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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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50bdd430c2
It is useful to know how many charges are still left after a call to res_counter_uncharge. While it is possible to issue a res_counter_read after uncharge, this can be racy. If we need, for instance, to take some action when the counters drop down to 0, only one of the callers should see it. This is the same semantics as the atomic variables in the kernel. Since the current return value is void, we don't need to worry about anything breaking due to this change: nobody relied on that, and only users appearing from now on will be checking this value. Signed-off-by: Glauber Costa <glommer@parallels.com> Reviewed-by: Michal Hocko <mhocko@suse.cz> Acked-by: Kamezawa Hiroyuki <kamezawa.hiroyu@jp.fujitsu.com> Acked-by: David Rientjes <rientjes@google.com> Cc: Johannes Weiner <hannes@cmpxchg.org> Cc: Suleiman Souhlal <suleiman@google.com> Cc: Tejun Heo <tj@kernel.org> Cc: Christoph Lameter <cl@linux.com> Cc: Frederic Weisbecker <fweisbec@redhat.com> Cc: Greg Thelen <gthelen@google.com> Cc: JoonSoo Kim <js1304@gmail.com> Cc: Mel Gorman <mel@csn.ul.ie> Cc: Pekka Enberg <penberg@cs.helsinki.fi> Cc: Rik van Riel <riel@redhat.com> Signed-off-by: Andrew Morton <akpm@linux-foundation.org> Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
201 lines
4.3 KiB
C
201 lines
4.3 KiB
C
/*
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* resource cgroups
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*
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* Copyright 2007 OpenVZ SWsoft Inc
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*
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* Author: Pavel Emelianov <xemul@openvz.org>
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*
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*/
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#include <linux/types.h>
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#include <linux/parser.h>
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#include <linux/fs.h>
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#include <linux/res_counter.h>
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#include <linux/uaccess.h>
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#include <linux/mm.h>
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void res_counter_init(struct res_counter *counter, struct res_counter *parent)
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{
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spin_lock_init(&counter->lock);
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counter->limit = RESOURCE_MAX;
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counter->soft_limit = RESOURCE_MAX;
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counter->parent = parent;
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}
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int res_counter_charge_locked(struct res_counter *counter, unsigned long val,
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bool force)
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{
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int ret = 0;
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if (counter->usage + val > counter->limit) {
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counter->failcnt++;
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ret = -ENOMEM;
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if (!force)
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return ret;
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}
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counter->usage += val;
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if (counter->usage > counter->max_usage)
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counter->max_usage = counter->usage;
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return ret;
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}
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static int __res_counter_charge(struct res_counter *counter, unsigned long val,
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struct res_counter **limit_fail_at, bool force)
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{
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int ret, r;
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unsigned long flags;
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struct res_counter *c, *u;
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r = ret = 0;
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*limit_fail_at = NULL;
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local_irq_save(flags);
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for (c = counter; c != NULL; c = c->parent) {
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spin_lock(&c->lock);
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r = res_counter_charge_locked(c, val, force);
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spin_unlock(&c->lock);
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if (r < 0 && !ret) {
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ret = r;
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*limit_fail_at = c;
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if (!force)
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break;
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}
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}
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if (ret < 0 && !force) {
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for (u = counter; u != c; u = u->parent) {
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spin_lock(&u->lock);
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res_counter_uncharge_locked(u, val);
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spin_unlock(&u->lock);
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}
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}
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local_irq_restore(flags);
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return ret;
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}
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int res_counter_charge(struct res_counter *counter, unsigned long val,
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struct res_counter **limit_fail_at)
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{
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return __res_counter_charge(counter, val, limit_fail_at, false);
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}
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int res_counter_charge_nofail(struct res_counter *counter, unsigned long val,
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struct res_counter **limit_fail_at)
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{
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return __res_counter_charge(counter, val, limit_fail_at, true);
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}
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u64 res_counter_uncharge_locked(struct res_counter *counter, unsigned long val)
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{
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if (WARN_ON(counter->usage < val))
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val = counter->usage;
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counter->usage -= val;
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return counter->usage;
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}
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u64 res_counter_uncharge_until(struct res_counter *counter,
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struct res_counter *top,
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unsigned long val)
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{
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unsigned long flags;
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struct res_counter *c;
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u64 ret = 0;
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local_irq_save(flags);
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for (c = counter; c != top; c = c->parent) {
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u64 r;
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spin_lock(&c->lock);
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r = res_counter_uncharge_locked(c, val);
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if (c == counter)
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ret = r;
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spin_unlock(&c->lock);
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}
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local_irq_restore(flags);
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return ret;
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}
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u64 res_counter_uncharge(struct res_counter *counter, unsigned long val)
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{
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return res_counter_uncharge_until(counter, NULL, val);
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}
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static inline unsigned long long *
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res_counter_member(struct res_counter *counter, int member)
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{
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switch (member) {
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case RES_USAGE:
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return &counter->usage;
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case RES_MAX_USAGE:
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return &counter->max_usage;
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case RES_LIMIT:
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return &counter->limit;
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case RES_FAILCNT:
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return &counter->failcnt;
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case RES_SOFT_LIMIT:
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return &counter->soft_limit;
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};
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BUG();
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return NULL;
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}
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ssize_t res_counter_read(struct res_counter *counter, int member,
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const char __user *userbuf, size_t nbytes, loff_t *pos,
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int (*read_strategy)(unsigned long long val, char *st_buf))
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{
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unsigned long long *val;
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char buf[64], *s;
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s = buf;
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val = res_counter_member(counter, member);
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if (read_strategy)
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s += read_strategy(*val, s);
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else
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s += sprintf(s, "%llu\n", *val);
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return simple_read_from_buffer((void __user *)userbuf, nbytes,
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pos, buf, s - buf);
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}
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#if BITS_PER_LONG == 32
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u64 res_counter_read_u64(struct res_counter *counter, int member)
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{
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unsigned long flags;
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u64 ret;
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spin_lock_irqsave(&counter->lock, flags);
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ret = *res_counter_member(counter, member);
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spin_unlock_irqrestore(&counter->lock, flags);
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return ret;
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}
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#else
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u64 res_counter_read_u64(struct res_counter *counter, int member)
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{
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return *res_counter_member(counter, member);
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}
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#endif
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int res_counter_memparse_write_strategy(const char *buf,
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unsigned long long *res)
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{
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char *end;
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/* return RESOURCE_MAX(unlimited) if "-1" is specified */
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if (*buf == '-') {
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*res = simple_strtoull(buf + 1, &end, 10);
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if (*res != 1 || *end != '\0')
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return -EINVAL;
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*res = RESOURCE_MAX;
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return 0;
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}
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*res = memparse(buf, &end);
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if (*end != '\0')
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return -EINVAL;
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*res = PAGE_ALIGN(*res);
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return 0;
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}
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