blob: a0717b93d8f5baa8f54a2d80a2fa4ce6ad61f350 [file] [log] [blame]
Paul Mackerrasa12b51c2010-03-10 20:36:09 +11001#include "util.h"
Borislav Petkovcd0cfad2013-12-09 17:14:24 +01002#include <api/fs/fs.h>
Paul Mackerrasa12b51c2010-03-10 20:36:09 +11003#include "../perf.h"
4#include "cpumap.h"
5#include <assert.h>
6#include <stdio.h>
Stephane Eranian86ee6e12013-02-14 13:57:27 +01007#include <stdlib.h>
Jiri Olsaf77b57a2015-10-25 15:51:25 +01008#include <linux/bitmap.h>
Jiri Olsaf30a79b2015-06-23 00:36:04 +02009#include "asm/bug.h"
Paul Mackerrasa12b51c2010-03-10 20:36:09 +110010
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -020011static struct cpu_map *cpu_map__default_new(void)
Paul Mackerrasa12b51c2010-03-10 20:36:09 +110012{
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -020013 struct cpu_map *cpus;
14 int nr_cpus;
Paul Mackerrasa12b51c2010-03-10 20:36:09 +110015
16 nr_cpus = sysconf(_SC_NPROCESSORS_ONLN);
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -020017 if (nr_cpus < 0)
18 return NULL;
Paul Mackerrasa12b51c2010-03-10 20:36:09 +110019
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -020020 cpus = malloc(sizeof(*cpus) + nr_cpus * sizeof(int));
21 if (cpus != NULL) {
22 int i;
23 for (i = 0; i < nr_cpus; ++i)
24 cpus->map[i] = i;
Paul Mackerrasa12b51c2010-03-10 20:36:09 +110025
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -020026 cpus->nr = nr_cpus;
Jiri Olsaf30a79b2015-06-23 00:36:04 +020027 atomic_set(&cpus->refcnt, 1);
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -020028 }
29
30 return cpus;
Paul Mackerrasa12b51c2010-03-10 20:36:09 +110031}
32
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -020033static struct cpu_map *cpu_map__trim_new(int nr_cpus, int *tmp_cpus)
Paul Mackerrasa12b51c2010-03-10 20:36:09 +110034{
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -020035 size_t payload_size = nr_cpus * sizeof(int);
36 struct cpu_map *cpus = malloc(sizeof(*cpus) + payload_size);
37
38 if (cpus != NULL) {
39 cpus->nr = nr_cpus;
40 memcpy(cpus->map, tmp_cpus, payload_size);
Jiri Olsaf30a79b2015-06-23 00:36:04 +020041 atomic_set(&cpus->refcnt, 1);
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -020042 }
43
44 return cpus;
45}
46
Yan, Zheng7ae92e72012-09-10 15:53:50 +080047struct cpu_map *cpu_map__read(FILE *file)
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -020048{
49 struct cpu_map *cpus = NULL;
Paul Mackerrasa12b51c2010-03-10 20:36:09 +110050 int nr_cpus = 0;
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -020051 int *tmp_cpus = NULL, *tmp;
52 int max_entries = 0;
Paul Mackerrasa12b51c2010-03-10 20:36:09 +110053 int n, cpu, prev;
54 char sep;
55
Paul Mackerrasa12b51c2010-03-10 20:36:09 +110056 sep = 0;
57 prev = -1;
58 for (;;) {
Yan, Zheng7ae92e72012-09-10 15:53:50 +080059 n = fscanf(file, "%u%c", &cpu, &sep);
Paul Mackerrasa12b51c2010-03-10 20:36:09 +110060 if (n <= 0)
61 break;
62 if (prev >= 0) {
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -020063 int new_max = nr_cpus + cpu - prev - 1;
64
65 if (new_max >= max_entries) {
66 max_entries = new_max + MAX_NR_CPUS / 2;
67 tmp = realloc(tmp_cpus, max_entries * sizeof(int));
68 if (tmp == NULL)
69 goto out_free_tmp;
70 tmp_cpus = tmp;
71 }
72
Paul Mackerrasa12b51c2010-03-10 20:36:09 +110073 while (++prev < cpu)
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -020074 tmp_cpus[nr_cpus++] = prev;
Paul Mackerrasa12b51c2010-03-10 20:36:09 +110075 }
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -020076 if (nr_cpus == max_entries) {
77 max_entries += MAX_NR_CPUS;
78 tmp = realloc(tmp_cpus, max_entries * sizeof(int));
79 if (tmp == NULL)
80 goto out_free_tmp;
81 tmp_cpus = tmp;
82 }
83
84 tmp_cpus[nr_cpus++] = cpu;
Paul Mackerrasa12b51c2010-03-10 20:36:09 +110085 if (n == 2 && sep == '-')
86 prev = cpu;
87 else
88 prev = -1;
89 if (n == 1 || sep == '\n')
90 break;
91 }
Paul Mackerrasa12b51c2010-03-10 20:36:09 +110092
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -020093 if (nr_cpus > 0)
94 cpus = cpu_map__trim_new(nr_cpus, tmp_cpus);
95 else
96 cpus = cpu_map__default_new();
97out_free_tmp:
98 free(tmp_cpus);
Yan, Zheng7ae92e72012-09-10 15:53:50 +080099 return cpus;
100}
101
102static struct cpu_map *cpu_map__read_all_cpu_map(void)
103{
104 struct cpu_map *cpus = NULL;
105 FILE *onlnf;
106
107 onlnf = fopen("/sys/devices/system/cpu/online", "r");
108 if (!onlnf)
109 return cpu_map__default_new();
110
111 cpus = cpu_map__read(onlnf);
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -0200112 fclose(onlnf);
113 return cpus;
Paul Mackerrasa12b51c2010-03-10 20:36:09 +1100114}
Stephane Eranianc45c6ea2010-05-28 12:00:01 +0200115
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -0200116struct cpu_map *cpu_map__new(const char *cpu_list)
Stephane Eranianc45c6ea2010-05-28 12:00:01 +0200117{
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -0200118 struct cpu_map *cpus = NULL;
Stephane Eranianc45c6ea2010-05-28 12:00:01 +0200119 unsigned long start_cpu, end_cpu = 0;
120 char *p = NULL;
121 int i, nr_cpus = 0;
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -0200122 int *tmp_cpus = NULL, *tmp;
123 int max_entries = 0;
Stephane Eranianc45c6ea2010-05-28 12:00:01 +0200124
125 if (!cpu_list)
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -0200126 return cpu_map__read_all_cpu_map();
Stephane Eranianc45c6ea2010-05-28 12:00:01 +0200127
128 if (!isdigit(*cpu_list))
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -0200129 goto out;
Stephane Eranianc45c6ea2010-05-28 12:00:01 +0200130
131 while (isdigit(*cpu_list)) {
132 p = NULL;
133 start_cpu = strtoul(cpu_list, &p, 0);
134 if (start_cpu >= INT_MAX
135 || (*p != '\0' && *p != ',' && *p != '-'))
136 goto invalid;
137
138 if (*p == '-') {
139 cpu_list = ++p;
140 p = NULL;
141 end_cpu = strtoul(cpu_list, &p, 0);
142
143 if (end_cpu >= INT_MAX || (*p != '\0' && *p != ','))
144 goto invalid;
145
146 if (end_cpu < start_cpu)
147 goto invalid;
148 } else {
149 end_cpu = start_cpu;
150 }
151
152 for (; start_cpu <= end_cpu; start_cpu++) {
153 /* check for duplicates */
154 for (i = 0; i < nr_cpus; i++)
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -0200155 if (tmp_cpus[i] == (int)start_cpu)
Stephane Eranianc45c6ea2010-05-28 12:00:01 +0200156 goto invalid;
157
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -0200158 if (nr_cpus == max_entries) {
159 max_entries += MAX_NR_CPUS;
160 tmp = realloc(tmp_cpus, max_entries * sizeof(int));
161 if (tmp == NULL)
162 goto invalid;
163 tmp_cpus = tmp;
164 }
165 tmp_cpus[nr_cpus++] = (int)start_cpu;
Stephane Eranianc45c6ea2010-05-28 12:00:01 +0200166 }
167 if (*p)
168 ++p;
169
170 cpu_list = p;
171 }
Stephane Eranianc45c6ea2010-05-28 12:00:01 +0200172
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -0200173 if (nr_cpus > 0)
174 cpus = cpu_map__trim_new(nr_cpus, tmp_cpus);
175 else
176 cpus = cpu_map__default_new();
Stephane Eranianc45c6ea2010-05-28 12:00:01 +0200177invalid:
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -0200178 free(tmp_cpus);
179out:
180 return cpus;
181}
182
Jiri Olsaf77b57a2015-10-25 15:51:25 +0100183static struct cpu_map *cpu_map__from_entries(struct cpu_map_entries *cpus)
184{
185 struct cpu_map *map;
186
187 map = cpu_map__empty_new(cpus->nr);
188 if (map) {
189 unsigned i;
190
191 for (i = 0; i < cpus->nr; i++)
192 map->map[i] = (int)cpus->cpu[i];
193 }
194
195 return map;
196}
197
198static struct cpu_map *cpu_map__from_mask(struct cpu_map_mask *mask)
199{
200 struct cpu_map *map;
201 int nr, nbits = mask->nr * mask->long_size * BITS_PER_BYTE;
202
203 nr = bitmap_weight(mask->mask, nbits);
204
205 map = cpu_map__empty_new(nr);
206 if (map) {
207 int cpu, i = 0;
208
209 for_each_set_bit(cpu, mask->mask, nbits)
210 map->map[i++] = cpu;
211 }
212 return map;
213
214}
215
216struct cpu_map *cpu_map__new_data(struct cpu_map_data *data)
217{
218 if (data->type == PERF_CPU_MAP__CPUS)
219 return cpu_map__from_entries((struct cpu_map_entries *)data->data);
220 else
221 return cpu_map__from_mask((struct cpu_map_mask *)data->data);
222}
223
Arnaldo Carvalho de Melo9ae7d332012-01-19 14:07:23 -0200224size_t cpu_map__fprintf(struct cpu_map *map, FILE *fp)
225{
226 int i;
227 size_t printed = fprintf(fp, "%d cpu%s: ",
228 map->nr, map->nr > 1 ? "s" : "");
229 for (i = 0; i < map->nr; ++i)
230 printed += fprintf(fp, "%s%d", i ? ", " : "", map->map[i]);
231
232 return printed + fprintf(fp, "\n");
233}
234
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -0200235struct cpu_map *cpu_map__dummy_new(void)
236{
237 struct cpu_map *cpus = malloc(sizeof(*cpus) + sizeof(int));
238
239 if (cpus != NULL) {
240 cpus->nr = 1;
241 cpus->map[0] = -1;
Jiri Olsaf30a79b2015-06-23 00:36:04 +0200242 atomic_set(&cpus->refcnt, 1);
Arnaldo Carvalho de Melo60d567e2011-01-03 17:49:48 -0200243 }
244
245 return cpus;
Stephane Eranianc45c6ea2010-05-28 12:00:01 +0200246}
Arnaldo Carvalho de Melo915fce22011-01-14 16:19:12 -0200247
Jiri Olsa2322f572015-10-25 15:51:17 +0100248struct cpu_map *cpu_map__empty_new(int nr)
249{
250 struct cpu_map *cpus = malloc(sizeof(*cpus) + sizeof(int) * nr);
251
252 if (cpus != NULL) {
253 int i;
254
255 cpus->nr = nr;
256 for (i = 0; i < nr; i++)
257 cpus->map[i] = -1;
258
259 atomic_set(&cpus->refcnt, 1);
260 }
261
262 return cpus;
263}
264
Jiri Olsaf30a79b2015-06-23 00:36:04 +0200265static void cpu_map__delete(struct cpu_map *map)
Arnaldo Carvalho de Melo915fce22011-01-14 16:19:12 -0200266{
Jiri Olsaf30a79b2015-06-23 00:36:04 +0200267 if (map) {
268 WARN_ONCE(atomic_read(&map->refcnt) != 0,
269 "cpu_map refcnt unbalanced\n");
270 free(map);
271 }
272}
273
274struct cpu_map *cpu_map__get(struct cpu_map *map)
275{
276 if (map)
277 atomic_inc(&map->refcnt);
278 return map;
279}
280
281void cpu_map__put(struct cpu_map *map)
282{
283 if (map && atomic_dec_and_test(&map->refcnt))
284 cpu_map__delete(map);
Arnaldo Carvalho de Melo915fce22011-01-14 16:19:12 -0200285}
Stephane Eranian5ac59a82013-02-06 15:46:01 +0100286
Arnaldo Carvalho de Melo5d8cf722015-09-11 10:49:45 -0300287static int cpu__get_topology_int(int cpu, const char *name, int *value)
Stephane Eranian5ac59a82013-02-06 15:46:01 +0100288{
Stephane Eranian5ac59a82013-02-06 15:46:01 +0100289 char path[PATH_MAX];
Stephane Eranian5ac59a82013-02-06 15:46:01 +0100290
Stephane Eranian86ee6e12013-02-14 13:57:27 +0100291 snprintf(path, PATH_MAX,
Arnaldo Carvalho de Melo5d8cf722015-09-11 10:49:45 -0300292 "devices/system/cpu/cpu%d/topology/%s", cpu, name);
Stephane Eranian5ac59a82013-02-06 15:46:01 +0100293
Arnaldo Carvalho de Melo5d8cf722015-09-11 10:49:45 -0300294 return sysfs__read_int(path, value);
295}
Kan Liang193b6bd2015-09-01 09:58:11 -0400296
Arnaldo Carvalho de Melo5d8cf722015-09-11 10:49:45 -0300297int cpu_map__get_socket_id(int cpu)
298{
299 int value, ret = cpu__get_topology_int(cpu, "physical_package_id", &value);
300 return ret ?: value;
Kan Liang193b6bd2015-09-01 09:58:11 -0400301}
302
Jiri Olsa1fe7a302015-10-16 12:41:15 +0200303int cpu_map__get_socket(struct cpu_map *map, int idx, void *data __maybe_unused)
Kan Liang193b6bd2015-09-01 09:58:11 -0400304{
305 int cpu;
306
307 if (idx > map->nr)
308 return -1;
309
310 cpu = map->map[idx];
311
312 return cpu_map__get_socket_id(cpu);
Stephane Eranian5ac59a82013-02-06 15:46:01 +0100313}
314
Stephane Eranian86ee6e12013-02-14 13:57:27 +0100315static int cmp_ids(const void *a, const void *b)
Stephane Eranian5ac59a82013-02-06 15:46:01 +0100316{
Stephane Eranian86ee6e12013-02-14 13:57:27 +0100317 return *(int *)a - *(int *)b;
318}
319
Jiri Olsaf1cbb8f2015-10-16 12:41:14 +0200320int cpu_map__build_map(struct cpu_map *cpus, struct cpu_map **res,
Jiri Olsa1fe7a302015-10-16 12:41:15 +0200321 int (*f)(struct cpu_map *map, int cpu, void *data),
322 void *data)
Stephane Eranian86ee6e12013-02-14 13:57:27 +0100323{
324 struct cpu_map *c;
Stephane Eranian5ac59a82013-02-06 15:46:01 +0100325 int nr = cpus->nr;
326 int cpu, s1, s2;
327
Stephane Eranian86ee6e12013-02-14 13:57:27 +0100328 /* allocate as much as possible */
329 c = calloc(1, sizeof(*c) + nr * sizeof(int));
330 if (!c)
Stephane Eranian5ac59a82013-02-06 15:46:01 +0100331 return -1;
332
333 for (cpu = 0; cpu < nr; cpu++) {
Jiri Olsa1fe7a302015-10-16 12:41:15 +0200334 s1 = f(cpus, cpu, data);
Stephane Eranian86ee6e12013-02-14 13:57:27 +0100335 for (s2 = 0; s2 < c->nr; s2++) {
336 if (s1 == c->map[s2])
Stephane Eranian5ac59a82013-02-06 15:46:01 +0100337 break;
338 }
Stephane Eranian86ee6e12013-02-14 13:57:27 +0100339 if (s2 == c->nr) {
340 c->map[c->nr] = s1;
341 c->nr++;
Stephane Eranian5ac59a82013-02-06 15:46:01 +0100342 }
343 }
Stephane Eranian86ee6e12013-02-14 13:57:27 +0100344 /* ensure we process id in increasing order */
345 qsort(c->map, c->nr, sizeof(int), cmp_ids);
346
Kan Liangbc1d0362015-10-09 06:59:23 -0400347 atomic_set(&c->refcnt, 1);
Stephane Eranian86ee6e12013-02-14 13:57:27 +0100348 *res = c;
Stephane Eranian5ac59a82013-02-06 15:46:01 +0100349 return 0;
350}
Stephane Eranian86ee6e12013-02-14 13:57:27 +0100351
Kan Liang193b6bd2015-09-01 09:58:11 -0400352int cpu_map__get_core_id(int cpu)
Stephane Eranian12c08a92013-02-14 13:57:29 +0100353{
Arnaldo Carvalho de Melo5d8cf722015-09-11 10:49:45 -0300354 int value, ret = cpu__get_topology_int(cpu, "core_id", &value);
355 return ret ?: value;
Kan Liang193b6bd2015-09-01 09:58:11 -0400356}
357
Jiri Olsa1fe7a302015-10-16 12:41:15 +0200358int cpu_map__get_core(struct cpu_map *map, int idx, void *data)
Kan Liang193b6bd2015-09-01 09:58:11 -0400359{
360 int cpu, s;
361
362 if (idx > map->nr)
Stephane Eranian12c08a92013-02-14 13:57:29 +0100363 return -1;
364
Kan Liang193b6bd2015-09-01 09:58:11 -0400365 cpu = map->map[idx];
366
367 cpu = cpu_map__get_core_id(cpu);
368
Jiri Olsa1fe7a302015-10-16 12:41:15 +0200369 s = cpu_map__get_socket(map, idx, data);
Stephane Eranian12c08a92013-02-14 13:57:29 +0100370 if (s == -1)
371 return -1;
372
373 /*
374 * encode socket in upper 16 bits
375 * core_id is relative to socket, and
376 * we need a global id. So we combine
377 * socket+ core id
378 */
379 return (s << 16) | (cpu & 0xffff);
380}
381
Stephane Eranian86ee6e12013-02-14 13:57:27 +0100382int cpu_map__build_socket_map(struct cpu_map *cpus, struct cpu_map **sockp)
383{
Jiri Olsa1fe7a302015-10-16 12:41:15 +0200384 return cpu_map__build_map(cpus, sockp, cpu_map__get_socket, NULL);
Stephane Eranian86ee6e12013-02-14 13:57:27 +0100385}
Stephane Eranian12c08a92013-02-14 13:57:29 +0100386
387int cpu_map__build_core_map(struct cpu_map *cpus, struct cpu_map **corep)
388{
Jiri Olsa1fe7a302015-10-16 12:41:15 +0200389 return cpu_map__build_map(cpus, corep, cpu_map__get_core, NULL);
Stephane Eranian12c08a92013-02-14 13:57:29 +0100390}
Don Zickus7780c252014-04-07 14:55:21 -0400391
392/* setup simple routines to easily access node numbers given a cpu number */
393static int get_max_num(char *path, int *max)
394{
395 size_t num;
396 char *buf;
397 int err = 0;
398
399 if (filename__read_str(path, &buf, &num))
400 return -1;
401
402 buf[num] = '\0';
403
404 /* start on the right, to find highest node num */
405 while (--num) {
406 if ((buf[num] == ',') || (buf[num] == '-')) {
407 num++;
408 break;
409 }
410 }
411 if (sscanf(&buf[num], "%d", max) < 1) {
412 err = -1;
413 goto out;
414 }
415
416 /* convert from 0-based to 1-based */
417 (*max)++;
418
419out:
420 free(buf);
421 return err;
422}
423
424/* Determine highest possible cpu in the system for sparse allocation */
425static void set_max_cpu_num(void)
426{
427 const char *mnt;
428 char path[PATH_MAX];
429 int ret = -1;
430
431 /* set up default */
432 max_cpu_num = 4096;
433
434 mnt = sysfs__mountpoint();
435 if (!mnt)
436 goto out;
437
438 /* get the highest possible cpu number for a sparse allocation */
Don Zickusf5b1f4e2014-04-07 14:55:22 -0400439 ret = snprintf(path, PATH_MAX, "%s/devices/system/cpu/possible", mnt);
Don Zickus7780c252014-04-07 14:55:21 -0400440 if (ret == PATH_MAX) {
441 pr_err("sysfs path crossed PATH_MAX(%d) size\n", PATH_MAX);
442 goto out;
443 }
444
445 ret = get_max_num(path, &max_cpu_num);
446
447out:
448 if (ret)
449 pr_err("Failed to read max cpus, using default of %d\n", max_cpu_num);
450}
451
452/* Determine highest possible node in the system for sparse allocation */
453static void set_max_node_num(void)
454{
455 const char *mnt;
456 char path[PATH_MAX];
457 int ret = -1;
458
459 /* set up default */
460 max_node_num = 8;
461
462 mnt = sysfs__mountpoint();
463 if (!mnt)
464 goto out;
465
466 /* get the highest possible cpu number for a sparse allocation */
467 ret = snprintf(path, PATH_MAX, "%s/devices/system/node/possible", mnt);
468 if (ret == PATH_MAX) {
469 pr_err("sysfs path crossed PATH_MAX(%d) size\n", PATH_MAX);
470 goto out;
471 }
472
473 ret = get_max_num(path, &max_node_num);
474
475out:
476 if (ret)
477 pr_err("Failed to read max nodes, using default of %d\n", max_node_num);
478}
479
480static int init_cpunode_map(void)
481{
482 int i;
483
484 set_max_cpu_num();
485 set_max_node_num();
486
487 cpunode_map = calloc(max_cpu_num, sizeof(int));
488 if (!cpunode_map) {
489 pr_err("%s: calloc failed\n", __func__);
490 return -1;
491 }
492
493 for (i = 0; i < max_cpu_num; i++)
494 cpunode_map[i] = -1;
495
496 return 0;
497}
498
499int cpu__setup_cpunode_map(void)
500{
501 struct dirent *dent1, *dent2;
502 DIR *dir1, *dir2;
503 unsigned int cpu, mem;
504 char buf[PATH_MAX];
505 char path[PATH_MAX];
506 const char *mnt;
507 int n;
508
509 /* initialize globals */
510 if (init_cpunode_map())
511 return -1;
512
513 mnt = sysfs__mountpoint();
514 if (!mnt)
515 return 0;
516
517 n = snprintf(path, PATH_MAX, "%s/devices/system/node", mnt);
518 if (n == PATH_MAX) {
519 pr_err("sysfs path crossed PATH_MAX(%d) size\n", PATH_MAX);
520 return -1;
521 }
522
523 dir1 = opendir(path);
524 if (!dir1)
525 return 0;
526
527 /* walk tree and setup map */
528 while ((dent1 = readdir(dir1)) != NULL) {
529 if (dent1->d_type != DT_DIR || sscanf(dent1->d_name, "node%u", &mem) < 1)
530 continue;
531
532 n = snprintf(buf, PATH_MAX, "%s/%s", path, dent1->d_name);
533 if (n == PATH_MAX) {
534 pr_err("sysfs path crossed PATH_MAX(%d) size\n", PATH_MAX);
535 continue;
536 }
537
538 dir2 = opendir(buf);
539 if (!dir2)
540 continue;
541 while ((dent2 = readdir(dir2)) != NULL) {
542 if (dent2->d_type != DT_LNK || sscanf(dent2->d_name, "cpu%u", &cpu) < 1)
543 continue;
544 cpunode_map[cpu] = mem;
545 }
546 closedir(dir2);
547 }
548 closedir(dir1);
549 return 0;
550}