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8b4770ec | 1 | // SPDX-License-Identifier: GPL-2.0 |
453dc659 DT |
2 | /* |
3 | * VMware Balloon driver. | |
4 | * | |
8b4770ec | 5 | * Copyright (C) 2000-2018, VMware, Inc. All Rights Reserved. |
453dc659 | 6 | * |
453dc659 DT |
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. | |
14 | */ | |
15 | ||
16 | //#define DEBUG | |
17 | #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt | |
18 | ||
19 | #include <linux/types.h> | |
20 | #include <linux/kernel.h> | |
21 | #include <linux/mm.h> | |
f220a80f | 22 | #include <linux/vmalloc.h> |
453dc659 DT |
23 | #include <linux/sched.h> |
24 | #include <linux/module.h> | |
25 | #include <linux/workqueue.h> | |
26 | #include <linux/debugfs.h> | |
27 | #include <linux/seq_file.h> | |
48e3d668 PM |
28 | #include <linux/vmw_vmci_defs.h> |
29 | #include <linux/vmw_vmci_api.h> | |
a10a5698 | 30 | #include <asm/hypervisor.h> |
453dc659 DT |
31 | |
32 | MODULE_AUTHOR("VMware, Inc."); | |
33 | MODULE_DESCRIPTION("VMware Memory Control (Balloon) Driver"); | |
48e3d668 | 34 | MODULE_VERSION("1.5.0.0-k"); |
453dc659 DT |
35 | MODULE_ALIAS("dmi:*:svnVMware*:*"); |
36 | MODULE_ALIAS("vmware_vmmemctl"); | |
37 | MODULE_LICENSE("GPL"); | |
38 | ||
453dc659 | 39 | /* |
622074a9 NA |
40 | * Use __GFP_HIGHMEM to allow pages from HIGHMEM zone. We don't allow wait |
41 | * (__GFP_RECLAIM) for huge page allocations. Use __GFP_NOWARN, to suppress page | |
42 | * allocation failure warnings. Disallow access to emergency low-memory pools. | |
453dc659 | 43 | */ |
622074a9 NA |
44 | #define VMW_HUGE_PAGE_ALLOC_FLAGS (__GFP_HIGHMEM|__GFP_NOWARN| \ |
45 | __GFP_NOMEMALLOC) | |
453dc659 DT |
46 | |
47 | /* | |
622074a9 NA |
48 | * Use __GFP_HIGHMEM to allow pages from HIGHMEM zone. We allow lightweight |
49 | * reclamation (__GFP_NORETRY). Use __GFP_NOWARN, to suppress page allocation | |
50 | * failure warnings. Disallow access to emergency low-memory pools. | |
453dc659 | 51 | */ |
622074a9 NA |
52 | #define VMW_PAGE_ALLOC_FLAGS (__GFP_HIGHMEM|__GFP_NOWARN| \ |
53 | __GFP_NOMEMALLOC|__GFP_NORETRY) | |
453dc659 | 54 | |
55adaa49 DT |
55 | /* Maximum number of refused pages we accumulate during inflation cycle */ |
56 | #define VMW_BALLOON_MAX_REFUSED 16 | |
453dc659 DT |
57 | |
58 | /* | |
59 | * Hypervisor communication port definitions. | |
60 | */ | |
61 | #define VMW_BALLOON_HV_PORT 0x5670 | |
62 | #define VMW_BALLOON_HV_MAGIC 0x456c6d6f | |
453dc659 DT |
63 | #define VMW_BALLOON_GUEST_ID 1 /* Linux */ |
64 | ||
eb79100f XD |
65 | enum vmwballoon_capabilities { |
66 | /* | |
67 | * Bit 0 is reserved and not associated to any capability. | |
68 | */ | |
48e3d668 PM |
69 | VMW_BALLOON_BASIC_CMDS = (1 << 1), |
70 | VMW_BALLOON_BATCHED_CMDS = (1 << 2), | |
71 | VMW_BALLOON_BATCHED_2M_CMDS = (1 << 3), | |
72 | VMW_BALLOON_SIGNALLED_WAKEUP_CMD = (1 << 4), | |
eb79100f XD |
73 | }; |
74 | ||
f220a80f | 75 | #define VMW_BALLOON_CAPABILITIES (VMW_BALLOON_BASIC_CMDS \ |
365bd7ef | 76 | | VMW_BALLOON_BATCHED_CMDS \ |
48e3d668 PM |
77 | | VMW_BALLOON_BATCHED_2M_CMDS \ |
78 | | VMW_BALLOON_SIGNALLED_WAKEUP_CMD) | |
365bd7ef PM |
79 | |
80 | #define VMW_BALLOON_2M_SHIFT (9) | |
81 | #define VMW_BALLOON_NUM_PAGE_SIZES (2) | |
eb79100f | 82 | |
f220a80f XD |
83 | /* |
84 | * Backdoor commands availability: | |
85 | * | |
86 | * START, GET_TARGET and GUEST_ID are always available, | |
87 | * | |
88 | * VMW_BALLOON_BASIC_CMDS: | |
89 | * LOCK and UNLOCK commands, | |
90 | * VMW_BALLOON_BATCHED_CMDS: | |
91 | * BATCHED_LOCK and BATCHED_UNLOCK commands. | |
365bd7ef | 92 | * VMW BALLOON_BATCHED_2M_CMDS: |
48e3d668 PM |
93 | * BATCHED_2M_LOCK and BATCHED_2M_UNLOCK commands, |
94 | * VMW VMW_BALLOON_SIGNALLED_WAKEUP_CMD: | |
95 | * VMW_BALLOON_CMD_VMCI_DOORBELL_SET command. | |
f220a80f | 96 | */ |
365bd7ef PM |
97 | #define VMW_BALLOON_CMD_START 0 |
98 | #define VMW_BALLOON_CMD_GET_TARGET 1 | |
99 | #define VMW_BALLOON_CMD_LOCK 2 | |
100 | #define VMW_BALLOON_CMD_UNLOCK 3 | |
101 | #define VMW_BALLOON_CMD_GUEST_ID 4 | |
102 | #define VMW_BALLOON_CMD_BATCHED_LOCK 6 | |
103 | #define VMW_BALLOON_CMD_BATCHED_UNLOCK 7 | |
104 | #define VMW_BALLOON_CMD_BATCHED_2M_LOCK 8 | |
105 | #define VMW_BALLOON_CMD_BATCHED_2M_UNLOCK 9 | |
48e3d668 | 106 | #define VMW_BALLOON_CMD_VMCI_DOORBELL_SET 10 |
365bd7ef | 107 | |
68131184 | 108 | #define VMW_BALLOON_CMD_NUM 11 |
453dc659 DT |
109 | |
110 | /* error codes */ | |
eb79100f XD |
111 | #define VMW_BALLOON_SUCCESS 0 |
112 | #define VMW_BALLOON_FAILURE -1 | |
113 | #define VMW_BALLOON_ERROR_CMD_INVALID 1 | |
114 | #define VMW_BALLOON_ERROR_PPN_INVALID 2 | |
115 | #define VMW_BALLOON_ERROR_PPN_LOCKED 3 | |
116 | #define VMW_BALLOON_ERROR_PPN_UNLOCKED 4 | |
117 | #define VMW_BALLOON_ERROR_PPN_PINNED 5 | |
118 | #define VMW_BALLOON_ERROR_PPN_NOTNEEDED 6 | |
119 | #define VMW_BALLOON_ERROR_RESET 7 | |
120 | #define VMW_BALLOON_ERROR_BUSY 8 | |
121 | ||
122 | #define VMW_BALLOON_SUCCESS_WITH_CAPABILITIES (0x03000000) | |
123 | ||
10a95d5d NA |
124 | #define VMW_BALLOON_CMD_WITH_TARGET_MASK \ |
125 | ((1UL << VMW_BALLOON_CMD_GET_TARGET) | \ | |
126 | (1UL << VMW_BALLOON_CMD_LOCK) | \ | |
127 | (1UL << VMW_BALLOON_CMD_UNLOCK) | \ | |
128 | (1UL << VMW_BALLOON_CMD_BATCHED_LOCK) | \ | |
129 | (1UL << VMW_BALLOON_CMD_BATCHED_UNLOCK) | \ | |
130 | (1UL << VMW_BALLOON_CMD_BATCHED_2M_LOCK) | \ | |
131 | (1UL << VMW_BALLOON_CMD_BATCHED_2M_UNLOCK)) | |
132 | ||
68131184 NA |
133 | static const char * const vmballoon_cmd_names[] = { |
134 | [VMW_BALLOON_CMD_START] = "start", | |
135 | [VMW_BALLOON_CMD_GET_TARGET] = "target", | |
136 | [VMW_BALLOON_CMD_LOCK] = "lock", | |
137 | [VMW_BALLOON_CMD_UNLOCK] = "unlock", | |
138 | [VMW_BALLOON_CMD_GUEST_ID] = "guestType", | |
139 | [VMW_BALLOON_CMD_BATCHED_LOCK] = "batchLock", | |
140 | [VMW_BALLOON_CMD_BATCHED_UNLOCK] = "batchUnlock", | |
141 | [VMW_BALLOON_CMD_BATCHED_2M_LOCK] = "2m-lock", | |
142 | [VMW_BALLOON_CMD_BATCHED_2M_UNLOCK] = "2m-unlock", | |
143 | [VMW_BALLOON_CMD_VMCI_DOORBELL_SET] = "doorbellSet" | |
144 | }; | |
145 | ||
453dc659 DT |
146 | #ifdef CONFIG_DEBUG_FS |
147 | struct vmballoon_stats { | |
148 | unsigned int timer; | |
48e3d668 | 149 | unsigned int doorbell; |
453dc659 | 150 | |
2ca02df6 | 151 | /* allocation statistics */ |
365bd7ef PM |
152 | unsigned int alloc[VMW_BALLOON_NUM_PAGE_SIZES]; |
153 | unsigned int alloc_fail[VMW_BALLOON_NUM_PAGE_SIZES]; | |
365bd7ef PM |
154 | unsigned int refused_alloc[VMW_BALLOON_NUM_PAGE_SIZES]; |
155 | unsigned int refused_free[VMW_BALLOON_NUM_PAGE_SIZES]; | |
156 | unsigned int free[VMW_BALLOON_NUM_PAGE_SIZES]; | |
453dc659 | 157 | |
68131184 NA |
158 | /* Monitor operations. */ |
159 | unsigned long ops[VMW_BALLOON_CMD_NUM]; | |
160 | unsigned long ops_fail[VMW_BALLOON_CMD_NUM]; | |
453dc659 DT |
161 | }; |
162 | ||
163 | #define STATS_INC(stat) (stat)++ | |
164 | #else | |
165 | #define STATS_INC(stat) | |
166 | #endif | |
167 | ||
df8d0d42 | 168 | static DEFINE_STATIC_KEY_TRUE(vmw_balloon_batching); |
f220a80f | 169 | |
365bd7ef | 170 | struct vmballoon_page_size { |
453dc659 DT |
171 | /* list of reserved physical pages */ |
172 | struct list_head pages; | |
173 | ||
174 | /* transient list of non-balloonable pages */ | |
175 | struct list_head refused_pages; | |
55adaa49 | 176 | unsigned int n_refused_pages; |
365bd7ef PM |
177 | }; |
178 | ||
6c948757 NA |
179 | /** |
180 | * struct vmballoon_batch_entry - a batch entry for lock or unlock. | |
181 | * | |
182 | * @status: the status of the operation, which is written by the hypervisor. | |
183 | * @reserved: reserved for future use. Must be set to zero. | |
184 | * @pfn: the physical frame number of the page to be locked or unlocked. | |
185 | */ | |
186 | struct vmballoon_batch_entry { | |
187 | u64 status : 5; | |
188 | u64 reserved : PAGE_SHIFT - 5; | |
189 | u64 pfn : 52; | |
190 | } __packed; | |
191 | ||
365bd7ef PM |
192 | struct vmballoon { |
193 | struct vmballoon_page_size page_sizes[VMW_BALLOON_NUM_PAGE_SIZES]; | |
194 | ||
195 | /* supported page sizes. 1 == 4k pages only, 2 == 4k and 2m pages */ | |
196 | unsigned supported_page_sizes; | |
453dc659 DT |
197 | |
198 | /* balloon size in pages */ | |
199 | unsigned int size; | |
200 | unsigned int target; | |
201 | ||
202 | /* reset flag */ | |
203 | bool reset_required; | |
204 | ||
f220a80f XD |
205 | unsigned long capabilities; |
206 | ||
6c948757 NA |
207 | /** |
208 | * @batch_page: pointer to communication batch page. | |
209 | * | |
210 | * When batching is used, batch_page points to a page, which holds up to | |
211 | * %VMW_BALLOON_BATCH_MAX_PAGES entries for locking or unlocking. | |
212 | */ | |
213 | struct vmballoon_batch_entry *batch_page; | |
214 | ||
f220a80f XD |
215 | unsigned int batch_max_pages; |
216 | struct page *page; | |
217 | ||
453dc659 DT |
218 | #ifdef CONFIG_DEBUG_FS |
219 | /* statistics */ | |
220 | struct vmballoon_stats stats; | |
221 | ||
222 | /* debugfs file exporting statistics */ | |
223 | struct dentry *dbg_entry; | |
224 | #endif | |
225 | ||
226 | struct sysinfo sysinfo; | |
227 | ||
228 | struct delayed_work dwork; | |
48e3d668 PM |
229 | |
230 | struct vmci_handle vmci_doorbell; | |
453dc659 DT |
231 | }; |
232 | ||
233 | static struct vmballoon balloon; | |
453dc659 | 234 | |
10a95d5d NA |
235 | static inline unsigned long |
236 | __vmballoon_cmd(struct vmballoon *b, unsigned long cmd, unsigned long arg1, | |
237 | unsigned long arg2, unsigned long *result) | |
238 | { | |
239 | unsigned long status, dummy1, dummy2, dummy3, local_result; | |
240 | ||
68131184 NA |
241 | STATS_INC(b->stats.ops[cmd]); |
242 | ||
10a95d5d NA |
243 | asm volatile ("inl %%dx" : |
244 | "=a"(status), | |
245 | "=c"(dummy1), | |
246 | "=d"(dummy2), | |
247 | "=b"(local_result), | |
248 | "=S"(dummy3) : | |
249 | "0"(VMW_BALLOON_HV_MAGIC), | |
250 | "1"(cmd), | |
251 | "2"(VMW_BALLOON_HV_PORT), | |
252 | "3"(arg1), | |
253 | "4"(arg2) : | |
254 | "memory"); | |
255 | ||
256 | /* update the result if needed */ | |
257 | if (result) | |
258 | *result = (cmd == VMW_BALLOON_CMD_START) ? dummy1 : | |
259 | local_result; | |
260 | ||
261 | /* update target when applicable */ | |
262 | if (status == VMW_BALLOON_SUCCESS && | |
263 | ((1ul << cmd) & VMW_BALLOON_CMD_WITH_TARGET_MASK)) | |
264 | b->target = local_result; | |
265 | ||
68131184 NA |
266 | if (status != VMW_BALLOON_SUCCESS && |
267 | status != VMW_BALLOON_SUCCESS_WITH_CAPABILITIES) { | |
268 | STATS_INC(b->stats.ops_fail[cmd]); | |
269 | pr_debug("%s: %s [0x%lx,0x%lx) failed, returned %ld\n", | |
270 | __func__, vmballoon_cmd_names[cmd], arg1, arg2, | |
271 | status); | |
272 | } | |
273 | ||
10a95d5d NA |
274 | /* mark reset required accordingly */ |
275 | if (status == VMW_BALLOON_ERROR_RESET) | |
276 | b->reset_required = true; | |
277 | ||
278 | return status; | |
279 | } | |
280 | ||
281 | static __always_inline unsigned long | |
282 | vmballoon_cmd(struct vmballoon *b, unsigned long cmd, unsigned long arg1, | |
283 | unsigned long arg2) | |
284 | { | |
285 | unsigned long dummy; | |
286 | ||
287 | return __vmballoon_cmd(b, cmd, arg1, arg2, &dummy); | |
288 | } | |
289 | ||
453dc659 DT |
290 | /* |
291 | * Send "start" command to the host, communicating supported version | |
292 | * of the protocol. | |
293 | */ | |
f220a80f | 294 | static bool vmballoon_send_start(struct vmballoon *b, unsigned long req_caps) |
453dc659 | 295 | { |
10a95d5d | 296 | unsigned long status, capabilities; |
365bd7ef | 297 | bool success; |
453dc659 | 298 | |
10a95d5d NA |
299 | status = __vmballoon_cmd(b, VMW_BALLOON_CMD_START, req_caps, 0, |
300 | &capabilities); | |
f220a80f XD |
301 | |
302 | switch (status) { | |
303 | case VMW_BALLOON_SUCCESS_WITH_CAPABILITIES: | |
304 | b->capabilities = capabilities; | |
365bd7ef PM |
305 | success = true; |
306 | break; | |
f220a80f XD |
307 | case VMW_BALLOON_SUCCESS: |
308 | b->capabilities = VMW_BALLOON_BASIC_CMDS; | |
365bd7ef PM |
309 | success = true; |
310 | break; | |
311 | default: | |
312 | success = false; | |
f220a80f | 313 | } |
453dc659 | 314 | |
5081efd1 NA |
315 | /* |
316 | * 2MB pages are only supported with batching. If batching is for some | |
317 | * reason disabled, do not use 2MB pages, since otherwise the legacy | |
318 | * mechanism is used with 2MB pages, causing a failure. | |
319 | */ | |
320 | if ((b->capabilities & VMW_BALLOON_BATCHED_2M_CMDS) && | |
321 | (b->capabilities & VMW_BALLOON_BATCHED_CMDS)) | |
365bd7ef PM |
322 | b->supported_page_sizes = 2; |
323 | else | |
324 | b->supported_page_sizes = 1; | |
325 | ||
365bd7ef | 326 | return success; |
453dc659 DT |
327 | } |
328 | ||
453dc659 DT |
329 | /* |
330 | * Communicate guest type to the host so that it can adjust ballooning | |
331 | * algorithm to the one most appropriate for the guest. This command | |
332 | * is normally issued after sending "start" command and is part of | |
333 | * standard reset sequence. | |
334 | */ | |
335 | static bool vmballoon_send_guest_id(struct vmballoon *b) | |
336 | { | |
10a95d5d | 337 | unsigned long status; |
453dc659 | 338 | |
10a95d5d NA |
339 | status = vmballoon_cmd(b, VMW_BALLOON_CMD_GUEST_ID, |
340 | VMW_BALLOON_GUEST_ID, 0); | |
453dc659 | 341 | |
10a95d5d | 342 | if (status == VMW_BALLOON_SUCCESS) |
453dc659 DT |
343 | return true; |
344 | ||
453dc659 DT |
345 | return false; |
346 | } | |
347 | ||
365bd7ef PM |
348 | static u16 vmballoon_page_size(bool is_2m_page) |
349 | { | |
350 | if (is_2m_page) | |
351 | return 1 << VMW_BALLOON_2M_SHIFT; | |
352 | ||
353 | return 1; | |
354 | } | |
355 | ||
453dc659 DT |
356 | /* |
357 | * Retrieve desired balloon size from the host. | |
358 | */ | |
10a95d5d | 359 | static bool vmballoon_send_get_target(struct vmballoon *b) |
453dc659 DT |
360 | { |
361 | unsigned long status; | |
453dc659 DT |
362 | unsigned long limit; |
363 | u32 limit32; | |
364 | ||
365 | /* | |
366 | * si_meminfo() is cheap. Moreover, we want to provide dynamic | |
367 | * max balloon size later. So let us call si_meminfo() every | |
368 | * iteration. | |
369 | */ | |
370 | si_meminfo(&b->sysinfo); | |
371 | limit = b->sysinfo.totalram; | |
372 | ||
373 | /* Ensure limit fits in 32-bits */ | |
374 | limit32 = (u32)limit; | |
375 | if (limit != limit32) | |
376 | return false; | |
377 | ||
10a95d5d NA |
378 | status = vmballoon_cmd(b, VMW_BALLOON_CMD_GET_TARGET, limit, 0); |
379 | ||
380 | if (status == VMW_BALLOON_SUCCESS) | |
453dc659 | 381 | return true; |
453dc659 | 382 | |
453dc659 DT |
383 | return false; |
384 | } | |
385 | ||
622074a9 | 386 | static struct page *vmballoon_alloc_page(bool is_2m_page) |
365bd7ef PM |
387 | { |
388 | if (is_2m_page) | |
622074a9 NA |
389 | return alloc_pages(VMW_HUGE_PAGE_ALLOC_FLAGS, |
390 | VMW_BALLOON_2M_SHIFT); | |
365bd7ef | 391 | |
622074a9 | 392 | return alloc_page(VMW_PAGE_ALLOC_FLAGS); |
365bd7ef PM |
393 | } |
394 | ||
395 | static void vmballoon_free_page(struct page *page, bool is_2m_page) | |
396 | { | |
397 | if (is_2m_page) | |
398 | __free_pages(page, VMW_BALLOON_2M_SHIFT); | |
399 | else | |
400 | __free_page(page); | |
401 | } | |
402 | ||
453dc659 DT |
403 | /* |
404 | * Quickly release all pages allocated for the balloon. This function is | |
405 | * called when host decides to "reset" balloon for one reason or another. | |
406 | * Unlike normal "deflate" we do not (shall not) notify host of the pages | |
407 | * being released. | |
408 | */ | |
409 | static void vmballoon_pop(struct vmballoon *b) | |
410 | { | |
411 | struct page *page, *next; | |
365bd7ef PM |
412 | unsigned is_2m_pages; |
413 | ||
414 | for (is_2m_pages = 0; is_2m_pages < VMW_BALLOON_NUM_PAGE_SIZES; | |
415 | is_2m_pages++) { | |
416 | struct vmballoon_page_size *page_size = | |
417 | &b->page_sizes[is_2m_pages]; | |
418 | u16 size_per_page = vmballoon_page_size(is_2m_pages); | |
419 | ||
420 | list_for_each_entry_safe(page, next, &page_size->pages, lru) { | |
421 | list_del(&page->lru); | |
422 | vmballoon_free_page(page, is_2m_pages); | |
423 | STATS_INC(b->stats.free[is_2m_pages]); | |
424 | b->size -= size_per_page; | |
425 | cond_resched(); | |
426 | } | |
453dc659 | 427 | } |
453dc659 | 428 | |
b23220fe GK |
429 | /* Clearing the batch_page unconditionally has no adverse effect */ |
430 | free_page((unsigned long)b->batch_page); | |
431 | b->batch_page = NULL; | |
453dc659 DT |
432 | } |
433 | ||
df8d0d42 NA |
434 | /** |
435 | * vmballoon_status_page - returns the status of (un)lock operation | |
436 | * | |
437 | * @b: pointer to the balloon. | |
438 | * @idx: index for the page for which the operation is performed. | |
439 | * @p: pointer to where the page struct is returned. | |
440 | * | |
441 | * Following a lock or unlock operation, returns the status of the operation for | |
442 | * an individual page. Provides the page that the operation was performed on on | |
443 | * the @page argument. | |
444 | * | |
445 | * Returns: The status of a lock or unlock operation for an individual page. | |
453dc659 | 446 | */ |
df8d0d42 NA |
447 | static unsigned long vmballoon_status_page(struct vmballoon *b, int idx, |
448 | struct page **p) | |
453dc659 | 449 | { |
df8d0d42 NA |
450 | if (static_branch_likely(&vmw_balloon_batching)) { |
451 | /* batching mode */ | |
452 | *p = pfn_to_page(b->batch_page[idx].pfn); | |
453 | return b->batch_page[idx].status; | |
454 | } | |
10a95d5d | 455 | |
df8d0d42 NA |
456 | /* non-batching mode */ |
457 | *p = b->page; | |
453dc659 | 458 | |
df8d0d42 NA |
459 | /* |
460 | * If a failure occurs, the indication will be provided in the status | |
461 | * of the entire operation, which is considered before the individual | |
462 | * page status. So for non-batching mode, the indication is always of | |
463 | * success. | |
464 | */ | |
465 | return VMW_BALLOON_SUCCESS; | |
466 | } | |
453dc659 | 467 | |
df8d0d42 NA |
468 | /** |
469 | * vmballoon_lock_op - notifies the host about inflated/deflated pages. | |
470 | * @b: pointer to the balloon. | |
471 | * @num_pages: number of inflated/deflated pages. | |
472 | * @is_2m_pages: whether the page(s) are 2M (or 4k). | |
473 | * @lock: whether the operation is lock (or unlock). | |
474 | * | |
475 | * Notify the host about page(s) that were ballooned (or removed from the | |
476 | * balloon) so that host can use it without fear that guest will need it (or | |
477 | * stop using them since the VM does). Host may reject some pages, we need to | |
478 | * check the return value and maybe submit a different page. The pages that are | |
479 | * inflated/deflated are pointed by @b->page. | |
480 | * | |
481 | * Return: result as provided by the hypervisor. | |
482 | */ | |
483 | static unsigned long vmballoon_lock_op(struct vmballoon *b, | |
484 | unsigned int num_pages, | |
485 | bool is_2m_pages, bool lock) | |
486 | { | |
487 | unsigned long cmd, pfn; | |
488 | ||
489 | if (static_branch_likely(&vmw_balloon_batching)) { | |
490 | if (lock) | |
491 | cmd = is_2m_pages ? VMW_BALLOON_CMD_BATCHED_2M_LOCK : | |
492 | VMW_BALLOON_CMD_BATCHED_LOCK; | |
493 | else | |
494 | cmd = is_2m_pages ? VMW_BALLOON_CMD_BATCHED_2M_UNLOCK : | |
495 | VMW_BALLOON_CMD_BATCHED_UNLOCK; | |
496 | ||
497 | pfn = PHYS_PFN(virt_to_phys(b->batch_page)); | |
498 | } else { | |
499 | cmd = lock ? VMW_BALLOON_CMD_LOCK : VMW_BALLOON_CMD_UNLOCK; | |
500 | pfn = page_to_pfn(b->page); | |
501 | ||
502 | /* In non-batching mode, PFNs must fit in 32-bit */ | |
503 | if (unlikely(pfn != (u32)pfn)) | |
504 | return VMW_BALLOON_ERROR_PPN_INVALID; | |
ef0f8f11 | 505 | } |
453dc659 | 506 | |
df8d0d42 | 507 | return vmballoon_cmd(b, cmd, pfn, num_pages); |
453dc659 DT |
508 | } |
509 | ||
df8d0d42 NA |
510 | static int vmballoon_lock(struct vmballoon *b, unsigned int num_pages, |
511 | bool is_2m_pages) | |
f220a80f | 512 | { |
df8d0d42 NA |
513 | unsigned long batch_status; |
514 | int i; | |
365bd7ef | 515 | u16 size_per_page = vmballoon_page_size(is_2m_pages); |
f220a80f | 516 | |
df8d0d42 | 517 | batch_status = vmballoon_lock_op(b, num_pages, is_2m_pages, true); |
f220a80f XD |
518 | |
519 | for (i = 0; i < num_pages; i++) { | |
df8d0d42 NA |
520 | unsigned long status; |
521 | struct page *p; | |
365bd7ef PM |
522 | struct vmballoon_page_size *page_size = |
523 | &b->page_sizes[is_2m_pages]; | |
f220a80f | 524 | |
df8d0d42 NA |
525 | status = vmballoon_status_page(b, i, &p); |
526 | ||
527 | /* | |
528 | * Failure of the whole batch overrides a single operation | |
529 | * results. | |
530 | */ | |
531 | if (batch_status != VMW_BALLOON_SUCCESS) | |
532 | status = batch_status; | |
f220a80f | 533 | |
df8d0d42 NA |
534 | if (status == VMW_BALLOON_SUCCESS) { |
535 | /* track allocated page */ | |
365bd7ef | 536 | list_add(&p->lru, &page_size->pages); |
df8d0d42 NA |
537 | |
538 | /* update balloon size */ | |
365bd7ef | 539 | b->size += size_per_page; |
df8d0d42 NA |
540 | continue; |
541 | } | |
542 | ||
543 | /* Error occurred */ | |
544 | STATS_INC(b->stats.refused_alloc[is_2m_pages]); | |
545 | ||
8fa3c61a NA |
546 | /* |
547 | * Place page on the list of non-balloonable pages | |
548 | * and retry allocation, unless we already accumulated | |
549 | * too many of them, in which case take a breather. | |
550 | */ | |
551 | list_add(&p->lru, &page_size->refused_pages); | |
552 | page_size->n_refused_pages++; | |
f220a80f XD |
553 | } |
554 | ||
df8d0d42 | 555 | return batch_status == VMW_BALLOON_SUCCESS ? 0 : -EIO; |
f220a80f XD |
556 | } |
557 | ||
453dc659 DT |
558 | /* |
559 | * Release the page allocated for the balloon. Note that we first notify | |
560 | * the host so it can make sure the page will be available for the guest | |
561 | * to use, if needed. | |
562 | */ | |
df8d0d42 NA |
563 | static int vmballoon_unlock(struct vmballoon *b, unsigned int num_pages, |
564 | bool is_2m_pages) | |
453dc659 | 565 | { |
df8d0d42 NA |
566 | int i; |
567 | unsigned long batch_status; | |
365bd7ef | 568 | u16 size_per_page = vmballoon_page_size(is_2m_pages); |
f220a80f | 569 | |
df8d0d42 | 570 | batch_status = vmballoon_lock_op(b, num_pages, is_2m_pages, false); |
f220a80f XD |
571 | |
572 | for (i = 0; i < num_pages; i++) { | |
df8d0d42 NA |
573 | struct vmballoon_page_size *page_size; |
574 | unsigned long status; | |
575 | struct page *p; | |
576 | ||
577 | status = vmballoon_status_page(b, i, &p); | |
578 | page_size = &b->page_sizes[is_2m_pages]; | |
f220a80f | 579 | |
df8d0d42 NA |
580 | /* |
581 | * Failure of the whole batch overrides a single operation | |
582 | * results. | |
583 | */ | |
584 | if (batch_status != VMW_BALLOON_SUCCESS) | |
585 | status = batch_status; | |
586 | ||
587 | if (status != VMW_BALLOON_SUCCESS) { | |
f220a80f XD |
588 | /* |
589 | * That page wasn't successfully unlocked by the | |
590 | * hypervisor, re-add it to the list of pages owned by | |
591 | * the balloon driver. | |
592 | */ | |
365bd7ef | 593 | list_add(&p->lru, &page_size->pages); |
f220a80f XD |
594 | } else { |
595 | /* deallocate page */ | |
365bd7ef PM |
596 | vmballoon_free_page(p, is_2m_pages); |
597 | STATS_INC(b->stats.free[is_2m_pages]); | |
f220a80f XD |
598 | |
599 | /* update balloon size */ | |
365bd7ef | 600 | b->size -= size_per_page; |
f220a80f XD |
601 | } |
602 | } | |
603 | ||
df8d0d42 | 604 | return batch_status == VMW_BALLOON_SUCCESS ? 0 : -EIO; |
f220a80f XD |
605 | } |
606 | ||
453dc659 DT |
607 | /* |
608 | * Release pages that were allocated while attempting to inflate the | |
609 | * balloon but were refused by the host for one reason or another. | |
610 | */ | |
365bd7ef PM |
611 | static void vmballoon_release_refused_pages(struct vmballoon *b, |
612 | bool is_2m_pages) | |
453dc659 DT |
613 | { |
614 | struct page *page, *next; | |
365bd7ef PM |
615 | struct vmballoon_page_size *page_size = |
616 | &b->page_sizes[is_2m_pages]; | |
453dc659 | 617 | |
365bd7ef | 618 | list_for_each_entry_safe(page, next, &page_size->refused_pages, lru) { |
453dc659 | 619 | list_del(&page->lru); |
365bd7ef PM |
620 | vmballoon_free_page(page, is_2m_pages); |
621 | STATS_INC(b->stats.refused_free[is_2m_pages]); | |
453dc659 | 622 | } |
55adaa49 | 623 | |
365bd7ef | 624 | page_size->n_refused_pages = 0; |
453dc659 DT |
625 | } |
626 | ||
f220a80f XD |
627 | static void vmballoon_add_page(struct vmballoon *b, int idx, struct page *p) |
628 | { | |
df8d0d42 NA |
629 | if (static_branch_likely(&vmw_balloon_batching)) |
630 | b->batch_page[idx] = (struct vmballoon_batch_entry) | |
6c948757 | 631 | { .pfn = page_to_pfn(p) }; |
df8d0d42 NA |
632 | else |
633 | b->page = p; | |
f220a80f XD |
634 | } |
635 | ||
453dc659 DT |
636 | /* |
637 | * Inflate the balloon towards its target size. Note that we try to limit | |
638 | * the rate of allocation to make sure we are not choking the rest of the | |
639 | * system. | |
640 | */ | |
641 | static void vmballoon_inflate(struct vmballoon *b) | |
642 | { | |
f220a80f | 643 | unsigned int num_pages = 0; |
453dc659 | 644 | int error = 0; |
365bd7ef | 645 | bool is_2m_pages; |
453dc659 DT |
646 | |
647 | pr_debug("%s - size: %d, target %d\n", __func__, b->size, b->target); | |
648 | ||
649 | /* | |
650 | * First try NOSLEEP page allocations to inflate balloon. | |
651 | * | |
652 | * If we do not throttle nosleep allocations, we can drain all | |
653 | * free pages in the guest quickly (if the balloon target is high). | |
654 | * As a side-effect, draining free pages helps to inform (force) | |
655 | * the guest to start swapping if balloon target is not met yet, | |
656 | * which is a desired behavior. However, balloon driver can consume | |
657 | * all available CPU cycles if too many pages are allocated in a | |
658 | * second. Therefore, we throttle nosleep allocations even when | |
659 | * the guest is not under memory pressure. OTOH, if we have already | |
660 | * predicted that the guest is under memory pressure, then we | |
661 | * slowdown page allocations considerably. | |
662 | */ | |
663 | ||
453dc659 DT |
664 | /* |
665 | * Start with no sleep allocation rate which may be higher | |
666 | * than sleeping allocation rate. | |
667 | */ | |
ec992cc7 | 668 | is_2m_pages = b->supported_page_sizes == VMW_BALLOON_NUM_PAGE_SIZES; |
453dc659 | 669 | |
ec992cc7 | 670 | pr_debug("%s - goal: %d", __func__, b->target - b->size); |
453dc659 | 671 | |
33d268ed | 672 | while (!b->reset_required && |
365bd7ef PM |
673 | b->size + num_pages * vmballoon_page_size(is_2m_pages) |
674 | < b->target) { | |
4670de4d | 675 | struct page *page; |
453dc659 | 676 | |
622074a9 NA |
677 | STATS_INC(b->stats.alloc[is_2m_pages]); |
678 | page = vmballoon_alloc_page(is_2m_pages); | |
ef0f8f11 | 679 | if (!page) { |
365bd7ef | 680 | STATS_INC(b->stats.alloc_fail[is_2m_pages]); |
365bd7ef | 681 | if (is_2m_pages) { |
df8d0d42 | 682 | vmballoon_lock(b, num_pages, true); |
365bd7ef PM |
683 | |
684 | /* | |
685 | * ignore errors from locking as we now switch | |
686 | * to 4k pages and we might get different | |
687 | * errors. | |
688 | */ | |
689 | ||
690 | num_pages = 0; | |
691 | is_2m_pages = false; | |
692 | continue; | |
693 | } | |
622074a9 | 694 | break; |
453dc659 DT |
695 | } |
696 | ||
df8d0d42 | 697 | vmballoon_add_page(b, num_pages++, page); |
f220a80f | 698 | if (num_pages == b->batch_max_pages) { |
8fa3c61a NA |
699 | struct vmballoon_page_size *page_size = |
700 | &b->page_sizes[is_2m_pages]; | |
701 | ||
df8d0d42 | 702 | error = vmballoon_lock(b, num_pages, is_2m_pages); |
10a95d5d | 703 | |
f220a80f | 704 | num_pages = 0; |
8fa3c61a NA |
705 | |
706 | /* | |
707 | * Stop allocating this page size if we already | |
708 | * accumulated too many pages that the hypervisor | |
709 | * refused. | |
710 | */ | |
711 | if (page_size->n_refused_pages >= | |
712 | VMW_BALLOON_MAX_REFUSED) { | |
713 | if (!is_2m_pages) | |
714 | break; | |
715 | ||
716 | /* | |
717 | * Release the refused pages as we move to 4k | |
718 | * pages. | |
719 | */ | |
720 | vmballoon_release_refused_pages(b, true); | |
721 | is_2m_pages = true; | |
722 | } | |
723 | ||
f220a80f XD |
724 | if (error) |
725 | break; | |
726 | } | |
ef0f8f11 | 727 | |
33d268ed | 728 | cond_resched(); |
453dc659 DT |
729 | } |
730 | ||
f220a80f | 731 | if (num_pages > 0) |
df8d0d42 | 732 | vmballoon_lock(b, num_pages, is_2m_pages); |
f220a80f | 733 | |
365bd7ef PM |
734 | vmballoon_release_refused_pages(b, true); |
735 | vmballoon_release_refused_pages(b, false); | |
453dc659 DT |
736 | } |
737 | ||
738 | /* | |
739 | * Decrease the size of the balloon allowing guest to use more memory. | |
740 | */ | |
741 | static void vmballoon_deflate(struct vmballoon *b) | |
742 | { | |
365bd7ef | 743 | unsigned is_2m_pages; |
453dc659 | 744 | |
33d268ed | 745 | pr_debug("%s - size: %d, target %d\n", __func__, b->size, b->target); |
453dc659 DT |
746 | |
747 | /* free pages to reach target */ | |
365bd7ef PM |
748 | for (is_2m_pages = 0; is_2m_pages < b->supported_page_sizes; |
749 | is_2m_pages++) { | |
750 | struct page *page, *next; | |
751 | unsigned int num_pages = 0; | |
752 | struct vmballoon_page_size *page_size = | |
753 | &b->page_sizes[is_2m_pages]; | |
754 | ||
755 | list_for_each_entry_safe(page, next, &page_size->pages, lru) { | |
756 | if (b->reset_required || | |
757 | (b->target > 0 && | |
758 | b->size - num_pages | |
759 | * vmballoon_page_size(is_2m_pages) | |
760 | < b->target + vmballoon_page_size(true))) | |
761 | break; | |
f220a80f | 762 | |
365bd7ef | 763 | list_del(&page->lru); |
df8d0d42 | 764 | vmballoon_add_page(b, num_pages++, page); |
33d268ed | 765 | |
365bd7ef PM |
766 | if (num_pages == b->batch_max_pages) { |
767 | int error; | |
453dc659 | 768 | |
df8d0d42 | 769 | error = vmballoon_unlock(b, num_pages, |
10a95d5d | 770 | is_2m_pages); |
365bd7ef PM |
771 | num_pages = 0; |
772 | if (error) | |
773 | return; | |
774 | } | |
33d268ed | 775 | |
365bd7ef PM |
776 | cond_resched(); |
777 | } | |
453dc659 | 778 | |
365bd7ef | 779 | if (num_pages > 0) |
df8d0d42 | 780 | vmballoon_unlock(b, num_pages, is_2m_pages); |
365bd7ef | 781 | } |
f220a80f XD |
782 | } |
783 | ||
df8d0d42 NA |
784 | /** |
785 | * vmballoon_deinit_batching - disables batching mode. | |
786 | * | |
787 | * @b: pointer to &struct vmballoon. | |
788 | * | |
789 | * Disables batching, by deallocating the page for communication with the | |
790 | * hypervisor and disabling the static key to indicate that batching is off. | |
791 | */ | |
792 | static void vmballoon_deinit_batching(struct vmballoon *b) | |
793 | { | |
794 | free_page((unsigned long)b->batch_page); | |
795 | b->batch_page = NULL; | |
796 | static_branch_disable(&vmw_balloon_batching); | |
797 | b->batch_max_pages = 1; | |
798 | } | |
f220a80f | 799 | |
df8d0d42 NA |
800 | /** |
801 | * vmballoon_init_batching - enable batching mode. | |
802 | * | |
803 | * @b: pointer to &struct vmballoon. | |
804 | * | |
805 | * Enables batching, by allocating a page for communication with the hypervisor | |
806 | * and enabling the static_key to use batching. | |
807 | * | |
808 | * Return: zero on success or an appropriate error-code. | |
809 | */ | |
810 | static int vmballoon_init_batching(struct vmballoon *b) | |
f220a80f | 811 | { |
b23220fe | 812 | struct page *page; |
f220a80f | 813 | |
b23220fe GK |
814 | page = alloc_page(GFP_KERNEL | __GFP_ZERO); |
815 | if (!page) | |
df8d0d42 | 816 | return -ENOMEM; |
f220a80f | 817 | |
b23220fe | 818 | b->batch_page = page_address(page); |
df8d0d42 NA |
819 | b->batch_max_pages = PAGE_SIZE / sizeof(struct vmballoon_batch_entry); |
820 | ||
821 | static_branch_enable(&vmw_balloon_batching); | |
822 | ||
823 | return 0; | |
f220a80f XD |
824 | } |
825 | ||
48e3d668 PM |
826 | /* |
827 | * Receive notification and resize balloon | |
828 | */ | |
829 | static void vmballoon_doorbell(void *client_data) | |
830 | { | |
831 | struct vmballoon *b = client_data; | |
832 | ||
833 | STATS_INC(b->stats.doorbell); | |
834 | ||
835 | mod_delayed_work(system_freezable_wq, &b->dwork, 0); | |
836 | } | |
837 | ||
838 | /* | |
839 | * Clean up vmci doorbell | |
840 | */ | |
841 | static void vmballoon_vmci_cleanup(struct vmballoon *b) | |
842 | { | |
10a95d5d NA |
843 | vmballoon_cmd(b, VMW_BALLOON_CMD_VMCI_DOORBELL_SET, |
844 | VMCI_INVALID_ID, VMCI_INVALID_ID); | |
48e3d668 | 845 | |
48e3d668 PM |
846 | if (!vmci_handle_is_invalid(b->vmci_doorbell)) { |
847 | vmci_doorbell_destroy(b->vmci_doorbell); | |
848 | b->vmci_doorbell = VMCI_INVALID_HANDLE; | |
849 | } | |
850 | } | |
851 | ||
852 | /* | |
853 | * Initialize vmci doorbell, to get notified as soon as balloon changes | |
854 | */ | |
855 | static int vmballoon_vmci_init(struct vmballoon *b) | |
856 | { | |
10a95d5d | 857 | unsigned long error; |
48e3d668 | 858 | |
ce664331 NA |
859 | if ((b->capabilities & VMW_BALLOON_SIGNALLED_WAKEUP_CMD) == 0) |
860 | return 0; | |
48e3d668 | 861 | |
ce664331 NA |
862 | error = vmci_doorbell_create(&b->vmci_doorbell, VMCI_FLAG_DELAYED_CB, |
863 | VMCI_PRIVILEGE_FLAG_RESTRICTED, | |
864 | vmballoon_doorbell, b); | |
48e3d668 | 865 | |
ce664331 NA |
866 | if (error != VMCI_SUCCESS) |
867 | goto fail; | |
868 | ||
10a95d5d NA |
869 | error = __vmballoon_cmd(b, VMW_BALLOON_CMD_VMCI_DOORBELL_SET, |
870 | b->vmci_doorbell.context, | |
871 | b->vmci_doorbell.resource, NULL); | |
ce664331 | 872 | |
ce664331 NA |
873 | if (error != VMW_BALLOON_SUCCESS) |
874 | goto fail; | |
48e3d668 PM |
875 | |
876 | return 0; | |
ce664331 NA |
877 | fail: |
878 | vmballoon_vmci_cleanup(b); | |
879 | return -EIO; | |
48e3d668 PM |
880 | } |
881 | ||
f220a80f XD |
882 | /* |
883 | * Perform standard reset sequence by popping the balloon (in case it | |
884 | * is not empty) and then restarting protocol. This operation normally | |
885 | * happens when host responds with VMW_BALLOON_ERROR_RESET to a command. | |
886 | */ | |
887 | static void vmballoon_reset(struct vmballoon *b) | |
888 | { | |
48e3d668 PM |
889 | int error; |
890 | ||
891 | vmballoon_vmci_cleanup(b); | |
892 | ||
f220a80f XD |
893 | /* free all pages, skipping monitor unlock */ |
894 | vmballoon_pop(b); | |
895 | ||
896 | if (!vmballoon_send_start(b, VMW_BALLOON_CAPABILITIES)) | |
897 | return; | |
898 | ||
899 | if ((b->capabilities & VMW_BALLOON_BATCHED_CMDS) != 0) { | |
df8d0d42 | 900 | if (vmballoon_init_batching(b)) { |
f220a80f XD |
901 | /* |
902 | * We failed to initialize batching, inform the monitor | |
903 | * about it by sending a null capability. | |
904 | * | |
905 | * The guest will retry in one second. | |
906 | */ | |
907 | vmballoon_send_start(b, 0); | |
908 | return; | |
909 | } | |
910 | } else if ((b->capabilities & VMW_BALLOON_BASIC_CMDS) != 0) { | |
df8d0d42 | 911 | vmballoon_deinit_batching(b); |
f220a80f XD |
912 | } |
913 | ||
914 | b->reset_required = false; | |
48e3d668 PM |
915 | |
916 | error = vmballoon_vmci_init(b); | |
917 | if (error) | |
918 | pr_err("failed to initialize vmci doorbell\n"); | |
919 | ||
f220a80f XD |
920 | if (!vmballoon_send_guest_id(b)) |
921 | pr_err("failed to send guest ID to the host\n"); | |
453dc659 DT |
922 | } |
923 | ||
924 | /* | |
925 | * Balloon work function: reset protocol, if needed, get the new size and | |
926 | * adjust balloon as needed. Repeat in 1 sec. | |
927 | */ | |
928 | static void vmballoon_work(struct work_struct *work) | |
929 | { | |
930 | struct delayed_work *dwork = to_delayed_work(work); | |
931 | struct vmballoon *b = container_of(dwork, struct vmballoon, dwork); | |
453dc659 DT |
932 | |
933 | STATS_INC(b->stats.timer); | |
934 | ||
935 | if (b->reset_required) | |
936 | vmballoon_reset(b); | |
937 | ||
10a95d5d NA |
938 | if (!b->reset_required && vmballoon_send_get_target(b)) { |
939 | unsigned long target = b->target; | |
453dc659 | 940 | |
10a95d5d | 941 | /* update target, adjust size */ |
453dc659 DT |
942 | if (b->size < target) |
943 | vmballoon_inflate(b); | |
365bd7ef PM |
944 | else if (target == 0 || |
945 | b->size > target + vmballoon_page_size(true)) | |
453dc659 DT |
946 | vmballoon_deflate(b); |
947 | } | |
948 | ||
beda94da DT |
949 | /* |
950 | * We are using a freezable workqueue so that balloon operations are | |
951 | * stopped while the system transitions to/from sleep/hibernation. | |
952 | */ | |
953 | queue_delayed_work(system_freezable_wq, | |
954 | dwork, round_jiffies_relative(HZ)); | |
453dc659 DT |
955 | } |
956 | ||
957 | /* | |
958 | * DEBUGFS Interface | |
959 | */ | |
960 | #ifdef CONFIG_DEBUG_FS | |
961 | ||
962 | static int vmballoon_debug_show(struct seq_file *f, void *offset) | |
963 | { | |
964 | struct vmballoon *b = f->private; | |
965 | struct vmballoon_stats *stats = &b->stats; | |
68131184 | 966 | int i; |
453dc659 | 967 | |
b36e89da PM |
968 | /* format capabilities info */ |
969 | seq_printf(f, | |
970 | "balloon capabilities: %#4x\n" | |
d7568c13 PM |
971 | "used capabilities: %#4lx\n" |
972 | "is resetting: %c\n", | |
973 | VMW_BALLOON_CAPABILITIES, b->capabilities, | |
974 | b->reset_required ? 'y' : 'n'); | |
b36e89da | 975 | |
453dc659 DT |
976 | /* format size info */ |
977 | seq_printf(f, | |
978 | "target: %8d pages\n" | |
979 | "current: %8d pages\n", | |
980 | b->target, b->size); | |
981 | ||
68131184 NA |
982 | for (i = 0; i < VMW_BALLOON_CMD_NUM; i++) { |
983 | if (vmballoon_cmd_names[i] == NULL) | |
984 | continue; | |
985 | ||
986 | seq_printf(f, "%-22s: %16lu (%lu failed)\n", | |
987 | vmballoon_cmd_names[i], stats->ops[i], | |
988 | stats->ops_fail[i]); | |
989 | } | |
990 | ||
453dc659 DT |
991 | seq_printf(f, |
992 | "\n" | |
993 | "timer: %8u\n" | |
48e3d668 | 994 | "doorbell: %8u\n" |
365bd7ef | 995 | "prim2mAlloc: %8u (%4u failed)\n" |
622074a9 | 996 | "prim4kAlloc: %8u (%4u failed)\n" |
365bd7ef | 997 | "prim2mFree: %8u\n" |
453dc659 | 998 | "primFree: %8u\n" |
365bd7ef | 999 | "err2mAlloc: %8u\n" |
453dc659 | 1000 | "errAlloc: %8u\n" |
365bd7ef | 1001 | "err2mFree: %8u\n" |
68131184 | 1002 | "errFree: %8u\n", |
453dc659 | 1003 | stats->timer, |
48e3d668 | 1004 | stats->doorbell, |
365bd7ef PM |
1005 | stats->alloc[true], stats->alloc_fail[true], |
1006 | stats->alloc[false], stats->alloc_fail[false], | |
365bd7ef PM |
1007 | stats->free[true], |
1008 | stats->free[false], | |
1009 | stats->refused_alloc[true], stats->refused_alloc[false], | |
68131184 | 1010 | stats->refused_free[true], stats->refused_free[false]); |
453dc659 DT |
1011 | |
1012 | return 0; | |
1013 | } | |
1014 | ||
1015 | static int vmballoon_debug_open(struct inode *inode, struct file *file) | |
1016 | { | |
1017 | return single_open(file, vmballoon_debug_show, inode->i_private); | |
1018 | } | |
1019 | ||
1020 | static const struct file_operations vmballoon_debug_fops = { | |
1021 | .owner = THIS_MODULE, | |
1022 | .open = vmballoon_debug_open, | |
1023 | .read = seq_read, | |
1024 | .llseek = seq_lseek, | |
1025 | .release = single_release, | |
1026 | }; | |
1027 | ||
1028 | static int __init vmballoon_debugfs_init(struct vmballoon *b) | |
1029 | { | |
1030 | int error; | |
1031 | ||
1032 | b->dbg_entry = debugfs_create_file("vmmemctl", S_IRUGO, NULL, b, | |
1033 | &vmballoon_debug_fops); | |
1034 | if (IS_ERR(b->dbg_entry)) { | |
1035 | error = PTR_ERR(b->dbg_entry); | |
1036 | pr_err("failed to create debugfs entry, error: %d\n", error); | |
1037 | return error; | |
1038 | } | |
1039 | ||
1040 | return 0; | |
1041 | } | |
1042 | ||
1043 | static void __exit vmballoon_debugfs_exit(struct vmballoon *b) | |
1044 | { | |
1045 | debugfs_remove(b->dbg_entry); | |
1046 | } | |
1047 | ||
1048 | #else | |
1049 | ||
1050 | static inline int vmballoon_debugfs_init(struct vmballoon *b) | |
1051 | { | |
1052 | return 0; | |
1053 | } | |
1054 | ||
1055 | static inline void vmballoon_debugfs_exit(struct vmballoon *b) | |
1056 | { | |
1057 | } | |
1058 | ||
1059 | #endif /* CONFIG_DEBUG_FS */ | |
1060 | ||
1061 | static int __init vmballoon_init(void) | |
1062 | { | |
1063 | int error; | |
365bd7ef | 1064 | unsigned is_2m_pages; |
453dc659 DT |
1065 | /* |
1066 | * Check if we are running on VMware's hypervisor and bail out | |
1067 | * if we are not. | |
1068 | */ | |
03b2a320 | 1069 | if (x86_hyper_type != X86_HYPER_VMWARE) |
453dc659 DT |
1070 | return -ENODEV; |
1071 | ||
365bd7ef PM |
1072 | for (is_2m_pages = 0; is_2m_pages < VMW_BALLOON_NUM_PAGE_SIZES; |
1073 | is_2m_pages++) { | |
1074 | INIT_LIST_HEAD(&balloon.page_sizes[is_2m_pages].pages); | |
1075 | INIT_LIST_HEAD(&balloon.page_sizes[is_2m_pages].refused_pages); | |
1076 | } | |
453dc659 | 1077 | |
453dc659 DT |
1078 | INIT_DELAYED_WORK(&balloon.dwork, vmballoon_work); |
1079 | ||
453dc659 DT |
1080 | error = vmballoon_debugfs_init(&balloon); |
1081 | if (error) | |
beda94da | 1082 | return error; |
453dc659 | 1083 | |
48e3d668 | 1084 | balloon.vmci_doorbell = VMCI_INVALID_HANDLE; |
d7568c13 PM |
1085 | balloon.batch_page = NULL; |
1086 | balloon.page = NULL; | |
1087 | balloon.reset_required = true; | |
1088 | ||
beda94da | 1089 | queue_delayed_work(system_freezable_wq, &balloon.dwork, 0); |
453dc659 DT |
1090 | |
1091 | return 0; | |
453dc659 | 1092 | } |
c3cc1b0f NA |
1093 | |
1094 | /* | |
1095 | * Using late_initcall() instead of module_init() allows the balloon to use the | |
1096 | * VMCI doorbell even when the balloon is built into the kernel. Otherwise the | |
1097 | * VMCI is probed only after the balloon is initialized. If the balloon is used | |
1098 | * as a module, late_initcall() is equivalent to module_init(). | |
1099 | */ | |
1100 | late_initcall(vmballoon_init); | |
453dc659 DT |
1101 | |
1102 | static void __exit vmballoon_exit(void) | |
1103 | { | |
48e3d668 | 1104 | vmballoon_vmci_cleanup(&balloon); |
453dc659 | 1105 | cancel_delayed_work_sync(&balloon.dwork); |
453dc659 DT |
1106 | |
1107 | vmballoon_debugfs_exit(&balloon); | |
1108 | ||
1109 | /* | |
1110 | * Deallocate all reserved memory, and reset connection with monitor. | |
1111 | * Reset connection before deallocating memory to avoid potential for | |
1112 | * additional spurious resets from guest touching deallocated pages. | |
1113 | */ | |
d7568c13 | 1114 | vmballoon_send_start(&balloon, 0); |
453dc659 DT |
1115 | vmballoon_pop(&balloon); |
1116 | } | |
1117 | module_exit(vmballoon_exit); |