH 31/97] mm/compaction: check pageblock suitability once per pageblock Mel Gorman
2014-08-28 18:34 ` [PATCH 32/97] mm/compaction: clean-up code on success of ballon isolation Mel Gorman
2014-08-28 18:34 ` [PATCH 33/97] mm, compaction: determine isolation mode only once Mel Gorman
2014-08-28 18:34 ` [PATCH 34/97] mm, compaction: ignore pageblock skip when manually invoking compaction Mel Gorman
2014-08-28 18:34 ` [PATCH 35/97] mm/readahead.c: fix readahead failure for memoryless NUMA nodes and limit readahead pages Mel Gorman
2014-08-28 18:34 ` [PATCH 36/97] mm: optimize put_mems_allowed() usage Mel Gorman
2014-08-28 18:34 ` [PATCH 37/97] mm/filemap.c: avoid always dirtying mapping->flags on O_DIRECT Mel Gorman
2014-08-28 18:34 ` [PATCH 38/97] mm: vmscan: respect NUMA policy mask when shrinking slab on direct reclaim Mel Gorman
2014-08-28 18:34 ` [PATCH 39/97] mm: vmscan: shrink_slab: rename max_pass -> freeable Mel Gorman
2014-08-28 18:34 ` [PATCH 40/97] vmscan: reclaim_clean_pages_from_list() must use mod_zone_page_state() Mel Gorman
2014-08-28 18:34 ` [PATCH 41/97] mm: per-thread vma caching Mel Gorman
2014-08-28 18:34 ` [PATCH 42/97] mm: don't pointlessly use BUG_ON() for sanity check Mel Gorman
2014-08-28 18:34 ` [PATCH 43/97] lib: radix-tree: add radix_tree_delete_item() Mel Gorman
2014-08-28 18:34 ` [PATCH 44/97] mm: shmem: save one radix tree lookup when truncating swapped pages Mel Gorman
2014-08-28 18:34 ` [PATCH 45/97] mm: filemap: move radix tree hole searching here Mel Gorman
2014-08-28 18:34 ` [PATCH 46/97] mm + fs: prepare for non-page entries in page cache radix trees Mel Gorman
2014-08-28 18:34 ` [PATCH 47/97] mm: madvise: fix MADV_WILLNEED on shmem swapouts Mel Gorman
2014-08-28 18:34 ` [PATCH 48/97] mm: remove read_cache_page_async() Mel Gorman
2014-08-28 18:34 ` [PATCH 49/97] callers of iov_copy_from_user_atomic() don't need pagecache_disable() Mel Gorman
2014-08-28 18:34 ` [PATCH 50/97] mm/readahead.c: inline ra_submit Mel Gorman
2014-08-28 18:34 ` [PATCH 51/97] mm/compaction: clean up unused code lines Mel Gorman
2014-08-28 18:35 ` [PATCH 52/97] mm/compaction: cleanup isolate_freepages() Mel Gorman
2014-08-28 18:35 ` [PATCH 53/97] mm, migration: add destination page freeing callback Mel Gorman
2014-08-28 18:35 ` [PATCH 54/97] mm, compaction: return failed migration target pages back to freelist Mel Gorman
2014-08-28 18:35 ` [PATCH 55/97] mm, compaction: add per-zone migration pfn cache for async compaction Mel Gorman
2014-08-28 18:35 ` [PATCH 56/97] mm, compaction: embed migration mode in compact_control Mel Gorman
2014-08-28 18:35 ` [PATCH 57/97] mm, compaction: terminate async compaction when rescheduling Mel Gorman
2014-08-28 18:35 ` [PATCH 58/97] mm/compaction: do not count migratepages when unnecessary Mel Gorman
2014-08-28 18:35 ` [PATCH 59/97] mm/compaction: avoid rescanning pageblocks in isolate_freepages Mel Gorman
2014-08-28 18:35 ` [PATCH 60/97] mm, compaction: properly signal and act upon lock and need_sched() contention Mel Gorman
2014-08-28 18:35 ` [PATCH 61/97] x86/mm: In the PTE swapout page reclaim case clear the accessed bit instead of flushing the TLB Mel Gorman
2014-08-28 18:35 ` [PATCH 62/97] mm: fix direct reclaim writeback regression Mel Gorman
2014-08-28 18:35 ` [PATCH 63/97] fs/superblock: unregister sb shrinker before ->kill_sb() Mel Gorman
2014-08-28 18:35 ` [PATCH 64/97] fs/superblock: avoid locking counting inodes and dentries before reclaiming them Mel Gorman
2014-08-28 18:35 ` [PATCH 65/97] mm: vmscan: use proportional scanning during direct reclaim and full scan at DEF_PRIORITY Mel Gorman
2014-08-28 18:35 ` [PATCH 66/97] mm/page_alloc: prevent MIGRATE_RESERVE pages from being misplaced Mel Gorman
2014-08-28 18:35 ` [PATCH 67/97] mm/swap.c: clean up *lru_cache_add* functions Mel Gorman
2014-08-28 18:35 ` [PATCH 68/97] mm: page_alloc: do not update zlc unless the zlc is active Mel Gorman
2014-08-28 18:35 ` [PATCH 69/97] mm: page_alloc: do not treat a zone that cannot be used for dirty pages as "full" Mel Gorman
2014-08-28 18:35 ` [PATCH 70/97] include/linux/jump_label.h: expose the reference count Mel Gorman
2014-08-28 18:35 ` [PATCH 71/97] mm: page_alloc: use jump labels to avoid checking number_of_cpusets Mel Gorman
2014-08-28 18:35 ` [PATCH 72/97] mm: page_alloc: calculate classzone_idx once from the zonelist ref Mel Gorman
2014-08-28 18:35 ` [PATCH 73/97] mm: page_alloc: only check the zone id check if pages are buddies Mel Gorman
2014-08-28 18:35 ` [PATCH 74/97] mm: page_alloc: only check the alloc flags and gfp_mask for dirty once Mel Gorman
2014-08-28 18:35 ` [PATCH 75/97] mm: page_alloc: take the ALLOC_NO_WATERMARK check out of the fast path Mel Gorman
2014-08-28 18:35 ` [PATCH 76/97] mm: page_alloc: use unsigned int for order in more places Mel Gorman
2014-08-28 18:35 ` [PATCH 77/97] mm: page_alloc: reduce number of times page_to_pfn is called Mel Gorman
2014-08-28 18:35 ` [PATCH 78/97] mm: page_alloc: convert hot/cold parameter and immediate callers to bool Mel Gorman
2014-08-28 18:35 ` [PATCH 79/97] mm: page_alloc: lookup pageblock migratetype with IRQs enabled during free Mel Gorman
2014-08-28 18:35 ` [PATCH 80/97] mm: shmem: avoid atomic operation during shmem_getpage_gfp Mel Gorman
2014-08-28 18:35 ` [PATCH 81/97] mm: do not use atomic operations when releasing pages Mel Gorman
2014-08-28 18:35 ` [PATCH 82/97] mm: do not use unnecessary atomic operations when adding pages to the LRU Mel Gorman
2014-08-28 18:35 ` [PATCH 83/97] fs: buffer: do not use unnecessary atomic operations when discarding buffers Mel Gorman
2014-08-28 18:35 ` [PATCH 84/97] mm: non-atomically mark page accessed during page cache allocation where possible Mel Gorman
2014-08-28 18:35 ` [PATCH 85/97] mm: avoid unnecessary atomic operations during end_page_writeback() Mel Gorman
2014-08-28 18:35 ` [PATCH 86/97] shmem: fix init_page_accessed use to stop !PageLRU bug Mel Gorman
2014-08-28 18:35 ` [PATCH 87/97] mm/memory.c: use entry = ACCESS_ONCE(*pte) in handle_pte_fault() Mel Gorman
2014-08-28 18:35 ` [PATCH 88/97] mm, thp: only collapse hugepages to nodes with affinity for zone_reclaim_mode Mel Gorman
2014-08-28 18:35 ` [PATCH 89/97] mm: make copy_pte_range static again Mel Gorman
2014-08-28 18:35 ` [PATCH 90/97] vmalloc: use rcu list iterator to reduce vmap_area_lock contention Mel Gorman
2014-08-28 18:35 ` [PATCH 91/97] memcg, vmscan: Fix forced scan of anonymous pages Mel Gorman
2014-08-28 18:35 ` [PATCH 92/97] mm: pagemap: avoid unnecessary overhead when tracepoints are deactivated Mel Gorman
2014-08-28 18:35 ` [PATCH 93/97] mm: rearrange zone fields into read-only, page alloc, statistics and page reclaim lines Mel Gorman
2014-08-28 18:35 ` [PATCH 94/97] mm: move zone->pages_scanned into a vmstat counter Mel Gorman
2014-08-28 18:35 ` [PATCH 95/97] mm: vmscan: only update per-cpu thresholds for online CPU Mel Gorman
2014-08-28 18:35 ` [PATCH 96/97] mm: page_alloc: abort fair zone allocation policy when remotes nodes are encountered Mel Gorman
2014-08-28 18:35 ` [PATCH 97/97] mm: page_alloc: reduce cost of the fair zone allocation policy Mel Gorman
2015-01-28 1:13 ` [PATCH 00/97] Misc series of functional/performance fixes for 3.12-stable Greg KH
Reply instructions:
You may reply publicly to this message via plain-text email
using any one of the following methods:
* Save the following mbox file, import it into your mail client,
and reply-to-all from there: mbox
Avoid top-posting and favor interleaved quoting:
https://en.wikipedia.org/wiki/Posting_style#Interleaved_style
* Reply using the --to, --cc, and --in-reply-to
switches of git-send-email(1):
git send-email \
--in-reply-to=1409250945-30874-10-git-send-email-mgorman@suse.de \
--to=mgorman@suse.de \
--cc=jslaby@suse.cz \
--cc=linux-kernel@vger.kernel.org \
--cc=stable@vger.kernel.org \
/path/to/YOUR_REPLY
https://kernel.org/pub/software/scm/git/docs/git-send-email.html
* If your mail client supports setting the In-Reply-To header
via mailto: links, try the mailto: link
Be sure your reply has a Subject: header at the top and a blank line
before the message body.
This is a public inbox, see mirroring instructions
for how to clone and mirror all data and code used for this inbox
all inboxes | Powered by JetHome®