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K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001/*
2 * Copyright (c) 2012, Microsoft Corporation.
3 *
4 * Author:
5 * K. Y. Srinivasan <kys@microsoft.com>
6 *
7 * This program is free software; you can redistribute it and/or modify it
8 * under the terms of the GNU General Public License version 2 as published
9 * by the Free Software Foundation.
10 *
11 * This program is distributed in the hope that it will be useful, but
12 * WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE, GOOD TITLE or
14 * NON INFRINGEMENT. See the GNU General Public License for more
15 * details.
16 *
17 */
18
19#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
20
21#include <linux/kernel.h>
K. Y. Srinivasanae339332014-04-23 13:53:39 -070022#include <linux/jiffies.h>
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -080023#include <linux/mman.h>
24#include <linux/delay.h>
25#include <linux/init.h>
26#include <linux/module.h>
27#include <linux/slab.h>
28#include <linux/kthread.h>
29#include <linux/completion.h>
30#include <linux/memory_hotplug.h>
31#include <linux/memory.h>
32#include <linux/notifier.h>
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -080033#include <linux/percpu_counter.h>
34
35#include <linux/hyperv.h>
36
37/*
38 * We begin with definitions supporting the Dynamic Memory protocol
39 * with the host.
40 *
41 * Begin protocol definitions.
42 */
43
44
45
46/*
47 * Protocol versions. The low word is the minor version, the high word the major
48 * version.
49 *
50 * History:
51 * Initial version 1.0
52 * Changed to 0.1 on 2009/03/25
53 * Changes to 0.2 on 2009/05/14
54 * Changes to 0.3 on 2009/12/03
55 * Changed to 1.0 on 2011/04/05
56 */
57
58#define DYNMEM_MAKE_VERSION(Major, Minor) ((__u32)(((Major) << 16) | (Minor)))
59#define DYNMEM_MAJOR_VERSION(Version) ((__u32)(Version) >> 16)
60#define DYNMEM_MINOR_VERSION(Version) ((__u32)(Version) & 0xff)
61
62enum {
63 DYNMEM_PROTOCOL_VERSION_1 = DYNMEM_MAKE_VERSION(0, 3),
64 DYNMEM_PROTOCOL_VERSION_2 = DYNMEM_MAKE_VERSION(1, 0),
65
66 DYNMEM_PROTOCOL_VERSION_WIN7 = DYNMEM_PROTOCOL_VERSION_1,
67 DYNMEM_PROTOCOL_VERSION_WIN8 = DYNMEM_PROTOCOL_VERSION_2,
68
69 DYNMEM_PROTOCOL_VERSION_CURRENT = DYNMEM_PROTOCOL_VERSION_WIN8
70};
71
72
73
74/*
75 * Message Types
76 */
77
78enum dm_message_type {
79 /*
80 * Version 0.3
81 */
82 DM_ERROR = 0,
83 DM_VERSION_REQUEST = 1,
84 DM_VERSION_RESPONSE = 2,
85 DM_CAPABILITIES_REPORT = 3,
86 DM_CAPABILITIES_RESPONSE = 4,
87 DM_STATUS_REPORT = 5,
88 DM_BALLOON_REQUEST = 6,
89 DM_BALLOON_RESPONSE = 7,
90 DM_UNBALLOON_REQUEST = 8,
91 DM_UNBALLOON_RESPONSE = 9,
92 DM_MEM_HOT_ADD_REQUEST = 10,
93 DM_MEM_HOT_ADD_RESPONSE = 11,
94 DM_VERSION_03_MAX = 11,
95 /*
96 * Version 1.0.
97 */
98 DM_INFO_MESSAGE = 12,
99 DM_VERSION_1_MAX = 12
100};
101
102
103/*
104 * Structures defining the dynamic memory management
105 * protocol.
106 */
107
108union dm_version {
109 struct {
110 __u16 minor_version;
111 __u16 major_version;
112 };
113 __u32 version;
114} __packed;
115
116
117union dm_caps {
118 struct {
119 __u64 balloon:1;
120 __u64 hot_add:1;
K. Y. Srinivasan647965a2013-03-29 07:36:11 -0700121 /*
122 * To support guests that may have alignment
123 * limitations on hot-add, the guest can specify
124 * its alignment requirements; a value of n
125 * represents an alignment of 2^n in mega bytes.
126 */
127 __u64 hot_add_alignment:4;
128 __u64 reservedz:58;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800129 } cap_bits;
130 __u64 caps;
131} __packed;
132
133union dm_mem_page_range {
134 struct {
135 /*
136 * The PFN number of the first page in the range.
137 * 40 bits is the architectural limit of a PFN
138 * number for AMD64.
139 */
140 __u64 start_page:40;
141 /*
142 * The number of pages in the range.
143 */
144 __u64 page_cnt:24;
145 } finfo;
146 __u64 page_range;
147} __packed;
148
149
150
151/*
152 * The header for all dynamic memory messages:
153 *
154 * type: Type of the message.
155 * size: Size of the message in bytes; including the header.
156 * trans_id: The guest is responsible for manufacturing this ID.
157 */
158
159struct dm_header {
160 __u16 type;
161 __u16 size;
162 __u32 trans_id;
163} __packed;
164
165/*
166 * A generic message format for dynamic memory.
167 * Specific message formats are defined later in the file.
168 */
169
170struct dm_message {
171 struct dm_header hdr;
172 __u8 data[]; /* enclosed message */
173} __packed;
174
175
176/*
177 * Specific message types supporting the dynamic memory protocol.
178 */
179
180/*
181 * Version negotiation message. Sent from the guest to the host.
182 * The guest is free to try different versions until the host
183 * accepts the version.
184 *
185 * dm_version: The protocol version requested.
186 * is_last_attempt: If TRUE, this is the last version guest will request.
187 * reservedz: Reserved field, set to zero.
188 */
189
190struct dm_version_request {
191 struct dm_header hdr;
192 union dm_version version;
193 __u32 is_last_attempt:1;
194 __u32 reservedz:31;
195} __packed;
196
197/*
198 * Version response message; Host to Guest and indicates
199 * if the host has accepted the version sent by the guest.
200 *
201 * is_accepted: If TRUE, host has accepted the version and the guest
202 * should proceed to the next stage of the protocol. FALSE indicates that
203 * guest should re-try with a different version.
204 *
205 * reservedz: Reserved field, set to zero.
206 */
207
208struct dm_version_response {
209 struct dm_header hdr;
210 __u64 is_accepted:1;
211 __u64 reservedz:63;
212} __packed;
213
214/*
215 * Message reporting capabilities. This is sent from the guest to the
216 * host.
217 */
218
219struct dm_capabilities {
220 struct dm_header hdr;
221 union dm_caps caps;
222 __u64 min_page_cnt;
223 __u64 max_page_number;
224} __packed;
225
226/*
227 * Response to the capabilities message. This is sent from the host to the
228 * guest. This message notifies if the host has accepted the guest's
229 * capabilities. If the host has not accepted, the guest must shutdown
230 * the service.
231 *
232 * is_accepted: Indicates if the host has accepted guest's capabilities.
233 * reservedz: Must be 0.
234 */
235
236struct dm_capabilities_resp_msg {
237 struct dm_header hdr;
238 __u64 is_accepted:1;
239 __u64 reservedz:63;
240} __packed;
241
242/*
243 * This message is used to report memory pressure from the guest.
244 * This message is not part of any transaction and there is no
245 * response to this message.
246 *
247 * num_avail: Available memory in pages.
248 * num_committed: Committed memory in pages.
249 * page_file_size: The accumulated size of all page files
250 * in the system in pages.
251 * zero_free: The nunber of zero and free pages.
252 * page_file_writes: The writes to the page file in pages.
253 * io_diff: An indicator of file cache efficiency or page file activity,
254 * calculated as File Cache Page Fault Count - Page Read Count.
255 * This value is in pages.
256 *
257 * Some of these metrics are Windows specific and fortunately
258 * the algorithm on the host side that computes the guest memory
259 * pressure only uses num_committed value.
260 */
261
262struct dm_status {
263 struct dm_header hdr;
264 __u64 num_avail;
265 __u64 num_committed;
266 __u64 page_file_size;
267 __u64 zero_free;
268 __u32 page_file_writes;
269 __u32 io_diff;
270} __packed;
271
272
273/*
274 * Message to ask the guest to allocate memory - balloon up message.
275 * This message is sent from the host to the guest. The guest may not be
276 * able to allocate as much memory as requested.
277 *
278 * num_pages: number of pages to allocate.
279 */
280
281struct dm_balloon {
282 struct dm_header hdr;
283 __u32 num_pages;
284 __u32 reservedz;
285} __packed;
286
287
288/*
289 * Balloon response message; this message is sent from the guest
290 * to the host in response to the balloon message.
291 *
292 * reservedz: Reserved; must be set to zero.
293 * more_pages: If FALSE, this is the last message of the transaction.
294 * if TRUE there will atleast one more message from the guest.
295 *
296 * range_count: The number of ranges in the range array.
297 *
298 * range_array: An array of page ranges returned to the host.
299 *
300 */
301
302struct dm_balloon_response {
303 struct dm_header hdr;
304 __u32 reservedz;
305 __u32 more_pages:1;
306 __u32 range_count:31;
307 union dm_mem_page_range range_array[];
308} __packed;
309
310/*
311 * Un-balloon message; this message is sent from the host
312 * to the guest to give guest more memory.
313 *
314 * more_pages: If FALSE, this is the last message of the transaction.
315 * if TRUE there will atleast one more message from the guest.
316 *
317 * reservedz: Reserved; must be set to zero.
318 *
319 * range_count: The number of ranges in the range array.
320 *
321 * range_array: An array of page ranges returned to the host.
322 *
323 */
324
325struct dm_unballoon_request {
326 struct dm_header hdr;
327 __u32 more_pages:1;
328 __u32 reservedz:31;
329 __u32 range_count;
330 union dm_mem_page_range range_array[];
331} __packed;
332
333/*
334 * Un-balloon response message; this message is sent from the guest
335 * to the host in response to an unballoon request.
336 *
337 */
338
339struct dm_unballoon_response {
340 struct dm_header hdr;
341} __packed;
342
343
344/*
345 * Hot add request message. Message sent from the host to the guest.
346 *
347 * mem_range: Memory range to hot add.
348 *
349 * On Linux we currently don't support this since we cannot hot add
350 * arbitrary granularity of memory.
351 */
352
353struct dm_hot_add {
354 struct dm_header hdr;
355 union dm_mem_page_range range;
356} __packed;
357
358/*
359 * Hot add response message.
360 * This message is sent by the guest to report the status of a hot add request.
361 * If page_count is less than the requested page count, then the host should
362 * assume all further hot add requests will fail, since this indicates that
363 * the guest has hit an upper physical memory barrier.
364 *
365 * Hot adds may also fail due to low resources; in this case, the guest must
366 * not complete this message until the hot add can succeed, and the host must
367 * not send a new hot add request until the response is sent.
368 * If VSC fails to hot add memory DYNMEM_NUMBER_OF_UNSUCCESSFUL_HOTADD_ATTEMPTS
369 * times it fails the request.
370 *
371 *
372 * page_count: number of pages that were successfully hot added.
373 *
374 * result: result of the operation 1: success, 0: failure.
375 *
376 */
377
378struct dm_hot_add_response {
379 struct dm_header hdr;
380 __u32 page_count;
381 __u32 result;
382} __packed;
383
384/*
385 * Types of information sent from host to the guest.
386 */
387
388enum dm_info_type {
389 INFO_TYPE_MAX_PAGE_CNT = 0,
390 MAX_INFO_TYPE
391};
392
393
394/*
395 * Header for the information message.
396 */
397
398struct dm_info_header {
399 enum dm_info_type type;
400 __u32 data_size;
401} __packed;
402
403/*
404 * This message is sent from the host to the guest to pass
405 * some relevant information (win8 addition).
406 *
407 * reserved: no used.
408 * info_size: size of the information blob.
409 * info: information blob.
410 */
411
412struct dm_info_msg {
K. Y. Srinivasan6427a0d2012-12-06 11:06:54 -0800413 struct dm_header hdr;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800414 __u32 reserved;
415 __u32 info_size;
416 __u8 info[];
417};
418
419/*
420 * End protocol definitions.
421 */
422
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700423/*
424 * State to manage hot adding memory into the guest.
425 * The range start_pfn : end_pfn specifies the range
426 * that the host has asked us to hot add. The range
427 * start_pfn : ha_end_pfn specifies the range that we have
428 * currently hot added. We hot add in multiples of 128M
429 * chunks; it is possible that we may not be able to bring
430 * online all the pages in the region. The range
431 * covered_start_pfn : covered_end_pfn defines the pages that can
432 * be brough online.
433 */
434
435struct hv_hotadd_state {
436 struct list_head list;
437 unsigned long start_pfn;
438 unsigned long covered_start_pfn;
439 unsigned long covered_end_pfn;
440 unsigned long ha_end_pfn;
441 unsigned long end_pfn;
442};
443
K. Y. Srinivasan6571b2d2013-03-15 12:25:40 -0700444struct balloon_state {
445 __u32 num_pages;
446 struct work_struct wrk;
447};
448
K. Y. Srinivasanc51af822013-03-15 12:25:41 -0700449struct hot_add_wrk {
450 union dm_mem_page_range ha_page_range;
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700451 union dm_mem_page_range ha_region_range;
K. Y. Srinivasanc51af822013-03-15 12:25:41 -0700452 struct work_struct wrk;
453};
454
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700455static bool hot_add = true;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800456static bool do_hot_add;
K. Y. Srinivasane500d152013-02-08 15:57:15 -0800457/*
458 * Delay reporting memory pressure by
459 * the specified number of seconds.
460 */
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700461static uint pressure_report_delay = 45;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800462
K. Y. Srinivasanae339332014-04-23 13:53:39 -0700463/*
464 * The last time we posted a pressure report to host.
465 */
466static unsigned long last_post_time;
467
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800468module_param(hot_add, bool, (S_IRUGO | S_IWUSR));
469MODULE_PARM_DESC(hot_add, "If set attempt memory hot_add");
470
K. Y. Srinivasane500d152013-02-08 15:57:15 -0800471module_param(pressure_report_delay, uint, (S_IRUGO | S_IWUSR));
472MODULE_PARM_DESC(pressure_report_delay, "Delay in secs in reporting pressure");
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800473static atomic_t trans_id = ATOMIC_INIT(0);
474
475static int dm_ring_size = (5 * PAGE_SIZE);
476
477/*
478 * Driver specific state.
479 */
480
481enum hv_dm_state {
482 DM_INITIALIZING = 0,
483 DM_INITIALIZED,
484 DM_BALLOON_UP,
485 DM_BALLOON_DOWN,
486 DM_HOT_ADD,
487 DM_INIT_ERROR
488};
489
490
491static __u8 recv_buffer[PAGE_SIZE];
492static __u8 *send_buffer;
493#define PAGES_IN_2M 512
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700494#define HA_CHUNK (32 * 1024)
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800495
496struct hv_dynmem_device {
497 struct hv_device *dev;
498 enum hv_dm_state state;
499 struct completion host_event;
500 struct completion config_event;
501
502 /*
503 * Number of pages we have currently ballooned out.
504 */
505 unsigned int num_pages_ballooned;
Vitaly Kuznetsov549fd282015-02-28 11:38:59 -0800506 unsigned int num_pages_onlined;
507 unsigned int num_pages_added;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800508
509 /*
K. Y. Srinivasan6571b2d2013-03-15 12:25:40 -0700510 * State to manage the ballooning (up) operation.
511 */
512 struct balloon_state balloon_wrk;
513
514 /*
K. Y. Srinivasanc51af822013-03-15 12:25:41 -0700515 * State to execute the "hot-add" operation.
516 */
517 struct hot_add_wrk ha_wrk;
518
519 /*
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700520 * This state tracks if the host has specified a hot-add
521 * region.
522 */
523 bool host_specified_ha_region;
524
525 /*
526 * State to synchronize hot-add.
527 */
528 struct completion ol_waitevent;
529 bool ha_waiting;
530 /*
K. Y. Srinivasan6571b2d2013-03-15 12:25:40 -0700531 * This thread handles hot-add
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800532 * requests from the host as well as notifying
533 * the host with regards to memory pressure in
534 * the guest.
535 */
536 struct task_struct *thread;
537
K. Y. Srinivasan22f88472015-01-09 23:54:30 -0800538 struct mutex ha_region_mutex;
K. Y. Srinivasan22f88472015-01-09 23:54:30 -0800539
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800540 /*
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700541 * A list of hot-add regions.
542 */
543 struct list_head ha_region_list;
544
545 /*
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800546 * We start with the highest version we can support
547 * and downgrade based on the host; we save here the
548 * next version to try.
549 */
550 __u32 next_version;
551};
552
553static struct hv_dynmem_device dm_device;
554
K. Y. Srinivasanae339332014-04-23 13:53:39 -0700555static void post_status(struct hv_dynmem_device *dm);
K. Y. Srinivasan22f88472015-01-09 23:54:30 -0800556
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700557#ifdef CONFIG_MEMORY_HOTPLUG
K. Y. Srinivasan22f88472015-01-09 23:54:30 -0800558static int hv_memory_notifier(struct notifier_block *nb, unsigned long val,
559 void *v)
560{
Vitaly Kuznetsov549fd282015-02-28 11:38:59 -0800561 struct memory_notify *mem = (struct memory_notify *)v;
562
K. Y. Srinivasan22f88472015-01-09 23:54:30 -0800563 switch (val) {
564 case MEM_GOING_ONLINE:
Vitaly Kuznetsovb05d8d92015-02-28 11:38:58 -0800565 mutex_lock(&dm_device.ha_region_mutex);
K. Y. Srinivasan22f88472015-01-09 23:54:30 -0800566 break;
567
568 case MEM_ONLINE:
Vitaly Kuznetsov549fd282015-02-28 11:38:59 -0800569 dm_device.num_pages_onlined += mem->nr_pages;
K. Y. Srinivasan22f88472015-01-09 23:54:30 -0800570 case MEM_CANCEL_ONLINE:
Vitaly Kuznetsovb05d8d92015-02-28 11:38:58 -0800571 mutex_unlock(&dm_device.ha_region_mutex);
K. Y. Srinivasan22f88472015-01-09 23:54:30 -0800572 if (dm_device.ha_waiting) {
573 dm_device.ha_waiting = false;
574 complete(&dm_device.ol_waitevent);
575 }
576 break;
577
K. Y. Srinivasan22f88472015-01-09 23:54:30 -0800578 case MEM_OFFLINE:
Vitaly Kuznetsov549fd282015-02-28 11:38:59 -0800579 mutex_lock(&dm_device.ha_region_mutex);
580 dm_device.num_pages_onlined -= mem->nr_pages;
581 mutex_unlock(&dm_device.ha_region_mutex);
582 break;
583 case MEM_GOING_OFFLINE:
K. Y. Srinivasan22f88472015-01-09 23:54:30 -0800584 case MEM_CANCEL_OFFLINE:
585 break;
586 }
587 return NOTIFY_OK;
588}
589
590static struct notifier_block hv_memory_nb = {
591 .notifier_call = hv_memory_notifier,
592 .priority = 0
593};
594
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700595
Wei Yongjuna6025a22013-03-20 23:25:59 +0800596static void hv_bring_pgs_online(unsigned long start_pfn, unsigned long size)
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800597{
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700598 int i;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800599
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700600 for (i = 0; i < size; i++) {
601 struct page *pg;
602 pg = pfn_to_page(start_pfn + i);
603 __online_page_set_limits(pg);
604 __online_page_increment_counters(pg);
605 __online_page_free(pg);
606 }
607}
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800608
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700609static void hv_mem_hot_add(unsigned long start, unsigned long size,
610 unsigned long pfn_count,
611 struct hv_hotadd_state *has)
612{
613 int ret = 0;
K. Y. Srinivasaned07ec92013-07-14 22:38:11 -0700614 int i, nid;
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700615 unsigned long start_pfn;
616 unsigned long processed_pfn;
617 unsigned long total_pfn = pfn_count;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800618
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700619 for (i = 0; i < (size/HA_CHUNK); i++) {
620 start_pfn = start + (i * HA_CHUNK);
621 has->ha_end_pfn += HA_CHUNK;
622
623 if (total_pfn > HA_CHUNK) {
624 processed_pfn = HA_CHUNK;
625 total_pfn -= HA_CHUNK;
626 } else {
627 processed_pfn = total_pfn;
628 total_pfn = 0;
629 }
630
631 has->covered_end_pfn += processed_pfn;
632
633 init_completion(&dm_device.ol_waitevent);
634 dm_device.ha_waiting = true;
635
Vitaly Kuznetsovb05d8d92015-02-28 11:38:58 -0800636 mutex_unlock(&dm_device.ha_region_mutex);
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700637 nid = memory_add_physaddr_to_nid(PFN_PHYS(start_pfn));
638 ret = add_memory(nid, PFN_PHYS((start_pfn)),
639 (HA_CHUNK << PAGE_SHIFT));
640
641 if (ret) {
642 pr_info("hot_add memory failed error is %d\n", ret);
K. Y. Srinivasan7f4f2302013-03-18 13:51:38 -0700643 if (ret == -EEXIST) {
644 /*
645 * This error indicates that the error
646 * is not a transient failure. This is the
647 * case where the guest's physical address map
648 * precludes hot adding memory. Stop all further
649 * memory hot-add.
650 */
651 do_hot_add = false;
652 }
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700653 has->ha_end_pfn -= HA_CHUNK;
654 has->covered_end_pfn -= processed_pfn;
Vitaly Kuznetsovf3f6eb82015-03-18 12:29:22 -0700655 mutex_lock(&dm_device.ha_region_mutex);
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700656 break;
657 }
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800658
659 /*
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700660 * Wait for the memory block to be onlined.
K. Y. Srinivasaned07ec92013-07-14 22:38:11 -0700661 * Since the hot add has succeeded, it is ok to
662 * proceed even if the pages in the hot added region
663 * have not been "onlined" within the allowed time.
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800664 */
K. Y. Srinivasaned07ec92013-07-14 22:38:11 -0700665 wait_for_completion_timeout(&dm_device.ol_waitevent, 5*HZ);
Vitaly Kuznetsovb05d8d92015-02-28 11:38:58 -0800666 mutex_lock(&dm_device.ha_region_mutex);
K. Y. Srinivasanae339332014-04-23 13:53:39 -0700667 post_status(&dm_device);
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800668 }
669
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700670 return;
671}
672
673static void hv_online_page(struct page *pg)
674{
675 struct list_head *cur;
676 struct hv_hotadd_state *has;
677 unsigned long cur_start_pgp;
678 unsigned long cur_end_pgp;
679
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700680 list_for_each(cur, &dm_device.ha_region_list) {
681 has = list_entry(cur, struct hv_hotadd_state, list);
682 cur_start_pgp = (unsigned long)
683 pfn_to_page(has->covered_start_pfn);
684 cur_end_pgp = (unsigned long)pfn_to_page(has->covered_end_pfn);
685
686 if (((unsigned long)pg >= cur_start_pgp) &&
687 ((unsigned long)pg < cur_end_pgp)) {
688 /*
689 * This frame is currently backed; online the
690 * page.
691 */
692 __online_page_set_limits(pg);
693 __online_page_increment_counters(pg);
694 __online_page_free(pg);
695 has->covered_start_pfn++;
696 }
697 }
698}
699
700static bool pfn_covered(unsigned long start_pfn, unsigned long pfn_cnt)
701{
702 struct list_head *cur;
703 struct hv_hotadd_state *has;
704 unsigned long residual, new_inc;
705
706 if (list_empty(&dm_device.ha_region_list))
707 return false;
708
709 list_for_each(cur, &dm_device.ha_region_list) {
710 has = list_entry(cur, struct hv_hotadd_state, list);
711
712 /*
713 * If the pfn range we are dealing with is not in the current
714 * "hot add block", move on.
715 */
716 if ((start_pfn >= has->end_pfn))
717 continue;
718 /*
719 * If the current hot add-request extends beyond
720 * our current limit; extend it.
721 */
722 if ((start_pfn + pfn_cnt) > has->end_pfn) {
723 residual = (start_pfn + pfn_cnt - has->end_pfn);
724 /*
725 * Extend the region by multiples of HA_CHUNK.
726 */
727 new_inc = (residual / HA_CHUNK) * HA_CHUNK;
728 if (residual % HA_CHUNK)
729 new_inc += HA_CHUNK;
730
731 has->end_pfn += new_inc;
732 }
733
734 /*
735 * If the current start pfn is not where the covered_end
736 * is, update it.
737 */
738
739 if (has->covered_end_pfn != start_pfn) {
740 has->covered_end_pfn = start_pfn;
741 has->covered_start_pfn = start_pfn;
742 }
743 return true;
744
745 }
746
747 return false;
748}
749
750static unsigned long handle_pg_range(unsigned long pg_start,
751 unsigned long pg_count)
752{
753 unsigned long start_pfn = pg_start;
754 unsigned long pfn_cnt = pg_count;
755 unsigned long size;
756 struct list_head *cur;
757 struct hv_hotadd_state *has;
758 unsigned long pgs_ol = 0;
759 unsigned long old_covered_state;
760
761 if (list_empty(&dm_device.ha_region_list))
762 return 0;
763
764 list_for_each(cur, &dm_device.ha_region_list) {
765 has = list_entry(cur, struct hv_hotadd_state, list);
766
767 /*
768 * If the pfn range we are dealing with is not in the current
769 * "hot add block", move on.
770 */
771 if ((start_pfn >= has->end_pfn))
772 continue;
773
774 old_covered_state = has->covered_end_pfn;
775
776 if (start_pfn < has->ha_end_pfn) {
777 /*
778 * This is the case where we are backing pages
779 * in an already hot added region. Bring
780 * these pages online first.
781 */
782 pgs_ol = has->ha_end_pfn - start_pfn;
783 if (pgs_ol > pfn_cnt)
784 pgs_ol = pfn_cnt;
785 hv_bring_pgs_online(start_pfn, pgs_ol);
786 has->covered_end_pfn += pgs_ol;
787 has->covered_start_pfn += pgs_ol;
788 pfn_cnt -= pgs_ol;
789 }
790
791 if ((has->ha_end_pfn < has->end_pfn) && (pfn_cnt > 0)) {
792 /*
793 * We have some residual hot add range
794 * that needs to be hot added; hot add
795 * it now. Hot add a multiple of
796 * of HA_CHUNK that fully covers the pages
797 * we have.
798 */
799 size = (has->end_pfn - has->ha_end_pfn);
800 if (pfn_cnt <= size) {
801 size = ((pfn_cnt / HA_CHUNK) * HA_CHUNK);
802 if (pfn_cnt % HA_CHUNK)
803 size += HA_CHUNK;
804 } else {
805 pfn_cnt = size;
806 }
807 hv_mem_hot_add(has->ha_end_pfn, size, pfn_cnt, has);
808 }
809 /*
810 * If we managed to online any pages that were given to us,
811 * we declare success.
812 */
813 return has->covered_end_pfn - old_covered_state;
814
815 }
816
817 return 0;
818}
819
820static unsigned long process_hot_add(unsigned long pg_start,
821 unsigned long pfn_cnt,
822 unsigned long rg_start,
823 unsigned long rg_size)
824{
825 struct hv_hotadd_state *ha_region = NULL;
826
827 if (pfn_cnt == 0)
828 return 0;
829
830 if (!dm_device.host_specified_ha_region)
831 if (pfn_covered(pg_start, pfn_cnt))
832 goto do_pg_range;
833
834 /*
835 * If the host has specified a hot-add range; deal with it first.
836 */
837
K. Y. Srinivasan647965a2013-03-29 07:36:11 -0700838 if (rg_size != 0) {
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700839 ha_region = kzalloc(sizeof(struct hv_hotadd_state), GFP_KERNEL);
840 if (!ha_region)
841 return 0;
842
843 INIT_LIST_HEAD(&ha_region->list);
844
845 list_add_tail(&ha_region->list, &dm_device.ha_region_list);
846 ha_region->start_pfn = rg_start;
847 ha_region->ha_end_pfn = rg_start;
848 ha_region->covered_start_pfn = pg_start;
849 ha_region->covered_end_pfn = pg_start;
850 ha_region->end_pfn = rg_start + rg_size;
851 }
852
853do_pg_range:
854 /*
855 * Process the page range specified; bringing them
856 * online if possible.
857 */
858 return handle_pg_range(pg_start, pfn_cnt);
859}
860
861#endif
862
863static void hot_add_req(struct work_struct *dummy)
864{
865 struct dm_hot_add_response resp;
866#ifdef CONFIG_MEMORY_HOTPLUG
867 unsigned long pg_start, pfn_cnt;
868 unsigned long rg_start, rg_sz;
869#endif
870 struct hv_dynmem_device *dm = &dm_device;
871
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800872 memset(&resp, 0, sizeof(struct dm_hot_add_response));
873 resp.hdr.type = DM_MEM_HOT_ADD_RESPONSE;
874 resp.hdr.size = sizeof(struct dm_hot_add_response);
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800875
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700876#ifdef CONFIG_MEMORY_HOTPLUG
Vitaly Kuznetsovb05d8d92015-02-28 11:38:58 -0800877 mutex_lock(&dm_device.ha_region_mutex);
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700878 pg_start = dm->ha_wrk.ha_page_range.finfo.start_page;
879 pfn_cnt = dm->ha_wrk.ha_page_range.finfo.page_cnt;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800880
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700881 rg_start = dm->ha_wrk.ha_region_range.finfo.start_page;
882 rg_sz = dm->ha_wrk.ha_region_range.finfo.page_cnt;
883
884 if ((rg_start == 0) && (!dm->host_specified_ha_region)) {
885 unsigned long region_size;
886 unsigned long region_start;
887
888 /*
889 * The host has not specified the hot-add region.
890 * Based on the hot-add page range being specified,
891 * compute a hot-add region that can cover the pages
892 * that need to be hot-added while ensuring the alignment
893 * and size requirements of Linux as it relates to hot-add.
894 */
895 region_start = pg_start;
896 region_size = (pfn_cnt / HA_CHUNK) * HA_CHUNK;
897 if (pfn_cnt % HA_CHUNK)
898 region_size += HA_CHUNK;
899
900 region_start = (pg_start / HA_CHUNK) * HA_CHUNK;
901
902 rg_start = region_start;
903 rg_sz = region_size;
904 }
905
K. Y. Srinivasan7f4f2302013-03-18 13:51:38 -0700906 if (do_hot_add)
907 resp.page_count = process_hot_add(pg_start, pfn_cnt,
908 rg_start, rg_sz);
Vitaly Kuznetsov549fd282015-02-28 11:38:59 -0800909
910 dm->num_pages_added += resp.page_count;
Vitaly Kuznetsovb05d8d92015-02-28 11:38:58 -0800911 mutex_unlock(&dm_device.ha_region_mutex);
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700912#endif
K. Y. Srinivasan7f4f2302013-03-18 13:51:38 -0700913 /*
914 * The result field of the response structure has the
915 * following semantics:
916 *
917 * 1. If all or some pages hot-added: Guest should return success.
918 *
919 * 2. If no pages could be hot-added:
920 *
921 * If the guest returns success, then the host
922 * will not attempt any further hot-add operations. This
923 * signifies a permanent failure.
924 *
925 * If the guest returns failure, then this failure will be
926 * treated as a transient failure and the host may retry the
927 * hot-add operation after some delay.
928 */
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700929 if (resp.page_count > 0)
930 resp.result = 1;
K. Y. Srinivasan7f4f2302013-03-18 13:51:38 -0700931 else if (!do_hot_add)
932 resp.result = 1;
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700933 else
934 resp.result = 0;
935
936 if (!do_hot_add || (resp.page_count == 0))
937 pr_info("Memory hot add failed\n");
938
939 dm->state = DM_INITIALIZED;
K. Y. Srinivasan20138d6c2013-07-17 17:27:27 -0700940 resp.hdr.trans_id = atomic_inc_return(&trans_id);
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -0700941 vmbus_sendpacket(dm->dev->channel, &resp,
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800942 sizeof(struct dm_hot_add_response),
943 (unsigned long)NULL,
944 VM_PKT_DATA_INBAND, 0);
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800945}
946
947static void process_info(struct hv_dynmem_device *dm, struct dm_info_msg *msg)
948{
K. Y. Srinivasan6427a0d2012-12-06 11:06:54 -0800949 struct dm_info_header *info_hdr;
950
951 info_hdr = (struct dm_info_header *)msg->info;
952
953 switch (info_hdr->type) {
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800954 case INFO_TYPE_MAX_PAGE_CNT:
955 pr_info("Received INFO_TYPE_MAX_PAGE_CNT\n");
K. Y. Srinivasan6427a0d2012-12-06 11:06:54 -0800956 pr_info("Data Size is %d\n", info_hdr->data_size);
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800957 break;
958 default:
K. Y. Srinivasan6427a0d2012-12-06 11:06:54 -0800959 pr_info("Received Unknown type: %d\n", info_hdr->type);
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800960 }
961}
962
Wei Yongjuna6025a22013-03-20 23:25:59 +0800963static unsigned long compute_balloon_floor(void)
K. Y. Srinivasan1c7db962013-02-08 15:57:16 -0800964{
965 unsigned long min_pages;
966#define MB2PAGES(mb) ((mb) << (20 - PAGE_SHIFT))
967 /* Simple continuous piecewiese linear function:
968 * max MiB -> min MiB gradient
969 * 0 0
970 * 16 16
971 * 32 24
972 * 128 72 (1/2)
973 * 512 168 (1/4)
974 * 2048 360 (1/8)
K. Y. Srinivasan79208c52015-01-09 23:54:29 -0800975 * 8192 768 (1/16)
976 * 32768 1536 (1/32)
K. Y. Srinivasan1c7db962013-02-08 15:57:16 -0800977 */
978 if (totalram_pages < MB2PAGES(128))
979 min_pages = MB2PAGES(8) + (totalram_pages >> 1);
980 else if (totalram_pages < MB2PAGES(512))
981 min_pages = MB2PAGES(40) + (totalram_pages >> 2);
982 else if (totalram_pages < MB2PAGES(2048))
983 min_pages = MB2PAGES(104) + (totalram_pages >> 3);
K. Y. Srinivasan79208c52015-01-09 23:54:29 -0800984 else if (totalram_pages < MB2PAGES(8192))
985 min_pages = MB2PAGES(256) + (totalram_pages >> 4);
K. Y. Srinivasan1c7db962013-02-08 15:57:16 -0800986 else
K. Y. Srinivasan79208c52015-01-09 23:54:29 -0800987 min_pages = MB2PAGES(512) + (totalram_pages >> 5);
K. Y. Srinivasan1c7db962013-02-08 15:57:16 -0800988#undef MB2PAGES
989 return min_pages;
990}
991
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -0800992/*
993 * Post our status as it relates memory pressure to the
994 * host. Host expects the guests to post this status
995 * periodically at 1 second intervals.
996 *
997 * The metrics specified in this protocol are very Windows
998 * specific and so we cook up numbers here to convey our memory
999 * pressure.
1000 */
1001
1002static void post_status(struct hv_dynmem_device *dm)
1003{
1004 struct dm_status status;
K. Y. Srinivasan07315722013-01-25 16:18:47 -08001005 struct sysinfo val;
K. Y. Srinivasanae339332014-04-23 13:53:39 -07001006 unsigned long now = jiffies;
1007 unsigned long last_post = last_post_time;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001008
K. Y. Srinivasane500d152013-02-08 15:57:15 -08001009 if (pressure_report_delay > 0) {
1010 --pressure_report_delay;
1011 return;
1012 }
K. Y. Srinivasanae339332014-04-23 13:53:39 -07001013
1014 if (!time_after(now, (last_post_time + HZ)))
1015 return;
1016
K. Y. Srinivasan07315722013-01-25 16:18:47 -08001017 si_meminfo(&val);
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001018 memset(&status, 0, sizeof(struct dm_status));
1019 status.hdr.type = DM_STATUS_REPORT;
1020 status.hdr.size = sizeof(struct dm_status);
1021 status.hdr.trans_id = atomic_inc_return(&trans_id);
1022
K. Y. Srinivasan07315722013-01-25 16:18:47 -08001023 /*
Vitaly Kuznetsov549fd282015-02-28 11:38:59 -08001024 * The host expects the guest to report free and committed memory.
1025 * Furthermore, the host expects the pressure information to include
1026 * the ballooned out pages. For a given amount of memory that we are
1027 * managing we need to compute a floor below which we should not
1028 * balloon. Compute this and add it to the pressure report.
1029 * We also need to report all offline pages (num_pages_added -
1030 * num_pages_onlined) as committed to the host, otherwise it can try
1031 * asking us to balloon them out.
K. Y. Srinivasan07315722013-01-25 16:18:47 -08001032 */
1033 status.num_avail = val.freeram;
K. Y. Srinivasan1c7db962013-02-08 15:57:16 -08001034 status.num_committed = vm_memory_committed() +
Vitaly Kuznetsov549fd282015-02-28 11:38:59 -08001035 dm->num_pages_ballooned +
1036 (dm->num_pages_added > dm->num_pages_onlined ?
1037 dm->num_pages_added - dm->num_pages_onlined : 0) +
1038 compute_balloon_floor();
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001039
K. Y. Srinivasanc5e22542013-07-14 22:38:12 -07001040 /*
1041 * If our transaction ID is no longer current, just don't
1042 * send the status. This can happen if we were interrupted
1043 * after we picked our transaction ID.
1044 */
1045 if (status.hdr.trans_id != atomic_read(&trans_id))
1046 return;
1047
K. Y. Srinivasanae339332014-04-23 13:53:39 -07001048 /*
1049 * If the last post time that we sampled has changed,
1050 * we have raced, don't post the status.
1051 */
1052 if (last_post != last_post_time)
1053 return;
1054
1055 last_post_time = jiffies;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001056 vmbus_sendpacket(dm->dev->channel, &status,
1057 sizeof(struct dm_status),
1058 (unsigned long)NULL,
1059 VM_PKT_DATA_INBAND, 0);
1060
1061}
1062
Greg Kroah-Hartman989623c2012-11-21 12:46:40 -08001063static void free_balloon_pages(struct hv_dynmem_device *dm,
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001064 union dm_mem_page_range *range_array)
1065{
1066 int num_pages = range_array->finfo.page_cnt;
1067 __u64 start_frame = range_array->finfo.start_page;
1068 struct page *pg;
1069 int i;
1070
1071 for (i = 0; i < num_pages; i++) {
1072 pg = pfn_to_page(i + start_frame);
1073 __free_page(pg);
1074 dm->num_pages_ballooned--;
1075 }
1076}
1077
1078
1079
1080static int alloc_balloon_pages(struct hv_dynmem_device *dm, int num_pages,
1081 struct dm_balloon_response *bl_resp, int alloc_unit,
1082 bool *alloc_error)
1083{
1084 int i = 0;
1085 struct page *pg;
1086
1087 if (num_pages < alloc_unit)
1088 return 0;
1089
1090 for (i = 0; (i * alloc_unit) < num_pages; i++) {
1091 if (bl_resp->hdr.size + sizeof(union dm_mem_page_range) >
1092 PAGE_SIZE)
1093 return i * alloc_unit;
1094
1095 /*
1096 * We execute this code in a thread context. Furthermore,
1097 * we don't want the kernel to try too hard.
1098 */
1099 pg = alloc_pages(GFP_HIGHUSER | __GFP_NORETRY |
1100 __GFP_NOMEMALLOC | __GFP_NOWARN,
1101 get_order(alloc_unit << PAGE_SHIFT));
1102
1103 if (!pg) {
1104 *alloc_error = true;
1105 return i * alloc_unit;
1106 }
1107
1108
1109 dm->num_pages_ballooned += alloc_unit;
1110
K. Y. Srinivasanf766dc12013-03-18 13:51:37 -07001111 /*
1112 * If we allocatted 2M pages; split them so we
1113 * can free them in any order we get.
1114 */
1115
1116 if (alloc_unit != 1)
1117 split_page(pg, get_order(alloc_unit << PAGE_SHIFT));
1118
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001119 bl_resp->range_count++;
1120 bl_resp->range_array[i].finfo.start_page =
1121 page_to_pfn(pg);
1122 bl_resp->range_array[i].finfo.page_cnt = alloc_unit;
1123 bl_resp->hdr.size += sizeof(union dm_mem_page_range);
1124
1125 }
1126
1127 return num_pages;
1128}
1129
1130
1131
K. Y. Srinivasan6571b2d2013-03-15 12:25:40 -07001132static void balloon_up(struct work_struct *dummy)
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001133{
K. Y. Srinivasan6571b2d2013-03-15 12:25:40 -07001134 int num_pages = dm_device.balloon_wrk.num_pages;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001135 int num_ballooned = 0;
1136 struct dm_balloon_response *bl_resp;
1137 int alloc_unit;
1138 int ret;
Dexuan Cuif6712232014-11-24 20:32:43 -08001139 bool alloc_error;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001140 bool done = false;
1141 int i;
Vitaly Kuznetsov530d15b2015-02-28 11:39:00 -08001142 struct sysinfo val;
1143 unsigned long floor;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001144
Dexuan Cuif6712232014-11-24 20:32:43 -08001145 /* The host balloons pages in 2M granularity. */
1146 WARN_ON_ONCE(num_pages % PAGES_IN_2M != 0);
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001147
1148 /*
K. Y. Srinivasanf766dc12013-03-18 13:51:37 -07001149 * We will attempt 2M allocations. However, if we fail to
1150 * allocate 2M chunks, we will go back to 4k allocations.
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001151 */
K. Y. Srinivasanf766dc12013-03-18 13:51:37 -07001152 alloc_unit = 512;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001153
Vitaly Kuznetsov530d15b2015-02-28 11:39:00 -08001154 si_meminfo(&val);
1155 floor = compute_balloon_floor();
1156
1157 /* Refuse to balloon below the floor, keep the 2M granularity. */
1158 if (val.freeram - num_pages < floor) {
1159 num_pages = val.freeram > floor ? (val.freeram - floor) : 0;
1160 num_pages -= num_pages % PAGES_IN_2M;
1161 }
1162
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001163 while (!done) {
1164 bl_resp = (struct dm_balloon_response *)send_buffer;
1165 memset(send_buffer, 0, PAGE_SIZE);
1166 bl_resp->hdr.type = DM_BALLOON_RESPONSE;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001167 bl_resp->hdr.size = sizeof(struct dm_balloon_response);
1168 bl_resp->more_pages = 1;
1169
1170
1171 num_pages -= num_ballooned;
Dexuan Cuif6712232014-11-24 20:32:43 -08001172 alloc_error = false;
K. Y. Srinivasan6571b2d2013-03-15 12:25:40 -07001173 num_ballooned = alloc_balloon_pages(&dm_device, num_pages,
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001174 bl_resp, alloc_unit,
1175 &alloc_error);
1176
Dexuan Cuif6712232014-11-24 20:32:43 -08001177 if (alloc_unit != 1 && num_ballooned == 0) {
K. Y. Srinivasanf766dc12013-03-18 13:51:37 -07001178 alloc_unit = 1;
1179 continue;
1180 }
1181
Dexuan Cuif6712232014-11-24 20:32:43 -08001182 if ((alloc_unit == 1 && alloc_error) ||
1183 (num_ballooned == num_pages)) {
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001184 bl_resp->more_pages = 0;
1185 done = true;
K. Y. Srinivasan6571b2d2013-03-15 12:25:40 -07001186 dm_device.state = DM_INITIALIZED;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001187 }
1188
1189 /*
1190 * We are pushing a lot of data through the channel;
1191 * deal with transient failures caused because of the
1192 * lack of space in the ring buffer.
1193 */
1194
1195 do {
K. Y. Srinivasan20138d6c2013-07-17 17:27:27 -07001196 bl_resp->hdr.trans_id = atomic_inc_return(&trans_id);
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001197 ret = vmbus_sendpacket(dm_device.dev->channel,
1198 bl_resp,
1199 bl_resp->hdr.size,
1200 (unsigned long)NULL,
1201 VM_PKT_DATA_INBAND, 0);
1202
1203 if (ret == -EAGAIN)
1204 msleep(20);
K. Y. Srinivasanae339332014-04-23 13:53:39 -07001205 post_status(&dm_device);
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001206 } while (ret == -EAGAIN);
1207
1208 if (ret) {
1209 /*
1210 * Free up the memory we allocatted.
1211 */
1212 pr_info("Balloon response failed\n");
1213
1214 for (i = 0; i < bl_resp->range_count; i++)
K. Y. Srinivasan6571b2d2013-03-15 12:25:40 -07001215 free_balloon_pages(&dm_device,
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001216 &bl_resp->range_array[i]);
1217
1218 done = true;
1219 }
1220 }
1221
1222}
1223
1224static void balloon_down(struct hv_dynmem_device *dm,
1225 struct dm_unballoon_request *req)
1226{
1227 union dm_mem_page_range *range_array = req->range_array;
1228 int range_count = req->range_count;
1229 struct dm_unballoon_response resp;
1230 int i;
1231
K. Y. Srinivasanae339332014-04-23 13:53:39 -07001232 for (i = 0; i < range_count; i++) {
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001233 free_balloon_pages(dm, &range_array[i]);
K. Y. Srinivasanab3de222015-01-09 23:54:31 -08001234 complete(&dm_device.config_event);
K. Y. Srinivasanae339332014-04-23 13:53:39 -07001235 }
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001236
1237 if (req->more_pages == 1)
1238 return;
1239
1240 memset(&resp, 0, sizeof(struct dm_unballoon_response));
1241 resp.hdr.type = DM_UNBALLOON_RESPONSE;
1242 resp.hdr.trans_id = atomic_inc_return(&trans_id);
1243 resp.hdr.size = sizeof(struct dm_unballoon_response);
1244
1245 vmbus_sendpacket(dm_device.dev->channel, &resp,
1246 sizeof(struct dm_unballoon_response),
1247 (unsigned long)NULL,
1248 VM_PKT_DATA_INBAND, 0);
1249
1250 dm->state = DM_INITIALIZED;
1251}
1252
1253static void balloon_onchannelcallback(void *context);
1254
1255static int dm_thread_func(void *dm_dev)
1256{
1257 struct hv_dynmem_device *dm = dm_dev;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001258
1259 while (!kthread_should_stop()) {
K. Y. Srinivasanab3de222015-01-09 23:54:31 -08001260 wait_for_completion_interruptible_timeout(
K. Y. Srinivasan5dba4c52014-02-13 16:24:33 -08001261 &dm_device.config_event, 1*HZ);
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001262 /*
1263 * The host expects us to post information on the memory
1264 * pressure every second.
1265 */
K. Y. Srinivasanab3de222015-01-09 23:54:31 -08001266 reinit_completion(&dm_device.config_event);
1267 post_status(dm);
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001268 }
1269
1270 return 0;
1271}
1272
1273
1274static void version_resp(struct hv_dynmem_device *dm,
1275 struct dm_version_response *vresp)
1276{
1277 struct dm_version_request version_req;
1278 int ret;
1279
1280 if (vresp->is_accepted) {
1281 /*
1282 * We are done; wakeup the
1283 * context waiting for version
1284 * negotiation.
1285 */
1286 complete(&dm->host_event);
1287 return;
1288 }
1289 /*
1290 * If there are more versions to try, continue
1291 * with negotiations; if not
1292 * shutdown the service since we are not able
1293 * to negotiate a suitable version number
1294 * with the host.
1295 */
1296 if (dm->next_version == 0)
1297 goto version_error;
1298
1299 dm->next_version = 0;
1300 memset(&version_req, 0, sizeof(struct dm_version_request));
1301 version_req.hdr.type = DM_VERSION_REQUEST;
1302 version_req.hdr.size = sizeof(struct dm_version_request);
1303 version_req.hdr.trans_id = atomic_inc_return(&trans_id);
1304 version_req.version.version = DYNMEM_PROTOCOL_VERSION_WIN7;
1305 version_req.is_last_attempt = 1;
1306
1307 ret = vmbus_sendpacket(dm->dev->channel, &version_req,
1308 sizeof(struct dm_version_request),
1309 (unsigned long)NULL,
1310 VM_PKT_DATA_INBAND, 0);
1311
1312 if (ret)
1313 goto version_error;
1314
1315 return;
1316
1317version_error:
1318 dm->state = DM_INIT_ERROR;
1319 complete(&dm->host_event);
1320}
1321
1322static void cap_resp(struct hv_dynmem_device *dm,
1323 struct dm_capabilities_resp_msg *cap_resp)
1324{
1325 if (!cap_resp->is_accepted) {
1326 pr_info("Capabilities not accepted by host\n");
1327 dm->state = DM_INIT_ERROR;
1328 }
1329 complete(&dm->host_event);
1330}
1331
1332static void balloon_onchannelcallback(void *context)
1333{
1334 struct hv_device *dev = context;
1335 u32 recvlen;
1336 u64 requestid;
1337 struct dm_message *dm_msg;
1338 struct dm_header *dm_hdr;
1339 struct hv_dynmem_device *dm = hv_get_drvdata(dev);
K. Y. Srinivasan6571b2d2013-03-15 12:25:40 -07001340 struct dm_balloon *bal_msg;
K. Y. Srinivasanc51af822013-03-15 12:25:41 -07001341 struct dm_hot_add *ha_msg;
1342 union dm_mem_page_range *ha_pg_range;
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -07001343 union dm_mem_page_range *ha_region;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001344
1345 memset(recv_buffer, 0, sizeof(recv_buffer));
1346 vmbus_recvpacket(dev->channel, recv_buffer,
1347 PAGE_SIZE, &recvlen, &requestid);
1348
1349 if (recvlen > 0) {
1350 dm_msg = (struct dm_message *)recv_buffer;
1351 dm_hdr = &dm_msg->hdr;
1352
1353 switch (dm_hdr->type) {
1354 case DM_VERSION_RESPONSE:
1355 version_resp(dm,
1356 (struct dm_version_response *)dm_msg);
1357 break;
1358
1359 case DM_CAPABILITIES_RESPONSE:
1360 cap_resp(dm,
1361 (struct dm_capabilities_resp_msg *)dm_msg);
1362 break;
1363
1364 case DM_BALLOON_REQUEST:
K. Y. Srinivasan6571b2d2013-03-15 12:25:40 -07001365 if (dm->state == DM_BALLOON_UP)
1366 pr_warn("Currently ballooning\n");
1367 bal_msg = (struct dm_balloon *)recv_buffer;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001368 dm->state = DM_BALLOON_UP;
K. Y. Srinivasan6571b2d2013-03-15 12:25:40 -07001369 dm_device.balloon_wrk.num_pages = bal_msg->num_pages;
1370 schedule_work(&dm_device.balloon_wrk.wrk);
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001371 break;
1372
1373 case DM_UNBALLOON_REQUEST:
1374 dm->state = DM_BALLOON_DOWN;
1375 balloon_down(dm,
1376 (struct dm_unballoon_request *)recv_buffer);
1377 break;
1378
1379 case DM_MEM_HOT_ADD_REQUEST:
K. Y. Srinivasanc51af822013-03-15 12:25:41 -07001380 if (dm->state == DM_HOT_ADD)
1381 pr_warn("Currently hot-adding\n");
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001382 dm->state = DM_HOT_ADD;
K. Y. Srinivasanc51af822013-03-15 12:25:41 -07001383 ha_msg = (struct dm_hot_add *)recv_buffer;
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -07001384 if (ha_msg->hdr.size == sizeof(struct dm_hot_add)) {
1385 /*
1386 * This is a normal hot-add request specifying
1387 * hot-add memory.
1388 */
1389 ha_pg_range = &ha_msg->range;
1390 dm->ha_wrk.ha_page_range = *ha_pg_range;
1391 dm->ha_wrk.ha_region_range.page_range = 0;
1392 } else {
1393 /*
1394 * Host is specifying that we first hot-add
1395 * a region and then partially populate this
1396 * region.
1397 */
1398 dm->host_specified_ha_region = true;
1399 ha_pg_range = &ha_msg->range;
1400 ha_region = &ha_pg_range[1];
1401 dm->ha_wrk.ha_page_range = *ha_pg_range;
1402 dm->ha_wrk.ha_region_range = *ha_region;
1403 }
K. Y. Srinivasanc51af822013-03-15 12:25:41 -07001404 schedule_work(&dm_device.ha_wrk.wrk);
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001405 break;
1406
1407 case DM_INFO_MESSAGE:
1408 process_info(dm, (struct dm_info_msg *)dm_msg);
1409 break;
1410
1411 default:
1412 pr_err("Unhandled message: type: %d\n", dm_hdr->type);
1413
1414 }
1415 }
1416
1417}
1418
1419static int balloon_probe(struct hv_device *dev,
1420 const struct hv_vmbus_device_id *dev_id)
1421{
Nicholas Mc Guireb057b3a2015-02-27 11:26:03 -08001422 int ret;
1423 unsigned long t;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001424 struct dm_version_request version_req;
1425 struct dm_capabilities cap_msg;
1426
1427 do_hot_add = hot_add;
1428
1429 /*
1430 * First allocate a send buffer.
1431 */
1432
1433 send_buffer = kmalloc(PAGE_SIZE, GFP_KERNEL);
1434 if (!send_buffer)
1435 return -ENOMEM;
1436
1437 ret = vmbus_open(dev->channel, dm_ring_size, dm_ring_size, NULL, 0,
1438 balloon_onchannelcallback, dev);
1439
1440 if (ret)
K. Y. Srinivasan33080c12012-12-11 11:07:17 -08001441 goto probe_error0;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001442
1443 dm_device.dev = dev;
1444 dm_device.state = DM_INITIALIZING;
1445 dm_device.next_version = DYNMEM_PROTOCOL_VERSION_WIN7;
1446 init_completion(&dm_device.host_event);
1447 init_completion(&dm_device.config_event);
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -07001448 INIT_LIST_HEAD(&dm_device.ha_region_list);
K. Y. Srinivasan22f88472015-01-09 23:54:30 -08001449 mutex_init(&dm_device.ha_region_mutex);
K. Y. Srinivasan6571b2d2013-03-15 12:25:40 -07001450 INIT_WORK(&dm_device.balloon_wrk.wrk, balloon_up);
K. Y. Srinivasanc51af822013-03-15 12:25:41 -07001451 INIT_WORK(&dm_device.ha_wrk.wrk, hot_add_req);
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -07001452 dm_device.host_specified_ha_region = false;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001453
1454 dm_device.thread =
1455 kthread_run(dm_thread_func, &dm_device, "hv_balloon");
1456 if (IS_ERR(dm_device.thread)) {
1457 ret = PTR_ERR(dm_device.thread);
K. Y. Srinivasan33080c12012-12-11 11:07:17 -08001458 goto probe_error1;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001459 }
1460
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -07001461#ifdef CONFIG_MEMORY_HOTPLUG
1462 set_online_page_callback(&hv_online_page);
K. Y. Srinivasan22f88472015-01-09 23:54:30 -08001463 register_memory_notifier(&hv_memory_nb);
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -07001464#endif
1465
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001466 hv_set_drvdata(dev, &dm_device);
1467 /*
1468 * Initiate the hand shake with the host and negotiate
1469 * a version that the host can support. We start with the
1470 * highest version number and go down if the host cannot
1471 * support it.
1472 */
1473 memset(&version_req, 0, sizeof(struct dm_version_request));
1474 version_req.hdr.type = DM_VERSION_REQUEST;
1475 version_req.hdr.size = sizeof(struct dm_version_request);
1476 version_req.hdr.trans_id = atomic_inc_return(&trans_id);
1477 version_req.version.version = DYNMEM_PROTOCOL_VERSION_WIN8;
1478 version_req.is_last_attempt = 0;
1479
1480 ret = vmbus_sendpacket(dev->channel, &version_req,
1481 sizeof(struct dm_version_request),
1482 (unsigned long)NULL,
K. Y. Srinivasan7a64b862013-03-15 12:25:39 -07001483 VM_PKT_DATA_INBAND, 0);
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001484 if (ret)
K. Y. Srinivasan33080c12012-12-11 11:07:17 -08001485 goto probe_error2;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001486
1487 t = wait_for_completion_timeout(&dm_device.host_event, 5*HZ);
1488 if (t == 0) {
1489 ret = -ETIMEDOUT;
K. Y. Srinivasan33080c12012-12-11 11:07:17 -08001490 goto probe_error2;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001491 }
1492
1493 /*
1494 * If we could not negotiate a compatible version with the host
1495 * fail the probe function.
1496 */
1497 if (dm_device.state == DM_INIT_ERROR) {
1498 ret = -ETIMEDOUT;
K. Y. Srinivasan33080c12012-12-11 11:07:17 -08001499 goto probe_error2;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001500 }
1501 /*
1502 * Now submit our capabilities to the host.
1503 */
1504 memset(&cap_msg, 0, sizeof(struct dm_capabilities));
1505 cap_msg.hdr.type = DM_CAPABILITIES_REPORT;
1506 cap_msg.hdr.size = sizeof(struct dm_capabilities);
1507 cap_msg.hdr.trans_id = atomic_inc_return(&trans_id);
1508
1509 cap_msg.caps.cap_bits.balloon = 1;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001510 cap_msg.caps.cap_bits.hot_add = 1;
1511
1512 /*
K. Y. Srinivasan647965a2013-03-29 07:36:11 -07001513 * Specify our alignment requirements as it relates
1514 * memory hot-add. Specify 128MB alignment.
1515 */
1516 cap_msg.caps.cap_bits.hot_add_alignment = 7;
1517
1518 /*
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001519 * Currently the host does not use these
1520 * values and we set them to what is done in the
1521 * Windows driver.
1522 */
1523 cap_msg.min_page_cnt = 0;
1524 cap_msg.max_page_number = -1;
1525
1526 ret = vmbus_sendpacket(dev->channel, &cap_msg,
1527 sizeof(struct dm_capabilities),
1528 (unsigned long)NULL,
K. Y. Srinivasan7a64b862013-03-15 12:25:39 -07001529 VM_PKT_DATA_INBAND, 0);
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001530 if (ret)
K. Y. Srinivasan33080c12012-12-11 11:07:17 -08001531 goto probe_error2;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001532
1533 t = wait_for_completion_timeout(&dm_device.host_event, 5*HZ);
1534 if (t == 0) {
1535 ret = -ETIMEDOUT;
K. Y. Srinivasan33080c12012-12-11 11:07:17 -08001536 goto probe_error2;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001537 }
1538
1539 /*
1540 * If the host does not like our capabilities,
1541 * fail the probe function.
1542 */
1543 if (dm_device.state == DM_INIT_ERROR) {
1544 ret = -ETIMEDOUT;
K. Y. Srinivasan33080c12012-12-11 11:07:17 -08001545 goto probe_error2;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001546 }
1547
1548 dm_device.state = DM_INITIALIZED;
1549
1550 return 0;
1551
K. Y. Srinivasan33080c12012-12-11 11:07:17 -08001552probe_error2:
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -07001553#ifdef CONFIG_MEMORY_HOTPLUG
1554 restore_online_page_callback(&hv_online_page);
1555#endif
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001556 kthread_stop(dm_device.thread);
1557
K. Y. Srinivasan33080c12012-12-11 11:07:17 -08001558probe_error1:
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001559 vmbus_close(dev->channel);
K. Y. Srinivasan33080c12012-12-11 11:07:17 -08001560probe_error0:
1561 kfree(send_buffer);
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001562 return ret;
1563}
1564
1565static int balloon_remove(struct hv_device *dev)
1566{
1567 struct hv_dynmem_device *dm = hv_get_drvdata(dev);
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -07001568 struct list_head *cur, *tmp;
1569 struct hv_hotadd_state *has;
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001570
1571 if (dm->num_pages_ballooned != 0)
1572 pr_warn("Ballooned pages: %d\n", dm->num_pages_ballooned);
1573
K. Y. Srinivasan6571b2d2013-03-15 12:25:40 -07001574 cancel_work_sync(&dm->balloon_wrk.wrk);
K. Y. Srinivasanc51af822013-03-15 12:25:41 -07001575 cancel_work_sync(&dm->ha_wrk.wrk);
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -07001576
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001577 vmbus_close(dev->channel);
1578 kthread_stop(dm->thread);
K. Y. Srinivasan33080c12012-12-11 11:07:17 -08001579 kfree(send_buffer);
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -07001580#ifdef CONFIG_MEMORY_HOTPLUG
1581 restore_online_page_callback(&hv_online_page);
K. Y. Srinivasan22f88472015-01-09 23:54:30 -08001582 unregister_memory_notifier(&hv_memory_nb);
K. Y. Srinivasan1cac8cd2013-03-15 12:25:43 -07001583#endif
1584 list_for_each_safe(cur, tmp, &dm->ha_region_list) {
1585 has = list_entry(cur, struct hv_hotadd_state, list);
1586 list_del(&has->list);
1587 kfree(has);
1588 }
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001589
1590 return 0;
1591}
1592
1593static const struct hv_vmbus_device_id id_table[] = {
1594 /* Dynamic Memory Class ID */
1595 /* 525074DC-8985-46e2-8057-A307DC18A502 */
K. Y. Srinivasand13984e2013-01-23 17:42:41 -08001596 { HV_DM_GUID, },
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001597 { },
1598};
1599
1600MODULE_DEVICE_TABLE(vmbus, id_table);
1601
1602static struct hv_driver balloon_drv = {
1603 .name = "hv_balloon",
1604 .id_table = id_table,
1605 .probe = balloon_probe,
1606 .remove = balloon_remove,
1607};
1608
1609static int __init init_balloon_drv(void)
1610{
1611
1612 return vmbus_driver_register(&balloon_drv);
1613}
1614
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001615module_init(init_balloon_drv);
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001616
1617MODULE_DESCRIPTION("Hyper-V Balloon");
K. Y. Srinivasan9aa8b502012-11-14 01:09:02 -08001618MODULE_LICENSE("GPL");