1 // SPDX-License-Identifier: GPL-2.0
3 * VMware Balloon driver.
5 * Copyright (C) 2000-2018, VMware, Inc. All Rights Reserved.
7 * This is VMware physical memory management driver for Linux. The driver
8 * acts like a "balloon" that can be inflated to reclaim physical pages by
9 * reserving them in the guest and invalidating them in the monitor,
10 * freeing up the underlying machine pages so they can be allocated to
11 * other guests. The balloon can also be deflated to allow the guest to
12 * use more physical memory. Higher level policies can control the sizes
13 * of balloons in VMs in order to manage physical memory resources.
17 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
19 #include <linux/types.h>
21 #include <linux/kernel.h>
23 #include <linux/vmalloc.h>
24 #include <linux/sched.h>
25 #include <linux/module.h>
26 #include <linux/workqueue.h>
27 #include <linux/debugfs.h>
28 #include <linux/seq_file.h>
29 #include <linux/rwsem.h>
30 #include <linux/slab.h>
31 #include <linux/spinlock.h>
32 #include <linux/balloon_compaction.h>
33 #include <linux/vmw_vmci_defs.h>
34 #include <linux/vmw_vmci_api.h>
35 #include <asm/hypervisor.h>
37 MODULE_AUTHOR("VMware, Inc.");
38 MODULE_DESCRIPTION("VMware Memory Control (Balloon) Driver");
39 MODULE_ALIAS("dmi:*:svnVMware*:*");
40 MODULE_ALIAS("vmware_vmmemctl");
41 MODULE_LICENSE("GPL");
43 static bool __read_mostly vmwballoon_shrinker_enable
;
44 module_param(vmwballoon_shrinker_enable
, bool, 0444);
45 MODULE_PARM_DESC(vmwballoon_shrinker_enable
,
46 "Enable non-cooperative out-of-memory protection. Disabled by default as it may degrade performance.");
48 /* Delay in seconds after shrink before inflation. */
49 #define VMBALLOON_SHRINK_DELAY (5)
51 /* Maximum number of refused pages we accumulate during inflation cycle */
52 #define VMW_BALLOON_MAX_REFUSED 16
54 /* Magic number for the balloon mount-point */
55 #define BALLOON_VMW_MAGIC 0x0ba11007
58 * Hypervisor communication port definitions.
60 #define VMW_BALLOON_HV_PORT 0x5670
61 #define VMW_BALLOON_HV_MAGIC 0x456c6d6f
62 #define VMW_BALLOON_GUEST_ID 1 /* Linux */
64 enum vmwballoon_capabilities
{
66 * Bit 0 is reserved and not associated to any capability.
68 VMW_BALLOON_BASIC_CMDS
= (1 << 1),
69 VMW_BALLOON_BATCHED_CMDS
= (1 << 2),
70 VMW_BALLOON_BATCHED_2M_CMDS
= (1 << 3),
71 VMW_BALLOON_SIGNALLED_WAKEUP_CMD
= (1 << 4),
72 VMW_BALLOON_64_BIT_TARGET
= (1 << 5)
75 #define VMW_BALLOON_CAPABILITIES_COMMON (VMW_BALLOON_BASIC_CMDS \
76 | VMW_BALLOON_BATCHED_CMDS \
77 | VMW_BALLOON_BATCHED_2M_CMDS \
78 | VMW_BALLOON_SIGNALLED_WAKEUP_CMD)
80 #define VMW_BALLOON_2M_ORDER (PMD_SHIFT - PAGE_SHIFT)
83 * 64-bit targets are only supported in 64-bit
86 #define VMW_BALLOON_CAPABILITIES (VMW_BALLOON_CAPABILITIES_COMMON \
87 | VMW_BALLOON_64_BIT_TARGET)
89 #define VMW_BALLOON_CAPABILITIES VMW_BALLOON_CAPABILITIES_COMMON
92 enum vmballoon_page_size_type
{
95 VMW_BALLOON_LAST_SIZE
= VMW_BALLOON_2M_PAGE
98 #define VMW_BALLOON_NUM_PAGE_SIZES (VMW_BALLOON_LAST_SIZE + 1)
100 static const char * const vmballoon_page_size_names
[] = {
101 [VMW_BALLOON_4K_PAGE
] = "4k",
102 [VMW_BALLOON_2M_PAGE
] = "2M"
110 enum vmballoon_op_stat_type
{
112 VMW_BALLOON_OP_FAIL_STAT
115 #define VMW_BALLOON_OP_STAT_TYPES (VMW_BALLOON_OP_FAIL_STAT + 1)
118 * enum vmballoon_cmd_type - backdoor commands.
120 * Availability of the commands is as followed:
122 * %VMW_BALLOON_CMD_START, %VMW_BALLOON_CMD_GET_TARGET and
123 * %VMW_BALLOON_CMD_GUEST_ID are always available.
125 * If the host reports %VMW_BALLOON_BASIC_CMDS are supported then
126 * %VMW_BALLOON_CMD_LOCK and %VMW_BALLOON_CMD_UNLOCK commands are available.
128 * If the host reports %VMW_BALLOON_BATCHED_CMDS are supported then
129 * %VMW_BALLOON_CMD_BATCHED_LOCK and VMW_BALLOON_CMD_BATCHED_UNLOCK commands
132 * If the host reports %VMW_BALLOON_BATCHED_2M_CMDS are supported then
133 * %VMW_BALLOON_CMD_BATCHED_2M_LOCK and %VMW_BALLOON_CMD_BATCHED_2M_UNLOCK
136 * If the host reports VMW_BALLOON_SIGNALLED_WAKEUP_CMD is supported then
137 * VMW_BALLOON_CMD_VMCI_DOORBELL_SET command is supported.
139 * @VMW_BALLOON_CMD_START: Communicating supported version with the hypervisor.
140 * @VMW_BALLOON_CMD_GET_TARGET: Gets the balloon target size.
141 * @VMW_BALLOON_CMD_LOCK: Informs the hypervisor about a ballooned page.
142 * @VMW_BALLOON_CMD_UNLOCK: Informs the hypervisor about a page that is about
143 * to be deflated from the balloon.
144 * @VMW_BALLOON_CMD_GUEST_ID: Informs the hypervisor about the type of OS that
146 * @VMW_BALLOON_CMD_BATCHED_LOCK: Inform the hypervisor about a batch of
147 * ballooned pages (up to 512).
148 * @VMW_BALLOON_CMD_BATCHED_UNLOCK: Inform the hypervisor about a batch of
149 * pages that are about to be deflated from the
150 * balloon (up to 512).
151 * @VMW_BALLOON_CMD_BATCHED_2M_LOCK: Similar to @VMW_BALLOON_CMD_BATCHED_LOCK
153 * @VMW_BALLOON_CMD_BATCHED_2M_UNLOCK: Similar to
154 * @VMW_BALLOON_CMD_BATCHED_UNLOCK for 2MB
156 * @VMW_BALLOON_CMD_VMCI_DOORBELL_SET: A command to set doorbell notification
157 * that would be invoked when the balloon
159 * @VMW_BALLOON_CMD_LAST: Value of the last command.
161 enum vmballoon_cmd_type
{
162 VMW_BALLOON_CMD_START
,
163 VMW_BALLOON_CMD_GET_TARGET
,
164 VMW_BALLOON_CMD_LOCK
,
165 VMW_BALLOON_CMD_UNLOCK
,
166 VMW_BALLOON_CMD_GUEST_ID
,
168 VMW_BALLOON_CMD_BATCHED_LOCK
= 6,
169 VMW_BALLOON_CMD_BATCHED_UNLOCK
,
170 VMW_BALLOON_CMD_BATCHED_2M_LOCK
,
171 VMW_BALLOON_CMD_BATCHED_2M_UNLOCK
,
172 VMW_BALLOON_CMD_VMCI_DOORBELL_SET
,
173 VMW_BALLOON_CMD_LAST
= VMW_BALLOON_CMD_VMCI_DOORBELL_SET
,
176 #define VMW_BALLOON_CMD_NUM (VMW_BALLOON_CMD_LAST + 1)
178 enum vmballoon_error_codes
{
180 VMW_BALLOON_ERROR_CMD_INVALID
,
181 VMW_BALLOON_ERROR_PPN_INVALID
,
182 VMW_BALLOON_ERROR_PPN_LOCKED
,
183 VMW_BALLOON_ERROR_PPN_UNLOCKED
,
184 VMW_BALLOON_ERROR_PPN_PINNED
,
185 VMW_BALLOON_ERROR_PPN_NOTNEEDED
,
186 VMW_BALLOON_ERROR_RESET
,
187 VMW_BALLOON_ERROR_BUSY
190 #define VMW_BALLOON_SUCCESS_WITH_CAPABILITIES (0x03000000)
192 #define VMW_BALLOON_CMD_WITH_TARGET_MASK \
193 ((1UL << VMW_BALLOON_CMD_GET_TARGET) | \
194 (1UL << VMW_BALLOON_CMD_LOCK) | \
195 (1UL << VMW_BALLOON_CMD_UNLOCK) | \
196 (1UL << VMW_BALLOON_CMD_BATCHED_LOCK) | \
197 (1UL << VMW_BALLOON_CMD_BATCHED_UNLOCK) | \
198 (1UL << VMW_BALLOON_CMD_BATCHED_2M_LOCK) | \
199 (1UL << VMW_BALLOON_CMD_BATCHED_2M_UNLOCK))
201 static const char * const vmballoon_cmd_names
[] = {
202 [VMW_BALLOON_CMD_START
] = "start",
203 [VMW_BALLOON_CMD_GET_TARGET
] = "target",
204 [VMW_BALLOON_CMD_LOCK
] = "lock",
205 [VMW_BALLOON_CMD_UNLOCK
] = "unlock",
206 [VMW_BALLOON_CMD_GUEST_ID
] = "guestType",
207 [VMW_BALLOON_CMD_BATCHED_LOCK
] = "batchLock",
208 [VMW_BALLOON_CMD_BATCHED_UNLOCK
] = "batchUnlock",
209 [VMW_BALLOON_CMD_BATCHED_2M_LOCK
] = "2m-lock",
210 [VMW_BALLOON_CMD_BATCHED_2M_UNLOCK
] = "2m-unlock",
211 [VMW_BALLOON_CMD_VMCI_DOORBELL_SET
] = "doorbellSet"
214 enum vmballoon_stat_page
{
215 VMW_BALLOON_PAGE_STAT_ALLOC
,
216 VMW_BALLOON_PAGE_STAT_ALLOC_FAIL
,
217 VMW_BALLOON_PAGE_STAT_REFUSED_ALLOC
,
218 VMW_BALLOON_PAGE_STAT_REFUSED_FREE
,
219 VMW_BALLOON_PAGE_STAT_FREE
,
220 VMW_BALLOON_PAGE_STAT_LAST
= VMW_BALLOON_PAGE_STAT_FREE
223 #define VMW_BALLOON_PAGE_STAT_NUM (VMW_BALLOON_PAGE_STAT_LAST + 1)
225 enum vmballoon_stat_general
{
226 VMW_BALLOON_STAT_TIMER
,
227 VMW_BALLOON_STAT_DOORBELL
,
228 VMW_BALLOON_STAT_RESET
,
229 VMW_BALLOON_STAT_SHRINK
,
230 VMW_BALLOON_STAT_SHRINK_FREE
,
231 VMW_BALLOON_STAT_LAST
= VMW_BALLOON_STAT_SHRINK_FREE
234 #define VMW_BALLOON_STAT_NUM (VMW_BALLOON_STAT_LAST + 1)
236 static DEFINE_STATIC_KEY_TRUE(vmw_balloon_batching
);
237 static DEFINE_STATIC_KEY_FALSE(balloon_stat_enabled
);
239 struct vmballoon_ctl
{
240 struct list_head pages
;
241 struct list_head refused_pages
;
242 struct list_head prealloc_pages
;
243 unsigned int n_refused_pages
;
244 unsigned int n_pages
;
245 enum vmballoon_page_size_type page_size
;
246 enum vmballoon_op op
;
250 * struct vmballoon_batch_entry - a batch entry for lock or unlock.
252 * @status: the status of the operation, which is written by the hypervisor.
253 * @reserved: reserved for future use. Must be set to zero.
254 * @pfn: the physical frame number of the page to be locked or unlocked.
256 struct vmballoon_batch_entry
{
258 u64 reserved
: PAGE_SHIFT
- 5;
264 * @max_page_size: maximum supported page size for ballooning.
266 * Protected by @conf_sem
268 enum vmballoon_page_size_type max_page_size
;
271 * @size: balloon actual size in basic page size (frames).
273 * While we currently do not support size which is bigger than 32-bit,
274 * in preparation for future support, use 64-bits.
279 * @target: balloon target size in basic page size (frames).
281 * We do not protect the target under the assumption that setting the
282 * value is always done through a single write. If this assumption ever
283 * breaks, we would have to use X_ONCE for accesses, and suffer the less
284 * optimized code. Although we may read stale target value if multiple
285 * accesses happen at once, the performance impact should be minor.
287 unsigned long target
;
290 * @reset_required: reset flag
292 * Setting this flag may introduce races, but the code is expected to
293 * handle them gracefully. In the worst case, another operation will
294 * fail as reset did not take place. Clearing the flag is done while
295 * holding @conf_sem for write.
300 * @capabilities: hypervisor balloon capabilities.
302 * Protected by @conf_sem.
304 unsigned long capabilities
;
307 * @batch_page: pointer to communication batch page.
309 * When batching is used, batch_page points to a page, which holds up to
310 * %VMW_BALLOON_BATCH_MAX_PAGES entries for locking or unlocking.
312 struct vmballoon_batch_entry
*batch_page
;
315 * @batch_max_pages: maximum pages that can be locked/unlocked.
317 * Indicates the number of pages that the hypervisor can lock or unlock
318 * at once, according to whether batching is enabled. If batching is
319 * disabled, only a single page can be locked/unlock on each operation.
321 * Protected by @conf_sem.
323 unsigned int batch_max_pages
;
326 * @page: page to be locked/unlocked by the hypervisor
328 * @page is only used when batching is disabled and a single page is
329 * reclaimed on each iteration.
331 * Protected by @comm_lock.
336 * @shrink_timeout: timeout until the next inflation.
338 * After an shrink event, indicates the time in jiffies after which
339 * inflation is allowed again. Can be written concurrently with reads,
340 * so must use READ_ONCE/WRITE_ONCE when accessing.
342 unsigned long shrink_timeout
;
345 struct vmballoon_stats
*stats
;
348 * @b_dev_info: balloon device information descriptor.
350 struct balloon_dev_info b_dev_info
;
352 struct delayed_work dwork
;
355 * @huge_pages - list of the inflated 2MB pages.
357 * Protected by @b_dev_info.pages_lock .
359 struct list_head huge_pages
;
364 * Protected by @conf_sem.
366 struct vmci_handle vmci_doorbell
;
369 * @conf_sem: semaphore to protect the configuration and the statistics.
371 struct rw_semaphore conf_sem
;
374 * @comm_lock: lock to protect the communication with the host.
376 * Lock ordering: @conf_sem -> @comm_lock .
378 spinlock_t comm_lock
;
381 * @shrinker: shrinker interface that is used to avoid over-inflation.
383 struct shrinker
*shrinker
;
386 static struct vmballoon balloon
;
388 struct vmballoon_stats
{
389 /* timer / doorbell operations */
390 atomic64_t general_stat
[VMW_BALLOON_STAT_NUM
];
392 /* allocation statistics for huge and small pages */
394 page_stat
[VMW_BALLOON_PAGE_STAT_NUM
][VMW_BALLOON_NUM_PAGE_SIZES
];
396 /* Monitor operations: total operations, and failures */
397 atomic64_t ops
[VMW_BALLOON_CMD_NUM
][VMW_BALLOON_OP_STAT_TYPES
];
400 static inline bool is_vmballoon_stats_on(void)
402 return IS_ENABLED(CONFIG_DEBUG_FS
) &&
403 static_branch_unlikely(&balloon_stat_enabled
);
406 static inline void vmballoon_stats_op_inc(struct vmballoon
*b
, unsigned int op
,
407 enum vmballoon_op_stat_type type
)
409 if (is_vmballoon_stats_on())
410 atomic64_inc(&b
->stats
->ops
[op
][type
]);
413 static inline void vmballoon_stats_gen_inc(struct vmballoon
*b
,
414 enum vmballoon_stat_general stat
)
416 if (is_vmballoon_stats_on())
417 atomic64_inc(&b
->stats
->general_stat
[stat
]);
420 static inline void vmballoon_stats_gen_add(struct vmballoon
*b
,
421 enum vmballoon_stat_general stat
,
424 if (is_vmballoon_stats_on())
425 atomic64_add(val
, &b
->stats
->general_stat
[stat
]);
428 static inline void vmballoon_stats_page_inc(struct vmballoon
*b
,
429 enum vmballoon_stat_page stat
,
430 enum vmballoon_page_size_type size
)
432 if (is_vmballoon_stats_on())
433 atomic64_inc(&b
->stats
->page_stat
[stat
][size
]);
436 static inline void vmballoon_stats_page_add(struct vmballoon
*b
,
437 enum vmballoon_stat_page stat
,
438 enum vmballoon_page_size_type size
,
441 if (is_vmballoon_stats_on())
442 atomic64_add(val
, &b
->stats
->page_stat
[stat
][size
]);
445 static inline unsigned long
446 __vmballoon_cmd(struct vmballoon
*b
, unsigned long cmd
, unsigned long arg1
,
447 unsigned long arg2
, unsigned long *result
)
449 unsigned long status
, dummy1
, dummy2
, dummy3
, local_result
;
451 vmballoon_stats_op_inc(b
, cmd
, VMW_BALLOON_OP_STAT
);
453 asm volatile ("inl %%dx" :
459 "0"(VMW_BALLOON_HV_MAGIC
),
461 "2"(VMW_BALLOON_HV_PORT
),
466 /* update the result if needed */
468 *result
= (cmd
== VMW_BALLOON_CMD_START
) ? dummy1
:
471 /* update target when applicable */
472 if (status
== VMW_BALLOON_SUCCESS
&&
473 ((1ul << cmd
) & VMW_BALLOON_CMD_WITH_TARGET_MASK
))
474 WRITE_ONCE(b
->target
, local_result
);
476 if (status
!= VMW_BALLOON_SUCCESS
&&
477 status
!= VMW_BALLOON_SUCCESS_WITH_CAPABILITIES
) {
478 vmballoon_stats_op_inc(b
, cmd
, VMW_BALLOON_OP_FAIL_STAT
);
479 pr_debug("%s: %s [0x%lx,0x%lx) failed, returned %ld\n",
480 __func__
, vmballoon_cmd_names
[cmd
], arg1
, arg2
,
484 /* mark reset required accordingly */
485 if (status
== VMW_BALLOON_ERROR_RESET
)
486 b
->reset_required
= true;
491 static __always_inline
unsigned long
492 vmballoon_cmd(struct vmballoon
*b
, unsigned long cmd
, unsigned long arg1
,
497 return __vmballoon_cmd(b
, cmd
, arg1
, arg2
, &dummy
);
501 * Send "start" command to the host, communicating supported version
504 static int vmballoon_send_start(struct vmballoon
*b
, unsigned long req_caps
)
506 unsigned long status
, capabilities
;
508 status
= __vmballoon_cmd(b
, VMW_BALLOON_CMD_START
, req_caps
, 0,
512 case VMW_BALLOON_SUCCESS_WITH_CAPABILITIES
:
513 b
->capabilities
= capabilities
;
515 case VMW_BALLOON_SUCCESS
:
516 b
->capabilities
= VMW_BALLOON_BASIC_CMDS
;
523 * 2MB pages are only supported with batching. If batching is for some
524 * reason disabled, do not use 2MB pages, since otherwise the legacy
525 * mechanism is used with 2MB pages, causing a failure.
527 b
->max_page_size
= VMW_BALLOON_4K_PAGE
;
528 if ((b
->capabilities
& VMW_BALLOON_BATCHED_2M_CMDS
) &&
529 (b
->capabilities
& VMW_BALLOON_BATCHED_CMDS
))
530 b
->max_page_size
= VMW_BALLOON_2M_PAGE
;
537 * vmballoon_send_guest_id - communicate guest type to the host.
539 * @b: pointer to the balloon.
541 * Communicate guest type to the host so that it can adjust ballooning
542 * algorithm to the one most appropriate for the guest. This command
543 * is normally issued after sending "start" command and is part of
544 * standard reset sequence.
546 * Return: zero on success or appropriate error code.
548 static int vmballoon_send_guest_id(struct vmballoon
*b
)
550 unsigned long status
;
552 status
= vmballoon_cmd(b
, VMW_BALLOON_CMD_GUEST_ID
,
553 VMW_BALLOON_GUEST_ID
, 0);
555 return status
== VMW_BALLOON_SUCCESS
? 0 : -EIO
;
559 * vmballoon_page_order() - return the order of the page
560 * @page_size: the size of the page.
562 * Return: the allocation order.
565 unsigned int vmballoon_page_order(enum vmballoon_page_size_type page_size
)
567 return page_size
== VMW_BALLOON_2M_PAGE
? VMW_BALLOON_2M_ORDER
: 0;
571 * vmballoon_page_in_frames() - returns the number of frames in a page.
572 * @page_size: the size of the page.
574 * Return: the number of 4k frames.
576 static inline unsigned int
577 vmballoon_page_in_frames(enum vmballoon_page_size_type page_size
)
579 return 1 << vmballoon_page_order(page_size
);
583 * vmballoon_mark_page_offline() - mark a page as offline
584 * @page: pointer for the page.
585 * @page_size: the size of the page.
588 vmballoon_mark_page_offline(struct page
*page
,
589 enum vmballoon_page_size_type page_size
)
593 for (i
= 0; i
< vmballoon_page_in_frames(page_size
); i
++)
594 __SetPageOffline(page
+ i
);
598 * vmballoon_mark_page_online() - mark a page as online
599 * @page: pointer for the page.
600 * @page_size: the size of the page.
603 vmballoon_mark_page_online(struct page
*page
,
604 enum vmballoon_page_size_type page_size
)
608 for (i
= 0; i
< vmballoon_page_in_frames(page_size
); i
++)
609 __ClearPageOffline(page
+ i
);
613 * vmballoon_send_get_target() - Retrieve desired balloon size from the host.
615 * @b: pointer to the balloon.
617 * Return: zero on success, EINVAL if limit does not fit in 32-bit, as required
618 * by the host-guest protocol and EIO if an error occurred in communicating with
621 static int vmballoon_send_get_target(struct vmballoon
*b
)
623 unsigned long status
;
626 limit
= totalram_pages();
628 /* Ensure limit fits in 32-bits if 64-bit targets are not supported */
629 if (!(b
->capabilities
& VMW_BALLOON_64_BIT_TARGET
) &&
633 status
= vmballoon_cmd(b
, VMW_BALLOON_CMD_GET_TARGET
, limit
, 0);
635 return status
== VMW_BALLOON_SUCCESS
? 0 : -EIO
;
639 * vmballoon_alloc_page_list - allocates a list of pages.
641 * @b: pointer to the balloon.
642 * @ctl: pointer for the %struct vmballoon_ctl, which defines the operation.
643 * @req_n_pages: the number of requested pages.
645 * Tries to allocate @req_n_pages. Add them to the list of balloon pages in
646 * @ctl.pages and updates @ctl.n_pages to reflect the number of pages.
648 * Return: zero on success or error code otherwise.
650 static int vmballoon_alloc_page_list(struct vmballoon
*b
,
651 struct vmballoon_ctl
*ctl
,
652 unsigned int req_n_pages
)
657 for (i
= 0; i
< req_n_pages
; i
++) {
659 * First check if we happen to have pages that were allocated
660 * before. This happens when 2MB page rejected during inflation
661 * by the hypervisor, and then split into 4KB pages.
663 if (!list_empty(&ctl
->prealloc_pages
)) {
664 page
= list_first_entry(&ctl
->prealloc_pages
,
666 list_del(&page
->lru
);
668 if (ctl
->page_size
== VMW_BALLOON_2M_PAGE
)
669 page
= alloc_pages(__GFP_HIGHMEM
|__GFP_NOWARN
|
670 __GFP_NOMEMALLOC
, VMW_BALLOON_2M_ORDER
);
672 page
= balloon_page_alloc();
674 vmballoon_stats_page_inc(b
, VMW_BALLOON_PAGE_STAT_ALLOC
,
679 /* Success. Add the page to the list and continue. */
680 list_add(&page
->lru
, &ctl
->pages
);
684 /* Allocation failed. Update statistics and stop. */
685 vmballoon_stats_page_inc(b
, VMW_BALLOON_PAGE_STAT_ALLOC_FAIL
,
692 return req_n_pages
== ctl
->n_pages
? 0 : -ENOMEM
;
696 * vmballoon_handle_one_result - Handle lock/unlock result for a single page.
698 * @b: pointer for %struct vmballoon.
699 * @page: pointer for the page whose result should be handled.
700 * @page_size: size of the page.
701 * @status: status of the operation as provided by the hypervisor.
703 static int vmballoon_handle_one_result(struct vmballoon
*b
, struct page
*page
,
704 enum vmballoon_page_size_type page_size
,
705 unsigned long status
)
707 /* On success do nothing. The page is already on the balloon list. */
708 if (likely(status
== VMW_BALLOON_SUCCESS
))
711 pr_debug("%s: failed comm pfn %lx status %lu page_size %s\n", __func__
,
712 page_to_pfn(page
), status
,
713 vmballoon_page_size_names
[page_size
]);
716 vmballoon_stats_page_inc(b
, VMW_BALLOON_PAGE_STAT_REFUSED_ALLOC
,
723 * vmballoon_status_page - returns the status of (un)lock operation
725 * @b: pointer to the balloon.
726 * @idx: index for the page for which the operation is performed.
727 * @p: pointer to where the page struct is returned.
729 * Following a lock or unlock operation, returns the status of the operation for
730 * an individual page. Provides the page that the operation was performed on on
731 * the @page argument.
733 * Returns: The status of a lock or unlock operation for an individual page.
735 static unsigned long vmballoon_status_page(struct vmballoon
*b
, int idx
,
738 if (static_branch_likely(&vmw_balloon_batching
)) {
740 *p
= pfn_to_page(b
->batch_page
[idx
].pfn
);
741 return b
->batch_page
[idx
].status
;
744 /* non-batching mode */
748 * If a failure occurs, the indication will be provided in the status
749 * of the entire operation, which is considered before the individual
750 * page status. So for non-batching mode, the indication is always of
753 return VMW_BALLOON_SUCCESS
;
757 * vmballoon_lock_op - notifies the host about inflated/deflated pages.
758 * @b: pointer to the balloon.
759 * @num_pages: number of inflated/deflated pages.
760 * @page_size: size of the page.
761 * @op: the type of operation (lock or unlock).
763 * Notify the host about page(s) that were ballooned (or removed from the
764 * balloon) so that host can use it without fear that guest will need it (or
765 * stop using them since the VM does). Host may reject some pages, we need to
766 * check the return value and maybe submit a different page. The pages that are
767 * inflated/deflated are pointed by @b->page.
769 * Return: result as provided by the hypervisor.
771 static unsigned long vmballoon_lock_op(struct vmballoon
*b
,
772 unsigned int num_pages
,
773 enum vmballoon_page_size_type page_size
,
774 enum vmballoon_op op
)
776 unsigned long cmd
, pfn
;
778 lockdep_assert_held(&b
->comm_lock
);
780 if (static_branch_likely(&vmw_balloon_batching
)) {
781 if (op
== VMW_BALLOON_INFLATE
)
782 cmd
= page_size
== VMW_BALLOON_2M_PAGE
?
783 VMW_BALLOON_CMD_BATCHED_2M_LOCK
:
784 VMW_BALLOON_CMD_BATCHED_LOCK
;
786 cmd
= page_size
== VMW_BALLOON_2M_PAGE
?
787 VMW_BALLOON_CMD_BATCHED_2M_UNLOCK
:
788 VMW_BALLOON_CMD_BATCHED_UNLOCK
;
790 pfn
= PHYS_PFN(virt_to_phys(b
->batch_page
));
792 cmd
= op
== VMW_BALLOON_INFLATE
? VMW_BALLOON_CMD_LOCK
:
793 VMW_BALLOON_CMD_UNLOCK
;
794 pfn
= page_to_pfn(b
->page
);
796 /* In non-batching mode, PFNs must fit in 32-bit */
797 if (unlikely(pfn
!= (u32
)pfn
))
798 return VMW_BALLOON_ERROR_PPN_INVALID
;
801 return vmballoon_cmd(b
, cmd
, pfn
, num_pages
);
805 * vmballoon_add_page - adds a page towards lock/unlock operation.
807 * @b: pointer to the balloon.
808 * @idx: index of the page to be ballooned in this batch.
809 * @p: pointer to the page that is about to be ballooned.
811 * Adds the page to be ballooned. Must be called while holding @comm_lock.
813 static void vmballoon_add_page(struct vmballoon
*b
, unsigned int idx
,
816 lockdep_assert_held(&b
->comm_lock
);
818 if (static_branch_likely(&vmw_balloon_batching
))
819 b
->batch_page
[idx
] = (struct vmballoon_batch_entry
)
820 { .pfn
= page_to_pfn(p
) };
826 * vmballoon_lock - lock or unlock a batch of pages.
828 * @b: pointer to the balloon.
829 * @ctl: pointer for the %struct vmballoon_ctl, which defines the operation.
831 * Notifies the host of about ballooned pages (after inflation or deflation,
832 * according to @ctl). If the host rejects the page put it on the
833 * @ctl refuse list. These refused page are then released when moving to the
834 * next size of pages.
836 * Note that we neither free any @page here nor put them back on the ballooned
837 * pages list. Instead we queue it for later processing. We do that for several
838 * reasons. First, we do not want to free the page under the lock. Second, it
839 * allows us to unify the handling of lock and unlock. In the inflate case, the
840 * caller will check if there are too many refused pages and release them.
841 * Although it is not identical to the past behavior, it should not affect
844 static int vmballoon_lock(struct vmballoon
*b
, struct vmballoon_ctl
*ctl
)
846 unsigned long batch_status
;
848 unsigned int i
, num_pages
;
850 num_pages
= ctl
->n_pages
;
854 /* communication with the host is done under the communication lock */
855 spin_lock(&b
->comm_lock
);
858 list_for_each_entry(page
, &ctl
->pages
, lru
)
859 vmballoon_add_page(b
, i
++, page
);
861 batch_status
= vmballoon_lock_op(b
, ctl
->n_pages
, ctl
->page_size
,
865 * Iterate over the pages in the provided list. Since we are changing
866 * @ctl->n_pages we are saving the original value in @num_pages and
867 * use this value to bound the loop.
869 for (i
= 0; i
< num_pages
; i
++) {
870 unsigned long status
;
872 status
= vmballoon_status_page(b
, i
, &page
);
875 * Failure of the whole batch overrides a single operation
878 if (batch_status
!= VMW_BALLOON_SUCCESS
)
879 status
= batch_status
;
881 /* Continue if no error happened */
882 if (!vmballoon_handle_one_result(b
, page
, ctl
->page_size
,
887 * Error happened. Move the pages to the refused list and update
890 list_move(&page
->lru
, &ctl
->refused_pages
);
892 ctl
->n_refused_pages
++;
895 spin_unlock(&b
->comm_lock
);
897 return batch_status
== VMW_BALLOON_SUCCESS
? 0 : -EIO
;
901 * vmballoon_release_page_list() - Releases a page list
903 * @page_list: list of pages to release.
904 * @n_pages: pointer to the number of pages.
905 * @page_size: whether the pages in the list are 2MB (or else 4KB).
907 * Releases the list of pages and zeros the number of pages.
909 static void vmballoon_release_page_list(struct list_head
*page_list
,
911 enum vmballoon_page_size_type page_size
)
913 struct page
*page
, *tmp
;
915 list_for_each_entry_safe(page
, tmp
, page_list
, lru
) {
916 list_del(&page
->lru
);
917 __free_pages(page
, vmballoon_page_order(page_size
));
926 * Release pages that were allocated while attempting to inflate the
927 * balloon but were refused by the host for one reason or another.
929 static void vmballoon_release_refused_pages(struct vmballoon
*b
,
930 struct vmballoon_ctl
*ctl
)
932 vmballoon_stats_page_inc(b
, VMW_BALLOON_PAGE_STAT_REFUSED_FREE
,
935 vmballoon_release_page_list(&ctl
->refused_pages
, &ctl
->n_refused_pages
,
940 * vmballoon_change - retrieve the required balloon change
942 * @b: pointer for the balloon.
944 * Return: the required change for the balloon size. A positive number
945 * indicates inflation, a negative number indicates a deflation.
947 static int64_t vmballoon_change(struct vmballoon
*b
)
949 int64_t size
, target
;
951 size
= atomic64_read(&b
->size
);
952 target
= READ_ONCE(b
->target
);
955 * We must cast first because of int sizes
956 * Otherwise we might get huge positives instead of negatives
959 if (b
->reset_required
)
962 /* consider a 2MB slack on deflate, unless the balloon is emptied */
963 if (target
< size
&& target
!= 0 &&
964 size
- target
< vmballoon_page_in_frames(VMW_BALLOON_2M_PAGE
))
967 /* If an out-of-memory recently occurred, inflation is disallowed. */
968 if (target
> size
&& time_before(jiffies
, READ_ONCE(b
->shrink_timeout
)))
971 return target
- size
;
975 * vmballoon_enqueue_page_list() - Enqueues list of pages after inflation.
977 * @b: pointer to balloon.
978 * @pages: list of pages to enqueue.
979 * @n_pages: pointer to number of pages in list. The value is zeroed.
980 * @page_size: whether the pages are 2MB or 4KB pages.
982 * Enqueues the provides list of pages in the ballooned page list, clears the
983 * list and zeroes the number of pages that was provided.
985 static void vmballoon_enqueue_page_list(struct vmballoon
*b
,
986 struct list_head
*pages
,
987 unsigned int *n_pages
,
988 enum vmballoon_page_size_type page_size
)
993 if (page_size
== VMW_BALLOON_4K_PAGE
) {
994 balloon_page_list_enqueue(&b
->b_dev_info
, pages
);
997 * Keep the huge pages in a local list which is not available
998 * for the balloon compaction mechanism.
1000 spin_lock_irqsave(&b
->b_dev_info
.pages_lock
, flags
);
1002 list_for_each_entry(page
, pages
, lru
) {
1003 vmballoon_mark_page_offline(page
, VMW_BALLOON_2M_PAGE
);
1006 list_splice_init(pages
, &b
->huge_pages
);
1007 __count_vm_events(BALLOON_INFLATE
, *n_pages
*
1008 vmballoon_page_in_frames(VMW_BALLOON_2M_PAGE
));
1009 spin_unlock_irqrestore(&b
->b_dev_info
.pages_lock
, flags
);
1016 * vmballoon_dequeue_page_list() - Dequeues page lists for deflation.
1018 * @b: pointer to balloon.
1019 * @pages: list of pages to enqueue.
1020 * @n_pages: pointer to number of pages in list. The value is zeroed.
1021 * @page_size: whether the pages are 2MB or 4KB pages.
1022 * @n_req_pages: the number of requested pages.
1024 * Dequeues the number of requested pages from the balloon for deflation. The
1025 * number of dequeued pages may be lower, if not enough pages in the requested
1026 * size are available.
1028 static void vmballoon_dequeue_page_list(struct vmballoon
*b
,
1029 struct list_head
*pages
,
1030 unsigned int *n_pages
,
1031 enum vmballoon_page_size_type page_size
,
1032 unsigned int n_req_pages
)
1034 struct page
*page
, *tmp
;
1036 unsigned long flags
;
1038 /* In the case of 4k pages, use the compaction infrastructure */
1039 if (page_size
== VMW_BALLOON_4K_PAGE
) {
1040 *n_pages
= balloon_page_list_dequeue(&b
->b_dev_info
, pages
,
1046 spin_lock_irqsave(&b
->b_dev_info
.pages_lock
, flags
);
1047 list_for_each_entry_safe(page
, tmp
, &b
->huge_pages
, lru
) {
1048 vmballoon_mark_page_online(page
, VMW_BALLOON_2M_PAGE
);
1050 list_move(&page
->lru
, pages
);
1051 if (++i
== n_req_pages
)
1055 __count_vm_events(BALLOON_DEFLATE
,
1056 i
* vmballoon_page_in_frames(VMW_BALLOON_2M_PAGE
));
1057 spin_unlock_irqrestore(&b
->b_dev_info
.pages_lock
, flags
);
1062 * vmballoon_split_refused_pages() - Split the 2MB refused pages to 4k.
1064 * If inflation of 2MB pages was denied by the hypervisor, it is likely to be
1065 * due to one or few 4KB pages. These 2MB pages may keep being allocated and
1066 * then being refused. To prevent this case, this function splits the refused
1067 * pages into 4KB pages and adds them into @prealloc_pages list.
1069 * @ctl: pointer for the %struct vmballoon_ctl, which defines the operation.
1071 static void vmballoon_split_refused_pages(struct vmballoon_ctl
*ctl
)
1073 struct page
*page
, *tmp
;
1074 unsigned int i
, order
;
1076 order
= vmballoon_page_order(ctl
->page_size
);
1078 list_for_each_entry_safe(page
, tmp
, &ctl
->refused_pages
, lru
) {
1079 list_del(&page
->lru
);
1080 split_page(page
, order
);
1081 for (i
= 0; i
< (1 << order
); i
++)
1082 list_add(&page
[i
].lru
, &ctl
->prealloc_pages
);
1084 ctl
->n_refused_pages
= 0;
1088 * vmballoon_inflate() - Inflate the balloon towards its target size.
1090 * @b: pointer to the balloon.
1092 static void vmballoon_inflate(struct vmballoon
*b
)
1094 int64_t to_inflate_frames
;
1095 struct vmballoon_ctl ctl
= {
1096 .pages
= LIST_HEAD_INIT(ctl
.pages
),
1097 .refused_pages
= LIST_HEAD_INIT(ctl
.refused_pages
),
1098 .prealloc_pages
= LIST_HEAD_INIT(ctl
.prealloc_pages
),
1099 .page_size
= b
->max_page_size
,
1100 .op
= VMW_BALLOON_INFLATE
1103 while ((to_inflate_frames
= vmballoon_change(b
)) > 0) {
1104 unsigned int to_inflate_pages
, page_in_frames
;
1105 int alloc_error
, lock_error
= 0;
1107 VM_BUG_ON(!list_empty(&ctl
.pages
));
1108 VM_BUG_ON(ctl
.n_pages
!= 0);
1110 page_in_frames
= vmballoon_page_in_frames(ctl
.page_size
);
1112 to_inflate_pages
= min_t(unsigned long, b
->batch_max_pages
,
1113 DIV_ROUND_UP_ULL(to_inflate_frames
,
1116 /* Start by allocating */
1117 alloc_error
= vmballoon_alloc_page_list(b
, &ctl
,
1120 /* Actually lock the pages by telling the hypervisor */
1121 lock_error
= vmballoon_lock(b
, &ctl
);
1124 * If an error indicates that something serious went wrong,
1125 * stop the inflation.
1130 /* Update the balloon size */
1131 atomic64_add(ctl
.n_pages
* page_in_frames
, &b
->size
);
1133 vmballoon_enqueue_page_list(b
, &ctl
.pages
, &ctl
.n_pages
,
1137 * If allocation failed or the number of refused pages exceeds
1138 * the maximum allowed, move to the next page size.
1141 ctl
.n_refused_pages
>= VMW_BALLOON_MAX_REFUSED
) {
1142 if (ctl
.page_size
== VMW_BALLOON_4K_PAGE
)
1146 * Split the refused pages to 4k. This will also empty
1147 * the refused pages list.
1149 vmballoon_split_refused_pages(&ctl
);
1157 * Release pages that were allocated while attempting to inflate the
1158 * balloon but were refused by the host for one reason or another,
1159 * and update the statistics.
1161 if (ctl
.n_refused_pages
!= 0)
1162 vmballoon_release_refused_pages(b
, &ctl
);
1164 vmballoon_release_page_list(&ctl
.prealloc_pages
, NULL
, ctl
.page_size
);
1168 * vmballoon_deflate() - Decrease the size of the balloon.
1170 * @b: pointer to the balloon
1171 * @n_frames: the number of frames to deflate. If zero, automatically
1172 * calculated according to the target size.
1173 * @coordinated: whether to coordinate with the host
1175 * Decrease the size of the balloon allowing guest to use more memory.
1177 * Return: The number of deflated frames (i.e., basic page size units)
1179 static unsigned long vmballoon_deflate(struct vmballoon
*b
, uint64_t n_frames
,
1182 unsigned long deflated_frames
= 0;
1183 unsigned long tried_frames
= 0;
1184 struct vmballoon_ctl ctl
= {
1185 .pages
= LIST_HEAD_INIT(ctl
.pages
),
1186 .refused_pages
= LIST_HEAD_INIT(ctl
.refused_pages
),
1187 .page_size
= VMW_BALLOON_4K_PAGE
,
1188 .op
= VMW_BALLOON_DEFLATE
1191 /* free pages to reach target */
1193 unsigned int to_deflate_pages
, n_unlocked_frames
;
1194 unsigned int page_in_frames
;
1195 int64_t to_deflate_frames
;
1198 page_in_frames
= vmballoon_page_in_frames(ctl
.page_size
);
1200 VM_BUG_ON(!list_empty(&ctl
.pages
));
1201 VM_BUG_ON(ctl
.n_pages
);
1202 VM_BUG_ON(!list_empty(&ctl
.refused_pages
));
1203 VM_BUG_ON(ctl
.n_refused_pages
);
1206 * If we were requested a specific number of frames, we try to
1207 * deflate this number of frames. Otherwise, deflation is
1208 * performed according to the target and balloon size.
1210 to_deflate_frames
= n_frames
? n_frames
- tried_frames
:
1211 -vmballoon_change(b
);
1213 /* break if no work to do */
1214 if (to_deflate_frames
<= 0)
1218 * Calculate the number of frames based on current page size,
1219 * but limit the deflated frames to a single chunk
1221 to_deflate_pages
= min_t(unsigned long, b
->batch_max_pages
,
1222 DIV_ROUND_UP_ULL(to_deflate_frames
,
1225 /* First take the pages from the balloon pages. */
1226 vmballoon_dequeue_page_list(b
, &ctl
.pages
, &ctl
.n_pages
,
1227 ctl
.page_size
, to_deflate_pages
);
1230 * Before pages are moving to the refused list, count their
1231 * frames as frames that we tried to deflate.
1233 tried_frames
+= ctl
.n_pages
* page_in_frames
;
1236 * Unlock the pages by communicating with the hypervisor if the
1237 * communication is coordinated (i.e., not pop). We ignore the
1238 * return code. Instead we check if all the pages we manage to
1239 * unlock all the pages. If we failed, we will move to the next
1240 * page size, and would eventually try again later.
1243 vmballoon_lock(b
, &ctl
);
1246 * Check if we deflated enough. We will move to the next page
1247 * size if we did not manage to do so. This calculation takes
1248 * place now, as once the pages are released, the number of
1251 deflated_all
= (ctl
.n_pages
== to_deflate_pages
);
1253 /* Update local and global counters */
1254 n_unlocked_frames
= ctl
.n_pages
* page_in_frames
;
1255 atomic64_sub(n_unlocked_frames
, &b
->size
);
1256 deflated_frames
+= n_unlocked_frames
;
1258 vmballoon_stats_page_add(b
, VMW_BALLOON_PAGE_STAT_FREE
,
1259 ctl
.page_size
, ctl
.n_pages
);
1261 /* free the ballooned pages */
1262 vmballoon_release_page_list(&ctl
.pages
, &ctl
.n_pages
,
1265 /* Return the refused pages to the ballooned list. */
1266 vmballoon_enqueue_page_list(b
, &ctl
.refused_pages
,
1267 &ctl
.n_refused_pages
,
1270 /* If we failed to unlock all the pages, move to next size. */
1271 if (!deflated_all
) {
1272 if (ctl
.page_size
== b
->max_page_size
)
1280 return deflated_frames
;
1284 * vmballoon_deinit_batching - disables batching mode.
1286 * @b: pointer to &struct vmballoon.
1288 * Disables batching, by deallocating the page for communication with the
1289 * hypervisor and disabling the static key to indicate that batching is off.
1291 static void vmballoon_deinit_batching(struct vmballoon
*b
)
1293 free_page((unsigned long)b
->batch_page
);
1294 b
->batch_page
= NULL
;
1295 static_branch_disable(&vmw_balloon_batching
);
1296 b
->batch_max_pages
= 1;
1300 * vmballoon_init_batching - enable batching mode.
1302 * @b: pointer to &struct vmballoon.
1304 * Enables batching, by allocating a page for communication with the hypervisor
1305 * and enabling the static_key to use batching.
1307 * Return: zero on success or an appropriate error-code.
1309 static int vmballoon_init_batching(struct vmballoon
*b
)
1313 page
= alloc_page(GFP_KERNEL
| __GFP_ZERO
);
1317 b
->batch_page
= page_address(page
);
1318 b
->batch_max_pages
= PAGE_SIZE
/ sizeof(struct vmballoon_batch_entry
);
1320 static_branch_enable(&vmw_balloon_batching
);
1326 * Receive notification and resize balloon
1328 static void vmballoon_doorbell(void *client_data
)
1330 struct vmballoon
*b
= client_data
;
1332 vmballoon_stats_gen_inc(b
, VMW_BALLOON_STAT_DOORBELL
);
1334 mod_delayed_work(system_freezable_wq
, &b
->dwork
, 0);
1338 * Clean up vmci doorbell
1340 static void vmballoon_vmci_cleanup(struct vmballoon
*b
)
1342 vmballoon_cmd(b
, VMW_BALLOON_CMD_VMCI_DOORBELL_SET
,
1343 VMCI_INVALID_ID
, VMCI_INVALID_ID
);
1345 if (!vmci_handle_is_invalid(b
->vmci_doorbell
)) {
1346 vmci_doorbell_destroy(b
->vmci_doorbell
);
1347 b
->vmci_doorbell
= VMCI_INVALID_HANDLE
;
1352 * vmballoon_vmci_init - Initialize vmci doorbell.
1354 * @b: pointer to the balloon.
1356 * Return: zero on success or when wakeup command not supported. Error-code
1359 * Initialize vmci doorbell, to get notified as soon as balloon changes.
1361 static int vmballoon_vmci_init(struct vmballoon
*b
)
1363 unsigned long error
;
1365 if ((b
->capabilities
& VMW_BALLOON_SIGNALLED_WAKEUP_CMD
) == 0)
1368 error
= vmci_doorbell_create(&b
->vmci_doorbell
, VMCI_FLAG_DELAYED_CB
,
1369 VMCI_PRIVILEGE_FLAG_RESTRICTED
,
1370 vmballoon_doorbell
, b
);
1372 if (error
!= VMCI_SUCCESS
)
1375 error
= __vmballoon_cmd(b
, VMW_BALLOON_CMD_VMCI_DOORBELL_SET
,
1376 b
->vmci_doorbell
.context
,
1377 b
->vmci_doorbell
.resource
, NULL
);
1379 if (error
!= VMW_BALLOON_SUCCESS
)
1384 vmballoon_vmci_cleanup(b
);
1389 * vmballoon_pop - Quickly release all pages allocate for the balloon.
1391 * @b: pointer to the balloon.
1393 * This function is called when host decides to "reset" balloon for one reason
1394 * or another. Unlike normal "deflate" we do not (shall not) notify host of the
1395 * pages being released.
1397 static void vmballoon_pop(struct vmballoon
*b
)
1401 while ((size
= atomic64_read(&b
->size
)))
1402 vmballoon_deflate(b
, size
, false);
1406 * Perform standard reset sequence by popping the balloon (in case it
1407 * is not empty) and then restarting protocol. This operation normally
1408 * happens when host responds with VMW_BALLOON_ERROR_RESET to a command.
1410 static void vmballoon_reset(struct vmballoon
*b
)
1414 down_write(&b
->conf_sem
);
1416 vmballoon_vmci_cleanup(b
);
1418 /* free all pages, skipping monitor unlock */
1421 if (vmballoon_send_start(b
, VMW_BALLOON_CAPABILITIES
))
1424 if ((b
->capabilities
& VMW_BALLOON_BATCHED_CMDS
) != 0) {
1425 if (vmballoon_init_batching(b
)) {
1427 * We failed to initialize batching, inform the monitor
1428 * about it by sending a null capability.
1430 * The guest will retry in one second.
1432 vmballoon_send_start(b
, 0);
1435 } else if ((b
->capabilities
& VMW_BALLOON_BASIC_CMDS
) != 0) {
1436 vmballoon_deinit_batching(b
);
1439 vmballoon_stats_gen_inc(b
, VMW_BALLOON_STAT_RESET
);
1440 b
->reset_required
= false;
1442 error
= vmballoon_vmci_init(b
);
1444 pr_err_once("failed to initialize vmci doorbell\n");
1446 if (vmballoon_send_guest_id(b
))
1447 pr_err_once("failed to send guest ID to the host\n");
1450 up_write(&b
->conf_sem
);
1454 * vmballoon_work - periodic balloon worker for reset, inflation and deflation.
1456 * @work: pointer to the &work_struct which is provided by the workqueue.
1458 * Resets the protocol if needed, gets the new size and adjusts balloon as
1459 * needed. Repeat in 1 sec.
1461 static void vmballoon_work(struct work_struct
*work
)
1463 struct delayed_work
*dwork
= to_delayed_work(work
);
1464 struct vmballoon
*b
= container_of(dwork
, struct vmballoon
, dwork
);
1467 if (b
->reset_required
)
1470 down_read(&b
->conf_sem
);
1473 * Update the stats while holding the semaphore to ensure that
1474 * @stats_enabled is consistent with whether the stats are actually
1477 vmballoon_stats_gen_inc(b
, VMW_BALLOON_STAT_TIMER
);
1479 if (!vmballoon_send_get_target(b
))
1480 change
= vmballoon_change(b
);
1483 pr_debug("%s - size: %llu, target %lu\n", __func__
,
1484 atomic64_read(&b
->size
), READ_ONCE(b
->target
));
1487 vmballoon_inflate(b
);
1488 else /* (change < 0) */
1489 vmballoon_deflate(b
, 0, true);
1492 up_read(&b
->conf_sem
);
1495 * We are using a freezable workqueue so that balloon operations are
1496 * stopped while the system transitions to/from sleep/hibernation.
1498 queue_delayed_work(system_freezable_wq
,
1499 dwork
, round_jiffies_relative(HZ
));
1504 * vmballoon_shrinker_scan() - deflate the balloon due to memory pressure.
1505 * @shrinker: pointer to the balloon shrinker.
1506 * @sc: page reclaim information.
1508 * Returns: number of pages that were freed during deflation.
1510 static unsigned long vmballoon_shrinker_scan(struct shrinker
*shrinker
,
1511 struct shrink_control
*sc
)
1513 struct vmballoon
*b
= &balloon
;
1514 unsigned long deflated_frames
;
1516 pr_debug("%s - size: %llu", __func__
, atomic64_read(&b
->size
));
1518 vmballoon_stats_gen_inc(b
, VMW_BALLOON_STAT_SHRINK
);
1521 * If the lock is also contended for read, we cannot easily reclaim and
1524 if (!down_read_trylock(&b
->conf_sem
))
1527 deflated_frames
= vmballoon_deflate(b
, sc
->nr_to_scan
, true);
1529 vmballoon_stats_gen_add(b
, VMW_BALLOON_STAT_SHRINK_FREE
,
1533 * Delay future inflation for some time to mitigate the situations in
1534 * which balloon continuously grows and shrinks. Use WRITE_ONCE() since
1535 * the access is asynchronous.
1537 WRITE_ONCE(b
->shrink_timeout
, jiffies
+ HZ
* VMBALLOON_SHRINK_DELAY
);
1539 up_read(&b
->conf_sem
);
1541 return deflated_frames
;
1545 * vmballoon_shrinker_count() - return the number of ballooned pages.
1546 * @shrinker: pointer to the balloon shrinker.
1547 * @sc: page reclaim information.
1549 * Returns: number of 4k pages that are allocated for the balloon and can
1550 * therefore be reclaimed under pressure.
1552 static unsigned long vmballoon_shrinker_count(struct shrinker
*shrinker
,
1553 struct shrink_control
*sc
)
1555 struct vmballoon
*b
= &balloon
;
1557 return atomic64_read(&b
->size
);
1560 static void vmballoon_unregister_shrinker(struct vmballoon
*b
)
1562 shrinker_free(b
->shrinker
);
1566 static int vmballoon_register_shrinker(struct vmballoon
*b
)
1568 /* Do nothing if the shrinker is not enabled */
1569 if (!vmwballoon_shrinker_enable
)
1572 b
->shrinker
= shrinker_alloc(0, "vmw-balloon");
1576 b
->shrinker
->scan_objects
= vmballoon_shrinker_scan
;
1577 b
->shrinker
->count_objects
= vmballoon_shrinker_count
;
1578 b
->shrinker
->private_data
= b
;
1580 shrinker_register(b
->shrinker
);
1588 #ifdef CONFIG_DEBUG_FS
1590 static const char * const vmballoon_stat_page_names
[] = {
1591 [VMW_BALLOON_PAGE_STAT_ALLOC
] = "alloc",
1592 [VMW_BALLOON_PAGE_STAT_ALLOC_FAIL
] = "allocFail",
1593 [VMW_BALLOON_PAGE_STAT_REFUSED_ALLOC
] = "errAlloc",
1594 [VMW_BALLOON_PAGE_STAT_REFUSED_FREE
] = "errFree",
1595 [VMW_BALLOON_PAGE_STAT_FREE
] = "free"
1598 static const char * const vmballoon_stat_names
[] = {
1599 [VMW_BALLOON_STAT_TIMER
] = "timer",
1600 [VMW_BALLOON_STAT_DOORBELL
] = "doorbell",
1601 [VMW_BALLOON_STAT_RESET
] = "reset",
1602 [VMW_BALLOON_STAT_SHRINK
] = "shrink",
1603 [VMW_BALLOON_STAT_SHRINK_FREE
] = "shrinkFree"
1606 static int vmballoon_enable_stats(struct vmballoon
*b
)
1610 down_write(&b
->conf_sem
);
1612 /* did we somehow race with another reader which enabled stats? */
1616 b
->stats
= kzalloc(sizeof(*b
->stats
), GFP_KERNEL
);
1619 /* allocation failed */
1623 static_key_enable(&balloon_stat_enabled
.key
);
1625 up_write(&b
->conf_sem
);
1630 * vmballoon_debug_show - shows statistics of balloon operations.
1631 * @f: pointer to the &struct seq_file.
1634 * Provides the statistics that can be accessed in vmmemctl in the debugfs.
1635 * To avoid the overhead - mainly that of memory - of collecting the statistics,
1636 * we only collect statistics after the first time the counters are read.
1638 * Return: zero on success or an error code.
1640 static int vmballoon_debug_show(struct seq_file
*f
, void *offset
)
1642 struct vmballoon
*b
= f
->private;
1645 /* enables stats if they are disabled */
1647 int r
= vmballoon_enable_stats(b
);
1653 /* format capabilities info */
1654 seq_printf(f
, "%-22s: %#16x\n", "balloon capabilities",
1655 VMW_BALLOON_CAPABILITIES
);
1656 seq_printf(f
, "%-22s: %#16lx\n", "used capabilities", b
->capabilities
);
1657 seq_printf(f
, "%-22s: %16s\n", "is resetting",
1658 b
->reset_required
? "y" : "n");
1660 /* format size info */
1661 seq_printf(f
, "%-22s: %16lu\n", "target", READ_ONCE(b
->target
));
1662 seq_printf(f
, "%-22s: %16llu\n", "current", atomic64_read(&b
->size
));
1664 for (i
= 0; i
< VMW_BALLOON_CMD_NUM
; i
++) {
1665 if (vmballoon_cmd_names
[i
] == NULL
)
1668 seq_printf(f
, "%-22s: %16llu (%llu failed)\n",
1669 vmballoon_cmd_names
[i
],
1670 atomic64_read(&b
->stats
->ops
[i
][VMW_BALLOON_OP_STAT
]),
1671 atomic64_read(&b
->stats
->ops
[i
][VMW_BALLOON_OP_FAIL_STAT
]));
1674 for (i
= 0; i
< VMW_BALLOON_STAT_NUM
; i
++)
1675 seq_printf(f
, "%-22s: %16llu\n",
1676 vmballoon_stat_names
[i
],
1677 atomic64_read(&b
->stats
->general_stat
[i
]));
1679 for (i
= 0; i
< VMW_BALLOON_PAGE_STAT_NUM
; i
++) {
1680 for (j
= 0; j
< VMW_BALLOON_NUM_PAGE_SIZES
; j
++)
1681 seq_printf(f
, "%-18s(%s): %16llu\n",
1682 vmballoon_stat_page_names
[i
],
1683 vmballoon_page_size_names
[j
],
1684 atomic64_read(&b
->stats
->page_stat
[i
][j
]));
1690 DEFINE_SHOW_ATTRIBUTE(vmballoon_debug
);
1692 static void __init
vmballoon_debugfs_init(struct vmballoon
*b
)
1694 debugfs_create_file("vmmemctl", S_IRUGO
, NULL
, b
,
1695 &vmballoon_debug_fops
);
1698 static void __exit
vmballoon_debugfs_exit(struct vmballoon
*b
)
1700 static_key_disable(&balloon_stat_enabled
.key
);
1701 debugfs_lookup_and_remove("vmmemctl", NULL
);
1708 static inline void vmballoon_debugfs_init(struct vmballoon
*b
)
1712 static inline void vmballoon_debugfs_exit(struct vmballoon
*b
)
1716 #endif /* CONFIG_DEBUG_FS */
1719 #ifdef CONFIG_BALLOON_COMPACTION
1721 * vmballoon_migratepage() - migrates a balloon page.
1722 * @b_dev_info: balloon device information descriptor.
1723 * @newpage: the page to which @page should be migrated.
1724 * @page: a ballooned page that should be migrated.
1725 * @mode: migration mode, ignored.
1727 * This function is really open-coded, but that is according to the interface
1728 * that balloon_compaction provides.
1730 * Return: zero on success, -EAGAIN when migration cannot be performed
1731 * momentarily, and -EBUSY if migration failed and should be retried
1732 * with that specific page.
1734 static int vmballoon_migratepage(struct balloon_dev_info
*b_dev_info
,
1735 struct page
*newpage
, struct page
*page
,
1736 enum migrate_mode mode
)
1738 unsigned long status
, flags
;
1739 struct vmballoon
*b
;
1742 b
= container_of(b_dev_info
, struct vmballoon
, b_dev_info
);
1745 * If the semaphore is taken, there is ongoing configuration change
1746 * (i.e., balloon reset), so try again.
1748 if (!down_read_trylock(&b
->conf_sem
))
1751 spin_lock(&b
->comm_lock
);
1753 * We must start by deflating and not inflating, as otherwise the
1754 * hypervisor may tell us that it has enough memory and the new page is
1755 * not needed. Since the old page is isolated, we cannot use the list
1756 * interface to unlock it, as the LRU field is used for isolation.
1757 * Instead, we use the native interface directly.
1759 vmballoon_add_page(b
, 0, page
);
1760 status
= vmballoon_lock_op(b
, 1, VMW_BALLOON_4K_PAGE
,
1761 VMW_BALLOON_DEFLATE
);
1763 if (status
== VMW_BALLOON_SUCCESS
)
1764 status
= vmballoon_status_page(b
, 0, &page
);
1767 * If a failure happened, let the migration mechanism know that it
1770 if (status
!= VMW_BALLOON_SUCCESS
) {
1771 spin_unlock(&b
->comm_lock
);
1777 * The page is isolated, so it is safe to delete it without holding
1778 * @pages_lock . We keep holding @comm_lock since we will need it in a
1781 balloon_page_delete(page
);
1786 vmballoon_add_page(b
, 0, newpage
);
1787 status
= vmballoon_lock_op(b
, 1, VMW_BALLOON_4K_PAGE
,
1788 VMW_BALLOON_INFLATE
);
1790 if (status
== VMW_BALLOON_SUCCESS
)
1791 status
= vmballoon_status_page(b
, 0, &newpage
);
1793 spin_unlock(&b
->comm_lock
);
1795 if (status
!= VMW_BALLOON_SUCCESS
) {
1797 * A failure happened. While we can deflate the page we just
1798 * inflated, this deflation can also encounter an error. Instead
1799 * we will decrease the size of the balloon to reflect the
1800 * change and report failure.
1802 atomic64_dec(&b
->size
);
1806 * Success. Take a reference for the page, and we will add it to
1807 * the list after acquiring the lock.
1810 ret
= MIGRATEPAGE_SUCCESS
;
1813 /* Update the balloon list under the @pages_lock */
1814 spin_lock_irqsave(&b
->b_dev_info
.pages_lock
, flags
);
1817 * On inflation success, we already took a reference for the @newpage.
1818 * If we succeed just insert it to the list and update the statistics
1821 if (ret
== MIGRATEPAGE_SUCCESS
) {
1822 balloon_page_insert(&b
->b_dev_info
, newpage
);
1823 __count_vm_event(BALLOON_MIGRATE
);
1827 * We deflated successfully, so regardless to the inflation success, we
1828 * need to reduce the number of isolated_pages.
1830 b
->b_dev_info
.isolated_pages
--;
1831 spin_unlock_irqrestore(&b
->b_dev_info
.pages_lock
, flags
);
1834 up_read(&b
->conf_sem
);
1839 * vmballoon_compaction_init() - initialized compaction for the balloon.
1841 * @b: pointer to the balloon.
1843 * If during the initialization a failure occurred, this function does not
1844 * perform cleanup. The caller must call vmballoon_compaction_deinit() in this
1847 * Return: zero on success or error code on failure.
1849 static __init
void vmballoon_compaction_init(struct vmballoon
*b
)
1851 b
->b_dev_info
.migratepage
= vmballoon_migratepage
;
1854 #else /* CONFIG_BALLOON_COMPACTION */
1855 static inline void vmballoon_compaction_init(struct vmballoon
*b
)
1858 #endif /* CONFIG_BALLOON_COMPACTION */
1860 static int __init
vmballoon_init(void)
1865 * Check if we are running on VMware's hypervisor and bail out
1868 if (x86_hyper_type
!= X86_HYPER_VMWARE
)
1871 INIT_DELAYED_WORK(&balloon
.dwork
, vmballoon_work
);
1873 error
= vmballoon_register_shrinker(&balloon
);
1878 * Initialization of compaction must be done after the call to
1879 * balloon_devinfo_init() .
1881 balloon_devinfo_init(&balloon
.b_dev_info
);
1882 vmballoon_compaction_init(&balloon
);
1884 INIT_LIST_HEAD(&balloon
.huge_pages
);
1885 spin_lock_init(&balloon
.comm_lock
);
1886 init_rwsem(&balloon
.conf_sem
);
1887 balloon
.vmci_doorbell
= VMCI_INVALID_HANDLE
;
1888 balloon
.batch_page
= NULL
;
1889 balloon
.page
= NULL
;
1890 balloon
.reset_required
= true;
1892 queue_delayed_work(system_freezable_wq
, &balloon
.dwork
, 0);
1894 vmballoon_debugfs_init(&balloon
);
1900 * Using late_initcall() instead of module_init() allows the balloon to use the
1901 * VMCI doorbell even when the balloon is built into the kernel. Otherwise the
1902 * VMCI is probed only after the balloon is initialized. If the balloon is used
1903 * as a module, late_initcall() is equivalent to module_init().
1905 late_initcall(vmballoon_init
);
1907 static void __exit
vmballoon_exit(void)
1909 vmballoon_unregister_shrinker(&balloon
);
1910 vmballoon_vmci_cleanup(&balloon
);
1911 cancel_delayed_work_sync(&balloon
.dwork
);
1913 vmballoon_debugfs_exit(&balloon
);
1916 * Deallocate all reserved memory, and reset connection with monitor.
1917 * Reset connection before deallocating memory to avoid potential for
1918 * additional spurious resets from guest touching deallocated pages.
1920 vmballoon_send_start(&balloon
, 0);
1921 vmballoon_pop(&balloon
);
1923 module_exit(vmballoon_exit
);