1fa7d9493SBabu Moger /*
2fa7d9493SBabu Moger  * User interface for Resource Alloction in Resource Director Technology(RDT)
3fa7d9493SBabu Moger  *
4fa7d9493SBabu Moger  * Copyright (C) 2016 Intel Corporation
5fa7d9493SBabu Moger  *
6fa7d9493SBabu Moger  * Author: Fenghua Yu <fenghua.yu@intel.com>
7fa7d9493SBabu Moger  *
8fa7d9493SBabu Moger  * This program is free software; you can redistribute it and/or modify it
9fa7d9493SBabu Moger  * under the terms and conditions of the GNU General Public License,
10fa7d9493SBabu Moger  * version 2, as published by the Free Software Foundation.
11fa7d9493SBabu Moger  *
12fa7d9493SBabu Moger  * This program is distributed in the hope it will be useful, but WITHOUT
13fa7d9493SBabu Moger  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
14fa7d9493SBabu Moger  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License for
15fa7d9493SBabu Moger  * more details.
16fa7d9493SBabu Moger  *
17fa7d9493SBabu Moger  * More information about RDT be found in the Intel (R) x86 Architecture
18fa7d9493SBabu Moger  * Software Developer Manual.
19fa7d9493SBabu Moger  */
20fa7d9493SBabu Moger 
21fa7d9493SBabu Moger #define pr_fmt(fmt)	KBUILD_MODNAME ": " fmt
22fa7d9493SBabu Moger 
23fa7d9493SBabu Moger #include <linux/cacheinfo.h>
24fa7d9493SBabu Moger #include <linux/cpu.h>
25fa7d9493SBabu Moger #include <linux/debugfs.h>
26fa7d9493SBabu Moger #include <linux/fs.h>
27fa7d9493SBabu Moger #include <linux/sysfs.h>
28fa7d9493SBabu Moger #include <linux/kernfs.h>
29fa7d9493SBabu Moger #include <linux/seq_buf.h>
30fa7d9493SBabu Moger #include <linux/seq_file.h>
31fa7d9493SBabu Moger #include <linux/sched/signal.h>
32fa7d9493SBabu Moger #include <linux/sched/task.h>
33fa7d9493SBabu Moger #include <linux/slab.h>
34fa7d9493SBabu Moger #include <linux/task_work.h>
35fa7d9493SBabu Moger 
36fa7d9493SBabu Moger #include <uapi/linux/magic.h>
37fa7d9493SBabu Moger 
38fa7d9493SBabu Moger #include <asm/resctrl_sched.h>
39fa7d9493SBabu Moger #include "internal.h"
40fa7d9493SBabu Moger 
41fa7d9493SBabu Moger DEFINE_STATIC_KEY_FALSE(rdt_enable_key);
42fa7d9493SBabu Moger DEFINE_STATIC_KEY_FALSE(rdt_mon_enable_key);
43fa7d9493SBabu Moger DEFINE_STATIC_KEY_FALSE(rdt_alloc_enable_key);
44fa7d9493SBabu Moger static struct kernfs_root *rdt_root;
45fa7d9493SBabu Moger struct rdtgroup rdtgroup_default;
46fa7d9493SBabu Moger LIST_HEAD(rdt_all_groups);
47fa7d9493SBabu Moger 
48fa7d9493SBabu Moger /* Kernel fs node for "info" directory under root */
49fa7d9493SBabu Moger static struct kernfs_node *kn_info;
50fa7d9493SBabu Moger 
51fa7d9493SBabu Moger /* Kernel fs node for "mon_groups" directory under root */
52fa7d9493SBabu Moger static struct kernfs_node *kn_mongrp;
53fa7d9493SBabu Moger 
54fa7d9493SBabu Moger /* Kernel fs node for "mon_data" directory under root */
55fa7d9493SBabu Moger static struct kernfs_node *kn_mondata;
56fa7d9493SBabu Moger 
57fa7d9493SBabu Moger static struct seq_buf last_cmd_status;
58fa7d9493SBabu Moger static char last_cmd_status_buf[512];
59fa7d9493SBabu Moger 
60fa7d9493SBabu Moger struct dentry *debugfs_resctrl;
61fa7d9493SBabu Moger 
62fa7d9493SBabu Moger void rdt_last_cmd_clear(void)
63fa7d9493SBabu Moger {
64fa7d9493SBabu Moger 	lockdep_assert_held(&rdtgroup_mutex);
65fa7d9493SBabu Moger 	seq_buf_clear(&last_cmd_status);
66fa7d9493SBabu Moger }
67fa7d9493SBabu Moger 
68fa7d9493SBabu Moger void rdt_last_cmd_puts(const char *s)
69fa7d9493SBabu Moger {
70fa7d9493SBabu Moger 	lockdep_assert_held(&rdtgroup_mutex);
71fa7d9493SBabu Moger 	seq_buf_puts(&last_cmd_status, s);
72fa7d9493SBabu Moger }
73fa7d9493SBabu Moger 
74fa7d9493SBabu Moger void rdt_last_cmd_printf(const char *fmt, ...)
75fa7d9493SBabu Moger {
76fa7d9493SBabu Moger 	va_list ap;
77fa7d9493SBabu Moger 
78fa7d9493SBabu Moger 	va_start(ap, fmt);
79fa7d9493SBabu Moger 	lockdep_assert_held(&rdtgroup_mutex);
80fa7d9493SBabu Moger 	seq_buf_vprintf(&last_cmd_status, fmt, ap);
81fa7d9493SBabu Moger 	va_end(ap);
82fa7d9493SBabu Moger }
83fa7d9493SBabu Moger 
84fa7d9493SBabu Moger /*
85fa7d9493SBabu Moger  * Trivial allocator for CLOSIDs. Since h/w only supports a small number,
86fa7d9493SBabu Moger  * we can keep a bitmap of free CLOSIDs in a single integer.
87fa7d9493SBabu Moger  *
88fa7d9493SBabu Moger  * Using a global CLOSID across all resources has some advantages and
89fa7d9493SBabu Moger  * some drawbacks:
90fa7d9493SBabu Moger  * + We can simply set "current->closid" to assign a task to a resource
91fa7d9493SBabu Moger  *   group.
92fa7d9493SBabu Moger  * + Context switch code can avoid extra memory references deciding which
93fa7d9493SBabu Moger  *   CLOSID to load into the PQR_ASSOC MSR
94fa7d9493SBabu Moger  * - We give up some options in configuring resource groups across multi-socket
95fa7d9493SBabu Moger  *   systems.
96fa7d9493SBabu Moger  * - Our choices on how to configure each resource become progressively more
97fa7d9493SBabu Moger  *   limited as the number of resources grows.
98fa7d9493SBabu Moger  */
99fa7d9493SBabu Moger static int closid_free_map;
100fa7d9493SBabu Moger static int closid_free_map_len;
101fa7d9493SBabu Moger 
102fa7d9493SBabu Moger int closids_supported(void)
103fa7d9493SBabu Moger {
104fa7d9493SBabu Moger 	return closid_free_map_len;
105fa7d9493SBabu Moger }
106fa7d9493SBabu Moger 
107fa7d9493SBabu Moger static void closid_init(void)
108fa7d9493SBabu Moger {
109fa7d9493SBabu Moger 	struct rdt_resource *r;
110fa7d9493SBabu Moger 	int rdt_min_closid = 32;
111fa7d9493SBabu Moger 
112fa7d9493SBabu Moger 	/* Compute rdt_min_closid across all resources */
113fa7d9493SBabu Moger 	for_each_alloc_enabled_rdt_resource(r)
114fa7d9493SBabu Moger 		rdt_min_closid = min(rdt_min_closid, r->num_closid);
115fa7d9493SBabu Moger 
116fa7d9493SBabu Moger 	closid_free_map = BIT_MASK(rdt_min_closid) - 1;
117fa7d9493SBabu Moger 
118fa7d9493SBabu Moger 	/* CLOSID 0 is always reserved for the default group */
119fa7d9493SBabu Moger 	closid_free_map &= ~1;
120fa7d9493SBabu Moger 	closid_free_map_len = rdt_min_closid;
121fa7d9493SBabu Moger }
122fa7d9493SBabu Moger 
123fa7d9493SBabu Moger static int closid_alloc(void)
124fa7d9493SBabu Moger {
125fa7d9493SBabu Moger 	u32 closid = ffs(closid_free_map);
126fa7d9493SBabu Moger 
127fa7d9493SBabu Moger 	if (closid == 0)
128fa7d9493SBabu Moger 		return -ENOSPC;
129fa7d9493SBabu Moger 	closid--;
130fa7d9493SBabu Moger 	closid_free_map &= ~(1 << closid);
131fa7d9493SBabu Moger 
132fa7d9493SBabu Moger 	return closid;
133fa7d9493SBabu Moger }
134fa7d9493SBabu Moger 
135fa7d9493SBabu Moger void closid_free(int closid)
136fa7d9493SBabu Moger {
137fa7d9493SBabu Moger 	closid_free_map |= 1 << closid;
138fa7d9493SBabu Moger }
139fa7d9493SBabu Moger 
140fa7d9493SBabu Moger /**
141fa7d9493SBabu Moger  * closid_allocated - test if provided closid is in use
142fa7d9493SBabu Moger  * @closid: closid to be tested
143fa7d9493SBabu Moger  *
144fa7d9493SBabu Moger  * Return: true if @closid is currently associated with a resource group,
145fa7d9493SBabu Moger  * false if @closid is free
146fa7d9493SBabu Moger  */
147fa7d9493SBabu Moger static bool closid_allocated(unsigned int closid)
148fa7d9493SBabu Moger {
149fa7d9493SBabu Moger 	return (closid_free_map & (1 << closid)) == 0;
150fa7d9493SBabu Moger }
151fa7d9493SBabu Moger 
152fa7d9493SBabu Moger /**
153fa7d9493SBabu Moger  * rdtgroup_mode_by_closid - Return mode of resource group with closid
154fa7d9493SBabu Moger  * @closid: closid if the resource group
155fa7d9493SBabu Moger  *
156fa7d9493SBabu Moger  * Each resource group is associated with a @closid. Here the mode
157fa7d9493SBabu Moger  * of a resource group can be queried by searching for it using its closid.
158fa7d9493SBabu Moger  *
159fa7d9493SBabu Moger  * Return: mode as &enum rdtgrp_mode of resource group with closid @closid
160fa7d9493SBabu Moger  */
161fa7d9493SBabu Moger enum rdtgrp_mode rdtgroup_mode_by_closid(int closid)
162fa7d9493SBabu Moger {
163fa7d9493SBabu Moger 	struct rdtgroup *rdtgrp;
164fa7d9493SBabu Moger 
165fa7d9493SBabu Moger 	list_for_each_entry(rdtgrp, &rdt_all_groups, rdtgroup_list) {
166fa7d9493SBabu Moger 		if (rdtgrp->closid == closid)
167fa7d9493SBabu Moger 			return rdtgrp->mode;
168fa7d9493SBabu Moger 	}
169fa7d9493SBabu Moger 
170fa7d9493SBabu Moger 	return RDT_NUM_MODES;
171fa7d9493SBabu Moger }
172fa7d9493SBabu Moger 
173fa7d9493SBabu Moger static const char * const rdt_mode_str[] = {
174fa7d9493SBabu Moger 	[RDT_MODE_SHAREABLE]		= "shareable",
175fa7d9493SBabu Moger 	[RDT_MODE_EXCLUSIVE]		= "exclusive",
176fa7d9493SBabu Moger 	[RDT_MODE_PSEUDO_LOCKSETUP]	= "pseudo-locksetup",
177fa7d9493SBabu Moger 	[RDT_MODE_PSEUDO_LOCKED]	= "pseudo-locked",
178fa7d9493SBabu Moger };
179fa7d9493SBabu Moger 
180fa7d9493SBabu Moger /**
181fa7d9493SBabu Moger  * rdtgroup_mode_str - Return the string representation of mode
182fa7d9493SBabu Moger  * @mode: the resource group mode as &enum rdtgroup_mode
183fa7d9493SBabu Moger  *
184fa7d9493SBabu Moger  * Return: string representation of valid mode, "unknown" otherwise
185fa7d9493SBabu Moger  */
186fa7d9493SBabu Moger static const char *rdtgroup_mode_str(enum rdtgrp_mode mode)
187fa7d9493SBabu Moger {
188fa7d9493SBabu Moger 	if (mode < RDT_MODE_SHAREABLE || mode >= RDT_NUM_MODES)
189fa7d9493SBabu Moger 		return "unknown";
190fa7d9493SBabu Moger 
191fa7d9493SBabu Moger 	return rdt_mode_str[mode];
192fa7d9493SBabu Moger }
193fa7d9493SBabu Moger 
194fa7d9493SBabu Moger /* set uid and gid of rdtgroup dirs and files to that of the creator */
195fa7d9493SBabu Moger static int rdtgroup_kn_set_ugid(struct kernfs_node *kn)
196fa7d9493SBabu Moger {
197fa7d9493SBabu Moger 	struct iattr iattr = { .ia_valid = ATTR_UID | ATTR_GID,
198fa7d9493SBabu Moger 				.ia_uid = current_fsuid(),
199fa7d9493SBabu Moger 				.ia_gid = current_fsgid(), };
200fa7d9493SBabu Moger 
201fa7d9493SBabu Moger 	if (uid_eq(iattr.ia_uid, GLOBAL_ROOT_UID) &&
202fa7d9493SBabu Moger 	    gid_eq(iattr.ia_gid, GLOBAL_ROOT_GID))
203fa7d9493SBabu Moger 		return 0;
204fa7d9493SBabu Moger 
205fa7d9493SBabu Moger 	return kernfs_setattr(kn, &iattr);
206fa7d9493SBabu Moger }
207fa7d9493SBabu Moger 
208fa7d9493SBabu Moger static int rdtgroup_add_file(struct kernfs_node *parent_kn, struct rftype *rft)
209fa7d9493SBabu Moger {
210fa7d9493SBabu Moger 	struct kernfs_node *kn;
211fa7d9493SBabu Moger 	int ret;
212fa7d9493SBabu Moger 
213fa7d9493SBabu Moger 	kn = __kernfs_create_file(parent_kn, rft->name, rft->mode,
214fa7d9493SBabu Moger 				  GLOBAL_ROOT_UID, GLOBAL_ROOT_GID,
215fa7d9493SBabu Moger 				  0, rft->kf_ops, rft, NULL, NULL);
216fa7d9493SBabu Moger 	if (IS_ERR(kn))
217fa7d9493SBabu Moger 		return PTR_ERR(kn);
218fa7d9493SBabu Moger 
219fa7d9493SBabu Moger 	ret = rdtgroup_kn_set_ugid(kn);
220fa7d9493SBabu Moger 	if (ret) {
221fa7d9493SBabu Moger 		kernfs_remove(kn);
222fa7d9493SBabu Moger 		return ret;
223fa7d9493SBabu Moger 	}
224fa7d9493SBabu Moger 
225fa7d9493SBabu Moger 	return 0;
226fa7d9493SBabu Moger }
227fa7d9493SBabu Moger 
228fa7d9493SBabu Moger static int rdtgroup_seqfile_show(struct seq_file *m, void *arg)
229fa7d9493SBabu Moger {
230fa7d9493SBabu Moger 	struct kernfs_open_file *of = m->private;
231fa7d9493SBabu Moger 	struct rftype *rft = of->kn->priv;
232fa7d9493SBabu Moger 
233fa7d9493SBabu Moger 	if (rft->seq_show)
234fa7d9493SBabu Moger 		return rft->seq_show(of, m, arg);
235fa7d9493SBabu Moger 	return 0;
236fa7d9493SBabu Moger }
237fa7d9493SBabu Moger 
238fa7d9493SBabu Moger static ssize_t rdtgroup_file_write(struct kernfs_open_file *of, char *buf,
239fa7d9493SBabu Moger 				   size_t nbytes, loff_t off)
240fa7d9493SBabu Moger {
241fa7d9493SBabu Moger 	struct rftype *rft = of->kn->priv;
242fa7d9493SBabu Moger 
243fa7d9493SBabu Moger 	if (rft->write)
244fa7d9493SBabu Moger 		return rft->write(of, buf, nbytes, off);
245fa7d9493SBabu Moger 
246fa7d9493SBabu Moger 	return -EINVAL;
247fa7d9493SBabu Moger }
248fa7d9493SBabu Moger 
249fa7d9493SBabu Moger static struct kernfs_ops rdtgroup_kf_single_ops = {
250fa7d9493SBabu Moger 	.atomic_write_len	= PAGE_SIZE,
251fa7d9493SBabu Moger 	.write			= rdtgroup_file_write,
252fa7d9493SBabu Moger 	.seq_show		= rdtgroup_seqfile_show,
253fa7d9493SBabu Moger };
254fa7d9493SBabu Moger 
255fa7d9493SBabu Moger static struct kernfs_ops kf_mondata_ops = {
256fa7d9493SBabu Moger 	.atomic_write_len	= PAGE_SIZE,
257fa7d9493SBabu Moger 	.seq_show		= rdtgroup_mondata_show,
258fa7d9493SBabu Moger };
259fa7d9493SBabu Moger 
260fa7d9493SBabu Moger static bool is_cpu_list(struct kernfs_open_file *of)
261fa7d9493SBabu Moger {
262fa7d9493SBabu Moger 	struct rftype *rft = of->kn->priv;
263fa7d9493SBabu Moger 
264fa7d9493SBabu Moger 	return rft->flags & RFTYPE_FLAGS_CPUS_LIST;
265fa7d9493SBabu Moger }
266fa7d9493SBabu Moger 
267fa7d9493SBabu Moger static int rdtgroup_cpus_show(struct kernfs_open_file *of,
268fa7d9493SBabu Moger 			      struct seq_file *s, void *v)
269fa7d9493SBabu Moger {
270fa7d9493SBabu Moger 	struct rdtgroup *rdtgrp;
271fa7d9493SBabu Moger 	struct cpumask *mask;
272fa7d9493SBabu Moger 	int ret = 0;
273fa7d9493SBabu Moger 
274fa7d9493SBabu Moger 	rdtgrp = rdtgroup_kn_lock_live(of->kn);
275fa7d9493SBabu Moger 
276fa7d9493SBabu Moger 	if (rdtgrp) {
277fa7d9493SBabu Moger 		if (rdtgrp->mode == RDT_MODE_PSEUDO_LOCKED) {
278fa7d9493SBabu Moger 			if (!rdtgrp->plr->d) {
279fa7d9493SBabu Moger 				rdt_last_cmd_clear();
280fa7d9493SBabu Moger 				rdt_last_cmd_puts("Cache domain offline\n");
281fa7d9493SBabu Moger 				ret = -ENODEV;
282fa7d9493SBabu Moger 			} else {
283fa7d9493SBabu Moger 				mask = &rdtgrp->plr->d->cpu_mask;
284fa7d9493SBabu Moger 				seq_printf(s, is_cpu_list(of) ?
285fa7d9493SBabu Moger 					   "%*pbl\n" : "%*pb\n",
286fa7d9493SBabu Moger 					   cpumask_pr_args(mask));
287fa7d9493SBabu Moger 			}
288fa7d9493SBabu Moger 		} else {
289fa7d9493SBabu Moger 			seq_printf(s, is_cpu_list(of) ? "%*pbl\n" : "%*pb\n",
290fa7d9493SBabu Moger 				   cpumask_pr_args(&rdtgrp->cpu_mask));
291fa7d9493SBabu Moger 		}
292fa7d9493SBabu Moger 	} else {
293fa7d9493SBabu Moger 		ret = -ENOENT;
294fa7d9493SBabu Moger 	}
295fa7d9493SBabu Moger 	rdtgroup_kn_unlock(of->kn);
296fa7d9493SBabu Moger 
297fa7d9493SBabu Moger 	return ret;
298fa7d9493SBabu Moger }
299fa7d9493SBabu Moger 
300fa7d9493SBabu Moger /*
301352940ecSBabu Moger  * This is safe against resctrl_sched_in() called from __switch_to()
302fa7d9493SBabu Moger  * because __switch_to() is executed with interrupts disabled. A local call
303fa7d9493SBabu Moger  * from update_closid_rmid() is proteced against __switch_to() because
304fa7d9493SBabu Moger  * preemption is disabled.
305fa7d9493SBabu Moger  */
306fa7d9493SBabu Moger static void update_cpu_closid_rmid(void *info)
307fa7d9493SBabu Moger {
308fa7d9493SBabu Moger 	struct rdtgroup *r = info;
309fa7d9493SBabu Moger 
310fa7d9493SBabu Moger 	if (r) {
311fa7d9493SBabu Moger 		this_cpu_write(pqr_state.default_closid, r->closid);
312fa7d9493SBabu Moger 		this_cpu_write(pqr_state.default_rmid, r->mon.rmid);
313fa7d9493SBabu Moger 	}
314fa7d9493SBabu Moger 
315fa7d9493SBabu Moger 	/*
316fa7d9493SBabu Moger 	 * We cannot unconditionally write the MSR because the current
317fa7d9493SBabu Moger 	 * executing task might have its own closid selected. Just reuse
318fa7d9493SBabu Moger 	 * the context switch code.
319fa7d9493SBabu Moger 	 */
320352940ecSBabu Moger 	resctrl_sched_in();
321fa7d9493SBabu Moger }
322fa7d9493SBabu Moger 
323fa7d9493SBabu Moger /*
324fa7d9493SBabu Moger  * Update the PGR_ASSOC MSR on all cpus in @cpu_mask,
325fa7d9493SBabu Moger  *
326fa7d9493SBabu Moger  * Per task closids/rmids must have been set up before calling this function.
327fa7d9493SBabu Moger  */
328fa7d9493SBabu Moger static void
329fa7d9493SBabu Moger update_closid_rmid(const struct cpumask *cpu_mask, struct rdtgroup *r)
330fa7d9493SBabu Moger {
331fa7d9493SBabu Moger 	int cpu = get_cpu();
332fa7d9493SBabu Moger 
333fa7d9493SBabu Moger 	if (cpumask_test_cpu(cpu, cpu_mask))
334fa7d9493SBabu Moger 		update_cpu_closid_rmid(r);
335fa7d9493SBabu Moger 	smp_call_function_many(cpu_mask, update_cpu_closid_rmid, r, 1);
336fa7d9493SBabu Moger 	put_cpu();
337fa7d9493SBabu Moger }
338fa7d9493SBabu Moger 
339fa7d9493SBabu Moger static int cpus_mon_write(struct rdtgroup *rdtgrp, cpumask_var_t newmask,
340fa7d9493SBabu Moger 			  cpumask_var_t tmpmask)
341fa7d9493SBabu Moger {
342fa7d9493SBabu Moger 	struct rdtgroup *prgrp = rdtgrp->mon.parent, *crgrp;
343fa7d9493SBabu Moger 	struct list_head *head;
344fa7d9493SBabu Moger 
345fa7d9493SBabu Moger 	/* Check whether cpus belong to parent ctrl group */
346fa7d9493SBabu Moger 	cpumask_andnot(tmpmask, newmask, &prgrp->cpu_mask);
347fa7d9493SBabu Moger 	if (cpumask_weight(tmpmask)) {
348723f1a0dSBabu Moger 		rdt_last_cmd_puts("Can only add CPUs to mongroup that belong to parent\n");
349fa7d9493SBabu Moger 		return -EINVAL;
350fa7d9493SBabu Moger 	}
351fa7d9493SBabu Moger 
352fa7d9493SBabu Moger 	/* Check whether cpus are dropped from this group */
353fa7d9493SBabu Moger 	cpumask_andnot(tmpmask, &rdtgrp->cpu_mask, newmask);
354fa7d9493SBabu Moger 	if (cpumask_weight(tmpmask)) {
355fa7d9493SBabu Moger 		/* Give any dropped cpus to parent rdtgroup */
356fa7d9493SBabu Moger 		cpumask_or(&prgrp->cpu_mask, &prgrp->cpu_mask, tmpmask);
357fa7d9493SBabu Moger 		update_closid_rmid(tmpmask, prgrp);
358fa7d9493SBabu Moger 	}
359fa7d9493SBabu Moger 
360fa7d9493SBabu Moger 	/*
361fa7d9493SBabu Moger 	 * If we added cpus, remove them from previous group that owned them
362fa7d9493SBabu Moger 	 * and update per-cpu rmid
363fa7d9493SBabu Moger 	 */
364fa7d9493SBabu Moger 	cpumask_andnot(tmpmask, newmask, &rdtgrp->cpu_mask);
365fa7d9493SBabu Moger 	if (cpumask_weight(tmpmask)) {
366fa7d9493SBabu Moger 		head = &prgrp->mon.crdtgrp_list;
367fa7d9493SBabu Moger 		list_for_each_entry(crgrp, head, mon.crdtgrp_list) {
368fa7d9493SBabu Moger 			if (crgrp == rdtgrp)
369fa7d9493SBabu Moger 				continue;
370fa7d9493SBabu Moger 			cpumask_andnot(&crgrp->cpu_mask, &crgrp->cpu_mask,
371fa7d9493SBabu Moger 				       tmpmask);
372fa7d9493SBabu Moger 		}
373fa7d9493SBabu Moger 		update_closid_rmid(tmpmask, rdtgrp);
374fa7d9493SBabu Moger 	}
375fa7d9493SBabu Moger 
376fa7d9493SBabu Moger 	/* Done pushing/pulling - update this group with new mask */
377fa7d9493SBabu Moger 	cpumask_copy(&rdtgrp->cpu_mask, newmask);
378fa7d9493SBabu Moger 
379fa7d9493SBabu Moger 	return 0;
380fa7d9493SBabu Moger }
381fa7d9493SBabu Moger 
382fa7d9493SBabu Moger static void cpumask_rdtgrp_clear(struct rdtgroup *r, struct cpumask *m)
383fa7d9493SBabu Moger {
384fa7d9493SBabu Moger 	struct rdtgroup *crgrp;
385fa7d9493SBabu Moger 
386fa7d9493SBabu Moger 	cpumask_andnot(&r->cpu_mask, &r->cpu_mask, m);
387fa7d9493SBabu Moger 	/* update the child mon group masks as well*/
388fa7d9493SBabu Moger 	list_for_each_entry(crgrp, &r->mon.crdtgrp_list, mon.crdtgrp_list)
389fa7d9493SBabu Moger 		cpumask_and(&crgrp->cpu_mask, &r->cpu_mask, &crgrp->cpu_mask);
390fa7d9493SBabu Moger }
391fa7d9493SBabu Moger 
392fa7d9493SBabu Moger static int cpus_ctrl_write(struct rdtgroup *rdtgrp, cpumask_var_t newmask,
393fa7d9493SBabu Moger 			   cpumask_var_t tmpmask, cpumask_var_t tmpmask1)
394fa7d9493SBabu Moger {
395fa7d9493SBabu Moger 	struct rdtgroup *r, *crgrp;
396fa7d9493SBabu Moger 	struct list_head *head;
397fa7d9493SBabu Moger 
398fa7d9493SBabu Moger 	/* Check whether cpus are dropped from this group */
399fa7d9493SBabu Moger 	cpumask_andnot(tmpmask, &rdtgrp->cpu_mask, newmask);
400fa7d9493SBabu Moger 	if (cpumask_weight(tmpmask)) {
401fa7d9493SBabu Moger 		/* Can't drop from default group */
402fa7d9493SBabu Moger 		if (rdtgrp == &rdtgroup_default) {
403fa7d9493SBabu Moger 			rdt_last_cmd_puts("Can't drop CPUs from default group\n");
404fa7d9493SBabu Moger 			return -EINVAL;
405fa7d9493SBabu Moger 		}
406fa7d9493SBabu Moger 
407fa7d9493SBabu Moger 		/* Give any dropped cpus to rdtgroup_default */
408fa7d9493SBabu Moger 		cpumask_or(&rdtgroup_default.cpu_mask,
409fa7d9493SBabu Moger 			   &rdtgroup_default.cpu_mask, tmpmask);
410fa7d9493SBabu Moger 		update_closid_rmid(tmpmask, &rdtgroup_default);
411fa7d9493SBabu Moger 	}
412fa7d9493SBabu Moger 
413fa7d9493SBabu Moger 	/*
414fa7d9493SBabu Moger 	 * If we added cpus, remove them from previous group and
415fa7d9493SBabu Moger 	 * the prev group's child groups that owned them
416fa7d9493SBabu Moger 	 * and update per-cpu closid/rmid.
417fa7d9493SBabu Moger 	 */
418fa7d9493SBabu Moger 	cpumask_andnot(tmpmask, newmask, &rdtgrp->cpu_mask);
419fa7d9493SBabu Moger 	if (cpumask_weight(tmpmask)) {
420fa7d9493SBabu Moger 		list_for_each_entry(r, &rdt_all_groups, rdtgroup_list) {
421fa7d9493SBabu Moger 			if (r == rdtgrp)
422fa7d9493SBabu Moger 				continue;
423fa7d9493SBabu Moger 			cpumask_and(tmpmask1, &r->cpu_mask, tmpmask);
424fa7d9493SBabu Moger 			if (cpumask_weight(tmpmask1))
425fa7d9493SBabu Moger 				cpumask_rdtgrp_clear(r, tmpmask1);
426fa7d9493SBabu Moger 		}
427fa7d9493SBabu Moger 		update_closid_rmid(tmpmask, rdtgrp);
428fa7d9493SBabu Moger 	}
429fa7d9493SBabu Moger 
430fa7d9493SBabu Moger 	/* Done pushing/pulling - update this group with new mask */
431fa7d9493SBabu Moger 	cpumask_copy(&rdtgrp->cpu_mask, newmask);
432fa7d9493SBabu Moger 
433fa7d9493SBabu Moger 	/*
434fa7d9493SBabu Moger 	 * Clear child mon group masks since there is a new parent mask
435fa7d9493SBabu Moger 	 * now and update the rmid for the cpus the child lost.
436fa7d9493SBabu Moger 	 */
437fa7d9493SBabu Moger 	head = &rdtgrp->mon.crdtgrp_list;
438fa7d9493SBabu Moger 	list_for_each_entry(crgrp, head, mon.crdtgrp_list) {
439fa7d9493SBabu Moger 		cpumask_and(tmpmask, &rdtgrp->cpu_mask, &crgrp->cpu_mask);
440fa7d9493SBabu Moger 		update_closid_rmid(tmpmask, rdtgrp);
441fa7d9493SBabu Moger 		cpumask_clear(&crgrp->cpu_mask);
442fa7d9493SBabu Moger 	}
443fa7d9493SBabu Moger 
444fa7d9493SBabu Moger 	return 0;
445fa7d9493SBabu Moger }
446fa7d9493SBabu Moger 
447fa7d9493SBabu Moger static ssize_t rdtgroup_cpus_write(struct kernfs_open_file *of,
448fa7d9493SBabu Moger 				   char *buf, size_t nbytes, loff_t off)
449fa7d9493SBabu Moger {
450fa7d9493SBabu Moger 	cpumask_var_t tmpmask, newmask, tmpmask1;
451fa7d9493SBabu Moger 	struct rdtgroup *rdtgrp;
452fa7d9493SBabu Moger 	int ret;
453fa7d9493SBabu Moger 
454fa7d9493SBabu Moger 	if (!buf)
455fa7d9493SBabu Moger 		return -EINVAL;
456fa7d9493SBabu Moger 
457fa7d9493SBabu Moger 	if (!zalloc_cpumask_var(&tmpmask, GFP_KERNEL))
458fa7d9493SBabu Moger 		return -ENOMEM;
459fa7d9493SBabu Moger 	if (!zalloc_cpumask_var(&newmask, GFP_KERNEL)) {
460fa7d9493SBabu Moger 		free_cpumask_var(tmpmask);
461fa7d9493SBabu Moger 		return -ENOMEM;
462fa7d9493SBabu Moger 	}
463fa7d9493SBabu Moger 	if (!zalloc_cpumask_var(&tmpmask1, GFP_KERNEL)) {
464fa7d9493SBabu Moger 		free_cpumask_var(tmpmask);
465fa7d9493SBabu Moger 		free_cpumask_var(newmask);
466fa7d9493SBabu Moger 		return -ENOMEM;
467fa7d9493SBabu Moger 	}
468fa7d9493SBabu Moger 
469fa7d9493SBabu Moger 	rdtgrp = rdtgroup_kn_lock_live(of->kn);
470fa7d9493SBabu Moger 	rdt_last_cmd_clear();
471fa7d9493SBabu Moger 	if (!rdtgrp) {
472fa7d9493SBabu Moger 		ret = -ENOENT;
473723f1a0dSBabu Moger 		rdt_last_cmd_puts("Directory was removed\n");
474fa7d9493SBabu Moger 		goto unlock;
475fa7d9493SBabu Moger 	}
476fa7d9493SBabu Moger 
477fa7d9493SBabu Moger 	if (rdtgrp->mode == RDT_MODE_PSEUDO_LOCKED ||
478fa7d9493SBabu Moger 	    rdtgrp->mode == RDT_MODE_PSEUDO_LOCKSETUP) {
479fa7d9493SBabu Moger 		ret = -EINVAL;
480723f1a0dSBabu Moger 		rdt_last_cmd_puts("Pseudo-locking in progress\n");
481fa7d9493SBabu Moger 		goto unlock;
482fa7d9493SBabu Moger 	}
483fa7d9493SBabu Moger 
484fa7d9493SBabu Moger 	if (is_cpu_list(of))
485fa7d9493SBabu Moger 		ret = cpulist_parse(buf, newmask);
486fa7d9493SBabu Moger 	else
487fa7d9493SBabu Moger 		ret = cpumask_parse(buf, newmask);
488fa7d9493SBabu Moger 
489fa7d9493SBabu Moger 	if (ret) {
490723f1a0dSBabu Moger 		rdt_last_cmd_puts("Bad CPU list/mask\n");
491fa7d9493SBabu Moger 		goto unlock;
492fa7d9493SBabu Moger 	}
493fa7d9493SBabu Moger 
494fa7d9493SBabu Moger 	/* check that user didn't specify any offline cpus */
495fa7d9493SBabu Moger 	cpumask_andnot(tmpmask, newmask, cpu_online_mask);
496fa7d9493SBabu Moger 	if (cpumask_weight(tmpmask)) {
497fa7d9493SBabu Moger 		ret = -EINVAL;
498723f1a0dSBabu Moger 		rdt_last_cmd_puts("Can only assign online CPUs\n");
499fa7d9493SBabu Moger 		goto unlock;
500fa7d9493SBabu Moger 	}
501fa7d9493SBabu Moger 
502fa7d9493SBabu Moger 	if (rdtgrp->type == RDTCTRL_GROUP)
503fa7d9493SBabu Moger 		ret = cpus_ctrl_write(rdtgrp, newmask, tmpmask, tmpmask1);
504fa7d9493SBabu Moger 	else if (rdtgrp->type == RDTMON_GROUP)
505fa7d9493SBabu Moger 		ret = cpus_mon_write(rdtgrp, newmask, tmpmask);
506fa7d9493SBabu Moger 	else
507fa7d9493SBabu Moger 		ret = -EINVAL;
508fa7d9493SBabu Moger 
509fa7d9493SBabu Moger unlock:
510fa7d9493SBabu Moger 	rdtgroup_kn_unlock(of->kn);
511fa7d9493SBabu Moger 	free_cpumask_var(tmpmask);
512fa7d9493SBabu Moger 	free_cpumask_var(newmask);
513fa7d9493SBabu Moger 	free_cpumask_var(tmpmask1);
514fa7d9493SBabu Moger 
515fa7d9493SBabu Moger 	return ret ?: nbytes;
516fa7d9493SBabu Moger }
517fa7d9493SBabu Moger 
518fa7d9493SBabu Moger struct task_move_callback {
519fa7d9493SBabu Moger 	struct callback_head	work;
520fa7d9493SBabu Moger 	struct rdtgroup		*rdtgrp;
521fa7d9493SBabu Moger };
522fa7d9493SBabu Moger 
523fa7d9493SBabu Moger static void move_myself(struct callback_head *head)
524fa7d9493SBabu Moger {
525fa7d9493SBabu Moger 	struct task_move_callback *callback;
526fa7d9493SBabu Moger 	struct rdtgroup *rdtgrp;
527fa7d9493SBabu Moger 
528fa7d9493SBabu Moger 	callback = container_of(head, struct task_move_callback, work);
529fa7d9493SBabu Moger 	rdtgrp = callback->rdtgrp;
530fa7d9493SBabu Moger 
531fa7d9493SBabu Moger 	/*
532fa7d9493SBabu Moger 	 * If resource group was deleted before this task work callback
533fa7d9493SBabu Moger 	 * was invoked, then assign the task to root group and free the
534fa7d9493SBabu Moger 	 * resource group.
535fa7d9493SBabu Moger 	 */
536fa7d9493SBabu Moger 	if (atomic_dec_and_test(&rdtgrp->waitcount) &&
537fa7d9493SBabu Moger 	    (rdtgrp->flags & RDT_DELETED)) {
538fa7d9493SBabu Moger 		current->closid = 0;
539fa7d9493SBabu Moger 		current->rmid = 0;
540fa7d9493SBabu Moger 		kfree(rdtgrp);
541fa7d9493SBabu Moger 	}
542fa7d9493SBabu Moger 
543fa7d9493SBabu Moger 	preempt_disable();
544fa7d9493SBabu Moger 	/* update PQR_ASSOC MSR to make resource group go into effect */
545352940ecSBabu Moger 	resctrl_sched_in();
546fa7d9493SBabu Moger 	preempt_enable();
547fa7d9493SBabu Moger 
548fa7d9493SBabu Moger 	kfree(callback);
549fa7d9493SBabu Moger }
550fa7d9493SBabu Moger 
551fa7d9493SBabu Moger static int __rdtgroup_move_task(struct task_struct *tsk,
552fa7d9493SBabu Moger 				struct rdtgroup *rdtgrp)
553fa7d9493SBabu Moger {
554fa7d9493SBabu Moger 	struct task_move_callback *callback;
555fa7d9493SBabu Moger 	int ret;
556fa7d9493SBabu Moger 
557fa7d9493SBabu Moger 	callback = kzalloc(sizeof(*callback), GFP_KERNEL);
558fa7d9493SBabu Moger 	if (!callback)
559fa7d9493SBabu Moger 		return -ENOMEM;
560fa7d9493SBabu Moger 	callback->work.func = move_myself;
561fa7d9493SBabu Moger 	callback->rdtgrp = rdtgrp;
562fa7d9493SBabu Moger 
563fa7d9493SBabu Moger 	/*
564fa7d9493SBabu Moger 	 * Take a refcount, so rdtgrp cannot be freed before the
565fa7d9493SBabu Moger 	 * callback has been invoked.
566fa7d9493SBabu Moger 	 */
567fa7d9493SBabu Moger 	atomic_inc(&rdtgrp->waitcount);
568fa7d9493SBabu Moger 	ret = task_work_add(tsk, &callback->work, true);
569fa7d9493SBabu Moger 	if (ret) {
570fa7d9493SBabu Moger 		/*
571fa7d9493SBabu Moger 		 * Task is exiting. Drop the refcount and free the callback.
572fa7d9493SBabu Moger 		 * No need to check the refcount as the group cannot be
573fa7d9493SBabu Moger 		 * deleted before the write function unlocks rdtgroup_mutex.
574fa7d9493SBabu Moger 		 */
575fa7d9493SBabu Moger 		atomic_dec(&rdtgrp->waitcount);
576fa7d9493SBabu Moger 		kfree(callback);
577723f1a0dSBabu Moger 		rdt_last_cmd_puts("Task exited\n");
578fa7d9493SBabu Moger 	} else {
579fa7d9493SBabu Moger 		/*
580fa7d9493SBabu Moger 		 * For ctrl_mon groups move both closid and rmid.
581fa7d9493SBabu Moger 		 * For monitor groups, can move the tasks only from
582fa7d9493SBabu Moger 		 * their parent CTRL group.
583fa7d9493SBabu Moger 		 */
584fa7d9493SBabu Moger 		if (rdtgrp->type == RDTCTRL_GROUP) {
585fa7d9493SBabu Moger 			tsk->closid = rdtgrp->closid;
586fa7d9493SBabu Moger 			tsk->rmid = rdtgrp->mon.rmid;
587fa7d9493SBabu Moger 		} else if (rdtgrp->type == RDTMON_GROUP) {
588fa7d9493SBabu Moger 			if (rdtgrp->mon.parent->closid == tsk->closid) {
589fa7d9493SBabu Moger 				tsk->rmid = rdtgrp->mon.rmid;
590fa7d9493SBabu Moger 			} else {
591fa7d9493SBabu Moger 				rdt_last_cmd_puts("Can't move task to different control group\n");
592fa7d9493SBabu Moger 				ret = -EINVAL;
593fa7d9493SBabu Moger 			}
594fa7d9493SBabu Moger 		}
595fa7d9493SBabu Moger 	}
596fa7d9493SBabu Moger 	return ret;
597fa7d9493SBabu Moger }
598fa7d9493SBabu Moger 
599fa7d9493SBabu Moger /**
600fa7d9493SBabu Moger  * rdtgroup_tasks_assigned - Test if tasks have been assigned to resource group
601fa7d9493SBabu Moger  * @r: Resource group
602fa7d9493SBabu Moger  *
603fa7d9493SBabu Moger  * Return: 1 if tasks have been assigned to @r, 0 otherwise
604fa7d9493SBabu Moger  */
605fa7d9493SBabu Moger int rdtgroup_tasks_assigned(struct rdtgroup *r)
606fa7d9493SBabu Moger {
607fa7d9493SBabu Moger 	struct task_struct *p, *t;
608fa7d9493SBabu Moger 	int ret = 0;
609fa7d9493SBabu Moger 
610fa7d9493SBabu Moger 	lockdep_assert_held(&rdtgroup_mutex);
611fa7d9493SBabu Moger 
612fa7d9493SBabu Moger 	rcu_read_lock();
613fa7d9493SBabu Moger 	for_each_process_thread(p, t) {
614fa7d9493SBabu Moger 		if ((r->type == RDTCTRL_GROUP && t->closid == r->closid) ||
615fa7d9493SBabu Moger 		    (r->type == RDTMON_GROUP && t->rmid == r->mon.rmid)) {
616fa7d9493SBabu Moger 			ret = 1;
617fa7d9493SBabu Moger 			break;
618fa7d9493SBabu Moger 		}
619fa7d9493SBabu Moger 	}
620fa7d9493SBabu Moger 	rcu_read_unlock();
621fa7d9493SBabu Moger 
622fa7d9493SBabu Moger 	return ret;
623fa7d9493SBabu Moger }
624fa7d9493SBabu Moger 
625fa7d9493SBabu Moger static int rdtgroup_task_write_permission(struct task_struct *task,
626fa7d9493SBabu Moger 					  struct kernfs_open_file *of)
627fa7d9493SBabu Moger {
628fa7d9493SBabu Moger 	const struct cred *tcred = get_task_cred(task);
629fa7d9493SBabu Moger 	const struct cred *cred = current_cred();
630fa7d9493SBabu Moger 	int ret = 0;
631fa7d9493SBabu Moger 
632fa7d9493SBabu Moger 	/*
633fa7d9493SBabu Moger 	 * Even if we're attaching all tasks in the thread group, we only
634fa7d9493SBabu Moger 	 * need to check permissions on one of them.
635fa7d9493SBabu Moger 	 */
636fa7d9493SBabu Moger 	if (!uid_eq(cred->euid, GLOBAL_ROOT_UID) &&
637fa7d9493SBabu Moger 	    !uid_eq(cred->euid, tcred->uid) &&
638fa7d9493SBabu Moger 	    !uid_eq(cred->euid, tcred->suid)) {
639fa7d9493SBabu Moger 		rdt_last_cmd_printf("No permission to move task %d\n", task->pid);
640fa7d9493SBabu Moger 		ret = -EPERM;
641fa7d9493SBabu Moger 	}
642fa7d9493SBabu Moger 
643fa7d9493SBabu Moger 	put_cred(tcred);
644fa7d9493SBabu Moger 	return ret;
645fa7d9493SBabu Moger }
646fa7d9493SBabu Moger 
647fa7d9493SBabu Moger static int rdtgroup_move_task(pid_t pid, struct rdtgroup *rdtgrp,
648fa7d9493SBabu Moger 			      struct kernfs_open_file *of)
649fa7d9493SBabu Moger {
650fa7d9493SBabu Moger 	struct task_struct *tsk;
651fa7d9493SBabu Moger 	int ret;
652fa7d9493SBabu Moger 
653fa7d9493SBabu Moger 	rcu_read_lock();
654fa7d9493SBabu Moger 	if (pid) {
655fa7d9493SBabu Moger 		tsk = find_task_by_vpid(pid);
656fa7d9493SBabu Moger 		if (!tsk) {
657fa7d9493SBabu Moger 			rcu_read_unlock();
658fa7d9493SBabu Moger 			rdt_last_cmd_printf("No task %d\n", pid);
659fa7d9493SBabu Moger 			return -ESRCH;
660fa7d9493SBabu Moger 		}
661fa7d9493SBabu Moger 	} else {
662fa7d9493SBabu Moger 		tsk = current;
663fa7d9493SBabu Moger 	}
664fa7d9493SBabu Moger 
665fa7d9493SBabu Moger 	get_task_struct(tsk);
666fa7d9493SBabu Moger 	rcu_read_unlock();
667fa7d9493SBabu Moger 
668fa7d9493SBabu Moger 	ret = rdtgroup_task_write_permission(tsk, of);
669fa7d9493SBabu Moger 	if (!ret)
670fa7d9493SBabu Moger 		ret = __rdtgroup_move_task(tsk, rdtgrp);
671fa7d9493SBabu Moger 
672fa7d9493SBabu Moger 	put_task_struct(tsk);
673fa7d9493SBabu Moger 	return ret;
674fa7d9493SBabu Moger }
675fa7d9493SBabu Moger 
676fa7d9493SBabu Moger static ssize_t rdtgroup_tasks_write(struct kernfs_open_file *of,
677fa7d9493SBabu Moger 				    char *buf, size_t nbytes, loff_t off)
678fa7d9493SBabu Moger {
679fa7d9493SBabu Moger 	struct rdtgroup *rdtgrp;
680fa7d9493SBabu Moger 	int ret = 0;
681fa7d9493SBabu Moger 	pid_t pid;
682fa7d9493SBabu Moger 
683fa7d9493SBabu Moger 	if (kstrtoint(strstrip(buf), 0, &pid) || pid < 0)
684fa7d9493SBabu Moger 		return -EINVAL;
685fa7d9493SBabu Moger 	rdtgrp = rdtgroup_kn_lock_live(of->kn);
686fa7d9493SBabu Moger 	if (!rdtgrp) {
687fa7d9493SBabu Moger 		rdtgroup_kn_unlock(of->kn);
688fa7d9493SBabu Moger 		return -ENOENT;
689fa7d9493SBabu Moger 	}
690fa7d9493SBabu Moger 	rdt_last_cmd_clear();
691fa7d9493SBabu Moger 
692fa7d9493SBabu Moger 	if (rdtgrp->mode == RDT_MODE_PSEUDO_LOCKED ||
693fa7d9493SBabu Moger 	    rdtgrp->mode == RDT_MODE_PSEUDO_LOCKSETUP) {
694fa7d9493SBabu Moger 		ret = -EINVAL;
695723f1a0dSBabu Moger 		rdt_last_cmd_puts("Pseudo-locking in progress\n");
696fa7d9493SBabu Moger 		goto unlock;
697fa7d9493SBabu Moger 	}
698fa7d9493SBabu Moger 
699fa7d9493SBabu Moger 	ret = rdtgroup_move_task(pid, rdtgrp, of);
700fa7d9493SBabu Moger 
701fa7d9493SBabu Moger unlock:
702fa7d9493SBabu Moger 	rdtgroup_kn_unlock(of->kn);
703fa7d9493SBabu Moger 
704fa7d9493SBabu Moger 	return ret ?: nbytes;
705fa7d9493SBabu Moger }
706fa7d9493SBabu Moger 
707fa7d9493SBabu Moger static void show_rdt_tasks(struct rdtgroup *r, struct seq_file *s)
708fa7d9493SBabu Moger {
709fa7d9493SBabu Moger 	struct task_struct *p, *t;
710fa7d9493SBabu Moger 
711fa7d9493SBabu Moger 	rcu_read_lock();
712fa7d9493SBabu Moger 	for_each_process_thread(p, t) {
713fa7d9493SBabu Moger 		if ((r->type == RDTCTRL_GROUP && t->closid == r->closid) ||
714fa7d9493SBabu Moger 		    (r->type == RDTMON_GROUP && t->rmid == r->mon.rmid))
715fa7d9493SBabu Moger 			seq_printf(s, "%d\n", t->pid);
716fa7d9493SBabu Moger 	}
717fa7d9493SBabu Moger 	rcu_read_unlock();
718fa7d9493SBabu Moger }
719fa7d9493SBabu Moger 
720fa7d9493SBabu Moger static int rdtgroup_tasks_show(struct kernfs_open_file *of,
721fa7d9493SBabu Moger 			       struct seq_file *s, void *v)
722fa7d9493SBabu Moger {
723fa7d9493SBabu Moger 	struct rdtgroup *rdtgrp;
724fa7d9493SBabu Moger 	int ret = 0;
725fa7d9493SBabu Moger 
726fa7d9493SBabu Moger 	rdtgrp = rdtgroup_kn_lock_live(of->kn);
727fa7d9493SBabu Moger 	if (rdtgrp)
728fa7d9493SBabu Moger 		show_rdt_tasks(rdtgrp, s);
729fa7d9493SBabu Moger 	else
730fa7d9493SBabu Moger 		ret = -ENOENT;
731fa7d9493SBabu Moger 	rdtgroup_kn_unlock(of->kn);
732fa7d9493SBabu Moger 
733fa7d9493SBabu Moger 	return ret;
734fa7d9493SBabu Moger }
735fa7d9493SBabu Moger 
736fa7d9493SBabu Moger static int rdt_last_cmd_status_show(struct kernfs_open_file *of,
737fa7d9493SBabu Moger 				    struct seq_file *seq, void *v)
738fa7d9493SBabu Moger {
739fa7d9493SBabu Moger 	int len;
740fa7d9493SBabu Moger 
741fa7d9493SBabu Moger 	mutex_lock(&rdtgroup_mutex);
742fa7d9493SBabu Moger 	len = seq_buf_used(&last_cmd_status);
743fa7d9493SBabu Moger 	if (len)
744fa7d9493SBabu Moger 		seq_printf(seq, "%.*s", len, last_cmd_status_buf);
745fa7d9493SBabu Moger 	else
746fa7d9493SBabu Moger 		seq_puts(seq, "ok\n");
747fa7d9493SBabu Moger 	mutex_unlock(&rdtgroup_mutex);
748fa7d9493SBabu Moger 	return 0;
749fa7d9493SBabu Moger }
750fa7d9493SBabu Moger 
751fa7d9493SBabu Moger static int rdt_num_closids_show(struct kernfs_open_file *of,
752fa7d9493SBabu Moger 				struct seq_file *seq, void *v)
753fa7d9493SBabu Moger {
754fa7d9493SBabu Moger 	struct rdt_resource *r = of->kn->parent->priv;
755fa7d9493SBabu Moger 
756fa7d9493SBabu Moger 	seq_printf(seq, "%d\n", r->num_closid);
757fa7d9493SBabu Moger 	return 0;
758fa7d9493SBabu Moger }
759fa7d9493SBabu Moger 
760fa7d9493SBabu Moger static int rdt_default_ctrl_show(struct kernfs_open_file *of,
761fa7d9493SBabu Moger 			     struct seq_file *seq, void *v)
762fa7d9493SBabu Moger {
763fa7d9493SBabu Moger 	struct rdt_resource *r = of->kn->parent->priv;
764fa7d9493SBabu Moger 
765fa7d9493SBabu Moger 	seq_printf(seq, "%x\n", r->default_ctrl);
766fa7d9493SBabu Moger 	return 0;
767fa7d9493SBabu Moger }
768fa7d9493SBabu Moger 
769fa7d9493SBabu Moger static int rdt_min_cbm_bits_show(struct kernfs_open_file *of,
770fa7d9493SBabu Moger 			     struct seq_file *seq, void *v)
771fa7d9493SBabu Moger {
772fa7d9493SBabu Moger 	struct rdt_resource *r = of->kn->parent->priv;
773fa7d9493SBabu Moger 
774fa7d9493SBabu Moger 	seq_printf(seq, "%u\n", r->cache.min_cbm_bits);
775fa7d9493SBabu Moger 	return 0;
776fa7d9493SBabu Moger }
777fa7d9493SBabu Moger 
778fa7d9493SBabu Moger static int rdt_shareable_bits_show(struct kernfs_open_file *of,
779fa7d9493SBabu Moger 				   struct seq_file *seq, void *v)
780fa7d9493SBabu Moger {
781fa7d9493SBabu Moger 	struct rdt_resource *r = of->kn->parent->priv;
782fa7d9493SBabu Moger 
783fa7d9493SBabu Moger 	seq_printf(seq, "%x\n", r->cache.shareable_bits);
784fa7d9493SBabu Moger 	return 0;
785fa7d9493SBabu Moger }
786fa7d9493SBabu Moger 
787fa7d9493SBabu Moger /**
788fa7d9493SBabu Moger  * rdt_bit_usage_show - Display current usage of resources
789fa7d9493SBabu Moger  *
790fa7d9493SBabu Moger  * A domain is a shared resource that can now be allocated differently. Here
791fa7d9493SBabu Moger  * we display the current regions of the domain as an annotated bitmask.
792fa7d9493SBabu Moger  * For each domain of this resource its allocation bitmask
793fa7d9493SBabu Moger  * is annotated as below to indicate the current usage of the corresponding bit:
794fa7d9493SBabu Moger  *   0 - currently unused
795fa7d9493SBabu Moger  *   X - currently available for sharing and used by software and hardware
796fa7d9493SBabu Moger  *   H - currently used by hardware only but available for software use
797fa7d9493SBabu Moger  *   S - currently used and shareable by software only
798fa7d9493SBabu Moger  *   E - currently used exclusively by one resource group
799fa7d9493SBabu Moger  *   P - currently pseudo-locked by one resource group
800fa7d9493SBabu Moger  */
801fa7d9493SBabu Moger static int rdt_bit_usage_show(struct kernfs_open_file *of,
802fa7d9493SBabu Moger 			      struct seq_file *seq, void *v)
803fa7d9493SBabu Moger {
804fa7d9493SBabu Moger 	struct rdt_resource *r = of->kn->parent->priv;
805fa7d9493SBabu Moger 	u32 sw_shareable = 0, hw_shareable = 0;
806fa7d9493SBabu Moger 	u32 exclusive = 0, pseudo_locked = 0;
807fa7d9493SBabu Moger 	struct rdt_domain *dom;
808fa7d9493SBabu Moger 	int i, hwb, swb, excl, psl;
809fa7d9493SBabu Moger 	enum rdtgrp_mode mode;
810fa7d9493SBabu Moger 	bool sep = false;
811fa7d9493SBabu Moger 	u32 *ctrl;
812fa7d9493SBabu Moger 
813fa7d9493SBabu Moger 	mutex_lock(&rdtgroup_mutex);
814fa7d9493SBabu Moger 	hw_shareable = r->cache.shareable_bits;
815fa7d9493SBabu Moger 	list_for_each_entry(dom, &r->domains, list) {
816fa7d9493SBabu Moger 		if (sep)
817fa7d9493SBabu Moger 			seq_putc(seq, ';');
818fa7d9493SBabu Moger 		ctrl = dom->ctrl_val;
819fa7d9493SBabu Moger 		sw_shareable = 0;
820fa7d9493SBabu Moger 		exclusive = 0;
821fa7d9493SBabu Moger 		seq_printf(seq, "%d=", dom->id);
822fa7d9493SBabu Moger 		for (i = 0; i < closids_supported(); i++, ctrl++) {
823fa7d9493SBabu Moger 			if (!closid_allocated(i))
824fa7d9493SBabu Moger 				continue;
825fa7d9493SBabu Moger 			mode = rdtgroup_mode_by_closid(i);
826fa7d9493SBabu Moger 			switch (mode) {
827fa7d9493SBabu Moger 			case RDT_MODE_SHAREABLE:
828fa7d9493SBabu Moger 				sw_shareable |= *ctrl;
829fa7d9493SBabu Moger 				break;
830fa7d9493SBabu Moger 			case RDT_MODE_EXCLUSIVE:
831fa7d9493SBabu Moger 				exclusive |= *ctrl;
832fa7d9493SBabu Moger 				break;
833fa7d9493SBabu Moger 			case RDT_MODE_PSEUDO_LOCKSETUP:
834fa7d9493SBabu Moger 			/*
835fa7d9493SBabu Moger 			 * RDT_MODE_PSEUDO_LOCKSETUP is possible
836fa7d9493SBabu Moger 			 * here but not included since the CBM
837fa7d9493SBabu Moger 			 * associated with this CLOSID in this mode
838fa7d9493SBabu Moger 			 * is not initialized and no task or cpu can be
839fa7d9493SBabu Moger 			 * assigned this CLOSID.
840fa7d9493SBabu Moger 			 */
841fa7d9493SBabu Moger 				break;
842fa7d9493SBabu Moger 			case RDT_MODE_PSEUDO_LOCKED:
843fa7d9493SBabu Moger 			case RDT_NUM_MODES:
844fa7d9493SBabu Moger 				WARN(1,
845fa7d9493SBabu Moger 				     "invalid mode for closid %d\n", i);
846fa7d9493SBabu Moger 				break;
847fa7d9493SBabu Moger 			}
848fa7d9493SBabu Moger 		}
849fa7d9493SBabu Moger 		for (i = r->cache.cbm_len - 1; i >= 0; i--) {
850fa7d9493SBabu Moger 			pseudo_locked = dom->plr ? dom->plr->cbm : 0;
851fa7d9493SBabu Moger 			hwb = test_bit(i, (unsigned long *)&hw_shareable);
852fa7d9493SBabu Moger 			swb = test_bit(i, (unsigned long *)&sw_shareable);
853fa7d9493SBabu Moger 			excl = test_bit(i, (unsigned long *)&exclusive);
854fa7d9493SBabu Moger 			psl = test_bit(i, (unsigned long *)&pseudo_locked);
855fa7d9493SBabu Moger 			if (hwb && swb)
856fa7d9493SBabu Moger 				seq_putc(seq, 'X');
857fa7d9493SBabu Moger 			else if (hwb && !swb)
858fa7d9493SBabu Moger 				seq_putc(seq, 'H');
859fa7d9493SBabu Moger 			else if (!hwb && swb)
860fa7d9493SBabu Moger 				seq_putc(seq, 'S');
861fa7d9493SBabu Moger 			else if (excl)
862fa7d9493SBabu Moger 				seq_putc(seq, 'E');
863fa7d9493SBabu Moger 			else if (psl)
864fa7d9493SBabu Moger 				seq_putc(seq, 'P');
865fa7d9493SBabu Moger 			else /* Unused bits remain */
866fa7d9493SBabu Moger 				seq_putc(seq, '0');
867fa7d9493SBabu Moger 		}
868fa7d9493SBabu Moger 		sep = true;
869fa7d9493SBabu Moger 	}
870fa7d9493SBabu Moger 	seq_putc(seq, '\n');
871fa7d9493SBabu Moger 	mutex_unlock(&rdtgroup_mutex);
872fa7d9493SBabu Moger 	return 0;
873fa7d9493SBabu Moger }
874fa7d9493SBabu Moger 
875fa7d9493SBabu Moger static int rdt_min_bw_show(struct kernfs_open_file *of,
876fa7d9493SBabu Moger 			     struct seq_file *seq, void *v)
877fa7d9493SBabu Moger {
878fa7d9493SBabu Moger 	struct rdt_resource *r = of->kn->parent->priv;
879fa7d9493SBabu Moger 
880fa7d9493SBabu Moger 	seq_printf(seq, "%u\n", r->membw.min_bw);
881fa7d9493SBabu Moger 	return 0;
882fa7d9493SBabu Moger }
883fa7d9493SBabu Moger 
884fa7d9493SBabu Moger static int rdt_num_rmids_show(struct kernfs_open_file *of,
885fa7d9493SBabu Moger 			      struct seq_file *seq, void *v)
886fa7d9493SBabu Moger {
887fa7d9493SBabu Moger 	struct rdt_resource *r = of->kn->parent->priv;
888fa7d9493SBabu Moger 
889fa7d9493SBabu Moger 	seq_printf(seq, "%d\n", r->num_rmid);
890fa7d9493SBabu Moger 
891fa7d9493SBabu Moger 	return 0;
892fa7d9493SBabu Moger }
893fa7d9493SBabu Moger 
894fa7d9493SBabu Moger static int rdt_mon_features_show(struct kernfs_open_file *of,
895fa7d9493SBabu Moger 				 struct seq_file *seq, void *v)
896fa7d9493SBabu Moger {
897fa7d9493SBabu Moger 	struct rdt_resource *r = of->kn->parent->priv;
898fa7d9493SBabu Moger 	struct mon_evt *mevt;
899fa7d9493SBabu Moger 
900fa7d9493SBabu Moger 	list_for_each_entry(mevt, &r->evt_list, list)
901fa7d9493SBabu Moger 		seq_printf(seq, "%s\n", mevt->name);
902fa7d9493SBabu Moger 
903fa7d9493SBabu Moger 	return 0;
904fa7d9493SBabu Moger }
905fa7d9493SBabu Moger 
906fa7d9493SBabu Moger static int rdt_bw_gran_show(struct kernfs_open_file *of,
907fa7d9493SBabu Moger 			     struct seq_file *seq, void *v)
908fa7d9493SBabu Moger {
909fa7d9493SBabu Moger 	struct rdt_resource *r = of->kn->parent->priv;
910fa7d9493SBabu Moger 
911fa7d9493SBabu Moger 	seq_printf(seq, "%u\n", r->membw.bw_gran);
912fa7d9493SBabu Moger 	return 0;
913fa7d9493SBabu Moger }
914fa7d9493SBabu Moger 
915fa7d9493SBabu Moger static int rdt_delay_linear_show(struct kernfs_open_file *of,
916fa7d9493SBabu Moger 			     struct seq_file *seq, void *v)
917fa7d9493SBabu Moger {
918fa7d9493SBabu Moger 	struct rdt_resource *r = of->kn->parent->priv;
919fa7d9493SBabu Moger 
920fa7d9493SBabu Moger 	seq_printf(seq, "%u\n", r->membw.delay_linear);
921fa7d9493SBabu Moger 	return 0;
922fa7d9493SBabu Moger }
923fa7d9493SBabu Moger 
924fa7d9493SBabu Moger static int max_threshold_occ_show(struct kernfs_open_file *of,
925fa7d9493SBabu Moger 				  struct seq_file *seq, void *v)
926fa7d9493SBabu Moger {
927fa7d9493SBabu Moger 	struct rdt_resource *r = of->kn->parent->priv;
928fa7d9493SBabu Moger 
929352940ecSBabu Moger 	seq_printf(seq, "%u\n", resctrl_cqm_threshold * r->mon_scale);
930fa7d9493SBabu Moger 
931fa7d9493SBabu Moger 	return 0;
932fa7d9493SBabu Moger }
933fa7d9493SBabu Moger 
934fa7d9493SBabu Moger static ssize_t max_threshold_occ_write(struct kernfs_open_file *of,
935fa7d9493SBabu Moger 				       char *buf, size_t nbytes, loff_t off)
936fa7d9493SBabu Moger {
937fa7d9493SBabu Moger 	struct rdt_resource *r = of->kn->parent->priv;
938fa7d9493SBabu Moger 	unsigned int bytes;
939fa7d9493SBabu Moger 	int ret;
940fa7d9493SBabu Moger 
941fa7d9493SBabu Moger 	ret = kstrtouint(buf, 0, &bytes);
942fa7d9493SBabu Moger 	if (ret)
943fa7d9493SBabu Moger 		return ret;
944fa7d9493SBabu Moger 
945fa7d9493SBabu Moger 	if (bytes > (boot_cpu_data.x86_cache_size * 1024))
946fa7d9493SBabu Moger 		return -EINVAL;
947fa7d9493SBabu Moger 
948352940ecSBabu Moger 	resctrl_cqm_threshold = bytes / r->mon_scale;
949fa7d9493SBabu Moger 
950fa7d9493SBabu Moger 	return nbytes;
951fa7d9493SBabu Moger }
952fa7d9493SBabu Moger 
953fa7d9493SBabu Moger /*
954fa7d9493SBabu Moger  * rdtgroup_mode_show - Display mode of this resource group
955fa7d9493SBabu Moger  */
956fa7d9493SBabu Moger static int rdtgroup_mode_show(struct kernfs_open_file *of,
957fa7d9493SBabu Moger 			      struct seq_file *s, void *v)
958fa7d9493SBabu Moger {
959fa7d9493SBabu Moger 	struct rdtgroup *rdtgrp;
960fa7d9493SBabu Moger 
961fa7d9493SBabu Moger 	rdtgrp = rdtgroup_kn_lock_live(of->kn);
962fa7d9493SBabu Moger 	if (!rdtgrp) {
963fa7d9493SBabu Moger 		rdtgroup_kn_unlock(of->kn);
964fa7d9493SBabu Moger 		return -ENOENT;
965fa7d9493SBabu Moger 	}
966fa7d9493SBabu Moger 
967fa7d9493SBabu Moger 	seq_printf(s, "%s\n", rdtgroup_mode_str(rdtgrp->mode));
968fa7d9493SBabu Moger 
969fa7d9493SBabu Moger 	rdtgroup_kn_unlock(of->kn);
970fa7d9493SBabu Moger 	return 0;
971fa7d9493SBabu Moger }
972fa7d9493SBabu Moger 
973fa7d9493SBabu Moger /**
974fa7d9493SBabu Moger  * rdt_cdp_peer_get - Retrieve CDP peer if it exists
975fa7d9493SBabu Moger  * @r: RDT resource to which RDT domain @d belongs
976fa7d9493SBabu Moger  * @d: Cache instance for which a CDP peer is requested
977fa7d9493SBabu Moger  * @r_cdp: RDT resource that shares hardware with @r (RDT resource peer)
978fa7d9493SBabu Moger  *         Used to return the result.
979fa7d9493SBabu Moger  * @d_cdp: RDT domain that shares hardware with @d (RDT domain peer)
980fa7d9493SBabu Moger  *         Used to return the result.
981fa7d9493SBabu Moger  *
982fa7d9493SBabu Moger  * RDT resources are managed independently and by extension the RDT domains
983fa7d9493SBabu Moger  * (RDT resource instances) are managed independently also. The Code and
984fa7d9493SBabu Moger  * Data Prioritization (CDP) RDT resources, while managed independently,
985fa7d9493SBabu Moger  * could refer to the same underlying hardware. For example,
986fa7d9493SBabu Moger  * RDT_RESOURCE_L2CODE and RDT_RESOURCE_L2DATA both refer to the L2 cache.
987fa7d9493SBabu Moger  *
988fa7d9493SBabu Moger  * When provided with an RDT resource @r and an instance of that RDT
989fa7d9493SBabu Moger  * resource @d rdt_cdp_peer_get() will return if there is a peer RDT
990fa7d9493SBabu Moger  * resource and the exact instance that shares the same hardware.
991fa7d9493SBabu Moger  *
992fa7d9493SBabu Moger  * Return: 0 if a CDP peer was found, <0 on error or if no CDP peer exists.
993fa7d9493SBabu Moger  *         If a CDP peer was found, @r_cdp will point to the peer RDT resource
994fa7d9493SBabu Moger  *         and @d_cdp will point to the peer RDT domain.
995fa7d9493SBabu Moger  */
996fa7d9493SBabu Moger static int rdt_cdp_peer_get(struct rdt_resource *r, struct rdt_domain *d,
997fa7d9493SBabu Moger 			    struct rdt_resource **r_cdp,
998fa7d9493SBabu Moger 			    struct rdt_domain **d_cdp)
999fa7d9493SBabu Moger {
1000fa7d9493SBabu Moger 	struct rdt_resource *_r_cdp = NULL;
1001fa7d9493SBabu Moger 	struct rdt_domain *_d_cdp = NULL;
1002fa7d9493SBabu Moger 	int ret = 0;
1003fa7d9493SBabu Moger 
1004fa7d9493SBabu Moger 	switch (r->rid) {
1005fa7d9493SBabu Moger 	case RDT_RESOURCE_L3DATA:
1006fa7d9493SBabu Moger 		_r_cdp = &rdt_resources_all[RDT_RESOURCE_L3CODE];
1007fa7d9493SBabu Moger 		break;
1008fa7d9493SBabu Moger 	case RDT_RESOURCE_L3CODE:
1009fa7d9493SBabu Moger 		_r_cdp =  &rdt_resources_all[RDT_RESOURCE_L3DATA];
1010fa7d9493SBabu Moger 		break;
1011fa7d9493SBabu Moger 	case RDT_RESOURCE_L2DATA:
1012fa7d9493SBabu Moger 		_r_cdp =  &rdt_resources_all[RDT_RESOURCE_L2CODE];
1013fa7d9493SBabu Moger 		break;
1014fa7d9493SBabu Moger 	case RDT_RESOURCE_L2CODE:
1015fa7d9493SBabu Moger 		_r_cdp =  &rdt_resources_all[RDT_RESOURCE_L2DATA];
1016fa7d9493SBabu Moger 		break;
1017fa7d9493SBabu Moger 	default:
1018fa7d9493SBabu Moger 		ret = -ENOENT;
1019fa7d9493SBabu Moger 		goto out;
1020fa7d9493SBabu Moger 	}
1021fa7d9493SBabu Moger 
1022fa7d9493SBabu Moger 	/*
1023fa7d9493SBabu Moger 	 * When a new CPU comes online and CDP is enabled then the new
1024fa7d9493SBabu Moger 	 * RDT domains (if any) associated with both CDP RDT resources
1025fa7d9493SBabu Moger 	 * are added in the same CPU online routine while the
1026fa7d9493SBabu Moger 	 * rdtgroup_mutex is held. It should thus not happen for one
1027fa7d9493SBabu Moger 	 * RDT domain to exist and be associated with its RDT CDP
1028fa7d9493SBabu Moger 	 * resource but there is no RDT domain associated with the
1029fa7d9493SBabu Moger 	 * peer RDT CDP resource. Hence the WARN.
1030fa7d9493SBabu Moger 	 */
1031fa7d9493SBabu Moger 	_d_cdp = rdt_find_domain(_r_cdp, d->id, NULL);
1032fa7d9493SBabu Moger 	if (WARN_ON(!_d_cdp)) {
1033fa7d9493SBabu Moger 		_r_cdp = NULL;
1034fa7d9493SBabu Moger 		ret = -EINVAL;
1035fa7d9493SBabu Moger 	}
1036fa7d9493SBabu Moger 
1037fa7d9493SBabu Moger out:
1038fa7d9493SBabu Moger 	*r_cdp = _r_cdp;
1039fa7d9493SBabu Moger 	*d_cdp = _d_cdp;
1040fa7d9493SBabu Moger 
1041fa7d9493SBabu Moger 	return ret;
1042fa7d9493SBabu Moger }
1043fa7d9493SBabu Moger 
1044fa7d9493SBabu Moger /**
1045fa7d9493SBabu Moger  * __rdtgroup_cbm_overlaps - Does CBM for intended closid overlap with other
1046fa7d9493SBabu Moger  * @r: Resource to which domain instance @d belongs.
1047fa7d9493SBabu Moger  * @d: The domain instance for which @closid is being tested.
1048fa7d9493SBabu Moger  * @cbm: Capacity bitmask being tested.
1049fa7d9493SBabu Moger  * @closid: Intended closid for @cbm.
1050fa7d9493SBabu Moger  * @exclusive: Only check if overlaps with exclusive resource groups
1051fa7d9493SBabu Moger  *
1052fa7d9493SBabu Moger  * Checks if provided @cbm intended to be used for @closid on domain
1053fa7d9493SBabu Moger  * @d overlaps with any other closids or other hardware usage associated
1054fa7d9493SBabu Moger  * with this domain. If @exclusive is true then only overlaps with
1055fa7d9493SBabu Moger  * resource groups in exclusive mode will be considered. If @exclusive
1056fa7d9493SBabu Moger  * is false then overlaps with any resource group or hardware entities
1057fa7d9493SBabu Moger  * will be considered.
1058fa7d9493SBabu Moger  *
1059fa7d9493SBabu Moger  * @cbm is unsigned long, even if only 32 bits are used, to make the
1060fa7d9493SBabu Moger  * bitmap functions work correctly.
1061fa7d9493SBabu Moger  *
1062fa7d9493SBabu Moger  * Return: false if CBM does not overlap, true if it does.
1063fa7d9493SBabu Moger  */
1064fa7d9493SBabu Moger static bool __rdtgroup_cbm_overlaps(struct rdt_resource *r, struct rdt_domain *d,
1065fa7d9493SBabu Moger 				    unsigned long cbm, int closid, bool exclusive)
1066fa7d9493SBabu Moger {
1067fa7d9493SBabu Moger 	enum rdtgrp_mode mode;
1068fa7d9493SBabu Moger 	unsigned long ctrl_b;
1069fa7d9493SBabu Moger 	u32 *ctrl;
1070fa7d9493SBabu Moger 	int i;
1071fa7d9493SBabu Moger 
1072fa7d9493SBabu Moger 	/* Check for any overlap with regions used by hardware directly */
1073fa7d9493SBabu Moger 	if (!exclusive) {
1074fa7d9493SBabu Moger 		ctrl_b = r->cache.shareable_bits;
1075fa7d9493SBabu Moger 		if (bitmap_intersects(&cbm, &ctrl_b, r->cache.cbm_len))
1076fa7d9493SBabu Moger 			return true;
1077fa7d9493SBabu Moger 	}
1078fa7d9493SBabu Moger 
1079fa7d9493SBabu Moger 	/* Check for overlap with other resource groups */
1080fa7d9493SBabu Moger 	ctrl = d->ctrl_val;
1081fa7d9493SBabu Moger 	for (i = 0; i < closids_supported(); i++, ctrl++) {
1082fa7d9493SBabu Moger 		ctrl_b = *ctrl;
1083fa7d9493SBabu Moger 		mode = rdtgroup_mode_by_closid(i);
1084fa7d9493SBabu Moger 		if (closid_allocated(i) && i != closid &&
1085fa7d9493SBabu Moger 		    mode != RDT_MODE_PSEUDO_LOCKSETUP) {
1086fa7d9493SBabu Moger 			if (bitmap_intersects(&cbm, &ctrl_b, r->cache.cbm_len)) {
1087fa7d9493SBabu Moger 				if (exclusive) {
1088fa7d9493SBabu Moger 					if (mode == RDT_MODE_EXCLUSIVE)
1089fa7d9493SBabu Moger 						return true;
1090fa7d9493SBabu Moger 					continue;
1091fa7d9493SBabu Moger 				}
1092fa7d9493SBabu Moger 				return true;
1093fa7d9493SBabu Moger 			}
1094fa7d9493SBabu Moger 		}
1095fa7d9493SBabu Moger 	}
1096fa7d9493SBabu Moger 
1097fa7d9493SBabu Moger 	return false;
1098fa7d9493SBabu Moger }
1099fa7d9493SBabu Moger 
1100fa7d9493SBabu Moger /**
1101fa7d9493SBabu Moger  * rdtgroup_cbm_overlaps - Does CBM overlap with other use of hardware
1102fa7d9493SBabu Moger  * @r: Resource to which domain instance @d belongs.
1103fa7d9493SBabu Moger  * @d: The domain instance for which @closid is being tested.
1104fa7d9493SBabu Moger  * @cbm: Capacity bitmask being tested.
1105fa7d9493SBabu Moger  * @closid: Intended closid for @cbm.
1106fa7d9493SBabu Moger  * @exclusive: Only check if overlaps with exclusive resource groups
1107fa7d9493SBabu Moger  *
1108fa7d9493SBabu Moger  * Resources that can be allocated using a CBM can use the CBM to control
1109fa7d9493SBabu Moger  * the overlap of these allocations. rdtgroup_cmb_overlaps() is the test
1110fa7d9493SBabu Moger  * for overlap. Overlap test is not limited to the specific resource for
1111fa7d9493SBabu Moger  * which the CBM is intended though - when dealing with CDP resources that
1112fa7d9493SBabu Moger  * share the underlying hardware the overlap check should be performed on
1113fa7d9493SBabu Moger  * the CDP resource sharing the hardware also.
1114fa7d9493SBabu Moger  *
1115fa7d9493SBabu Moger  * Refer to description of __rdtgroup_cbm_overlaps() for the details of the
1116fa7d9493SBabu Moger  * overlap test.
1117fa7d9493SBabu Moger  *
1118fa7d9493SBabu Moger  * Return: true if CBM overlap detected, false if there is no overlap
1119fa7d9493SBabu Moger  */
1120fa7d9493SBabu Moger bool rdtgroup_cbm_overlaps(struct rdt_resource *r, struct rdt_domain *d,
1121fa7d9493SBabu Moger 			   unsigned long cbm, int closid, bool exclusive)
1122fa7d9493SBabu Moger {
1123fa7d9493SBabu Moger 	struct rdt_resource *r_cdp;
1124fa7d9493SBabu Moger 	struct rdt_domain *d_cdp;
1125fa7d9493SBabu Moger 
1126fa7d9493SBabu Moger 	if (__rdtgroup_cbm_overlaps(r, d, cbm, closid, exclusive))
1127fa7d9493SBabu Moger 		return true;
1128fa7d9493SBabu Moger 
1129fa7d9493SBabu Moger 	if (rdt_cdp_peer_get(r, d, &r_cdp, &d_cdp) < 0)
1130fa7d9493SBabu Moger 		return false;
1131fa7d9493SBabu Moger 
1132fa7d9493SBabu Moger 	return  __rdtgroup_cbm_overlaps(r_cdp, d_cdp, cbm, closid, exclusive);
1133fa7d9493SBabu Moger }
1134fa7d9493SBabu Moger 
1135fa7d9493SBabu Moger /**
1136fa7d9493SBabu Moger  * rdtgroup_mode_test_exclusive - Test if this resource group can be exclusive
1137fa7d9493SBabu Moger  *
1138fa7d9493SBabu Moger  * An exclusive resource group implies that there should be no sharing of
1139fa7d9493SBabu Moger  * its allocated resources. At the time this group is considered to be
1140fa7d9493SBabu Moger  * exclusive this test can determine if its current schemata supports this
1141fa7d9493SBabu Moger  * setting by testing for overlap with all other resource groups.
1142fa7d9493SBabu Moger  *
1143fa7d9493SBabu Moger  * Return: true if resource group can be exclusive, false if there is overlap
1144fa7d9493SBabu Moger  * with allocations of other resource groups and thus this resource group
1145fa7d9493SBabu Moger  * cannot be exclusive.
1146fa7d9493SBabu Moger  */
1147fa7d9493SBabu Moger static bool rdtgroup_mode_test_exclusive(struct rdtgroup *rdtgrp)
1148fa7d9493SBabu Moger {
1149fa7d9493SBabu Moger 	int closid = rdtgrp->closid;
1150fa7d9493SBabu Moger 	struct rdt_resource *r;
1151fa7d9493SBabu Moger 	bool has_cache = false;
1152fa7d9493SBabu Moger 	struct rdt_domain *d;
1153fa7d9493SBabu Moger 
1154fa7d9493SBabu Moger 	for_each_alloc_enabled_rdt_resource(r) {
1155fa7d9493SBabu Moger 		if (r->rid == RDT_RESOURCE_MBA)
1156fa7d9493SBabu Moger 			continue;
1157fa7d9493SBabu Moger 		has_cache = true;
1158fa7d9493SBabu Moger 		list_for_each_entry(d, &r->domains, list) {
1159fa7d9493SBabu Moger 			if (rdtgroup_cbm_overlaps(r, d, d->ctrl_val[closid],
1160fa7d9493SBabu Moger 						  rdtgrp->closid, false)) {
1161723f1a0dSBabu Moger 				rdt_last_cmd_puts("Schemata overlaps\n");
1162fa7d9493SBabu Moger 				return false;
1163fa7d9493SBabu Moger 			}
1164fa7d9493SBabu Moger 		}
1165fa7d9493SBabu Moger 	}
1166fa7d9493SBabu Moger 
1167fa7d9493SBabu Moger 	if (!has_cache) {
1168723f1a0dSBabu Moger 		rdt_last_cmd_puts("Cannot be exclusive without CAT/CDP\n");
1169fa7d9493SBabu Moger 		return false;
1170fa7d9493SBabu Moger 	}
1171fa7d9493SBabu Moger 
1172fa7d9493SBabu Moger 	return true;
1173fa7d9493SBabu Moger }
1174fa7d9493SBabu Moger 
1175fa7d9493SBabu Moger /**
1176fa7d9493SBabu Moger  * rdtgroup_mode_write - Modify the resource group's mode
1177fa7d9493SBabu Moger  *
1178fa7d9493SBabu Moger  */
1179fa7d9493SBabu Moger static ssize_t rdtgroup_mode_write(struct kernfs_open_file *of,
1180fa7d9493SBabu Moger 				   char *buf, size_t nbytes, loff_t off)
1181fa7d9493SBabu Moger {
1182fa7d9493SBabu Moger 	struct rdtgroup *rdtgrp;
1183fa7d9493SBabu Moger 	enum rdtgrp_mode mode;
1184fa7d9493SBabu Moger 	int ret = 0;
1185fa7d9493SBabu Moger 
1186fa7d9493SBabu Moger 	/* Valid input requires a trailing newline */
1187fa7d9493SBabu Moger 	if (nbytes == 0 || buf[nbytes - 1] != '\n')
1188fa7d9493SBabu Moger 		return -EINVAL;
1189fa7d9493SBabu Moger 	buf[nbytes - 1] = '\0';
1190fa7d9493SBabu Moger 
1191fa7d9493SBabu Moger 	rdtgrp = rdtgroup_kn_lock_live(of->kn);
1192fa7d9493SBabu Moger 	if (!rdtgrp) {
1193fa7d9493SBabu Moger 		rdtgroup_kn_unlock(of->kn);
1194fa7d9493SBabu Moger 		return -ENOENT;
1195fa7d9493SBabu Moger 	}
1196fa7d9493SBabu Moger 
1197fa7d9493SBabu Moger 	rdt_last_cmd_clear();
1198fa7d9493SBabu Moger 
1199fa7d9493SBabu Moger 	mode = rdtgrp->mode;
1200fa7d9493SBabu Moger 
1201fa7d9493SBabu Moger 	if ((!strcmp(buf, "shareable") && mode == RDT_MODE_SHAREABLE) ||
1202fa7d9493SBabu Moger 	    (!strcmp(buf, "exclusive") && mode == RDT_MODE_EXCLUSIVE) ||
1203fa7d9493SBabu Moger 	    (!strcmp(buf, "pseudo-locksetup") &&
1204fa7d9493SBabu Moger 	     mode == RDT_MODE_PSEUDO_LOCKSETUP) ||
1205fa7d9493SBabu Moger 	    (!strcmp(buf, "pseudo-locked") && mode == RDT_MODE_PSEUDO_LOCKED))
1206fa7d9493SBabu Moger 		goto out;
1207fa7d9493SBabu Moger 
1208fa7d9493SBabu Moger 	if (mode == RDT_MODE_PSEUDO_LOCKED) {
120945682489SReinette Chatre 		rdt_last_cmd_puts("Cannot change pseudo-locked group\n");
1210fa7d9493SBabu Moger 		ret = -EINVAL;
1211fa7d9493SBabu Moger 		goto out;
1212fa7d9493SBabu Moger 	}
1213fa7d9493SBabu Moger 
1214fa7d9493SBabu Moger 	if (!strcmp(buf, "shareable")) {
1215fa7d9493SBabu Moger 		if (rdtgrp->mode == RDT_MODE_PSEUDO_LOCKSETUP) {
1216fa7d9493SBabu Moger 			ret = rdtgroup_locksetup_exit(rdtgrp);
1217fa7d9493SBabu Moger 			if (ret)
1218fa7d9493SBabu Moger 				goto out;
1219fa7d9493SBabu Moger 		}
1220fa7d9493SBabu Moger 		rdtgrp->mode = RDT_MODE_SHAREABLE;
1221fa7d9493SBabu Moger 	} else if (!strcmp(buf, "exclusive")) {
1222fa7d9493SBabu Moger 		if (!rdtgroup_mode_test_exclusive(rdtgrp)) {
1223fa7d9493SBabu Moger 			ret = -EINVAL;
1224fa7d9493SBabu Moger 			goto out;
1225fa7d9493SBabu Moger 		}
1226fa7d9493SBabu Moger 		if (rdtgrp->mode == RDT_MODE_PSEUDO_LOCKSETUP) {
1227fa7d9493SBabu Moger 			ret = rdtgroup_locksetup_exit(rdtgrp);
1228fa7d9493SBabu Moger 			if (ret)
1229fa7d9493SBabu Moger 				goto out;
1230fa7d9493SBabu Moger 		}
1231fa7d9493SBabu Moger 		rdtgrp->mode = RDT_MODE_EXCLUSIVE;
1232fa7d9493SBabu Moger 	} else if (!strcmp(buf, "pseudo-locksetup")) {
1233fa7d9493SBabu Moger 		ret = rdtgroup_locksetup_enter(rdtgrp);
1234fa7d9493SBabu Moger 		if (ret)
1235fa7d9493SBabu Moger 			goto out;
1236fa7d9493SBabu Moger 		rdtgrp->mode = RDT_MODE_PSEUDO_LOCKSETUP;
1237fa7d9493SBabu Moger 	} else {
123845682489SReinette Chatre 		rdt_last_cmd_puts("Unknown or unsupported mode\n");
1239fa7d9493SBabu Moger 		ret = -EINVAL;
1240fa7d9493SBabu Moger 	}
1241fa7d9493SBabu Moger 
1242fa7d9493SBabu Moger out:
1243fa7d9493SBabu Moger 	rdtgroup_kn_unlock(of->kn);
1244fa7d9493SBabu Moger 	return ret ?: nbytes;
1245fa7d9493SBabu Moger }
1246fa7d9493SBabu Moger 
1247fa7d9493SBabu Moger /**
1248fa7d9493SBabu Moger  * rdtgroup_cbm_to_size - Translate CBM to size in bytes
1249fa7d9493SBabu Moger  * @r: RDT resource to which @d belongs.
1250fa7d9493SBabu Moger  * @d: RDT domain instance.
1251fa7d9493SBabu Moger  * @cbm: bitmask for which the size should be computed.
1252fa7d9493SBabu Moger  *
1253fa7d9493SBabu Moger  * The bitmask provided associated with the RDT domain instance @d will be
1254fa7d9493SBabu Moger  * translated into how many bytes it represents. The size in bytes is
1255fa7d9493SBabu Moger  * computed by first dividing the total cache size by the CBM length to
1256fa7d9493SBabu Moger  * determine how many bytes each bit in the bitmask represents. The result
1257fa7d9493SBabu Moger  * is multiplied with the number of bits set in the bitmask.
1258fa7d9493SBabu Moger  *
1259fa7d9493SBabu Moger  * @cbm is unsigned long, even if only 32 bits are used to make the
1260fa7d9493SBabu Moger  * bitmap functions work correctly.
1261fa7d9493SBabu Moger  */
1262fa7d9493SBabu Moger unsigned int rdtgroup_cbm_to_size(struct rdt_resource *r,
1263fa7d9493SBabu Moger 				  struct rdt_domain *d, unsigned long cbm)
1264fa7d9493SBabu Moger {
1265fa7d9493SBabu Moger 	struct cpu_cacheinfo *ci;
1266fa7d9493SBabu Moger 	unsigned int size = 0;
1267fa7d9493SBabu Moger 	int num_b, i;
1268fa7d9493SBabu Moger 
1269fa7d9493SBabu Moger 	num_b = bitmap_weight(&cbm, r->cache.cbm_len);
1270fa7d9493SBabu Moger 	ci = get_cpu_cacheinfo(cpumask_any(&d->cpu_mask));
1271fa7d9493SBabu Moger 	for (i = 0; i < ci->num_leaves; i++) {
1272fa7d9493SBabu Moger 		if (ci->info_list[i].level == r->cache_level) {
1273fa7d9493SBabu Moger 			size = ci->info_list[i].size / r->cache.cbm_len * num_b;
1274fa7d9493SBabu Moger 			break;
1275fa7d9493SBabu Moger 		}
1276fa7d9493SBabu Moger 	}
1277fa7d9493SBabu Moger 
1278fa7d9493SBabu Moger 	return size;
1279fa7d9493SBabu Moger }
1280fa7d9493SBabu Moger 
1281fa7d9493SBabu Moger /**
1282fa7d9493SBabu Moger  * rdtgroup_size_show - Display size in bytes of allocated regions
1283fa7d9493SBabu Moger  *
1284fa7d9493SBabu Moger  * The "size" file mirrors the layout of the "schemata" file, printing the
1285fa7d9493SBabu Moger  * size in bytes of each region instead of the capacity bitmask.
1286fa7d9493SBabu Moger  *
1287fa7d9493SBabu Moger  */
1288fa7d9493SBabu Moger static int rdtgroup_size_show(struct kernfs_open_file *of,
1289fa7d9493SBabu Moger 			      struct seq_file *s, void *v)
1290fa7d9493SBabu Moger {
1291fa7d9493SBabu Moger 	struct rdtgroup *rdtgrp;
1292fa7d9493SBabu Moger 	struct rdt_resource *r;
1293fa7d9493SBabu Moger 	struct rdt_domain *d;
1294fa7d9493SBabu Moger 	unsigned int size;
1295fa7d9493SBabu Moger 	int ret = 0;
1296fa7d9493SBabu Moger 	bool sep;
1297fa7d9493SBabu Moger 	u32 ctrl;
1298fa7d9493SBabu Moger 
1299fa7d9493SBabu Moger 	rdtgrp = rdtgroup_kn_lock_live(of->kn);
1300fa7d9493SBabu Moger 	if (!rdtgrp) {
1301fa7d9493SBabu Moger 		rdtgroup_kn_unlock(of->kn);
1302fa7d9493SBabu Moger 		return -ENOENT;
1303fa7d9493SBabu Moger 	}
1304fa7d9493SBabu Moger 
1305fa7d9493SBabu Moger 	if (rdtgrp->mode == RDT_MODE_PSEUDO_LOCKED) {
1306fa7d9493SBabu Moger 		if (!rdtgrp->plr->d) {
1307fa7d9493SBabu Moger 			rdt_last_cmd_clear();
1308fa7d9493SBabu Moger 			rdt_last_cmd_puts("Cache domain offline\n");
1309fa7d9493SBabu Moger 			ret = -ENODEV;
1310fa7d9493SBabu Moger 		} else {
1311fa7d9493SBabu Moger 			seq_printf(s, "%*s:", max_name_width,
1312fa7d9493SBabu Moger 				   rdtgrp->plr->r->name);
1313fa7d9493SBabu Moger 			size = rdtgroup_cbm_to_size(rdtgrp->plr->r,
1314fa7d9493SBabu Moger 						    rdtgrp->plr->d,
1315fa7d9493SBabu Moger 						    rdtgrp->plr->cbm);
1316fa7d9493SBabu Moger 			seq_printf(s, "%d=%u\n", rdtgrp->plr->d->id, size);
1317fa7d9493SBabu Moger 		}
1318fa7d9493SBabu Moger 		goto out;
1319fa7d9493SBabu Moger 	}
1320fa7d9493SBabu Moger 
1321fa7d9493SBabu Moger 	for_each_alloc_enabled_rdt_resource(r) {
1322fa7d9493SBabu Moger 		sep = false;
1323fa7d9493SBabu Moger 		seq_printf(s, "%*s:", max_name_width, r->name);
1324fa7d9493SBabu Moger 		list_for_each_entry(d, &r->domains, list) {
1325fa7d9493SBabu Moger 			if (sep)
1326fa7d9493SBabu Moger 				seq_putc(s, ';');
1327fa7d9493SBabu Moger 			if (rdtgrp->mode == RDT_MODE_PSEUDO_LOCKSETUP) {
1328fa7d9493SBabu Moger 				size = 0;
1329fa7d9493SBabu Moger 			} else {
1330fa7d9493SBabu Moger 				ctrl = (!is_mba_sc(r) ?
1331fa7d9493SBabu Moger 						d->ctrl_val[rdtgrp->closid] :
1332fa7d9493SBabu Moger 						d->mbps_val[rdtgrp->closid]);
1333fa7d9493SBabu Moger 				if (r->rid == RDT_RESOURCE_MBA)
1334fa7d9493SBabu Moger 					size = ctrl;
1335fa7d9493SBabu Moger 				else
1336fa7d9493SBabu Moger 					size = rdtgroup_cbm_to_size(r, d, ctrl);
1337fa7d9493SBabu Moger 			}
1338fa7d9493SBabu Moger 			seq_printf(s, "%d=%u", d->id, size);
1339fa7d9493SBabu Moger 			sep = true;
1340fa7d9493SBabu Moger 		}
1341fa7d9493SBabu Moger 		seq_putc(s, '\n');
1342fa7d9493SBabu Moger 	}
1343fa7d9493SBabu Moger 
1344fa7d9493SBabu Moger out:
1345fa7d9493SBabu Moger 	rdtgroup_kn_unlock(of->kn);
1346fa7d9493SBabu Moger 
1347fa7d9493SBabu Moger 	return ret;
1348fa7d9493SBabu Moger }
1349fa7d9493SBabu Moger 
1350fa7d9493SBabu Moger /* rdtgroup information files for one cache resource. */
1351fa7d9493SBabu Moger static struct rftype res_common_files[] = {
1352fa7d9493SBabu Moger 	{
1353fa7d9493SBabu Moger 		.name		= "last_cmd_status",
1354fa7d9493SBabu Moger 		.mode		= 0444,
1355fa7d9493SBabu Moger 		.kf_ops		= &rdtgroup_kf_single_ops,
1356fa7d9493SBabu Moger 		.seq_show	= rdt_last_cmd_status_show,
1357fa7d9493SBabu Moger 		.fflags		= RF_TOP_INFO,
1358fa7d9493SBabu Moger 	},
1359fa7d9493SBabu Moger 	{
1360fa7d9493SBabu Moger 		.name		= "num_closids",
1361fa7d9493SBabu Moger 		.mode		= 0444,
1362fa7d9493SBabu Moger 		.kf_ops		= &rdtgroup_kf_single_ops,
1363fa7d9493SBabu Moger 		.seq_show	= rdt_num_closids_show,
1364fa7d9493SBabu Moger 		.fflags		= RF_CTRL_INFO,
1365fa7d9493SBabu Moger 	},
1366fa7d9493SBabu Moger 	{
1367fa7d9493SBabu Moger 		.name		= "mon_features",
1368fa7d9493SBabu Moger 		.mode		= 0444,
1369fa7d9493SBabu Moger 		.kf_ops		= &rdtgroup_kf_single_ops,
1370fa7d9493SBabu Moger 		.seq_show	= rdt_mon_features_show,
1371fa7d9493SBabu Moger 		.fflags		= RF_MON_INFO,
1372fa7d9493SBabu Moger 	},
1373fa7d9493SBabu Moger 	{
1374fa7d9493SBabu Moger 		.name		= "num_rmids",
1375fa7d9493SBabu Moger 		.mode		= 0444,
1376fa7d9493SBabu Moger 		.kf_ops		= &rdtgroup_kf_single_ops,
1377fa7d9493SBabu Moger 		.seq_show	= rdt_num_rmids_show,
1378fa7d9493SBabu Moger 		.fflags		= RF_MON_INFO,
1379fa7d9493SBabu Moger 	},
1380fa7d9493SBabu Moger 	{
1381fa7d9493SBabu Moger 		.name		= "cbm_mask",
1382fa7d9493SBabu Moger 		.mode		= 0444,
1383fa7d9493SBabu Moger 		.kf_ops		= &rdtgroup_kf_single_ops,
1384fa7d9493SBabu Moger 		.seq_show	= rdt_default_ctrl_show,
1385fa7d9493SBabu Moger 		.fflags		= RF_CTRL_INFO | RFTYPE_RES_CACHE,
1386fa7d9493SBabu Moger 	},
1387fa7d9493SBabu Moger 	{
1388fa7d9493SBabu Moger 		.name		= "min_cbm_bits",
1389fa7d9493SBabu Moger 		.mode		= 0444,
1390fa7d9493SBabu Moger 		.kf_ops		= &rdtgroup_kf_single_ops,
1391fa7d9493SBabu Moger 		.seq_show	= rdt_min_cbm_bits_show,
1392fa7d9493SBabu Moger 		.fflags		= RF_CTRL_INFO | RFTYPE_RES_CACHE,
1393fa7d9493SBabu Moger 	},
1394fa7d9493SBabu Moger 	{
1395fa7d9493SBabu Moger 		.name		= "shareable_bits",
1396fa7d9493SBabu Moger 		.mode		= 0444,
1397fa7d9493SBabu Moger 		.kf_ops		= &rdtgroup_kf_single_ops,
1398fa7d9493SBabu Moger 		.seq_show	= rdt_shareable_bits_show,
1399fa7d9493SBabu Moger 		.fflags		= RF_CTRL_INFO | RFTYPE_RES_CACHE,
1400fa7d9493SBabu Moger 	},
1401fa7d9493SBabu Moger 	{
1402fa7d9493SBabu Moger 		.name		= "bit_usage",
1403fa7d9493SBabu Moger 		.mode		= 0444,
1404fa7d9493SBabu Moger 		.kf_ops		= &rdtgroup_kf_single_ops,
1405fa7d9493SBabu Moger 		.seq_show	= rdt_bit_usage_show,
1406fa7d9493SBabu Moger 		.fflags		= RF_CTRL_INFO | RFTYPE_RES_CACHE,
1407fa7d9493SBabu Moger 	},
1408fa7d9493SBabu Moger 	{
1409fa7d9493SBabu Moger 		.name		= "min_bandwidth",
1410fa7d9493SBabu Moger 		.mode		= 0444,
1411fa7d9493SBabu Moger 		.kf_ops		= &rdtgroup_kf_single_ops,
1412fa7d9493SBabu Moger 		.seq_show	= rdt_min_bw_show,
1413fa7d9493SBabu Moger 		.fflags		= RF_CTRL_INFO | RFTYPE_RES_MB,
1414fa7d9493SBabu Moger 	},
1415fa7d9493SBabu Moger 	{
1416fa7d9493SBabu Moger 		.name		= "bandwidth_gran",
1417fa7d9493SBabu Moger 		.mode		= 0444,
1418fa7d9493SBabu Moger 		.kf_ops		= &rdtgroup_kf_single_ops,
1419fa7d9493SBabu Moger 		.seq_show	= rdt_bw_gran_show,
1420fa7d9493SBabu Moger 		.fflags		= RF_CTRL_INFO | RFTYPE_RES_MB,
1421fa7d9493SBabu Moger 	},
1422fa7d9493SBabu Moger 	{
1423fa7d9493SBabu Moger 		.name		= "delay_linear",
1424fa7d9493SBabu Moger 		.mode		= 0444,
1425fa7d9493SBabu Moger 		.kf_ops		= &rdtgroup_kf_single_ops,
1426fa7d9493SBabu Moger 		.seq_show	= rdt_delay_linear_show,
1427fa7d9493SBabu Moger 		.fflags		= RF_CTRL_INFO | RFTYPE_RES_MB,
1428fa7d9493SBabu Moger 	},
1429fa7d9493SBabu Moger 	{
1430fa7d9493SBabu Moger 		.name		= "max_threshold_occupancy",
1431fa7d9493SBabu Moger 		.mode		= 0644,
1432fa7d9493SBabu Moger 		.kf_ops		= &rdtgroup_kf_single_ops,
1433fa7d9493SBabu Moger 		.write		= max_threshold_occ_write,
1434fa7d9493SBabu Moger 		.seq_show	= max_threshold_occ_show,
1435fa7d9493SBabu Moger 		.fflags		= RF_MON_INFO | RFTYPE_RES_CACHE,
1436fa7d9493SBabu Moger 	},
1437fa7d9493SBabu Moger 	{
1438fa7d9493SBabu Moger 		.name		= "cpus",
1439fa7d9493SBabu Moger 		.mode		= 0644,
1440fa7d9493SBabu Moger 		.kf_ops		= &rdtgroup_kf_single_ops,
1441fa7d9493SBabu Moger 		.write		= rdtgroup_cpus_write,
1442fa7d9493SBabu Moger 		.seq_show	= rdtgroup_cpus_show,
1443fa7d9493SBabu Moger 		.fflags		= RFTYPE_BASE,
1444fa7d9493SBabu Moger 	},
1445fa7d9493SBabu Moger 	{
1446fa7d9493SBabu Moger 		.name		= "cpus_list",
1447fa7d9493SBabu Moger 		.mode		= 0644,
1448fa7d9493SBabu Moger 		.kf_ops		= &rdtgroup_kf_single_ops,
1449fa7d9493SBabu Moger 		.write		= rdtgroup_cpus_write,
1450fa7d9493SBabu Moger 		.seq_show	= rdtgroup_cpus_show,
1451fa7d9493SBabu Moger 		.flags		= RFTYPE_FLAGS_CPUS_LIST,
1452fa7d9493SBabu Moger 		.fflags		= RFTYPE_BASE,
1453fa7d9493SBabu Moger 	},
1454fa7d9493SBabu Moger 	{
1455fa7d9493SBabu Moger 		.name		= "tasks",
1456fa7d9493SBabu Moger 		.mode		= 0644,
1457fa7d9493SBabu Moger 		.kf_ops		= &rdtgroup_kf_single_ops,
1458fa7d9493SBabu Moger 		.write		= rdtgroup_tasks_write,
1459fa7d9493SBabu Moger 		.seq_show	= rdtgroup_tasks_show,
1460fa7d9493SBabu Moger 		.fflags		= RFTYPE_BASE,
1461fa7d9493SBabu Moger 	},
1462fa7d9493SBabu Moger 	{
1463fa7d9493SBabu Moger 		.name		= "schemata",
1464fa7d9493SBabu Moger 		.mode		= 0644,
1465fa7d9493SBabu Moger 		.kf_ops		= &rdtgroup_kf_single_ops,
1466fa7d9493SBabu Moger 		.write		= rdtgroup_schemata_write,
1467fa7d9493SBabu Moger 		.seq_show	= rdtgroup_schemata_show,
1468fa7d9493SBabu Moger 		.fflags		= RF_CTRL_BASE,
1469fa7d9493SBabu Moger 	},
1470fa7d9493SBabu Moger 	{
1471fa7d9493SBabu Moger 		.name		= "mode",
1472fa7d9493SBabu Moger 		.mode		= 0644,
1473fa7d9493SBabu Moger 		.kf_ops		= &rdtgroup_kf_single_ops,
1474fa7d9493SBabu Moger 		.write		= rdtgroup_mode_write,
1475fa7d9493SBabu Moger 		.seq_show	= rdtgroup_mode_show,
1476fa7d9493SBabu Moger 		.fflags		= RF_CTRL_BASE,
1477fa7d9493SBabu Moger 	},
1478fa7d9493SBabu Moger 	{
1479fa7d9493SBabu Moger 		.name		= "size",
1480fa7d9493SBabu Moger 		.mode		= 0444,
1481fa7d9493SBabu Moger 		.kf_ops		= &rdtgroup_kf_single_ops,
1482fa7d9493SBabu Moger 		.seq_show	= rdtgroup_size_show,
1483fa7d9493SBabu Moger 		.fflags		= RF_CTRL_BASE,
1484fa7d9493SBabu Moger 	},
1485fa7d9493SBabu Moger 
1486fa7d9493SBabu Moger };
1487fa7d9493SBabu Moger 
1488fa7d9493SBabu Moger static int rdtgroup_add_files(struct kernfs_node *kn, unsigned long fflags)
1489fa7d9493SBabu Moger {
1490fa7d9493SBabu Moger 	struct rftype *rfts, *rft;
1491fa7d9493SBabu Moger 	int ret, len;
1492fa7d9493SBabu Moger 
1493fa7d9493SBabu Moger 	rfts = res_common_files;
1494fa7d9493SBabu Moger 	len = ARRAY_SIZE(res_common_files);
1495fa7d9493SBabu Moger 
1496fa7d9493SBabu Moger 	lockdep_assert_held(&rdtgroup_mutex);
1497fa7d9493SBabu Moger 
1498fa7d9493SBabu Moger 	for (rft = rfts; rft < rfts + len; rft++) {
1499fa7d9493SBabu Moger 		if ((fflags & rft->fflags) == rft->fflags) {
1500fa7d9493SBabu Moger 			ret = rdtgroup_add_file(kn, rft);
1501fa7d9493SBabu Moger 			if (ret)
1502fa7d9493SBabu Moger 				goto error;
1503fa7d9493SBabu Moger 		}
1504fa7d9493SBabu Moger 	}
1505fa7d9493SBabu Moger 
1506fa7d9493SBabu Moger 	return 0;
1507fa7d9493SBabu Moger error:
1508fa7d9493SBabu Moger 	pr_warn("Failed to add %s, err=%d\n", rft->name, ret);
1509fa7d9493SBabu Moger 	while (--rft >= rfts) {
1510fa7d9493SBabu Moger 		if ((fflags & rft->fflags) == rft->fflags)
1511fa7d9493SBabu Moger 			kernfs_remove_by_name(kn, rft->name);
1512fa7d9493SBabu Moger 	}
1513fa7d9493SBabu Moger 	return ret;
1514fa7d9493SBabu Moger }
1515fa7d9493SBabu Moger 
1516fa7d9493SBabu Moger /**
1517fa7d9493SBabu Moger  * rdtgroup_kn_mode_restrict - Restrict user access to named resctrl file
1518fa7d9493SBabu Moger  * @r: The resource group with which the file is associated.
1519fa7d9493SBabu Moger  * @name: Name of the file
1520fa7d9493SBabu Moger  *
1521fa7d9493SBabu Moger  * The permissions of named resctrl file, directory, or link are modified
1522fa7d9493SBabu Moger  * to not allow read, write, or execute by any user.
1523fa7d9493SBabu Moger  *
1524fa7d9493SBabu Moger  * WARNING: This function is intended to communicate to the user that the
1525fa7d9493SBabu Moger  * resctrl file has been locked down - that it is not relevant to the
1526fa7d9493SBabu Moger  * particular state the system finds itself in. It should not be relied
1527fa7d9493SBabu Moger  * on to protect from user access because after the file's permissions
1528fa7d9493SBabu Moger  * are restricted the user can still change the permissions using chmod
1529fa7d9493SBabu Moger  * from the command line.
1530fa7d9493SBabu Moger  *
1531fa7d9493SBabu Moger  * Return: 0 on success, <0 on failure.
1532fa7d9493SBabu Moger  */
1533fa7d9493SBabu Moger int rdtgroup_kn_mode_restrict(struct rdtgroup *r, const char *name)
1534fa7d9493SBabu Moger {
1535fa7d9493SBabu Moger 	struct iattr iattr = {.ia_valid = ATTR_MODE,};
1536fa7d9493SBabu Moger 	struct kernfs_node *kn;
1537fa7d9493SBabu Moger 	int ret = 0;
1538fa7d9493SBabu Moger 
1539fa7d9493SBabu Moger 	kn = kernfs_find_and_get_ns(r->kn, name, NULL);
1540fa7d9493SBabu Moger 	if (!kn)
1541fa7d9493SBabu Moger 		return -ENOENT;
1542fa7d9493SBabu Moger 
1543fa7d9493SBabu Moger 	switch (kernfs_type(kn)) {
1544fa7d9493SBabu Moger 	case KERNFS_DIR:
1545fa7d9493SBabu Moger 		iattr.ia_mode = S_IFDIR;
1546fa7d9493SBabu Moger 		break;
1547fa7d9493SBabu Moger 	case KERNFS_FILE:
1548fa7d9493SBabu Moger 		iattr.ia_mode = S_IFREG;
1549fa7d9493SBabu Moger 		break;
1550fa7d9493SBabu Moger 	case KERNFS_LINK:
1551fa7d9493SBabu Moger 		iattr.ia_mode = S_IFLNK;
1552fa7d9493SBabu Moger 		break;
1553fa7d9493SBabu Moger 	}
1554fa7d9493SBabu Moger 
1555fa7d9493SBabu Moger 	ret = kernfs_setattr(kn, &iattr);
1556fa7d9493SBabu Moger 	kernfs_put(kn);
1557fa7d9493SBabu Moger 	return ret;
1558fa7d9493SBabu Moger }
1559fa7d9493SBabu Moger 
1560fa7d9493SBabu Moger /**
1561fa7d9493SBabu Moger  * rdtgroup_kn_mode_restore - Restore user access to named resctrl file
1562fa7d9493SBabu Moger  * @r: The resource group with which the file is associated.
1563fa7d9493SBabu Moger  * @name: Name of the file
1564fa7d9493SBabu Moger  * @mask: Mask of permissions that should be restored
1565fa7d9493SBabu Moger  *
1566fa7d9493SBabu Moger  * Restore the permissions of the named file. If @name is a directory the
1567fa7d9493SBabu Moger  * permissions of its parent will be used.
1568fa7d9493SBabu Moger  *
1569fa7d9493SBabu Moger  * Return: 0 on success, <0 on failure.
1570fa7d9493SBabu Moger  */
1571fa7d9493SBabu Moger int rdtgroup_kn_mode_restore(struct rdtgroup *r, const char *name,
1572fa7d9493SBabu Moger 			     umode_t mask)
1573fa7d9493SBabu Moger {
1574fa7d9493SBabu Moger 	struct iattr iattr = {.ia_valid = ATTR_MODE,};
1575fa7d9493SBabu Moger 	struct kernfs_node *kn, *parent;
1576fa7d9493SBabu Moger 	struct rftype *rfts, *rft;
1577fa7d9493SBabu Moger 	int ret, len;
1578fa7d9493SBabu Moger 
1579fa7d9493SBabu Moger 	rfts = res_common_files;
1580fa7d9493SBabu Moger 	len = ARRAY_SIZE(res_common_files);
1581fa7d9493SBabu Moger 
1582fa7d9493SBabu Moger 	for (rft = rfts; rft < rfts + len; rft++) {
1583fa7d9493SBabu Moger 		if (!strcmp(rft->name, name))
1584fa7d9493SBabu Moger 			iattr.ia_mode = rft->mode & mask;
1585fa7d9493SBabu Moger 	}
1586fa7d9493SBabu Moger 
1587fa7d9493SBabu Moger 	kn = kernfs_find_and_get_ns(r->kn, name, NULL);
1588fa7d9493SBabu Moger 	if (!kn)
1589fa7d9493SBabu Moger 		return -ENOENT;
1590fa7d9493SBabu Moger 
1591fa7d9493SBabu Moger 	switch (kernfs_type(kn)) {
1592fa7d9493SBabu Moger 	case KERNFS_DIR:
1593fa7d9493SBabu Moger 		parent = kernfs_get_parent(kn);
1594fa7d9493SBabu Moger 		if (parent) {
1595fa7d9493SBabu Moger 			iattr.ia_mode |= parent->mode;
1596fa7d9493SBabu Moger 			kernfs_put(parent);
1597fa7d9493SBabu Moger 		}
1598fa7d9493SBabu Moger 		iattr.ia_mode |= S_IFDIR;
1599fa7d9493SBabu Moger 		break;
1600fa7d9493SBabu Moger 	case KERNFS_FILE:
1601fa7d9493SBabu Moger 		iattr.ia_mode |= S_IFREG;
1602fa7d9493SBabu Moger 		break;
1603fa7d9493SBabu Moger 	case KERNFS_LINK:
1604fa7d9493SBabu Moger 		iattr.ia_mode |= S_IFLNK;
1605fa7d9493SBabu Moger 		break;
1606fa7d9493SBabu Moger 	}
1607fa7d9493SBabu Moger 
1608fa7d9493SBabu Moger 	ret = kernfs_setattr(kn, &iattr);
1609fa7d9493SBabu Moger 	kernfs_put(kn);
1610fa7d9493SBabu Moger 	return ret;
1611fa7d9493SBabu Moger }
1612fa7d9493SBabu Moger 
1613fa7d9493SBabu Moger static int rdtgroup_mkdir_info_resdir(struct rdt_resource *r, char *name,
1614fa7d9493SBabu Moger 				      unsigned long fflags)
1615fa7d9493SBabu Moger {
1616fa7d9493SBabu Moger 	struct kernfs_node *kn_subdir;
1617fa7d9493SBabu Moger 	int ret;
1618fa7d9493SBabu Moger 
1619fa7d9493SBabu Moger 	kn_subdir = kernfs_create_dir(kn_info, name,
1620fa7d9493SBabu Moger 				      kn_info->mode, r);
1621fa7d9493SBabu Moger 	if (IS_ERR(kn_subdir))
1622fa7d9493SBabu Moger 		return PTR_ERR(kn_subdir);
1623fa7d9493SBabu Moger 
1624fa7d9493SBabu Moger 	kernfs_get(kn_subdir);
1625fa7d9493SBabu Moger 	ret = rdtgroup_kn_set_ugid(kn_subdir);
1626fa7d9493SBabu Moger 	if (ret)
1627fa7d9493SBabu Moger 		return ret;
1628fa7d9493SBabu Moger 
1629fa7d9493SBabu Moger 	ret = rdtgroup_add_files(kn_subdir, fflags);
1630fa7d9493SBabu Moger 	if (!ret)
1631fa7d9493SBabu Moger 		kernfs_activate(kn_subdir);
1632fa7d9493SBabu Moger 
1633fa7d9493SBabu Moger 	return ret;
1634fa7d9493SBabu Moger }
1635fa7d9493SBabu Moger 
1636fa7d9493SBabu Moger static int rdtgroup_create_info_dir(struct kernfs_node *parent_kn)
1637fa7d9493SBabu Moger {
1638fa7d9493SBabu Moger 	struct rdt_resource *r;
1639fa7d9493SBabu Moger 	unsigned long fflags;
1640fa7d9493SBabu Moger 	char name[32];
1641fa7d9493SBabu Moger 	int ret;
1642fa7d9493SBabu Moger 
1643fa7d9493SBabu Moger 	/* create the directory */
1644fa7d9493SBabu Moger 	kn_info = kernfs_create_dir(parent_kn, "info", parent_kn->mode, NULL);
1645fa7d9493SBabu Moger 	if (IS_ERR(kn_info))
1646fa7d9493SBabu Moger 		return PTR_ERR(kn_info);
1647fa7d9493SBabu Moger 	kernfs_get(kn_info);
1648fa7d9493SBabu Moger 
1649fa7d9493SBabu Moger 	ret = rdtgroup_add_files(kn_info, RF_TOP_INFO);
1650fa7d9493SBabu Moger 	if (ret)
1651fa7d9493SBabu Moger 		goto out_destroy;
1652fa7d9493SBabu Moger 
1653fa7d9493SBabu Moger 	for_each_alloc_enabled_rdt_resource(r) {
1654fa7d9493SBabu Moger 		fflags =  r->fflags | RF_CTRL_INFO;
1655fa7d9493SBabu Moger 		ret = rdtgroup_mkdir_info_resdir(r, r->name, fflags);
1656fa7d9493SBabu Moger 		if (ret)
1657fa7d9493SBabu Moger 			goto out_destroy;
1658fa7d9493SBabu Moger 	}
1659fa7d9493SBabu Moger 
1660fa7d9493SBabu Moger 	for_each_mon_enabled_rdt_resource(r) {
1661fa7d9493SBabu Moger 		fflags =  r->fflags | RF_MON_INFO;
1662fa7d9493SBabu Moger 		sprintf(name, "%s_MON", r->name);
1663fa7d9493SBabu Moger 		ret = rdtgroup_mkdir_info_resdir(r, name, fflags);
1664fa7d9493SBabu Moger 		if (ret)
1665fa7d9493SBabu Moger 			goto out_destroy;
1666fa7d9493SBabu Moger 	}
1667fa7d9493SBabu Moger 
1668fa7d9493SBabu Moger 	/*
1669fa7d9493SBabu Moger 	 * This extra ref will be put in kernfs_remove() and guarantees
1670fa7d9493SBabu Moger 	 * that @rdtgrp->kn is always accessible.
1671fa7d9493SBabu Moger 	 */
1672fa7d9493SBabu Moger 	kernfs_get(kn_info);
1673fa7d9493SBabu Moger 
1674fa7d9493SBabu Moger 	ret = rdtgroup_kn_set_ugid(kn_info);
1675fa7d9493SBabu Moger 	if (ret)
1676fa7d9493SBabu Moger 		goto out_destroy;
1677fa7d9493SBabu Moger 
1678fa7d9493SBabu Moger 	kernfs_activate(kn_info);
1679fa7d9493SBabu Moger 
1680fa7d9493SBabu Moger 	return 0;
1681fa7d9493SBabu Moger 
1682fa7d9493SBabu Moger out_destroy:
1683fa7d9493SBabu Moger 	kernfs_remove(kn_info);
1684fa7d9493SBabu Moger 	return ret;
1685fa7d9493SBabu Moger }
1686fa7d9493SBabu Moger 
1687fa7d9493SBabu Moger static int
1688fa7d9493SBabu Moger mongroup_create_dir(struct kernfs_node *parent_kn, struct rdtgroup *prgrp,
1689fa7d9493SBabu Moger 		    char *name, struct kernfs_node **dest_kn)
1690fa7d9493SBabu Moger {
1691fa7d9493SBabu Moger 	struct kernfs_node *kn;
1692fa7d9493SBabu Moger 	int ret;
1693fa7d9493SBabu Moger 
1694fa7d9493SBabu Moger 	/* create the directory */
1695fa7d9493SBabu Moger 	kn = kernfs_create_dir(parent_kn, name, parent_kn->mode, prgrp);
1696fa7d9493SBabu Moger 	if (IS_ERR(kn))
1697fa7d9493SBabu Moger 		return PTR_ERR(kn);
1698fa7d9493SBabu Moger 
1699fa7d9493SBabu Moger 	if (dest_kn)
1700fa7d9493SBabu Moger 		*dest_kn = kn;
1701fa7d9493SBabu Moger 
1702fa7d9493SBabu Moger 	/*
1703fa7d9493SBabu Moger 	 * This extra ref will be put in kernfs_remove() and guarantees
1704fa7d9493SBabu Moger 	 * that @rdtgrp->kn is always accessible.
1705fa7d9493SBabu Moger 	 */
1706fa7d9493SBabu Moger 	kernfs_get(kn);
1707fa7d9493SBabu Moger 
1708fa7d9493SBabu Moger 	ret = rdtgroup_kn_set_ugid(kn);
1709fa7d9493SBabu Moger 	if (ret)
1710fa7d9493SBabu Moger 		goto out_destroy;
1711fa7d9493SBabu Moger 
1712fa7d9493SBabu Moger 	kernfs_activate(kn);
1713fa7d9493SBabu Moger 
1714fa7d9493SBabu Moger 	return 0;
1715fa7d9493SBabu Moger 
1716fa7d9493SBabu Moger out_destroy:
1717fa7d9493SBabu Moger 	kernfs_remove(kn);
1718fa7d9493SBabu Moger 	return ret;
1719fa7d9493SBabu Moger }
1720fa7d9493SBabu Moger 
1721fa7d9493SBabu Moger static void l3_qos_cfg_update(void *arg)
1722fa7d9493SBabu Moger {
1723fa7d9493SBabu Moger 	bool *enable = arg;
1724fa7d9493SBabu Moger 
1725aa50453aSBabu Moger 	wrmsrl(MSR_IA32_L3_QOS_CFG, *enable ? L3_QOS_CDP_ENABLE : 0ULL);
1726fa7d9493SBabu Moger }
1727fa7d9493SBabu Moger 
1728fa7d9493SBabu Moger static void l2_qos_cfg_update(void *arg)
1729fa7d9493SBabu Moger {
1730fa7d9493SBabu Moger 	bool *enable = arg;
1731fa7d9493SBabu Moger 
1732aa50453aSBabu Moger 	wrmsrl(MSR_IA32_L2_QOS_CFG, *enable ? L2_QOS_CDP_ENABLE : 0ULL);
1733fa7d9493SBabu Moger }
1734fa7d9493SBabu Moger 
1735fa7d9493SBabu Moger static inline bool is_mba_linear(void)
1736fa7d9493SBabu Moger {
1737fa7d9493SBabu Moger 	return rdt_resources_all[RDT_RESOURCE_MBA].membw.delay_linear;
1738fa7d9493SBabu Moger }
1739fa7d9493SBabu Moger 
1740fa7d9493SBabu Moger static int set_cache_qos_cfg(int level, bool enable)
1741fa7d9493SBabu Moger {
1742fa7d9493SBabu Moger 	void (*update)(void *arg);
1743fa7d9493SBabu Moger 	struct rdt_resource *r_l;
1744fa7d9493SBabu Moger 	cpumask_var_t cpu_mask;
1745fa7d9493SBabu Moger 	struct rdt_domain *d;
1746fa7d9493SBabu Moger 	int cpu;
1747fa7d9493SBabu Moger 
1748fa7d9493SBabu Moger 	if (!zalloc_cpumask_var(&cpu_mask, GFP_KERNEL))
1749fa7d9493SBabu Moger 		return -ENOMEM;
1750fa7d9493SBabu Moger 
1751fa7d9493SBabu Moger 	if (level == RDT_RESOURCE_L3)
1752fa7d9493SBabu Moger 		update = l3_qos_cfg_update;
1753fa7d9493SBabu Moger 	else if (level == RDT_RESOURCE_L2)
1754fa7d9493SBabu Moger 		update = l2_qos_cfg_update;
1755fa7d9493SBabu Moger 	else
1756fa7d9493SBabu Moger 		return -EINVAL;
1757fa7d9493SBabu Moger 
1758fa7d9493SBabu Moger 	r_l = &rdt_resources_all[level];
1759fa7d9493SBabu Moger 	list_for_each_entry(d, &r_l->domains, list) {
1760fa7d9493SBabu Moger 		/* Pick one CPU from each domain instance to update MSR */
1761fa7d9493SBabu Moger 		cpumask_set_cpu(cpumask_any(&d->cpu_mask), cpu_mask);
1762fa7d9493SBabu Moger 	}
1763fa7d9493SBabu Moger 	cpu = get_cpu();
1764fa7d9493SBabu Moger 	/* Update QOS_CFG MSR on this cpu if it's in cpu_mask. */
1765fa7d9493SBabu Moger 	if (cpumask_test_cpu(cpu, cpu_mask))
1766fa7d9493SBabu Moger 		update(&enable);
1767fa7d9493SBabu Moger 	/* Update QOS_CFG MSR on all other cpus in cpu_mask. */
1768fa7d9493SBabu Moger 	smp_call_function_many(cpu_mask, update, &enable, 1);
1769fa7d9493SBabu Moger 	put_cpu();
1770fa7d9493SBabu Moger 
1771fa7d9493SBabu Moger 	free_cpumask_var(cpu_mask);
1772fa7d9493SBabu Moger 
1773fa7d9493SBabu Moger 	return 0;
1774fa7d9493SBabu Moger }
1775fa7d9493SBabu Moger 
1776fa7d9493SBabu Moger /*
1777fa7d9493SBabu Moger  * Enable or disable the MBA software controller
1778fa7d9493SBabu Moger  * which helps user specify bandwidth in MBps.
1779fa7d9493SBabu Moger  * MBA software controller is supported only if
1780fa7d9493SBabu Moger  * MBM is supported and MBA is in linear scale.
1781fa7d9493SBabu Moger  */
1782fa7d9493SBabu Moger static int set_mba_sc(bool mba_sc)
1783fa7d9493SBabu Moger {
1784fa7d9493SBabu Moger 	struct rdt_resource *r = &rdt_resources_all[RDT_RESOURCE_MBA];
1785fa7d9493SBabu Moger 	struct rdt_domain *d;
1786fa7d9493SBabu Moger 
1787fa7d9493SBabu Moger 	if (!is_mbm_enabled() || !is_mba_linear() ||
1788fa7d9493SBabu Moger 	    mba_sc == is_mba_sc(r))
1789fa7d9493SBabu Moger 		return -EINVAL;
1790fa7d9493SBabu Moger 
1791fa7d9493SBabu Moger 	r->membw.mba_sc = mba_sc;
1792fa7d9493SBabu Moger 	list_for_each_entry(d, &r->domains, list)
1793fa7d9493SBabu Moger 		setup_default_ctrlval(r, d->ctrl_val, d->mbps_val);
1794fa7d9493SBabu Moger 
1795fa7d9493SBabu Moger 	return 0;
1796fa7d9493SBabu Moger }
1797fa7d9493SBabu Moger 
1798fa7d9493SBabu Moger static int cdp_enable(int level, int data_type, int code_type)
1799fa7d9493SBabu Moger {
1800fa7d9493SBabu Moger 	struct rdt_resource *r_ldata = &rdt_resources_all[data_type];
1801fa7d9493SBabu Moger 	struct rdt_resource *r_lcode = &rdt_resources_all[code_type];
1802fa7d9493SBabu Moger 	struct rdt_resource *r_l = &rdt_resources_all[level];
1803fa7d9493SBabu Moger 	int ret;
1804fa7d9493SBabu Moger 
1805fa7d9493SBabu Moger 	if (!r_l->alloc_capable || !r_ldata->alloc_capable ||
1806fa7d9493SBabu Moger 	    !r_lcode->alloc_capable)
1807fa7d9493SBabu Moger 		return -EINVAL;
1808fa7d9493SBabu Moger 
1809fa7d9493SBabu Moger 	ret = set_cache_qos_cfg(level, true);
1810fa7d9493SBabu Moger 	if (!ret) {
1811fa7d9493SBabu Moger 		r_l->alloc_enabled = false;
1812fa7d9493SBabu Moger 		r_ldata->alloc_enabled = true;
1813fa7d9493SBabu Moger 		r_lcode->alloc_enabled = true;
1814fa7d9493SBabu Moger 	}
1815fa7d9493SBabu Moger 	return ret;
1816fa7d9493SBabu Moger }
1817fa7d9493SBabu Moger 
1818fa7d9493SBabu Moger static int cdpl3_enable(void)
1819fa7d9493SBabu Moger {
1820fa7d9493SBabu Moger 	return cdp_enable(RDT_RESOURCE_L3, RDT_RESOURCE_L3DATA,
1821fa7d9493SBabu Moger 			  RDT_RESOURCE_L3CODE);
1822fa7d9493SBabu Moger }
1823fa7d9493SBabu Moger 
1824fa7d9493SBabu Moger static int cdpl2_enable(void)
1825fa7d9493SBabu Moger {
1826fa7d9493SBabu Moger 	return cdp_enable(RDT_RESOURCE_L2, RDT_RESOURCE_L2DATA,
1827fa7d9493SBabu Moger 			  RDT_RESOURCE_L2CODE);
1828fa7d9493SBabu Moger }
1829fa7d9493SBabu Moger 
1830fa7d9493SBabu Moger static void cdp_disable(int level, int data_type, int code_type)
1831fa7d9493SBabu Moger {
1832fa7d9493SBabu Moger 	struct rdt_resource *r = &rdt_resources_all[level];
1833fa7d9493SBabu Moger 
1834fa7d9493SBabu Moger 	r->alloc_enabled = r->alloc_capable;
1835fa7d9493SBabu Moger 
1836fa7d9493SBabu Moger 	if (rdt_resources_all[data_type].alloc_enabled) {
1837fa7d9493SBabu Moger 		rdt_resources_all[data_type].alloc_enabled = false;
1838fa7d9493SBabu Moger 		rdt_resources_all[code_type].alloc_enabled = false;
1839fa7d9493SBabu Moger 		set_cache_qos_cfg(level, false);
1840fa7d9493SBabu Moger 	}
1841fa7d9493SBabu Moger }
1842fa7d9493SBabu Moger 
1843fa7d9493SBabu Moger static void cdpl3_disable(void)
1844fa7d9493SBabu Moger {
1845fa7d9493SBabu Moger 	cdp_disable(RDT_RESOURCE_L3, RDT_RESOURCE_L3DATA, RDT_RESOURCE_L3CODE);
1846fa7d9493SBabu Moger }
1847fa7d9493SBabu Moger 
1848fa7d9493SBabu Moger static void cdpl2_disable(void)
1849fa7d9493SBabu Moger {
1850fa7d9493SBabu Moger 	cdp_disable(RDT_RESOURCE_L2, RDT_RESOURCE_L2DATA, RDT_RESOURCE_L2CODE);
1851fa7d9493SBabu Moger }
1852fa7d9493SBabu Moger 
1853fa7d9493SBabu Moger static void cdp_disable_all(void)
1854fa7d9493SBabu Moger {
1855fa7d9493SBabu Moger 	if (rdt_resources_all[RDT_RESOURCE_L3DATA].alloc_enabled)
1856fa7d9493SBabu Moger 		cdpl3_disable();
1857fa7d9493SBabu Moger 	if (rdt_resources_all[RDT_RESOURCE_L2DATA].alloc_enabled)
1858fa7d9493SBabu Moger 		cdpl2_disable();
1859fa7d9493SBabu Moger }
1860fa7d9493SBabu Moger 
1861fa7d9493SBabu Moger static int parse_rdtgroupfs_options(char *data)
1862fa7d9493SBabu Moger {
1863fa7d9493SBabu Moger 	char *token, *o = data;
1864fa7d9493SBabu Moger 	int ret = 0;
1865fa7d9493SBabu Moger 
1866fa7d9493SBabu Moger 	while ((token = strsep(&o, ",")) != NULL) {
1867fa7d9493SBabu Moger 		if (!*token) {
1868fa7d9493SBabu Moger 			ret = -EINVAL;
1869fa7d9493SBabu Moger 			goto out;
1870fa7d9493SBabu Moger 		}
1871fa7d9493SBabu Moger 
1872fa7d9493SBabu Moger 		if (!strcmp(token, "cdp")) {
1873fa7d9493SBabu Moger 			ret = cdpl3_enable();
1874fa7d9493SBabu Moger 			if (ret)
1875fa7d9493SBabu Moger 				goto out;
1876fa7d9493SBabu Moger 		} else if (!strcmp(token, "cdpl2")) {
1877fa7d9493SBabu Moger 			ret = cdpl2_enable();
1878fa7d9493SBabu Moger 			if (ret)
1879fa7d9493SBabu Moger 				goto out;
1880fa7d9493SBabu Moger 		} else if (!strcmp(token, "mba_MBps")) {
1881580ebb66SBabu Moger 			if (boot_cpu_data.x86_vendor == X86_VENDOR_INTEL)
1882fa7d9493SBabu Moger 				ret = set_mba_sc(true);
1883580ebb66SBabu Moger 			else
1884580ebb66SBabu Moger 				ret = -EINVAL;
1885fa7d9493SBabu Moger 			if (ret)
1886fa7d9493SBabu Moger 				goto out;
1887fa7d9493SBabu Moger 		} else {
1888fa7d9493SBabu Moger 			ret = -EINVAL;
1889fa7d9493SBabu Moger 			goto out;
1890fa7d9493SBabu Moger 		}
1891fa7d9493SBabu Moger 	}
1892fa7d9493SBabu Moger 
1893fa7d9493SBabu Moger 	return 0;
1894fa7d9493SBabu Moger 
1895fa7d9493SBabu Moger out:
1896fa7d9493SBabu Moger 	pr_err("Invalid mount option \"%s\"\n", token);
1897fa7d9493SBabu Moger 
1898fa7d9493SBabu Moger 	return ret;
1899fa7d9493SBabu Moger }
1900fa7d9493SBabu Moger 
1901fa7d9493SBabu Moger /*
1902fa7d9493SBabu Moger  * We don't allow rdtgroup directories to be created anywhere
1903fa7d9493SBabu Moger  * except the root directory. Thus when looking for the rdtgroup
1904fa7d9493SBabu Moger  * structure for a kernfs node we are either looking at a directory,
1905fa7d9493SBabu Moger  * in which case the rdtgroup structure is pointed at by the "priv"
1906fa7d9493SBabu Moger  * field, otherwise we have a file, and need only look to the parent
1907fa7d9493SBabu Moger  * to find the rdtgroup.
1908fa7d9493SBabu Moger  */
1909fa7d9493SBabu Moger static struct rdtgroup *kernfs_to_rdtgroup(struct kernfs_node *kn)
1910fa7d9493SBabu Moger {
1911fa7d9493SBabu Moger 	if (kernfs_type(kn) == KERNFS_DIR) {
1912fa7d9493SBabu Moger 		/*
1913fa7d9493SBabu Moger 		 * All the resource directories use "kn->priv"
1914fa7d9493SBabu Moger 		 * to point to the "struct rdtgroup" for the
1915fa7d9493SBabu Moger 		 * resource. "info" and its subdirectories don't
1916fa7d9493SBabu Moger 		 * have rdtgroup structures, so return NULL here.
1917fa7d9493SBabu Moger 		 */
1918fa7d9493SBabu Moger 		if (kn == kn_info || kn->parent == kn_info)
1919fa7d9493SBabu Moger 			return NULL;
1920fa7d9493SBabu Moger 		else
1921fa7d9493SBabu Moger 			return kn->priv;
1922fa7d9493SBabu Moger 	} else {
1923fa7d9493SBabu Moger 		return kn->parent->priv;
1924fa7d9493SBabu Moger 	}
1925fa7d9493SBabu Moger }
1926fa7d9493SBabu Moger 
1927fa7d9493SBabu Moger struct rdtgroup *rdtgroup_kn_lock_live(struct kernfs_node *kn)
1928fa7d9493SBabu Moger {
1929fa7d9493SBabu Moger 	struct rdtgroup *rdtgrp = kernfs_to_rdtgroup(kn);
1930fa7d9493SBabu Moger 
1931fa7d9493SBabu Moger 	if (!rdtgrp)
1932fa7d9493SBabu Moger 		return NULL;
1933fa7d9493SBabu Moger 
1934fa7d9493SBabu Moger 	atomic_inc(&rdtgrp->waitcount);
1935fa7d9493SBabu Moger 	kernfs_break_active_protection(kn);
1936fa7d9493SBabu Moger 
1937fa7d9493SBabu Moger 	mutex_lock(&rdtgroup_mutex);
1938fa7d9493SBabu Moger 
1939fa7d9493SBabu Moger 	/* Was this group deleted while we waited? */
1940fa7d9493SBabu Moger 	if (rdtgrp->flags & RDT_DELETED)
1941fa7d9493SBabu Moger 		return NULL;
1942fa7d9493SBabu Moger 
1943fa7d9493SBabu Moger 	return rdtgrp;
1944fa7d9493SBabu Moger }
1945fa7d9493SBabu Moger 
1946fa7d9493SBabu Moger void rdtgroup_kn_unlock(struct kernfs_node *kn)
1947fa7d9493SBabu Moger {
1948fa7d9493SBabu Moger 	struct rdtgroup *rdtgrp = kernfs_to_rdtgroup(kn);
1949fa7d9493SBabu Moger 
1950fa7d9493SBabu Moger 	if (!rdtgrp)
1951fa7d9493SBabu Moger 		return;
1952fa7d9493SBabu Moger 
1953fa7d9493SBabu Moger 	mutex_unlock(&rdtgroup_mutex);
1954fa7d9493SBabu Moger 
1955fa7d9493SBabu Moger 	if (atomic_dec_and_test(&rdtgrp->waitcount) &&
1956fa7d9493SBabu Moger 	    (rdtgrp->flags & RDT_DELETED)) {
1957fa7d9493SBabu Moger 		if (rdtgrp->mode == RDT_MODE_PSEUDO_LOCKSETUP ||
1958fa7d9493SBabu Moger 		    rdtgrp->mode == RDT_MODE_PSEUDO_LOCKED)
1959fa7d9493SBabu Moger 			rdtgroup_pseudo_lock_remove(rdtgrp);
1960fa7d9493SBabu Moger 		kernfs_unbreak_active_protection(kn);
1961fa7d9493SBabu Moger 		kernfs_put(rdtgrp->kn);
1962fa7d9493SBabu Moger 		kfree(rdtgrp);
1963fa7d9493SBabu Moger 	} else {
1964fa7d9493SBabu Moger 		kernfs_unbreak_active_protection(kn);
1965fa7d9493SBabu Moger 	}
1966fa7d9493SBabu Moger }
1967fa7d9493SBabu Moger 
1968fa7d9493SBabu Moger static int mkdir_mondata_all(struct kernfs_node *parent_kn,
1969fa7d9493SBabu Moger 			     struct rdtgroup *prgrp,
1970fa7d9493SBabu Moger 			     struct kernfs_node **mon_data_kn);
1971fa7d9493SBabu Moger 
1972fa7d9493SBabu Moger static struct dentry *rdt_mount(struct file_system_type *fs_type,
1973fa7d9493SBabu Moger 				int flags, const char *unused_dev_name,
1974fa7d9493SBabu Moger 				void *data)
1975fa7d9493SBabu Moger {
1976fa7d9493SBabu Moger 	struct rdt_domain *dom;
1977fa7d9493SBabu Moger 	struct rdt_resource *r;
1978fa7d9493SBabu Moger 	struct dentry *dentry;
1979fa7d9493SBabu Moger 	int ret;
1980fa7d9493SBabu Moger 
1981fa7d9493SBabu Moger 	cpus_read_lock();
1982fa7d9493SBabu Moger 	mutex_lock(&rdtgroup_mutex);
1983fa7d9493SBabu Moger 	/*
1984fa7d9493SBabu Moger 	 * resctrl file system can only be mounted once.
1985fa7d9493SBabu Moger 	 */
1986fa7d9493SBabu Moger 	if (static_branch_unlikely(&rdt_enable_key)) {
1987fa7d9493SBabu Moger 		dentry = ERR_PTR(-EBUSY);
1988fa7d9493SBabu Moger 		goto out;
1989fa7d9493SBabu Moger 	}
1990fa7d9493SBabu Moger 
1991fa7d9493SBabu Moger 	ret = parse_rdtgroupfs_options(data);
1992fa7d9493SBabu Moger 	if (ret) {
1993fa7d9493SBabu Moger 		dentry = ERR_PTR(ret);
1994fa7d9493SBabu Moger 		goto out_cdp;
1995fa7d9493SBabu Moger 	}
1996fa7d9493SBabu Moger 
1997fa7d9493SBabu Moger 	closid_init();
1998fa7d9493SBabu Moger 
1999fa7d9493SBabu Moger 	ret = rdtgroup_create_info_dir(rdtgroup_default.kn);
2000fa7d9493SBabu Moger 	if (ret) {
2001fa7d9493SBabu Moger 		dentry = ERR_PTR(ret);
2002fa7d9493SBabu Moger 		goto out_cdp;
2003fa7d9493SBabu Moger 	}
2004fa7d9493SBabu Moger 
2005fa7d9493SBabu Moger 	if (rdt_mon_capable) {
2006fa7d9493SBabu Moger 		ret = mongroup_create_dir(rdtgroup_default.kn,
2007fa7d9493SBabu Moger 					  NULL, "mon_groups",
2008fa7d9493SBabu Moger 					  &kn_mongrp);
2009fa7d9493SBabu Moger 		if (ret) {
2010fa7d9493SBabu Moger 			dentry = ERR_PTR(ret);
2011fa7d9493SBabu Moger 			goto out_info;
2012fa7d9493SBabu Moger 		}
2013fa7d9493SBabu Moger 		kernfs_get(kn_mongrp);
2014fa7d9493SBabu Moger 
2015fa7d9493SBabu Moger 		ret = mkdir_mondata_all(rdtgroup_default.kn,
2016fa7d9493SBabu Moger 					&rdtgroup_default, &kn_mondata);
2017fa7d9493SBabu Moger 		if (ret) {
2018fa7d9493SBabu Moger 			dentry = ERR_PTR(ret);
2019fa7d9493SBabu Moger 			goto out_mongrp;
2020fa7d9493SBabu Moger 		}
2021fa7d9493SBabu Moger 		kernfs_get(kn_mondata);
2022fa7d9493SBabu Moger 		rdtgroup_default.mon.mon_data_kn = kn_mondata;
2023fa7d9493SBabu Moger 	}
2024fa7d9493SBabu Moger 
2025fa7d9493SBabu Moger 	ret = rdt_pseudo_lock_init();
2026fa7d9493SBabu Moger 	if (ret) {
2027fa7d9493SBabu Moger 		dentry = ERR_PTR(ret);
2028fa7d9493SBabu Moger 		goto out_mondata;
2029fa7d9493SBabu Moger 	}
2030fa7d9493SBabu Moger 
2031fa7d9493SBabu Moger 	dentry = kernfs_mount(fs_type, flags, rdt_root,
2032fa7d9493SBabu Moger 			      RDTGROUP_SUPER_MAGIC, NULL);
2033fa7d9493SBabu Moger 	if (IS_ERR(dentry))
2034fa7d9493SBabu Moger 		goto out_psl;
2035fa7d9493SBabu Moger 
2036fa7d9493SBabu Moger 	if (rdt_alloc_capable)
2037fa7d9493SBabu Moger 		static_branch_enable_cpuslocked(&rdt_alloc_enable_key);
2038fa7d9493SBabu Moger 	if (rdt_mon_capable)
2039fa7d9493SBabu Moger 		static_branch_enable_cpuslocked(&rdt_mon_enable_key);
2040fa7d9493SBabu Moger 
2041fa7d9493SBabu Moger 	if (rdt_alloc_capable || rdt_mon_capable)
2042fa7d9493SBabu Moger 		static_branch_enable_cpuslocked(&rdt_enable_key);
2043fa7d9493SBabu Moger 
2044fa7d9493SBabu Moger 	if (is_mbm_enabled()) {
2045fa7d9493SBabu Moger 		r = &rdt_resources_all[RDT_RESOURCE_L3];
2046fa7d9493SBabu Moger 		list_for_each_entry(dom, &r->domains, list)
2047fa7d9493SBabu Moger 			mbm_setup_overflow_handler(dom, MBM_OVERFLOW_INTERVAL);
2048fa7d9493SBabu Moger 	}
2049fa7d9493SBabu Moger 
2050fa7d9493SBabu Moger 	goto out;
2051fa7d9493SBabu Moger 
2052fa7d9493SBabu Moger out_psl:
2053fa7d9493SBabu Moger 	rdt_pseudo_lock_release();
2054fa7d9493SBabu Moger out_mondata:
2055fa7d9493SBabu Moger 	if (rdt_mon_capable)
2056fa7d9493SBabu Moger 		kernfs_remove(kn_mondata);
2057fa7d9493SBabu Moger out_mongrp:
2058fa7d9493SBabu Moger 	if (rdt_mon_capable)
2059fa7d9493SBabu Moger 		kernfs_remove(kn_mongrp);
2060fa7d9493SBabu Moger out_info:
2061fa7d9493SBabu Moger 	kernfs_remove(kn_info);
2062fa7d9493SBabu Moger out_cdp:
2063fa7d9493SBabu Moger 	cdp_disable_all();
2064fa7d9493SBabu Moger out:
2065fa7d9493SBabu Moger 	rdt_last_cmd_clear();
2066fa7d9493SBabu Moger 	mutex_unlock(&rdtgroup_mutex);
2067fa7d9493SBabu Moger 	cpus_read_unlock();
2068fa7d9493SBabu Moger 
2069fa7d9493SBabu Moger 	return dentry;
2070fa7d9493SBabu Moger }
2071fa7d9493SBabu Moger 
2072fa7d9493SBabu Moger static int reset_all_ctrls(struct rdt_resource *r)
2073fa7d9493SBabu Moger {
2074fa7d9493SBabu Moger 	struct msr_param msr_param;
2075fa7d9493SBabu Moger 	cpumask_var_t cpu_mask;
2076fa7d9493SBabu Moger 	struct rdt_domain *d;
2077fa7d9493SBabu Moger 	int i, cpu;
2078fa7d9493SBabu Moger 
2079fa7d9493SBabu Moger 	if (!zalloc_cpumask_var(&cpu_mask, GFP_KERNEL))
2080fa7d9493SBabu Moger 		return -ENOMEM;
2081fa7d9493SBabu Moger 
2082fa7d9493SBabu Moger 	msr_param.res = r;
2083fa7d9493SBabu Moger 	msr_param.low = 0;
2084fa7d9493SBabu Moger 	msr_param.high = r->num_closid;
2085fa7d9493SBabu Moger 
2086fa7d9493SBabu Moger 	/*
2087fa7d9493SBabu Moger 	 * Disable resource control for this resource by setting all
2088fa7d9493SBabu Moger 	 * CBMs in all domains to the maximum mask value. Pick one CPU
2089fa7d9493SBabu Moger 	 * from each domain to update the MSRs below.
2090fa7d9493SBabu Moger 	 */
2091fa7d9493SBabu Moger 	list_for_each_entry(d, &r->domains, list) {
2092fa7d9493SBabu Moger 		cpumask_set_cpu(cpumask_any(&d->cpu_mask), cpu_mask);
2093fa7d9493SBabu Moger 
2094fa7d9493SBabu Moger 		for (i = 0; i < r->num_closid; i++)
2095fa7d9493SBabu Moger 			d->ctrl_val[i] = r->default_ctrl;
2096fa7d9493SBabu Moger 	}
2097fa7d9493SBabu Moger 	cpu = get_cpu();
2098fa7d9493SBabu Moger 	/* Update CBM on this cpu if it's in cpu_mask. */
2099fa7d9493SBabu Moger 	if (cpumask_test_cpu(cpu, cpu_mask))
2100fa7d9493SBabu Moger 		rdt_ctrl_update(&msr_param);
2101fa7d9493SBabu Moger 	/* Update CBM on all other cpus in cpu_mask. */
2102fa7d9493SBabu Moger 	smp_call_function_many(cpu_mask, rdt_ctrl_update, &msr_param, 1);
2103fa7d9493SBabu Moger 	put_cpu();
2104fa7d9493SBabu Moger 
2105fa7d9493SBabu Moger 	free_cpumask_var(cpu_mask);
2106fa7d9493SBabu Moger 
2107fa7d9493SBabu Moger 	return 0;
2108fa7d9493SBabu Moger }
2109fa7d9493SBabu Moger 
2110fa7d9493SBabu Moger static bool is_closid_match(struct task_struct *t, struct rdtgroup *r)
2111fa7d9493SBabu Moger {
2112fa7d9493SBabu Moger 	return (rdt_alloc_capable &&
2113fa7d9493SBabu Moger 		(r->type == RDTCTRL_GROUP) && (t->closid == r->closid));
2114fa7d9493SBabu Moger }
2115fa7d9493SBabu Moger 
2116fa7d9493SBabu Moger static bool is_rmid_match(struct task_struct *t, struct rdtgroup *r)
2117fa7d9493SBabu Moger {
2118fa7d9493SBabu Moger 	return (rdt_mon_capable &&
2119fa7d9493SBabu Moger 		(r->type == RDTMON_GROUP) && (t->rmid == r->mon.rmid));
2120fa7d9493SBabu Moger }
2121fa7d9493SBabu Moger 
2122fa7d9493SBabu Moger /*
2123fa7d9493SBabu Moger  * Move tasks from one to the other group. If @from is NULL, then all tasks
2124fa7d9493SBabu Moger  * in the systems are moved unconditionally (used for teardown).
2125fa7d9493SBabu Moger  *
2126fa7d9493SBabu Moger  * If @mask is not NULL the cpus on which moved tasks are running are set
2127fa7d9493SBabu Moger  * in that mask so the update smp function call is restricted to affected
2128fa7d9493SBabu Moger  * cpus.
2129fa7d9493SBabu Moger  */
2130fa7d9493SBabu Moger static void rdt_move_group_tasks(struct rdtgroup *from, struct rdtgroup *to,
2131fa7d9493SBabu Moger 				 struct cpumask *mask)
2132fa7d9493SBabu Moger {
2133fa7d9493SBabu Moger 	struct task_struct *p, *t;
2134fa7d9493SBabu Moger 
2135fa7d9493SBabu Moger 	read_lock(&tasklist_lock);
2136fa7d9493SBabu Moger 	for_each_process_thread(p, t) {
2137fa7d9493SBabu Moger 		if (!from || is_closid_match(t, from) ||
2138fa7d9493SBabu Moger 		    is_rmid_match(t, from)) {
2139fa7d9493SBabu Moger 			t->closid = to->closid;
2140fa7d9493SBabu Moger 			t->rmid = to->mon.rmid;
2141fa7d9493SBabu Moger 
2142fa7d9493SBabu Moger #ifdef CONFIG_SMP
2143fa7d9493SBabu Moger 			/*
2144fa7d9493SBabu Moger 			 * This is safe on x86 w/o barriers as the ordering
2145fa7d9493SBabu Moger 			 * of writing to task_cpu() and t->on_cpu is
2146fa7d9493SBabu Moger 			 * reverse to the reading here. The detection is
2147fa7d9493SBabu Moger 			 * inaccurate as tasks might move or schedule
2148fa7d9493SBabu Moger 			 * before the smp function call takes place. In
2149fa7d9493SBabu Moger 			 * such a case the function call is pointless, but
2150fa7d9493SBabu Moger 			 * there is no other side effect.
2151fa7d9493SBabu Moger 			 */
2152fa7d9493SBabu Moger 			if (mask && t->on_cpu)
2153fa7d9493SBabu Moger 				cpumask_set_cpu(task_cpu(t), mask);
2154fa7d9493SBabu Moger #endif
2155fa7d9493SBabu Moger 		}
2156fa7d9493SBabu Moger 	}
2157fa7d9493SBabu Moger 	read_unlock(&tasklist_lock);
2158fa7d9493SBabu Moger }
2159fa7d9493SBabu Moger 
2160fa7d9493SBabu Moger static void free_all_child_rdtgrp(struct rdtgroup *rdtgrp)
2161fa7d9493SBabu Moger {
2162fa7d9493SBabu Moger 	struct rdtgroup *sentry, *stmp;
2163fa7d9493SBabu Moger 	struct list_head *head;
2164fa7d9493SBabu Moger 
2165fa7d9493SBabu Moger 	head = &rdtgrp->mon.crdtgrp_list;
2166fa7d9493SBabu Moger 	list_for_each_entry_safe(sentry, stmp, head, mon.crdtgrp_list) {
2167fa7d9493SBabu Moger 		free_rmid(sentry->mon.rmid);
2168fa7d9493SBabu Moger 		list_del(&sentry->mon.crdtgrp_list);
2169fa7d9493SBabu Moger 		kfree(sentry);
2170fa7d9493SBabu Moger 	}
2171fa7d9493SBabu Moger }
2172fa7d9493SBabu Moger 
2173fa7d9493SBabu Moger /*
2174fa7d9493SBabu Moger  * Forcibly remove all of subdirectories under root.
2175fa7d9493SBabu Moger  */
2176fa7d9493SBabu Moger static void rmdir_all_sub(void)
2177fa7d9493SBabu Moger {
2178fa7d9493SBabu Moger 	struct rdtgroup *rdtgrp, *tmp;
2179fa7d9493SBabu Moger 
2180fa7d9493SBabu Moger 	/* Move all tasks to the default resource group */
2181fa7d9493SBabu Moger 	rdt_move_group_tasks(NULL, &rdtgroup_default, NULL);
2182fa7d9493SBabu Moger 
2183fa7d9493SBabu Moger 	list_for_each_entry_safe(rdtgrp, tmp, &rdt_all_groups, rdtgroup_list) {
2184fa7d9493SBabu Moger 		/* Free any child rmids */
2185fa7d9493SBabu Moger 		free_all_child_rdtgrp(rdtgrp);
2186fa7d9493SBabu Moger 
2187fa7d9493SBabu Moger 		/* Remove each rdtgroup other than root */
2188fa7d9493SBabu Moger 		if (rdtgrp == &rdtgroup_default)
2189fa7d9493SBabu Moger 			continue;
2190fa7d9493SBabu Moger 
2191fa7d9493SBabu Moger 		if (rdtgrp->mode == RDT_MODE_PSEUDO_LOCKSETUP ||
2192fa7d9493SBabu Moger 		    rdtgrp->mode == RDT_MODE_PSEUDO_LOCKED)
2193fa7d9493SBabu Moger 			rdtgroup_pseudo_lock_remove(rdtgrp);
2194fa7d9493SBabu Moger 
2195fa7d9493SBabu Moger 		/*
2196fa7d9493SBabu Moger 		 * Give any CPUs back to the default group. We cannot copy
2197fa7d9493SBabu Moger 		 * cpu_online_mask because a CPU might have executed the
2198fa7d9493SBabu Moger 		 * offline callback already, but is still marked online.
2199fa7d9493SBabu Moger 		 */
2200fa7d9493SBabu Moger 		cpumask_or(&rdtgroup_default.cpu_mask,
2201fa7d9493SBabu Moger 			   &rdtgroup_default.cpu_mask, &rdtgrp->cpu_mask);
2202fa7d9493SBabu Moger 
2203fa7d9493SBabu Moger 		free_rmid(rdtgrp->mon.rmid);
2204fa7d9493SBabu Moger 
2205fa7d9493SBabu Moger 		kernfs_remove(rdtgrp->kn);
2206fa7d9493SBabu Moger 		list_del(&rdtgrp->rdtgroup_list);
2207fa7d9493SBabu Moger 		kfree(rdtgrp);
2208fa7d9493SBabu Moger 	}
2209fa7d9493SBabu Moger 	/* Notify online CPUs to update per cpu storage and PQR_ASSOC MSR */
2210fa7d9493SBabu Moger 	update_closid_rmid(cpu_online_mask, &rdtgroup_default);
2211fa7d9493SBabu Moger 
2212fa7d9493SBabu Moger 	kernfs_remove(kn_info);
2213fa7d9493SBabu Moger 	kernfs_remove(kn_mongrp);
2214fa7d9493SBabu Moger 	kernfs_remove(kn_mondata);
2215fa7d9493SBabu Moger }
2216fa7d9493SBabu Moger 
2217fa7d9493SBabu Moger static void rdt_kill_sb(struct super_block *sb)
2218fa7d9493SBabu Moger {
2219fa7d9493SBabu Moger 	struct rdt_resource *r;
2220fa7d9493SBabu Moger 
2221fa7d9493SBabu Moger 	cpus_read_lock();
2222fa7d9493SBabu Moger 	mutex_lock(&rdtgroup_mutex);
2223fa7d9493SBabu Moger 
2224fa7d9493SBabu Moger 	set_mba_sc(false);
2225fa7d9493SBabu Moger 
2226fa7d9493SBabu Moger 	/*Put everything back to default values. */
2227fa7d9493SBabu Moger 	for_each_alloc_enabled_rdt_resource(r)
2228fa7d9493SBabu Moger 		reset_all_ctrls(r);
2229fa7d9493SBabu Moger 	cdp_disable_all();
2230fa7d9493SBabu Moger 	rmdir_all_sub();
2231fa7d9493SBabu Moger 	rdt_pseudo_lock_release();
2232fa7d9493SBabu Moger 	rdtgroup_default.mode = RDT_MODE_SHAREABLE;
2233fa7d9493SBabu Moger 	static_branch_disable_cpuslocked(&rdt_alloc_enable_key);
2234fa7d9493SBabu Moger 	static_branch_disable_cpuslocked(&rdt_mon_enable_key);
2235fa7d9493SBabu Moger 	static_branch_disable_cpuslocked(&rdt_enable_key);
2236fa7d9493SBabu Moger 	kernfs_kill_sb(sb);
2237fa7d9493SBabu Moger 	mutex_unlock(&rdtgroup_mutex);
2238fa7d9493SBabu Moger 	cpus_read_unlock();
2239fa7d9493SBabu Moger }
2240fa7d9493SBabu Moger 
2241fa7d9493SBabu Moger static struct file_system_type rdt_fs_type = {
2242fa7d9493SBabu Moger 	.name    = "resctrl",
2243fa7d9493SBabu Moger 	.mount   = rdt_mount,
2244fa7d9493SBabu Moger 	.kill_sb = rdt_kill_sb,
2245fa7d9493SBabu Moger };
2246fa7d9493SBabu Moger 
2247fa7d9493SBabu Moger static int mon_addfile(struct kernfs_node *parent_kn, const char *name,
2248fa7d9493SBabu Moger 		       void *priv)
2249fa7d9493SBabu Moger {
2250fa7d9493SBabu Moger 	struct kernfs_node *kn;
2251fa7d9493SBabu Moger 	int ret = 0;
2252fa7d9493SBabu Moger 
2253fa7d9493SBabu Moger 	kn = __kernfs_create_file(parent_kn, name, 0444,
2254fa7d9493SBabu Moger 				  GLOBAL_ROOT_UID, GLOBAL_ROOT_GID, 0,
2255fa7d9493SBabu Moger 				  &kf_mondata_ops, priv, NULL, NULL);
2256fa7d9493SBabu Moger 	if (IS_ERR(kn))
2257fa7d9493SBabu Moger 		return PTR_ERR(kn);
2258fa7d9493SBabu Moger 
2259fa7d9493SBabu Moger 	ret = rdtgroup_kn_set_ugid(kn);
2260fa7d9493SBabu Moger 	if (ret) {
2261fa7d9493SBabu Moger 		kernfs_remove(kn);
2262fa7d9493SBabu Moger 		return ret;
2263fa7d9493SBabu Moger 	}
2264fa7d9493SBabu Moger 
2265fa7d9493SBabu Moger 	return ret;
2266fa7d9493SBabu Moger }
2267fa7d9493SBabu Moger 
2268fa7d9493SBabu Moger /*
2269fa7d9493SBabu Moger  * Remove all subdirectories of mon_data of ctrl_mon groups
2270fa7d9493SBabu Moger  * and monitor groups with given domain id.
2271fa7d9493SBabu Moger  */
2272fa7d9493SBabu Moger void rmdir_mondata_subdir_allrdtgrp(struct rdt_resource *r, unsigned int dom_id)
2273fa7d9493SBabu Moger {
2274fa7d9493SBabu Moger 	struct rdtgroup *prgrp, *crgrp;
2275fa7d9493SBabu Moger 	char name[32];
2276fa7d9493SBabu Moger 
2277fa7d9493SBabu Moger 	if (!r->mon_enabled)
2278fa7d9493SBabu Moger 		return;
2279fa7d9493SBabu Moger 
2280fa7d9493SBabu Moger 	list_for_each_entry(prgrp, &rdt_all_groups, rdtgroup_list) {
2281fa7d9493SBabu Moger 		sprintf(name, "mon_%s_%02d", r->name, dom_id);
2282fa7d9493SBabu Moger 		kernfs_remove_by_name(prgrp->mon.mon_data_kn, name);
2283fa7d9493SBabu Moger 
2284fa7d9493SBabu Moger 		list_for_each_entry(crgrp, &prgrp->mon.crdtgrp_list, mon.crdtgrp_list)
2285fa7d9493SBabu Moger 			kernfs_remove_by_name(crgrp->mon.mon_data_kn, name);
2286fa7d9493SBabu Moger 	}
2287fa7d9493SBabu Moger }
2288fa7d9493SBabu Moger 
2289fa7d9493SBabu Moger static int mkdir_mondata_subdir(struct kernfs_node *parent_kn,
2290fa7d9493SBabu Moger 				struct rdt_domain *d,
2291fa7d9493SBabu Moger 				struct rdt_resource *r, struct rdtgroup *prgrp)
2292fa7d9493SBabu Moger {
2293fa7d9493SBabu Moger 	union mon_data_bits priv;
2294fa7d9493SBabu Moger 	struct kernfs_node *kn;
2295fa7d9493SBabu Moger 	struct mon_evt *mevt;
2296fa7d9493SBabu Moger 	struct rmid_read rr;
2297fa7d9493SBabu Moger 	char name[32];
2298fa7d9493SBabu Moger 	int ret;
2299fa7d9493SBabu Moger 
2300fa7d9493SBabu Moger 	sprintf(name, "mon_%s_%02d", r->name, d->id);
2301fa7d9493SBabu Moger 	/* create the directory */
2302fa7d9493SBabu Moger 	kn = kernfs_create_dir(parent_kn, name, parent_kn->mode, prgrp);
2303fa7d9493SBabu Moger 	if (IS_ERR(kn))
2304fa7d9493SBabu Moger 		return PTR_ERR(kn);
2305fa7d9493SBabu Moger 
2306fa7d9493SBabu Moger 	/*
2307fa7d9493SBabu Moger 	 * This extra ref will be put in kernfs_remove() and guarantees
2308fa7d9493SBabu Moger 	 * that kn is always accessible.
2309fa7d9493SBabu Moger 	 */
2310fa7d9493SBabu Moger 	kernfs_get(kn);
2311fa7d9493SBabu Moger 	ret = rdtgroup_kn_set_ugid(kn);
2312fa7d9493SBabu Moger 	if (ret)
2313fa7d9493SBabu Moger 		goto out_destroy;
2314fa7d9493SBabu Moger 
2315fa7d9493SBabu Moger 	if (WARN_ON(list_empty(&r->evt_list))) {
2316fa7d9493SBabu Moger 		ret = -EPERM;
2317fa7d9493SBabu Moger 		goto out_destroy;
2318fa7d9493SBabu Moger 	}
2319fa7d9493SBabu Moger 
2320fa7d9493SBabu Moger 	priv.u.rid = r->rid;
2321fa7d9493SBabu Moger 	priv.u.domid = d->id;
2322fa7d9493SBabu Moger 	list_for_each_entry(mevt, &r->evt_list, list) {
2323fa7d9493SBabu Moger 		priv.u.evtid = mevt->evtid;
2324fa7d9493SBabu Moger 		ret = mon_addfile(kn, mevt->name, priv.priv);
2325fa7d9493SBabu Moger 		if (ret)
2326fa7d9493SBabu Moger 			goto out_destroy;
2327fa7d9493SBabu Moger 
2328fa7d9493SBabu Moger 		if (is_mbm_event(mevt->evtid))
2329fa7d9493SBabu Moger 			mon_event_read(&rr, d, prgrp, mevt->evtid, true);
2330fa7d9493SBabu Moger 	}
2331fa7d9493SBabu Moger 	kernfs_activate(kn);
2332fa7d9493SBabu Moger 	return 0;
2333fa7d9493SBabu Moger 
2334fa7d9493SBabu Moger out_destroy:
2335fa7d9493SBabu Moger 	kernfs_remove(kn);
2336fa7d9493SBabu Moger 	return ret;
2337fa7d9493SBabu Moger }
2338fa7d9493SBabu Moger 
2339fa7d9493SBabu Moger /*
2340fa7d9493SBabu Moger  * Add all subdirectories of mon_data for "ctrl_mon" groups
2341fa7d9493SBabu Moger  * and "monitor" groups with given domain id.
2342fa7d9493SBabu Moger  */
2343fa7d9493SBabu Moger void mkdir_mondata_subdir_allrdtgrp(struct rdt_resource *r,
2344fa7d9493SBabu Moger 				    struct rdt_domain *d)
2345fa7d9493SBabu Moger {
2346fa7d9493SBabu Moger 	struct kernfs_node *parent_kn;
2347fa7d9493SBabu Moger 	struct rdtgroup *prgrp, *crgrp;
2348fa7d9493SBabu Moger 	struct list_head *head;
2349fa7d9493SBabu Moger 
2350fa7d9493SBabu Moger 	if (!r->mon_enabled)
2351fa7d9493SBabu Moger 		return;
2352fa7d9493SBabu Moger 
2353fa7d9493SBabu Moger 	list_for_each_entry(prgrp, &rdt_all_groups, rdtgroup_list) {
2354fa7d9493SBabu Moger 		parent_kn = prgrp->mon.mon_data_kn;
2355fa7d9493SBabu Moger 		mkdir_mondata_subdir(parent_kn, d, r, prgrp);
2356fa7d9493SBabu Moger 
2357fa7d9493SBabu Moger 		head = &prgrp->mon.crdtgrp_list;
2358fa7d9493SBabu Moger 		list_for_each_entry(crgrp, head, mon.crdtgrp_list) {
2359fa7d9493SBabu Moger 			parent_kn = crgrp->mon.mon_data_kn;
2360fa7d9493SBabu Moger 			mkdir_mondata_subdir(parent_kn, d, r, crgrp);
2361fa7d9493SBabu Moger 		}
2362fa7d9493SBabu Moger 	}
2363fa7d9493SBabu Moger }
2364fa7d9493SBabu Moger 
2365fa7d9493SBabu Moger static int mkdir_mondata_subdir_alldom(struct kernfs_node *parent_kn,
2366fa7d9493SBabu Moger 				       struct rdt_resource *r,
2367fa7d9493SBabu Moger 				       struct rdtgroup *prgrp)
2368fa7d9493SBabu Moger {
2369fa7d9493SBabu Moger 	struct rdt_domain *dom;
2370fa7d9493SBabu Moger 	int ret;
2371fa7d9493SBabu Moger 
2372fa7d9493SBabu Moger 	list_for_each_entry(dom, &r->domains, list) {
2373fa7d9493SBabu Moger 		ret = mkdir_mondata_subdir(parent_kn, dom, r, prgrp);
2374fa7d9493SBabu Moger 		if (ret)
2375fa7d9493SBabu Moger 			return ret;
2376fa7d9493SBabu Moger 	}
2377fa7d9493SBabu Moger 
2378fa7d9493SBabu Moger 	return 0;
2379fa7d9493SBabu Moger }
2380fa7d9493SBabu Moger 
2381fa7d9493SBabu Moger /*
2382fa7d9493SBabu Moger  * This creates a directory mon_data which contains the monitored data.
2383fa7d9493SBabu Moger  *
2384fa7d9493SBabu Moger  * mon_data has one directory for each domain whic are named
2385fa7d9493SBabu Moger  * in the format mon_<domain_name>_<domain_id>. For ex: A mon_data
2386fa7d9493SBabu Moger  * with L3 domain looks as below:
2387fa7d9493SBabu Moger  * ./mon_data:
2388fa7d9493SBabu Moger  * mon_L3_00
2389fa7d9493SBabu Moger  * mon_L3_01
2390fa7d9493SBabu Moger  * mon_L3_02
2391fa7d9493SBabu Moger  * ...
2392fa7d9493SBabu Moger  *
2393fa7d9493SBabu Moger  * Each domain directory has one file per event:
2394fa7d9493SBabu Moger  * ./mon_L3_00/:
2395fa7d9493SBabu Moger  * llc_occupancy
2396fa7d9493SBabu Moger  *
2397fa7d9493SBabu Moger  */
2398fa7d9493SBabu Moger static int mkdir_mondata_all(struct kernfs_node *parent_kn,
2399fa7d9493SBabu Moger 			     struct rdtgroup *prgrp,
2400fa7d9493SBabu Moger 			     struct kernfs_node **dest_kn)
2401fa7d9493SBabu Moger {
2402fa7d9493SBabu Moger 	struct rdt_resource *r;
2403fa7d9493SBabu Moger 	struct kernfs_node *kn;
2404fa7d9493SBabu Moger 	int ret;
2405fa7d9493SBabu Moger 
2406fa7d9493SBabu Moger 	/*
2407fa7d9493SBabu Moger 	 * Create the mon_data directory first.
2408fa7d9493SBabu Moger 	 */
2409fa7d9493SBabu Moger 	ret = mongroup_create_dir(parent_kn, NULL, "mon_data", &kn);
2410fa7d9493SBabu Moger 	if (ret)
2411fa7d9493SBabu Moger 		return ret;
2412fa7d9493SBabu Moger 
2413fa7d9493SBabu Moger 	if (dest_kn)
2414fa7d9493SBabu Moger 		*dest_kn = kn;
2415fa7d9493SBabu Moger 
2416fa7d9493SBabu Moger 	/*
2417fa7d9493SBabu Moger 	 * Create the subdirectories for each domain. Note that all events
2418fa7d9493SBabu Moger 	 * in a domain like L3 are grouped into a resource whose domain is L3
2419fa7d9493SBabu Moger 	 */
2420fa7d9493SBabu Moger 	for_each_mon_enabled_rdt_resource(r) {
2421fa7d9493SBabu Moger 		ret = mkdir_mondata_subdir_alldom(kn, r, prgrp);
2422fa7d9493SBabu Moger 		if (ret)
2423fa7d9493SBabu Moger 			goto out_destroy;
2424fa7d9493SBabu Moger 	}
2425fa7d9493SBabu Moger 
2426fa7d9493SBabu Moger 	return 0;
2427fa7d9493SBabu Moger 
2428fa7d9493SBabu Moger out_destroy:
2429fa7d9493SBabu Moger 	kernfs_remove(kn);
2430fa7d9493SBabu Moger 	return ret;
2431fa7d9493SBabu Moger }
2432fa7d9493SBabu Moger 
2433fa7d9493SBabu Moger /**
2434fa7d9493SBabu Moger  * cbm_ensure_valid - Enforce validity on provided CBM
2435fa7d9493SBabu Moger  * @_val:	Candidate CBM
2436fa7d9493SBabu Moger  * @r:		RDT resource to which the CBM belongs
2437fa7d9493SBabu Moger  *
2438fa7d9493SBabu Moger  * The provided CBM represents all cache portions available for use. This
2439fa7d9493SBabu Moger  * may be represented by a bitmap that does not consist of contiguous ones
2440fa7d9493SBabu Moger  * and thus be an invalid CBM.
2441fa7d9493SBabu Moger  * Here the provided CBM is forced to be a valid CBM by only considering
2442fa7d9493SBabu Moger  * the first set of contiguous bits as valid and clearing all bits.
2443fa7d9493SBabu Moger  * The intention here is to provide a valid default CBM with which a new
2444fa7d9493SBabu Moger  * resource group is initialized. The user can follow this with a
2445fa7d9493SBabu Moger  * modification to the CBM if the default does not satisfy the
2446fa7d9493SBabu Moger  * requirements.
2447fa7d9493SBabu Moger  */
2448fa7d9493SBabu Moger static void cbm_ensure_valid(u32 *_val, struct rdt_resource *r)
2449fa7d9493SBabu Moger {
2450fa7d9493SBabu Moger 	/*
2451fa7d9493SBabu Moger 	 * Convert the u32 _val to an unsigned long required by all the bit
2452fa7d9493SBabu Moger 	 * operations within this function. No more than 32 bits of this
2453fa7d9493SBabu Moger 	 * converted value can be accessed because all bit operations are
2454fa7d9493SBabu Moger 	 * additionally provided with cbm_len that is initialized during
2455fa7d9493SBabu Moger 	 * hardware enumeration using five bits from the EAX register and
2456fa7d9493SBabu Moger 	 * thus never can exceed 32 bits.
2457fa7d9493SBabu Moger 	 */
2458fa7d9493SBabu Moger 	unsigned long *val = (unsigned long *)_val;
2459fa7d9493SBabu Moger 	unsigned int cbm_len = r->cache.cbm_len;
2460fa7d9493SBabu Moger 	unsigned long first_bit, zero_bit;
2461fa7d9493SBabu Moger 
2462fa7d9493SBabu Moger 	if (*val == 0)
2463fa7d9493SBabu Moger 		return;
2464fa7d9493SBabu Moger 
2465fa7d9493SBabu Moger 	first_bit = find_first_bit(val, cbm_len);
2466fa7d9493SBabu Moger 	zero_bit = find_next_zero_bit(val, cbm_len, first_bit);
2467fa7d9493SBabu Moger 
2468fa7d9493SBabu Moger 	/* Clear any remaining bits to ensure contiguous region */
2469fa7d9493SBabu Moger 	bitmap_clear(val, zero_bit, cbm_len - zero_bit);
2470fa7d9493SBabu Moger }
2471fa7d9493SBabu Moger 
2472fa7d9493SBabu Moger /**
2473fa7d9493SBabu Moger  * rdtgroup_init_alloc - Initialize the new RDT group's allocations
2474fa7d9493SBabu Moger  *
2475fa7d9493SBabu Moger  * A new RDT group is being created on an allocation capable (CAT)
2476fa7d9493SBabu Moger  * supporting system. Set this group up to start off with all usable
2477fa7d9493SBabu Moger  * allocations. That is, all shareable and unused bits.
2478fa7d9493SBabu Moger  *
2479fa7d9493SBabu Moger  * All-zero CBM is invalid. If there are no more shareable bits available
2480fa7d9493SBabu Moger  * on any domain then the entire allocation will fail.
2481fa7d9493SBabu Moger  */
2482fa7d9493SBabu Moger static int rdtgroup_init_alloc(struct rdtgroup *rdtgrp)
2483fa7d9493SBabu Moger {
2484fa7d9493SBabu Moger 	struct rdt_resource *r_cdp = NULL;
2485fa7d9493SBabu Moger 	struct rdt_domain *d_cdp = NULL;
2486fa7d9493SBabu Moger 	u32 used_b = 0, unused_b = 0;
2487fa7d9493SBabu Moger 	u32 closid = rdtgrp->closid;
2488fa7d9493SBabu Moger 	struct rdt_resource *r;
2489fa7d9493SBabu Moger 	unsigned long tmp_cbm;
2490fa7d9493SBabu Moger 	enum rdtgrp_mode mode;
2491fa7d9493SBabu Moger 	struct rdt_domain *d;
2492fa7d9493SBabu Moger 	u32 peer_ctl, *ctrl;
2493fa7d9493SBabu Moger 	int i, ret;
2494fa7d9493SBabu Moger 
2495fa7d9493SBabu Moger 	for_each_alloc_enabled_rdt_resource(r) {
2496fa7d9493SBabu Moger 		/*
2497fa7d9493SBabu Moger 		 * Only initialize default allocations for CBM cache
2498fa7d9493SBabu Moger 		 * resources
2499fa7d9493SBabu Moger 		 */
2500fa7d9493SBabu Moger 		if (r->rid == RDT_RESOURCE_MBA)
2501fa7d9493SBabu Moger 			continue;
2502fa7d9493SBabu Moger 		list_for_each_entry(d, &r->domains, list) {
2503fa7d9493SBabu Moger 			rdt_cdp_peer_get(r, d, &r_cdp, &d_cdp);
2504fa7d9493SBabu Moger 			d->have_new_ctrl = false;
2505fa7d9493SBabu Moger 			d->new_ctrl = r->cache.shareable_bits;
2506fa7d9493SBabu Moger 			used_b = r->cache.shareable_bits;
2507fa7d9493SBabu Moger 			ctrl = d->ctrl_val;
2508fa7d9493SBabu Moger 			for (i = 0; i < closids_supported(); i++, ctrl++) {
2509fa7d9493SBabu Moger 				if (closid_allocated(i) && i != closid) {
2510fa7d9493SBabu Moger 					mode = rdtgroup_mode_by_closid(i);
2511fa7d9493SBabu Moger 					if (mode == RDT_MODE_PSEUDO_LOCKSETUP)
2512fa7d9493SBabu Moger 						break;
2513fa7d9493SBabu Moger 					/*
2514fa7d9493SBabu Moger 					 * If CDP is active include peer
2515fa7d9493SBabu Moger 					 * domain's usage to ensure there
2516fa7d9493SBabu Moger 					 * is no overlap with an exclusive
2517fa7d9493SBabu Moger 					 * group.
2518fa7d9493SBabu Moger 					 */
2519fa7d9493SBabu Moger 					if (d_cdp)
2520fa7d9493SBabu Moger 						peer_ctl = d_cdp->ctrl_val[i];
2521fa7d9493SBabu Moger 					else
2522fa7d9493SBabu Moger 						peer_ctl = 0;
2523fa7d9493SBabu Moger 					used_b |= *ctrl | peer_ctl;
2524fa7d9493SBabu Moger 					if (mode == RDT_MODE_SHAREABLE)
2525fa7d9493SBabu Moger 						d->new_ctrl |= *ctrl | peer_ctl;
2526fa7d9493SBabu Moger 				}
2527fa7d9493SBabu Moger 			}
2528fa7d9493SBabu Moger 			if (d->plr && d->plr->cbm > 0)
2529fa7d9493SBabu Moger 				used_b |= d->plr->cbm;
2530fa7d9493SBabu Moger 			unused_b = used_b ^ (BIT_MASK(r->cache.cbm_len) - 1);
2531fa7d9493SBabu Moger 			unused_b &= BIT_MASK(r->cache.cbm_len) - 1;
2532fa7d9493SBabu Moger 			d->new_ctrl |= unused_b;
2533fa7d9493SBabu Moger 			/*
2534fa7d9493SBabu Moger 			 * Force the initial CBM to be valid, user can
2535fa7d9493SBabu Moger 			 * modify the CBM based on system availability.
2536fa7d9493SBabu Moger 			 */
2537fa7d9493SBabu Moger 			cbm_ensure_valid(&d->new_ctrl, r);
2538fa7d9493SBabu Moger 			/*
2539fa7d9493SBabu Moger 			 * Assign the u32 CBM to an unsigned long to ensure
2540fa7d9493SBabu Moger 			 * that bitmap_weight() does not access out-of-bound
2541fa7d9493SBabu Moger 			 * memory.
2542fa7d9493SBabu Moger 			 */
2543fa7d9493SBabu Moger 			tmp_cbm = d->new_ctrl;
2544fa7d9493SBabu Moger 			if (bitmap_weight(&tmp_cbm, r->cache.cbm_len) <
2545fa7d9493SBabu Moger 			    r->cache.min_cbm_bits) {
2546723f1a0dSBabu Moger 				rdt_last_cmd_printf("No space on %s:%d\n",
2547fa7d9493SBabu Moger 						    r->name, d->id);
2548fa7d9493SBabu Moger 				return -ENOSPC;
2549fa7d9493SBabu Moger 			}
2550fa7d9493SBabu Moger 			d->have_new_ctrl = true;
2551fa7d9493SBabu Moger 		}
2552fa7d9493SBabu Moger 	}
2553fa7d9493SBabu Moger 
2554fa7d9493SBabu Moger 	for_each_alloc_enabled_rdt_resource(r) {
2555fa7d9493SBabu Moger 		/*
2556fa7d9493SBabu Moger 		 * Only initialize default allocations for CBM cache
2557fa7d9493SBabu Moger 		 * resources
2558fa7d9493SBabu Moger 		 */
2559fa7d9493SBabu Moger 		if (r->rid == RDT_RESOURCE_MBA)
2560fa7d9493SBabu Moger 			continue;
2561fa7d9493SBabu Moger 		ret = update_domains(r, rdtgrp->closid);
2562fa7d9493SBabu Moger 		if (ret < 0) {
2563723f1a0dSBabu Moger 			rdt_last_cmd_puts("Failed to initialize allocations\n");
2564fa7d9493SBabu Moger 			return ret;
2565fa7d9493SBabu Moger 		}
2566fa7d9493SBabu Moger 		rdtgrp->mode = RDT_MODE_SHAREABLE;
2567fa7d9493SBabu Moger 	}
2568fa7d9493SBabu Moger 
2569fa7d9493SBabu Moger 	return 0;
2570fa7d9493SBabu Moger }
2571fa7d9493SBabu Moger 
2572fa7d9493SBabu Moger static int mkdir_rdt_prepare(struct kernfs_node *parent_kn,
2573fa7d9493SBabu Moger 			     struct kernfs_node *prgrp_kn,
2574fa7d9493SBabu Moger 			     const char *name, umode_t mode,
2575fa7d9493SBabu Moger 			     enum rdt_group_type rtype, struct rdtgroup **r)
2576fa7d9493SBabu Moger {
2577fa7d9493SBabu Moger 	struct rdtgroup *prdtgrp, *rdtgrp;
2578fa7d9493SBabu Moger 	struct kernfs_node *kn;
2579fa7d9493SBabu Moger 	uint files = 0;
2580fa7d9493SBabu Moger 	int ret;
2581fa7d9493SBabu Moger 
2582fa7d9493SBabu Moger 	prdtgrp = rdtgroup_kn_lock_live(prgrp_kn);
2583fa7d9493SBabu Moger 	rdt_last_cmd_clear();
2584fa7d9493SBabu Moger 	if (!prdtgrp) {
2585fa7d9493SBabu Moger 		ret = -ENODEV;
2586723f1a0dSBabu Moger 		rdt_last_cmd_puts("Directory was removed\n");
2587fa7d9493SBabu Moger 		goto out_unlock;
2588fa7d9493SBabu Moger 	}
2589fa7d9493SBabu Moger 
2590fa7d9493SBabu Moger 	if (rtype == RDTMON_GROUP &&
2591fa7d9493SBabu Moger 	    (prdtgrp->mode == RDT_MODE_PSEUDO_LOCKSETUP ||
2592fa7d9493SBabu Moger 	     prdtgrp->mode == RDT_MODE_PSEUDO_LOCKED)) {
2593fa7d9493SBabu Moger 		ret = -EINVAL;
2594723f1a0dSBabu Moger 		rdt_last_cmd_puts("Pseudo-locking in progress\n");
2595fa7d9493SBabu Moger 		goto out_unlock;
2596fa7d9493SBabu Moger 	}
2597fa7d9493SBabu Moger 
2598fa7d9493SBabu Moger 	/* allocate the rdtgroup. */
2599fa7d9493SBabu Moger 	rdtgrp = kzalloc(sizeof(*rdtgrp), GFP_KERNEL);
2600fa7d9493SBabu Moger 	if (!rdtgrp) {
2601fa7d9493SBabu Moger 		ret = -ENOSPC;
2602723f1a0dSBabu Moger 		rdt_last_cmd_puts("Kernel out of memory\n");
2603fa7d9493SBabu Moger 		goto out_unlock;
2604fa7d9493SBabu Moger 	}
2605fa7d9493SBabu Moger 	*r = rdtgrp;
2606fa7d9493SBabu Moger 	rdtgrp->mon.parent = prdtgrp;
2607fa7d9493SBabu Moger 	rdtgrp->type = rtype;
2608fa7d9493SBabu Moger 	INIT_LIST_HEAD(&rdtgrp->mon.crdtgrp_list);
2609fa7d9493SBabu Moger 
2610fa7d9493SBabu Moger 	/* kernfs creates the directory for rdtgrp */
2611fa7d9493SBabu Moger 	kn = kernfs_create_dir(parent_kn, name, mode, rdtgrp);
2612fa7d9493SBabu Moger 	if (IS_ERR(kn)) {
2613fa7d9493SBabu Moger 		ret = PTR_ERR(kn);
2614fa7d9493SBabu Moger 		rdt_last_cmd_puts("kernfs create error\n");
2615fa7d9493SBabu Moger 		goto out_free_rgrp;
2616fa7d9493SBabu Moger 	}
2617fa7d9493SBabu Moger 	rdtgrp->kn = kn;
2618fa7d9493SBabu Moger 
2619fa7d9493SBabu Moger 	/*
2620fa7d9493SBabu Moger 	 * kernfs_remove() will drop the reference count on "kn" which
2621fa7d9493SBabu Moger 	 * will free it. But we still need it to stick around for the
2622fa7d9493SBabu Moger 	 * rdtgroup_kn_unlock(kn} call below. Take one extra reference
2623fa7d9493SBabu Moger 	 * here, which will be dropped inside rdtgroup_kn_unlock().
2624fa7d9493SBabu Moger 	 */
2625fa7d9493SBabu Moger 	kernfs_get(kn);
2626fa7d9493SBabu Moger 
2627fa7d9493SBabu Moger 	ret = rdtgroup_kn_set_ugid(kn);
2628fa7d9493SBabu Moger 	if (ret) {
2629fa7d9493SBabu Moger 		rdt_last_cmd_puts("kernfs perm error\n");
2630fa7d9493SBabu Moger 		goto out_destroy;
2631fa7d9493SBabu Moger 	}
2632fa7d9493SBabu Moger 
2633fa7d9493SBabu Moger 	files = RFTYPE_BASE | BIT(RF_CTRLSHIFT + rtype);
2634fa7d9493SBabu Moger 	ret = rdtgroup_add_files(kn, files);
2635fa7d9493SBabu Moger 	if (ret) {
2636fa7d9493SBabu Moger 		rdt_last_cmd_puts("kernfs fill error\n");
2637fa7d9493SBabu Moger 		goto out_destroy;
2638fa7d9493SBabu Moger 	}
2639fa7d9493SBabu Moger 
2640fa7d9493SBabu Moger 	if (rdt_mon_capable) {
2641fa7d9493SBabu Moger 		ret = alloc_rmid();
2642fa7d9493SBabu Moger 		if (ret < 0) {
2643723f1a0dSBabu Moger 			rdt_last_cmd_puts("Out of RMIDs\n");
2644fa7d9493SBabu Moger 			goto out_destroy;
2645fa7d9493SBabu Moger 		}
2646fa7d9493SBabu Moger 		rdtgrp->mon.rmid = ret;
2647fa7d9493SBabu Moger 
2648fa7d9493SBabu Moger 		ret = mkdir_mondata_all(kn, rdtgrp, &rdtgrp->mon.mon_data_kn);
2649fa7d9493SBabu Moger 		if (ret) {
2650fa7d9493SBabu Moger 			rdt_last_cmd_puts("kernfs subdir error\n");
2651fa7d9493SBabu Moger 			goto out_idfree;
2652fa7d9493SBabu Moger 		}
2653fa7d9493SBabu Moger 	}
2654fa7d9493SBabu Moger 	kernfs_activate(kn);
2655fa7d9493SBabu Moger 
2656fa7d9493SBabu Moger 	/*
2657fa7d9493SBabu Moger 	 * The caller unlocks the prgrp_kn upon success.
2658fa7d9493SBabu Moger 	 */
2659fa7d9493SBabu Moger 	return 0;
2660fa7d9493SBabu Moger 
2661fa7d9493SBabu Moger out_idfree:
2662fa7d9493SBabu Moger 	free_rmid(rdtgrp->mon.rmid);
2663fa7d9493SBabu Moger out_destroy:
2664fa7d9493SBabu Moger 	kernfs_remove(rdtgrp->kn);
2665fa7d9493SBabu Moger out_free_rgrp:
2666fa7d9493SBabu Moger 	kfree(rdtgrp);
2667fa7d9493SBabu Moger out_unlock:
2668fa7d9493SBabu Moger 	rdtgroup_kn_unlock(prgrp_kn);
2669fa7d9493SBabu Moger 	return ret;
2670fa7d9493SBabu Moger }
2671fa7d9493SBabu Moger 
2672fa7d9493SBabu Moger static void mkdir_rdt_prepare_clean(struct rdtgroup *rgrp)
2673fa7d9493SBabu Moger {
2674fa7d9493SBabu Moger 	kernfs_remove(rgrp->kn);
2675fa7d9493SBabu Moger 	free_rmid(rgrp->mon.rmid);
2676fa7d9493SBabu Moger 	kfree(rgrp);
2677fa7d9493SBabu Moger }
2678fa7d9493SBabu Moger 
2679fa7d9493SBabu Moger /*
2680fa7d9493SBabu Moger  * Create a monitor group under "mon_groups" directory of a control
2681fa7d9493SBabu Moger  * and monitor group(ctrl_mon). This is a resource group
2682fa7d9493SBabu Moger  * to monitor a subset of tasks and cpus in its parent ctrl_mon group.
2683fa7d9493SBabu Moger  */
2684fa7d9493SBabu Moger static int rdtgroup_mkdir_mon(struct kernfs_node *parent_kn,
2685fa7d9493SBabu Moger 			      struct kernfs_node *prgrp_kn,
2686fa7d9493SBabu Moger 			      const char *name,
2687fa7d9493SBabu Moger 			      umode_t mode)
2688fa7d9493SBabu Moger {
2689fa7d9493SBabu Moger 	struct rdtgroup *rdtgrp, *prgrp;
2690fa7d9493SBabu Moger 	int ret;
2691fa7d9493SBabu Moger 
2692fa7d9493SBabu Moger 	ret = mkdir_rdt_prepare(parent_kn, prgrp_kn, name, mode, RDTMON_GROUP,
2693fa7d9493SBabu Moger 				&rdtgrp);
2694fa7d9493SBabu Moger 	if (ret)
2695fa7d9493SBabu Moger 		return ret;
2696fa7d9493SBabu Moger 
2697fa7d9493SBabu Moger 	prgrp = rdtgrp->mon.parent;
2698fa7d9493SBabu Moger 	rdtgrp->closid = prgrp->closid;
2699fa7d9493SBabu Moger 
2700fa7d9493SBabu Moger 	/*
2701fa7d9493SBabu Moger 	 * Add the rdtgrp to the list of rdtgrps the parent
2702fa7d9493SBabu Moger 	 * ctrl_mon group has to track.
2703fa7d9493SBabu Moger 	 */
2704fa7d9493SBabu Moger 	list_add_tail(&rdtgrp->mon.crdtgrp_list, &prgrp->mon.crdtgrp_list);
2705fa7d9493SBabu Moger 
2706fa7d9493SBabu Moger 	rdtgroup_kn_unlock(prgrp_kn);
2707fa7d9493SBabu Moger 	return ret;
2708fa7d9493SBabu Moger }
2709fa7d9493SBabu Moger 
2710fa7d9493SBabu Moger /*
2711fa7d9493SBabu Moger  * These are rdtgroups created under the root directory. Can be used
2712fa7d9493SBabu Moger  * to allocate and monitor resources.
2713fa7d9493SBabu Moger  */
2714fa7d9493SBabu Moger static int rdtgroup_mkdir_ctrl_mon(struct kernfs_node *parent_kn,
2715fa7d9493SBabu Moger 				   struct kernfs_node *prgrp_kn,
2716fa7d9493SBabu Moger 				   const char *name, umode_t mode)
2717fa7d9493SBabu Moger {
2718fa7d9493SBabu Moger 	struct rdtgroup *rdtgrp;
2719fa7d9493SBabu Moger 	struct kernfs_node *kn;
2720fa7d9493SBabu Moger 	u32 closid;
2721fa7d9493SBabu Moger 	int ret;
2722fa7d9493SBabu Moger 
2723fa7d9493SBabu Moger 	ret = mkdir_rdt_prepare(parent_kn, prgrp_kn, name, mode, RDTCTRL_GROUP,
2724fa7d9493SBabu Moger 				&rdtgrp);
2725fa7d9493SBabu Moger 	if (ret)
2726fa7d9493SBabu Moger 		return ret;
2727fa7d9493SBabu Moger 
2728fa7d9493SBabu Moger 	kn = rdtgrp->kn;
2729fa7d9493SBabu Moger 	ret = closid_alloc();
2730fa7d9493SBabu Moger 	if (ret < 0) {
2731723f1a0dSBabu Moger 		rdt_last_cmd_puts("Out of CLOSIDs\n");
2732fa7d9493SBabu Moger 		goto out_common_fail;
2733fa7d9493SBabu Moger 	}
2734fa7d9493SBabu Moger 	closid = ret;
2735fa7d9493SBabu Moger 	ret = 0;
2736fa7d9493SBabu Moger 
2737fa7d9493SBabu Moger 	rdtgrp->closid = closid;
2738fa7d9493SBabu Moger 	ret = rdtgroup_init_alloc(rdtgrp);
2739fa7d9493SBabu Moger 	if (ret < 0)
2740fa7d9493SBabu Moger 		goto out_id_free;
2741fa7d9493SBabu Moger 
2742fa7d9493SBabu Moger 	list_add(&rdtgrp->rdtgroup_list, &rdt_all_groups);
2743fa7d9493SBabu Moger 
2744fa7d9493SBabu Moger 	if (rdt_mon_capable) {
2745fa7d9493SBabu Moger 		/*
2746fa7d9493SBabu Moger 		 * Create an empty mon_groups directory to hold the subset
2747fa7d9493SBabu Moger 		 * of tasks and cpus to monitor.
2748fa7d9493SBabu Moger 		 */
2749fa7d9493SBabu Moger 		ret = mongroup_create_dir(kn, NULL, "mon_groups", NULL);
2750fa7d9493SBabu Moger 		if (ret) {
2751fa7d9493SBabu Moger 			rdt_last_cmd_puts("kernfs subdir error\n");
2752fa7d9493SBabu Moger 			goto out_del_list;
2753fa7d9493SBabu Moger 		}
2754fa7d9493SBabu Moger 	}
2755fa7d9493SBabu Moger 
2756fa7d9493SBabu Moger 	goto out_unlock;
2757fa7d9493SBabu Moger 
2758fa7d9493SBabu Moger out_del_list:
2759fa7d9493SBabu Moger 	list_del(&rdtgrp->rdtgroup_list);
2760fa7d9493SBabu Moger out_id_free:
2761fa7d9493SBabu Moger 	closid_free(closid);
2762fa7d9493SBabu Moger out_common_fail:
2763fa7d9493SBabu Moger 	mkdir_rdt_prepare_clean(rdtgrp);
2764fa7d9493SBabu Moger out_unlock:
2765fa7d9493SBabu Moger 	rdtgroup_kn_unlock(prgrp_kn);
2766fa7d9493SBabu Moger 	return ret;
2767fa7d9493SBabu Moger }
2768fa7d9493SBabu Moger 
2769fa7d9493SBabu Moger /*
2770fa7d9493SBabu Moger  * We allow creating mon groups only with in a directory called "mon_groups"
2771fa7d9493SBabu Moger  * which is present in every ctrl_mon group. Check if this is a valid
2772fa7d9493SBabu Moger  * "mon_groups" directory.
2773fa7d9493SBabu Moger  *
2774fa7d9493SBabu Moger  * 1. The directory should be named "mon_groups".
2775fa7d9493SBabu Moger  * 2. The mon group itself should "not" be named "mon_groups".
2776fa7d9493SBabu Moger  *   This makes sure "mon_groups" directory always has a ctrl_mon group
2777fa7d9493SBabu Moger  *   as parent.
2778fa7d9493SBabu Moger  */
2779fa7d9493SBabu Moger static bool is_mon_groups(struct kernfs_node *kn, const char *name)
2780fa7d9493SBabu Moger {
2781fa7d9493SBabu Moger 	return (!strcmp(kn->name, "mon_groups") &&
2782fa7d9493SBabu Moger 		strcmp(name, "mon_groups"));
2783fa7d9493SBabu Moger }
2784fa7d9493SBabu Moger 
2785fa7d9493SBabu Moger static int rdtgroup_mkdir(struct kernfs_node *parent_kn, const char *name,
2786fa7d9493SBabu Moger 			  umode_t mode)
2787fa7d9493SBabu Moger {
2788fa7d9493SBabu Moger 	/* Do not accept '\n' to avoid unparsable situation. */
2789fa7d9493SBabu Moger 	if (strchr(name, '\n'))
2790fa7d9493SBabu Moger 		return -EINVAL;
2791fa7d9493SBabu Moger 
2792fa7d9493SBabu Moger 	/*
2793fa7d9493SBabu Moger 	 * If the parent directory is the root directory and RDT
2794fa7d9493SBabu Moger 	 * allocation is supported, add a control and monitoring
2795fa7d9493SBabu Moger 	 * subdirectory
2796fa7d9493SBabu Moger 	 */
2797fa7d9493SBabu Moger 	if (rdt_alloc_capable && parent_kn == rdtgroup_default.kn)
2798fa7d9493SBabu Moger 		return rdtgroup_mkdir_ctrl_mon(parent_kn, parent_kn, name, mode);
2799fa7d9493SBabu Moger 
2800fa7d9493SBabu Moger 	/*
2801fa7d9493SBabu Moger 	 * If RDT monitoring is supported and the parent directory is a valid
2802fa7d9493SBabu Moger 	 * "mon_groups" directory, add a monitoring subdirectory.
2803fa7d9493SBabu Moger 	 */
2804fa7d9493SBabu Moger 	if (rdt_mon_capable && is_mon_groups(parent_kn, name))
2805fa7d9493SBabu Moger 		return rdtgroup_mkdir_mon(parent_kn, parent_kn->parent, name, mode);
2806fa7d9493SBabu Moger 
2807fa7d9493SBabu Moger 	return -EPERM;
2808fa7d9493SBabu Moger }
2809fa7d9493SBabu Moger 
2810fa7d9493SBabu Moger static int rdtgroup_rmdir_mon(struct kernfs_node *kn, struct rdtgroup *rdtgrp,
2811fa7d9493SBabu Moger 			      cpumask_var_t tmpmask)
2812fa7d9493SBabu Moger {
2813fa7d9493SBabu Moger 	struct rdtgroup *prdtgrp = rdtgrp->mon.parent;
2814fa7d9493SBabu Moger 	int cpu;
2815fa7d9493SBabu Moger 
2816fa7d9493SBabu Moger 	/* Give any tasks back to the parent group */
2817fa7d9493SBabu Moger 	rdt_move_group_tasks(rdtgrp, prdtgrp, tmpmask);
2818fa7d9493SBabu Moger 
2819fa7d9493SBabu Moger 	/* Update per cpu rmid of the moved CPUs first */
2820fa7d9493SBabu Moger 	for_each_cpu(cpu, &rdtgrp->cpu_mask)
2821fa7d9493SBabu Moger 		per_cpu(pqr_state.default_rmid, cpu) = prdtgrp->mon.rmid;
2822fa7d9493SBabu Moger 	/*
2823fa7d9493SBabu Moger 	 * Update the MSR on moved CPUs and CPUs which have moved
2824fa7d9493SBabu Moger 	 * task running on them.
2825fa7d9493SBabu Moger 	 */
2826fa7d9493SBabu Moger 	cpumask_or(tmpmask, tmpmask, &rdtgrp->cpu_mask);
2827fa7d9493SBabu Moger 	update_closid_rmid(tmpmask, NULL);
2828fa7d9493SBabu Moger 
2829fa7d9493SBabu Moger 	rdtgrp->flags = RDT_DELETED;
2830fa7d9493SBabu Moger 	free_rmid(rdtgrp->mon.rmid);
2831fa7d9493SBabu Moger 
2832fa7d9493SBabu Moger 	/*
2833fa7d9493SBabu Moger 	 * Remove the rdtgrp from the parent ctrl_mon group's list
2834fa7d9493SBabu Moger 	 */
2835fa7d9493SBabu Moger 	WARN_ON(list_empty(&prdtgrp->mon.crdtgrp_list));
2836fa7d9493SBabu Moger 	list_del(&rdtgrp->mon.crdtgrp_list);
2837fa7d9493SBabu Moger 
2838fa7d9493SBabu Moger 	/*
2839fa7d9493SBabu Moger 	 * one extra hold on this, will drop when we kfree(rdtgrp)
2840fa7d9493SBabu Moger 	 * in rdtgroup_kn_unlock()
2841fa7d9493SBabu Moger 	 */
2842fa7d9493SBabu Moger 	kernfs_get(kn);
2843fa7d9493SBabu Moger 	kernfs_remove(rdtgrp->kn);
2844fa7d9493SBabu Moger 
2845fa7d9493SBabu Moger 	return 0;
2846fa7d9493SBabu Moger }
2847fa7d9493SBabu Moger 
2848fa7d9493SBabu Moger static int rdtgroup_ctrl_remove(struct kernfs_node *kn,
2849fa7d9493SBabu Moger 				struct rdtgroup *rdtgrp)
2850fa7d9493SBabu Moger {
2851fa7d9493SBabu Moger 	rdtgrp->flags = RDT_DELETED;
2852fa7d9493SBabu Moger 	list_del(&rdtgrp->rdtgroup_list);
2853fa7d9493SBabu Moger 
2854fa7d9493SBabu Moger 	/*
2855fa7d9493SBabu Moger 	 * one extra hold on this, will drop when we kfree(rdtgrp)
2856fa7d9493SBabu Moger 	 * in rdtgroup_kn_unlock()
2857fa7d9493SBabu Moger 	 */
2858fa7d9493SBabu Moger 	kernfs_get(kn);
2859fa7d9493SBabu Moger 	kernfs_remove(rdtgrp->kn);
2860fa7d9493SBabu Moger 	return 0;
2861fa7d9493SBabu Moger }
2862fa7d9493SBabu Moger 
2863fa7d9493SBabu Moger static int rdtgroup_rmdir_ctrl(struct kernfs_node *kn, struct rdtgroup *rdtgrp,
2864fa7d9493SBabu Moger 			       cpumask_var_t tmpmask)
2865fa7d9493SBabu Moger {
2866fa7d9493SBabu Moger 	int cpu;
2867fa7d9493SBabu Moger 
2868fa7d9493SBabu Moger 	/* Give any tasks back to the default group */
2869fa7d9493SBabu Moger 	rdt_move_group_tasks(rdtgrp, &rdtgroup_default, tmpmask);
2870fa7d9493SBabu Moger 
2871fa7d9493SBabu Moger 	/* Give any CPUs back to the default group */
2872fa7d9493SBabu Moger 	cpumask_or(&rdtgroup_default.cpu_mask,
2873fa7d9493SBabu Moger 		   &rdtgroup_default.cpu_mask, &rdtgrp->cpu_mask);
2874fa7d9493SBabu Moger 
2875fa7d9493SBabu Moger 	/* Update per cpu closid and rmid of the moved CPUs first */
2876fa7d9493SBabu Moger 	for_each_cpu(cpu, &rdtgrp->cpu_mask) {
2877fa7d9493SBabu Moger 		per_cpu(pqr_state.default_closid, cpu) = rdtgroup_default.closid;
2878fa7d9493SBabu Moger 		per_cpu(pqr_state.default_rmid, cpu) = rdtgroup_default.mon.rmid;
2879fa7d9493SBabu Moger 	}
2880fa7d9493SBabu Moger 
2881fa7d9493SBabu Moger 	/*
2882fa7d9493SBabu Moger 	 * Update the MSR on moved CPUs and CPUs which have moved
2883fa7d9493SBabu Moger 	 * task running on them.
2884fa7d9493SBabu Moger 	 */
2885fa7d9493SBabu Moger 	cpumask_or(tmpmask, tmpmask, &rdtgrp->cpu_mask);
2886fa7d9493SBabu Moger 	update_closid_rmid(tmpmask, NULL);
2887fa7d9493SBabu Moger 
2888fa7d9493SBabu Moger 	closid_free(rdtgrp->closid);
2889fa7d9493SBabu Moger 	free_rmid(rdtgrp->mon.rmid);
2890fa7d9493SBabu Moger 
2891fa7d9493SBabu Moger 	/*
2892fa7d9493SBabu Moger 	 * Free all the child monitor group rmids.
2893fa7d9493SBabu Moger 	 */
2894fa7d9493SBabu Moger 	free_all_child_rdtgrp(rdtgrp);
2895fa7d9493SBabu Moger 
2896fa7d9493SBabu Moger 	rdtgroup_ctrl_remove(kn, rdtgrp);
2897fa7d9493SBabu Moger 
2898fa7d9493SBabu Moger 	return 0;
2899fa7d9493SBabu Moger }
2900fa7d9493SBabu Moger 
2901fa7d9493SBabu Moger static int rdtgroup_rmdir(struct kernfs_node *kn)
2902fa7d9493SBabu Moger {
2903fa7d9493SBabu Moger 	struct kernfs_node *parent_kn = kn->parent;
2904fa7d9493SBabu Moger 	struct rdtgroup *rdtgrp;
2905fa7d9493SBabu Moger 	cpumask_var_t tmpmask;
2906fa7d9493SBabu Moger 	int ret = 0;
2907fa7d9493SBabu Moger 
2908fa7d9493SBabu Moger 	if (!zalloc_cpumask_var(&tmpmask, GFP_KERNEL))
2909fa7d9493SBabu Moger 		return -ENOMEM;
2910fa7d9493SBabu Moger 
2911fa7d9493SBabu Moger 	rdtgrp = rdtgroup_kn_lock_live(kn);
2912fa7d9493SBabu Moger 	if (!rdtgrp) {
2913fa7d9493SBabu Moger 		ret = -EPERM;
2914fa7d9493SBabu Moger 		goto out;
2915fa7d9493SBabu Moger 	}
2916fa7d9493SBabu Moger 
2917fa7d9493SBabu Moger 	/*
2918fa7d9493SBabu Moger 	 * If the rdtgroup is a ctrl_mon group and parent directory
2919fa7d9493SBabu Moger 	 * is the root directory, remove the ctrl_mon group.
2920fa7d9493SBabu Moger 	 *
2921fa7d9493SBabu Moger 	 * If the rdtgroup is a mon group and parent directory
2922fa7d9493SBabu Moger 	 * is a valid "mon_groups" directory, remove the mon group.
2923fa7d9493SBabu Moger 	 */
2924fa7d9493SBabu Moger 	if (rdtgrp->type == RDTCTRL_GROUP && parent_kn == rdtgroup_default.kn) {
2925fa7d9493SBabu Moger 		if (rdtgrp->mode == RDT_MODE_PSEUDO_LOCKSETUP ||
2926fa7d9493SBabu Moger 		    rdtgrp->mode == RDT_MODE_PSEUDO_LOCKED) {
2927fa7d9493SBabu Moger 			ret = rdtgroup_ctrl_remove(kn, rdtgrp);
2928fa7d9493SBabu Moger 		} else {
2929fa7d9493SBabu Moger 			ret = rdtgroup_rmdir_ctrl(kn, rdtgrp, tmpmask);
2930fa7d9493SBabu Moger 		}
2931fa7d9493SBabu Moger 	} else if (rdtgrp->type == RDTMON_GROUP &&
2932fa7d9493SBabu Moger 		 is_mon_groups(parent_kn, kn->name)) {
2933fa7d9493SBabu Moger 		ret = rdtgroup_rmdir_mon(kn, rdtgrp, tmpmask);
2934fa7d9493SBabu Moger 	} else {
2935fa7d9493SBabu Moger 		ret = -EPERM;
2936fa7d9493SBabu Moger 	}
2937fa7d9493SBabu Moger 
2938fa7d9493SBabu Moger out:
2939fa7d9493SBabu Moger 	rdtgroup_kn_unlock(kn);
2940fa7d9493SBabu Moger 	free_cpumask_var(tmpmask);
2941fa7d9493SBabu Moger 	return ret;
2942fa7d9493SBabu Moger }
2943fa7d9493SBabu Moger 
2944fa7d9493SBabu Moger static int rdtgroup_show_options(struct seq_file *seq, struct kernfs_root *kf)
2945fa7d9493SBabu Moger {
2946fa7d9493SBabu Moger 	if (rdt_resources_all[RDT_RESOURCE_L3DATA].alloc_enabled)
2947fa7d9493SBabu Moger 		seq_puts(seq, ",cdp");
2948fa7d9493SBabu Moger 
2949fa7d9493SBabu Moger 	if (rdt_resources_all[RDT_RESOURCE_L2DATA].alloc_enabled)
2950fa7d9493SBabu Moger 		seq_puts(seq, ",cdpl2");
2951fa7d9493SBabu Moger 
2952fa7d9493SBabu Moger 	if (is_mba_sc(&rdt_resources_all[RDT_RESOURCE_MBA]))
2953fa7d9493SBabu Moger 		seq_puts(seq, ",mba_MBps");
2954fa7d9493SBabu Moger 
2955fa7d9493SBabu Moger 	return 0;
2956fa7d9493SBabu Moger }
2957fa7d9493SBabu Moger 
2958fa7d9493SBabu Moger static struct kernfs_syscall_ops rdtgroup_kf_syscall_ops = {
2959fa7d9493SBabu Moger 	.mkdir		= rdtgroup_mkdir,
2960fa7d9493SBabu Moger 	.rmdir		= rdtgroup_rmdir,
2961fa7d9493SBabu Moger 	.show_options	= rdtgroup_show_options,
2962fa7d9493SBabu Moger };
2963fa7d9493SBabu Moger 
2964fa7d9493SBabu Moger static int __init rdtgroup_setup_root(void)
2965fa7d9493SBabu Moger {
2966fa7d9493SBabu Moger 	int ret;
2967fa7d9493SBabu Moger 
2968fa7d9493SBabu Moger 	rdt_root = kernfs_create_root(&rdtgroup_kf_syscall_ops,
2969fa7d9493SBabu Moger 				      KERNFS_ROOT_CREATE_DEACTIVATED |
2970fa7d9493SBabu Moger 				      KERNFS_ROOT_EXTRA_OPEN_PERM_CHECK,
2971fa7d9493SBabu Moger 				      &rdtgroup_default);
2972fa7d9493SBabu Moger 	if (IS_ERR(rdt_root))
2973fa7d9493SBabu Moger 		return PTR_ERR(rdt_root);
2974fa7d9493SBabu Moger 
2975fa7d9493SBabu Moger 	mutex_lock(&rdtgroup_mutex);
2976fa7d9493SBabu Moger 
2977fa7d9493SBabu Moger 	rdtgroup_default.closid = 0;
2978fa7d9493SBabu Moger 	rdtgroup_default.mon.rmid = 0;
2979fa7d9493SBabu Moger 	rdtgroup_default.type = RDTCTRL_GROUP;
2980fa7d9493SBabu Moger 	INIT_LIST_HEAD(&rdtgroup_default.mon.crdtgrp_list);
2981fa7d9493SBabu Moger 
2982fa7d9493SBabu Moger 	list_add(&rdtgroup_default.rdtgroup_list, &rdt_all_groups);
2983fa7d9493SBabu Moger 
2984fa7d9493SBabu Moger 	ret = rdtgroup_add_files(rdt_root->kn, RF_CTRL_BASE);
2985fa7d9493SBabu Moger 	if (ret) {
2986fa7d9493SBabu Moger 		kernfs_destroy_root(rdt_root);
2987fa7d9493SBabu Moger 		goto out;
2988fa7d9493SBabu Moger 	}
2989fa7d9493SBabu Moger 
2990fa7d9493SBabu Moger 	rdtgroup_default.kn = rdt_root->kn;
2991fa7d9493SBabu Moger 	kernfs_activate(rdtgroup_default.kn);
2992fa7d9493SBabu Moger 
2993fa7d9493SBabu Moger out:
2994fa7d9493SBabu Moger 	mutex_unlock(&rdtgroup_mutex);
2995fa7d9493SBabu Moger 
2996fa7d9493SBabu Moger 	return ret;
2997fa7d9493SBabu Moger }
2998fa7d9493SBabu Moger 
2999fa7d9493SBabu Moger /*
3000fa7d9493SBabu Moger  * rdtgroup_init - rdtgroup initialization
3001fa7d9493SBabu Moger  *
3002fa7d9493SBabu Moger  * Setup resctrl file system including set up root, create mount point,
3003fa7d9493SBabu Moger  * register rdtgroup filesystem, and initialize files under root directory.
3004fa7d9493SBabu Moger  *
3005fa7d9493SBabu Moger  * Return: 0 on success or -errno
3006fa7d9493SBabu Moger  */
3007fa7d9493SBabu Moger int __init rdtgroup_init(void)
3008fa7d9493SBabu Moger {
3009fa7d9493SBabu Moger 	int ret = 0;
3010fa7d9493SBabu Moger 
3011fa7d9493SBabu Moger 	seq_buf_init(&last_cmd_status, last_cmd_status_buf,
3012fa7d9493SBabu Moger 		     sizeof(last_cmd_status_buf));
3013fa7d9493SBabu Moger 
3014fa7d9493SBabu Moger 	ret = rdtgroup_setup_root();
3015fa7d9493SBabu Moger 	if (ret)
3016fa7d9493SBabu Moger 		return ret;
3017fa7d9493SBabu Moger 
3018fa7d9493SBabu Moger 	ret = sysfs_create_mount_point(fs_kobj, "resctrl");
3019fa7d9493SBabu Moger 	if (ret)
3020fa7d9493SBabu Moger 		goto cleanup_root;
3021fa7d9493SBabu Moger 
3022fa7d9493SBabu Moger 	ret = register_filesystem(&rdt_fs_type);
3023fa7d9493SBabu Moger 	if (ret)
3024fa7d9493SBabu Moger 		goto cleanup_mountpoint;
3025fa7d9493SBabu Moger 
3026fa7d9493SBabu Moger 	/*
3027fa7d9493SBabu Moger 	 * Adding the resctrl debugfs directory here may not be ideal since
3028fa7d9493SBabu Moger 	 * it would let the resctrl debugfs directory appear on the debugfs
3029fa7d9493SBabu Moger 	 * filesystem before the resctrl filesystem is mounted.
3030fa7d9493SBabu Moger 	 * It may also be ok since that would enable debugging of RDT before
3031fa7d9493SBabu Moger 	 * resctrl is mounted.
3032fa7d9493SBabu Moger 	 * The reason why the debugfs directory is created here and not in
3033fa7d9493SBabu Moger 	 * rdt_mount() is because rdt_mount() takes rdtgroup_mutex and
3034fa7d9493SBabu Moger 	 * during the debugfs directory creation also &sb->s_type->i_mutex_key
3035fa7d9493SBabu Moger 	 * (the lockdep class of inode->i_rwsem). Other filesystem
3036fa7d9493SBabu Moger 	 * interactions (eg. SyS_getdents) have the lock ordering:
3037fa7d9493SBabu Moger 	 * &sb->s_type->i_mutex_key --> &mm->mmap_sem
3038fa7d9493SBabu Moger 	 * During mmap(), called with &mm->mmap_sem, the rdtgroup_mutex
3039fa7d9493SBabu Moger 	 * is taken, thus creating dependency:
3040fa7d9493SBabu Moger 	 * &mm->mmap_sem --> rdtgroup_mutex for the latter that can cause
3041fa7d9493SBabu Moger 	 * issues considering the other two lock dependencies.
3042fa7d9493SBabu Moger 	 * By creating the debugfs directory here we avoid a dependency
3043fa7d9493SBabu Moger 	 * that may cause deadlock (even though file operations cannot
3044fa7d9493SBabu Moger 	 * occur until the filesystem is mounted, but I do not know how to
3045fa7d9493SBabu Moger 	 * tell lockdep that).
3046fa7d9493SBabu Moger 	 */
3047fa7d9493SBabu Moger 	debugfs_resctrl = debugfs_create_dir("resctrl", NULL);
3048fa7d9493SBabu Moger 
3049fa7d9493SBabu Moger 	return 0;
3050fa7d9493SBabu Moger 
3051fa7d9493SBabu Moger cleanup_mountpoint:
3052fa7d9493SBabu Moger 	sysfs_remove_mount_point(fs_kobj, "resctrl");
3053fa7d9493SBabu Moger cleanup_root:
3054fa7d9493SBabu Moger 	kernfs_destroy_root(rdt_root);
3055fa7d9493SBabu Moger 
3056fa7d9493SBabu Moger 	return ret;
3057fa7d9493SBabu Moger }
3058fa7d9493SBabu Moger 
3059fa7d9493SBabu Moger void __exit rdtgroup_exit(void)
3060fa7d9493SBabu Moger {
3061fa7d9493SBabu Moger 	debugfs_remove_recursive(debugfs_resctrl);
3062fa7d9493SBabu Moger 	unregister_filesystem(&rdt_fs_type);
3063fa7d9493SBabu Moger 	sysfs_remove_mount_point(fs_kobj, "resctrl");
3064fa7d9493SBabu Moger 	kernfs_destroy_root(rdt_root);
3065fa7d9493SBabu Moger }
3066