3 * Copyright IBM Corporation, 2012
4 * Author Aneesh Kumar K.V <aneesh.kumar@linux.vnet.ibm.com>
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms of version 2.1 of the GNU Lesser General Public License
8 * as published by the Free Software Foundation.
10 * This program is distributed in the hope that it would be useful, but
11 * WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
16 #include <linux/cgroup.h>
17 #include <linux/slab.h>
18 #include <linux/hugetlb.h>
19 #include <linux/hugetlb_cgroup.h>
21 struct hugetlb_cgroup
{
22 struct cgroup_subsys_state css
;
24 * the counter to account for hugepages from hugetlb.
26 struct res_counter hugepage
[HUGE_MAX_HSTATE
];
29 #define MEMFILE_PRIVATE(x, val) (((x) << 16) | (val))
30 #define MEMFILE_IDX(val) (((val) >> 16) & 0xffff)
31 #define MEMFILE_ATTR(val) ((val) & 0xffff)
33 struct cgroup_subsys hugetlb_subsys __read_mostly
;
34 static struct hugetlb_cgroup
*root_h_cgroup __read_mostly
;
37 struct hugetlb_cgroup
*hugetlb_cgroup_from_css(struct cgroup_subsys_state
*s
)
39 return container_of(s
, struct hugetlb_cgroup
, css
);
43 struct hugetlb_cgroup
*hugetlb_cgroup_from_cgroup(struct cgroup
*cgroup
)
45 return hugetlb_cgroup_from_css(cgroup_subsys_state(cgroup
,
50 struct hugetlb_cgroup
*hugetlb_cgroup_from_task(struct task_struct
*task
)
52 return hugetlb_cgroup_from_css(task_subsys_state(task
,
56 static inline bool hugetlb_cgroup_is_root(struct hugetlb_cgroup
*h_cg
)
58 return (h_cg
== root_h_cgroup
);
61 static inline struct hugetlb_cgroup
*parent_hugetlb_cgroup(struct cgroup
*cg
)
65 return hugetlb_cgroup_from_cgroup(cg
->parent
);
68 static inline bool hugetlb_cgroup_have_usage(struct cgroup
*cg
)
71 struct hugetlb_cgroup
*h_cg
= hugetlb_cgroup_from_cgroup(cg
);
73 for (idx
= 0; idx
< hugetlb_max_hstate
; idx
++) {
74 if ((res_counter_read_u64(&h_cg
->hugepage
[idx
], RES_USAGE
)) > 0)
80 static struct cgroup_subsys_state
*hugetlb_cgroup_create(struct cgroup
*cgroup
)
83 struct cgroup
*parent_cgroup
;
84 struct hugetlb_cgroup
*h_cgroup
, *parent_h_cgroup
;
86 h_cgroup
= kzalloc(sizeof(*h_cgroup
), GFP_KERNEL
);
88 return ERR_PTR(-ENOMEM
);
90 parent_cgroup
= cgroup
->parent
;
92 parent_h_cgroup
= hugetlb_cgroup_from_cgroup(parent_cgroup
);
93 for (idx
= 0; idx
< HUGE_MAX_HSTATE
; idx
++)
94 res_counter_init(&h_cgroup
->hugepage
[idx
],
95 &parent_h_cgroup
->hugepage
[idx
]);
97 root_h_cgroup
= h_cgroup
;
98 for (idx
= 0; idx
< HUGE_MAX_HSTATE
; idx
++)
99 res_counter_init(&h_cgroup
->hugepage
[idx
], NULL
);
101 return &h_cgroup
->css
;
104 static void hugetlb_cgroup_destroy(struct cgroup
*cgroup
)
106 struct hugetlb_cgroup
*h_cgroup
;
108 h_cgroup
= hugetlb_cgroup_from_cgroup(cgroup
);
114 * Should be called with hugetlb_lock held.
115 * Since we are holding hugetlb_lock, pages cannot get moved from
116 * active list or uncharged from the cgroup, So no need to get
117 * page reference and test for page active here. This function
120 static void hugetlb_cgroup_move_parent(int idx
, struct cgroup
*cgroup
,
124 struct res_counter
*counter
;
125 struct res_counter
*fail_res
;
126 struct hugetlb_cgroup
*page_hcg
;
127 struct hugetlb_cgroup
*h_cg
= hugetlb_cgroup_from_cgroup(cgroup
);
128 struct hugetlb_cgroup
*parent
= parent_hugetlb_cgroup(cgroup
);
130 page_hcg
= hugetlb_cgroup_from_page(page
);
132 * We can have pages in active list without any cgroup
133 * ie, hugepage with less than 3 pages. We can safely
134 * ignore those pages.
136 if (!page_hcg
|| page_hcg
!= h_cg
)
139 csize
= PAGE_SIZE
<< compound_order(page
);
141 parent
= root_h_cgroup
;
142 /* root has no limit */
143 res_counter_charge_nofail(&parent
->hugepage
[idx
],
146 counter
= &h_cg
->hugepage
[idx
];
147 res_counter_uncharge_until(counter
, counter
->parent
, csize
);
149 set_hugetlb_cgroup(page
, parent
);
155 * Force the hugetlb cgroup to empty the hugetlb resources by moving them to
158 static int hugetlb_cgroup_pre_destroy(struct cgroup
*cgroup
)
162 int ret
= 0, idx
= 0;
165 if (cgroup_task_count(cgroup
) ||
166 !list_empty(&cgroup
->children
)) {
171 spin_lock(&hugetlb_lock
);
172 list_for_each_entry(page
, &h
->hugepage_activelist
, lru
)
173 hugetlb_cgroup_move_parent(idx
, cgroup
, page
);
175 spin_unlock(&hugetlb_lock
);
179 } while (hugetlb_cgroup_have_usage(cgroup
));
184 int hugetlb_cgroup_charge_cgroup(int idx
, unsigned long nr_pages
,
185 struct hugetlb_cgroup
**ptr
)
188 struct res_counter
*fail_res
;
189 struct hugetlb_cgroup
*h_cg
= NULL
;
190 unsigned long csize
= nr_pages
* PAGE_SIZE
;
192 if (hugetlb_cgroup_disabled())
195 * We don't charge any cgroup if the compound page have less
198 if (huge_page_order(&hstates
[idx
]) < HUGETLB_CGROUP_MIN_ORDER
)
202 h_cg
= hugetlb_cgroup_from_task(current
);
203 if (!css_tryget(&h_cg
->css
)) {
209 ret
= res_counter_charge(&h_cg
->hugepage
[idx
], csize
, &fail_res
);
216 /* Should be called with hugetlb_lock held */
217 void hugetlb_cgroup_commit_charge(int idx
, unsigned long nr_pages
,
218 struct hugetlb_cgroup
*h_cg
,
221 if (hugetlb_cgroup_disabled() || !h_cg
)
224 set_hugetlb_cgroup(page
, h_cg
);
229 * Should be called with hugetlb_lock held
231 void hugetlb_cgroup_uncharge_page(int idx
, unsigned long nr_pages
,
234 struct hugetlb_cgroup
*h_cg
;
235 unsigned long csize
= nr_pages
* PAGE_SIZE
;
237 if (hugetlb_cgroup_disabled())
239 VM_BUG_ON(!spin_is_locked(&hugetlb_lock
));
240 h_cg
= hugetlb_cgroup_from_page(page
);
243 set_hugetlb_cgroup(page
, NULL
);
244 res_counter_uncharge(&h_cg
->hugepage
[idx
], csize
);
248 void hugetlb_cgroup_uncharge_cgroup(int idx
, unsigned long nr_pages
,
249 struct hugetlb_cgroup
*h_cg
)
251 unsigned long csize
= nr_pages
* PAGE_SIZE
;
253 if (hugetlb_cgroup_disabled() || !h_cg
)
256 if (huge_page_order(&hstates
[idx
]) < HUGETLB_CGROUP_MIN_ORDER
)
259 res_counter_uncharge(&h_cg
->hugepage
[idx
], csize
);
263 static ssize_t
hugetlb_cgroup_read(struct cgroup
*cgroup
, struct cftype
*cft
,
264 struct file
*file
, char __user
*buf
,
265 size_t nbytes
, loff_t
*ppos
)
270 struct hugetlb_cgroup
*h_cg
= hugetlb_cgroup_from_cgroup(cgroup
);
272 idx
= MEMFILE_IDX(cft
->private);
273 name
= MEMFILE_ATTR(cft
->private);
275 val
= res_counter_read_u64(&h_cg
->hugepage
[idx
], name
);
276 len
= scnprintf(str
, sizeof(str
), "%llu\n", (unsigned long long)val
);
277 return simple_read_from_buffer(buf
, nbytes
, ppos
, str
, len
);
280 static int hugetlb_cgroup_write(struct cgroup
*cgroup
, struct cftype
*cft
,
284 unsigned long long val
;
285 struct hugetlb_cgroup
*h_cg
= hugetlb_cgroup_from_cgroup(cgroup
);
287 idx
= MEMFILE_IDX(cft
->private);
288 name
= MEMFILE_ATTR(cft
->private);
292 if (hugetlb_cgroup_is_root(h_cg
)) {
293 /* Can't set limit on root */
297 /* This function does all necessary parse...reuse it */
298 ret
= res_counter_memparse_write_strategy(buffer
, &val
);
301 ret
= res_counter_set_limit(&h_cg
->hugepage
[idx
], val
);
310 static int hugetlb_cgroup_reset(struct cgroup
*cgroup
, unsigned int event
)
312 int idx
, name
, ret
= 0;
313 struct hugetlb_cgroup
*h_cg
= hugetlb_cgroup_from_cgroup(cgroup
);
315 idx
= MEMFILE_IDX(event
);
316 name
= MEMFILE_ATTR(event
);
320 res_counter_reset_max(&h_cg
->hugepage
[idx
]);
323 res_counter_reset_failcnt(&h_cg
->hugepage
[idx
]);
332 static char *mem_fmt(char *buf
, int size
, unsigned long hsize
)
334 if (hsize
>= (1UL << 30))
335 snprintf(buf
, size
, "%luGB", hsize
>> 30);
336 else if (hsize
>= (1UL << 20))
337 snprintf(buf
, size
, "%luMB", hsize
>> 20);
339 snprintf(buf
, size
, "%luKB", hsize
>> 10);
343 int __init
hugetlb_cgroup_file_init(int idx
)
347 struct hstate
*h
= &hstates
[idx
];
349 /* format the size */
350 mem_fmt(buf
, 32, huge_page_size(h
));
352 /* Add the limit file */
353 cft
= &h
->cgroup_files
[0];
354 snprintf(cft
->name
, MAX_CFTYPE_NAME
, "%s.limit_in_bytes", buf
);
355 cft
->private = MEMFILE_PRIVATE(idx
, RES_LIMIT
);
356 cft
->read
= hugetlb_cgroup_read
;
357 cft
->write_string
= hugetlb_cgroup_write
;
359 /* Add the usage file */
360 cft
= &h
->cgroup_files
[1];
361 snprintf(cft
->name
, MAX_CFTYPE_NAME
, "%s.usage_in_bytes", buf
);
362 cft
->private = MEMFILE_PRIVATE(idx
, RES_USAGE
);
363 cft
->read
= hugetlb_cgroup_read
;
365 /* Add the MAX usage file */
366 cft
= &h
->cgroup_files
[2];
367 snprintf(cft
->name
, MAX_CFTYPE_NAME
, "%s.max_usage_in_bytes", buf
);
368 cft
->private = MEMFILE_PRIVATE(idx
, RES_MAX_USAGE
);
369 cft
->trigger
= hugetlb_cgroup_reset
;
370 cft
->read
= hugetlb_cgroup_read
;
372 /* Add the failcntfile */
373 cft
= &h
->cgroup_files
[3];
374 snprintf(cft
->name
, MAX_CFTYPE_NAME
, "%s.failcnt", buf
);
375 cft
->private = MEMFILE_PRIVATE(idx
, RES_FAILCNT
);
376 cft
->trigger
= hugetlb_cgroup_reset
;
377 cft
->read
= hugetlb_cgroup_read
;
379 /* NULL terminate the last cft */
380 cft
= &h
->cgroup_files
[4];
381 memset(cft
, 0, sizeof(*cft
));
383 WARN_ON(cgroup_add_cftypes(&hugetlb_subsys
, h
->cgroup_files
));
389 * hugetlb_lock will make sure a parallel cgroup rmdir won't happen
390 * when we migrate hugepages
392 void hugetlb_cgroup_migrate(struct page
*oldhpage
, struct page
*newhpage
)
394 struct hugetlb_cgroup
*h_cg
;
395 struct hstate
*h
= page_hstate(oldhpage
);
397 if (hugetlb_cgroup_disabled())
400 VM_BUG_ON(!PageHuge(oldhpage
));
401 spin_lock(&hugetlb_lock
);
402 h_cg
= hugetlb_cgroup_from_page(oldhpage
);
403 set_hugetlb_cgroup(oldhpage
, NULL
);
405 /* move the h_cg details to new cgroup */
406 set_hugetlb_cgroup(newhpage
, h_cg
);
407 list_move(&newhpage
->lru
, &h
->hugepage_activelist
);
408 spin_unlock(&hugetlb_lock
);
412 struct cgroup_subsys hugetlb_subsys
= {
414 .create
= hugetlb_cgroup_create
,
415 .pre_destroy
= hugetlb_cgroup_pre_destroy
,
416 .destroy
= hugetlb_cgroup_destroy
,
417 .subsys_id
= hugetlb_subsys_id
,