blob: 1199b98dd1afb567007a7046fcba6e249cdec461 [file] [log] [blame]
Marek Polacek23e8c082010-07-21 10:29:07 +02001/* vi: set sw=4 ts=4: */
2/*
3 * Per-processor statistics, based on sysstat version 9.1.2 by Sebastien Godard
4 *
5 * Copyright (C) 2010 Marek Polacek <mmpolacek@gmail.com>
6 *
7 * Licensed under GPLv2, see file License in this tarball for details.
8 */
9
10//applet:IF_MPSTAT(APPLET(mpstat, _BB_DIR_BIN, _BB_SUID_DROP))
11
12//kbuild:lib-$(CONFIG_MPSTAT) += mpstat.o
13
14//config:config MPSTAT
15//config: bool "mpstat"
16//config: default y
17//config: help
18//config: Per-processor statistics
19
20#include "libbb.h"
21#include <sys/utsname.h> /* struct utsname */
22
23//#define debug(fmt, ...) fprintf(stderr, fmt, ## __VA_ARGS__)
24#define debug(fmt, ...) ((void)0)
25
26/* Size of /proc/interrupts line, CPU data excluded */
27#define INTERRUPTS_LINE 64
28/* Maximum number of interrupts */
29#define NR_IRQS 256
30#define NR_IRQCPU_PREALLOC 3
Denys Vlasenko64c67892010-07-30 12:45:14 +020031#define MAX_IRQNAME_LEN 16
Marek Polacek23e8c082010-07-21 10:29:07 +020032#define MAX_PF_NAME 512
Denys Vlasenko64c67892010-07-30 12:45:14 +020033/* sysstat 9.0.6 uses width 8, but newer code which also prints /proc/softirqs
34 * data needs more: "interrupts" in /proc/softirqs have longer names,
35 * most are up to 8 chars, one (BLOCK_IOPOLL) is even longer.
36 * We are printing headers in the " IRQNAME/s" form, experimentally
37 * anything smaller than 10 chars looks ugly for /proc/softirqs stats.
38 */
39#define INTRATE_SCRWIDTH 10
40#define INTRATE_SCRWIDTH_STR "10"
Marek Polacek23e8c082010-07-21 10:29:07 +020041
42/* System files */
43#define SYSFS_DEVCPU "/sys/devices/system/cpu"
44#define PROCFS_STAT "/proc/stat"
45#define PROCFS_INTERRUPTS "/proc/interrupts"
46#define PROCFS_SOFTIRQS "/proc/softirqs"
47#define PROCFS_UPTIME "/proc/uptime"
48
49
50#if 1
51typedef unsigned long long data_t;
52typedef long long idata_t;
53#define FMT_DATA "ll"
54#define DATA_MAX ULLONG_MAX
55#else
56typedef unsigned long data_t;
57typedef long idata_t;
58#define FMT_DATA "l"
59#define DATA_MAX ULONG_MAX
60#endif
61
62
63struct stats_irqcpu {
64 unsigned interrupt;
Denys Vlasenko64c67892010-07-30 12:45:14 +020065 char irq_name[MAX_IRQNAME_LEN];
Marek Polacek23e8c082010-07-21 10:29:07 +020066};
67
Marek Polacek23e8c082010-07-21 10:29:07 +020068struct stats_cpu {
69 data_t cpu_user;
70 data_t cpu_nice;
71 data_t cpu_system;
72 data_t cpu_idle;
73 data_t cpu_iowait;
74 data_t cpu_steal;
75 data_t cpu_irq;
76 data_t cpu_softirq;
77 data_t cpu_guest;
78};
79
Marek Polacek23e8c082010-07-21 10:29:07 +020080struct stats_irq {
81 data_t irq_nr;
82};
83
84
Denys Vlasenko217df6e2010-07-21 11:54:33 +020085/* Globals. Sort by size and access frequency. */
Marek Polacek23e8c082010-07-21 10:29:07 +020086struct globals {
87 int interval;
88 int count;
89 unsigned cpu_nr; /* Number of CPUs */
90 unsigned irqcpu_nr; /* Number of interrupts per CPU */
91 unsigned softirqcpu_nr; /* Number of soft interrupts per CPU */
92 unsigned options;
93 unsigned hz;
94 unsigned cpu_bitmap_len;
95 smallint p_option;
Denys Vlasenko3fb4a5e2010-07-30 13:55:35 +020096 // 9.0.6 does not do it. Try "mpstat -A 1 2" - headers are repeated!
97 //smallint header_done;
98 //smallint avg_header_done;
Marek Polacek23e8c082010-07-21 10:29:07 +020099 unsigned char *cpu_bitmap; /* Bit 0: global, bit 1: 1st proc... */
100 data_t global_uptime[3];
101 data_t per_cpu_uptime[3];
102 struct stats_cpu *st_cpu[3];
103 struct stats_irq *st_irq[3];
104 struct stats_irqcpu *st_irqcpu[3];
105 struct stats_irqcpu *st_softirqcpu[3];
106 struct tm timestamp[3];
107};
108#define G (*ptr_to_globals)
109#define INIT_G() do { \
110 SET_PTR_TO_GLOBALS(xzalloc(sizeof(G))); \
111} while (0)
112
113/* The selected interrupts statistics (bits in G.options) */
114enum {
115 D_CPU = 1 << 0,
116 D_IRQ_SUM = 1 << 1,
117 D_IRQ_CPU = 1 << 2,
118 D_SOFTIRQS = 1 << 3,
119};
120
121
122/* Does str start with "cpu"? */
123static int starts_with_cpu(const char *str)
124{
125 return !((str[0] - 'c') | (str[1] - 'p') | (str[2] - 'u'));
126}
127
128/* Is option on? */
129static ALWAYS_INLINE int display_opt(int opt)
130{
131 return (opt & G.options);
132}
133
134#if DATA_MAX > 0xffffffff
135/*
136 * Handle overflow conditions properly for counters which can have
137 * less bits than data_t, depending on the kernel version.
138 */
139/* Surprisingly, on 32bit inlining is a size win */
140static ALWAYS_INLINE data_t overflow_safe_sub(data_t prev, data_t curr)
141{
142 data_t v = curr - prev;
143
144 if ((idata_t)v < 0 /* curr < prev - counter overflow? */
145 && prev <= 0xffffffff /* kernel uses 32bit value for the counter? */
146 ) {
147 /* Add 33th bit set to 1 to curr, compensating for the overflow */
148 /* double shift defeats "warning: left shift count >= width of type" */
149 v += ((data_t)1 << 16) << 16;
150 }
151 return v;
152}
153#else
154static ALWAYS_INLINE data_t overflow_safe_sub(data_t prev, data_t curr)
155{
156 return curr - prev;
157}
158#endif
159
160static double percent_value(data_t prev, data_t curr, data_t itv)
161{
162 return ((double)overflow_safe_sub(prev, curr)) / itv * 100;
163}
164
165static double hz_value(data_t prev, data_t curr, data_t itv)
166{
Denys Vlasenko9bb05102010-07-30 13:38:46 +0200167 //bb_error_msg("curr:%lld prev:%lld G.hz:%u", curr, prev, G.hz);
Marek Polacek23e8c082010-07-21 10:29:07 +0200168 return ((double)overflow_safe_sub(prev, curr)) / itv * G.hz;
169}
170
171static ALWAYS_INLINE data_t jiffies_diff(data_t old, data_t new)
172{
173 data_t diff = new - old;
174 return (diff == 0) ? 1 : diff;
175}
176
177static int is_cpu_in_bitmap(unsigned cpu)
178{
179 return G.cpu_bitmap[cpu >> 3] & (1 << (cpu & 7));
180}
181
182static void write_irqcpu_stats(struct stats_irqcpu *per_cpu_stats[],
183 int total_irqs,
184 data_t itv,
185 int prev, int current,
186 const char *prev_str, const char *current_str)
187{
188 int j;
189 int offset, cpu;
190 struct stats_irqcpu *p0, *q0;
191
192 /* Check if number of IRQs has changed */
193 if (G.interval != 0) {
194 for (j = 0; j <= total_irqs; j++) {
195 p0 = &per_cpu_stats[current][j];
196 if (p0->irq_name[0] != '\0') {
197 q0 = &per_cpu_stats[prev][j];
198 if (strcmp(p0->irq_name, q0->irq_name) != 0) {
199 /* Strings are different */
200 break;
201 }
202 }
203 }
204 }
205
206 /* Print header */
207 printf("\n%-11s CPU", prev_str);
Denys Vlasenko64c67892010-07-30 12:45:14 +0200208 {
209 /* A bit complex code to "buy back" space if one header is too wide.
Denys Vlasenko3fb4a5e2010-07-30 13:55:35 +0200210 * Here's how it looks like. BLOCK_IOPOLL eats too much space,
Denys Vlasenko64c67892010-07-30 12:45:14 +0200211 * and latter headers use smaller width to compensate:
212 * ...BLOCK/s BLOCK_IOPOLL/s TASKLET/s SCHED/s HRTIMER/s RCU/s
213 * ... 2.32 0.00 0.01 17.58 0.14 141.96
214 */
215 int expected_len = 0;
216 int printed_len = 0;
217 for (j = 0; j < total_irqs; j++) {
218 p0 = &per_cpu_stats[current][j];
219 if (p0->irq_name[0] != '\0') {
220 int n = (INTRATE_SCRWIDTH-3) - (printed_len - expected_len);
221 printed_len += printf(" %*s/s", n > 0 ? n : 0, skip_whitespace(p0->irq_name));
222 expected_len += INTRATE_SCRWIDTH;
223 }
224 }
Marek Polacek23e8c082010-07-21 10:29:07 +0200225 }
226 bb_putchar('\n');
227
228 for (cpu = 1; cpu <= G.cpu_nr; cpu++) {
229 /* Check if we want stats about this CPU */
230 if (!is_cpu_in_bitmap(cpu) && G.p_option) {
231 continue;
232 }
233
234 printf("%-11s %4u", current_str, cpu - 1);
235
236 for (j = 0; j < total_irqs; j++) {
237 /* IRQ field set only for proc 0 */
238 p0 = &per_cpu_stats[current][j];
239
240 /*
241 * An empty string for irq name means that
242 * interrupt is no longer used.
243 */
244 if (p0->irq_name[0] != '\0') {
245 offset = j;
246 q0 = &per_cpu_stats[prev][offset];
247
248 /*
249 * If we want stats for the time since boot
250 * we have p0->irq != q0->irq.
251 */
252 if (strcmp(p0->irq_name, q0->irq_name) != 0
253 && G.interval != 0
254 ) {
255 if (j) {
256 offset = j - 1;
257 q0 = &per_cpu_stats[prev][offset];
258 }
259 if (strcmp(p0->irq_name, q0->irq_name) != 0
260 && (j + 1 < total_irqs)
261 ) {
262 offset = j + 1;
263 q0 = &per_cpu_stats[prev][offset];
264 }
265 }
266
267 if (strcmp(p0->irq_name, q0->irq_name) == 0
268 || G.interval == 0
269 ) {
270 struct stats_irqcpu *p, *q;
271 p = &per_cpu_stats[current][(cpu - 1) * total_irqs + j];
272 q = &per_cpu_stats[prev][(cpu - 1) * total_irqs + offset];
Denys Vlasenko64c67892010-07-30 12:45:14 +0200273 printf("%"INTRATE_SCRWIDTH_STR".2f",
Marek Polacek23e8c082010-07-21 10:29:07 +0200274 (double)(p->interrupt - q->interrupt) / itv * G.hz);
275 } else {
276 printf(" N/A");
277 }
278 }
279 }
280 bb_putchar('\n');
281 }
282}
283
284static data_t get_per_cpu_interval(const struct stats_cpu *scc,
285 const struct stats_cpu *scp)
286{
287 return ((scc->cpu_user + scc->cpu_nice +
288 scc->cpu_system + scc->cpu_iowait +
289 scc->cpu_idle + scc->cpu_steal +
290 scc->cpu_irq + scc->cpu_softirq) -
291 (scp->cpu_user + scp->cpu_nice +
292 scp->cpu_system + scp->cpu_iowait +
293 scp->cpu_idle + scp->cpu_steal +
294 scp->cpu_irq + scp->cpu_softirq));
295}
296
297static void print_stats_cpu_struct(const struct stats_cpu *p,
298 const struct stats_cpu *c,
299 data_t itv)
300{
301 printf(" %7.2f %7.2f %7.2f %7.2f %7.2f %7.2f %7.2f %7.2f %7.2f\n",
302 percent_value(p->cpu_user - p->cpu_guest,
303 /**/ c->cpu_user - c->cpu_guest, itv),
304 percent_value(p->cpu_nice , c->cpu_nice , itv),
305 percent_value(p->cpu_system , c->cpu_system , itv),
306 percent_value(p->cpu_iowait , c->cpu_iowait , itv),
307 percent_value(p->cpu_irq , c->cpu_irq , itv),
308 percent_value(p->cpu_softirq, c->cpu_softirq, itv),
309 percent_value(p->cpu_steal , c->cpu_steal , itv),
310 percent_value(p->cpu_guest , c->cpu_guest , itv),
311 percent_value(p->cpu_idle , c->cpu_idle , itv)
312 );
313}
314
315static void write_stats_core(int prev, int current,
316 const char *prev_str, const char *current_str)
317{
318 struct stats_cpu *scc, *scp;
319 data_t itv, global_itv;
320 int cpu;
321
322 /* Compute time interval */
323 itv = global_itv = jiffies_diff(G.global_uptime[prev], G.global_uptime[current]);
324
325 /* Reduce interval to one CPU */
326 if (G.cpu_nr > 1)
327 itv = jiffies_diff(G.per_cpu_uptime[prev], G.per_cpu_uptime[current]);
328
329 /* Print CPU stats */
330 if (display_opt(D_CPU)) {
331
Denys Vlasenko3fb4a5e2010-07-30 13:55:35 +0200332 ///* This is done exactly once */
333 //if (!G.header_done) {
Marek Polacek23e8c082010-07-21 10:29:07 +0200334 printf("\n%-11s CPU %%usr %%nice %%sys %%iowait %%irq %%soft %%steal %%guest %%idle\n",
335 prev_str
336 );
Denys Vlasenko3fb4a5e2010-07-30 13:55:35 +0200337 // G.header_done = 1;
338 //}
Marek Polacek23e8c082010-07-21 10:29:07 +0200339
340 for (cpu = 0; cpu <= G.cpu_nr; cpu++) {
341 data_t per_cpu_itv;
342
343 /* Print stats about this particular CPU? */
344 if (!is_cpu_in_bitmap(cpu))
345 continue;
346
347 scc = &G.st_cpu[current][cpu];
348 scp = &G.st_cpu[prev][cpu];
349 per_cpu_itv = global_itv;
350
351 printf((cpu ? "%-11s %4u" : "%-11s all"), current_str, cpu - 1);
352 if (cpu) {
353 double idle;
354 /*
355 * If the CPU is offline, then it isn't in /proc/stat,
356 * so all values are 0.
357 * NB: Guest time is already included in user time.
358 */
359 if ((scc->cpu_user | scc->cpu_nice | scc->cpu_system |
360 scc->cpu_iowait | scc->cpu_idle | scc->cpu_steal |
361 scc->cpu_irq | scc->cpu_softirq) == 0
362 ) {
363 /*
364 * Set current struct fields to values from prev.
365 * iteration. Then their values won't jump from
366 * zero, when the CPU comes back online.
367 */
368 *scc = *scp;
369 idle = 0.0;
370 goto print_zeros;
371 }
372 /* Compute interval again for current proc */
373 per_cpu_itv = get_per_cpu_interval(scc, scp);
374 if (per_cpu_itv == 0) {
375 /*
376 * If the CPU is tickless then there is no change in CPU values
377 * but the sum of values is not zero.
378 */
379 idle = 100.0;
380 print_zeros:
381 printf(" %7.2f %7.2f %7.2f %7.2f %7.2f %7.2f %7.2f %7.2f %7.2f\n",
382 0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0, idle);
383 continue;
384 }
385 }
386 print_stats_cpu_struct(scp, scc, per_cpu_itv);
387 }
388 }
389
390 /* Print total number of IRQs per CPU */
391 if (display_opt(D_IRQ_SUM)) {
392
Denys Vlasenko3fb4a5e2010-07-30 13:55:35 +0200393 ///* Print average header, this is done exactly once */
394 //if (!G.avg_header_done) {
Marek Polacek23e8c082010-07-21 10:29:07 +0200395 printf("\n%-11s CPU intr/s\n", prev_str);
Denys Vlasenko3fb4a5e2010-07-30 13:55:35 +0200396 // G.avg_header_done = 1;
397 //}
Marek Polacek23e8c082010-07-21 10:29:07 +0200398
399 for (cpu = 0; cpu <= G.cpu_nr; cpu++) {
400 data_t per_cpu_itv;
401
402 /* Print stats about this CPU? */
403 if (!is_cpu_in_bitmap(cpu))
404 continue;
405
406 per_cpu_itv = itv;
407 printf((cpu ? "%-11s %4u" : "%-11s all"), current_str, cpu - 1);
408 if (cpu) {
409 scc = &G.st_cpu[current][cpu];
410 scp = &G.st_cpu[prev][cpu];
411 /* Compute interval again for current proc */
412 per_cpu_itv = get_per_cpu_interval(scc, scp);
413 if (per_cpu_itv == 0) {
414 printf(" %9.2f\n", 0.0);
415 continue;
416 }
417 }
Denys Vlasenko9bb05102010-07-30 13:38:46 +0200418 //bb_error_msg("G.st_irq[%u][%u].irq_nr:%lld - G.st_irq[%u][%u].irq_nr:%lld",
419 // current, cpu, G.st_irq[prev][cpu].irq_nr, prev, cpu, G.st_irq[current][cpu].irq_nr);
Marek Polacek23e8c082010-07-21 10:29:07 +0200420 printf(" %9.2f\n", hz_value(G.st_irq[prev][cpu].irq_nr, G.st_irq[current][cpu].irq_nr, per_cpu_itv));
421 }
422 }
423
424 if (display_opt(D_IRQ_CPU)) {
425 write_irqcpu_stats(G.st_irqcpu, G.irqcpu_nr,
426 itv,
427 prev, current,
428 prev_str, current_str
429 );
430 }
431
432 if (display_opt(D_SOFTIRQS)) {
433 write_irqcpu_stats(G.st_softirqcpu, G.softirqcpu_nr,
434 itv,
435 prev, current,
436 prev_str, current_str
437 );
438 }
439}
440
441/*
442 * Print the statistics
443 */
444static void write_stats(int current)
445{
446 char prev_time[16];
447 char curr_time[16];
448
449 strftime(prev_time, sizeof(prev_time), "%X", &G.timestamp[!current]);
450 strftime(curr_time, sizeof(curr_time), "%X", &G.timestamp[current]);
451
452 write_stats_core(!current, current, prev_time, curr_time);
453}
454
455static void write_stats_avg(int current)
456{
457 write_stats_core(2, current, "Average:", "Average:");
458}
459
460/*
461 * Read CPU statistics
462 */
463static void get_cpu_statistics(struct stats_cpu *cpu, data_t *up, data_t *up0)
464{
465 FILE *fp;
466 char buf[1024];
467
468 fp = xfopen_for_read(PROCFS_STAT);
469
470 while (fgets(buf, sizeof(buf), fp)) {
471 data_t sum;
472 unsigned cpu_number;
473 struct stats_cpu *cp;
474
475 if (!starts_with_cpu(buf))
476 continue; /* not "cpu" */
Denys Vlasenko217df6e2010-07-21 11:54:33 +0200477
478 cp = cpu; /* for "cpu " case */
479 if (buf[3] != ' ') {
480 /* "cpuN " */
Marek Polacek23e8c082010-07-21 10:29:07 +0200481 if (G.cpu_nr == 0
482 || sscanf(buf + 3, "%u ", &cpu_number) != 1
483 || cpu_number >= G.cpu_nr
484 ) {
485 continue;
486 }
487 cp = &cpu[cpu_number + 1];
488 }
489
Denys Vlasenko217df6e2010-07-21 11:54:33 +0200490 /* Read the counters, save them */
Marek Polacek23e8c082010-07-21 10:29:07 +0200491 /* Not all fields have to be present */
492 memset(cp, 0, sizeof(*cp));
Denys Vlasenko217df6e2010-07-21 11:54:33 +0200493 sscanf(buf, "%*s"
Marek Polacek23e8c082010-07-21 10:29:07 +0200494 " %"FMT_DATA"u %"FMT_DATA"u %"FMT_DATA"u"
495 " %"FMT_DATA"u %"FMT_DATA"u %"FMT_DATA"u"
496 " %"FMT_DATA"u %"FMT_DATA"u %"FMT_DATA"u",
497 &cp->cpu_user, &cp->cpu_nice, &cp->cpu_system,
498 &cp->cpu_idle, &cp->cpu_iowait, &cp->cpu_irq,
Denys Vlasenko217df6e2010-07-21 11:54:33 +0200499 &cp->cpu_softirq, &cp->cpu_steal, &cp->cpu_guest
Marek Polacek23e8c082010-07-21 10:29:07 +0200500 );
501 /*
502 * Compute uptime in jiffies (1/HZ), it'll be the sum of
503 * individual CPU's uptimes.
504 * NB: We have to omit cpu_guest, because cpu_user includes it.
505 */
506 sum = cp->cpu_user + cp->cpu_nice + cp->cpu_system +
507 cp->cpu_idle + cp->cpu_iowait + cp->cpu_irq +
508 cp->cpu_softirq + cp->cpu_steal;
509
510 if (buf[3] == ' ') {
511 /* "cpu " */
512 *up = sum;
513 } else {
Denys Vlasenko217df6e2010-07-21 11:54:33 +0200514 /* "cpuN " */
Marek Polacek23e8c082010-07-21 10:29:07 +0200515 if (cpu_number == 0 && *up0 != 0) {
516 /* Compute uptime of single CPU */
517 *up0 = sum;
518 }
519 }
520 }
521 fclose(fp);
522}
523
524/*
525 * Read IRQs from /proc/stat
526 */
527static void get_irqs_from_stat(struct stats_irq *irq)
528{
529 FILE *fp;
530 char buf[1024];
531
532 fp = fopen_for_read(PROCFS_STAT);
533 if (!fp)
534 return;
535
536 while (fgets(buf, sizeof(buf), fp)) {
Denys Vlasenko9bb05102010-07-30 13:38:46 +0200537 //bb_error_msg("/proc/stat:'%s'", buf);
538 if (strncmp(buf, "intr ", 5) == 0) {
Marek Polacek23e8c082010-07-21 10:29:07 +0200539 /* Read total number of IRQs since system boot */
540 sscanf(buf + 5, "%"FMT_DATA"u", &irq->irq_nr);
Denys Vlasenko9bb05102010-07-30 13:38:46 +0200541 }
Marek Polacek23e8c082010-07-21 10:29:07 +0200542 }
543
544 fclose(fp);
545}
546
547/*
548 * Read stats from /proc/interrupts or /proc/softirqs
549 */
550static void get_irqs_from_interrupts(const char *fname,
551 struct stats_irqcpu *per_cpu_stats[],
552 int irqs_per_cpu, int current)
553{
554 FILE *fp;
555 struct stats_irq *irq_i;
556 struct stats_irqcpu *ic;
557 char *buf;
558 unsigned buflen;
559 unsigned cpu;
560 unsigned irq;
561 int cpu_index[G.cpu_nr];
562 int iindex;
Marek Polacek23e8c082010-07-21 10:29:07 +0200563
Denys Vlasenko3fb4a5e2010-07-30 13:55:35 +0200564// Moved to caller.
Denys Vlasenko9bb05102010-07-30 13:38:46 +0200565// Otherwise reading of /proc/softirqs
566// was resetting counts to 0 after we painstakingly collected them from
567// /proc/interrupts. Which resulted in:
568// 01:32:47 PM CPU intr/s
569// 01:32:47 PM all 591.47
570// 01:32:47 PM 0 0.00 <= ???
571// 01:32:47 PM 1 0.00 <= ???
572// for (cpu = 1; cpu <= G.cpu_nr; cpu++) {
573// G.st_irq[current][cpu].irq_nr = 0;
574// //bb_error_msg("G.st_irq[%u][%u].irq_nr=0", current, cpu);
575// }
Marek Polacek23e8c082010-07-21 10:29:07 +0200576
577 fp = fopen_for_read(fname);
578 if (!fp)
579 return;
580
581 buflen = INTERRUPTS_LINE + 16 * G.cpu_nr;
582 buf = xmalloc(buflen);
583
584 /* Parse header and determine, which CPUs are online */
585 iindex = 0;
586 while (fgets(buf, buflen, fp)) {
587 char *cp, *next;
588 next = buf;
589 while ((cp = strstr(next, "CPU")) != NULL
590 && iindex < G.cpu_nr
591 ) {
592 cpu = strtoul(cp + 3, &next, 10);
593 cpu_index[iindex++] = cpu;
594 }
595 if (iindex) /* We found header */
596 break;
597 }
598
599 irq = 0;
600 while (fgets(buf, buflen, fp)
601 && irq < irqs_per_cpu
602 ) {
Denys Vlasenko9bb05102010-07-30 13:38:46 +0200603 int len;
604 char last_char;
Marek Polacek23e8c082010-07-21 10:29:07 +0200605 char *cp;
Denys Vlasenko9bb05102010-07-30 13:38:46 +0200606
607 /* Skip over "IRQNAME:" */
Marek Polacek23e8c082010-07-21 10:29:07 +0200608 cp = strchr(buf, ':');
609 if (!cp)
610 continue;
Denys Vlasenko9bb05102010-07-30 13:38:46 +0200611 last_char = cp[-1];
Marek Polacek23e8c082010-07-21 10:29:07 +0200612
613 ic = &per_cpu_stats[current][irq];
614 len = cp - buf;
Denys Vlasenko64c67892010-07-30 12:45:14 +0200615 if (len >= sizeof(ic->irq_name)) {
616 len = sizeof(ic->irq_name) - 1;
Marek Polacek23e8c082010-07-21 10:29:07 +0200617 }
Denys Vlasenko64c67892010-07-30 12:45:14 +0200618 safe_strncpy(ic->irq_name, buf, len + 1);
619 //bb_error_msg("%s: irq%d:'%s' buf:'%s'", fname, irq, ic->irq_name, buf);
Marek Polacek23e8c082010-07-21 10:29:07 +0200620 cp++;
621
622 for (cpu = 0; cpu < iindex; cpu++) {
623 char *next;
624 ic = &per_cpu_stats[current][cpu_index[cpu] * irqs_per_cpu + irq];
625 irq_i = &G.st_irq[current][cpu_index[cpu] + 1];
626 ic->interrupt = strtoul(cp, &next, 10);
Denys Vlasenko9bb05102010-07-30 13:38:46 +0200627 /* Count only numerical IRQs */
628 if (isdigit(last_char)) {
Marek Polacek23e8c082010-07-21 10:29:07 +0200629 irq_i->irq_nr += ic->interrupt;
Denys Vlasenko9bb05102010-07-30 13:38:46 +0200630 //bb_error_msg("G.st_irq[%u][%u].irq_nr + %u = %lld",
631 // current, cpu_index[cpu] + 1, ic->interrupt, irq_i->irq_nr);
Marek Polacek23e8c082010-07-21 10:29:07 +0200632 }
633 cp = next;
634 }
635 irq++;
636 }
637 fclose(fp);
638 free(buf);
639
640 while (irq < irqs_per_cpu) {
641 /* Number of interrupts per CPU has changed */
642 ic = &per_cpu_stats[current][irq];
643 ic->irq_name[0] = '\0'; /* False interrupt */
644 irq++;
645 }
646}
647
648static void get_uptime(data_t *uptime)
649{
650 FILE *fp;
651 char buf[sizeof(long)*3 * 2 + 4]; /* enough for long.long */
652 unsigned long uptime_sec, decimal;
653
654 fp = fopen_for_read(PROCFS_UPTIME);
655 if (!fp)
656 return;
657 if (fgets(buf, sizeof(buf), fp)) {
658 if (sscanf(buf, "%lu.%lu", &uptime_sec, &decimal) == 2) {
659 *uptime = (data_t)uptime_sec * G.hz + decimal * G.hz / 100;
660 }
661 }
662
663 fclose(fp);
664}
665
666static void get_localtime(struct tm *tm)
667{
668 time_t timer;
669 time(&timer);
670 localtime_r(&timer, tm);
671}
672
673static void alarm_handler(int sig UNUSED_PARAM)
674{
675 signal(SIGALRM, alarm_handler);
676 alarm(G.interval);
677}
678
679static void main_loop(void)
680{
681 unsigned current;
682 unsigned cpus;
683
684 /* Read the stats */
685 if (G.cpu_nr > 1) {
686 G.per_cpu_uptime[0] = 0;
687 get_uptime(&G.per_cpu_uptime[0]);
688 }
689
690 get_cpu_statistics(G.st_cpu[0], &G.global_uptime[0], &G.per_cpu_uptime[0]);
691
692 if (display_opt(D_IRQ_SUM))
693 get_irqs_from_stat(G.st_irq[0]);
694
695 if (display_opt(D_IRQ_SUM | D_IRQ_CPU))
696 get_irqs_from_interrupts(PROCFS_INTERRUPTS, G.st_irqcpu,
697 G.irqcpu_nr, 0);
698
699 if (display_opt(D_SOFTIRQS))
700 get_irqs_from_interrupts(PROCFS_SOFTIRQS, G.st_softirqcpu,
701 G.softirqcpu_nr, 0);
702
703 if (G.interval == 0) {
704 /* Display since boot time */
705 cpus = G.cpu_nr + 1;
706 G.timestamp[1] = G.timestamp[0];
707 memset(G.st_cpu[1], 0, sizeof(G.st_cpu[1][0]) * cpus);
708 memset(G.st_irq[1], 0, sizeof(G.st_irq[1][0]) * cpus);
709 memset(G.st_irqcpu[1], 0, sizeof(G.st_irqcpu[1][0]) * cpus * G.irqcpu_nr);
710 memset(G.st_softirqcpu[1], 0, sizeof(G.st_softirqcpu[1][0]) * cpus * G.softirqcpu_nr);
711
712 write_stats(0);
713
714 /* And we're done */
715 return;
716 }
717
718 /* Set a handler for SIGALRM */
719 alarm_handler(0);
720
721 /* Save the stats we already have. We need them to compute the average */
722 G.timestamp[2] = G.timestamp[0];
723 G.global_uptime[2] = G.global_uptime[0];
724 G.per_cpu_uptime[2] = G.per_cpu_uptime[0];
725 cpus = G.cpu_nr + 1;
726 memcpy(G.st_cpu[2], G.st_cpu[0], sizeof(G.st_cpu[0][0]) * cpus);
727 memcpy(G.st_irq[2], G.st_irq[0], sizeof(G.st_irq[0][0]) * cpus);
728 memcpy(G.st_irqcpu[2], G.st_irqcpu[0], sizeof(G.st_irqcpu[0][0]) * cpus * G.irqcpu_nr);
729 if (display_opt(D_SOFTIRQS)) {
730 memcpy(G.st_softirqcpu[2], G.st_softirqcpu[0],
731 sizeof(G.st_softirqcpu[0][0]) * cpus * G.softirqcpu_nr);
732 }
733
734 current = 1;
735 while (1) {
736 /* Suspend until a signal is received */
737 pause();
738
739 /* Set structures to 0 to distinguish off/online CPUs */
740 memset(&G.st_cpu[current][/*cpu:*/ 1], 0, sizeof(G.st_cpu[0][0]) * G.cpu_nr);
741
742 get_localtime(&G.timestamp[current]);
743
744 /* Read stats */
745 if (G.cpu_nr > 1) {
746 G.per_cpu_uptime[current] = 0;
747 get_uptime(&G.per_cpu_uptime[current]);
748 }
749 get_cpu_statistics(G.st_cpu[current], &G.global_uptime[current], &G.per_cpu_uptime[current]);
750
751 if (display_opt(D_IRQ_SUM))
752 get_irqs_from_stat(G.st_irq[current]);
753
Denys Vlasenko3fb4a5e2010-07-30 13:55:35 +0200754 if (display_opt(D_IRQ_SUM | D_IRQ_CPU)) {
755 int cpu;
756 for (cpu = 1; cpu <= G.cpu_nr; cpu++) {
757 G.st_irq[current][cpu].irq_nr = 0;
758 }
759 /* accumulates .irq_nr */
Marek Polacek23e8c082010-07-21 10:29:07 +0200760 get_irqs_from_interrupts(PROCFS_INTERRUPTS, G.st_irqcpu,
761 G.irqcpu_nr, current);
Denys Vlasenko3fb4a5e2010-07-30 13:55:35 +0200762 }
Marek Polacek23e8c082010-07-21 10:29:07 +0200763
764 if (display_opt(D_SOFTIRQS))
765 get_irqs_from_interrupts(PROCFS_SOFTIRQS,
766 G.st_softirqcpu,
767 G.softirqcpu_nr, current);
768
769 write_stats(current);
770
771 if (G.count > 0) {
772 if (--G.count == 0)
773 break;
774 }
775
776 current ^= 1;
777 }
778
779 /* Print average statistics */
780 write_stats_avg(current);
781}
782
783/* Initialization */
784
785/* Get number of clock ticks per sec */
786static ALWAYS_INLINE unsigned get_hz(void)
787{
788 return sysconf(_SC_CLK_TCK);
789}
790
791static void alloc_struct(int cpus)
792{
793 int i;
794 for (i = 0; i < 3; i++) {
795 G.st_cpu[i] = xzalloc(sizeof(G.st_cpu[i][0]) * cpus);
796 G.st_irq[i] = xzalloc(sizeof(G.st_irq[i][0]) * cpus);
797 G.st_irqcpu[i] = xzalloc(sizeof(G.st_irqcpu[i][0]) * cpus * G.irqcpu_nr);
798 G.st_softirqcpu[i] = xzalloc(sizeof(G.st_softirqcpu[i][0]) * cpus * G.softirqcpu_nr);
799 }
800 G.cpu_bitmap_len = (cpus >> 3) + 1;
801 G.cpu_bitmap = xzalloc(G.cpu_bitmap_len);
802}
803
804static void print_header(struct tm *t)
805{
806 char cur_date[16];
807 struct utsname uts;
808
809 /* Get system name, release number and hostname */
810 uname(&uts);
811
812 strftime(cur_date, sizeof(cur_date), "%x", t);
813
Denys Vlasenko217df6e2010-07-21 11:54:33 +0200814 printf("%s %s (%s)\t%s\t_%s_\t(%u CPU)\n",
Marek Polacek23e8c082010-07-21 10:29:07 +0200815 uts.sysname, uts.release, uts.nodename, cur_date, uts.machine, G.cpu_nr);
816}
817
818/*
819 * Get number of processors in /sys
820 */
821static int get_sys_cpu_nr(void)
822{
823 DIR *dir;
824 struct dirent *d;
825 struct stat buf;
826 char line[MAX_PF_NAME];
827 int proc_nr = 0;
828
829 dir = opendir(SYSFS_DEVCPU);
830 if (!dir)
831 return 0; /* /sys not mounted */
832
833 /* Get current file entry */
834 while ((d = readdir(dir)) != NULL) {
835 if (starts_with_cpu(d->d_name) && isdigit(d->d_name[3])) {
836 snprintf(line, MAX_PF_NAME, "%s/%s", SYSFS_DEVCPU,
837 d->d_name);
838 line[MAX_PF_NAME - 1] = '\0';
839 /* Get information about file */
840 if (stat(line, &buf) < 0)
841 continue;
842 /* If found 'cpuN', we have one more processor */
843 if (S_ISDIR(buf.st_mode))
844 proc_nr++;
845 }
846 }
847
848 closedir(dir);
849 return proc_nr;
850}
851
852/*
853 * Get number of processors in /proc/stat
854 * Return value '0' means one CPU and non SMP kernel.
855 * Otherwise N means N processor(s) and SMP kernel.
856 */
857static int get_proc_cpu_nr(void)
858{
859 FILE *fp;
860 char line[256];
861 int proc_nr = -1;
862
863 fp = xfopen_for_read(PROCFS_STAT);
864 while (fgets(line, sizeof(line), fp)) {
865 if (!starts_with_cpu(line)) {
866 if (proc_nr >= 0)
867 break; /* we are past "cpuN..." lines */
868 continue;
869 }
870 if (line[3] != ' ') { /* "cpuN" */
871 int num_proc;
872 if (sscanf(line + 3, "%u", &num_proc) == 1
873 && num_proc > proc_nr
874 ) {
875 proc_nr = num_proc;
876 }
877 }
878 }
879
880 fclose(fp);
881 return proc_nr + 1;
882}
883
884static int get_cpu_nr(void)
885{
886 int n;
887
888 /* Try to use /sys, if possible */
889 n = get_sys_cpu_nr();
890 if (n == 0)
891 /* Otherwise use /proc/stat */
892 n = get_proc_cpu_nr();
893
894 return n;
895}
896
897/*
898 * Get number of interrupts available per processor
899 */
900static int get_irqcpu_nr(const char *f, int max_irqs)
901{
902 FILE *fp;
903 char *line;
904 unsigned linelen;
905 unsigned irq;
906
907 fp = fopen_for_read(f);
908 if (!fp) /* No interrupts file */
909 return 0;
910
911 linelen = INTERRUPTS_LINE + 16 * G.cpu_nr;
912 line = xmalloc(linelen);
913
914 irq = 0;
915 while (fgets(line, linelen, fp)
916 && irq < max_irqs
917 ) {
918 int p = strcspn(line, ":");
919 if ((p > 0) && (p < 16))
920 irq++;
921 }
922
923 fclose(fp);
924 free(line);
925
926 return irq;
927}
928
929//usage:#define mpstat_trivial_usage
930//usage: "[-A] [-I SUM|CPU|ALL|SCPU] [-u] [-P num|ALL] [INTERVAL [COUNT]]"
931//usage:#define mpstat_full_usage "\n\n"
932//usage: "Per-processor statistics\n"
933//usage: "\nOptions:"
934//usage: "\n -A Same as -I ALL -u -P ALL"
935//usage: "\n -I SUM|CPU|ALL|SCPU Report interrupt statistics"
936//usage: "\n -P num|ALL Processor to monitor"
937//usage: "\n -u Report CPU utilization"
938
939int mpstat_main(int argc, char **argv) MAIN_EXTERNALLY_VISIBLE;
940int mpstat_main(int UNUSED_PARAM argc, char **argv)
941{
942 char *opt_irq_fmt;
943 char *opt_set_cpu;
944 int i, opt;
945 enum {
946 OPT_ALL = 1 << 0, /* -A */
947 OPT_INTS = 1 << 1, /* -I */
948 OPT_SETCPU = 1 << 2, /* -P */
949 OPT_UTIL = 1 << 3, /* -u */
950 };
951
952 /* Dont buffer data if redirected to a pipe */
953 setbuf(stdout, NULL);
954
955 INIT_G();
956
957 G.interval = -1;
958
959 /* Get number of processors */
960 G.cpu_nr = get_cpu_nr();
961
962 /* Get number of clock ticks per sec */
963 G.hz = get_hz();
964
965 /* Calculate number of interrupts per processor */
966 G.irqcpu_nr = get_irqcpu_nr(PROCFS_INTERRUPTS, NR_IRQS) + NR_IRQCPU_PREALLOC;
967
968 /* Calculate number of soft interrupts per processor */
969 G.softirqcpu_nr = get_irqcpu_nr(PROCFS_SOFTIRQS, NR_IRQS) + NR_IRQCPU_PREALLOC;
970
971 /* Allocate space for structures. + 1 for global structure. */
972 alloc_struct(G.cpu_nr + 1);
973
974 /* Parse and process arguments */
975 opt = getopt32(argv, "AI:P:u", &opt_irq_fmt, &opt_set_cpu);
976 argv += optind;
977
978 if (*argv) {
979 /* Get interval */
980 G.interval = xatoi_u(*argv);
981 G.count = -1;
982 argv++;
983 if (*argv) {
984 /* Get count value */
985 if (G.interval == 0)
986 bb_show_usage();
987 G.count = xatoi_u(*argv);
988 //if (*++argv)
989 // bb_show_usage();
990 }
991 }
992 if (G.interval < 0)
993 G.interval = 0;
994
995 if (opt & OPT_ALL) {
996 G.p_option = 1;
997 G.options |= D_CPU + D_IRQ_SUM + D_IRQ_CPU + D_SOFTIRQS;
998 /* Select every CPU */
999 memset(G.cpu_bitmap, 0xff, G.cpu_bitmap_len);
1000 }
1001
1002 if (opt & OPT_INTS) {
Maksym Kryzhanovskyy5e87c2e2010-07-30 03:56:02 +02001003 static const char v[] = {
1004 D_IRQ_CPU, D_IRQ_SUM, D_SOFTIRQS,
1005 D_IRQ_SUM + D_IRQ_CPU + D_SOFTIRQS
1006 };
1007 i = index_in_strings("CPU\0SUM\0SCPU\0ALL\0", opt_irq_fmt);
1008 if (i == -1)
Marek Polacek23e8c082010-07-21 10:29:07 +02001009 bb_show_usage();
Maksym Kryzhanovskyy5e87c2e2010-07-30 03:56:02 +02001010 G.options |= v[i];
Marek Polacek23e8c082010-07-21 10:29:07 +02001011 }
1012
1013 if ((opt & OPT_UTIL) /* -u? */
1014 || G.options == 0 /* nothing? (use default then) */
1015 ) {
1016 G.options |= D_CPU;
1017 }
1018
1019 if (opt & OPT_SETCPU) {
1020 char *t;
1021 G.p_option = 1;
1022
1023 for (t = strtok(opt_set_cpu, ","); t; t = strtok(NULL, ",")) {
1024 if (strcmp(t, "ALL") == 0) {
1025 /* Select every CPU */
1026 memset(G.cpu_bitmap, 0xff, G.cpu_bitmap_len);
1027 } else {
1028 /* Get CPU number */
1029 unsigned n = xatoi_u(t);
1030 if (n >= G.cpu_nr)
1031 bb_error_msg_and_die("not that many processors");
1032 n++;
1033 G.cpu_bitmap[n >> 3] |= 1 << (n & 7);
1034 }
1035 }
1036 }
1037
1038 if (!G.p_option)
1039 /* Display global stats */
1040 G.cpu_bitmap[0] = 1;
1041
1042 /* Get time */
1043 get_localtime(&G.timestamp[0]);
1044
1045 /* Display header */
1046 print_header(&G.timestamp[0]);
1047
1048 /* The main loop */
1049 main_loop();
1050
1051 if (ENABLE_FEATURE_CLEAN_UP) {
1052 /* Clean up */
1053 for (i = 0; i < 3; i++) {
1054 free(G.st_cpu[i]);
1055 free(G.st_irq[i]);
1056 free(G.st_irqcpu[i]);
1057 free(G.st_softirqcpu[i]);
1058 }
1059 free(G.cpu_bitmap);
1060 free(&G);
1061 }
1062
1063 return EXIT_SUCCESS;
1064}