mirror of
https://github.com/lm-sensors/lm-sensors
synced 2025-08-24 10:58:18 +00:00
902 lines
25 KiB
C
902 lines
25 KiB
C
/*
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chips.c - Part of sensors, a user-space program for hardware monitoring
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Copyright (C) 1998-2003 Frodo Looijaard <frodol@dds.nl> and
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Mark D. Studebaker <mdsxyz123@yahoo.com>
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Copyright (C) 2007-2012 Jean Delvare <jdelvare@suse.de>
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston,
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MA 02110-1301 USA.
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <math.h>
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#include "main.h"
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#include "chips.h"
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#include "lib/sensors.h"
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#include "lib/error.h"
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#define ARRAY_SIZE(arr) (int)(sizeof(arr) / sizeof((arr)[0]))
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static void scale_value(double *value, const char **prefixstr);
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static inline double deg_ctof(double cel)
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{
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return cel * (9.0F / 5.0F) + 32.0F;
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}
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void print_chip_raw(const sensors_chip_name *name)
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{
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int a, b, err;
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const sensors_feature *feature;
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const sensors_subfeature *sub;
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char *label;
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double val;
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a = 0;
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while ((feature = sensors_get_features(name, &a))) {
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if (!(label = sensors_get_label(name, feature))) {
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fprintf(stderr, "ERROR: Can't get label of feature "
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"%s!\n", feature->name);
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continue;
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}
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printf("%s:\n", label);
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b = 0;
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while ((sub = sensors_get_all_subfeatures(name, feature, &b))) {
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if (sub->flags & SENSORS_MODE_R) {
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if ((err = sensors_get_value(name, sub->number,
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&val)))
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fprintf(stderr, "ERROR: Can't get "
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"value of subfeature %s: %s\n",
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sub->name,
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sensors_strerror(err));
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else {
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if (fahrenheit)
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val = deg_ctof(val);
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printf(" %s: %.3f\n", sub->name, val);
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}
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} else
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printf("(%s)\n", label);
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}
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free(label);
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}
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}
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void print_chip_json(const sensors_chip_name *name)
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{
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int a, b, cnt, subCnt, err;
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const sensors_feature *feature;
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const sensors_subfeature *sub;
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char *label;
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double val;
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a = 0;
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cnt = 0;
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while ((feature = sensors_get_features(name, &a))) {
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if (!(label = sensors_get_label(name, feature))) {
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fprintf(stderr, "ERROR: Can't get label of feature "
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"%s!\n", feature->name);
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continue;
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}
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if (cnt > 0)
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printf(",\n");
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printf(" \"%s\":{\n", label);
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b = 0;
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subCnt = 0;
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while ((sub = sensors_get_all_subfeatures(name, feature, &b))) {
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if (sub->flags & SENSORS_MODE_R) {
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if ((err = sensors_get_value(name, sub->number,
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&val))) {
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fprintf(stderr, "ERROR: Can't get "
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"value of subfeature %s: %s\n",
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sub->name,
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sensors_strerror(err));
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} else {
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if (subCnt > 0)
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printf(",\n");
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if (fahrenheit)
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val = deg_ctof(val);
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printf(" \"%s\": %.3f", sub->name, val);
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subCnt++;
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}
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} else {
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printf("(%s)", label);
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subCnt++;
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}
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}
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free(label);
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printf("\n }");
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cnt++;
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}
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if (cnt > 0)
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printf("\n");
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}
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static const char hyst_str[] = "hyst";
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static void print_label(const char *label, int space)
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{
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int len = strlen(label)+1;
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printf("%s:%*s", label, space - len, "");
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}
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static double get_value(const sensors_chip_name *name,
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const sensors_subfeature *sub)
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{
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double val;
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int err;
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err = sensors_get_value(name, sub->number, &val);
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if (err) {
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fprintf(stderr, "ERROR: Can't get value of subfeature %s: %s\n",
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sub->name, sensors_strerror(err));
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val = 0;
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}
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return val;
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}
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/* A variant for input values, where we want to handle errors gracefully */
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static int get_input_value(const sensors_chip_name *name,
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const sensors_subfeature *sub,
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double *val)
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{
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int err;
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err = sensors_get_value(name, sub->number, val);
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if (err && err != -SENSORS_ERR_ACCESS_R) {
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fprintf(stderr, "ERROR: Can't get value of subfeature %s: %s\n",
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sub->name, sensors_strerror(err));
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}
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return err;
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}
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static int get_label_size(const sensors_chip_name *name)
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{
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int i;
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const sensors_feature *iter;
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char *label;
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unsigned int max_size = 11; /* 11 as minimum label width */
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i = 0;
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while ((iter = sensors_get_features(name, &i))) {
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if ((label = sensors_get_label(name, iter)) &&
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strlen(label) > max_size)
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max_size = strlen(label);
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free(label);
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}
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/* One more for the colon, and one more to guarantee at least one
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space between that colon and the value */
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return max_size + 2;
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}
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static void print_alarms(struct sensor_subfeature_data *alarms, int alarm_count,
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int leading_spaces)
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{
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int i, printed;
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printf("%*s", leading_spaces + 7, "ALARM");
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if (alarm_count > 1 || alarms[0].name) {
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printf(" (");
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for (i = printed = 0; i < alarm_count; i++) {
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if (alarms[i].name) {
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if (printed)
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printf(", ");
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printf("%s", alarms[i].name);
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printed = 1;
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}
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}
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printf(")");
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}
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}
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static void print_limits(struct sensor_subfeature_data *limits,
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int limit_count,
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struct sensor_subfeature_data *alarms,
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int alarm_count, int label_size,
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const char *fmt)
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{
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int i, slot, skip;
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int alarms_printed = 0;
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/*
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* We print limits on two columns, filling lines first, except for
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* hysteresis which must always go on the right column, with the
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* limit it relates to being in the left column on the same line.
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*/
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for (i = slot = 0; i < limit_count; i++, slot++) {
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if (!(slot & 1)) {
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if (slot)
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printf("\n%*s", label_size + 10, "");
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printf("(");
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} else {
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printf(", ");
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}
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printf(fmt, limits[i].name, limits[i].value,
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limits[i].unit);
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/* If needed, skip one slot to avoid hyst on first column */
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skip = i + 2 < limit_count && limits[i + 2].name == hyst_str &&
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!(slot & 1);
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if (((slot + skip) & 1) || i == limit_count - 1) {
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printf(")");
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if (alarm_count && !alarms_printed) {
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print_alarms(alarms, alarm_count,
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(slot & 1) ? 0 : 16);
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alarms_printed = 1;
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}
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}
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slot += skip;
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}
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if (alarm_count && !alarms_printed)
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print_alarms(alarms, alarm_count, 32);
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}
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/*
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* Get sensor limit information.
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* *num_limits and *num_alarms must be initialized by the caller.
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*/
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static void get_sensor_limit_data(const sensors_chip_name *name,
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const sensors_feature *feature,
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const struct sensor_subfeature_list *sfl,
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struct sensor_subfeature_data *limits,
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int *num_limits,
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struct sensor_subfeature_data *alarms,
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int *num_alarms)
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{
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const sensors_subfeature *sf;
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for (; sfl->subfeature >= 0; sfl++) {
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sf = sensors_get_subfeature(name, feature, sfl->subfeature);
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if (sf) {
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if (sfl->alarm) {
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/*
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* Only queue alarm subfeatures if the alarm
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* is active, and don't store the alarm value
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* (it is implied to be active if queued).
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*/
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if (get_value(name, sf)) {
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alarms[*num_alarms].name = sfl->name;
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(*num_alarms)++;
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}
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} else {
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/*
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* Always queue limit subfeatures with their value.
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*/
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limits[*num_limits].value = get_value(name, sf);
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limits[*num_limits].name = sfl->name;
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(*num_limits)++;
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}
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if (sfl->exists) {
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get_sensor_limit_data(name, feature, sfl->exists,
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limits, num_limits,
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alarms, num_alarms);
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}
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}
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}
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}
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static const struct sensor_subfeature_list temp_min_sensors[] = {
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{ SENSORS_SUBFEATURE_TEMP_MIN_HYST, NULL, 0, hyst_str },
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{ -1, NULL, 0, NULL }
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};
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static const struct sensor_subfeature_list temp_lcrit_sensors[] = {
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{ SENSORS_SUBFEATURE_TEMP_LCRIT_HYST, NULL, 0, hyst_str },
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{ -1, NULL, 0, NULL }
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};
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static const struct sensor_subfeature_list temp_max_sensors[] = {
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{ SENSORS_SUBFEATURE_TEMP_MAX_HYST, NULL, 0, hyst_str },
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{ -1, NULL, 0, NULL }
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};
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static const struct sensor_subfeature_list temp_crit_sensors[] = {
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{ SENSORS_SUBFEATURE_TEMP_CRIT_HYST, NULL, 0, hyst_str },
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{ -1, NULL, 0, NULL }
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};
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static const struct sensor_subfeature_list temp_emergency_sensors[] = {
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{ SENSORS_SUBFEATURE_TEMP_EMERGENCY_HYST, NULL, 0,
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hyst_str },
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{ -1, NULL, 0, NULL }
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};
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static const struct sensor_subfeature_list temp_sensors[] = {
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{ SENSORS_SUBFEATURE_TEMP_ALARM, NULL, 1, NULL },
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{ SENSORS_SUBFEATURE_TEMP_LCRIT_ALARM, NULL, 1, "LCRIT" },
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{ SENSORS_SUBFEATURE_TEMP_MIN_ALARM, NULL, 1, "LOW" },
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{ SENSORS_SUBFEATURE_TEMP_MAX_ALARM, NULL, 1, "HIGH" },
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{ SENSORS_SUBFEATURE_TEMP_CRIT_ALARM, NULL, 1, "CRIT" },
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{ SENSORS_SUBFEATURE_TEMP_EMERGENCY_ALARM, NULL, 1, "EMERGENCY" },
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{ SENSORS_SUBFEATURE_TEMP_MIN, temp_min_sensors, 0, "low" },
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{ SENSORS_SUBFEATURE_TEMP_MAX, temp_max_sensors, 0, "high" },
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{ SENSORS_SUBFEATURE_TEMP_LCRIT, temp_lcrit_sensors, 0, "crit low" },
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{ SENSORS_SUBFEATURE_TEMP_CRIT, temp_crit_sensors, 0, "crit" },
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{ SENSORS_SUBFEATURE_TEMP_EMERGENCY, temp_emergency_sensors, 0,
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"emerg" },
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{ SENSORS_SUBFEATURE_TEMP_LOWEST, NULL, 0, "lowest" },
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{ SENSORS_SUBFEATURE_TEMP_HIGHEST, NULL, 0, "highest" },
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{ -1, NULL, 0, NULL }
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};
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#define NUM_TEMP_ALARMS 6
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#define NUM_TEMP_SENSORS (ARRAY_SIZE(temp_sensors) \
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+ ARRAY_SIZE(temp_max_sensors) \
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+ ARRAY_SIZE(temp_crit_sensors) \
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+ ARRAY_SIZE(temp_emergency_sensors) \
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- NUM_TEMP_ALARMS - 4)
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static void print_chip_temp(const sensors_chip_name *name,
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const sensors_feature *feature,
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int label_size)
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{
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struct sensor_subfeature_data sensors[NUM_TEMP_SENSORS];
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struct sensor_subfeature_data alarms[NUM_TEMP_ALARMS];
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int sensor_count, alarm_count;
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const sensors_subfeature *sf;
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double val;
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char *label;
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int i;
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if (!(label = sensors_get_label(name, feature))) {
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fprintf(stderr, "ERROR: Can't get label of feature %s!\n",
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feature->name);
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return;
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}
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print_label(label, label_size);
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free(label);
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sf = sensors_get_subfeature(name, feature,
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SENSORS_SUBFEATURE_TEMP_FAULT);
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if (sf && get_value(name, sf)) {
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printf(" FAULT ");
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} else {
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sf = sensors_get_subfeature(name, feature,
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SENSORS_SUBFEATURE_TEMP_INPUT);
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if (sf && get_input_value(name, sf, &val) == 0) {
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if (fahrenheit)
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val = deg_ctof(val);
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printf("%+6.1f%s ", val, degstr);
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} else
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printf(" N/A ");
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}
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sensor_count = alarm_count = 0;
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get_sensor_limit_data(name, feature, temp_sensors,
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sensors, &sensor_count, alarms, &alarm_count);
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for (i = 0; i < sensor_count; i++) {
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if (fahrenheit)
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sensors[i].value = deg_ctof(sensors[i].value);
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sensors[i].unit = degstr;
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}
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print_limits(sensors, sensor_count, alarms, alarm_count, label_size,
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"%-4s = %+5.1f%s");
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/* print out temperature sensor info */
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sf = sensors_get_subfeature(name, feature,
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SENSORS_SUBFEATURE_TEMP_TYPE);
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if (sf) {
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int sens = (int)get_value(name, sf);
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/* older kernels / drivers sometimes report a beta value for
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thermistors */
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if (sens > 1000)
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sens = 4;
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printf(" sensor = %s", sens == 0 ? "disabled" :
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sens == 1 ? "CPU diode" :
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sens == 2 ? "transistor" :
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sens == 3 ? "thermal diode" :
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sens == 4 ? "thermistor" :
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sens == 5 ? "AMD AMDSI" :
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sens == 6 ? "Intel PECI" : "unknown");
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}
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printf("\n");
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}
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static const struct sensor_subfeature_list voltage_sensors[] = {
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{ SENSORS_SUBFEATURE_IN_ALARM, NULL, 1, NULL },
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{ SENSORS_SUBFEATURE_IN_LCRIT_ALARM, NULL, 1, "LCRIT" },
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{ SENSORS_SUBFEATURE_IN_MIN_ALARM, NULL, 1, "MIN" },
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{ SENSORS_SUBFEATURE_IN_MAX_ALARM, NULL, 1, "MAX" },
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{ SENSORS_SUBFEATURE_IN_CRIT_ALARM, NULL, 1, "CRIT" },
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{ SENSORS_SUBFEATURE_IN_LCRIT, NULL, 0, "crit min" },
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{ SENSORS_SUBFEATURE_IN_MIN, NULL, 0, "min" },
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{ SENSORS_SUBFEATURE_IN_MAX, NULL, 0, "max" },
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{ SENSORS_SUBFEATURE_IN_CRIT, NULL, 0, "crit max" },
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{ SENSORS_SUBFEATURE_IN_AVERAGE, NULL, 0, "avg" },
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{ SENSORS_SUBFEATURE_IN_LOWEST, NULL, 0, "lowest" },
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{ SENSORS_SUBFEATURE_IN_HIGHEST, NULL, 0, "highest" },
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{ -1, NULL, 0, NULL }
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};
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#define NUM_IN_ALARMS 5
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#define NUM_IN_SENSORS (ARRAY_SIZE(voltage_sensors) - NUM_IN_ALARMS - 1)
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static void print_chip_in(const sensors_chip_name *name,
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const sensors_feature *feature,
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int label_size)
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{
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const sensors_subfeature *sf;
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char *label;
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const char *unit;
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struct sensor_subfeature_data sensors[NUM_IN_SENSORS];
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struct sensor_subfeature_data alarms[NUM_IN_ALARMS];
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int sensor_count, alarm_count;
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double val;
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if (!(label = sensors_get_label(name, feature))) {
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fprintf(stderr, "ERROR: Can't get label of feature %s!\n",
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feature->name);
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return;
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}
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print_label(label, label_size);
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free(label);
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sf = sensors_get_subfeature(name, feature,
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SENSORS_SUBFEATURE_IN_INPUT);
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if (sf && get_input_value(name, sf, &val) == 0) {
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scale_value(&val, &unit);
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printf("%6.2f %sV%*s", val, unit, 2 - (int)strlen(unit), "");
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} else {
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printf(" N/A ");
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}
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sensor_count = alarm_count = 0;
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get_sensor_limit_data(name, feature, voltage_sensors,
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sensors, &sensor_count, alarms, &alarm_count);
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print_limits(sensors, sensor_count, alarms, alarm_count, label_size,
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"%s = %+6.2f V");
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printf("\n");
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}
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static void print_chip_fan(const sensors_chip_name *name,
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const sensors_feature *feature,
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int label_size)
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{
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const sensors_subfeature *sf, *sfmin, *sfmax, *sfdiv;
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double val;
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char *label;
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if (!(label = sensors_get_label(name, feature))) {
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fprintf(stderr, "ERROR: Can't get label of feature %s!\n",
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feature->name);
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return;
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}
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print_label(label, label_size);
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free(label);
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sf = sensors_get_subfeature(name, feature,
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SENSORS_SUBFEATURE_FAN_FAULT);
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if (sf && get_value(name, sf))
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printf(" FAULT");
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else {
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sf = sensors_get_subfeature(name, feature,
|
|
SENSORS_SUBFEATURE_FAN_INPUT);
|
|
if (sf && get_input_value(name, sf, &val) == 0)
|
|
printf("%4.0f RPM", val);
|
|
else
|
|
printf(" N/A");
|
|
}
|
|
|
|
sfmin = sensors_get_subfeature(name, feature,
|
|
SENSORS_SUBFEATURE_FAN_MIN);
|
|
sfmax = sensors_get_subfeature(name, feature,
|
|
SENSORS_SUBFEATURE_FAN_MAX);
|
|
sfdiv = sensors_get_subfeature(name, feature,
|
|
SENSORS_SUBFEATURE_FAN_DIV);
|
|
if (sfmin || sfmax || sfdiv) {
|
|
printf(" (");
|
|
if (sfmin)
|
|
printf("min = %4.0f RPM",
|
|
get_value(name, sfmin));
|
|
if (sfmax)
|
|
printf("%smax = %4.0f RPM",
|
|
sfmin ? ", " : "",
|
|
get_value(name, sfmax));
|
|
if (sfdiv)
|
|
printf("%sdiv = %1.0f",
|
|
(sfmin || sfmax) ? ", " : "",
|
|
get_value(name, sfdiv));
|
|
printf(")");
|
|
}
|
|
|
|
sf = sensors_get_subfeature(name, feature,
|
|
SENSORS_SUBFEATURE_FAN_ALARM);
|
|
sfmin = sensors_get_subfeature(name, feature,
|
|
SENSORS_SUBFEATURE_FAN_MIN_ALARM);
|
|
sfmax = sensors_get_subfeature(name, feature,
|
|
SENSORS_SUBFEATURE_FAN_MAX_ALARM);
|
|
if ((sf && get_value(name, sf)) ||
|
|
(sfmin && get_value(name, sfmin)) ||
|
|
(sfmax && get_value(name, sfmax)))
|
|
printf(" ALARM");
|
|
|
|
printf("\n");
|
|
}
|
|
|
|
struct scale_table {
|
|
double upper_bound;
|
|
const char *unit;
|
|
};
|
|
|
|
static void scale_value(double *value, const char **prefixstr)
|
|
{
|
|
double abs_value = fabs(*value);
|
|
double divisor = 1e-9;
|
|
static struct scale_table prefix_scales[] = {
|
|
{1e-6, "n"},
|
|
{1e-3, "u"},
|
|
{1, "m"},
|
|
{1e3, ""},
|
|
{1e6, "k"},
|
|
{1e9, "M"},
|
|
{0, "G"}, /* no upper bound */
|
|
};
|
|
struct scale_table *scale = prefix_scales;
|
|
|
|
if (abs_value == 0) {
|
|
*prefixstr = "";
|
|
return;
|
|
}
|
|
|
|
while (scale->upper_bound && abs_value > scale->upper_bound) {
|
|
divisor = scale->upper_bound;
|
|
scale++;
|
|
}
|
|
|
|
*value /= divisor;
|
|
*prefixstr = scale->unit;
|
|
}
|
|
|
|
static const struct sensor_subfeature_list power_common_sensors[] = {
|
|
{ SENSORS_SUBFEATURE_POWER_ALARM, NULL, 1, NULL },
|
|
{ SENSORS_SUBFEATURE_POWER_MIN_ALARM, NULL, 1, "MIN" },
|
|
{ SENSORS_SUBFEATURE_POWER_MAX_ALARM, NULL, 1, "MAX" },
|
|
{ SENSORS_SUBFEATURE_POWER_LCRIT_ALARM, NULL, 1, "LCRIT" },
|
|
{ SENSORS_SUBFEATURE_POWER_CRIT_ALARM, NULL, 1, "CRIT" },
|
|
{ SENSORS_SUBFEATURE_POWER_CAP_ALARM, NULL, 1, "CAP" },
|
|
{ SENSORS_SUBFEATURE_POWER_MAX, NULL, 0, "max" },
|
|
{ SENSORS_SUBFEATURE_POWER_MIN, NULL, 0, "min" },
|
|
{ SENSORS_SUBFEATURE_POWER_LCRIT, NULL, 0, "lcrit" },
|
|
{ SENSORS_SUBFEATURE_POWER_CRIT, NULL, 0, "crit" },
|
|
{ SENSORS_SUBFEATURE_POWER_CAP, NULL, 0, "cap" },
|
|
{ -1, NULL, 0, NULL }
|
|
};
|
|
|
|
static const struct sensor_subfeature_list power_inst_sensors[] = {
|
|
{ SENSORS_SUBFEATURE_POWER_INPUT_LOWEST, NULL, 0, "lowest" },
|
|
{ SENSORS_SUBFEATURE_POWER_INPUT_HIGHEST, NULL, 0, "highest" },
|
|
{ SENSORS_SUBFEATURE_POWER_AVERAGE, NULL, 0, "avg" },
|
|
{ SENSORS_SUBFEATURE_POWER_AVERAGE_LOWEST, NULL, 0, "avg lowest" },
|
|
{ SENSORS_SUBFEATURE_POWER_AVERAGE_HIGHEST, NULL, 0, "avg highest" },
|
|
{ SENSORS_SUBFEATURE_POWER_AVERAGE_INTERVAL, NULL, 0,
|
|
"interval" },
|
|
{ -1, NULL, 0, NULL }
|
|
};
|
|
|
|
static const struct sensor_subfeature_list power_avg_sensors[] = {
|
|
{ SENSORS_SUBFEATURE_POWER_AVERAGE_LOWEST, NULL, 0, "lowest" },
|
|
{ SENSORS_SUBFEATURE_POWER_AVERAGE_HIGHEST, NULL, 0, "highest" },
|
|
{ SENSORS_SUBFEATURE_POWER_AVERAGE_INTERVAL, NULL, 0,
|
|
"interval" },
|
|
{ -1, NULL, 0, NULL }
|
|
};
|
|
|
|
#define NUM_POWER_ALARMS 6
|
|
#define NUM_POWER_SENSORS (ARRAY_SIZE(power_common_sensors) \
|
|
+ ARRAY_SIZE(power_inst_sensors) \
|
|
- NUM_POWER_ALARMS - 2)
|
|
|
|
static void print_chip_power(const sensors_chip_name *name,
|
|
const sensors_feature *feature,
|
|
int label_size)
|
|
{
|
|
double val;
|
|
const sensors_subfeature *sf;
|
|
struct sensor_subfeature_data sensors[NUM_POWER_SENSORS];
|
|
struct sensor_subfeature_data alarms[NUM_POWER_ALARMS];
|
|
int sensor_count, alarm_count;
|
|
char *label;
|
|
const char *unit;
|
|
int i;
|
|
|
|
if (!(label = sensors_get_label(name, feature))) {
|
|
fprintf(stderr, "ERROR: Can't get label of feature %s!\n",
|
|
feature->name);
|
|
return;
|
|
}
|
|
print_label(label, label_size);
|
|
free(label);
|
|
|
|
sensor_count = alarm_count = 0;
|
|
|
|
/*
|
|
* Power sensors come in 2 flavors: instantaneous and averaged.
|
|
* Most devices only support one flavor, so we try to display the
|
|
* average power if the instantaneous power attribute does not exist.
|
|
* If both instantaneous power and average power are supported,
|
|
* average power is displayed as limit.
|
|
*/
|
|
sf = sensors_get_subfeature(name, feature,
|
|
SENSORS_SUBFEATURE_POWER_INPUT);
|
|
get_sensor_limit_data(name, feature,
|
|
sf ? power_inst_sensors : power_avg_sensors,
|
|
sensors, &sensor_count, alarms, &alarm_count);
|
|
/* Add sensors common to both flavors. */
|
|
get_sensor_limit_data(name, feature, power_common_sensors,
|
|
sensors, &sensor_count, alarms, &alarm_count);
|
|
if (!sf)
|
|
sf = sensors_get_subfeature(name, feature,
|
|
SENSORS_SUBFEATURE_POWER_AVERAGE);
|
|
|
|
if (sf && get_input_value(name, sf, &val) == 0) {
|
|
scale_value(&val, &unit);
|
|
printf("%6.2f %sW%*s", val, unit, 2 - (int)strlen(unit), "");
|
|
} else {
|
|
printf(" N/A ");
|
|
}
|
|
|
|
for (i = 0; i < sensor_count; i++) {
|
|
/*
|
|
* Unit is W and needs to be scaled for all attributes except
|
|
* interval, which does not need to be scaled and is reported in
|
|
* seconds.
|
|
*/
|
|
if (strcmp(sensors[i].name, "interval")) {
|
|
char *tmpstr;
|
|
|
|
tmpstr = alloca(4);
|
|
scale_value(&sensors[i].value, &unit);
|
|
snprintf(tmpstr, 4, "%sW", unit);
|
|
sensors[i].unit = tmpstr;
|
|
} else {
|
|
sensors[i].unit = "s";
|
|
}
|
|
}
|
|
print_limits(sensors, sensor_count, alarms, alarm_count,
|
|
label_size, "%s = %6.2f %s");
|
|
|
|
printf("\n");
|
|
}
|
|
|
|
static void print_chip_energy(const sensors_chip_name *name,
|
|
const sensors_feature *feature,
|
|
int label_size)
|
|
{
|
|
double val;
|
|
const sensors_subfeature *sf;
|
|
char *label;
|
|
const char *unit;
|
|
|
|
if (!(label = sensors_get_label(name, feature))) {
|
|
fprintf(stderr, "ERROR: Can't get label of feature %s!\n",
|
|
feature->name);
|
|
return;
|
|
}
|
|
print_label(label, label_size);
|
|
free(label);
|
|
|
|
sf = sensors_get_subfeature(name, feature,
|
|
SENSORS_SUBFEATURE_ENERGY_INPUT);
|
|
if (sf && get_input_value(name, sf, &val) == 0) {
|
|
scale_value(&val, &unit);
|
|
printf("%6.2f %sJ", val, unit);
|
|
} else {
|
|
printf(" N/A");
|
|
}
|
|
|
|
printf("\n");
|
|
}
|
|
|
|
static void print_chip_vid(const sensors_chip_name *name,
|
|
const sensors_feature *feature,
|
|
int label_size)
|
|
{
|
|
char *label;
|
|
const sensors_subfeature *subfeature;
|
|
double vid;
|
|
|
|
subfeature = sensors_get_subfeature(name, feature,
|
|
SENSORS_SUBFEATURE_VID);
|
|
if (!subfeature)
|
|
return;
|
|
|
|
if ((label = sensors_get_label(name, feature))
|
|
&& !sensors_get_value(name, subfeature->number, &vid)) {
|
|
print_label(label, label_size);
|
|
printf("%+6.3f V\n", vid);
|
|
}
|
|
free(label);
|
|
}
|
|
|
|
static void print_chip_humidity(const sensors_chip_name *name,
|
|
const sensors_feature *feature,
|
|
int label_size)
|
|
{
|
|
char *label;
|
|
const sensors_subfeature *subfeature;
|
|
double humidity;
|
|
|
|
subfeature = sensors_get_subfeature(name, feature,
|
|
SENSORS_SUBFEATURE_HUMIDITY_INPUT);
|
|
if (!subfeature)
|
|
return;
|
|
|
|
if ((label = sensors_get_label(name, feature))
|
|
&& !sensors_get_value(name, subfeature->number, &humidity)) {
|
|
print_label(label, label_size);
|
|
printf("%6.1f %%RH\n", humidity);
|
|
}
|
|
free(label);
|
|
}
|
|
|
|
static void print_chip_beep_enable(const sensors_chip_name *name,
|
|
const sensors_feature *feature,
|
|
int label_size)
|
|
{
|
|
char *label;
|
|
const sensors_subfeature *subfeature;
|
|
double beep_enable;
|
|
|
|
subfeature = sensors_get_subfeature(name, feature,
|
|
SENSORS_SUBFEATURE_BEEP_ENABLE);
|
|
if (!subfeature)
|
|
return;
|
|
|
|
if ((label = sensors_get_label(name, feature))
|
|
&& !sensors_get_value(name, subfeature->number, &beep_enable)) {
|
|
print_label(label, label_size);
|
|
printf("%s\n", beep_enable ? "enabled" : "disabled");
|
|
}
|
|
free(label);
|
|
}
|
|
|
|
static const struct sensor_subfeature_list current_sensors[] = {
|
|
{ SENSORS_SUBFEATURE_CURR_ALARM, NULL, 1, NULL },
|
|
{ SENSORS_SUBFEATURE_CURR_LCRIT_ALARM, NULL, 1, "LCRIT" },
|
|
{ SENSORS_SUBFEATURE_CURR_MIN_ALARM, NULL, 1, "MIN" },
|
|
{ SENSORS_SUBFEATURE_CURR_MAX_ALARM, NULL, 1, "MAX" },
|
|
{ SENSORS_SUBFEATURE_CURR_CRIT_ALARM, NULL, 1, "CRIT" },
|
|
{ SENSORS_SUBFEATURE_CURR_LCRIT, NULL, 0, "crit min" },
|
|
{ SENSORS_SUBFEATURE_CURR_MIN, NULL, 0, "min" },
|
|
{ SENSORS_SUBFEATURE_CURR_MAX, NULL, 0, "max" },
|
|
{ SENSORS_SUBFEATURE_CURR_CRIT, NULL, 0, "crit max" },
|
|
{ SENSORS_SUBFEATURE_CURR_AVERAGE, NULL, 0, "avg" },
|
|
{ SENSORS_SUBFEATURE_CURR_LOWEST, NULL, 0, "lowest" },
|
|
{ SENSORS_SUBFEATURE_CURR_HIGHEST, NULL, 0, "highest" },
|
|
{ -1, NULL, 0, NULL }
|
|
};
|
|
|
|
#define NUM_CURR_ALARMS 5
|
|
#define NUM_CURR_SENSORS (ARRAY_SIZE(current_sensors) - NUM_CURR_ALARMS - 1)
|
|
|
|
static void print_chip_curr(const sensors_chip_name *name,
|
|
const sensors_feature *feature,
|
|
int label_size)
|
|
{
|
|
const sensors_subfeature *sf;
|
|
double val;
|
|
char *label;
|
|
const char *unit;
|
|
struct sensor_subfeature_data sensors[NUM_CURR_SENSORS];
|
|
struct sensor_subfeature_data alarms[NUM_CURR_ALARMS];
|
|
int sensor_count, alarm_count;
|
|
|
|
if (!(label = sensors_get_label(name, feature))) {
|
|
fprintf(stderr, "ERROR: Can't get label of feature %s!\n",
|
|
feature->name);
|
|
return;
|
|
}
|
|
print_label(label, label_size);
|
|
free(label);
|
|
|
|
sf = sensors_get_subfeature(name, feature,
|
|
SENSORS_SUBFEATURE_CURR_INPUT);
|
|
if (sf && get_input_value(name, sf, &val) == 0) {
|
|
scale_value(&val, &unit);
|
|
printf("%6.2f %sA%*s", val, unit, 2 - (int)strlen(unit), "");
|
|
} else {
|
|
printf(" N/A ");
|
|
}
|
|
|
|
sensor_count = alarm_count = 0;
|
|
get_sensor_limit_data(name, feature, current_sensors,
|
|
sensors, &sensor_count, alarms, &alarm_count);
|
|
|
|
print_limits(sensors, sensor_count, alarms, alarm_count, label_size,
|
|
"%s = %+6.2f A");
|
|
|
|
printf("\n");
|
|
}
|
|
|
|
static void print_chip_intrusion(const sensors_chip_name *name,
|
|
const sensors_feature *feature,
|
|
int label_size)
|
|
{
|
|
char *label;
|
|
const sensors_subfeature *subfeature;
|
|
double alarm;
|
|
|
|
subfeature = sensors_get_subfeature(name, feature,
|
|
SENSORS_SUBFEATURE_INTRUSION_ALARM);
|
|
if (!subfeature)
|
|
return;
|
|
|
|
if ((label = sensors_get_label(name, feature))
|
|
&& !sensors_get_value(name, subfeature->number, &alarm)) {
|
|
print_label(label, label_size);
|
|
printf("%s\n", alarm ? "ALARM" : "OK");
|
|
}
|
|
free(label);
|
|
}
|
|
|
|
void print_chip(const sensors_chip_name *name)
|
|
{
|
|
const sensors_feature *feature;
|
|
int i, label_size;
|
|
|
|
label_size = get_label_size(name);
|
|
|
|
i = 0;
|
|
while ((feature = sensors_get_features(name, &i))) {
|
|
switch (feature->type) {
|
|
case SENSORS_FEATURE_TEMP:
|
|
print_chip_temp(name, feature, label_size);
|
|
break;
|
|
case SENSORS_FEATURE_IN:
|
|
print_chip_in(name, feature, label_size);
|
|
break;
|
|
case SENSORS_FEATURE_FAN:
|
|
print_chip_fan(name, feature, label_size);
|
|
break;
|
|
case SENSORS_FEATURE_VID:
|
|
print_chip_vid(name, feature, label_size);
|
|
break;
|
|
case SENSORS_FEATURE_BEEP_ENABLE:
|
|
print_chip_beep_enable(name, feature, label_size);
|
|
break;
|
|
case SENSORS_FEATURE_POWER:
|
|
print_chip_power(name, feature, label_size);
|
|
break;
|
|
case SENSORS_FEATURE_ENERGY:
|
|
print_chip_energy(name, feature, label_size);
|
|
break;
|
|
case SENSORS_FEATURE_CURR:
|
|
print_chip_curr(name, feature, label_size);
|
|
break;
|
|
case SENSORS_FEATURE_INTRUSION:
|
|
print_chip_intrusion(name, feature, label_size);
|
|
break;
|
|
case SENSORS_FEATURE_HUMIDITY:
|
|
print_chip_humidity(name, feature, label_size);
|
|
break;
|
|
default:
|
|
continue;
|
|
}
|
|
}
|
|
}
|