1 /**
2 * collectd - src/disk.c
3 * Copyright (C) 2005-2012 Florian octo Forster
4 * Copyright (C) 2009 Manuel Sanmartin
5 *
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms of the GNU General Public License as published by the
8 * Free Software Foundation; only version 2 of the License is applicable.
9 *
10 * This program is distributed in the hope that it will be useful, but
11 * WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 * General Public License for more details.
14 *
15 * You should have received a copy of the GNU General Public License along
16 * with this program; if not, write to the Free Software Foundation, Inc.,
17 * 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
18 *
19 * Authors:
20 * Florian octo Forster <octo at collectd.org>
21 * Manuel Sanmartin
22 **/
24 #include "collectd.h"
25 #include "common.h"
26 #include "plugin.h"
27 #include "utils_ignorelist.h"
29 #if HAVE_MACH_MACH_TYPES_H
30 # include <mach/mach_types.h>
31 #endif
32 #if HAVE_MACH_MACH_INIT_H
33 # include <mach/mach_init.h>
34 #endif
35 #if HAVE_MACH_MACH_ERROR_H
36 # include <mach/mach_error.h>
37 #endif
38 #if HAVE_MACH_MACH_PORT_H
39 # include <mach/mach_port.h>
40 #endif
41 #if HAVE_COREFOUNDATION_COREFOUNDATION_H
42 # include <CoreFoundation/CoreFoundation.h>
43 #endif
44 #if HAVE_IOKIT_IOKITLIB_H
45 # include <IOKit/IOKitLib.h>
46 #endif
47 #if HAVE_IOKIT_IOTYPES_H
48 # include <IOKit/IOTypes.h>
49 #endif
50 #if HAVE_IOKIT_STORAGE_IOBLOCKSTORAGEDRIVER_H
51 # include <IOKit/storage/IOBlockStorageDriver.h>
52 #endif
53 #if HAVE_IOKIT_IOBSD_H
54 # include <IOKit/IOBSD.h>
55 #endif
56 #if KERNEL_FREEBSD
57 #include <devstat.h>
58 #include <libgeom.h>
59 #endif
61 #if HAVE_LIMITS_H
62 # include <limits.h>
63 #endif
64 #ifndef UINT_MAX
65 # define UINT_MAX 4294967295U
66 #endif
68 #if HAVE_STATGRAB_H
69 # include <statgrab.h>
70 #endif
72 #if HAVE_PERFSTAT
73 # ifndef _AIXVERSION_610
74 # include <sys/systemcfg.h>
75 # endif
76 # include <sys/protosw.h>
77 # include <libperfstat.h>
78 #endif
80 #if HAVE_IOKIT_IOKITLIB_H
81 static mach_port_t io_master_port = MACH_PORT_NULL;
82 /* This defaults to false for backwards compatibility. Please fix in the next
83 * major version. */
84 static _Bool use_bsd_name = 0;
85 /* #endif HAVE_IOKIT_IOKITLIB_H */
87 #elif KERNEL_LINUX
88 typedef struct diskstats
89 {
90 char *name;
92 /* This overflows in roughly 1361 years */
93 unsigned int poll_count;
95 derive_t read_sectors;
96 derive_t write_sectors;
98 derive_t read_bytes;
99 derive_t write_bytes;
101 derive_t read_ops;
102 derive_t write_ops;
103 derive_t read_time;
104 derive_t write_time;
106 derive_t avg_read_time;
107 derive_t avg_write_time;
109 struct diskstats *next;
110 } diskstats_t;
112 static diskstats_t *disklist;
113 /* #endif KERNEL_LINUX */
114 #elif KERNEL_FREEBSD
115 static struct gmesh geom_tree;
116 /* #endif KERNEL_FREEBSD */
118 #elif HAVE_LIBKSTAT
119 #define MAX_NUMDISK 1024
120 extern kstat_ctl_t *kc;
121 static kstat_t *ksp[MAX_NUMDISK];
122 static int numdisk = 0;
123 /* #endif HAVE_LIBKSTAT */
125 #elif defined(HAVE_LIBSTATGRAB)
126 /* #endif HAVE_LIBKSTATGRAB */
128 #elif HAVE_PERFSTAT
129 static perfstat_disk_t * stat_disk;
130 static int numdisk;
131 static int pnumdisk;
132 /* #endif HAVE_PERFSTAT */
134 #else
135 # error "No applicable input method."
136 #endif
138 #if HAVE_LIBUDEV
139 #include <libudev.h>
141 static char *conf_udev_name_attr = NULL;
142 static struct udev *handle_udev;
143 #endif
145 static const char *config_keys[] =
146 {
147 "Disk",
148 "UseBSDName",
149 "IgnoreSelected",
150 "UdevNameAttr"
151 };
152 static int config_keys_num = STATIC_ARRAY_SIZE (config_keys);
154 static ignorelist_t *ignorelist = NULL;
156 static int disk_config (const char *key, const char *value)
157 {
158 if (ignorelist == NULL)
159 ignorelist = ignorelist_create (/* invert = */ 1);
160 if (ignorelist == NULL)
161 return (1);
163 if (strcasecmp ("Disk", key) == 0)
164 {
165 ignorelist_add (ignorelist, value);
166 }
167 else if (strcasecmp ("IgnoreSelected", key) == 0)
168 {
169 int invert = 1;
170 if (IS_TRUE (value))
171 invert = 0;
172 ignorelist_set_invert (ignorelist, invert);
173 }
174 else if (strcasecmp ("UseBSDName", key) == 0)
175 {
176 #if HAVE_IOKIT_IOKITLIB_H
177 use_bsd_name = IS_TRUE (value) ? 1 : 0;
178 #else
179 WARNING ("disk plugin: The \"UseBSDName\" option is only supported "
180 "on Mach / Mac OS X and will be ignored.");
181 #endif
182 }
183 else if (strcasecmp ("UdevNameAttr", key) == 0)
184 {
185 #if HAVE_LIBUDEV
186 if (conf_udev_name_attr != NULL)
187 {
188 free (conf_udev_name_attr);
189 conf_udev_name_attr = NULL;
190 }
191 if ((conf_udev_name_attr = strdup (value)) == NULL)
192 return (1);
193 #else
194 WARNING ("disk plugin: The \"UdevNameAttr\" option is only supported "
195 "if collectd is built with libudev support");
196 #endif
197 }
198 else
199 {
200 return (-1);
201 }
203 return (0);
204 } /* int disk_config */
206 static int disk_init (void)
207 {
208 #if HAVE_IOKIT_IOKITLIB_H
209 kern_return_t status;
211 if (io_master_port != MACH_PORT_NULL)
212 {
213 mach_port_deallocate (mach_task_self (),
214 io_master_port);
215 io_master_port = MACH_PORT_NULL;
216 }
218 status = IOMasterPort (MACH_PORT_NULL, &io_master_port);
219 if (status != kIOReturnSuccess)
220 {
221 ERROR ("IOMasterPort failed: %s",
222 mach_error_string (status));
223 io_master_port = MACH_PORT_NULL;
224 return (-1);
225 }
226 /* #endif HAVE_IOKIT_IOKITLIB_H */
228 #elif KERNEL_LINUX
229 /* do nothing */
230 /* #endif KERNEL_LINUX */
232 #elif KERNEL_FREEBSD
233 int rv;
235 rv = geom_gettree(&geom_tree);
236 if (rv != 0) {
237 ERROR ("geom_gettree() failed, returned %d", rv);
238 return (-1);
239 }
240 rv = geom_stats_open();
241 if (rv != 0) {
242 ERROR ("geom_stats_open() failed, returned %d", rv);
243 return (-1);
244 }
245 /* #endif KERNEL_FREEBSD */
247 #elif HAVE_LIBKSTAT
248 kstat_t *ksp_chain;
250 numdisk = 0;
252 if (kc == NULL)
253 return (-1);
255 for (numdisk = 0, ksp_chain = kc->kc_chain;
256 (numdisk < MAX_NUMDISK) && (ksp_chain != NULL);
257 ksp_chain = ksp_chain->ks_next)
258 {
259 if (strncmp (ksp_chain->ks_class, "disk", 4)
260 && strncmp (ksp_chain->ks_class, "partition", 9))
261 continue;
262 if (ksp_chain->ks_type != KSTAT_TYPE_IO)
263 continue;
264 ksp[numdisk++] = ksp_chain;
265 }
266 #endif /* HAVE_LIBKSTAT */
268 return (0);
269 } /* int disk_init */
271 static void disk_submit (const char *plugin_instance,
272 const char *type,
273 derive_t read, derive_t write)
274 {
275 value_t values[2];
276 value_list_t vl = VALUE_LIST_INIT;
278 /* Both `ignorelist' and `plugin_instance' may be NULL. */
279 if (ignorelist_match (ignorelist, plugin_instance) != 0)
280 return;
282 values[0].derive = read;
283 values[1].derive = write;
285 vl.values = values;
286 vl.values_len = 2;
287 sstrncpy (vl.host, hostname_g, sizeof (vl.host));
288 sstrncpy (vl.plugin, "disk", sizeof (vl.plugin));
289 sstrncpy (vl.plugin_instance, plugin_instance,
290 sizeof (vl.plugin_instance));
291 sstrncpy (vl.type, type, sizeof (vl.type));
293 plugin_dispatch_values (&vl);
294 } /* void disk_submit */
296 #if KERNEL_FREEBSD || KERNEL_LINUX
297 static void submit_io_time (char const *plugin_instance, derive_t io_time, derive_t weighted_time)
298 {
299 value_t values[2];
300 value_list_t vl = VALUE_LIST_INIT;
302 if (ignorelist_match (ignorelist, plugin_instance) != 0)
303 return;
305 values[0].derive = io_time;
306 values[1].derive = weighted_time;
308 vl.values = values;
309 vl.values_len = 2;
310 sstrncpy (vl.host, hostname_g, sizeof (vl.host));
311 sstrncpy (vl.plugin, "disk", sizeof (vl.plugin));
312 sstrncpy (vl.plugin_instance, plugin_instance, sizeof (vl.plugin_instance));
313 sstrncpy (vl.type, "disk_io_time", sizeof (vl.type));
315 plugin_dispatch_values (&vl);
316 } /* void submit_io_time */
317 #endif /* KERNEL_FREEBSD || KERNEL_LINUX */
319 #if KERNEL_LINUX
320 static void submit_in_progress (char const *disk_name, gauge_t in_progress)
321 {
322 value_t v;
323 value_list_t vl = VALUE_LIST_INIT;
325 if (ignorelist_match (ignorelist, disk_name) != 0)
326 return;
328 v.gauge = in_progress;
330 vl.values = &v;
331 vl.values_len = 1;
332 sstrncpy (vl.host, hostname_g, sizeof (vl.host));
333 sstrncpy (vl.plugin, "disk", sizeof (vl.plugin));
334 sstrncpy (vl.plugin_instance, disk_name, sizeof (vl.plugin_instance));
335 sstrncpy (vl.type, "pending_operations", sizeof (vl.type));
337 plugin_dispatch_values (&vl);
338 }
341 static counter_t disk_calc_time_incr (counter_t delta_time, counter_t delta_ops)
342 {
343 double interval = CDTIME_T_TO_DOUBLE (plugin_get_interval ());
344 double avg_time = ((double) delta_time) / ((double) delta_ops);
345 double avg_time_incr = interval * avg_time;
347 return ((counter_t) (avg_time_incr + .5));
348 }
349 #endif
351 #if HAVE_LIBUDEV
352 /**
353 * Attempt to provide an rename disk instance from an assigned udev attribute.
354 *
355 * On success, it returns a strduped char* to the desired attribute value.
356 * Otherwise it returns NULL.
357 */
359 static char *disk_udev_attr_name (struct udev *udev, char *disk_name, const char *attr)
360 {
361 struct udev_device *dev;
362 const char *prop;
363 char *output = NULL;
365 dev = udev_device_new_from_subsystem_sysname (udev, "block", disk_name);
366 if (dev != NULL)
367 {
368 prop = udev_device_get_property_value (dev, attr);
369 if (prop) {
370 output = strdup (prop);
371 DEBUG ("disk plugin: renaming %s => %s", disk_name, output);
372 }
373 udev_device_unref (dev);
374 }
375 return output;
376 }
377 #endif
379 #if HAVE_IOKIT_IOKITLIB_H
380 static signed long long dict_get_value (CFDictionaryRef dict, const char *key)
381 {
382 signed long long val_int;
383 CFNumberRef val_obj;
384 CFStringRef key_obj;
386 /* `key_obj' needs to be released. */
387 key_obj = CFStringCreateWithCString (kCFAllocatorDefault, key,
388 kCFStringEncodingASCII);
389 if (key_obj == NULL)
390 {
391 DEBUG ("CFStringCreateWithCString (%s) failed.", key);
392 return (-1LL);
393 }
395 /* get => we don't need to release (== free) the object */
396 val_obj = (CFNumberRef) CFDictionaryGetValue (dict, key_obj);
398 CFRelease (key_obj);
400 if (val_obj == NULL)
401 {
402 DEBUG ("CFDictionaryGetValue (%s) failed.", key);
403 return (-1LL);
404 }
406 if (!CFNumberGetValue (val_obj, kCFNumberSInt64Type, &val_int))
407 {
408 DEBUG ("CFNumberGetValue (%s) failed.", key);
409 return (-1LL);
410 }
412 return (val_int);
413 }
414 #endif /* HAVE_IOKIT_IOKITLIB_H */
416 static int disk_read (void)
417 {
418 #if HAVE_IOKIT_IOKITLIB_H
419 io_registry_entry_t disk;
420 io_registry_entry_t disk_child;
421 io_iterator_t disk_list;
422 CFMutableDictionaryRef props_dict, child_dict;
423 CFDictionaryRef stats_dict;
424 CFStringRef tmp_cf_string_ref;
425 kern_return_t status;
427 signed long long read_ops, read_byt, read_tme;
428 signed long long write_ops, write_byt, write_tme;
430 int disk_major, disk_minor;
431 char disk_name[DATA_MAX_NAME_LEN];
432 char child_disk_name_bsd[DATA_MAX_NAME_LEN], props_disk_name_bsd[DATA_MAX_NAME_LEN];
434 /* Get the list of all disk objects. */
435 if (IOServiceGetMatchingServices (io_master_port, IOServiceMatching (kIOBlockStorageDriverClass), &disk_list) != kIOReturnSuccess) {
436 ERROR ("disk plugin: IOServiceGetMatchingServices failed.");
437 return (-1);
438 }
440 while ((disk = IOIteratorNext (disk_list)) != 0) {
441 props_dict = NULL;
442 stats_dict = NULL;
443 child_dict = NULL;
445 /* get child of disk entry and corresponding property dictionary */
446 if ((status = IORegistryEntryGetChildEntry (disk, kIOServicePlane, &disk_child)) != kIOReturnSuccess) {
447 /* This fails for example for DVD/CD drives, which we want to ignore anyway */
448 DEBUG ("IORegistryEntryGetChildEntry (disk) failed: 0x%08x", status);
449 IOObjectRelease (disk);
450 continue;
451 }
452 if (IORegistryEntryCreateCFProperties (disk_child, (CFMutableDictionaryRef *) &child_dict, kCFAllocatorDefault, kNilOptions) != kIOReturnSuccess || child_dict == NULL) {
453 ERROR ("disk plugin: IORegistryEntryCreateCFProperties (disk_child) failed.");
454 IOObjectRelease (disk_child);
455 IOObjectRelease (disk);
456 continue;
457 }
459 /* extract name and major/minor numbers */
460 memset (child_disk_name_bsd, 0, sizeof (child_disk_name_bsd));
461 tmp_cf_string_ref = (CFStringRef) CFDictionaryGetValue (child_dict, CFSTR(kIOBSDNameKey));
462 if (tmp_cf_string_ref) {
463 assert (CFGetTypeID (tmp_cf_string_ref) == CFStringGetTypeID ());
464 CFStringGetCString (tmp_cf_string_ref, child_disk_name_bsd, sizeof (child_disk_name_bsd), kCFStringEncodingUTF8);
465 }
466 disk_major = (int) dict_get_value (child_dict, kIOBSDMajorKey);
467 disk_minor = (int) dict_get_value (child_dict, kIOBSDMinorKey);
468 DEBUG ("disk plugin: child_disk_name_bsd=\"%s\" major=%d minor=%d", child_disk_name_bsd, disk_major, disk_minor);
469 CFRelease (child_dict);
470 IOObjectRelease (disk_child);
472 /* get property dictionary of the disk entry itself */
473 if (IORegistryEntryCreateCFProperties (disk, (CFMutableDictionaryRef *) &props_dict, kCFAllocatorDefault, kNilOptions) != kIOReturnSuccess || props_dict == NULL) {
474 ERROR ("disk-plugin: IORegistryEntryCreateCFProperties failed.");
475 IOObjectRelease (disk);
476 continue;
477 }
479 /* extract name and stats dictionary */
480 memset (props_disk_name_bsd, 0, sizeof (props_disk_name_bsd));
481 tmp_cf_string_ref = (CFStringRef) CFDictionaryGetValue (props_dict, CFSTR(kIOBSDNameKey));
482 if (tmp_cf_string_ref) {
483 assert (CFGetTypeID (tmp_cf_string_ref) == CFStringGetTypeID ());
484 CFStringGetCString (tmp_cf_string_ref, props_disk_name_bsd, sizeof (props_disk_name_bsd), kCFStringEncodingUTF8);
485 }
486 stats_dict = (CFDictionaryRef) CFDictionaryGetValue (props_dict, CFSTR (kIOBlockStorageDriverStatisticsKey));
487 if (stats_dict == NULL) {
488 ERROR ("disk plugin: CFDictionaryGetValue (%s) failed.", kIOBlockStorageDriverStatisticsKey);
489 CFRelease (props_dict);
490 IOObjectRelease (disk);
491 continue;
492 }
493 DEBUG ("disk plugin: props_disk_name_bsd=\"%s\"", props_disk_name_bsd);
495 /* choose name */
496 if (use_bsd_name) {
497 if (child_disk_name_bsd[0] != 0)
498 sstrncpy (disk_name, child_disk_name_bsd, sizeof (disk_name));
499 else if (props_disk_name_bsd[0] != 0)
500 sstrncpy (disk_name, props_disk_name_bsd, sizeof (disk_name));
501 else {
502 ERROR ("disk plugin: can't find bsd disk name.");
503 ssnprintf (disk_name, sizeof (disk_name), "%i-%i", disk_major, disk_minor);
504 }
505 }
506 else
507 ssnprintf (disk_name, sizeof (disk_name), "%i-%i", disk_major, disk_minor);
509 /* extract the stats */
510 read_ops = dict_get_value (stats_dict, kIOBlockStorageDriverStatisticsReadsKey);
511 read_byt = dict_get_value (stats_dict, kIOBlockStorageDriverStatisticsBytesReadKey);
512 read_tme = dict_get_value (stats_dict, kIOBlockStorageDriverStatisticsTotalReadTimeKey);
513 write_ops = dict_get_value (stats_dict, kIOBlockStorageDriverStatisticsWritesKey);
514 write_byt = dict_get_value (stats_dict, kIOBlockStorageDriverStatisticsBytesWrittenKey);
515 write_tme = dict_get_value (stats_dict, kIOBlockStorageDriverStatisticsTotalWriteTimeKey);
516 CFRelease (props_dict);
517 IOObjectRelease (disk);
519 /* and submit */
520 DEBUG ("disk plugin: disk_name = \"%s\"", disk_name);
521 if ((read_byt != -1LL) || (write_byt != -1LL))
522 disk_submit (disk_name, "disk_octets", read_byt, write_byt);
523 if ((read_ops != -1LL) || (write_ops != -1LL))
524 disk_submit (disk_name, "disk_ops", read_ops, write_ops);
525 if ((read_tme != -1LL) || (write_tme != -1LL))
526 disk_submit (disk_name, "disk_time", read_tme / 1000, write_tme / 1000);
528 }
529 IOObjectRelease (disk_list);
530 /* #endif HAVE_IOKIT_IOKITLIB_H */
532 #elif KERNEL_FREEBSD
533 int retry, dirty;
535 void *snap = NULL;
536 struct devstat *snap_iter;
538 struct gident *geom_id;
540 const char *disk_name;
541 long double read_time, write_time, busy_time, total_duration;
543 for (retry = 0, dirty = 1; retry < 5 && dirty == 1; retry++) {
544 if (snap != NULL)
545 geom_stats_snapshot_free(snap);
547 /* Get a fresh copy of stats snapshot */
548 snap = geom_stats_snapshot_get();
549 if (snap == NULL) {
550 ERROR("disk plugin: geom_stats_snapshot_get() failed.");
551 return (-1);
552 }
554 /* Check if we have dirty read from this snapshot */
555 dirty = 0;
556 geom_stats_snapshot_reset(snap);
557 while ((snap_iter = geom_stats_snapshot_next(snap)) != NULL) {
558 if (snap_iter->id == NULL)
559 continue;
560 geom_id = geom_lookupid(&geom_tree, snap_iter->id);
562 /* New device? refresh GEOM tree */
563 if (geom_id == NULL) {
564 geom_deletetree(&geom_tree);
565 if (geom_gettree(&geom_tree) != 0) {
566 ERROR("disk plugin: geom_gettree() failed");
567 geom_stats_snapshot_free(snap);
568 return (-1);
569 }
570 geom_id = geom_lookupid(&geom_tree, snap_iter->id);
571 }
572 /*
573 * This should be rare: the device come right before we take the
574 * snapshot and went away right after it. We will handle this
575 * case later, so don't mark dirty but silently ignore it.
576 */
577 if (geom_id == NULL)
578 continue;
580 /* Only collect PROVIDER data */
581 if (geom_id->lg_what != ISPROVIDER)
582 continue;
584 /* Only collect data when rank is 1 (physical devices) */
585 if (((struct gprovider *)(geom_id->lg_ptr))->lg_geom->lg_rank != 1)
586 continue;
588 /* Check if this is a dirty read quit for another try */
589 if (snap_iter->sequence0 != snap_iter->sequence1) {
590 dirty = 1;
591 break;
592 }
593 }
594 }
596 /* Reset iterator */
597 geom_stats_snapshot_reset(snap);
598 for (;;) {
599 snap_iter = geom_stats_snapshot_next(snap);
600 if (snap_iter == NULL)
601 break;
603 if (snap_iter->id == NULL)
604 continue;
605 geom_id = geom_lookupid(&geom_tree, snap_iter->id);
606 if (geom_id == NULL)
607 continue;
608 if (geom_id->lg_what != ISPROVIDER)
609 continue;
610 if (((struct gprovider *)(geom_id->lg_ptr))->lg_geom->lg_rank != 1)
611 continue;
612 /* Skip dirty reads, if present */
613 if (dirty && (snap_iter->sequence0 != snap_iter->sequence1))
614 continue;
616 disk_name = ((struct gprovider *)geom_id->lg_ptr)->lg_name;
618 if ((snap_iter->bytes[DEVSTAT_READ] != 0) || (snap_iter->bytes[DEVSTAT_WRITE] != 0)) {
619 disk_submit(disk_name, "disk_octets",
620 (derive_t)snap_iter->bytes[DEVSTAT_READ],
621 (derive_t)snap_iter->bytes[DEVSTAT_WRITE]);
622 }
624 if ((snap_iter->operations[DEVSTAT_READ] != 0) || (snap_iter->operations[DEVSTAT_WRITE] != 0)) {
625 disk_submit(disk_name, "disk_ops",
626 (derive_t)snap_iter->operations[DEVSTAT_READ],
627 (derive_t)snap_iter->operations[DEVSTAT_WRITE]);
628 }
630 read_time = devstat_compute_etime(&snap_iter->duration[DEVSTAT_READ], NULL);
631 write_time = devstat_compute_etime(&snap_iter->duration[DEVSTAT_WRITE], NULL);
632 if ((read_time != 0) || (write_time != 0)) {
633 disk_submit (disk_name, "disk_time",
634 (derive_t)(read_time*1000), (derive_t)(write_time*1000));
635 }
636 if (devstat_compute_statistics(snap_iter, NULL, 1.0,
637 DSM_TOTAL_BUSY_TIME, &busy_time,
638 DSM_TOTAL_DURATION, &total_duration,
639 DSM_NONE) != 0) {
640 WARNING("%s", devstat_errbuf);
641 }
642 else
643 {
644 submit_io_time(disk_name, busy_time, total_duration);
645 }
646 }
647 geom_stats_snapshot_free(snap);
649 #elif KERNEL_LINUX
650 FILE *fh;
651 char buffer[1024];
653 char *fields[32];
654 int numfields;
655 int fieldshift = 0;
657 int minor = 0;
659 derive_t read_sectors = 0;
660 derive_t write_sectors = 0;
662 derive_t read_ops = 0;
663 derive_t read_merged = 0;
664 derive_t read_time = 0;
665 derive_t write_ops = 0;
666 derive_t write_merged = 0;
667 derive_t write_time = 0;
668 gauge_t in_progress = NAN;
669 derive_t io_time = 0;
670 derive_t weighted_time = 0;
671 int is_disk = 0;
673 diskstats_t *ds, *pre_ds;
675 if ((fh = fopen ("/proc/diskstats", "r")) == NULL)
676 {
677 fh = fopen ("/proc/partitions", "r");
678 if (fh == NULL)
679 {
680 ERROR ("disk plugin: fopen (/proc/{diskstats,partitions}) failed.");
681 return (-1);
682 }
684 /* Kernel is 2.4.* */
685 fieldshift = 1;
686 }
688 #if HAVE_LIBUDEV
689 handle_udev = udev_new();
690 #endif
692 while (fgets (buffer, sizeof (buffer), fh) != NULL)
693 {
694 char *disk_name;
695 char *output_name;
697 numfields = strsplit (buffer, fields, 32);
699 if ((numfields != (14 + fieldshift)) && (numfields != 7))
700 continue;
702 minor = atoll (fields[1]);
704 disk_name = fields[2 + fieldshift];
706 for (ds = disklist, pre_ds = disklist; ds != NULL; pre_ds = ds, ds = ds->next)
707 if (strcmp (disk_name, ds->name) == 0)
708 break;
710 if (ds == NULL)
711 {
712 if ((ds = (diskstats_t *) calloc (1, sizeof (diskstats_t))) == NULL)
713 continue;
715 if ((ds->name = strdup (disk_name)) == NULL)
716 {
717 free (ds);
718 continue;
719 }
721 if (pre_ds == NULL)
722 disklist = ds;
723 else
724 pre_ds->next = ds;
725 }
727 is_disk = 0;
728 if (numfields == 7)
729 {
730 /* Kernel 2.6, Partition */
731 read_ops = atoll (fields[3]);
732 read_sectors = atoll (fields[4]);
733 write_ops = atoll (fields[5]);
734 write_sectors = atoll (fields[6]);
735 }
736 else if (numfields == (14 + fieldshift))
737 {
738 read_ops = atoll (fields[3 + fieldshift]);
739 write_ops = atoll (fields[7 + fieldshift]);
741 read_sectors = atoll (fields[5 + fieldshift]);
742 write_sectors = atoll (fields[9 + fieldshift]);
744 if ((fieldshift == 0) || (minor == 0))
745 {
746 is_disk = 1;
747 read_merged = atoll (fields[4 + fieldshift]);
748 read_time = atoll (fields[6 + fieldshift]);
749 write_merged = atoll (fields[8 + fieldshift]);
750 write_time = atoll (fields[10+ fieldshift]);
752 in_progress = atof (fields[11 + fieldshift]);
754 io_time = atof (fields[12 + fieldshift]);
755 weighted_time = atof (fields[13 + fieldshift]);
756 }
757 }
758 else
759 {
760 DEBUG ("numfields = %i; => unknown file format.", numfields);
761 continue;
762 }
764 {
765 derive_t diff_read_sectors;
766 derive_t diff_write_sectors;
768 /* If the counter wraps around, it's only 32 bits.. */
769 if (read_sectors < ds->read_sectors)
770 diff_read_sectors = 1 + read_sectors
771 + (UINT_MAX - ds->read_sectors);
772 else
773 diff_read_sectors = read_sectors - ds->read_sectors;
774 if (write_sectors < ds->write_sectors)
775 diff_write_sectors = 1 + write_sectors
776 + (UINT_MAX - ds->write_sectors);
777 else
778 diff_write_sectors = write_sectors - ds->write_sectors;
780 ds->read_bytes += 512 * diff_read_sectors;
781 ds->write_bytes += 512 * diff_write_sectors;
782 ds->read_sectors = read_sectors;
783 ds->write_sectors = write_sectors;
784 }
786 /* Calculate the average time an io-op needs to complete */
787 if (is_disk)
788 {
789 derive_t diff_read_ops;
790 derive_t diff_write_ops;
791 derive_t diff_read_time;
792 derive_t diff_write_time;
794 if (read_ops < ds->read_ops)
795 diff_read_ops = 1 + read_ops
796 + (UINT_MAX - ds->read_ops);
797 else
798 diff_read_ops = read_ops - ds->read_ops;
799 DEBUG ("disk plugin: disk_name = %s; read_ops = %"PRIi64"; "
800 "ds->read_ops = %"PRIi64"; diff_read_ops = %"PRIi64";",
801 disk_name,
802 read_ops, ds->read_ops, diff_read_ops);
804 if (write_ops < ds->write_ops)
805 diff_write_ops = 1 + write_ops
806 + (UINT_MAX - ds->write_ops);
807 else
808 diff_write_ops = write_ops - ds->write_ops;
810 if (read_time < ds->read_time)
811 diff_read_time = 1 + read_time
812 + (UINT_MAX - ds->read_time);
813 else
814 diff_read_time = read_time - ds->read_time;
816 if (write_time < ds->write_time)
817 diff_write_time = 1 + write_time
818 + (UINT_MAX - ds->write_time);
819 else
820 diff_write_time = write_time - ds->write_time;
822 if (diff_read_ops != 0)
823 ds->avg_read_time += disk_calc_time_incr (
824 diff_read_time, diff_read_ops);
825 if (diff_write_ops != 0)
826 ds->avg_write_time += disk_calc_time_incr (
827 diff_write_time, diff_write_ops);
829 ds->read_ops = read_ops;
830 ds->read_time = read_time;
831 ds->write_ops = write_ops;
832 ds->write_time = write_time;
833 } /* if (is_disk) */
835 /* Don't write to the RRDs if we've just started.. */
836 ds->poll_count++;
837 if (ds->poll_count <= 2)
838 {
839 DEBUG ("disk plugin: (ds->poll_count = %i) <= "
840 "(min_poll_count = 2); => Not writing.",
841 ds->poll_count);
842 continue;
843 }
845 if ((read_ops == 0) && (write_ops == 0))
846 {
847 DEBUG ("disk plugin: ((read_ops == 0) && "
848 "(write_ops == 0)); => Not writing.");
849 continue;
850 }
852 output_name = disk_name;
854 #if HAVE_LIBUDEV
855 char *alt_name = disk_udev_attr_name (handle_udev, disk_name, conf_udev_name_attr);
856 if (alt_name != NULL)
857 output_name = alt_name;
858 #endif
860 if ((ds->read_bytes != 0) || (ds->write_bytes != 0))
861 disk_submit (output_name, "disk_octets",
862 ds->read_bytes, ds->write_bytes);
864 if ((ds->read_ops != 0) || (ds->write_ops != 0))
865 disk_submit (output_name, "disk_ops",
866 read_ops, write_ops);
868 if ((ds->avg_read_time != 0) || (ds->avg_write_time != 0))
869 disk_submit (output_name, "disk_time",
870 ds->avg_read_time, ds->avg_write_time);
872 if (is_disk)
873 {
874 disk_submit (output_name, "disk_merged",
875 read_merged, write_merged);
876 submit_in_progress (output_name, in_progress);
877 submit_io_time (output_name, io_time, weighted_time);
878 } /* if (is_disk) */
880 #if HAVE_LIBUDEV
881 /* release udev-based alternate name, if allocated */
882 sfree (alt_name);
883 #endif
884 } /* while (fgets (buffer, sizeof (buffer), fh) != NULL) */
886 #if HAVE_LIBUDEV
887 udev_unref(handle_udev);
888 #endif
890 fclose (fh);
891 /* #endif defined(KERNEL_LINUX) */
893 #elif HAVE_LIBKSTAT
894 # if HAVE_KSTAT_IO_T_WRITES && HAVE_KSTAT_IO_T_NWRITES && HAVE_KSTAT_IO_T_WTIME
895 # define KIO_ROCTETS reads
896 # define KIO_WOCTETS writes
897 # define KIO_ROPS nreads
898 # define KIO_WOPS nwrites
899 # define KIO_RTIME rtime
900 # define KIO_WTIME wtime
901 # elif HAVE_KSTAT_IO_T_NWRITTEN && HAVE_KSTAT_IO_T_WRITES && HAVE_KSTAT_IO_T_WTIME
902 # define KIO_ROCTETS nread
903 # define KIO_WOCTETS nwritten
904 # define KIO_ROPS reads
905 # define KIO_WOPS writes
906 # define KIO_RTIME rtime
907 # define KIO_WTIME wtime
908 # else
909 # error "kstat_io_t does not have the required members"
910 # endif
911 static kstat_io_t kio;
912 int i;
914 if (kc == NULL)
915 return (-1);
917 for (i = 0; i < numdisk; i++)
918 {
919 if (kstat_read (kc, ksp[i], &kio) == -1)
920 continue;
922 if (strncmp (ksp[i]->ks_class, "disk", 4) == 0)
923 {
924 disk_submit (ksp[i]->ks_name, "disk_octets",
925 kio.KIO_ROCTETS, kio.KIO_WOCTETS);
926 disk_submit (ksp[i]->ks_name, "disk_ops",
927 kio.KIO_ROPS, kio.KIO_WOPS);
928 /* FIXME: Convert this to microseconds if necessary */
929 disk_submit (ksp[i]->ks_name, "disk_time",
930 kio.KIO_RTIME, kio.KIO_WTIME);
931 }
932 else if (strncmp (ksp[i]->ks_class, "partition", 9) == 0)
933 {
934 disk_submit (ksp[i]->ks_name, "disk_octets",
935 kio.KIO_ROCTETS, kio.KIO_WOCTETS);
936 disk_submit (ksp[i]->ks_name, "disk_ops",
937 kio.KIO_ROPS, kio.KIO_WOPS);
938 }
939 }
940 /* #endif defined(HAVE_LIBKSTAT) */
942 #elif defined(HAVE_LIBSTATGRAB)
943 sg_disk_io_stats *ds;
944 # if HAVE_LIBSTATGRAB_0_90
945 size_t disks;
946 # else
947 int disks;
948 #endif
949 int counter;
950 char name[DATA_MAX_NAME_LEN];
952 if ((ds = sg_get_disk_io_stats(&disks)) == NULL)
953 return (0);
955 for (counter=0; counter < disks; counter++) {
956 strncpy(name, ds->disk_name, sizeof(name));
957 name[sizeof(name)-1] = '\0'; /* strncpy doesn't terminate longer strings */
958 disk_submit (name, "disk_octets", ds->read_bytes, ds->write_bytes);
959 ds++;
960 }
961 /* #endif defined(HAVE_LIBSTATGRAB) */
963 #elif defined(HAVE_PERFSTAT)
964 derive_t read_sectors;
965 derive_t write_sectors;
966 derive_t read_time;
967 derive_t write_time;
968 derive_t read_ops;
969 derive_t write_ops;
970 perfstat_id_t firstpath;
971 int rnumdisk;
972 int i;
974 if ((numdisk = perfstat_disk(NULL, NULL, sizeof(perfstat_disk_t), 0)) < 0)
975 {
976 char errbuf[1024];
977 WARNING ("disk plugin: perfstat_disk: %s",
978 sstrerror (errno, errbuf, sizeof (errbuf)));
979 return (-1);
980 }
982 if (numdisk != pnumdisk || stat_disk==NULL) {
983 if (stat_disk!=NULL)
984 free(stat_disk);
985 stat_disk = (perfstat_disk_t *)calloc(numdisk, sizeof(perfstat_disk_t));
986 }
987 pnumdisk = numdisk;
989 firstpath.name[0]='\0';
990 if ((rnumdisk = perfstat_disk(&firstpath, stat_disk, sizeof(perfstat_disk_t), numdisk)) < 0)
991 {
992 char errbuf[1024];
993 WARNING ("disk plugin: perfstat_disk : %s",
994 sstrerror (errno, errbuf, sizeof (errbuf)));
995 return (-1);
996 }
998 for (i = 0; i < rnumdisk; i++)
999 {
1000 read_sectors = stat_disk[i].rblks*stat_disk[i].bsize;
1001 write_sectors = stat_disk[i].wblks*stat_disk[i].bsize;
1002 disk_submit (stat_disk[i].name, "disk_octets", read_sectors, write_sectors);
1004 read_ops = stat_disk[i].xrate;
1005 write_ops = stat_disk[i].xfers - stat_disk[i].xrate;
1006 disk_submit (stat_disk[i].name, "disk_ops", read_ops, write_ops);
1008 read_time = stat_disk[i].rserv;
1009 read_time *= ((double)(_system_configuration.Xint)/(double)(_system_configuration.Xfrac)) / 1000000.0;
1010 write_time = stat_disk[i].wserv;
1011 write_time *= ((double)(_system_configuration.Xint)/(double)(_system_configuration.Xfrac)) / 1000000.0;
1012 disk_submit (stat_disk[i].name, "disk_time", read_time, write_time);
1013 }
1014 #endif /* defined(HAVE_PERFSTAT) */
1016 return (0);
1017 } /* int disk_read */
1019 void module_register (void)
1020 {
1021 plugin_register_config ("disk", disk_config,
1022 config_keys, config_keys_num);
1023 plugin_register_init ("disk", disk_init);
1024 plugin_register_read ("disk", disk_read);
1025 } /* void module_register */