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[linux-2.6.9-moxart.git] / drivers / i2c / chips / fscher.c
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1 /*
2 * fscher.c - Part of lm_sensors, Linux kernel modules for hardware
3 * monitoring
4 * Copyright (C) 2003, 2004 Reinhard Nissl <rnissl@gmx.de>
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.
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.
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.
21 /*
22 * fujitsu siemens hermes chip,
23 * module based on fscpos.c
24 * Copyright (C) 2000 Hermann Jung <hej@odn.de>
25 * Copyright (C) 1998, 1999 Frodo Looijaard <frodol@dds.nl>
26 * and Philip Edelbrock <phil@netroedge.com>
29 #include <linux/config.h>
30 #include <linux/module.h>
31 #include <linux/init.h>
32 #include <linux/slab.h>
33 #include <linux/i2c.h>
34 #include <linux/i2c-sensor.h>
37 * Addresses to scan
40 static unsigned short normal_i2c[] = { 0x73, I2C_CLIENT_END };
41 static unsigned short normal_i2c_range[] = { I2C_CLIENT_END };
42 static unsigned int normal_isa[] = { I2C_CLIENT_ISA_END };
43 static unsigned int normal_isa_range[] = { I2C_CLIENT_ISA_END };
46 * Insmod parameters
49 SENSORS_INSMOD_1(fscher);
52 * The FSCHER registers
55 /* chip identification */
56 #define FSCHER_REG_IDENT_0 0x00
57 #define FSCHER_REG_IDENT_1 0x01
58 #define FSCHER_REG_IDENT_2 0x02
59 #define FSCHER_REG_REVISION 0x03
61 /* global control and status */
62 #define FSCHER_REG_EVENT_STATE 0x04
63 #define FSCHER_REG_CONTROL 0x05
65 /* watchdog */
66 #define FSCHER_REG_WDOG_PRESET 0x28
67 #define FSCHER_REG_WDOG_STATE 0x23
68 #define FSCHER_REG_WDOG_CONTROL 0x21
70 /* fan 0 */
71 #define FSCHER_REG_FAN0_MIN 0x55
72 #define FSCHER_REG_FAN0_ACT 0x0e
73 #define FSCHER_REG_FAN0_STATE 0x0d
74 #define FSCHER_REG_FAN0_RIPPLE 0x0f
76 /* fan 1 */
77 #define FSCHER_REG_FAN1_MIN 0x65
78 #define FSCHER_REG_FAN1_ACT 0x6b
79 #define FSCHER_REG_FAN1_STATE 0x62
80 #define FSCHER_REG_FAN1_RIPPLE 0x6f
82 /* fan 2 */
83 #define FSCHER_REG_FAN2_MIN 0xb5
84 #define FSCHER_REG_FAN2_ACT 0xbb
85 #define FSCHER_REG_FAN2_STATE 0xb2
86 #define FSCHER_REG_FAN2_RIPPLE 0xbf
88 /* voltage supervision */
89 #define FSCHER_REG_VOLT_12 0x45
90 #define FSCHER_REG_VOLT_5 0x42
91 #define FSCHER_REG_VOLT_BATT 0x48
93 /* temperature 0 */
94 #define FSCHER_REG_TEMP0_ACT 0x64
95 #define FSCHER_REG_TEMP0_STATE 0x71
97 /* temperature 1 */
98 #define FSCHER_REG_TEMP1_ACT 0x32
99 #define FSCHER_REG_TEMP1_STATE 0x81
101 /* temperature 2 */
102 #define FSCHER_REG_TEMP2_ACT 0x35
103 #define FSCHER_REG_TEMP2_STATE 0x91
106 * Functions declaration
109 static int fscher_attach_adapter(struct i2c_adapter *adapter);
110 static int fscher_detect(struct i2c_adapter *adapter, int address, int kind);
111 static int fscher_detach_client(struct i2c_client *client);
112 static struct fscher_data *fscher_update_device(struct device *dev);
113 static void fscher_init_client(struct i2c_client *client);
115 static int fscher_read_value(struct i2c_client *client, u8 reg);
116 static int fscher_write_value(struct i2c_client *client, u8 reg, u8 value);
119 * Driver data (common to all clients)
122 static struct i2c_driver fscher_driver = {
123 .owner = THIS_MODULE,
124 .name = "fscher",
125 .id = I2C_DRIVERID_FSCHER,
126 .flags = I2C_DF_NOTIFY,
127 .attach_adapter = fscher_attach_adapter,
128 .detach_client = fscher_detach_client,
132 * Client data (each client gets its own)
135 struct fscher_data {
136 struct i2c_client client;
137 struct semaphore update_lock;
138 char valid; /* zero until following fields are valid */
139 unsigned long last_updated; /* in jiffies */
141 /* register values */
142 u8 revision; /* revision of chip */
143 u8 global_event; /* global event status */
144 u8 global_control; /* global control register */
145 u8 watchdog[3]; /* watchdog */
146 u8 volt[3]; /* 12, 5, battery voltage */
147 u8 temp_act[3]; /* temperature */
148 u8 temp_status[3]; /* status of sensor */
149 u8 fan_act[3]; /* fans revolutions per second */
150 u8 fan_status[3]; /* fan status */
151 u8 fan_min[3]; /* fan min value for rps */
152 u8 fan_ripple[3]; /* divider for rps */
156 * Internal variables
159 static int fscher_id = 0;
162 * Sysfs stuff
165 #define sysfs_r(kind, sub, offset, reg) \
166 static ssize_t show_##kind##sub (struct fscher_data *, char *, int); \
167 static ssize_t show_##kind##offset##sub (struct device *, char *); \
168 static ssize_t show_##kind##offset##sub (struct device *dev, char *buf) \
170 struct fscher_data *data = fscher_update_device(dev); \
171 return show_##kind##sub(data, buf, (offset)); \
174 #define sysfs_w(kind, sub, offset, reg) \
175 static ssize_t set_##kind##sub (struct i2c_client *, struct fscher_data *, const char *, size_t, int, int); \
176 static ssize_t set_##kind##offset##sub (struct device *, const char *, size_t); \
177 static ssize_t set_##kind##offset##sub (struct device *dev, const char *buf, size_t count) \
179 struct i2c_client *client = to_i2c_client(dev); \
180 struct fscher_data *data = i2c_get_clientdata(client); \
181 return set_##kind##sub(client, data, buf, count, (offset), reg); \
184 #define sysfs_rw_n(kind, sub, offset, reg) \
185 sysfs_r(kind, sub, offset, reg) \
186 sysfs_w(kind, sub, offset, reg) \
187 static DEVICE_ATTR(kind##offset##sub, S_IRUGO | S_IWUSR, show_##kind##offset##sub, set_##kind##offset##sub);
189 #define sysfs_rw(kind, sub, reg) \
190 sysfs_r(kind, sub, 0, reg) \
191 sysfs_w(kind, sub, 0, reg) \
192 static DEVICE_ATTR(kind##sub, S_IRUGO | S_IWUSR, show_##kind##0##sub, set_##kind##0##sub);
194 #define sysfs_ro_n(kind, sub, offset, reg) \
195 sysfs_r(kind, sub, offset, reg) \
196 static DEVICE_ATTR(kind##offset##sub, S_IRUGO, show_##kind##offset##sub, NULL);
198 #define sysfs_ro(kind, sub, reg) \
199 sysfs_r(kind, sub, 0, reg) \
200 static DEVICE_ATTR(kind, S_IRUGO, show_##kind##0##sub, NULL);
202 #define sysfs_fan(offset, reg_status, reg_min, reg_ripple, reg_act) \
203 sysfs_rw_n(fan, _pwm , offset, reg_min) \
204 sysfs_rw_n(fan, _status, offset, reg_status) \
205 sysfs_rw_n(fan, _div , offset, reg_ripple) \
206 sysfs_ro_n(fan, _input , offset, reg_act)
208 #define sysfs_temp(offset, reg_status, reg_act) \
209 sysfs_rw_n(temp, _status, offset, reg_status) \
210 sysfs_ro_n(temp, _input , offset, reg_act)
212 #define sysfs_in(offset, reg_act) \
213 sysfs_ro_n(in, _input, offset, reg_act)
215 #define sysfs_revision(reg_revision) \
216 sysfs_ro(revision, , reg_revision)
218 #define sysfs_alarms(reg_events) \
219 sysfs_ro(alarms, , reg_events)
221 #define sysfs_control(reg_control) \
222 sysfs_rw(control, , reg_control)
224 #define sysfs_watchdog(reg_control, reg_status, reg_preset) \
225 sysfs_rw(watchdog, _control, reg_control) \
226 sysfs_rw(watchdog, _status , reg_status) \
227 sysfs_rw(watchdog, _preset , reg_preset)
229 sysfs_fan(1, FSCHER_REG_FAN0_STATE, FSCHER_REG_FAN0_MIN,
230 FSCHER_REG_FAN0_RIPPLE, FSCHER_REG_FAN0_ACT)
231 sysfs_fan(2, FSCHER_REG_FAN1_STATE, FSCHER_REG_FAN1_MIN,
232 FSCHER_REG_FAN1_RIPPLE, FSCHER_REG_FAN1_ACT)
233 sysfs_fan(3, FSCHER_REG_FAN2_STATE, FSCHER_REG_FAN2_MIN,
234 FSCHER_REG_FAN2_RIPPLE, FSCHER_REG_FAN2_ACT)
236 sysfs_temp(1, FSCHER_REG_TEMP0_STATE, FSCHER_REG_TEMP0_ACT)
237 sysfs_temp(2, FSCHER_REG_TEMP1_STATE, FSCHER_REG_TEMP1_ACT)
238 sysfs_temp(3, FSCHER_REG_TEMP2_STATE, FSCHER_REG_TEMP2_ACT)
240 sysfs_in(0, FSCHER_REG_VOLT_12)
241 sysfs_in(1, FSCHER_REG_VOLT_5)
242 sysfs_in(2, FSCHER_REG_VOLT_BATT)
244 sysfs_revision(FSCHER_REG_REVISION)
245 sysfs_alarms(FSCHER_REG_EVENTS)
246 sysfs_control(FSCHER_REG_CONTROL)
247 sysfs_watchdog(FSCHER_REG_WDOG_CONTROL, FSCHER_REG_WDOG_STATE, FSCHER_REG_WDOG_PRESET)
249 #define device_create_file_fan(client, offset) \
250 do { \
251 device_create_file(&client->dev, &dev_attr_fan##offset##_status); \
252 device_create_file(&client->dev, &dev_attr_fan##offset##_pwm); \
253 device_create_file(&client->dev, &dev_attr_fan##offset##_div); \
254 device_create_file(&client->dev, &dev_attr_fan##offset##_input); \
255 } while (0)
257 #define device_create_file_temp(client, offset) \
258 do { \
259 device_create_file(&client->dev, &dev_attr_temp##offset##_status); \
260 device_create_file(&client->dev, &dev_attr_temp##offset##_input); \
261 } while (0)
263 #define device_create_file_in(client, offset) \
264 do { \
265 device_create_file(&client->dev, &dev_attr_in##offset##_input); \
266 } while (0)
268 #define device_create_file_revision(client) \
269 do { \
270 device_create_file(&client->dev, &dev_attr_revision); \
271 } while (0)
273 #define device_create_file_alarms(client) \
274 do { \
275 device_create_file(&client->dev, &dev_attr_alarms); \
276 } while (0)
278 #define device_create_file_control(client) \
279 do { \
280 device_create_file(&client->dev, &dev_attr_control); \
281 } while (0)
283 #define device_create_file_watchdog(client) \
284 do { \
285 device_create_file(&client->dev, &dev_attr_watchdog_status); \
286 device_create_file(&client->dev, &dev_attr_watchdog_control); \
287 device_create_file(&client->dev, &dev_attr_watchdog_preset); \
288 } while (0)
291 * Real code
294 static int fscher_attach_adapter(struct i2c_adapter *adapter)
296 if (!(adapter->class & I2C_CLASS_HWMON))
297 return 0;
298 return i2c_detect(adapter, &addr_data, fscher_detect);
301 static int fscher_detect(struct i2c_adapter *adapter, int address, int kind)
303 struct i2c_client *new_client;
304 struct fscher_data *data;
305 int err = 0;
307 if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA))
308 goto exit;
310 /* OK. For now, we presume we have a valid client. We now create the
311 * client structure, even though we cannot fill it completely yet.
312 * But it allows us to access i2c_smbus_read_byte_data. */
313 if (!(data = kmalloc(sizeof(struct fscher_data), GFP_KERNEL))) {
314 err = -ENOMEM;
315 goto exit;
317 memset(data, 0, sizeof(struct fscher_data));
319 /* The common I2C client data is placed right before the
320 * Hermes-specific data. */
321 new_client = &data->client;
322 i2c_set_clientdata(new_client, data);
323 new_client->addr = address;
324 new_client->adapter = adapter;
325 new_client->driver = &fscher_driver;
326 new_client->flags = 0;
328 /* Do the remaining detection unless force or force_fscher parameter */
329 if (kind < 0) {
330 if ((i2c_smbus_read_byte_data(new_client,
331 FSCHER_REG_IDENT_0) != 0x48) /* 'H' */
332 || (i2c_smbus_read_byte_data(new_client,
333 FSCHER_REG_IDENT_1) != 0x45) /* 'E' */
334 || (i2c_smbus_read_byte_data(new_client,
335 FSCHER_REG_IDENT_2) != 0x52)) /* 'R' */
336 goto exit_free;
339 /* Fill in the remaining client fields and put it into the
340 * global list */
341 strlcpy(new_client->name, "fscher", I2C_NAME_SIZE);
342 new_client->id = fscher_id++;
343 data->valid = 0;
344 init_MUTEX(&data->update_lock);
346 /* Tell the I2C layer a new client has arrived */
347 if ((err = i2c_attach_client(new_client)))
348 goto exit_free;
350 fscher_init_client(new_client);
352 /* Register sysfs hooks */
353 device_create_file_revision(new_client);
354 device_create_file_alarms(new_client);
355 device_create_file_control(new_client);
356 device_create_file_watchdog(new_client);
358 device_create_file_in(new_client, 0);
359 device_create_file_in(new_client, 1);
360 device_create_file_in(new_client, 2);
362 device_create_file_fan(new_client, 1);
363 device_create_file_fan(new_client, 2);
364 device_create_file_fan(new_client, 3);
366 device_create_file_temp(new_client, 1);
367 device_create_file_temp(new_client, 2);
368 device_create_file_temp(new_client, 3);
370 return 0;
372 exit_free:
373 kfree(data);
374 exit:
375 return err;
378 static int fscher_detach_client(struct i2c_client *client)
380 int err;
382 if ((err = i2c_detach_client(client))) {
383 dev_err(&client->dev, "Client deregistration failed, "
384 "client not detached.\n");
385 return err;
388 kfree(i2c_get_clientdata(client));
389 return 0;
392 static int fscher_read_value(struct i2c_client *client, u8 reg)
394 dev_dbg(&client->dev, "read reg 0x%02x\n", reg);
396 return i2c_smbus_read_byte_data(client, reg);
399 static int fscher_write_value(struct i2c_client *client, u8 reg, u8 value)
401 dev_dbg(&client->dev, "write reg 0x%02x, val 0x%02x\n",
402 reg, value);
404 return i2c_smbus_write_byte_data(client, reg, value);
407 /* Called when we have found a new FSC Hermes. */
408 static void fscher_init_client(struct i2c_client *client)
410 struct fscher_data *data = i2c_get_clientdata(client);
412 /* Read revision from chip */
413 data->revision = fscher_read_value(client, FSCHER_REG_REVISION);
416 static struct fscher_data *fscher_update_device(struct device *dev)
418 struct i2c_client *client = to_i2c_client(dev);
419 struct fscher_data *data = i2c_get_clientdata(client);
421 down(&data->update_lock);
423 if ((jiffies - data->last_updated > 2 * HZ) ||
424 (jiffies < data->last_updated) || !data->valid) {
426 dev_dbg(&client->dev, "Starting fscher update\n");
428 data->temp_act[0] = fscher_read_value(client, FSCHER_REG_TEMP0_ACT);
429 data->temp_act[1] = fscher_read_value(client, FSCHER_REG_TEMP1_ACT);
430 data->temp_act[2] = fscher_read_value(client, FSCHER_REG_TEMP2_ACT);
431 data->temp_status[0] = fscher_read_value(client, FSCHER_REG_TEMP0_STATE);
432 data->temp_status[1] = fscher_read_value(client, FSCHER_REG_TEMP1_STATE);
433 data->temp_status[2] = fscher_read_value(client, FSCHER_REG_TEMP2_STATE);
435 data->volt[0] = fscher_read_value(client, FSCHER_REG_VOLT_12);
436 data->volt[1] = fscher_read_value(client, FSCHER_REG_VOLT_5);
437 data->volt[2] = fscher_read_value(client, FSCHER_REG_VOLT_BATT);
439 data->fan_act[0] = fscher_read_value(client, FSCHER_REG_FAN0_ACT);
440 data->fan_act[1] = fscher_read_value(client, FSCHER_REG_FAN1_ACT);
441 data->fan_act[2] = fscher_read_value(client, FSCHER_REG_FAN2_ACT);
442 data->fan_status[0] = fscher_read_value(client, FSCHER_REG_FAN0_STATE);
443 data->fan_status[1] = fscher_read_value(client, FSCHER_REG_FAN1_STATE);
444 data->fan_status[2] = fscher_read_value(client, FSCHER_REG_FAN2_STATE);
445 data->fan_min[0] = fscher_read_value(client, FSCHER_REG_FAN0_MIN);
446 data->fan_min[1] = fscher_read_value(client, FSCHER_REG_FAN1_MIN);
447 data->fan_min[2] = fscher_read_value(client, FSCHER_REG_FAN2_MIN);
448 data->fan_ripple[0] = fscher_read_value(client, FSCHER_REG_FAN0_RIPPLE);
449 data->fan_ripple[1] = fscher_read_value(client, FSCHER_REG_FAN1_RIPPLE);
450 data->fan_ripple[2] = fscher_read_value(client, FSCHER_REG_FAN2_RIPPLE);
452 data->watchdog[0] = fscher_read_value(client, FSCHER_REG_WDOG_PRESET);
453 data->watchdog[1] = fscher_read_value(client, FSCHER_REG_WDOG_STATE);
454 data->watchdog[2] = fscher_read_value(client, FSCHER_REG_WDOG_CONTROL);
456 data->global_event = fscher_read_value(client, FSCHER_REG_EVENT_STATE);
458 data->last_updated = jiffies;
459 data->valid = 1;
462 up(&data->update_lock);
464 return data;
469 #define FAN_INDEX_FROM_NUM(nr) ((nr) - 1)
471 static ssize_t set_fan_status(struct i2c_client *client, struct fscher_data *data,
472 const char *buf, size_t count, int nr, int reg)
474 /* bits 0..1, 3..7 reserved => mask with 0x04 */
475 unsigned long v = simple_strtoul(buf, NULL, 10) & 0x04;
476 data->fan_status[FAN_INDEX_FROM_NUM(nr)] &= ~v;
478 fscher_write_value(client, reg, v);
479 return count;
482 static ssize_t show_fan_status(struct fscher_data *data, char *buf, int nr)
484 /* bits 0..1, 3..7 reserved => mask with 0x04 */
485 return sprintf(buf, "%u\n", data->fan_status[FAN_INDEX_FROM_NUM(nr)] & 0x04);
488 static ssize_t set_fan_pwm(struct i2c_client *client, struct fscher_data *data,
489 const char *buf, size_t count, int nr, int reg)
491 data->fan_min[FAN_INDEX_FROM_NUM(nr)] = simple_strtoul(buf, NULL, 10) & 0xff;
493 fscher_write_value(client, reg, data->fan_min[FAN_INDEX_FROM_NUM(nr)]);
494 return count;
497 static ssize_t show_fan_pwm (struct fscher_data *data, char *buf, int nr)
499 return sprintf(buf, "%u\n", data->fan_min[FAN_INDEX_FROM_NUM(nr)]);
502 static ssize_t set_fan_div(struct i2c_client *client, struct fscher_data *data,
503 const char *buf, size_t count, int nr, int reg)
505 /* supported values: 2, 4, 8 */
506 unsigned long v = simple_strtoul(buf, NULL, 10);
508 switch (v) {
509 case 2: v = 1; break;
510 case 4: v = 2; break;
511 case 8: v = 3; break;
512 default:
513 dev_err(&client->dev, "fan_div value %ld not "
514 "supported. Choose one of 2, 4 or 8!\n", v);
515 return -EINVAL;
518 /* bits 2..7 reserved => mask with 0x03 */
519 data->fan_ripple[FAN_INDEX_FROM_NUM(nr)] &= ~0x03;
520 data->fan_ripple[FAN_INDEX_FROM_NUM(nr)] |= v;
522 fscher_write_value(client, reg, data->fan_ripple[FAN_INDEX_FROM_NUM(nr)]);
523 return count;
526 static ssize_t show_fan_div(struct fscher_data *data, char *buf, int nr)
528 /* bits 2..7 reserved => mask with 0x03 */
529 return sprintf(buf, "%u\n", 1 << (data->fan_ripple[FAN_INDEX_FROM_NUM(nr)] & 0x03));
532 #define RPM_FROM_REG(val) (val*60)
534 static ssize_t show_fan_input (struct fscher_data *data, char *buf, int nr)
536 return sprintf(buf, "%u\n", RPM_FROM_REG(data->fan_act[FAN_INDEX_FROM_NUM(nr)]));
541 #define TEMP_INDEX_FROM_NUM(nr) ((nr) - 1)
543 static ssize_t set_temp_status(struct i2c_client *client, struct fscher_data *data,
544 const char *buf, size_t count, int nr, int reg)
546 /* bits 2..7 reserved, 0 read only => mask with 0x02 */
547 unsigned long v = simple_strtoul(buf, NULL, 10) & 0x02;
548 data->temp_status[TEMP_INDEX_FROM_NUM(nr)] &= ~v;
550 fscher_write_value(client, reg, v);
551 return count;
554 static ssize_t show_temp_status(struct fscher_data *data, char *buf, int nr)
556 /* bits 2..7 reserved => mask with 0x03 */
557 return sprintf(buf, "%u\n", data->temp_status[TEMP_INDEX_FROM_NUM(nr)] & 0x03);
560 #define TEMP_FROM_REG(val) (((val) - 128) * 1000)
562 static ssize_t show_temp_input(struct fscher_data *data, char *buf, int nr)
564 return sprintf(buf, "%d\n", TEMP_FROM_REG(data->temp_act[TEMP_INDEX_FROM_NUM(nr)]));
568 * The final conversion is specified in sensors.conf, as it depends on
569 * mainboard specific values. We export the registers contents as
570 * pseudo-hundredths-of-Volts (range 0V - 2.55V). Not that it makes much
571 * sense per se, but it minimizes the conversions count and keeps the
572 * values within a usual range.
574 #define VOLT_FROM_REG(val) ((val) * 10)
576 static ssize_t show_in_input(struct fscher_data *data, char *buf, int nr)
578 return sprintf(buf, "%u\n", VOLT_FROM_REG(data->volt[nr]));
583 static ssize_t show_revision(struct fscher_data *data, char *buf, int nr)
585 return sprintf(buf, "%u\n", data->revision);
590 static ssize_t show_alarms(struct fscher_data *data, char *buf, int nr)
592 /* bits 2, 5..6 reserved => mask with 0x9b */
593 return sprintf(buf, "%u\n", data->global_event & 0x9b);
598 static ssize_t set_control(struct i2c_client *client, struct fscher_data *data,
599 const char *buf, size_t count, int nr, int reg)
601 /* bits 1..7 reserved => mask with 0x01 */
602 unsigned long v = simple_strtoul(buf, NULL, 10) & 0x01;
603 data->global_control &= ~v;
605 fscher_write_value(client, reg, v);
606 return count;
609 static ssize_t show_control(struct fscher_data *data, char *buf, int nr)
611 /* bits 1..7 reserved => mask with 0x01 */
612 return sprintf(buf, "%u\n", data->global_control & 0x01);
617 static ssize_t set_watchdog_control(struct i2c_client *client, struct
618 fscher_data *data, const char *buf, size_t count,
619 int nr, int reg)
621 /* bits 0..3 reserved => mask with 0xf0 */
622 unsigned long v = simple_strtoul(buf, NULL, 10) & 0xf0;
623 data->watchdog[2] &= ~0xf0;
624 data->watchdog[2] |= v;
626 fscher_write_value(client, reg, data->watchdog[2]);
627 return count;
630 static ssize_t show_watchdog_control(struct fscher_data *data, char *buf, int nr)
632 /* bits 0..3 reserved, bit 5 write only => mask with 0xd0 */
633 return sprintf(buf, "%u\n", data->watchdog[2] & 0xd0);
636 static ssize_t set_watchdog_status(struct i2c_client *client, struct fscher_data *data,
637 const char *buf, size_t count, int nr, int reg)
639 /* bits 0, 2..7 reserved => mask with 0x02 */
640 unsigned long v = simple_strtoul(buf, NULL, 10) & 0x02;
641 data->watchdog[1] &= ~v;
643 fscher_write_value(client, reg, v);
644 return count;
647 static ssize_t show_watchdog_status(struct fscher_data *data, char *buf, int nr)
649 /* bits 0, 2..7 reserved => mask with 0x02 */
650 return sprintf(buf, "%u\n", data->watchdog[1] & 0x02);
653 static ssize_t set_watchdog_preset(struct i2c_client *client, struct fscher_data *data,
654 const char *buf, size_t count, int nr, int reg)
656 data->watchdog[0] = simple_strtoul(buf, NULL, 10) & 0xff;
658 fscher_write_value(client, reg, data->watchdog[0]);
659 return count;
662 static ssize_t show_watchdog_preset(struct fscher_data *data, char *buf, int nr)
664 return sprintf(buf, "%u\n", data->watchdog[0]);
667 static int __init sensors_fscher_init(void)
669 return i2c_add_driver(&fscher_driver);
672 static void __exit sensors_fscher_exit(void)
674 i2c_del_driver(&fscher_driver);
677 MODULE_AUTHOR("Reinhard Nissl <rnissl@gmx.de>");
678 MODULE_DESCRIPTION("FSC Hermes driver");
679 MODULE_LICENSE("GPL");
681 module_init(sensors_fscher_init);
682 module_exit(sensors_fscher_exit);