4 * Licensed under the terms of the GNU GPL License version 2.
12 #include <sys/types.h>
18 #include "cpupower_intern.h"
20 /* CPUFREQ sysfs access **************************************************/
22 /* helper function to read file from /sys into given buffer */
23 /* fname is a relative path under "cpuX/cpufreq" dir */
24 static unsigned int sysfs_cpufreq_read_file(unsigned int cpu, const char *fname,
25 char *buf, size_t buflen)
27 char path[SYSFS_PATH_MAX];
29 snprintf(path, sizeof(path), PATH_TO_CPU "cpu%u/cpufreq/%s",
31 return cpupower_read_sysfs(path, buf, buflen);
34 /* helper function to write a new value to a /sys file */
35 /* fname is a relative path under "cpuX/cpufreq" dir */
36 static unsigned int sysfs_cpufreq_write_file(unsigned int cpu,
38 const char *value, size_t len)
40 char path[SYSFS_PATH_MAX];
44 snprintf(path, sizeof(path), PATH_TO_CPU "cpu%u/cpufreq/%s",
47 fd = open(path, O_WRONLY);
51 numwrite = write(fd, value, len);
59 return (unsigned int) numwrite;
62 /* read access to files which contain one numeric value */
72 STATS_NUM_TRANSITIONS,
73 MAX_CPUFREQ_VALUE_READ_FILES
76 static const char *cpufreq_value_files[MAX_CPUFREQ_VALUE_READ_FILES] = {
77 [CPUINFO_CUR_FREQ] = "cpuinfo_cur_freq",
78 [CPUINFO_MIN_FREQ] = "cpuinfo_min_freq",
79 [CPUINFO_MAX_FREQ] = "cpuinfo_max_freq",
80 [CPUINFO_LATENCY] = "cpuinfo_transition_latency",
81 [SCALING_CUR_FREQ] = "scaling_cur_freq",
82 [SCALING_MIN_FREQ] = "scaling_min_freq",
83 [SCALING_MAX_FREQ] = "scaling_max_freq",
84 [STATS_NUM_TRANSITIONS] = "stats/total_trans"
88 static unsigned long sysfs_cpufreq_get_one_value(unsigned int cpu,
89 enum cpufreq_value which)
93 char linebuf[MAX_LINE_LEN];
96 if (which >= MAX_CPUFREQ_VALUE_READ_FILES)
99 len = sysfs_cpufreq_read_file(cpu, cpufreq_value_files[which],
100 linebuf, sizeof(linebuf));
105 value = strtoul(linebuf, &endp, 0);
107 if (endp == linebuf || errno == ERANGE)
113 /* read access to files which contain one string */
115 enum cpufreq_string {
118 MAX_CPUFREQ_STRING_FILES
121 static const char *cpufreq_string_files[MAX_CPUFREQ_STRING_FILES] = {
122 [SCALING_DRIVER] = "scaling_driver",
123 [SCALING_GOVERNOR] = "scaling_governor",
127 static char *sysfs_cpufreq_get_one_string(unsigned int cpu,
128 enum cpufreq_string which)
130 char linebuf[MAX_LINE_LEN];
134 if (which >= MAX_CPUFREQ_STRING_FILES)
137 len = sysfs_cpufreq_read_file(cpu, cpufreq_string_files[which],
138 linebuf, sizeof(linebuf));
142 result = strdup(linebuf);
146 if (result[strlen(result) - 1] == '\n')
147 result[strlen(result) - 1] = '\0';
155 WRITE_SCALING_MIN_FREQ,
156 WRITE_SCALING_MAX_FREQ,
157 WRITE_SCALING_GOVERNOR,
158 WRITE_SCALING_SET_SPEED,
159 MAX_CPUFREQ_WRITE_FILES
162 static const char *cpufreq_write_files[MAX_CPUFREQ_WRITE_FILES] = {
163 [WRITE_SCALING_MIN_FREQ] = "scaling_min_freq",
164 [WRITE_SCALING_MAX_FREQ] = "scaling_max_freq",
165 [WRITE_SCALING_GOVERNOR] = "scaling_governor",
166 [WRITE_SCALING_SET_SPEED] = "scaling_setspeed",
169 static int sysfs_cpufreq_write_one_value(unsigned int cpu,
170 enum cpufreq_write which,
171 const char *new_value, size_t len)
173 if (which >= MAX_CPUFREQ_WRITE_FILES)
176 if (sysfs_cpufreq_write_file(cpu, cpufreq_write_files[which],
177 new_value, len) != len)
183 unsigned long cpufreq_get_freq_kernel(unsigned int cpu)
185 return sysfs_cpufreq_get_one_value(cpu, SCALING_CUR_FREQ);
188 unsigned long cpufreq_get_freq_hardware(unsigned int cpu)
190 return sysfs_cpufreq_get_one_value(cpu, CPUINFO_CUR_FREQ);
193 unsigned long cpufreq_get_transition_latency(unsigned int cpu)
195 return sysfs_cpufreq_get_one_value(cpu, CPUINFO_LATENCY);
198 int cpufreq_get_hardware_limits(unsigned int cpu,
202 if ((!min) || (!max))
205 *min = sysfs_cpufreq_get_one_value(cpu, CPUINFO_MIN_FREQ);
209 *max = sysfs_cpufreq_get_one_value(cpu, CPUINFO_MAX_FREQ);
216 char *cpufreq_get_driver(unsigned int cpu)
218 return sysfs_cpufreq_get_one_string(cpu, SCALING_DRIVER);
221 void cpufreq_put_driver(char *ptr)
228 struct cpufreq_policy *cpufreq_get_policy(unsigned int cpu)
230 struct cpufreq_policy *policy;
232 policy = malloc(sizeof(struct cpufreq_policy));
236 policy->governor = sysfs_cpufreq_get_one_string(cpu, SCALING_GOVERNOR);
237 if (!policy->governor) {
241 policy->min = sysfs_cpufreq_get_one_value(cpu, SCALING_MIN_FREQ);
242 policy->max = sysfs_cpufreq_get_one_value(cpu, SCALING_MAX_FREQ);
243 if ((!policy->min) || (!policy->max)) {
244 free(policy->governor);
252 void cpufreq_put_policy(struct cpufreq_policy *policy)
254 if ((!policy) || (!policy->governor))
257 free(policy->governor);
258 policy->governor = NULL;
262 struct cpufreq_available_governors *cpufreq_get_available_governors(unsigned
265 struct cpufreq_available_governors *first = NULL;
266 struct cpufreq_available_governors *current = NULL;
267 char linebuf[MAX_LINE_LEN];
271 len = sysfs_cpufreq_read_file(cpu, "scaling_available_governors",
272 linebuf, sizeof(linebuf));
277 for (i = 0; i < len; i++) {
278 if (linebuf[i] == ' ' || linebuf[i] == '\n') {
282 current->next = malloc(sizeof(*current));
285 current = current->next;
287 first = malloc(sizeof(*first));
292 current->first = first;
293 current->next = NULL;
295 current->governor = malloc(i - pos + 1);
296 if (!current->governor)
299 memcpy(current->governor, linebuf + pos, i - pos);
300 current->governor[i - pos] = '\0';
309 current = first->next;
311 free(first->governor);
318 void cpufreq_put_available_governors(struct cpufreq_available_governors *any)
320 struct cpufreq_available_governors *tmp, *next;
336 struct cpufreq_available_frequencies
337 *cpufreq_get_available_frequencies(unsigned int cpu)
339 struct cpufreq_available_frequencies *first = NULL;
340 struct cpufreq_available_frequencies *current = NULL;
341 char one_value[SYSFS_PATH_MAX];
342 char linebuf[MAX_LINE_LEN];
346 len = sysfs_cpufreq_read_file(cpu, "scaling_available_frequencies",
347 linebuf, sizeof(linebuf));
352 for (i = 0; i < len; i++) {
353 if (linebuf[i] == ' ' || linebuf[i] == '\n') {
356 if (i - pos >= SYSFS_PATH_MAX)
359 current->next = malloc(sizeof(*current));
362 current = current->next;
364 first = malloc(sizeof(*first));
369 current->first = first;
370 current->next = NULL;
372 memcpy(one_value, linebuf + pos, i - pos);
373 one_value[i - pos] = '\0';
374 if (sscanf(one_value, "%lu", ¤t->frequency) != 1)
385 current = first->next;
392 void cpufreq_put_available_frequencies(struct cpufreq_available_frequencies
394 struct cpufreq_available_frequencies *tmp, *next;
407 static struct cpufreq_affected_cpus *sysfs_get_cpu_list(unsigned int cpu,
410 struct cpufreq_affected_cpus *first = NULL;
411 struct cpufreq_affected_cpus *current = NULL;
412 char one_value[SYSFS_PATH_MAX];
413 char linebuf[MAX_LINE_LEN];
417 len = sysfs_cpufreq_read_file(cpu, file, linebuf, sizeof(linebuf));
422 for (i = 0; i < len; i++) {
423 if (i == len || linebuf[i] == ' ' || linebuf[i] == '\n') {
426 if (i - pos >= SYSFS_PATH_MAX)
429 current->next = malloc(sizeof(*current));
432 current = current->next;
434 first = malloc(sizeof(*first));
439 current->first = first;
440 current->next = NULL;
442 memcpy(one_value, linebuf + pos, i - pos);
443 one_value[i - pos] = '\0';
445 if (sscanf(one_value, "%u", ¤t->cpu) != 1)
456 current = first->next;
463 struct cpufreq_affected_cpus *cpufreq_get_affected_cpus(unsigned int cpu)
465 return sysfs_get_cpu_list(cpu, "affected_cpus");
468 void cpufreq_put_affected_cpus(struct cpufreq_affected_cpus *any)
470 struct cpufreq_affected_cpus *tmp, *next;
484 struct cpufreq_affected_cpus *cpufreq_get_related_cpus(unsigned int cpu)
486 return sysfs_get_cpu_list(cpu, "related_cpus");
489 void cpufreq_put_related_cpus(struct cpufreq_affected_cpus *any)
491 cpufreq_put_affected_cpus(any);
494 static int verify_gov(char *new_gov, char *passed_gov)
496 unsigned int i, j = 0;
498 if (!passed_gov || (strlen(passed_gov) > 19))
501 strncpy(new_gov, passed_gov, 20);
502 for (i = 0; i < 20; i++) {
507 if ((new_gov[i] >= 'a') && (new_gov[i] <= 'z'))
510 if ((new_gov[i] >= 'A') && (new_gov[i] <= 'Z'))
513 if (new_gov[i] == '-')
516 if (new_gov[i] == '_')
519 if (new_gov[i] == '\0') {
529 int cpufreq_set_policy(unsigned int cpu, struct cpufreq_policy *policy)
531 char min[SYSFS_PATH_MAX];
532 char max[SYSFS_PATH_MAX];
533 char gov[SYSFS_PATH_MAX];
535 unsigned long old_min;
538 if (!policy || !(policy->governor))
541 if (policy->max < policy->min)
544 if (verify_gov(gov, policy->governor))
547 snprintf(min, SYSFS_PATH_MAX, "%lu", policy->min);
548 snprintf(max, SYSFS_PATH_MAX, "%lu", policy->max);
550 old_min = sysfs_cpufreq_get_one_value(cpu, SCALING_MIN_FREQ);
551 write_max_first = (old_min && (policy->max < old_min) ? 0 : 1);
553 if (write_max_first) {
554 ret = sysfs_cpufreq_write_one_value(cpu, WRITE_SCALING_MAX_FREQ,
560 ret = sysfs_cpufreq_write_one_value(cpu, WRITE_SCALING_MIN_FREQ, min,
565 if (!write_max_first) {
566 ret = sysfs_cpufreq_write_one_value(cpu, WRITE_SCALING_MAX_FREQ,
572 return sysfs_cpufreq_write_one_value(cpu, WRITE_SCALING_GOVERNOR,
577 int cpufreq_modify_policy_min(unsigned int cpu, unsigned long min_freq)
579 char value[SYSFS_PATH_MAX];
581 snprintf(value, SYSFS_PATH_MAX, "%lu", min_freq);
583 return sysfs_cpufreq_write_one_value(cpu, WRITE_SCALING_MIN_FREQ,
584 value, strlen(value));
588 int cpufreq_modify_policy_max(unsigned int cpu, unsigned long max_freq)
590 char value[SYSFS_PATH_MAX];
592 snprintf(value, SYSFS_PATH_MAX, "%lu", max_freq);
594 return sysfs_cpufreq_write_one_value(cpu, WRITE_SCALING_MAX_FREQ,
595 value, strlen(value));
598 int cpufreq_modify_policy_governor(unsigned int cpu, char *governor)
600 char new_gov[SYSFS_PATH_MAX];
602 if ((!governor) || (strlen(governor) > 19))
605 if (verify_gov(new_gov, governor))
608 return sysfs_cpufreq_write_one_value(cpu, WRITE_SCALING_GOVERNOR,
609 new_gov, strlen(new_gov));
612 int cpufreq_set_frequency(unsigned int cpu, unsigned long target_frequency)
614 struct cpufreq_policy *pol = cpufreq_get_policy(cpu);
615 char userspace_gov[] = "userspace";
616 char freq[SYSFS_PATH_MAX];
622 if (strncmp(pol->governor, userspace_gov, 9) != 0) {
623 ret = cpufreq_modify_policy_governor(cpu, userspace_gov);
625 cpufreq_put_policy(pol);
630 cpufreq_put_policy(pol);
632 snprintf(freq, SYSFS_PATH_MAX, "%lu", target_frequency);
634 return sysfs_cpufreq_write_one_value(cpu, WRITE_SCALING_SET_SPEED,
638 struct cpufreq_stats *cpufreq_get_stats(unsigned int cpu,
639 unsigned long long *total_time)
641 struct cpufreq_stats *first = NULL;
642 struct cpufreq_stats *current = NULL;
643 char one_value[SYSFS_PATH_MAX];
644 char linebuf[MAX_LINE_LEN];
648 len = sysfs_cpufreq_read_file(cpu, "stats/time_in_state",
649 linebuf, sizeof(linebuf));
655 for (i = 0; i < len; i++) {
656 if (i == strlen(linebuf) || linebuf[i] == '\n') {
659 if ((i - pos) >= SYSFS_PATH_MAX)
662 current->next = malloc(sizeof(*current));
665 current = current->next;
667 first = malloc(sizeof(*first));
672 current->first = first;
673 current->next = NULL;
675 memcpy(one_value, linebuf + pos, i - pos);
676 one_value[i - pos] = '\0';
677 if (sscanf(one_value, "%lu %llu",
679 ¤t->time_in_state) != 2)
682 *total_time = *total_time + current->time_in_state;
691 current = first->next;
698 void cpufreq_put_stats(struct cpufreq_stats *any)
700 struct cpufreq_stats *tmp, *next;
713 unsigned long cpufreq_get_transitions(unsigned int cpu)
715 return sysfs_cpufreq_get_one_value(cpu, STATS_NUM_TRANSITIONS);