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VMware balloon: Update balloon target on each lock/unlock.
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453dc659
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1/*
2 * VMware Balloon driver.
3 *
f220a80f 4 * Copyright (C) 2000-2013, VMware, Inc. All Rights Reserved.
453dc659
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5 *
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms of the GNU General Public License as published by the
8 * Free Software Foundation; version 2 of the License and no later version.
9 *
10 * This program is distributed in the hope that it will be useful, but
11 * WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE, GOOD TITLE or
13 * NON INFRINGEMENT. See the GNU General Public License for more
14 * details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
19 *
73b35d07
DT
20 * Maintained by: Xavier Deguillard <xdeguillard@vmware.com>
21 * Philip Moltmann <moltmann@vmware.com>
453dc659
DT
22 */
23
24/*
25 * This is VMware physical memory management driver for Linux. The driver
26 * acts like a "balloon" that can be inflated to reclaim physical pages by
27 * reserving them in the guest and invalidating them in the monitor,
28 * freeing up the underlying machine pages so they can be allocated to
29 * other guests. The balloon can also be deflated to allow the guest to
30 * use more physical memory. Higher level policies can control the sizes
31 * of balloons in VMs in order to manage physical memory resources.
32 */
33
34//#define DEBUG
35#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
36
37#include <linux/types.h>
38#include <linux/kernel.h>
39#include <linux/mm.h>
f220a80f 40#include <linux/vmalloc.h>
453dc659
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41#include <linux/sched.h>
42#include <linux/module.h>
43#include <linux/workqueue.h>
44#include <linux/debugfs.h>
45#include <linux/seq_file.h>
a10a5698 46#include <asm/hypervisor.h>
453dc659
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47
48MODULE_AUTHOR("VMware, Inc.");
49MODULE_DESCRIPTION("VMware Memory Control (Balloon) Driver");
4670de4d 50MODULE_VERSION("1.3.2.0-k");
453dc659
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51MODULE_ALIAS("dmi:*:svnVMware*:*");
52MODULE_ALIAS("vmware_vmmemctl");
53MODULE_LICENSE("GPL");
54
55/*
56 * Various constants controlling rate of inflaint/deflating balloon,
57 * measured in pages.
58 */
59
60/*
61 * Rate of allocating memory when there is no memory pressure
62 * (driver performs non-sleeping allocations).
63 */
64#define VMW_BALLOON_NOSLEEP_ALLOC_MAX 16384U
65
66/*
67 * Rates of memory allocaton when guest experiences memory pressure
68 * (driver performs sleeping allocations).
69 */
70#define VMW_BALLOON_RATE_ALLOC_MIN 512U
71#define VMW_BALLOON_RATE_ALLOC_MAX 2048U
72#define VMW_BALLOON_RATE_ALLOC_INC 16U
73
74/*
75 * Rates for releasing pages while deflating balloon.
76 */
77#define VMW_BALLOON_RATE_FREE_MIN 512U
78#define VMW_BALLOON_RATE_FREE_MAX 16384U
79#define VMW_BALLOON_RATE_FREE_INC 16U
80
81/*
82 * When guest is under memory pressure, use a reduced page allocation
83 * rate for next several cycles.
84 */
85#define VMW_BALLOON_SLOW_CYCLES 4
86
87/*
88 * Use __GFP_HIGHMEM to allow pages from HIGHMEM zone. We don't
89 * allow wait (__GFP_WAIT) for NOSLEEP page allocations. Use
90 * __GFP_NOWARN, to suppress page allocation failure warnings.
91 */
92#define VMW_PAGE_ALLOC_NOSLEEP (__GFP_HIGHMEM|__GFP_NOWARN)
93
94/*
95 * Use GFP_HIGHUSER when executing in a separate kernel thread
96 * context and allocation can sleep. This is less stressful to
97 * the guest memory system, since it allows the thread to block
98 * while memory is reclaimed, and won't take pages from emergency
99 * low-memory pools.
100 */
101#define VMW_PAGE_ALLOC_CANSLEEP (GFP_HIGHUSER)
102
103/* Maximum number of page allocations without yielding processor */
104#define VMW_BALLOON_YIELD_THRESHOLD 1024
105
55adaa49
DT
106/* Maximum number of refused pages we accumulate during inflation cycle */
107#define VMW_BALLOON_MAX_REFUSED 16
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108
109/*
110 * Hypervisor communication port definitions.
111 */
112#define VMW_BALLOON_HV_PORT 0x5670
113#define VMW_BALLOON_HV_MAGIC 0x456c6d6f
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114#define VMW_BALLOON_GUEST_ID 1 /* Linux */
115
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116enum vmwballoon_capabilities {
117 /*
118 * Bit 0 is reserved and not associated to any capability.
119 */
120 VMW_BALLOON_BASIC_CMDS = (1 << 1),
121 VMW_BALLOON_BATCHED_CMDS = (1 << 2)
122};
123
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124#define VMW_BALLOON_CAPABILITIES (VMW_BALLOON_BASIC_CMDS \
125 | VMW_BALLOON_BATCHED_CMDS)
eb79100f 126
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127/*
128 * Backdoor commands availability:
129 *
130 * START, GET_TARGET and GUEST_ID are always available,
131 *
132 * VMW_BALLOON_BASIC_CMDS:
133 * LOCK and UNLOCK commands,
134 * VMW_BALLOON_BATCHED_CMDS:
135 * BATCHED_LOCK and BATCHED_UNLOCK commands.
136 */
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137#define VMW_BALLOON_CMD_START 0
138#define VMW_BALLOON_CMD_GET_TARGET 1
139#define VMW_BALLOON_CMD_LOCK 2
140#define VMW_BALLOON_CMD_UNLOCK 3
141#define VMW_BALLOON_CMD_GUEST_ID 4
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142#define VMW_BALLOON_CMD_BATCHED_LOCK 6
143#define VMW_BALLOON_CMD_BATCHED_UNLOCK 7
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144
145/* error codes */
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146#define VMW_BALLOON_SUCCESS 0
147#define VMW_BALLOON_FAILURE -1
148#define VMW_BALLOON_ERROR_CMD_INVALID 1
149#define VMW_BALLOON_ERROR_PPN_INVALID 2
150#define VMW_BALLOON_ERROR_PPN_LOCKED 3
151#define VMW_BALLOON_ERROR_PPN_UNLOCKED 4
152#define VMW_BALLOON_ERROR_PPN_PINNED 5
153#define VMW_BALLOON_ERROR_PPN_NOTNEEDED 6
154#define VMW_BALLOON_ERROR_RESET 7
155#define VMW_BALLOON_ERROR_BUSY 8
156
157#define VMW_BALLOON_SUCCESS_WITH_CAPABILITIES (0x03000000)
158
f220a80f
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159/* Batch page description */
160
161/*
162 * Layout of a page in the batch page:
163 *
164 * +-------------+----------+--------+
165 * | | | |
166 * | Page number | Reserved | Status |
167 * | | | |
168 * +-------------+----------+--------+
169 * 64 PAGE_SHIFT 6 0
170 *
171 * For now only 4K pages are supported, but we can easily support large pages
172 * by using bits in the reserved field.
173 *
174 * The reserved field should be set to 0.
175 */
176#define VMW_BALLOON_BATCH_MAX_PAGES (PAGE_SIZE / sizeof(u64))
177#define VMW_BALLOON_BATCH_STATUS_MASK ((1UL << 5) - 1)
178#define VMW_BALLOON_BATCH_PAGE_MASK (~((1UL << PAGE_SHIFT) - 1))
179
180struct vmballoon_batch_page {
181 u64 pages[VMW_BALLOON_BATCH_MAX_PAGES];
182};
183
184static u64 vmballoon_batch_get_pa(struct vmballoon_batch_page *batch, int idx)
185{
186 return batch->pages[idx] & VMW_BALLOON_BATCH_PAGE_MASK;
187}
188
189static int vmballoon_batch_get_status(struct vmballoon_batch_page *batch,
190 int idx)
191{
192 return (int)(batch->pages[idx] & VMW_BALLOON_BATCH_STATUS_MASK);
193}
194
195static void vmballoon_batch_set_pa(struct vmballoon_batch_page *batch, int idx,
196 u64 pa)
197{
198 batch->pages[idx] = pa;
199}
200
201
202#define VMWARE_BALLOON_CMD(cmd, arg1, arg2, result) \
eb79100f 203({ \
f220a80f 204 unsigned long __status, __dummy1, __dummy2, __dummy3; \
eb79100f
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205 __asm__ __volatile__ ("inl %%dx" : \
206 "=a"(__status), \
207 "=c"(__dummy1), \
208 "=d"(__dummy2), \
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209 "=b"(result), \
210 "=S" (__dummy3) : \
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211 "0"(VMW_BALLOON_HV_MAGIC), \
212 "1"(VMW_BALLOON_CMD_##cmd), \
213 "2"(VMW_BALLOON_HV_PORT), \
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214 "3"(arg1), \
215 "4" (arg2) : \
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216 "memory"); \
217 if (VMW_BALLOON_CMD_##cmd == VMW_BALLOON_CMD_START) \
218 result = __dummy1; \
219 result &= -1UL; \
220 __status & -1UL; \
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221})
222
223#ifdef CONFIG_DEBUG_FS
224struct vmballoon_stats {
225 unsigned int timer;
226
2ca02df6 227 /* allocation statistics */
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228 unsigned int alloc;
229 unsigned int alloc_fail;
230 unsigned int sleep_alloc;
231 unsigned int sleep_alloc_fail;
232 unsigned int refused_alloc;
233 unsigned int refused_free;
234 unsigned int free;
235
236 /* monitor operations */
237 unsigned int lock;
238 unsigned int lock_fail;
239 unsigned int unlock;
240 unsigned int unlock_fail;
241 unsigned int target;
242 unsigned int target_fail;
243 unsigned int start;
244 unsigned int start_fail;
245 unsigned int guest_type;
246 unsigned int guest_type_fail;
247};
248
249#define STATS_INC(stat) (stat)++
250#else
251#define STATS_INC(stat)
252#endif
253
f220a80f
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254struct vmballoon;
255
256struct vmballoon_ops {
257 void (*add_page)(struct vmballoon *b, int idx, struct page *p);
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258 int (*lock)(struct vmballoon *b, unsigned int num_pages,
259 unsigned int *target);
260 int (*unlock)(struct vmballoon *b, unsigned int num_pages,
261 unsigned int *target);
f220a80f
XD
262};
263
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264struct vmballoon {
265
266 /* list of reserved physical pages */
267 struct list_head pages;
268
269 /* transient list of non-balloonable pages */
270 struct list_head refused_pages;
55adaa49 271 unsigned int n_refused_pages;
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272
273 /* balloon size in pages */
274 unsigned int size;
275 unsigned int target;
276
277 /* reset flag */
278 bool reset_required;
279
280 /* adjustment rates (pages per second) */
281 unsigned int rate_alloc;
282 unsigned int rate_free;
283
284 /* slowdown page allocations for next few cycles */
285 unsigned int slow_allocation_cycles;
286
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287 unsigned long capabilities;
288
289 struct vmballoon_batch_page *batch_page;
290 unsigned int batch_max_pages;
291 struct page *page;
292
293 const struct vmballoon_ops *ops;
294
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295#ifdef CONFIG_DEBUG_FS
296 /* statistics */
297 struct vmballoon_stats stats;
298
299 /* debugfs file exporting statistics */
300 struct dentry *dbg_entry;
301#endif
302
303 struct sysinfo sysinfo;
304
305 struct delayed_work dwork;
306};
307
308static struct vmballoon balloon;
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309
310/*
311 * Send "start" command to the host, communicating supported version
312 * of the protocol.
313 */
f220a80f 314static bool vmballoon_send_start(struct vmballoon *b, unsigned long req_caps)
453dc659 315{
f220a80f 316 unsigned long status, capabilities, dummy = 0;
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317
318 STATS_INC(b->stats.start);
319
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320 status = VMWARE_BALLOON_CMD(START, req_caps, dummy, capabilities);
321
322 switch (status) {
323 case VMW_BALLOON_SUCCESS_WITH_CAPABILITIES:
324 b->capabilities = capabilities;
325 return true;
326 case VMW_BALLOON_SUCCESS:
327 b->capabilities = VMW_BALLOON_BASIC_CMDS;
453dc659 328 return true;
f220a80f 329 }
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DT
330
331 pr_debug("%s - failed, hv returns %ld\n", __func__, status);
332 STATS_INC(b->stats.start_fail);
333 return false;
334}
335
336static bool vmballoon_check_status(struct vmballoon *b, unsigned long status)
337{
338 switch (status) {
339 case VMW_BALLOON_SUCCESS:
340 return true;
341
342 case VMW_BALLOON_ERROR_RESET:
343 b->reset_required = true;
344 /* fall through */
345
346 default:
347 return false;
348 }
349}
350
351/*
352 * Communicate guest type to the host so that it can adjust ballooning
353 * algorithm to the one most appropriate for the guest. This command
354 * is normally issued after sending "start" command and is part of
355 * standard reset sequence.
356 */
357static bool vmballoon_send_guest_id(struct vmballoon *b)
358{
f220a80f 359 unsigned long status, dummy = 0;
453dc659 360
f220a80f
XD
361 status = VMWARE_BALLOON_CMD(GUEST_ID, VMW_BALLOON_GUEST_ID, dummy,
362 dummy);
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DT
363
364 STATS_INC(b->stats.guest_type);
365
366 if (vmballoon_check_status(b, status))
367 return true;
368
369 pr_debug("%s - failed, hv returns %ld\n", __func__, status);
370 STATS_INC(b->stats.guest_type_fail);
371 return false;
372}
373
374/*
375 * Retrieve desired balloon size from the host.
376 */
377static bool vmballoon_send_get_target(struct vmballoon *b, u32 *new_target)
378{
379 unsigned long status;
380 unsigned long target;
381 unsigned long limit;
f220a80f 382 unsigned long dummy = 0;
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DT
383 u32 limit32;
384
385 /*
386 * si_meminfo() is cheap. Moreover, we want to provide dynamic
387 * max balloon size later. So let us call si_meminfo() every
388 * iteration.
389 */
390 si_meminfo(&b->sysinfo);
391 limit = b->sysinfo.totalram;
392
393 /* Ensure limit fits in 32-bits */
394 limit32 = (u32)limit;
395 if (limit != limit32)
396 return false;
397
398 /* update stats */
399 STATS_INC(b->stats.target);
400
f220a80f 401 status = VMWARE_BALLOON_CMD(GET_TARGET, limit, dummy, target);
453dc659
DT
402 if (vmballoon_check_status(b, status)) {
403 *new_target = target;
404 return true;
405 }
406
407 pr_debug("%s - failed, hv returns %ld\n", __func__, status);
408 STATS_INC(b->stats.target_fail);
409 return false;
410}
411
412/*
413 * Notify the host about allocated page so that host can use it without
414 * fear that guest will need it. Host may reject some pages, we need to
415 * check the return value and maybe submit a different page.
416 */
3e5ba466 417static int vmballoon_send_lock_page(struct vmballoon *b, unsigned long pfn,
4670de4d 418 unsigned int *hv_status, unsigned int *target)
453dc659 419{
f220a80f 420 unsigned long status, dummy = 0;
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DT
421 u32 pfn32;
422
423 pfn32 = (u32)pfn;
424 if (pfn32 != pfn)
3e5ba466 425 return -1;
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DT
426
427 STATS_INC(b->stats.lock);
428
4670de4d 429 *hv_status = status = VMWARE_BALLOON_CMD(LOCK, pfn, dummy, *target);
453dc659 430 if (vmballoon_check_status(b, status))
3e5ba466 431 return 0;
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DT
432
433 pr_debug("%s - ppn %lx, hv returns %ld\n", __func__, pfn, status);
434 STATS_INC(b->stats.lock_fail);
3e5ba466 435 return 1;
453dc659
DT
436}
437
f220a80f 438static int vmballoon_send_batched_lock(struct vmballoon *b,
4670de4d 439 unsigned int num_pages, unsigned int *target)
f220a80f 440{
4670de4d 441 unsigned long status;
f220a80f
XD
442 unsigned long pfn = page_to_pfn(b->page);
443
444 STATS_INC(b->stats.lock);
445
4670de4d 446 status = VMWARE_BALLOON_CMD(BATCHED_LOCK, pfn, num_pages, *target);
f220a80f
XD
447 if (vmballoon_check_status(b, status))
448 return 0;
449
450 pr_debug("%s - batch ppn %lx, hv returns %ld\n", __func__, pfn, status);
451 STATS_INC(b->stats.lock_fail);
452 return 1;
453}
454
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455/*
456 * Notify the host that guest intends to release given page back into
457 * the pool of available (to the guest) pages.
458 */
4670de4d
XD
459static bool vmballoon_send_unlock_page(struct vmballoon *b, unsigned long pfn,
460 unsigned int *target)
453dc659 461{
f220a80f 462 unsigned long status, dummy = 0;
453dc659
DT
463 u32 pfn32;
464
465 pfn32 = (u32)pfn;
466 if (pfn32 != pfn)
467 return false;
468
469 STATS_INC(b->stats.unlock);
470
4670de4d 471 status = VMWARE_BALLOON_CMD(UNLOCK, pfn, dummy, *target);
453dc659
DT
472 if (vmballoon_check_status(b, status))
473 return true;
474
475 pr_debug("%s - ppn %lx, hv returns %ld\n", __func__, pfn, status);
476 STATS_INC(b->stats.unlock_fail);
477 return false;
478}
479
f220a80f 480static bool vmballoon_send_batched_unlock(struct vmballoon *b,
4670de4d 481 unsigned int num_pages, unsigned int *target)
f220a80f 482{
4670de4d 483 unsigned long status;
f220a80f
XD
484 unsigned long pfn = page_to_pfn(b->page);
485
486 STATS_INC(b->stats.unlock);
487
4670de4d 488 status = VMWARE_BALLOON_CMD(BATCHED_UNLOCK, pfn, num_pages, *target);
f220a80f
XD
489 if (vmballoon_check_status(b, status))
490 return true;
491
492 pr_debug("%s - batch ppn %lx, hv returns %ld\n", __func__, pfn, status);
493 STATS_INC(b->stats.unlock_fail);
494 return false;
495}
496
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DT
497/*
498 * Quickly release all pages allocated for the balloon. This function is
499 * called when host decides to "reset" balloon for one reason or another.
500 * Unlike normal "deflate" we do not (shall not) notify host of the pages
501 * being released.
502 */
503static void vmballoon_pop(struct vmballoon *b)
504{
505 struct page *page, *next;
506 unsigned int count = 0;
507
508 list_for_each_entry_safe(page, next, &b->pages, lru) {
509 list_del(&page->lru);
510 __free_page(page);
511 STATS_INC(b->stats.free);
512 b->size--;
513
514 if (++count >= b->rate_free) {
515 count = 0;
516 cond_resched();
517 }
518 }
453dc659 519
f220a80f
XD
520 if ((b->capabilities & VMW_BALLOON_BATCHED_CMDS) != 0) {
521 if (b->batch_page)
522 vunmap(b->batch_page);
453dc659 523
f220a80f
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524 if (b->page)
525 __free_page(b->page);
453dc659
DT
526 }
527}
528
529/*
ef0f8f11
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530 * Notify the host of a ballooned page. If host rejects the page put it on the
531 * refuse list, those refused page are then released at the end of the
532 * inflation cycle.
453dc659 533 */
4670de4d
XD
534static int vmballoon_lock_page(struct vmballoon *b, unsigned int num_pages,
535 unsigned int *target)
453dc659 536{
ef0f8f11 537 int locked, hv_status;
f220a80f 538 struct page *page = b->page;
453dc659 539
4670de4d
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540 locked = vmballoon_send_lock_page(b, page_to_pfn(page), &hv_status,
541 target);
ef0f8f11
XD
542 if (locked > 0) {
543 STATS_INC(b->stats.refused_alloc);
453dc659 544
ef0f8f11
XD
545 if (hv_status == VMW_BALLOON_ERROR_RESET ||
546 hv_status == VMW_BALLOON_ERROR_PPN_NOTNEEDED) {
547 __free_page(page);
548 return -EIO;
549 }
453dc659 550
ef0f8f11
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551 /*
552 * Place page on the list of non-balloonable pages
553 * and retry allocation, unless we already accumulated
554 * too many of them, in which case take a breather.
555 */
556 if (b->n_refused_pages < VMW_BALLOON_MAX_REFUSED) {
557 b->n_refused_pages++;
453dc659 558 list_add(&page->lru, &b->refused_pages);
ef0f8f11
XD
559 } else {
560 __free_page(page);
453dc659 561 }
ef0f8f11
XD
562 return -EIO;
563 }
453dc659
DT
564
565 /* track allocated page */
566 list_add(&page->lru, &b->pages);
567
568 /* update balloon size */
569 b->size++;
570
571 return 0;
572}
573
f220a80f 574static int vmballoon_lock_batched_page(struct vmballoon *b,
4670de4d 575 unsigned int num_pages, unsigned int *target)
f220a80f
XD
576{
577 int locked, i;
578
4670de4d 579 locked = vmballoon_send_batched_lock(b, num_pages, target);
f220a80f
XD
580 if (locked > 0) {
581 for (i = 0; i < num_pages; i++) {
582 u64 pa = vmballoon_batch_get_pa(b->batch_page, i);
583 struct page *p = pfn_to_page(pa >> PAGE_SHIFT);
584
585 __free_page(p);
586 }
587
588 return -EIO;
589 }
590
591 for (i = 0; i < num_pages; i++) {
592 u64 pa = vmballoon_batch_get_pa(b->batch_page, i);
593 struct page *p = pfn_to_page(pa >> PAGE_SHIFT);
594
595 locked = vmballoon_batch_get_status(b->batch_page, i);
596
597 switch (locked) {
598 case VMW_BALLOON_SUCCESS:
599 list_add(&p->lru, &b->pages);
600 b->size++;
601 break;
602 case VMW_BALLOON_ERROR_PPN_PINNED:
603 case VMW_BALLOON_ERROR_PPN_INVALID:
604 if (b->n_refused_pages < VMW_BALLOON_MAX_REFUSED) {
605 list_add(&p->lru, &b->refused_pages);
606 b->n_refused_pages++;
607 break;
608 }
609 /* Fallthrough */
610 case VMW_BALLOON_ERROR_RESET:
611 case VMW_BALLOON_ERROR_PPN_NOTNEEDED:
612 __free_page(p);
613 break;
614 default:
615 /* This should never happen */
616 WARN_ON_ONCE(true);
617 }
618 }
619
620 return 0;
621}
622
453dc659
DT
623/*
624 * Release the page allocated for the balloon. Note that we first notify
625 * the host so it can make sure the page will be available for the guest
626 * to use, if needed.
627 */
4670de4d
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628static int vmballoon_unlock_page(struct vmballoon *b, unsigned int num_pages,
629 unsigned int *target)
453dc659 630{
f220a80f 631 struct page *page = b->page;
453dc659 632
4670de4d 633 if (!vmballoon_send_unlock_page(b, page_to_pfn(page), target)) {
f220a80f
XD
634 list_add(&page->lru, &b->pages);
635 return -EIO;
636 }
453dc659
DT
637
638 /* deallocate page */
639 __free_page(page);
640 STATS_INC(b->stats.free);
641
642 /* update balloon size */
643 b->size--;
644
645 return 0;
646}
647
f220a80f 648static int vmballoon_unlock_batched_page(struct vmballoon *b,
4670de4d 649 unsigned int num_pages, unsigned int *target)
f220a80f
XD
650{
651 int locked, i, ret = 0;
652 bool hv_success;
653
4670de4d 654 hv_success = vmballoon_send_batched_unlock(b, num_pages, target);
f220a80f
XD
655 if (!hv_success)
656 ret = -EIO;
657
658 for (i = 0; i < num_pages; i++) {
659 u64 pa = vmballoon_batch_get_pa(b->batch_page, i);
660 struct page *p = pfn_to_page(pa >> PAGE_SHIFT);
661
662 locked = vmballoon_batch_get_status(b->batch_page, i);
663 if (!hv_success || locked != VMW_BALLOON_SUCCESS) {
664 /*
665 * That page wasn't successfully unlocked by the
666 * hypervisor, re-add it to the list of pages owned by
667 * the balloon driver.
668 */
669 list_add(&p->lru, &b->pages);
670 } else {
671 /* deallocate page */
672 __free_page(p);
673 STATS_INC(b->stats.free);
674
675 /* update balloon size */
676 b->size--;
677 }
678 }
679
680 return ret;
681}
682
453dc659
DT
683/*
684 * Release pages that were allocated while attempting to inflate the
685 * balloon but were refused by the host for one reason or another.
686 */
687static void vmballoon_release_refused_pages(struct vmballoon *b)
688{
689 struct page *page, *next;
690
691 list_for_each_entry_safe(page, next, &b->refused_pages, lru) {
692 list_del(&page->lru);
693 __free_page(page);
694 STATS_INC(b->stats.refused_free);
695 }
55adaa49
DT
696
697 b->n_refused_pages = 0;
453dc659
DT
698}
699
f220a80f
XD
700static void vmballoon_add_page(struct vmballoon *b, int idx, struct page *p)
701{
702 b->page = p;
703}
704
705static void vmballoon_add_batched_page(struct vmballoon *b, int idx,
706 struct page *p)
707{
708 vmballoon_batch_set_pa(b->batch_page, idx,
709 (u64)page_to_pfn(p) << PAGE_SHIFT);
710}
711
453dc659
DT
712/*
713 * Inflate the balloon towards its target size. Note that we try to limit
714 * the rate of allocation to make sure we are not choking the rest of the
715 * system.
716 */
717static void vmballoon_inflate(struct vmballoon *b)
718{
453dc659 719 unsigned int rate;
453dc659 720 unsigned int allocations = 0;
f220a80f 721 unsigned int num_pages = 0;
453dc659 722 int error = 0;
ef0f8f11 723 gfp_t flags = VMW_PAGE_ALLOC_NOSLEEP;
453dc659
DT
724
725 pr_debug("%s - size: %d, target %d\n", __func__, b->size, b->target);
726
727 /*
728 * First try NOSLEEP page allocations to inflate balloon.
729 *
730 * If we do not throttle nosleep allocations, we can drain all
731 * free pages in the guest quickly (if the balloon target is high).
732 * As a side-effect, draining free pages helps to inform (force)
733 * the guest to start swapping if balloon target is not met yet,
734 * which is a desired behavior. However, balloon driver can consume
735 * all available CPU cycles if too many pages are allocated in a
736 * second. Therefore, we throttle nosleep allocations even when
737 * the guest is not under memory pressure. OTOH, if we have already
738 * predicted that the guest is under memory pressure, then we
739 * slowdown page allocations considerably.
740 */
741
453dc659
DT
742 /*
743 * Start with no sleep allocation rate which may be higher
744 * than sleeping allocation rate.
745 */
746 rate = b->slow_allocation_cycles ?
747 b->rate_alloc : VMW_BALLOON_NOSLEEP_ALLOC_MAX;
748
749 pr_debug("%s - goal: %d, no-sleep rate: %d, sleep rate: %d\n",
4670de4d 750 __func__, b->target - b->size, rate, b->rate_alloc);
453dc659 751
4670de4d
XD
752 while (b->size < b->target && num_pages < b->target - b->size) {
753 struct page *page;
453dc659 754
ef0f8f11
XD
755 if (flags == VMW_PAGE_ALLOC_NOSLEEP)
756 STATS_INC(b->stats.alloc);
757 else
758 STATS_INC(b->stats.sleep_alloc);
453dc659 759
4670de4d 760 page = alloc_page(flags);
ef0f8f11
XD
761 if (!page) {
762 if (flags == VMW_PAGE_ALLOC_CANSLEEP) {
453dc659
DT
763 /*
764 * CANSLEEP page allocation failed, so guest
765 * is under severe memory pressure. Quickly
766 * decrease allocation rate.
767 */
768 b->rate_alloc = max(b->rate_alloc / 2,
769 VMW_BALLOON_RATE_ALLOC_MIN);
ef0f8f11 770 STATS_INC(b->stats.sleep_alloc_fail);
453dc659
DT
771 break;
772 }
ef0f8f11 773 STATS_INC(b->stats.alloc_fail);
453dc659
DT
774
775 /*
776 * NOSLEEP page allocation failed, so the guest is
777 * under memory pressure. Let us slow down page
778 * allocations for next few cycles so that the guest
779 * gets out of memory pressure. Also, if we already
780 * allocated b->rate_alloc pages, let's pause,
781 * otherwise switch to sleeping allocations.
782 */
783 b->slow_allocation_cycles = VMW_BALLOON_SLOW_CYCLES;
784
4670de4d 785 if (allocations >= b->rate_alloc)
453dc659
DT
786 break;
787
ef0f8f11 788 flags = VMW_PAGE_ALLOC_CANSLEEP;
453dc659
DT
789 /* Lower rate for sleeping allocations. */
790 rate = b->rate_alloc;
ef0f8f11 791 continue;
453dc659
DT
792 }
793
f220a80f
XD
794 b->ops->add_page(b, num_pages++, page);
795 if (num_pages == b->batch_max_pages) {
4670de4d 796 error = b->ops->lock(b, num_pages, &b->target);
f220a80f
XD
797 num_pages = 0;
798 if (error)
799 break;
800 }
ef0f8f11 801
453dc659
DT
802 if (++allocations > VMW_BALLOON_YIELD_THRESHOLD) {
803 cond_resched();
804 allocations = 0;
805 }
806
4670de4d 807 if (allocations >= rate) {
453dc659
DT
808 /* We allocated enough pages, let's take a break. */
809 break;
810 }
811 }
812
f220a80f 813 if (num_pages > 0)
4670de4d 814 b->ops->lock(b, num_pages, &b->target);
f220a80f 815
453dc659
DT
816 /*
817 * We reached our goal without failures so try increasing
818 * allocation rate.
819 */
4670de4d
XD
820 if (error == 0 && allocations >= b->rate_alloc) {
821 unsigned int mult = allocations / b->rate_alloc;
453dc659
DT
822
823 b->rate_alloc =
824 min(b->rate_alloc + mult * VMW_BALLOON_RATE_ALLOC_INC,
825 VMW_BALLOON_RATE_ALLOC_MAX);
826 }
827
828 vmballoon_release_refused_pages(b);
829}
830
831/*
832 * Decrease the size of the balloon allowing guest to use more memory.
833 */
834static void vmballoon_deflate(struct vmballoon *b)
835{
836 struct page *page, *next;
837 unsigned int i = 0;
f220a80f 838 unsigned int num_pages = 0;
453dc659
DT
839 int error;
840
4670de4d
XD
841 pr_debug("%s - size: %d, target %d, rate: %d\n", __func__, b->size,
842 b->target, b->rate_free);
453dc659
DT
843
844 /* free pages to reach target */
845 list_for_each_entry_safe(page, next, &b->pages, lru) {
f220a80f
XD
846 list_del(&page->lru);
847 b->ops->add_page(b, num_pages++, page);
848
849 if (num_pages == b->batch_max_pages) {
4670de4d 850 error = b->ops->unlock(b, num_pages, &b->target);
f220a80f
XD
851 num_pages = 0;
852 if (error) {
853 /* quickly decrease rate in case of error */
854 b->rate_free = max(b->rate_free / 2,
855 VMW_BALLOON_RATE_FREE_MIN);
856 return;
857 }
453dc659
DT
858 }
859
4670de4d 860 if (++i >= b->size - b->target)
453dc659
DT
861 break;
862 }
863
f220a80f 864 if (num_pages > 0)
4670de4d 865 b->ops->unlock(b, num_pages, &b->target);
f220a80f 866
453dc659 867 /* slowly increase rate if there were no errors */
f220a80f
XD
868 if (error == 0)
869 b->rate_free = min(b->rate_free + VMW_BALLOON_RATE_FREE_INC,
870 VMW_BALLOON_RATE_FREE_MAX);
871}
872
873static const struct vmballoon_ops vmballoon_basic_ops = {
874 .add_page = vmballoon_add_page,
875 .lock = vmballoon_lock_page,
876 .unlock = vmballoon_unlock_page
877};
878
879static const struct vmballoon_ops vmballoon_batched_ops = {
880 .add_page = vmballoon_add_batched_page,
881 .lock = vmballoon_lock_batched_page,
882 .unlock = vmballoon_unlock_batched_page
883};
884
885static bool vmballoon_init_batching(struct vmballoon *b)
886{
887 b->page = alloc_page(VMW_PAGE_ALLOC_NOSLEEP);
888 if (!b->page)
889 return false;
890
891 b->batch_page = vmap(&b->page, 1, VM_MAP, PAGE_KERNEL);
892 if (!b->batch_page) {
893 __free_page(b->page);
894 return false;
895 }
896
897 return true;
898}
899
900/*
901 * Perform standard reset sequence by popping the balloon (in case it
902 * is not empty) and then restarting protocol. This operation normally
903 * happens when host responds with VMW_BALLOON_ERROR_RESET to a command.
904 */
905static void vmballoon_reset(struct vmballoon *b)
906{
907 /* free all pages, skipping monitor unlock */
908 vmballoon_pop(b);
909
910 if (!vmballoon_send_start(b, VMW_BALLOON_CAPABILITIES))
911 return;
912
913 if ((b->capabilities & VMW_BALLOON_BATCHED_CMDS) != 0) {
914 b->ops = &vmballoon_batched_ops;
915 b->batch_max_pages = VMW_BALLOON_BATCH_MAX_PAGES;
916 if (!vmballoon_init_batching(b)) {
917 /*
918 * We failed to initialize batching, inform the monitor
919 * about it by sending a null capability.
920 *
921 * The guest will retry in one second.
922 */
923 vmballoon_send_start(b, 0);
924 return;
925 }
926 } else if ((b->capabilities & VMW_BALLOON_BASIC_CMDS) != 0) {
927 b->ops = &vmballoon_basic_ops;
928 b->batch_max_pages = 1;
929 }
930
931 b->reset_required = false;
932 if (!vmballoon_send_guest_id(b))
933 pr_err("failed to send guest ID to the host\n");
453dc659
DT
934}
935
936/*
937 * Balloon work function: reset protocol, if needed, get the new size and
938 * adjust balloon as needed. Repeat in 1 sec.
939 */
940static void vmballoon_work(struct work_struct *work)
941{
942 struct delayed_work *dwork = to_delayed_work(work);
943 struct vmballoon *b = container_of(dwork, struct vmballoon, dwork);
944 unsigned int target;
945
946 STATS_INC(b->stats.timer);
947
948 if (b->reset_required)
949 vmballoon_reset(b);
950
951 if (b->slow_allocation_cycles > 0)
952 b->slow_allocation_cycles--;
953
954 if (vmballoon_send_get_target(b, &target)) {
955 /* update target, adjust size */
956 b->target = target;
957
958 if (b->size < target)
959 vmballoon_inflate(b);
960 else if (b->size > target)
961 vmballoon_deflate(b);
962 }
963
beda94da
DT
964 /*
965 * We are using a freezable workqueue so that balloon operations are
966 * stopped while the system transitions to/from sleep/hibernation.
967 */
968 queue_delayed_work(system_freezable_wq,
969 dwork, round_jiffies_relative(HZ));
453dc659
DT
970}
971
972/*
973 * DEBUGFS Interface
974 */
975#ifdef CONFIG_DEBUG_FS
976
977static int vmballoon_debug_show(struct seq_file *f, void *offset)
978{
979 struct vmballoon *b = f->private;
980 struct vmballoon_stats *stats = &b->stats;
981
982 /* format size info */
983 seq_printf(f,
984 "target: %8d pages\n"
985 "current: %8d pages\n",
986 b->target, b->size);
987
988 /* format rate info */
989 seq_printf(f,
990 "rateNoSleepAlloc: %8d pages/sec\n"
991 "rateSleepAlloc: %8d pages/sec\n"
992 "rateFree: %8d pages/sec\n",
993 VMW_BALLOON_NOSLEEP_ALLOC_MAX,
994 b->rate_alloc, b->rate_free);
995
996 seq_printf(f,
997 "\n"
998 "timer: %8u\n"
999 "start: %8u (%4u failed)\n"
1000 "guestType: %8u (%4u failed)\n"
1001 "lock: %8u (%4u failed)\n"
1002 "unlock: %8u (%4u failed)\n"
1003 "target: %8u (%4u failed)\n"
1004 "primNoSleepAlloc: %8u (%4u failed)\n"
1005 "primCanSleepAlloc: %8u (%4u failed)\n"
1006 "primFree: %8u\n"
1007 "errAlloc: %8u\n"
1008 "errFree: %8u\n",
1009 stats->timer,
1010 stats->start, stats->start_fail,
1011 stats->guest_type, stats->guest_type_fail,
1012 stats->lock, stats->lock_fail,
1013 stats->unlock, stats->unlock_fail,
1014 stats->target, stats->target_fail,
1015 stats->alloc, stats->alloc_fail,
1016 stats->sleep_alloc, stats->sleep_alloc_fail,
1017 stats->free,
1018 stats->refused_alloc, stats->refused_free);
1019
1020 return 0;
1021}
1022
1023static int vmballoon_debug_open(struct inode *inode, struct file *file)
1024{
1025 return single_open(file, vmballoon_debug_show, inode->i_private);
1026}
1027
1028static const struct file_operations vmballoon_debug_fops = {
1029 .owner = THIS_MODULE,
1030 .open = vmballoon_debug_open,
1031 .read = seq_read,
1032 .llseek = seq_lseek,
1033 .release = single_release,
1034};
1035
1036static int __init vmballoon_debugfs_init(struct vmballoon *b)
1037{
1038 int error;
1039
1040 b->dbg_entry = debugfs_create_file("vmmemctl", S_IRUGO, NULL, b,
1041 &vmballoon_debug_fops);
1042 if (IS_ERR(b->dbg_entry)) {
1043 error = PTR_ERR(b->dbg_entry);
1044 pr_err("failed to create debugfs entry, error: %d\n", error);
1045 return error;
1046 }
1047
1048 return 0;
1049}
1050
1051static void __exit vmballoon_debugfs_exit(struct vmballoon *b)
1052{
1053 debugfs_remove(b->dbg_entry);
1054}
1055
1056#else
1057
1058static inline int vmballoon_debugfs_init(struct vmballoon *b)
1059{
1060 return 0;
1061}
1062
1063static inline void vmballoon_debugfs_exit(struct vmballoon *b)
1064{
1065}
1066
1067#endif /* CONFIG_DEBUG_FS */
1068
1069static int __init vmballoon_init(void)
1070{
1071 int error;
1072
1073 /*
1074 * Check if we are running on VMware's hypervisor and bail out
1075 * if we are not.
1076 */
a10a5698 1077 if (x86_hyper != &x86_hyper_vmware)
453dc659
DT
1078 return -ENODEV;
1079
453dc659
DT
1080 INIT_LIST_HEAD(&balloon.pages);
1081 INIT_LIST_HEAD(&balloon.refused_pages);
1082
1083 /* initialize rates */
1084 balloon.rate_alloc = VMW_BALLOON_RATE_ALLOC_MAX;
1085 balloon.rate_free = VMW_BALLOON_RATE_FREE_MAX;
1086
1087 INIT_DELAYED_WORK(&balloon.dwork, vmballoon_work);
1088
1089 /*
1090 * Start balloon.
1091 */
f220a80f 1092 if (!vmballoon_send_start(&balloon, VMW_BALLOON_CAPABILITIES)) {
453dc659 1093 pr_err("failed to send start command to the host\n");
beda94da 1094 return -EIO;
453dc659
DT
1095 }
1096
f220a80f
XD
1097 if ((balloon.capabilities & VMW_BALLOON_BATCHED_CMDS) != 0) {
1098 balloon.ops = &vmballoon_batched_ops;
1099 balloon.batch_max_pages = VMW_BALLOON_BATCH_MAX_PAGES;
1100 if (!vmballoon_init_batching(&balloon)) {
1101 pr_err("failed to init batching\n");
1102 return -EIO;
1103 }
1104 } else if ((balloon.capabilities & VMW_BALLOON_BASIC_CMDS) != 0) {
1105 balloon.ops = &vmballoon_basic_ops;
1106 balloon.batch_max_pages = 1;
1107 }
1108
453dc659
DT
1109 if (!vmballoon_send_guest_id(&balloon)) {
1110 pr_err("failed to send guest ID to the host\n");
beda94da 1111 return -EIO;
453dc659
DT
1112 }
1113
1114 error = vmballoon_debugfs_init(&balloon);
1115 if (error)
beda94da 1116 return error;
453dc659 1117
beda94da 1118 queue_delayed_work(system_freezable_wq, &balloon.dwork, 0);
453dc659
DT
1119
1120 return 0;
453dc659
DT
1121}
1122module_init(vmballoon_init);
1123
1124static void __exit vmballoon_exit(void)
1125{
1126 cancel_delayed_work_sync(&balloon.dwork);
453dc659
DT
1127
1128 vmballoon_debugfs_exit(&balloon);
1129
1130 /*
1131 * Deallocate all reserved memory, and reset connection with monitor.
1132 * Reset connection before deallocating memory to avoid potential for
1133 * additional spurious resets from guest touching deallocated pages.
1134 */
f220a80f 1135 vmballoon_send_start(&balloon, VMW_BALLOON_CAPABILITIES);
453dc659
DT
1136 vmballoon_pop(&balloon);
1137}
1138module_exit(vmballoon_exit);