blob: 597aacb233fc210cd9cabe171c4b6bd33c334ce8 [file] [log] [blame]
Greg Kroah-Hartman989d42e2017-11-07 17:30:07 +01001// SPDX-License-Identifier: GPL-2.0
Sudeep Holla246246c2014-09-30 14:48:25 +01002/*
3 * cacheinfo support - processor cache information via sysfs
4 *
5 * Based on arch/x86/kernel/cpu/intel_cacheinfo.c
6 * Author: Sudeep Holla <sudeep.holla@arm.com>
Sudeep Holla246246c2014-09-30 14:48:25 +01007 */
Sudeep Holla8e1073b2016-10-28 09:45:30 +01008#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
9
Sudeep Holla55877ef2016-10-28 09:45:29 +010010#include <linux/acpi.h>
Sudeep Holla246246c2014-09-30 14:48:25 +010011#include <linux/bitops.h>
12#include <linux/cacheinfo.h>
13#include <linux/compiler.h>
14#include <linux/cpu.h>
15#include <linux/device.h>
16#include <linux/init.h>
17#include <linux/of.h>
18#include <linux/sched.h>
19#include <linux/slab.h>
20#include <linux/smp.h>
21#include <linux/sysfs.h>
22
23/* pointer to per cpu cacheinfo */
24static DEFINE_PER_CPU(struct cpu_cacheinfo, ci_cpu_cacheinfo);
25#define ci_cacheinfo(cpu) (&per_cpu(ci_cpu_cacheinfo, cpu))
26#define cache_leaves(cpu) (ci_cacheinfo(cpu)->num_leaves)
27#define per_cpu_cacheinfo(cpu) (ci_cacheinfo(cpu)->info_list)
28
29struct cpu_cacheinfo *get_cpu_cacheinfo(unsigned int cpu)
30{
31 return ci_cacheinfo(cpu);
32}
33
34#ifdef CONFIG_OF
Sudeep Holla246246c2014-09-30 14:48:25 +010035static inline bool cache_leaves_are_shared(struct cacheinfo *this_leaf,
36 struct cacheinfo *sib_leaf)
37{
Jeremy Linton9b973872018-05-11 18:57:58 -050038 return sib_leaf->fw_token == this_leaf->fw_token;
Sudeep Holla246246c2014-09-30 14:48:25 +010039}
Sudeep Holladfea7472016-10-28 09:45:31 +010040
41/* OF properties to query for a given cache type */
42struct cache_type_info {
43 const char *size_prop;
44 const char *line_size_props[2];
45 const char *nr_sets_prop;
46};
47
48static const struct cache_type_info cache_type_info[] = {
49 {
50 .size_prop = "cache-size",
51 .line_size_props = { "cache-line-size",
52 "cache-block-size", },
53 .nr_sets_prop = "cache-sets",
54 }, {
55 .size_prop = "i-cache-size",
56 .line_size_props = { "i-cache-line-size",
57 "i-cache-block-size", },
58 .nr_sets_prop = "i-cache-sets",
59 }, {
60 .size_prop = "d-cache-size",
61 .line_size_props = { "d-cache-line-size",
62 "d-cache-block-size", },
63 .nr_sets_prop = "d-cache-sets",
64 },
65};
66
67static inline int get_cacheinfo_idx(enum cache_type type)
68{
69 if (type == CACHE_TYPE_UNIFIED)
70 return 0;
71 return type;
72}
73
Jeremy Linton2ff075c2018-05-11 18:57:57 -050074static void cache_size(struct cacheinfo *this_leaf, struct device_node *np)
Sudeep Holladfea7472016-10-28 09:45:31 +010075{
76 const char *propname;
77 const __be32 *cache_size;
78 int ct_idx;
79
80 ct_idx = get_cacheinfo_idx(this_leaf->type);
81 propname = cache_type_info[ct_idx].size_prop;
82
Jeremy Linton2ff075c2018-05-11 18:57:57 -050083 cache_size = of_get_property(np, propname, NULL);
Sudeep Holladfea7472016-10-28 09:45:31 +010084 if (cache_size)
85 this_leaf->size = of_read_number(cache_size, 1);
86}
87
88/* not cache_line_size() because that's a macro in include/linux/cache.h */
Jeremy Linton2ff075c2018-05-11 18:57:57 -050089static void cache_get_line_size(struct cacheinfo *this_leaf,
90 struct device_node *np)
Sudeep Holladfea7472016-10-28 09:45:31 +010091{
92 const __be32 *line_size;
93 int i, lim, ct_idx;
94
95 ct_idx = get_cacheinfo_idx(this_leaf->type);
96 lim = ARRAY_SIZE(cache_type_info[ct_idx].line_size_props);
97
98 for (i = 0; i < lim; i++) {
99 const char *propname;
100
101 propname = cache_type_info[ct_idx].line_size_props[i];
Jeremy Linton2ff075c2018-05-11 18:57:57 -0500102 line_size = of_get_property(np, propname, NULL);
Sudeep Holladfea7472016-10-28 09:45:31 +0100103 if (line_size)
104 break;
105 }
106
107 if (line_size)
108 this_leaf->coherency_line_size = of_read_number(line_size, 1);
109}
110
Jeremy Linton2ff075c2018-05-11 18:57:57 -0500111static void cache_nr_sets(struct cacheinfo *this_leaf, struct device_node *np)
Sudeep Holladfea7472016-10-28 09:45:31 +0100112{
113 const char *propname;
114 const __be32 *nr_sets;
115 int ct_idx;
116
117 ct_idx = get_cacheinfo_idx(this_leaf->type);
118 propname = cache_type_info[ct_idx].nr_sets_prop;
119
Jeremy Linton2ff075c2018-05-11 18:57:57 -0500120 nr_sets = of_get_property(np, propname, NULL);
Sudeep Holladfea7472016-10-28 09:45:31 +0100121 if (nr_sets)
122 this_leaf->number_of_sets = of_read_number(nr_sets, 1);
123}
124
125static void cache_associativity(struct cacheinfo *this_leaf)
126{
127 unsigned int line_size = this_leaf->coherency_line_size;
128 unsigned int nr_sets = this_leaf->number_of_sets;
129 unsigned int size = this_leaf->size;
130
131 /*
132 * If the cache is fully associative, there is no need to
133 * check the other properties.
134 */
135 if (!(nr_sets == 1) && (nr_sets > 0 && size > 0 && line_size > 0))
136 this_leaf->ways_of_associativity = (size / nr_sets) / line_size;
137}
138
Jeremy Linton2ff075c2018-05-11 18:57:57 -0500139static bool cache_node_is_unified(struct cacheinfo *this_leaf,
140 struct device_node *np)
Sudeep Hollaf57ab9a2017-11-17 11:56:41 +0000141{
Jeremy Linton2ff075c2018-05-11 18:57:57 -0500142 return of_property_read_bool(np, "cache-unified");
Sudeep Hollaf57ab9a2017-11-17 11:56:41 +0000143}
144
Jeremy Linton2ff075c2018-05-11 18:57:57 -0500145static void cache_of_set_props(struct cacheinfo *this_leaf,
146 struct device_node *np)
Sudeep Holladfea7472016-10-28 09:45:31 +0100147{
Jeremy Linton2ff075c2018-05-11 18:57:57 -0500148 /*
149 * init_cache_level must setup the cache level correctly
150 * overriding the architecturally specified levels, so
151 * if type is NONE at this stage, it should be unified
152 */
153 if (this_leaf->type == CACHE_TYPE_NOCACHE &&
154 cache_node_is_unified(this_leaf, np))
155 this_leaf->type = CACHE_TYPE_UNIFIED;
156 cache_size(this_leaf, np);
157 cache_get_line_size(this_leaf, np);
158 cache_nr_sets(this_leaf, np);
159 cache_associativity(this_leaf);
Sudeep Holladfea7472016-10-28 09:45:31 +0100160}
Jeremy Lintond529a182018-05-11 18:57:56 -0500161
162static int cache_setup_of_node(unsigned int cpu)
163{
164 struct device_node *np;
165 struct cacheinfo *this_leaf;
166 struct device *cpu_dev = get_cpu_device(cpu);
167 struct cpu_cacheinfo *this_cpu_ci = get_cpu_cacheinfo(cpu);
168 unsigned int index = 0;
169
Jeremy Linton9b973872018-05-11 18:57:58 -0500170 /* skip if fw_token is already populated */
171 if (this_cpu_ci->info_list->fw_token) {
Jeremy Lintond529a182018-05-11 18:57:56 -0500172 return 0;
Jeremy Linton9b973872018-05-11 18:57:58 -0500173 }
Jeremy Lintond529a182018-05-11 18:57:56 -0500174
175 if (!cpu_dev) {
176 pr_err("No cpu device for CPU %d\n", cpu);
177 return -ENODEV;
178 }
179 np = cpu_dev->of_node;
180 if (!np) {
181 pr_err("Failed to find cpu%d device node\n", cpu);
182 return -ENOENT;
183 }
184
185 while (index < cache_leaves(cpu)) {
186 this_leaf = this_cpu_ci->info_list + index;
187 if (this_leaf->level != 1)
188 np = of_find_next_cache_node(np);
189 else
190 np = of_node_get(np);/* cpu node itself */
191 if (!np)
192 break;
Jeremy Linton2ff075c2018-05-11 18:57:57 -0500193 cache_of_set_props(this_leaf, np);
Jeremy Linton9b973872018-05-11 18:57:58 -0500194 this_leaf->fw_token = np;
Jeremy Lintond529a182018-05-11 18:57:56 -0500195 index++;
196 }
197
198 if (index != cache_leaves(cpu)) /* not all OF nodes populated */
199 return -ENOENT;
200
201 return 0;
202}
Sudeep Holla246246c2014-09-30 14:48:25 +0100203#else
204static inline int cache_setup_of_node(unsigned int cpu) { return 0; }
205static inline bool cache_leaves_are_shared(struct cacheinfo *this_leaf,
206 struct cacheinfo *sib_leaf)
207{
208 /*
209 * For non-DT systems, assume unique level 1 cache, system-wide
210 * shared caches for all other levels. This will be used only if
211 * arch specific code has not populated shared_cpu_map
212 */
213 return !(this_leaf->level == 1);
214}
215#endif
216
217static int cache_shared_cpu_map_setup(unsigned int cpu)
218{
219 struct cpu_cacheinfo *this_cpu_ci = get_cpu_cacheinfo(cpu);
220 struct cacheinfo *this_leaf, *sib_leaf;
221 unsigned int index;
Sudeep Holla55877ef2016-10-28 09:45:29 +0100222 int ret = 0;
Sudeep Holla246246c2014-09-30 14:48:25 +0100223
Sudeep Hollafac51482016-10-28 09:45:28 +0100224 if (this_cpu_ci->cpu_map_populated)
225 return 0;
226
Sudeep Holla55877ef2016-10-28 09:45:29 +0100227 if (of_have_populated_dt())
228 ret = cache_setup_of_node(cpu);
229 else if (!acpi_disabled)
230 /* No cache property/hierarchy support yet in ACPI */
231 ret = -ENOTSUPP;
Sudeep Holla246246c2014-09-30 14:48:25 +0100232 if (ret)
233 return ret;
234
235 for (index = 0; index < cache_leaves(cpu); index++) {
236 unsigned int i;
237
238 this_leaf = this_cpu_ci->info_list + index;
239 /* skip if shared_cpu_map is already populated */
240 if (!cpumask_empty(&this_leaf->shared_cpu_map))
241 continue;
242
243 cpumask_set_cpu(cpu, &this_leaf->shared_cpu_map);
244 for_each_online_cpu(i) {
245 struct cpu_cacheinfo *sib_cpu_ci = get_cpu_cacheinfo(i);
246
247 if (i == cpu || !sib_cpu_ci->info_list)
248 continue;/* skip if itself or no cacheinfo */
249 sib_leaf = sib_cpu_ci->info_list + index;
250 if (cache_leaves_are_shared(this_leaf, sib_leaf)) {
251 cpumask_set_cpu(cpu, &sib_leaf->shared_cpu_map);
252 cpumask_set_cpu(i, &this_leaf->shared_cpu_map);
253 }
254 }
255 }
256
257 return 0;
258}
259
260static void cache_shared_cpu_map_remove(unsigned int cpu)
261{
262 struct cpu_cacheinfo *this_cpu_ci = get_cpu_cacheinfo(cpu);
263 struct cacheinfo *this_leaf, *sib_leaf;
264 unsigned int sibling, index;
265
266 for (index = 0; index < cache_leaves(cpu); index++) {
267 this_leaf = this_cpu_ci->info_list + index;
268 for_each_cpu(sibling, &this_leaf->shared_cpu_map) {
269 struct cpu_cacheinfo *sib_cpu_ci;
270
271 if (sibling == cpu) /* skip itself */
272 continue;
Borislav Petkov2110d702015-08-08 10:46:02 +0200273
Sudeep Holla246246c2014-09-30 14:48:25 +0100274 sib_cpu_ci = get_cpu_cacheinfo(sibling);
Borislav Petkov2110d702015-08-08 10:46:02 +0200275 if (!sib_cpu_ci->info_list)
276 continue;
277
Sudeep Holla246246c2014-09-30 14:48:25 +0100278 sib_leaf = sib_cpu_ci->info_list + index;
279 cpumask_clear_cpu(cpu, &sib_leaf->shared_cpu_map);
280 cpumask_clear_cpu(sibling, &this_leaf->shared_cpu_map);
281 }
Jeremy Linton9b973872018-05-11 18:57:58 -0500282 of_node_put(this_leaf->fw_token);
Sudeep Holla246246c2014-09-30 14:48:25 +0100283 }
284}
285
286static void free_cache_attributes(unsigned int cpu)
287{
Borislav Petkov2110d702015-08-08 10:46:02 +0200288 if (!per_cpu_cacheinfo(cpu))
289 return;
290
Sudeep Holla246246c2014-09-30 14:48:25 +0100291 cache_shared_cpu_map_remove(cpu);
292
293 kfree(per_cpu_cacheinfo(cpu));
294 per_cpu_cacheinfo(cpu) = NULL;
295}
296
297int __weak init_cache_level(unsigned int cpu)
298{
299 return -ENOENT;
300}
301
302int __weak populate_cache_leaves(unsigned int cpu)
303{
304 return -ENOENT;
305}
306
307static int detect_cache_attributes(unsigned int cpu)
308{
309 int ret;
310
Sudeep Holla3370e132015-05-27 11:26:13 +0100311 if (init_cache_level(cpu) || !cache_leaves(cpu))
Sudeep Holla246246c2014-09-30 14:48:25 +0100312 return -ENOENT;
313
314 per_cpu_cacheinfo(cpu) = kcalloc(cache_leaves(cpu),
315 sizeof(struct cacheinfo), GFP_KERNEL);
316 if (per_cpu_cacheinfo(cpu) == NULL)
317 return -ENOMEM;
318
Jeremy Linton2ff075c2018-05-11 18:57:57 -0500319 /*
320 * populate_cache_leaves() may completely setup the cache leaves and
321 * shared_cpu_map or it may leave it partially setup.
322 */
Sudeep Holla246246c2014-09-30 14:48:25 +0100323 ret = populate_cache_leaves(cpu);
324 if (ret)
325 goto free_ci;
326 /*
Jeremy Linton9b973872018-05-11 18:57:58 -0500327 * For systems using DT for cache hierarchy, fw_token
328 * and shared_cpu_map will be set up here only if they are
329 * not populated already
Sudeep Holla246246c2014-09-30 14:48:25 +0100330 */
331 ret = cache_shared_cpu_map_setup(cpu);
Sudeep Holla8a7d95f2015-03-17 17:28:46 +0000332 if (ret) {
Sudeep Holla55877ef2016-10-28 09:45:29 +0100333 pr_warn("Unable to detect cache hierarchy for CPU %d\n", cpu);
Sudeep Holla246246c2014-09-30 14:48:25 +0100334 goto free_ci;
Sudeep Holla8a7d95f2015-03-17 17:28:46 +0000335 }
Sudeep Holladfea7472016-10-28 09:45:31 +0100336
Sudeep Holla246246c2014-09-30 14:48:25 +0100337 return 0;
338
339free_ci:
340 free_cache_attributes(cpu);
341 return ret;
342}
343
344/* pointer to cpuX/cache device */
345static DEFINE_PER_CPU(struct device *, ci_cache_dev);
346#define per_cpu_cache_dev(cpu) (per_cpu(ci_cache_dev, cpu))
347
348static cpumask_t cache_dev_map;
349
350/* pointer to array of devices for cpuX/cache/indexY */
351static DEFINE_PER_CPU(struct device **, ci_index_dev);
352#define per_cpu_index_dev(cpu) (per_cpu(ci_index_dev, cpu))
353#define per_cache_index_dev(cpu, idx) ((per_cpu_index_dev(cpu))[idx])
354
355#define show_one(file_name, object) \
356static ssize_t file_name##_show(struct device *dev, \
357 struct device_attribute *attr, char *buf) \
358{ \
359 struct cacheinfo *this_leaf = dev_get_drvdata(dev); \
360 return sprintf(buf, "%u\n", this_leaf->object); \
361}
362
Fenghua Yue9a2ea52016-10-22 06:19:49 -0700363show_one(id, id);
Sudeep Holla246246c2014-09-30 14:48:25 +0100364show_one(level, level);
365show_one(coherency_line_size, coherency_line_size);
366show_one(number_of_sets, number_of_sets);
367show_one(physical_line_partition, physical_line_partition);
368show_one(ways_of_associativity, ways_of_associativity);
369
370static ssize_t size_show(struct device *dev,
371 struct device_attribute *attr, char *buf)
372{
373 struct cacheinfo *this_leaf = dev_get_drvdata(dev);
374
375 return sprintf(buf, "%uK\n", this_leaf->size >> 10);
376}
377
378static ssize_t shared_cpumap_show_func(struct device *dev, bool list, char *buf)
379{
380 struct cacheinfo *this_leaf = dev_get_drvdata(dev);
381 const struct cpumask *mask = &this_leaf->shared_cpu_map;
382
383 return cpumap_print_to_pagebuf(list, buf, mask);
384}
385
386static ssize_t shared_cpu_map_show(struct device *dev,
387 struct device_attribute *attr, char *buf)
388{
389 return shared_cpumap_show_func(dev, false, buf);
390}
391
392static ssize_t shared_cpu_list_show(struct device *dev,
393 struct device_attribute *attr, char *buf)
394{
395 return shared_cpumap_show_func(dev, true, buf);
396}
397
398static ssize_t type_show(struct device *dev,
399 struct device_attribute *attr, char *buf)
400{
401 struct cacheinfo *this_leaf = dev_get_drvdata(dev);
402
403 switch (this_leaf->type) {
404 case CACHE_TYPE_DATA:
405 return sprintf(buf, "Data\n");
406 case CACHE_TYPE_INST:
407 return sprintf(buf, "Instruction\n");
408 case CACHE_TYPE_UNIFIED:
409 return sprintf(buf, "Unified\n");
410 default:
411 return -EINVAL;
412 }
413}
414
415static ssize_t allocation_policy_show(struct device *dev,
416 struct device_attribute *attr, char *buf)
417{
418 struct cacheinfo *this_leaf = dev_get_drvdata(dev);
419 unsigned int ci_attr = this_leaf->attributes;
420 int n = 0;
421
422 if ((ci_attr & CACHE_READ_ALLOCATE) && (ci_attr & CACHE_WRITE_ALLOCATE))
423 n = sprintf(buf, "ReadWriteAllocate\n");
424 else if (ci_attr & CACHE_READ_ALLOCATE)
425 n = sprintf(buf, "ReadAllocate\n");
426 else if (ci_attr & CACHE_WRITE_ALLOCATE)
427 n = sprintf(buf, "WriteAllocate\n");
428 return n;
429}
430
431static ssize_t write_policy_show(struct device *dev,
432 struct device_attribute *attr, char *buf)
433{
434 struct cacheinfo *this_leaf = dev_get_drvdata(dev);
435 unsigned int ci_attr = this_leaf->attributes;
436 int n = 0;
437
438 if (ci_attr & CACHE_WRITE_THROUGH)
439 n = sprintf(buf, "WriteThrough\n");
440 else if (ci_attr & CACHE_WRITE_BACK)
441 n = sprintf(buf, "WriteBack\n");
442 return n;
443}
444
Fenghua Yue9a2ea52016-10-22 06:19:49 -0700445static DEVICE_ATTR_RO(id);
Sudeep Holla246246c2014-09-30 14:48:25 +0100446static DEVICE_ATTR_RO(level);
447static DEVICE_ATTR_RO(type);
448static DEVICE_ATTR_RO(coherency_line_size);
449static DEVICE_ATTR_RO(ways_of_associativity);
450static DEVICE_ATTR_RO(number_of_sets);
451static DEVICE_ATTR_RO(size);
452static DEVICE_ATTR_RO(allocation_policy);
453static DEVICE_ATTR_RO(write_policy);
454static DEVICE_ATTR_RO(shared_cpu_map);
455static DEVICE_ATTR_RO(shared_cpu_list);
456static DEVICE_ATTR_RO(physical_line_partition);
457
458static struct attribute *cache_default_attrs[] = {
Fenghua Yue9a2ea52016-10-22 06:19:49 -0700459 &dev_attr_id.attr,
Sudeep Holla246246c2014-09-30 14:48:25 +0100460 &dev_attr_type.attr,
461 &dev_attr_level.attr,
462 &dev_attr_shared_cpu_map.attr,
463 &dev_attr_shared_cpu_list.attr,
464 &dev_attr_coherency_line_size.attr,
465 &dev_attr_ways_of_associativity.attr,
466 &dev_attr_number_of_sets.attr,
467 &dev_attr_size.attr,
468 &dev_attr_allocation_policy.attr,
469 &dev_attr_write_policy.attr,
470 &dev_attr_physical_line_partition.attr,
471 NULL
472};
473
474static umode_t
475cache_default_attrs_is_visible(struct kobject *kobj,
476 struct attribute *attr, int unused)
477{
478 struct device *dev = kobj_to_dev(kobj);
479 struct cacheinfo *this_leaf = dev_get_drvdata(dev);
480 const struct cpumask *mask = &this_leaf->shared_cpu_map;
481 umode_t mode = attr->mode;
482
Fenghua Yue9a2ea52016-10-22 06:19:49 -0700483 if ((attr == &dev_attr_id.attr) && (this_leaf->attributes & CACHE_ID))
484 return mode;
Sudeep Holla246246c2014-09-30 14:48:25 +0100485 if ((attr == &dev_attr_type.attr) && this_leaf->type)
486 return mode;
487 if ((attr == &dev_attr_level.attr) && this_leaf->level)
488 return mode;
489 if ((attr == &dev_attr_shared_cpu_map.attr) && !cpumask_empty(mask))
490 return mode;
491 if ((attr == &dev_attr_shared_cpu_list.attr) && !cpumask_empty(mask))
492 return mode;
493 if ((attr == &dev_attr_coherency_line_size.attr) &&
494 this_leaf->coherency_line_size)
495 return mode;
496 if ((attr == &dev_attr_ways_of_associativity.attr) &&
497 this_leaf->size) /* allow 0 = full associativity */
498 return mode;
499 if ((attr == &dev_attr_number_of_sets.attr) &&
500 this_leaf->number_of_sets)
501 return mode;
502 if ((attr == &dev_attr_size.attr) && this_leaf->size)
503 return mode;
504 if ((attr == &dev_attr_write_policy.attr) &&
505 (this_leaf->attributes & CACHE_WRITE_POLICY_MASK))
506 return mode;
507 if ((attr == &dev_attr_allocation_policy.attr) &&
508 (this_leaf->attributes & CACHE_ALLOCATE_POLICY_MASK))
509 return mode;
510 if ((attr == &dev_attr_physical_line_partition.attr) &&
511 this_leaf->physical_line_partition)
512 return mode;
513
514 return 0;
515}
516
517static const struct attribute_group cache_default_group = {
518 .attrs = cache_default_attrs,
519 .is_visible = cache_default_attrs_is_visible,
520};
521
522static const struct attribute_group *cache_default_groups[] = {
523 &cache_default_group,
524 NULL,
525};
526
527static const struct attribute_group *cache_private_groups[] = {
528 &cache_default_group,
529 NULL, /* Place holder for private group */
530 NULL,
531};
532
533const struct attribute_group *
534__weak cache_get_priv_group(struct cacheinfo *this_leaf)
535{
536 return NULL;
537}
538
539static const struct attribute_group **
540cache_get_attribute_groups(struct cacheinfo *this_leaf)
541{
542 const struct attribute_group *priv_group =
543 cache_get_priv_group(this_leaf);
544
545 if (!priv_group)
546 return cache_default_groups;
547
548 if (!cache_private_groups[1])
549 cache_private_groups[1] = priv_group;
550
551 return cache_private_groups;
552}
553
554/* Add/Remove cache interface for CPU device */
555static void cpu_cache_sysfs_exit(unsigned int cpu)
556{
557 int i;
558 struct device *ci_dev;
559
560 if (per_cpu_index_dev(cpu)) {
561 for (i = 0; i < cache_leaves(cpu); i++) {
562 ci_dev = per_cache_index_dev(cpu, i);
563 if (!ci_dev)
564 continue;
565 device_unregister(ci_dev);
566 }
567 kfree(per_cpu_index_dev(cpu));
568 per_cpu_index_dev(cpu) = NULL;
569 }
570 device_unregister(per_cpu_cache_dev(cpu));
571 per_cpu_cache_dev(cpu) = NULL;
572}
573
574static int cpu_cache_sysfs_init(unsigned int cpu)
575{
576 struct device *dev = get_cpu_device(cpu);
577
578 if (per_cpu_cacheinfo(cpu) == NULL)
579 return -ENOENT;
580
581 per_cpu_cache_dev(cpu) = cpu_device_create(dev, NULL, NULL, "cache");
582 if (IS_ERR(per_cpu_cache_dev(cpu)))
583 return PTR_ERR(per_cpu_cache_dev(cpu));
584
585 /* Allocate all required memory */
586 per_cpu_index_dev(cpu) = kcalloc(cache_leaves(cpu),
587 sizeof(struct device *), GFP_KERNEL);
588 if (unlikely(per_cpu_index_dev(cpu) == NULL))
589 goto err_out;
590
591 return 0;
592
593err_out:
594 cpu_cache_sysfs_exit(cpu);
595 return -ENOMEM;
596}
597
598static int cache_add_dev(unsigned int cpu)
599{
600 unsigned int i;
601 int rc;
602 struct device *ci_dev, *parent;
603 struct cacheinfo *this_leaf;
604 struct cpu_cacheinfo *this_cpu_ci = get_cpu_cacheinfo(cpu);
605 const struct attribute_group **cache_groups;
606
607 rc = cpu_cache_sysfs_init(cpu);
608 if (unlikely(rc < 0))
609 return rc;
610
611 parent = per_cpu_cache_dev(cpu);
612 for (i = 0; i < cache_leaves(cpu); i++) {
613 this_leaf = this_cpu_ci->info_list + i;
614 if (this_leaf->disable_sysfs)
615 continue;
616 cache_groups = cache_get_attribute_groups(this_leaf);
617 ci_dev = cpu_device_create(parent, this_leaf, cache_groups,
618 "index%1u", i);
619 if (IS_ERR(ci_dev)) {
620 rc = PTR_ERR(ci_dev);
621 goto err;
622 }
623 per_cache_index_dev(cpu, i) = ci_dev;
624 }
625 cpumask_set_cpu(cpu, &cache_dev_map);
626
627 return 0;
628err:
629 cpu_cache_sysfs_exit(cpu);
630 return rc;
631}
632
Sebastian Andrzej Siewior7cc277b2016-11-03 15:50:08 +0100633static int cacheinfo_cpu_online(unsigned int cpu)
Sudeep Holla246246c2014-09-30 14:48:25 +0100634{
Sebastian Andrzej Siewior7cc277b2016-11-03 15:50:08 +0100635 int rc = detect_cache_attributes(cpu);
Sudeep Holla246246c2014-09-30 14:48:25 +0100636
Sebastian Andrzej Siewior7cc277b2016-11-03 15:50:08 +0100637 if (rc)
638 return rc;
639 rc = cache_add_dev(cpu);
640 if (rc)
641 free_cache_attributes(cpu);
642 return rc;
Sudeep Holla246246c2014-09-30 14:48:25 +0100643}
644
Sebastian Andrzej Siewior7cc277b2016-11-03 15:50:08 +0100645static int cacheinfo_cpu_pre_down(unsigned int cpu)
Sudeep Holla246246c2014-09-30 14:48:25 +0100646{
Sebastian Andrzej Siewior7cc277b2016-11-03 15:50:08 +0100647 if (cpumask_test_and_clear_cpu(cpu, &cache_dev_map))
648 cpu_cache_sysfs_exit(cpu);
Sudeep Holla246246c2014-09-30 14:48:25 +0100649
Sebastian Andrzej Siewior7cc277b2016-11-03 15:50:08 +0100650 free_cache_attributes(cpu);
651 return 0;
Sudeep Holla246246c2014-09-30 14:48:25 +0100652}
653
654static int __init cacheinfo_sysfs_init(void)
655{
Sebastian Andrzej Siewior7cc277b2016-11-03 15:50:08 +0100656 return cpuhp_setup_state(CPUHP_AP_ONLINE_DYN, "base/cacheinfo:online",
657 cacheinfo_cpu_online, cacheinfo_cpu_pre_down);
Sudeep Holla246246c2014-09-30 14:48:25 +0100658}
Sudeep Holla246246c2014-09-30 14:48:25 +0100659device_initcall(cacheinfo_sysfs_init);