2 * linux/drivers/char/ds1620.c: Dallas Semiconductors DS1620
3 * thermometer driver (as used in the Rebel.com NetWinder)
5 #include <linux/module.h>
6 #include <linux/sched.h>
7 #include <linux/miscdevice.h>
8 #include <linux/smp_lock.h>
9 #include <linux/delay.h>
10 #include <linux/proc_fs.h>
11 #include <linux/capability.h>
12 #include <linux/init.h>
14 #include <asm/hardware.h>
15 #include <asm/mach-types.h>
16 #include <asm/uaccess.h>
17 #include <asm/therm.h>
20 /* define for /proc interface */
21 #define THERM_USE_PROC
24 /* Definitions for DS1620 chip */
25 #define THERM_START_CONVERT 0xee
26 #define THERM_RESET 0xaf
27 #define THERM_READ_CONFIG 0xac
28 #define THERM_READ_TEMP 0xaa
29 #define THERM_READ_TL 0xa2
30 #define THERM_READ_TH 0xa1
31 #define THERM_WRITE_CONFIG 0x0c
32 #define THERM_WRITE_TL 0x02
33 #define THERM_WRITE_TH 0x01
38 static const char *fan_state
[] = { "off", "on", "on (hardwired)" };
41 * Start of NetWinder specifics
42 * Note! We have to hold the gpio lock with IRQs disabled over the
43 * whole of our transaction to the Dallas chip, since there is a
44 * chance that the WaveArtist driver could touch these bits to
45 * enable or disable the speaker.
47 extern spinlock_t gpio_lock
;
48 extern unsigned int system_rev
;
50 static inline void netwinder_ds1620_set_clk(int clk
)
52 gpio_modify_op(GPIO_DSCLK
, clk
? GPIO_DSCLK
: 0);
55 static inline void netwinder_ds1620_set_data(int dat
)
57 gpio_modify_op(GPIO_DATA
, dat
? GPIO_DATA
: 0);
60 static inline int netwinder_ds1620_get_data(void)
62 return gpio_read() & GPIO_DATA
;
65 static inline void netwinder_ds1620_set_data_dir(int dir
)
67 gpio_modify_io(GPIO_DATA
, dir
? GPIO_DATA
: 0);
70 static inline void netwinder_ds1620_reset(void)
72 cpld_modify(CPLD_DS_ENABLE
, 0);
73 cpld_modify(CPLD_DS_ENABLE
, CPLD_DS_ENABLE
);
76 static inline void netwinder_lock(unsigned long *flags
)
78 spin_lock_irqsave(&gpio_lock
, *flags
);
81 static inline void netwinder_unlock(unsigned long *flags
)
83 spin_unlock_irqrestore(&gpio_lock
, *flags
);
86 static inline void netwinder_set_fan(int i
)
90 spin_lock_irqsave(&gpio_lock
, flags
);
91 gpio_modify_op(GPIO_FAN
, i
? GPIO_FAN
: 0);
92 spin_unlock_irqrestore(&gpio_lock
, flags
);
95 static inline int netwinder_get_fan(void)
97 if ((system_rev
& 0xf000) == 0x4000)
100 return (gpio_read() & GPIO_FAN
) ? FAN_ON
: FAN_OFF
;
104 * End of NetWinder specifics
107 static void ds1620_send_bits(int nr
, int value
)
111 for (i
= 0; i
< nr
; i
++) {
112 netwinder_ds1620_set_data(value
& 1);
113 netwinder_ds1620_set_clk(0);
115 netwinder_ds1620_set_clk(1);
122 static unsigned int ds1620_recv_bits(int nr
)
124 unsigned int value
= 0, mask
= 1;
127 netwinder_ds1620_set_data(0);
129 for (i
= 0; i
< nr
; i
++) {
130 netwinder_ds1620_set_clk(0);
133 if (netwinder_ds1620_get_data())
138 netwinder_ds1620_set_clk(1);
145 static void ds1620_out(int cmd
, int bits
, int value
)
149 netwinder_lock(&flags
);
150 netwinder_ds1620_set_clk(1);
151 netwinder_ds1620_set_data_dir(0);
152 netwinder_ds1620_reset();
156 ds1620_send_bits(8, cmd
);
158 ds1620_send_bits(bits
, value
);
162 netwinder_ds1620_reset();
163 netwinder_unlock(&flags
);
168 static unsigned int ds1620_in(int cmd
, int bits
)
173 netwinder_lock(&flags
);
174 netwinder_ds1620_set_clk(1);
175 netwinder_ds1620_set_data_dir(0);
176 netwinder_ds1620_reset();
180 ds1620_send_bits(8, cmd
);
182 netwinder_ds1620_set_data_dir(1);
183 value
= ds1620_recv_bits(bits
);
185 netwinder_ds1620_reset();
186 netwinder_unlock(&flags
);
191 static int cvt_9_to_int(unsigned int val
)
199 static void ds1620_write_state(struct therm
*therm
)
201 ds1620_out(THERM_WRITE_CONFIG
, 8, CFG_CPU
);
202 ds1620_out(THERM_WRITE_TL
, 9, therm
->lo
);
203 ds1620_out(THERM_WRITE_TH
, 9, therm
->hi
);
204 ds1620_out(THERM_START_CONVERT
, 0, 0);
207 static void ds1620_read_state(struct therm
*therm
)
209 therm
->lo
= cvt_9_to_int(ds1620_in(THERM_READ_TL
, 9));
210 therm
->hi
= cvt_9_to_int(ds1620_in(THERM_READ_TH
, 9));
214 ds1620_read(struct file
*file
, char __user
*buf
, size_t count
, loff_t
*ptr
)
217 signed char cur_temp_degF
;
219 cur_temp
= cvt_9_to_int(ds1620_in(THERM_READ_TEMP
, 9)) >> 1;
221 /* convert to Fahrenheit, as per wdt.c */
222 cur_temp_degF
= (cur_temp
* 9) / 5 + 32;
224 if (copy_to_user(buf
, &cur_temp_degF
, 1))
231 ds1620_ioctl(struct inode
*inode
, struct file
*file
, unsigned int cmd
, unsigned long arg
)
235 struct therm __user
*therm
;
240 uarg
.i
= (int __user
*)arg
;
243 case CMD_SET_THERMOSTATE
:
244 case CMD_SET_THERMOSTATE2
:
245 if (!capable(CAP_SYS_ADMIN
))
248 if (cmd
== CMD_SET_THERMOSTATE
) {
249 if (get_user(therm
.hi
, uarg
.i
))
251 therm
.lo
= therm
.hi
- 3;
253 if (copy_from_user(&therm
, uarg
.therm
, sizeof(therm
)))
260 ds1620_write_state(&therm
);
263 case CMD_GET_THERMOSTATE
:
264 case CMD_GET_THERMOSTATE2
:
265 ds1620_read_state(&therm
);
270 if (cmd
== CMD_GET_THERMOSTATE
) {
271 if (put_user(therm
.hi
, uarg
.i
))
274 if (copy_to_user(uarg
.therm
, &therm
, sizeof(therm
)))
279 case CMD_GET_TEMPERATURE
:
280 case CMD_GET_TEMPERATURE2
:
281 i
= cvt_9_to_int(ds1620_in(THERM_READ_TEMP
, 9));
283 if (cmd
== CMD_GET_TEMPERATURE
)
286 return put_user(i
, uarg
.i
) ? -EFAULT
: 0;
289 i
= ds1620_in(THERM_READ_CONFIG
, 8) & 0xe3;
291 return put_user(i
, uarg
.i
) ? -EFAULT
: 0;
294 i
= netwinder_get_fan();
296 return put_user(i
, uarg
.i
) ? -EFAULT
: 0;
299 if (!capable(CAP_SYS_ADMIN
))
302 if (get_user(i
, uarg
.i
))
305 netwinder_set_fan(i
);
315 #ifdef THERM_USE_PROC
317 proc_therm_ds1620_read(char *buf
, char **start
, off_t offset
,
318 int len
, int *eof
, void *unused
)
323 ds1620_read_state(&th
);
324 temp
= cvt_9_to_int(ds1620_in(THERM_READ_TEMP
, 9));
326 len
= sprintf(buf
, "Thermostat: HI %i.%i, LOW %i.%i; "
327 "temperature: %i.%i C, fan %s\n",
328 th
.hi
>> 1, th
.hi
& 1 ? 5 : 0,
329 th
.lo
>> 1, th
.lo
& 1 ? 5 : 0,
330 temp
>> 1, temp
& 1 ? 5 : 0,
331 fan_state
[netwinder_get_fan()]);
336 static struct proc_dir_entry
*proc_therm_ds1620
;
339 static const struct file_operations ds1620_fops
= {
340 .owner
= THIS_MODULE
,
341 .open
= nonseekable_open
,
343 .ioctl
= ds1620_ioctl
,
346 static struct miscdevice ds1620_miscdev
= {
352 static int __init
ds1620_init(void)
355 struct therm th
, th_start
;
357 if (!machine_is_netwinder())
360 ds1620_out(THERM_RESET
, 0, 0);
361 ds1620_out(THERM_WRITE_CONFIG
, 8, CFG_CPU
);
362 ds1620_out(THERM_START_CONVERT
, 0, 0);
365 * Trigger the fan to start by setting
366 * temperature high point low. This kicks
367 * the fan into action.
369 ds1620_read_state(&th
);
372 ds1620_write_state(&th_start
);
376 ds1620_write_state(&th
);
378 ret
= misc_register(&ds1620_miscdev
);
382 #ifdef THERM_USE_PROC
383 proc_therm_ds1620
= create_proc_entry("therm", 0, NULL
);
384 if (proc_therm_ds1620
)
385 proc_therm_ds1620
->read_proc
= proc_therm_ds1620_read
;
387 printk(KERN_ERR
"therm: unable to register /proc/therm\n");
390 ds1620_read_state(&th
);
391 ret
= cvt_9_to_int(ds1620_in(THERM_READ_TEMP
, 9));
393 printk(KERN_INFO
"Thermostat: high %i.%i, low %i.%i, "
394 "current %i.%i C, fan %s.\n",
395 th
.hi
>> 1, th
.hi
& 1 ? 5 : 0,
396 th
.lo
>> 1, th
.lo
& 1 ? 5 : 0,
397 ret
>> 1, ret
& 1 ? 5 : 0,
398 fan_state
[netwinder_get_fan()]);
403 static void __exit
ds1620_exit(void)
405 #ifdef THERM_USE_PROC
406 remove_proc_entry("therm", NULL
);
408 misc_deregister(&ds1620_miscdev
);
411 module_init(ds1620_init
);
412 module_exit(ds1620_exit
);
414 MODULE_LICENSE("GPL");