envstat.c revision 1.77 1 1.77 pgoyette /* $NetBSD: envstat.c,v 1.77 2010/02/15 22:37:14 pgoyette Exp $ */
2 1.1 groo
3 1.1 groo /*-
4 1.59 xtraeme * Copyright (c) 2007, 2008 Juan Romero Pardines.
5 1.1 groo * All rights reserved.
6 1.1 groo *
7 1.1 groo * Redistribution and use in source and binary forms, with or without
8 1.1 groo * modification, are permitted provided that the following conditions
9 1.1 groo * are met:
10 1.1 groo * 1. Redistributions of source code must retain the above copyright
11 1.1 groo * notice, this list of conditions and the following disclaimer.
12 1.1 groo * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 groo * notice, this list of conditions and the following disclaimer in the
14 1.1 groo * documentation and/or other materials provided with the distribution.
15 1.1 groo *
16 1.56 xtraeme * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
17 1.56 xtraeme * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
18 1.56 xtraeme * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
19 1.56 xtraeme * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
20 1.56 xtraeme * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
21 1.56 xtraeme * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
22 1.56 xtraeme * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
23 1.56 xtraeme * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
24 1.56 xtraeme * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
25 1.56 xtraeme * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
26 1.1 groo */
27 1.1 groo
28 1.56 xtraeme #include <sys/cdefs.h>
29 1.56 xtraeme #ifndef lint
30 1.77 pgoyette __RCSID("$NetBSD: envstat.c,v 1.77 2010/02/15 22:37:14 pgoyette Exp $");
31 1.56 xtraeme #endif /* not lint */
32 1.56 xtraeme
33 1.1 groo #include <stdio.h>
34 1.1 groo #include <stdlib.h>
35 1.25 xtraeme #include <stdbool.h>
36 1.1 groo #include <string.h>
37 1.1 groo #include <unistd.h>
38 1.25 xtraeme #include <fcntl.h>
39 1.3 thorpej #include <err.h>
40 1.25 xtraeme #include <errno.h>
41 1.56 xtraeme #include <syslog.h>
42 1.1 groo #include <sys/envsys.h>
43 1.58 xtraeme #include <sys/types.h>
44 1.59 xtraeme #include <sys/queue.h>
45 1.59 xtraeme #include <prop/proplib.h>
46 1.1 groo
47 1.56 xtraeme #include "envstat.h"
48 1.56 xtraeme
49 1.25 xtraeme #define _PATH_DEV_SYSMON "/dev/sysmon"
50 1.1 groo
51 1.25 xtraeme #define ENVSYS_DFLAG 0x00000001 /* list registered devices */
52 1.25 xtraeme #define ENVSYS_FFLAG 0x00000002 /* show temp in farenheit */
53 1.25 xtraeme #define ENVSYS_LFLAG 0x00000004 /* list sensors */
54 1.25 xtraeme #define ENVSYS_XFLAG 0x00000008 /* externalize dictionary */
55 1.61 xtraeme #define ENVSYS_IFLAG 0x00000010 /* skip invalid sensors */
56 1.61 xtraeme #define ENVSYS_SFLAG 0x00000020 /* remove all properties set */
57 1.61 xtraeme #define ENVSYS_TFLAG 0x00000040 /* make statistics */
58 1.71 ahoka #define ENVSYS_KFLAG 0x00000100 /* show temp in kelvin */
59 1.25 xtraeme
60 1.61 xtraeme /* Sensors */
61 1.59 xtraeme typedef struct envsys_sensor {
62 1.59 xtraeme SIMPLEQ_ENTRY(envsys_sensor) entries;
63 1.25 xtraeme int32_t cur_value;
64 1.25 xtraeme int32_t max_value;
65 1.25 xtraeme int32_t min_value;
66 1.25 xtraeme int32_t avg_value;
67 1.25 xtraeme int32_t critmin_value;
68 1.25 xtraeme int32_t critmax_value;
69 1.70 pgoyette int32_t warnmin_value;
70 1.70 pgoyette int32_t warnmax_value;
71 1.25 xtraeme char desc[ENVSYS_DESCLEN];
72 1.25 xtraeme char type[ENVSYS_DESCLEN];
73 1.25 xtraeme char drvstate[ENVSYS_DESCLEN];
74 1.57 xtraeme char battcap[ENVSYS_DESCLEN];
75 1.54 xtraeme char dvname[ENVSYS_DESCLEN];
76 1.59 xtraeme bool invalid;
77 1.59 xtraeme bool visible;
78 1.59 xtraeme bool percentage;
79 1.59 xtraeme } *sensor_t;
80 1.25 xtraeme
81 1.61 xtraeme /* Sensor statistics */
82 1.61 xtraeme typedef struct envsys_sensor_stats {
83 1.61 xtraeme SIMPLEQ_ENTRY(envsys_sensor_stats) entries;
84 1.61 xtraeme int32_t max;
85 1.61 xtraeme int32_t min;
86 1.61 xtraeme int32_t avg;
87 1.61 xtraeme char desc[ENVSYS_DESCLEN];
88 1.61 xtraeme } *sensor_stats_t;
89 1.61 xtraeme
90 1.61 xtraeme /* Device properties */
91 1.59 xtraeme typedef struct envsys_dvprops {
92 1.58 xtraeme uint64_t refresh_timo;
93 1.61 xtraeme /* more members could be added in the future */
94 1.59 xtraeme } *dvprops_t;
95 1.58 xtraeme
96 1.59 xtraeme /* A simple queue to manage all sensors */
97 1.59 xtraeme static SIMPLEQ_HEAD(, envsys_sensor) sensors_list =
98 1.59 xtraeme SIMPLEQ_HEAD_INITIALIZER(sensors_list);
99 1.59 xtraeme
100 1.61 xtraeme /* A simple queue to manage statistics for all sensors */
101 1.61 xtraeme static SIMPLEQ_HEAD(, envsys_sensor_stats) sensor_stats_list =
102 1.61 xtraeme SIMPLEQ_HEAD_INITIALIZER(sensor_stats_list);
103 1.61 xtraeme
104 1.59 xtraeme static unsigned int interval, flags, width;
105 1.59 xtraeme static char *mydevname, *sensors;
106 1.61 xtraeme static bool statistics;
107 1.61 xtraeme static u_int header_passes;
108 1.59 xtraeme
109 1.59 xtraeme static int parse_dictionary(int);
110 1.59 xtraeme static int send_dictionary(FILE *, int);
111 1.59 xtraeme static int find_sensors(prop_array_t, const char *, dvprops_t);
112 1.59 xtraeme static void print_sensors(void);
113 1.59 xtraeme static int check_sensors(char *);
114 1.59 xtraeme static int usage(void);
115 1.25 xtraeme
116 1.25 xtraeme
117 1.25 xtraeme int main(int argc, char **argv)
118 1.25 xtraeme {
119 1.25 xtraeme prop_dictionary_t dict;
120 1.59 xtraeme int c, fd, rval = 0;
121 1.56 xtraeme char *endptr, *configfile = NULL;
122 1.56 xtraeme FILE *cf;
123 1.25 xtraeme
124 1.25 xtraeme setprogname(argv[0]);
125 1.25 xtraeme
126 1.71 ahoka while ((c = getopt(argc, argv, "c:Dd:fIi:klrSs:Tw:Wx")) != -1) {
127 1.25 xtraeme switch (c) {
128 1.56 xtraeme case 'c': /* configuration file */
129 1.56 xtraeme configfile = strdup(optarg);
130 1.56 xtraeme if (configfile == NULL)
131 1.56 xtraeme err(EXIT_FAILURE, "strdup");
132 1.56 xtraeme break;
133 1.45 xtraeme case 'D': /* list registered devices */
134 1.45 xtraeme flags |= ENVSYS_DFLAG;
135 1.45 xtraeme break;
136 1.25 xtraeme case 'd': /* show sensors of a specific device */
137 1.25 xtraeme mydevname = strdup(optarg);
138 1.25 xtraeme if (mydevname == NULL)
139 1.54 xtraeme err(EXIT_FAILURE, "strdup");
140 1.25 xtraeme break;
141 1.45 xtraeme case 'f': /* display temperature in Farenheit */
142 1.45 xtraeme flags |= ENVSYS_FFLAG;
143 1.45 xtraeme break;
144 1.53 plunky case 'I': /* Skips invalid sensors */
145 1.53 plunky flags |= ENVSYS_IFLAG;
146 1.53 plunky break;
147 1.25 xtraeme case 'i': /* wait time between intervals */
148 1.56 xtraeme interval = (unsigned int)strtoul(optarg, &endptr, 10);
149 1.25 xtraeme if (*endptr != '\0')
150 1.54 xtraeme errx(EXIT_FAILURE, "bad interval '%s'", optarg);
151 1.25 xtraeme break;
152 1.71 ahoka case 'k': /* display temperature in Kelvin */
153 1.71 ahoka flags |= ENVSYS_KFLAG;
154 1.71 ahoka break;
155 1.25 xtraeme case 'l': /* list sensors */
156 1.25 xtraeme flags |= ENVSYS_LFLAG;
157 1.25 xtraeme break;
158 1.35 xtraeme case 'r':
159 1.35 xtraeme /*
160 1.59 xtraeme * This flag is noop.. it's only here for
161 1.35 xtraeme * compatibility with the old implementation.
162 1.35 xtraeme */
163 1.35 xtraeme break;
164 1.56 xtraeme case 'S':
165 1.56 xtraeme flags |= ENVSYS_SFLAG;
166 1.56 xtraeme break;
167 1.25 xtraeme case 's': /* only show specified sensors */
168 1.25 xtraeme sensors = strdup(optarg);
169 1.1 groo if (sensors == NULL)
170 1.54 xtraeme err(EXIT_FAILURE, "strdup");
171 1.1 groo break;
172 1.61 xtraeme case 'T': /* make statistics */
173 1.61 xtraeme flags |= ENVSYS_TFLAG;
174 1.61 xtraeme break;
175 1.45 xtraeme case 'w': /* width value for the lines */
176 1.61 xtraeme width = (unsigned int)strtoul(optarg, &endptr, 10);
177 1.45 xtraeme if (*endptr != '\0')
178 1.54 xtraeme errx(EXIT_FAILURE, "bad width '%s'", optarg);
179 1.45 xtraeme break;
180 1.45 xtraeme case 'x': /* print the dictionary in raw format */
181 1.45 xtraeme flags |= ENVSYS_XFLAG;
182 1.1 groo break;
183 1.73 pgoyette case 'W': /* No longer used, retained for campatability */
184 1.73 pgoyette break;
185 1.1 groo case '?':
186 1.1 groo default:
187 1.1 groo usage();
188 1.1 groo /* NOTREACHED */
189 1.1 groo }
190 1.1 groo }
191 1.1 groo
192 1.45 xtraeme argc -= optind;
193 1.45 xtraeme argv += optind;
194 1.45 xtraeme
195 1.50 xtraeme if (argc > 0)
196 1.50 xtraeme usage();
197 1.50 xtraeme
198 1.61 xtraeme /* Check if we want to make statistics */
199 1.61 xtraeme if (flags & ENVSYS_TFLAG) {
200 1.61 xtraeme if (!interval)
201 1.61 xtraeme errx(EXIT_FAILURE,
202 1.61 xtraeme "-T cannot be used without an interval (-i)");
203 1.61 xtraeme else
204 1.61 xtraeme statistics = true;
205 1.61 xtraeme }
206 1.61 xtraeme
207 1.59 xtraeme if (mydevname && sensors)
208 1.59 xtraeme errx(EXIT_FAILURE, "-d flag cannot be used with -s");
209 1.59 xtraeme
210 1.59 xtraeme /* Open the device in ro mode */
211 1.25 xtraeme if ((fd = open(_PATH_DEV_SYSMON, O_RDONLY)) == -1)
212 1.54 xtraeme err(EXIT_FAILURE, "%s", _PATH_DEV_SYSMON);
213 1.1 groo
214 1.59 xtraeme /* Print dictionary in raw mode */
215 1.47 xtraeme if (flags & ENVSYS_XFLAG) {
216 1.38 xtraeme rval = prop_dictionary_recv_ioctl(fd,
217 1.47 xtraeme ENVSYS_GETDICTIONARY,
218 1.47 xtraeme &dict);
219 1.54 xtraeme if (rval)
220 1.54 xtraeme errx(EXIT_FAILURE, "%s", strerror(rval));
221 1.54 xtraeme
222 1.56 xtraeme config_dict_dump(dict);
223 1.56 xtraeme
224 1.59 xtraeme /* Remove all properties set in dictionary */
225 1.56 xtraeme } else if (flags & ENVSYS_SFLAG) {
226 1.59 xtraeme /* Close the ro descriptor */
227 1.56 xtraeme (void)close(fd);
228 1.56 xtraeme
229 1.59 xtraeme /* open the fd in rw mode */
230 1.56 xtraeme if ((fd = open(_PATH_DEV_SYSMON, O_RDWR)) == -1)
231 1.56 xtraeme err(EXIT_FAILURE, "%s", _PATH_DEV_SYSMON);
232 1.56 xtraeme
233 1.56 xtraeme dict = prop_dictionary_create();
234 1.56 xtraeme if (!dict)
235 1.56 xtraeme err(EXIT_FAILURE, "prop_dictionary_create");
236 1.56 xtraeme
237 1.56 xtraeme rval = prop_dictionary_set_bool(dict,
238 1.56 xtraeme "envsys-remove-props",
239 1.56 xtraeme true);
240 1.56 xtraeme if (!rval)
241 1.56 xtraeme err(EXIT_FAILURE, "prop_dict_set_bool");
242 1.56 xtraeme
243 1.59 xtraeme /* send the dictionary to the kernel now */
244 1.56 xtraeme rval = prop_dictionary_send_ioctl(dict, fd, ENVSYS_REMOVEPROPS);
245 1.56 xtraeme if (rval)
246 1.56 xtraeme warnx("%s", strerror(rval));
247 1.56 xtraeme
248 1.59 xtraeme /* Set properties in dictionary */
249 1.56 xtraeme } else if (configfile) {
250 1.56 xtraeme /*
251 1.56 xtraeme * Parse the configuration file.
252 1.56 xtraeme */
253 1.56 xtraeme if ((cf = fopen(configfile, "r")) == NULL) {
254 1.56 xtraeme syslog(LOG_ERR, "fopen failed: %s", strerror(errno));
255 1.56 xtraeme errx(EXIT_FAILURE, "%s", strerror(errno));
256 1.56 xtraeme }
257 1.56 xtraeme
258 1.56 xtraeme rval = send_dictionary(cf, fd);
259 1.56 xtraeme (void)fclose(cf);
260 1.56 xtraeme
261 1.59 xtraeme /* Show sensors with interval */
262 1.25 xtraeme } else if (interval) {
263 1.25 xtraeme for (;;) {
264 1.25 xtraeme rval = parse_dictionary(fd);
265 1.25 xtraeme if (rval)
266 1.54 xtraeme break;
267 1.54 xtraeme
268 1.25 xtraeme (void)fflush(stdout);
269 1.25 xtraeme (void)sleep(interval);
270 1.25 xtraeme }
271 1.59 xtraeme /* Show sensors without interval */
272 1.48 xtraeme } else {
273 1.47 xtraeme rval = parse_dictionary(fd);
274 1.48 xtraeme }
275 1.25 xtraeme
276 1.25 xtraeme if (sensors)
277 1.25 xtraeme free(sensors);
278 1.25 xtraeme if (mydevname)
279 1.25 xtraeme free(mydevname);
280 1.25 xtraeme (void)close(fd);
281 1.54 xtraeme
282 1.56 xtraeme return rval ? EXIT_FAILURE : EXIT_SUCCESS;
283 1.25 xtraeme }
284 1.25 xtraeme
285 1.25 xtraeme static int
286 1.56 xtraeme send_dictionary(FILE *cf, int fd)
287 1.25 xtraeme {
288 1.56 xtraeme prop_dictionary_t kdict, udict;
289 1.56 xtraeme int error = 0;
290 1.25 xtraeme
291 1.59 xtraeme /* Retrieve dictionary from kernel */
292 1.56 xtraeme error = prop_dictionary_recv_ioctl(fd, ENVSYS_GETDICTIONARY, &kdict);
293 1.56 xtraeme if (error)
294 1.37 xtraeme return error;
295 1.1 groo
296 1.56 xtraeme config_parse(cf, kdict);
297 1.1 groo
298 1.56 xtraeme /*
299 1.56 xtraeme * Dictionary built by the parser from the configuration file.
300 1.25 xtraeme */
301 1.56 xtraeme udict = config_dict_parsed();
302 1.1 groo
303 1.25 xtraeme /*
304 1.56 xtraeme * Close the read only descriptor and open a new one read write.
305 1.25 xtraeme */
306 1.56 xtraeme (void)close(fd);
307 1.36 xtraeme if ((fd = open(_PATH_DEV_SYSMON, O_RDWR)) == -1) {
308 1.36 xtraeme error = errno;
309 1.54 xtraeme warn("%s", _PATH_DEV_SYSMON);
310 1.56 xtraeme return error;
311 1.36 xtraeme }
312 1.36 xtraeme
313 1.56 xtraeme /*
314 1.58 xtraeme * Send our sensor properties dictionary to the kernel then.
315 1.56 xtraeme */
316 1.25 xtraeme error = prop_dictionary_send_ioctl(udict, fd, ENVSYS_SETDICTIONARY);
317 1.25 xtraeme if (error)
318 1.54 xtraeme warnx("%s", strerror(error));
319 1.56 xtraeme
320 1.25 xtraeme prop_object_release(udict);
321 1.25 xtraeme return error;
322 1.25 xtraeme }
323 1.25 xtraeme
324 1.61 xtraeme static sensor_stats_t
325 1.69 christos find_stats_sensor(const char *desc)
326 1.61 xtraeme {
327 1.66 christos sensor_stats_t stats;
328 1.61 xtraeme
329 1.61 xtraeme /*
330 1.61 xtraeme * If we matched a sensor by its description return it, otherwise
331 1.61 xtraeme * allocate a new one.
332 1.61 xtraeme */
333 1.66 christos SIMPLEQ_FOREACH(stats, &sensor_stats_list, entries)
334 1.66 christos if (strcmp(stats->desc, desc) == 0)
335 1.66 christos return stats;
336 1.61 xtraeme
337 1.69 christos stats = calloc(1, sizeof(*stats));
338 1.69 christos if (stats == NULL)
339 1.66 christos return NULL;
340 1.61 xtraeme
341 1.69 christos (void)strlcpy(stats->desc, desc, sizeof(stats->desc));
342 1.69 christos SIMPLEQ_INSERT_TAIL(&sensor_stats_list, stats, entries);
343 1.69 christos
344 1.69 christos return stats;
345 1.61 xtraeme }
346 1.61 xtraeme
347 1.25 xtraeme static int
348 1.25 xtraeme parse_dictionary(int fd)
349 1.25 xtraeme {
350 1.59 xtraeme sensor_t sensor = NULL;
351 1.59 xtraeme dvprops_t edp = NULL;
352 1.25 xtraeme prop_array_t array;
353 1.25 xtraeme prop_dictionary_t dict;
354 1.25 xtraeme prop_object_iterator_t iter;
355 1.25 xtraeme prop_object_t obj;
356 1.25 xtraeme const char *dnp = NULL;
357 1.25 xtraeme int rval = 0;
358 1.25 xtraeme
359 1.25 xtraeme /* receive dictionary from kernel */
360 1.37 xtraeme rval = prop_dictionary_recv_ioctl(fd, ENVSYS_GETDICTIONARY, &dict);
361 1.37 xtraeme if (rval)
362 1.37 xtraeme return rval;
363 1.25 xtraeme
364 1.59 xtraeme /* No drivers registered? */
365 1.42 xtraeme if (prop_dictionary_count(dict) == 0) {
366 1.42 xtraeme warnx("no drivers registered");
367 1.42 xtraeme goto out;
368 1.42 xtraeme }
369 1.42 xtraeme
370 1.25 xtraeme if (mydevname) {
371 1.59 xtraeme /* -d flag specified, print sensors only for this device */
372 1.25 xtraeme obj = prop_dictionary_get(dict, mydevname);
373 1.25 xtraeme if (prop_object_type(obj) != PROP_TYPE_ARRAY) {
374 1.25 xtraeme warnx("unknown device `%s'", mydevname);
375 1.25 xtraeme rval = EINVAL;
376 1.25 xtraeme goto out;
377 1.1 groo }
378 1.1 groo
379 1.58 xtraeme rval = find_sensors(obj, mydevname, NULL);
380 1.25 xtraeme if (rval)
381 1.25 xtraeme goto out;
382 1.54 xtraeme
383 1.25 xtraeme } else {
384 1.59 xtraeme /* print sensors for all devices registered */
385 1.25 xtraeme iter = prop_dictionary_iterator(dict);
386 1.25 xtraeme if (iter == NULL) {
387 1.25 xtraeme rval = EINVAL;
388 1.25 xtraeme goto out;
389 1.25 xtraeme }
390 1.6 explorer
391 1.25 xtraeme /* iterate over the dictionary returned by the kernel */
392 1.25 xtraeme while ((obj = prop_object_iterator_next(iter)) != NULL) {
393 1.25 xtraeme array = prop_dictionary_get_keysym(dict, obj);
394 1.25 xtraeme if (prop_object_type(array) != PROP_TYPE_ARRAY) {
395 1.25 xtraeme warnx("no sensors found");
396 1.25 xtraeme rval = EINVAL;
397 1.25 xtraeme goto out;
398 1.1 groo }
399 1.1 groo
400 1.59 xtraeme edp = calloc(1, sizeof(*edp));
401 1.58 xtraeme if (!edp) {
402 1.58 xtraeme rval = ENOMEM;
403 1.58 xtraeme goto out;
404 1.58 xtraeme }
405 1.58 xtraeme
406 1.25 xtraeme dnp = prop_dictionary_keysym_cstring_nocopy(obj);
407 1.58 xtraeme rval = find_sensors(array, dnp, edp);
408 1.58 xtraeme if (rval)
409 1.58 xtraeme goto out;
410 1.25 xtraeme
411 1.58 xtraeme if (((flags & ENVSYS_LFLAG) == 0) &&
412 1.58 xtraeme (flags & ENVSYS_DFLAG)) {
413 1.58 xtraeme (void)printf("%s (checking events every ",
414 1.58 xtraeme dnp);
415 1.58 xtraeme if (edp->refresh_timo == 1)
416 1.58 xtraeme (void)printf("second)\n");
417 1.58 xtraeme else
418 1.58 xtraeme (void)printf("%d seconds)\n",
419 1.58 xtraeme (int)edp->refresh_timo);
420 1.58 xtraeme }
421 1.58 xtraeme
422 1.58 xtraeme free(edp);
423 1.58 xtraeme edp = NULL;
424 1.1 groo }
425 1.59 xtraeme prop_object_iterator_release(iter);
426 1.59 xtraeme }
427 1.31 xtraeme
428 1.59 xtraeme /* print sensors now */
429 1.59 xtraeme if (sensors) {
430 1.59 xtraeme char *str = strdup(sensors);
431 1.59 xtraeme if (!str) {
432 1.59 xtraeme rval = ENOMEM;
433 1.59 xtraeme goto out;
434 1.59 xtraeme }
435 1.59 xtraeme rval = check_sensors(str);
436 1.73 pgoyette free(str);
437 1.33 xtraeme }
438 1.59 xtraeme if ((flags & ENVSYS_LFLAG) == 0 && (flags & ENVSYS_DFLAG) == 0)
439 1.59 xtraeme print_sensors();
440 1.59 xtraeme if (interval)
441 1.59 xtraeme (void)printf("\n");
442 1.31 xtraeme
443 1.25 xtraeme out:
444 1.59 xtraeme while ((sensor = SIMPLEQ_FIRST(&sensors_list))) {
445 1.59 xtraeme SIMPLEQ_REMOVE_HEAD(&sensors_list, entries);
446 1.59 xtraeme free(sensor);
447 1.31 xtraeme }
448 1.58 xtraeme if (edp)
449 1.58 xtraeme free(edp);
450 1.25 xtraeme prop_object_release(dict);
451 1.25 xtraeme return rval;
452 1.1 groo }
453 1.1 groo
454 1.25 xtraeme static int
455 1.59 xtraeme find_sensors(prop_array_t array, const char *dvname, dvprops_t edp)
456 1.25 xtraeme {
457 1.25 xtraeme prop_object_iterator_t iter;
458 1.58 xtraeme prop_object_t obj, obj1, obj2;
459 1.25 xtraeme prop_string_t state, desc = NULL;
460 1.59 xtraeme sensor_t sensor = NULL;
461 1.61 xtraeme sensor_stats_t stats = NULL;
462 1.25 xtraeme
463 1.25 xtraeme iter = prop_array_iterator(array);
464 1.56 xtraeme if (!iter)
465 1.59 xtraeme return ENOMEM;
466 1.25 xtraeme
467 1.25 xtraeme /* iterate over the array of dictionaries */
468 1.25 xtraeme while ((obj = prop_object_iterator_next(iter)) != NULL) {
469 1.58 xtraeme /* get the refresh-timeout property */
470 1.58 xtraeme obj2 = prop_dictionary_get(obj, "device-properties");
471 1.58 xtraeme if (obj2) {
472 1.58 xtraeme if (!edp)
473 1.58 xtraeme continue;
474 1.58 xtraeme if (!prop_dictionary_get_uint64(obj2,
475 1.58 xtraeme "refresh-timeout",
476 1.58 xtraeme &edp->refresh_timo))
477 1.58 xtraeme continue;
478 1.58 xtraeme }
479 1.58 xtraeme
480 1.59 xtraeme /* new sensor coming */
481 1.59 xtraeme sensor = calloc(1, sizeof(*sensor));
482 1.61 xtraeme if (sensor == NULL) {
483 1.61 xtraeme prop_object_iterator_release(iter);
484 1.59 xtraeme return ENOMEM;
485 1.61 xtraeme }
486 1.59 xtraeme
487 1.54 xtraeme /* copy device name */
488 1.59 xtraeme (void)strlcpy(sensor->dvname, dvname, sizeof(sensor->dvname));
489 1.25 xtraeme
490 1.25 xtraeme /* description string */
491 1.25 xtraeme desc = prop_dictionary_get(obj, "description");
492 1.56 xtraeme if (desc) {
493 1.37 xtraeme /* copy description */
494 1.59 xtraeme (void)strlcpy(sensor->desc,
495 1.37 xtraeme prop_string_cstring_nocopy(desc),
496 1.59 xtraeme sizeof(sensor->desc));
497 1.59 xtraeme } else {
498 1.59 xtraeme free(sensor);
499 1.37 xtraeme continue;
500 1.59 xtraeme }
501 1.25 xtraeme
502 1.25 xtraeme /* type string */
503 1.25 xtraeme obj1 = prop_dictionary_get(obj, "type");
504 1.59 xtraeme if (obj1) {
505 1.59 xtraeme /* copy type */
506 1.59 xtraeme (void)strlcpy(sensor->type,
507 1.59 xtraeme prop_string_cstring_nocopy(obj1),
508 1.59 xtraeme sizeof(sensor->type));
509 1.59 xtraeme } else {
510 1.59 xtraeme free(sensor);
511 1.59 xtraeme continue;
512 1.59 xtraeme }
513 1.59 xtraeme
514 1.59 xtraeme /* check sensor's state */
515 1.59 xtraeme state = prop_dictionary_get(obj, "state");
516 1.59 xtraeme
517 1.59 xtraeme /* mark sensors with invalid/unknown state */
518 1.59 xtraeme if ((prop_string_equals_cstring(state, "invalid") ||
519 1.59 xtraeme prop_string_equals_cstring(state, "unknown")))
520 1.59 xtraeme sensor->invalid = true;
521 1.25 xtraeme
522 1.25 xtraeme /* get current drive state string */
523 1.25 xtraeme obj1 = prop_dictionary_get(obj, "drive-state");
524 1.59 xtraeme if (obj1) {
525 1.59 xtraeme (void)strlcpy(sensor->drvstate,
526 1.25 xtraeme prop_string_cstring_nocopy(obj1),
527 1.59 xtraeme sizeof(sensor->drvstate));
528 1.59 xtraeme }
529 1.25 xtraeme
530 1.57 xtraeme /* get current battery capacity string */
531 1.57 xtraeme obj1 = prop_dictionary_get(obj, "battery-capacity");
532 1.59 xtraeme if (obj1) {
533 1.59 xtraeme (void)strlcpy(sensor->battcap,
534 1.44 xtraeme prop_string_cstring_nocopy(obj1),
535 1.59 xtraeme sizeof(sensor->battcap));
536 1.59 xtraeme }
537 1.44 xtraeme
538 1.25 xtraeme /* get current value */
539 1.25 xtraeme obj1 = prop_dictionary_get(obj, "cur-value");
540 1.59 xtraeme if (obj1)
541 1.59 xtraeme sensor->cur_value = prop_number_integer_value(obj1);
542 1.25 xtraeme
543 1.25 xtraeme /* get max value */
544 1.25 xtraeme obj1 = prop_dictionary_get(obj, "max-value");
545 1.56 xtraeme if (obj1)
546 1.59 xtraeme sensor->max_value = prop_number_integer_value(obj1);
547 1.25 xtraeme
548 1.25 xtraeme /* get min value */
549 1.25 xtraeme obj1 = prop_dictionary_get(obj, "min-value");
550 1.56 xtraeme if (obj1)
551 1.59 xtraeme sensor->min_value = prop_number_integer_value(obj1);
552 1.25 xtraeme
553 1.25 xtraeme /* get avg value */
554 1.25 xtraeme obj1 = prop_dictionary_get(obj, "avg-value");
555 1.56 xtraeme if (obj1)
556 1.59 xtraeme sensor->avg_value = prop_number_integer_value(obj1);
557 1.25 xtraeme
558 1.25 xtraeme /* get percentage flag */
559 1.25 xtraeme obj1 = prop_dictionary_get(obj, "want-percentage");
560 1.56 xtraeme if (obj1)
561 1.59 xtraeme sensor->percentage = prop_bool_true(obj1);
562 1.25 xtraeme
563 1.25 xtraeme /* get critical max value if available */
564 1.56 xtraeme obj1 = prop_dictionary_get(obj, "critical-max");
565 1.59 xtraeme if (obj1)
566 1.59 xtraeme sensor->critmax_value = prop_number_integer_value(obj1);
567 1.5 cgd
568 1.77 pgoyette /* get maximum capacity value if available */
569 1.77 pgoyette obj1 = prop_dictionary_get(obj, "maximum-capacity");
570 1.77 pgoyette if (obj1)
571 1.77 pgoyette sensor->critmax_value = prop_number_integer_value(obj1);
572 1.77 pgoyette
573 1.25 xtraeme /* get critical min value if available */
574 1.56 xtraeme obj1 = prop_dictionary_get(obj, "critical-min");
575 1.59 xtraeme if (obj1)
576 1.59 xtraeme sensor->critmin_value = prop_number_integer_value(obj1);
577 1.1 groo
578 1.25 xtraeme /* get critical capacity value if available */
579 1.25 xtraeme obj1 = prop_dictionary_get(obj, "critical-capacity");
580 1.59 xtraeme if (obj1)
581 1.77 pgoyette sensor->critmin_value = prop_number_integer_value(obj1);
582 1.25 xtraeme
583 1.70 pgoyette /* get warning max value if available */
584 1.70 pgoyette obj1 = prop_dictionary_get(obj, "warning-max");
585 1.70 pgoyette if (obj1)
586 1.70 pgoyette sensor->warnmax_value = prop_number_integer_value(obj1);
587 1.70 pgoyette
588 1.77 pgoyette /* get high capacity value if available */
589 1.77 pgoyette obj1 = prop_dictionary_get(obj, "high-capacity");
590 1.77 pgoyette if (obj1)
591 1.77 pgoyette sensor->warnmax_value = prop_number_integer_value(obj1);
592 1.77 pgoyette
593 1.70 pgoyette /* get warning min value if available */
594 1.70 pgoyette obj1 = prop_dictionary_get(obj, "warning-min");
595 1.70 pgoyette if (obj1)
596 1.70 pgoyette sensor->warnmin_value = prop_number_integer_value(obj1);
597 1.70 pgoyette
598 1.70 pgoyette /* get warning capacity value if available */
599 1.70 pgoyette obj1 = prop_dictionary_get(obj, "warning-capacity");
600 1.70 pgoyette if (obj1)
601 1.77 pgoyette sensor->warnmin_value = prop_number_integer_value(obj1);
602 1.70 pgoyette
603 1.25 xtraeme /* print sensor names if -l was given */
604 1.25 xtraeme if (flags & ENVSYS_LFLAG) {
605 1.25 xtraeme if (width)
606 1.25 xtraeme (void)printf("%*s\n", width,
607 1.25 xtraeme prop_string_cstring_nocopy(desc));
608 1.25 xtraeme else
609 1.25 xtraeme (void)printf("%s\n",
610 1.25 xtraeme prop_string_cstring_nocopy(desc));
611 1.25 xtraeme }
612 1.59 xtraeme
613 1.59 xtraeme /* Add the sensor into the list */
614 1.59 xtraeme SIMPLEQ_INSERT_TAIL(&sensors_list, sensor, entries);
615 1.61 xtraeme
616 1.61 xtraeme /* Collect statistics if flag enabled */
617 1.61 xtraeme if (statistics) {
618 1.69 christos /* ignore sensors not relevant for statistics */
619 1.69 christos if ((strcmp(sensor->type, "Indicator") == 0) ||
620 1.69 christos (strcmp(sensor->type, "Battery charge") == 0) ||
621 1.69 christos (strcmp(sensor->type, "Drive") == 0))
622 1.69 christos continue;
623 1.69 christos
624 1.61 xtraeme /* ignore invalid data */
625 1.69 christos if (sensor->invalid || !sensor->cur_value)
626 1.61 xtraeme continue;
627 1.61 xtraeme
628 1.61 xtraeme /* find or allocate a new statistics sensor */
629 1.69 christos stats = find_stats_sensor(sensor->desc);
630 1.61 xtraeme if (stats == NULL) {
631 1.61 xtraeme free(sensor);
632 1.61 xtraeme prop_object_iterator_release(iter);
633 1.61 xtraeme return ENOMEM;
634 1.61 xtraeme }
635 1.61 xtraeme
636 1.61 xtraeme /* collect data */
637 1.61 xtraeme if (!stats->max)
638 1.61 xtraeme stats->max = sensor->cur_value;
639 1.61 xtraeme if (!stats->min)
640 1.61 xtraeme stats->min = sensor->cur_value;
641 1.61 xtraeme
642 1.61 xtraeme if (sensor->cur_value > stats->max)
643 1.61 xtraeme stats->max = sensor->cur_value;
644 1.61 xtraeme
645 1.61 xtraeme if (sensor->cur_value < stats->min)
646 1.61 xtraeme stats->min = sensor->cur_value;
647 1.61 xtraeme
648 1.61 xtraeme /* compute avg value */
649 1.61 xtraeme if (stats->max && stats->min)
650 1.61 xtraeme stats->avg =
651 1.61 xtraeme (sensor->cur_value + stats->max +
652 1.61 xtraeme stats->min) / 3;
653 1.61 xtraeme }
654 1.25 xtraeme }
655 1.1 groo
656 1.25 xtraeme /* free memory */
657 1.25 xtraeme prop_object_iterator_release(iter);
658 1.59 xtraeme return 0;
659 1.1 groo }
660 1.1 groo
661 1.25 xtraeme static int
662 1.59 xtraeme check_sensors(char *str)
663 1.1 groo {
664 1.59 xtraeme sensor_t sensor = NULL;
665 1.59 xtraeme char *dvstring, *sstring, *p, *last;
666 1.59 xtraeme bool sensor_found = false;
667 1.25 xtraeme
668 1.59 xtraeme /*
669 1.59 xtraeme * Parse device name and sensor description and find out
670 1.59 xtraeme * if the sensor is valid.
671 1.59 xtraeme */
672 1.59 xtraeme for ((p = strtok_r(str, ",", &last)); p;
673 1.59 xtraeme (p = strtok_r(NULL, ",", &last))) {
674 1.59 xtraeme /* get device name */
675 1.59 xtraeme dvstring = strtok(p, ":");
676 1.59 xtraeme if (dvstring == NULL) {
677 1.59 xtraeme warnx("missing device name");
678 1.59 xtraeme return EINVAL;
679 1.59 xtraeme }
680 1.59 xtraeme
681 1.59 xtraeme /* get sensor description */
682 1.59 xtraeme sstring = strtok(NULL, ":");
683 1.59 xtraeme if (sstring == NULL) {
684 1.59 xtraeme warnx("missing sensor description");
685 1.59 xtraeme return EINVAL;
686 1.59 xtraeme }
687 1.59 xtraeme
688 1.59 xtraeme SIMPLEQ_FOREACH(sensor, &sensors_list, entries) {
689 1.59 xtraeme /* skip until we match device */
690 1.59 xtraeme if (strcmp(dvstring, sensor->dvname))
691 1.59 xtraeme continue;
692 1.59 xtraeme if (strcmp(sstring, sensor->desc) == 0) {
693 1.59 xtraeme sensor->visible = true;
694 1.59 xtraeme sensor_found = true;
695 1.25 xtraeme break;
696 1.25 xtraeme }
697 1.25 xtraeme }
698 1.59 xtraeme if (sensor_found == false) {
699 1.59 xtraeme warnx("unknown sensor `%s' for device `%s'",
700 1.59 xtraeme sstring, dvstring);
701 1.59 xtraeme return EINVAL;
702 1.25 xtraeme }
703 1.59 xtraeme sensor_found = false;
704 1.25 xtraeme }
705 1.1 groo
706 1.25 xtraeme /* check if all sensors were ok, and error out if not */
707 1.59 xtraeme SIMPLEQ_FOREACH(sensor, &sensors_list, entries)
708 1.59 xtraeme if (sensor->visible)
709 1.25 xtraeme return 0;
710 1.25 xtraeme
711 1.25 xtraeme warnx("no sensors selected to display");
712 1.25 xtraeme return EINVAL;
713 1.1 groo }
714 1.1 groo
715 1.25 xtraeme static void
716 1.59 xtraeme print_sensors(void)
717 1.1 groo {
718 1.59 xtraeme sensor_t sensor;
719 1.61 xtraeme sensor_stats_t stats = NULL;
720 1.73 pgoyette size_t maxlen = 0, ilen;
721 1.25 xtraeme double temp = 0;
722 1.61 xtraeme const char *invalid = "N/A", *degrees, *tmpstr, *stype;
723 1.73 pgoyette const char *a, *b, *c, *d, *e, *units;
724 1.61 xtraeme
725 1.73 pgoyette tmpstr = stype = d = e = NULL;
726 1.1 groo
727 1.25 xtraeme /* find the longest description */
728 1.59 xtraeme SIMPLEQ_FOREACH(sensor, &sensors_list, entries)
729 1.59 xtraeme if (strlen(sensor->desc) > maxlen)
730 1.59 xtraeme maxlen = strlen(sensor->desc);
731 1.1 groo
732 1.25 xtraeme if (width)
733 1.25 xtraeme maxlen = width;
734 1.1 groo
735 1.61 xtraeme /*
736 1.61 xtraeme * Print a header at the bottom only once showing different
737 1.61 xtraeme * members if the statistics flag is set or not.
738 1.61 xtraeme *
739 1.61 xtraeme * As bonus if -s is set, only print this header every 10 iterations
740 1.61 xtraeme * to avoid redundancy... like vmstat(1).
741 1.61 xtraeme */
742 1.61 xtraeme
743 1.63 xtraeme a = "Current";
744 1.61 xtraeme units = "Unit";
745 1.61 xtraeme if (statistics) {
746 1.61 xtraeme b = "Max";
747 1.61 xtraeme c = "Min";
748 1.61 xtraeme d = "Avg";
749 1.61 xtraeme } else {
750 1.61 xtraeme b = "CritMax";
751 1.73 pgoyette c = "WarnMax";
752 1.73 pgoyette d = "WarnMin";
753 1.73 pgoyette e = "CritMin";
754 1.61 xtraeme }
755 1.61 xtraeme
756 1.61 xtraeme if (!sensors || (!header_passes && sensors) ||
757 1.61 xtraeme (header_passes == 10 && sensors)) {
758 1.75 cnst if (statistics)
759 1.75 cnst (void)printf("%s%*s %9s %8s %8s %8s %6s\n",
760 1.75 cnst mydevname ? "" : " ", (int)maxlen,
761 1.75 cnst "", a, b, c, d, units);
762 1.75 cnst else
763 1.75 cnst (void)printf("%s%*s %9s %8s %8s %8s %8s %4s\n",
764 1.75 cnst mydevname ? "" : " ", (int)maxlen,
765 1.75 cnst "", a, b, c, d, e, units);
766 1.61 xtraeme if (sensors && header_passes == 10)
767 1.61 xtraeme header_passes = 0;
768 1.61 xtraeme }
769 1.61 xtraeme if (sensors)
770 1.61 xtraeme header_passes++;
771 1.61 xtraeme
772 1.25 xtraeme /* print the sensors */
773 1.59 xtraeme SIMPLEQ_FOREACH(sensor, &sensors_list, entries) {
774 1.59 xtraeme /* skip sensors that were not marked as visible */
775 1.59 xtraeme if (sensors && !sensor->visible)
776 1.54 xtraeme continue;
777 1.1 groo
778 1.59 xtraeme /* skip invalid sensors if -I is set */
779 1.59 xtraeme if ((flags & ENVSYS_IFLAG) && sensor->invalid)
780 1.25 xtraeme continue;
781 1.1 groo
782 1.59 xtraeme /* print device name */
783 1.59 xtraeme if (!mydevname) {
784 1.59 xtraeme if (tmpstr == NULL || strcmp(tmpstr, sensor->dvname))
785 1.59 xtraeme printf("[%s]\n", sensor->dvname);
786 1.59 xtraeme
787 1.59 xtraeme tmpstr = sensor->dvname;
788 1.59 xtraeme }
789 1.45 xtraeme
790 1.69 christos /* find out the statistics sensor */
791 1.69 christos if (statistics) {
792 1.69 christos stats = find_stats_sensor(sensor->desc);
793 1.69 christos if (stats == NULL) {
794 1.69 christos /* No statistics for this sensor */
795 1.69 christos continue;
796 1.69 christos }
797 1.69 christos }
798 1.69 christos
799 1.59 xtraeme /* print sensor description */
800 1.54 xtraeme (void)printf("%s%*.*s", mydevname ? "" : " ", (int)maxlen,
801 1.59 xtraeme (int)maxlen, sensor->desc);
802 1.1 groo
803 1.59 xtraeme /* print invalid string */
804 1.59 xtraeme if (sensor->invalid) {
805 1.73 pgoyette (void)printf(": %9s\n", invalid);
806 1.29 xtraeme continue;
807 1.29 xtraeme }
808 1.45 xtraeme
809 1.57 xtraeme /*
810 1.57 xtraeme * Indicator and Battery charge sensors.
811 1.57 xtraeme */
812 1.59 xtraeme if ((strcmp(sensor->type, "Indicator") == 0) ||
813 1.59 xtraeme (strcmp(sensor->type, "Battery charge") == 0)) {
814 1.29 xtraeme
815 1.73 pgoyette (void)printf(":%10s", sensor->cur_value ? "ON" : "OFF");
816 1.1 groo
817 1.73 pgoyette /* convert and print a temp value in degC, degF, or Kelvin */
818 1.73 pgoyette #define PRINTTEMP(a) \
819 1.25 xtraeme do { \
820 1.73 pgoyette if (a) { \
821 1.73 pgoyette temp = ((a) / 1000000.0); \
822 1.73 pgoyette if (flags & ENVSYS_FFLAG) { \
823 1.73 pgoyette temp = temp * (9.0 / 5.0) - 459.67; \
824 1.73 pgoyette degrees = "degF"; \
825 1.73 pgoyette } else if (flags & ENVSYS_KFLAG) { \
826 1.73 pgoyette degrees = "K"; \
827 1.73 pgoyette } else { \
828 1.73 pgoyette temp = temp - 273.15; \
829 1.73 pgoyette degrees = "degC"; \
830 1.73 pgoyette } \
831 1.73 pgoyette (void)printf("%*.3f ", (int)ilen, temp); \
832 1.73 pgoyette ilen = 8; \
833 1.73 pgoyette } else \
834 1.73 pgoyette ilen += 9; \
835 1.25 xtraeme } while (/* CONSTCOND */ 0)
836 1.25 xtraeme
837 1.25 xtraeme /* temperatures */
838 1.59 xtraeme } else if (strcmp(sensor->type, "Temperature") == 0) {
839 1.25 xtraeme
840 1.73 pgoyette ilen = 10;
841 1.73 pgoyette degrees = "";
842 1.73 pgoyette (void)printf(":");
843 1.73 pgoyette PRINTTEMP(sensor->cur_value);
844 1.61 xtraeme stype = degrees;
845 1.25 xtraeme
846 1.73 pgoyette ilen = 8;
847 1.61 xtraeme if (statistics) {
848 1.61 xtraeme /* show statistics if flag set */
849 1.73 pgoyette PRINTTEMP(stats->max);
850 1.73 pgoyette PRINTTEMP(stats->min);
851 1.73 pgoyette PRINTTEMP(stats->avg);
852 1.75 cnst ilen += 2;
853 1.61 xtraeme } else {
854 1.73 pgoyette PRINTTEMP(sensor->critmax_value);
855 1.73 pgoyette PRINTTEMP(sensor->warnmax_value);
856 1.73 pgoyette PRINTTEMP(sensor->warnmin_value);
857 1.74 cnst PRINTTEMP(sensor->critmin_value);
858 1.25 xtraeme }
859 1.73 pgoyette (void)printf("%*s", (int)ilen - 4, stype);
860 1.73 pgoyette #undef PRINTTEMP
861 1.25 xtraeme
862 1.25 xtraeme /* fans */
863 1.59 xtraeme } else if (strcmp(sensor->type, "Fan") == 0) {
864 1.61 xtraeme stype = "RPM";
865 1.25 xtraeme
866 1.73 pgoyette (void)printf(":%10u ", sensor->cur_value);
867 1.73 pgoyette
868 1.73 pgoyette ilen = 8;
869 1.61 xtraeme if (statistics) {
870 1.61 xtraeme /* show statistics if flag set */
871 1.61 xtraeme (void)printf("%8u %8u %8u ",
872 1.61 xtraeme stats->max, stats->min, stats->avg);
873 1.75 cnst ilen += 2;
874 1.73 pgoyette } else {
875 1.73 pgoyette if (sensor->critmax_value) {
876 1.73 pgoyette (void)printf("%*u ", (int)ilen,
877 1.73 pgoyette sensor->critmax_value);
878 1.73 pgoyette ilen = 8;
879 1.73 pgoyette } else
880 1.73 pgoyette ilen += 9;
881 1.73 pgoyette
882 1.70 pgoyette if (sensor->warnmax_value) {
883 1.73 pgoyette (void)printf("%*u ", (int)ilen,
884 1.70 pgoyette sensor->warnmax_value);
885 1.73 pgoyette ilen = 8;
886 1.73 pgoyette } else
887 1.73 pgoyette ilen += 9;
888 1.70 pgoyette
889 1.70 pgoyette if (sensor->warnmin_value) {
890 1.70 pgoyette (void)printf("%*u ", (int)ilen,
891 1.70 pgoyette sensor->warnmin_value);
892 1.73 pgoyette ilen = 8;
893 1.73 pgoyette } else
894 1.73 pgoyette ilen += 9;
895 1.61 xtraeme
896 1.61 xtraeme if (sensor->critmin_value) {
897 1.73 pgoyette (void)printf( "%*u ", (int)ilen,
898 1.73 pgoyette sensor->warnmax_value);
899 1.73 pgoyette ilen = 8;
900 1.73 pgoyette } else
901 1.73 pgoyette ilen += 9;
902 1.73 pgoyette
903 1.61 xtraeme }
904 1.25 xtraeme
905 1.73 pgoyette (void)printf("%*s", (int)ilen - 4, stype);
906 1.25 xtraeme
907 1.25 xtraeme /* integers */
908 1.59 xtraeme } else if (strcmp(sensor->type, "Integer") == 0) {
909 1.25 xtraeme
910 1.73 pgoyette (void)printf(":%10d", sensor->cur_value);
911 1.25 xtraeme
912 1.46 xtraeme /* drives */
913 1.59 xtraeme } else if (strcmp(sensor->type, "Drive") == 0) {
914 1.27 xtraeme
915 1.73 pgoyette (void)printf(":%10s", sensor->drvstate);
916 1.25 xtraeme
917 1.57 xtraeme /* Battery capacity */
918 1.59 xtraeme } else if (strcmp(sensor->type, "Battery capacity") == 0) {
919 1.46 xtraeme
920 1.73 pgoyette (void)printf(":%10s", sensor->battcap);
921 1.46 xtraeme
922 1.25 xtraeme /* everything else */
923 1.25 xtraeme } else {
924 1.59 xtraeme if (strcmp(sensor->type, "Voltage DC") == 0)
925 1.61 xtraeme stype = "V";
926 1.59 xtraeme else if (strcmp(sensor->type, "Voltage AC") == 0)
927 1.61 xtraeme stype = "VAC";
928 1.59 xtraeme else if (strcmp(sensor->type, "Ampere") == 0)
929 1.61 xtraeme stype = "A";
930 1.59 xtraeme else if (strcmp(sensor->type, "Watts") == 0)
931 1.61 xtraeme stype = "W";
932 1.59 xtraeme else if (strcmp(sensor->type, "Ohms") == 0)
933 1.61 xtraeme stype = "Ohms";
934 1.59 xtraeme else if (strcmp(sensor->type, "Watt hour") == 0)
935 1.61 xtraeme stype = "Wh";
936 1.59 xtraeme else if (strcmp(sensor->type, "Ampere hour") == 0)
937 1.61 xtraeme stype = "Ah";
938 1.61 xtraeme
939 1.73 pgoyette (void)printf(":%10.3f ",
940 1.61 xtraeme sensor->cur_value / 1000000.0);
941 1.61 xtraeme
942 1.73 pgoyette ilen = 8;
943 1.61 xtraeme if (!statistics) {
944 1.73 pgoyette
945 1.73 pgoyette /* Print percentage of max_value */
946 1.73 pgoyette #define PRINTPCT(a) \
947 1.73 pgoyette do { \
948 1.73 pgoyette if (sensor->a && sensor->max_value) { \
949 1.73 pgoyette (void)printf("%*.3f%%", (int)ilen, \
950 1.73 pgoyette (sensor->a * 100.0) / sensor->max_value); \
951 1.73 pgoyette ilen = 8; \
952 1.73 pgoyette } else \
953 1.73 pgoyette ilen += 9; \
954 1.73 pgoyette } while ( /* CONSTCOND*/ 0 )
955 1.73 pgoyette
956 1.73 pgoyette /* Print a generic sensor value */
957 1.73 pgoyette #define PRINTVAL(a) \
958 1.73 pgoyette do { \
959 1.73 pgoyette if (sensor->a) { \
960 1.73 pgoyette (void)printf("%*.3f ", (int)ilen, sensor->a / 1000000.0); \
961 1.73 pgoyette ilen = 8; \
962 1.73 pgoyette } else \
963 1.73 pgoyette ilen += 9; \
964 1.73 pgoyette } while ( /* CONSTCOND*/ 0 )
965 1.73 pgoyette
966 1.73 pgoyette
967 1.73 pgoyette if (sensor->percentage) {
968 1.77 pgoyette PRINTPCT(critmax_value);
969 1.77 pgoyette PRINTPCT(warnmax_value);
970 1.77 pgoyette PRINTPCT(warnmin_value);
971 1.77 pgoyette PRINTPCT(critmin_value);
972 1.70 pgoyette } else {
973 1.73 pgoyette
974 1.73 pgoyette PRINTVAL(critmax_value);
975 1.73 pgoyette PRINTVAL(warnmax_value);
976 1.73 pgoyette PRINTVAL(warnmin_value);
977 1.73 pgoyette PRINTVAL(critmin_value);
978 1.73 pgoyette #undef PRINTPCT
979 1.73 pgoyette #undef PRINTVAL
980 1.61 xtraeme }
981 1.61 xtraeme }
982 1.1 groo
983 1.65 xtraeme if (statistics && !sensor->percentage) {
984 1.61 xtraeme /* show statistics if flag set */
985 1.61 xtraeme (void)printf("%8.3f %8.3f %8.3f ",
986 1.61 xtraeme stats->max / 1000000.0,
987 1.61 xtraeme stats->min / 1000000.0,
988 1.61 xtraeme stats->avg / 1000000.0);
989 1.75 cnst ilen += 2;
990 1.61 xtraeme }
991 1.29 xtraeme
992 1.73 pgoyette (void)printf("%*s", (int)ilen - 4, stype);
993 1.73 pgoyette
994 1.59 xtraeme if (sensor->percentage && sensor->max_value) {
995 1.73 pgoyette (void)printf(" (%5.2f%%)",
996 1.59 xtraeme (sensor->cur_value * 100.0) /
997 1.59 xtraeme sensor->max_value);
998 1.25 xtraeme }
999 1.25 xtraeme }
1000 1.25 xtraeme (void)printf("\n");
1001 1.1 groo }
1002 1.25 xtraeme }
1003 1.1 groo
1004 1.25 xtraeme static int
1005 1.25 xtraeme usage(void)
1006 1.25 xtraeme {
1007 1.71 ahoka (void)fprintf(stderr, "Usage: %s [-DfIklrSTx] ", getprogname());
1008 1.56 xtraeme (void)fprintf(stderr, "[-c file] [-d device] [-i interval] ");
1009 1.59 xtraeme (void)fprintf(stderr, "[-s device:sensor,...] [-w width]\n");
1010 1.25 xtraeme exit(EXIT_FAILURE);
1011 1.25 xtraeme /* NOTREACHED */
1012 1.1 groo }
1013