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mm: Fix MREMAP_DONTUNMAP accounting on VMA merge
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b2441318 1// SPDX-License-Identifier: GPL-2.0
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2/*
3 * Lockless hierarchical page accounting & limiting
4 *
5 * Copyright (C) 2014 Red Hat, Inc., Johannes Weiner
6 */
7
8#include <linux/page_counter.h>
9#include <linux/atomic.h>
10#include <linux/kernel.h>
11#include <linux/string.h>
12#include <linux/sched.h>
13#include <linux/bug.h>
14#include <asm/page.h>
15
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16static void propagate_protected_usage(struct page_counter *c,
17 unsigned long usage)
23067153 18{
bf8d5d52 19 unsigned long protected, old_protected;
c3d53200 20 unsigned long low, min;
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21 long delta;
22
23 if (!c->parent)
24 return;
25
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26 min = READ_ONCE(c->min);
27 if (min || atomic_long_read(&c->min_usage)) {
28 protected = min(usage, min);
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29 old_protected = atomic_long_xchg(&c->min_usage, protected);
30 delta = protected - old_protected;
31 if (delta)
32 atomic_long_add(delta, &c->parent->children_min_usage);
33 }
23067153 34
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35 low = READ_ONCE(c->low);
36 if (low || atomic_long_read(&c->low_usage)) {
37 protected = min(usage, low);
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38 old_protected = atomic_long_xchg(&c->low_usage, protected);
39 delta = protected - old_protected;
40 if (delta)
41 atomic_long_add(delta, &c->parent->children_low_usage);
42 }
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43}
44
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45/**
46 * page_counter_cancel - take pages out of the local counter
47 * @counter: counter
48 * @nr_pages: number of pages to cancel
3e32cb2e 49 */
64f21993 50void page_counter_cancel(struct page_counter *counter, unsigned long nr_pages)
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51{
52 long new;
53
bbec2e15 54 new = atomic_long_sub_return(nr_pages, &counter->usage);
bf8d5d52 55 propagate_protected_usage(counter, new);
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56 /* More uncharges than charges? */
57 WARN_ON_ONCE(new < 0);
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58}
59
60/**
61 * page_counter_charge - hierarchically charge pages
62 * @counter: counter
63 * @nr_pages: number of pages to charge
64 *
65 * NOTE: This does not consider any configured counter limits.
66 */
67void page_counter_charge(struct page_counter *counter, unsigned long nr_pages)
68{
69 struct page_counter *c;
70
71 for (c = counter; c; c = c->parent) {
72 long new;
73
bbec2e15 74 new = atomic_long_add_return(nr_pages, &c->usage);
bf8d5d52 75 propagate_protected_usage(counter, new);
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76 /*
77 * This is indeed racy, but we can live with some
78 * inaccuracy in the watermark.
79 */
80 if (new > c->watermark)
81 c->watermark = new;
82 }
83}
84
85/**
86 * page_counter_try_charge - try to hierarchically charge pages
87 * @counter: counter
88 * @nr_pages: number of pages to charge
89 * @fail: points first counter to hit its limit, if any
90 *
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91 * Returns %true on success, or %false and @fail if the counter or one
92 * of its ancestors has hit its configured limit.
3e32cb2e 93 */
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94bool page_counter_try_charge(struct page_counter *counter,
95 unsigned long nr_pages,
96 struct page_counter **fail)
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97{
98 struct page_counter *c;
99
100 for (c = counter; c; c = c->parent) {
101 long new;
102 /*
103 * Charge speculatively to avoid an expensive CAS. If
104 * a bigger charge fails, it might falsely lock out a
105 * racing smaller charge and send it into reclaim
106 * early, but the error is limited to the difference
107 * between the two sizes, which is less than 2M/4M in
108 * case of a THP locking out a regular page charge.
109 *
110 * The atomic_long_add_return() implies a full memory
111 * barrier between incrementing the count and reading
112 * the limit. When racing with page_counter_limit(),
113 * we either see the new limit or the setter sees the
114 * counter has changed and retries.
115 */
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116 new = atomic_long_add_return(nr_pages, &c->usage);
117 if (new > c->max) {
118 atomic_long_sub(nr_pages, &c->usage);
bf8d5d52 119 propagate_protected_usage(counter, new);
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120 /*
121 * This is racy, but we can live with some
122 * inaccuracy in the failcnt.
123 */
124 c->failcnt++;
125 *fail = c;
126 goto failed;
127 }
bf8d5d52 128 propagate_protected_usage(counter, new);
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129 /*
130 * Just like with failcnt, we can live with some
131 * inaccuracy in the watermark.
132 */
133 if (new > c->watermark)
134 c->watermark = new;
135 }
6071ca52 136 return true;
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137
138failed:
139 for (c = counter; c != *fail; c = c->parent)
140 page_counter_cancel(c, nr_pages);
141
6071ca52 142 return false;
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143}
144
145/**
146 * page_counter_uncharge - hierarchically uncharge pages
147 * @counter: counter
148 * @nr_pages: number of pages to uncharge
3e32cb2e 149 */
64f21993 150void page_counter_uncharge(struct page_counter *counter, unsigned long nr_pages)
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151{
152 struct page_counter *c;
3e32cb2e 153
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154 for (c = counter; c; c = c->parent)
155 page_counter_cancel(c, nr_pages);
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156}
157
158/**
bbec2e15 159 * page_counter_set_max - set the maximum number of pages allowed
3e32cb2e 160 * @counter: counter
bbec2e15 161 * @nr_pages: limit to set
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162 *
163 * Returns 0 on success, -EBUSY if the current number of pages on the
164 * counter already exceeds the specified limit.
165 *
166 * The caller must serialize invocations on the same counter.
167 */
bbec2e15 168int page_counter_set_max(struct page_counter *counter, unsigned long nr_pages)
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169{
170 for (;;) {
171 unsigned long old;
bbec2e15 172 long usage;
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173
174 /*
175 * Update the limit while making sure that it's not
176 * below the concurrently-changing counter value.
177 *
178 * The xchg implies two full memory barriers before
179 * and after, so the read-swap-read is ordered and
180 * ensures coherency with page_counter_try_charge():
181 * that function modifies the count before checking
182 * the limit, so if it sees the old limit, we see the
183 * modified counter and retry.
184 */
bbec2e15 185 usage = atomic_long_read(&counter->usage);
3e32cb2e 186
bbec2e15 187 if (usage > nr_pages)
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188 return -EBUSY;
189
bbec2e15 190 old = xchg(&counter->max, nr_pages);
3e32cb2e 191
bbec2e15 192 if (atomic_long_read(&counter->usage) <= usage)
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193 return 0;
194
bbec2e15 195 counter->max = old;
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196 cond_resched();
197 }
198}
199
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200/**
201 * page_counter_set_min - set the amount of protected memory
202 * @counter: counter
203 * @nr_pages: value to set
204 *
205 * The caller must serialize invocations on the same counter.
206 */
207void page_counter_set_min(struct page_counter *counter, unsigned long nr_pages)
208{
209 struct page_counter *c;
210
c3d53200 211 WRITE_ONCE(counter->min, nr_pages);
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212
213 for (c = counter; c; c = c->parent)
214 propagate_protected_usage(c, atomic_long_read(&c->usage));
215}
216
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217/**
218 * page_counter_set_low - set the amount of protected memory
219 * @counter: counter
220 * @nr_pages: value to set
221 *
222 * The caller must serialize invocations on the same counter.
223 */
224void page_counter_set_low(struct page_counter *counter, unsigned long nr_pages)
225{
226 struct page_counter *c;
227
f86b810c 228 WRITE_ONCE(counter->low, nr_pages);
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229
230 for (c = counter; c; c = c->parent)
bf8d5d52 231 propagate_protected_usage(c, atomic_long_read(&c->usage));
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232}
233
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234/**
235 * page_counter_memparse - memparse() for page counter limits
236 * @buf: string to parse
650c5e56 237 * @max: string meaning maximum possible value
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238 * @nr_pages: returns the result in number of pages
239 *
240 * Returns -EINVAL, or 0 and @nr_pages on success. @nr_pages will be
241 * limited to %PAGE_COUNTER_MAX.
242 */
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243int page_counter_memparse(const char *buf, const char *max,
244 unsigned long *nr_pages)
3e32cb2e 245{
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246 char *end;
247 u64 bytes;
248
650c5e56 249 if (!strcmp(buf, max)) {
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250 *nr_pages = PAGE_COUNTER_MAX;
251 return 0;
252 }
253
254 bytes = memparse(buf, &end);
255 if (*end != '\0')
256 return -EINVAL;
257
258 *nr_pages = min(bytes / PAGE_SIZE, (u64)PAGE_COUNTER_MAX);
259
260 return 0;
261}