2 * Hardware monitoring driver for ZL6100 and compatibles
4 * Copyright (c) 2011 Ericsson AB.
5 * Copyright (c) 2012 Guenter Roeck
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation; either version 2 of the License, or
10 * (at your option) any later version.
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
17 * You should have received a copy of the GNU General Public License
18 * along with this program; if not, write to the Free Software
19 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
22 #include <linux/kernel.h>
23 #include <linux/module.h>
24 #include <linux/init.h>
25 #include <linux/err.h>
26 #include <linux/slab.h>
27 #include <linux/i2c.h>
28 #include <linux/ktime.h>
29 #include <linux/delay.h>
32 enum chips
{ zl2004
, zl2005
, zl2006
, zl2008
, zl2105
, zl2106
, zl6100
, zl6105
,
37 ktime_t access
; /* chip access time */
38 int delay
; /* Delay between chip accesses in uS */
39 struct pmbus_driver_info info
;
42 #define to_zl6100_data(x) container_of(x, struct zl6100_data, info)
44 #define ZL6100_MFR_CONFIG 0xd0
45 #define ZL6100_DEVICE_ID 0xe4
47 #define ZL6100_MFR_XTEMP_ENABLE (1 << 7)
49 #define MFR_VMON_OV_FAULT_LIMIT 0xf5
50 #define MFR_VMON_UV_FAULT_LIMIT 0xf6
51 #define MFR_READ_VMON 0xf7
53 #define VMON_UV_WARNING (1 << 5)
54 #define VMON_OV_WARNING (1 << 4)
55 #define VMON_UV_FAULT (1 << 1)
56 #define VMON_OV_FAULT (1 << 0)
58 #define ZL6100_WAIT_TIME 1000 /* uS */
60 static ushort delay
= ZL6100_WAIT_TIME
;
61 module_param(delay
, ushort
, 0644);
62 MODULE_PARM_DESC(delay
, "Delay between chip accesses in uS");
64 /* Convert linear sensor value to milli-units */
65 static long zl6100_l2d(s16 l
)
72 mantissa
= ((s16
)((l
& 0x7ff) << 5)) >> 5;
76 /* scale result to milli-units */
87 #define MAX_MANTISSA (1023 * 1000)
88 #define MIN_MANTISSA (511 * 1000)
90 static u16
zl6100_d2l(long val
)
92 s16 exponent
= 0, mantissa
;
93 bool negative
= false;
104 /* Reduce large mantissa until it fits into 10 bit */
105 while (val
>= MAX_MANTISSA
&& exponent
< 15) {
109 /* Increase small mantissa to improve precision */
110 while (val
< MIN_MANTISSA
&& exponent
> -15) {
115 /* Convert mantissa from milli-units to units */
116 mantissa
= DIV_ROUND_CLOSEST(val
, 1000);
118 /* Ensure that resulting number is within range */
119 if (mantissa
> 0x3ff)
124 mantissa
= -mantissa
;
126 /* Convert to 5 bit exponent, 11 bit mantissa */
127 return (mantissa
& 0x7ff) | ((exponent
<< 11) & 0xf800);
130 /* Some chips need a delay between accesses */
131 static inline void zl6100_wait(const struct zl6100_data
*data
)
134 s64 delta
= ktime_us_delta(ktime_get(), data
->access
);
135 if (delta
< data
->delay
)
136 udelay(data
->delay
- delta
);
140 static int zl6100_read_word_data(struct i2c_client
*client
, int page
, int reg
)
142 const struct pmbus_driver_info
*info
= pmbus_get_driver_info(client
);
143 struct zl6100_data
*data
= to_zl6100_data(info
);
149 if (data
->id
== zl2005
) {
151 * Limit register detection is not reliable on ZL2005.
152 * Make sure registers are not erroneously detected.
155 case PMBUS_VOUT_OV_WARN_LIMIT
:
156 case PMBUS_VOUT_UV_WARN_LIMIT
:
157 case PMBUS_IOUT_OC_WARN_LIMIT
:
163 case PMBUS_VIRT_READ_VMON
:
164 vreg
= MFR_READ_VMON
;
166 case PMBUS_VIRT_VMON_OV_WARN_LIMIT
:
167 case PMBUS_VIRT_VMON_OV_FAULT_LIMIT
:
168 vreg
= MFR_VMON_OV_FAULT_LIMIT
;
170 case PMBUS_VIRT_VMON_UV_WARN_LIMIT
:
171 case PMBUS_VIRT_VMON_UV_FAULT_LIMIT
:
172 vreg
= MFR_VMON_UV_FAULT_LIMIT
;
175 if (reg
>= PMBUS_VIRT_BASE
)
182 ret
= pmbus_read_word_data(client
, page
, vreg
);
183 data
->access
= ktime_get();
188 case PMBUS_VIRT_VMON_OV_WARN_LIMIT
:
189 ret
= zl6100_d2l(DIV_ROUND_CLOSEST(zl6100_l2d(ret
) * 9, 10));
191 case PMBUS_VIRT_VMON_UV_WARN_LIMIT
:
192 ret
= zl6100_d2l(DIV_ROUND_CLOSEST(zl6100_l2d(ret
) * 11, 10));
199 static int zl6100_read_byte_data(struct i2c_client
*client
, int page
, int reg
)
201 const struct pmbus_driver_info
*info
= pmbus_get_driver_info(client
);
202 struct zl6100_data
*data
= to_zl6100_data(info
);
211 case PMBUS_VIRT_STATUS_VMON
:
212 ret
= pmbus_read_byte_data(client
, 0,
213 PMBUS_STATUS_MFR_SPECIFIC
);
218 if (ret
& VMON_UV_WARNING
)
219 status
|= PB_VOLTAGE_UV_WARNING
;
220 if (ret
& VMON_OV_WARNING
)
221 status
|= PB_VOLTAGE_OV_WARNING
;
222 if (ret
& VMON_UV_FAULT
)
223 status
|= PB_VOLTAGE_UV_FAULT
;
224 if (ret
& VMON_OV_FAULT
)
225 status
|= PB_VOLTAGE_OV_FAULT
;
229 ret
= pmbus_read_byte_data(client
, page
, reg
);
232 data
->access
= ktime_get();
237 static int zl6100_write_word_data(struct i2c_client
*client
, int page
, int reg
,
240 const struct pmbus_driver_info
*info
= pmbus_get_driver_info(client
);
241 struct zl6100_data
*data
= to_zl6100_data(info
);
248 case PMBUS_VIRT_VMON_OV_WARN_LIMIT
:
249 word
= zl6100_d2l(DIV_ROUND_CLOSEST(zl6100_l2d(word
) * 10, 9));
250 vreg
= MFR_VMON_OV_FAULT_LIMIT
;
251 pmbus_clear_cache(client
);
253 case PMBUS_VIRT_VMON_OV_FAULT_LIMIT
:
254 vreg
= MFR_VMON_OV_FAULT_LIMIT
;
255 pmbus_clear_cache(client
);
257 case PMBUS_VIRT_VMON_UV_WARN_LIMIT
:
258 word
= zl6100_d2l(DIV_ROUND_CLOSEST(zl6100_l2d(word
) * 10, 11));
259 vreg
= MFR_VMON_UV_FAULT_LIMIT
;
260 pmbus_clear_cache(client
);
262 case PMBUS_VIRT_VMON_UV_FAULT_LIMIT
:
263 vreg
= MFR_VMON_UV_FAULT_LIMIT
;
264 pmbus_clear_cache(client
);
267 if (reg
>= PMBUS_VIRT_BASE
)
273 ret
= pmbus_write_word_data(client
, page
, vreg
, word
);
274 data
->access
= ktime_get();
279 static int zl6100_write_byte(struct i2c_client
*client
, int page
, u8 value
)
281 const struct pmbus_driver_info
*info
= pmbus_get_driver_info(client
);
282 struct zl6100_data
*data
= to_zl6100_data(info
);
289 ret
= pmbus_write_byte(client
, page
, value
);
290 data
->access
= ktime_get();
295 static const struct i2c_device_id zl6100_id
[] = {
313 MODULE_DEVICE_TABLE(i2c
, zl6100_id
);
315 static int zl6100_probe(struct i2c_client
*client
,
316 const struct i2c_device_id
*id
)
319 struct zl6100_data
*data
;
320 struct pmbus_driver_info
*info
;
321 u8 device_id
[I2C_SMBUS_BLOCK_MAX
+ 1];
322 const struct i2c_device_id
*mid
;
324 if (!i2c_check_functionality(client
->adapter
,
325 I2C_FUNC_SMBUS_READ_WORD_DATA
326 | I2C_FUNC_SMBUS_READ_BLOCK_DATA
))
329 ret
= i2c_smbus_read_block_data(client
, ZL6100_DEVICE_ID
,
332 dev_err(&client
->dev
, "Failed to read device ID\n");
335 device_id
[ret
] = '\0';
336 dev_info(&client
->dev
, "Device ID %s\n", device_id
);
339 for (mid
= zl6100_id
; mid
->name
[0]; mid
++) {
340 if (!strncasecmp(mid
->name
, device_id
, strlen(mid
->name
)))
344 dev_err(&client
->dev
, "Unsupported device\n");
347 if (id
->driver_data
!= mid
->driver_data
)
348 dev_notice(&client
->dev
,
349 "Device mismatch: Configured %s, detected %s\n",
350 id
->name
, mid
->name
);
352 data
= devm_kzalloc(&client
->dev
, sizeof(struct zl6100_data
),
357 data
->id
= mid
->driver_data
;
360 * According to information from the chip vendor, all currently
361 * supported chips are known to require a wait time between I2C
367 * Since there was a direct I2C device access above, wait before
368 * accessing the chip again.
370 data
->access
= ktime_get();
376 info
->func
[0] = PMBUS_HAVE_VIN
| PMBUS_HAVE_STATUS_INPUT
377 | PMBUS_HAVE_VOUT
| PMBUS_HAVE_STATUS_VOUT
378 | PMBUS_HAVE_IOUT
| PMBUS_HAVE_STATUS_IOUT
379 | PMBUS_HAVE_TEMP
| PMBUS_HAVE_STATUS_TEMP
;
382 * ZL2004, ZL9101M, and ZL9117M support monitoring an extra voltage
383 * (VMON for ZL2004, VDRV for ZL9101M and ZL9117M). Report it as vmon.
385 if (data
->id
== zl2004
|| data
->id
== zl9101
|| data
->id
== zl9117
)
386 info
->func
[0] |= PMBUS_HAVE_VMON
| PMBUS_HAVE_STATUS_VMON
;
388 ret
= i2c_smbus_read_word_data(client
, ZL6100_MFR_CONFIG
);
392 if (ret
& ZL6100_MFR_XTEMP_ENABLE
)
393 info
->func
[0] |= PMBUS_HAVE_TEMP2
;
395 data
->access
= ktime_get();
398 info
->read_word_data
= zl6100_read_word_data
;
399 info
->read_byte_data
= zl6100_read_byte_data
;
400 info
->write_word_data
= zl6100_write_word_data
;
401 info
->write_byte
= zl6100_write_byte
;
403 return pmbus_do_probe(client
, mid
, info
);
406 static struct i2c_driver zl6100_driver
= {
410 .probe
= zl6100_probe
,
411 .remove
= pmbus_do_remove
,
412 .id_table
= zl6100_id
,
415 module_i2c_driver(zl6100_driver
);
417 MODULE_AUTHOR("Guenter Roeck");
418 MODULE_DESCRIPTION("PMBus driver for ZL6100 and compatibles");
419 MODULE_LICENSE("GPL");