root/lm-sensors/branches/lm-sensors-3.0.0/lib/sensors.h @ 4693

Revision 4693, 6.9 KB (checked in by khali, 6 years ago)

Drop support for reloading the configuration with sensors_init().
Instead, the application will have to call sensors_exit() explicitly
before calling sensors_init() again. Most applications don't offer
any way to reload the configuration file, so better optimize for the
initial load.

  • Property svn:eol-style set to native
  • Property svn:keywords set to Author Date Id Revision
Line 
1/*
2    sensors.h - Part of libsensors, a Linux library for reading sensor data.
3    Copyright (c) 1998, 1999  Frodo Looijaard <frodol@dds.nl>
4    Copyright (C) 2007        Jean Delvare <khali@linux-fr.org>
5
6    This program is free software; you can redistribute it and/or modify
7    it under the terms of the GNU General Public License as published by
8    the Free Software Foundation; either version 2 of the License, or
9    (at your option) any later version.
10
11    This program is distributed in the hope that it will be useful,
12    but WITHOUT ANY WARRANTY; without even the implied warranty of
13    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
14    GNU General Public License for more details.
15
16    You should have received a copy of the GNU General Public License
17    along with this program; if not, write to the Free Software
18    Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
19*/
20
21#ifndef LIB_SENSORS_SENSORS_H
22#define LIB_SENSORS_SENSORS_H
23
24#include <stdio.h>
25#include <limits.h>
26
27/* Publicly accessible library functions */
28
29#define SENSORS_CHIP_NAME_PREFIX_ANY NULL
30#define SENSORS_CHIP_NAME_ADDR_ANY -1
31
32#define SENSORS_BUS_TYPE_ANY    (-1)
33#define SENSORS_BUS_TYPE_I2C    0
34#define SENSORS_BUS_TYPE_ISA    1
35#define SENSORS_BUS_TYPE_PCI    2
36#define SENSORS_BUS_TYPE_SPI    3
37#define SENSORS_BUS_NR_ANY      (-1)
38#define SENSORS_BUS_NR_IGNORE   (-2)
39
40#ifdef __cplusplus
41extern "C" {
42#endif /* __cplusplus */
43
44extern const char *libsensors_version;
45
46typedef struct sensors_bus_id {
47        short type;
48        short nr;
49} sensors_bus_id;
50
51/* A chip name is encoded in this structure */
52typedef struct sensors_chip_name {
53        char *prefix;
54        sensors_bus_id bus;
55        int addr;
56        char *path;
57} sensors_chip_name;
58
59/* Load the configuration file and the detected chips list. If this
60   returns a value unequal to zero, you are in trouble; you can not
61   assume anything will be initialized properly. If you want to
62   reload the configuration file, call sensors_cleanup() below before
63   calling sensors_init() again. */
64int sensors_init(FILE *input);
65
66/* Clean-up function: You can't access anything after
67   this, until the next sensors_init() call! */
68void sensors_cleanup(void);
69
70/* Parse a chip name to the internal representation. Return 0 on success, <0
71   on error. */
72int sensors_parse_chip_name(const char *orig_name, sensors_chip_name *res);
73
74/* Print a chip name from its internal representation. Note that chip should
75   not contain wildcard values! Return the number of characters printed on
76   success (same as snprintf), <0 on error. */
77int sensors_snprintf_chip_name(char *str, size_t size,
78                               const sensors_chip_name *chip);
79
80/* Compare two chips name descriptions, to see whether they could match.
81   Return 0 if it does not match, return 1 if it does match. */
82int sensors_match_chip(const sensors_chip_name *chip1,
83                       const sensors_chip_name *chip2);
84
85/* This function returns the adapter name of a bus,
86   as used within the sensors_chip_name structure. If it could not be found,
87   it returns NULL */
88const char *sensors_get_adapter_name(const sensors_bus_id *bus);
89
90/* Look up the label which belongs to this chip. Note that chip should not
91   contain wildcard values! *result is newly allocated (free it yourself).
92   This function will return 0 on success, and <0 on failure.
93   If no label exists for this feature, its name is returned itself. */
94int sensors_get_label(const sensors_chip_name *name, int feature,
95                      char **result);
96
97/* Read the value of a feature of a certain chip. Note that chip should not
98   contain wildcard values! This function will return 0 on success, and <0
99   on failure.  */
100int sensors_get_feature(const sensors_chip_name *name, int feature,
101                        double *result);
102
103/* Set the value of a feature of a certain chip. Note that chip should not
104   contain wildcard values! This function will return 0 on success, and <0
105   on failure. */
106int sensors_set_feature(const sensors_chip_name *name, int feature,
107                        double value);
108
109/* Execute all set statements for this particular chip. The chip may contain
110   wildcards!  This function will return 0 on success, and <0 on failure. */
111int sensors_do_chip_sets(const sensors_chip_name *name);
112
113/* This function returns all detected chips, one by one. To start at the
114   beginning of the list, use 0 for nr; NULL is returned if we are
115   at the end of the list. Do not try to change these chip names, as
116   they point to internal structures! Do not use nr for anything else. */
117const sensors_chip_name *sensors_get_detected_chips(int *nr);
118
119/* These defines are used in the mode field of sensors_feature_data */
120#define SENSORS_MODE_NO_RW 0
121#define SENSORS_MODE_R 1
122#define SENSORS_MODE_W 2
123#define SENSORS_MODE_RW 3
124
125/* This define is used in the mapping field of sensors_feature_data if no
126   mapping is available */
127#define SENSORS_NO_MAPPING -1
128
129/* This enum contains some "magic" used by sensors_read_dynamic_chip() from
130   lib/sysfs.c. All the sensor types (in, fan, temp, vid) are a multiple of
131   0x100 apart, and sensor features which should not have a compute_mapping to
132   the _input feature start at 0x?10. */
133typedef enum sensors_feature_type {
134        SENSORS_FEATURE_IN = 0x000,
135        SENSORS_FEATURE_IN_MIN,
136        SENSORS_FEATURE_IN_MAX,
137        SENSORS_FEATURE_IN_ALARM = 0x010,
138        SENSORS_FEATURE_IN_MIN_ALARM,
139        SENSORS_FEATURE_IN_MAX_ALARM,
140
141        SENSORS_FEATURE_FAN = 0x100,
142        SENSORS_FEATURE_FAN_MIN,
143        SENSORS_FEATURE_FAN_ALARM = 0x110,
144        SENSORS_FEATURE_FAN_FAULT,
145        SENSORS_FEATURE_FAN_DIV,
146
147        SENSORS_FEATURE_TEMP = 0x200,
148        SENSORS_FEATURE_TEMP_MAX,
149        SENSORS_FEATURE_TEMP_MAX_HYST,
150        SENSORS_FEATURE_TEMP_MIN,
151        SENSORS_FEATURE_TEMP_CRIT,
152        SENSORS_FEATURE_TEMP_CRIT_HYST,
153        SENSORS_FEATURE_TEMP_ALARM = 0x210,
154        SENSORS_FEATURE_TEMP_MAX_ALARM,
155        SENSORS_FEATURE_TEMP_MIN_ALARM,
156        SENSORS_FEATURE_TEMP_CRIT_ALARM,
157        SENSORS_FEATURE_TEMP_FAULT,
158        SENSORS_FEATURE_TEMP_SENS,
159
160        SENSORS_FEATURE_VID = 0x300,
161
162        SENSORS_FEATURE_UNKNOWN = INT_MAX,
163
164        /* special the largest number of subfeatures used, iow the
165           highest ## from all the 0x?## above + 1*/
166        SENSORS_FEATURE_MAX_SUB_FEATURES = 22
167} sensors_feature_type;
168
169/* This structure is used when you want to get all features of a specific
170   chip. */
171typedef struct sensors_feature_data {
172        int number;
173        char *name;
174        sensors_feature_type type;
175        int mapping;
176        int compute_mapping;
177        int mode;
178} sensors_feature_data;
179
180/* This returns all features of a specific chip. They are returned in
181   bunches: everything with the same mapping is returned just after each
182   other, with the master feature in front (that feature does not map to
183   itself, but has SENSORS_NO_MAPPING as mapping field). nr is
184   an internally used variable. Set it to zero to start again at the
185   begin of the list. If no more features are found NULL is returned.
186   Do not try to change the returned structure; you will corrupt internal
187   data structures. */
188const sensors_feature_data *sensors_get_all_features
189             (const sensors_chip_name *name, int *nr);
190
191#ifdef __cplusplus
192}
193#endif /* __cplusplus */
194
195#endif /* def LIB_SENSORS_ERROR_H */
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