1 // SPDX-License-Identifier: GPL-2.0+
3 * An I2C driver for the Intersil ISL 12026
5 * Copyright (c) 2018 Cavium, Inc.
8 #include <linux/delay.h>
10 #include <linux/module.h>
11 #include <linux/mutex.h>
12 #include <linux/nvmem-provider.h>
14 #include <linux/of_device.h>
15 #include <linux/rtc.h>
16 #include <linux/slab.h>
18 /* register offsets */
19 #define ISL12026_REG_PWR 0x14
20 # define ISL12026_REG_PWR_BSW BIT(6)
21 # define ISL12026_REG_PWR_SBIB BIT(7)
22 #define ISL12026_REG_SC 0x30
23 #define ISL12026_REG_HR 0x32
24 # define ISL12026_REG_HR_MIL BIT(7) /* military or 24 hour time */
25 #define ISL12026_REG_SR 0x3f
26 # define ISL12026_REG_SR_RTCF BIT(0)
27 # define ISL12026_REG_SR_WEL BIT(1)
28 # define ISL12026_REG_SR_RWEL BIT(2)
29 # define ISL12026_REG_SR_MBZ BIT(3)
30 # define ISL12026_REG_SR_OSCF BIT(4)
32 /* The EEPROM array responds at i2c address 0x57 */
33 #define ISL12026_EEPROM_ADDR 0x57
35 #define ISL12026_PAGESIZE 16
36 #define ISL12026_NVMEM_WRITE_TIME 20
39 struct rtc_device
*rtc
;
40 struct i2c_client
*nvm_client
;
43 static int isl12026_read_reg(struct i2c_client
*client
, int reg
)
49 struct i2c_msg msgs
[] = {
63 ret
= i2c_transfer(client
->adapter
, msgs
, ARRAY_SIZE(msgs
));
64 if (ret
!= ARRAY_SIZE(msgs
)) {
65 dev_err(&client
->dev
, "read reg error, ret=%d\n", ret
);
66 ret
= ret
< 0 ? ret
: -EIO
;
74 static int isl12026_arm_write(struct i2c_client
*client
)
78 struct i2c_msg msg
= {
87 op
[1] = ISL12026_REG_SR
;
88 op
[2] = ISL12026_REG_SR_WEL
;
90 ret
= i2c_transfer(client
->adapter
, &msg
, 1);
92 dev_err(&client
->dev
, "write error SR.WEL, ret=%d\n", ret
);
93 ret
= ret
< 0 ? ret
: -EIO
;
97 /* Set SR.WEL and SR.RWEL */
98 op
[2] = ISL12026_REG_SR_WEL
| ISL12026_REG_SR_RWEL
;
100 ret
= i2c_transfer(client
->adapter
, &msg
, 1);
102 dev_err(&client
->dev
,
103 "write error SR.WEL|SR.RWEL, ret=%d\n", ret
);
104 ret
= ret
< 0 ? ret
: -EIO
;
113 static int isl12026_disarm_write(struct i2c_client
*client
)
116 u8 op
[3] = {0, ISL12026_REG_SR
, 0};
117 struct i2c_msg msg
= {
118 .addr
= client
->addr
,
124 ret
= i2c_transfer(client
->adapter
, &msg
, 1);
126 dev_err(&client
->dev
,
127 "write error SR, ret=%d\n", ret
);
128 ret
= ret
< 0 ? ret
: -EIO
;
136 static int isl12026_write_reg(struct i2c_client
*client
, int reg
, u8 val
)
139 u8 op
[3] = {0, reg
, val
};
140 struct i2c_msg msg
= {
141 .addr
= client
->addr
,
147 ret
= isl12026_arm_write(client
);
151 ret
= i2c_transfer(client
->adapter
, &msg
, 1);
153 dev_err(&client
->dev
, "write error CCR, ret=%d\n", ret
);
154 ret
= ret
< 0 ? ret
: -EIO
;
158 msleep(ISL12026_NVMEM_WRITE_TIME
);
160 ret
= isl12026_disarm_write(client
);
165 static int isl12026_rtc_set_time(struct device
*dev
, struct rtc_time
*tm
)
167 struct i2c_client
*client
= to_i2c_client(dev
);
170 struct i2c_msg msg
= {
171 .addr
= client
->addr
,
177 ret
= isl12026_arm_write(client
);
181 /* Set the CCR registers */
183 op
[1] = ISL12026_REG_SC
;
184 op
[2] = bin2bcd(tm
->tm_sec
); /* SC */
185 op
[3] = bin2bcd(tm
->tm_min
); /* MN */
186 op
[4] = bin2bcd(tm
->tm_hour
) | ISL12026_REG_HR_MIL
; /* HR */
187 op
[5] = bin2bcd(tm
->tm_mday
); /* DT */
188 op
[6] = bin2bcd(tm
->tm_mon
+ 1); /* MO */
189 op
[7] = bin2bcd(tm
->tm_year
% 100); /* YR */
190 op
[8] = bin2bcd(tm
->tm_wday
& 7); /* DW */
191 op
[9] = bin2bcd(tm
->tm_year
>= 100 ? 20 : 19); /* Y2K */
192 ret
= i2c_transfer(client
->adapter
, &msg
, 1);
194 dev_err(&client
->dev
, "write error CCR, ret=%d\n", ret
);
195 ret
= ret
< 0 ? ret
: -EIO
;
199 ret
= isl12026_disarm_write(client
);
204 static int isl12026_rtc_read_time(struct device
*dev
, struct rtc_time
*tm
)
206 struct i2c_client
*client
= to_i2c_client(dev
);
211 struct i2c_msg msgs
[] = {
213 .addr
= client
->addr
,
218 .addr
= client
->addr
,
225 addr
[1] = ISL12026_REG_SR
;
229 ret
= i2c_transfer(client
->adapter
, msgs
, ARRAY_SIZE(msgs
));
230 if (ret
!= ARRAY_SIZE(msgs
)) {
231 dev_err(&client
->dev
, "read error, ret=%d\n", ret
);
232 ret
= ret
< 0 ? ret
: -EIO
;
236 if (sr
& ISL12026_REG_SR_RTCF
)
237 dev_warn(&client
->dev
, "Real-Time Clock Failure on read\n");
238 if (sr
& ISL12026_REG_SR_OSCF
)
239 dev_warn(&client
->dev
, "Oscillator Failure on read\n");
241 /* Second, CCR regs */
243 addr
[1] = ISL12026_REG_SC
;
244 msgs
[1].len
= sizeof(ccr
);
247 ret
= i2c_transfer(client
->adapter
, msgs
, ARRAY_SIZE(msgs
));
248 if (ret
!= ARRAY_SIZE(msgs
)) {
249 dev_err(&client
->dev
, "read error, ret=%d\n", ret
);
250 ret
= ret
< 0 ? ret
: -EIO
;
254 tm
->tm_sec
= bcd2bin(ccr
[0] & 0x7F);
255 tm
->tm_min
= bcd2bin(ccr
[1] & 0x7F);
256 if (ccr
[2] & ISL12026_REG_HR_MIL
)
257 tm
->tm_hour
= bcd2bin(ccr
[2] & 0x3F);
259 tm
->tm_hour
= bcd2bin(ccr
[2] & 0x1F) +
260 ((ccr
[2] & 0x20) ? 12 : 0);
261 tm
->tm_mday
= bcd2bin(ccr
[3] & 0x3F);
262 tm
->tm_mon
= bcd2bin(ccr
[4] & 0x1F) - 1;
263 tm
->tm_year
= bcd2bin(ccr
[5]);
264 if (bcd2bin(ccr
[7]) == 20)
266 tm
->tm_wday
= ccr
[6] & 0x07;
273 static const struct rtc_class_ops isl12026_rtc_ops
= {
274 .read_time
= isl12026_rtc_read_time
,
275 .set_time
= isl12026_rtc_set_time
,
278 static int isl12026_nvm_read(void *p
, unsigned int offset
,
279 void *val
, size_t bytes
)
281 struct isl12026
*priv
= p
;
284 struct i2c_msg msgs
[] = {
286 .addr
= priv
->nvm_client
->addr
,
291 .addr
= priv
->nvm_client
->addr
,
298 * offset and bytes checked and limited by nvmem core, so
299 * proceed without further checks.
301 ret
= mutex_lock_interruptible(&priv
->rtc
->ops_lock
);
305 /* 2 bytes of address, most significant first */
306 addr
[0] = offset
>> 8;
309 ret
= i2c_transfer(priv
->nvm_client
->adapter
, msgs
, ARRAY_SIZE(msgs
));
311 mutex_unlock(&priv
->rtc
->ops_lock
);
313 if (ret
!= ARRAY_SIZE(msgs
)) {
314 dev_err(&priv
->nvm_client
->dev
,
315 "nvmem read error, ret=%d\n", ret
);
316 return ret
< 0 ? ret
: -EIO
;
322 static int isl12026_nvm_write(void *p
, unsigned int offset
,
323 void *val
, size_t bytes
)
325 struct isl12026
*priv
= p
;
328 size_t chunk_size
, num_written
;
329 u8 payload
[ISL12026_PAGESIZE
+ 2]; /* page + 2 address bytes */
330 struct i2c_msg msgs
[] = {
332 .addr
= priv
->nvm_client
->addr
,
339 * offset and bytes checked and limited by nvmem core, so
340 * proceed without further checks.
342 ret
= mutex_lock_interruptible(&priv
->rtc
->ops_lock
);
348 chunk_size
= round_down(offset
, ISL12026_PAGESIZE
) +
349 ISL12026_PAGESIZE
- offset
;
350 chunk_size
= min(bytes
, chunk_size
);
352 * 2 bytes of address, most significant first, followed
355 memcpy(payload
+ 2, v
+ num_written
, chunk_size
);
356 payload
[0] = offset
>> 8;
358 msgs
[0].len
= chunk_size
+ 2;
359 ret
= i2c_transfer(priv
->nvm_client
->adapter
,
360 msgs
, ARRAY_SIZE(msgs
));
361 if (ret
!= ARRAY_SIZE(msgs
)) {
362 dev_err(&priv
->nvm_client
->dev
,
363 "nvmem write error, ret=%d\n", ret
);
364 ret
= ret
< 0 ? ret
: -EIO
;
369 offset
+= chunk_size
;
370 num_written
+= chunk_size
;
371 msleep(ISL12026_NVMEM_WRITE_TIME
);
374 mutex_unlock(&priv
->rtc
->ops_lock
);
379 static void isl12026_force_power_modes(struct i2c_client
*client
)
382 int pwr
, requested_pwr
;
383 u32 bsw_val
, sbib_val
;
384 bool set_bsw
, set_sbib
;
387 * If we can read the of_property, set the specified value.
388 * If there is an error reading the of_property (likely
389 * because it does not exist), keep the current value.
391 ret
= of_property_read_u32(client
->dev
.of_node
,
392 "isil,pwr-bsw", &bsw_val
);
393 set_bsw
= (ret
== 0);
395 ret
= of_property_read_u32(client
->dev
.of_node
,
396 "isil,pwr-sbib", &sbib_val
);
397 set_sbib
= (ret
== 0);
399 /* Check if PWR.BSW and/or PWR.SBIB need specified values */
400 if (!set_bsw
&& !set_sbib
)
403 pwr
= isl12026_read_reg(client
, ISL12026_REG_PWR
);
405 dev_warn(&client
->dev
, "Error: Failed to read PWR %d\n", pwr
);
413 requested_pwr
|= ISL12026_REG_PWR_BSW
;
415 requested_pwr
&= ~ISL12026_REG_PWR_BSW
;
416 } /* else keep current BSW */
420 requested_pwr
|= ISL12026_REG_PWR_SBIB
;
422 requested_pwr
&= ~ISL12026_REG_PWR_SBIB
;
423 } /* else keep current SBIB */
425 if (pwr
>= 0 && pwr
!= requested_pwr
) {
426 dev_dbg(&client
->dev
, "PWR: %02x\n", pwr
);
427 dev_dbg(&client
->dev
, "Updating PWR to: %02x\n", requested_pwr
);
428 isl12026_write_reg(client
, ISL12026_REG_PWR
, requested_pwr
);
432 static int isl12026_probe_new(struct i2c_client
*client
)
434 struct isl12026
*priv
;
436 struct nvmem_config nvm_cfg
= {
438 .base_dev
= &client
->dev
,
442 .reg_read
= isl12026_nvm_read
,
443 .reg_write
= isl12026_nvm_write
,
446 if (!i2c_check_functionality(client
->adapter
, I2C_FUNC_I2C
))
449 priv
= devm_kzalloc(&client
->dev
, sizeof(*priv
), GFP_KERNEL
);
453 i2c_set_clientdata(client
, priv
);
455 isl12026_force_power_modes(client
);
457 priv
->nvm_client
= i2c_new_dummy_device(client
->adapter
, ISL12026_EEPROM_ADDR
);
458 if (IS_ERR(priv
->nvm_client
))
459 return PTR_ERR(priv
->nvm_client
);
461 priv
->rtc
= devm_rtc_allocate_device(&client
->dev
);
462 ret
= PTR_ERR_OR_ZERO(priv
->rtc
);
466 priv
->rtc
->ops
= &isl12026_rtc_ops
;
468 ret
= devm_rtc_nvmem_register(priv
->rtc
, &nvm_cfg
);
472 return devm_rtc_register_device(priv
->rtc
);
475 static int isl12026_remove(struct i2c_client
*client
)
477 struct isl12026
*priv
= i2c_get_clientdata(client
);
479 i2c_unregister_device(priv
->nvm_client
);
483 static const struct of_device_id isl12026_dt_match
[] = {
484 { .compatible
= "isil,isl12026" },
487 MODULE_DEVICE_TABLE(of
, isl12026_dt_match
);
489 static struct i2c_driver isl12026_driver
= {
491 .name
= "rtc-isl12026",
492 .of_match_table
= isl12026_dt_match
,
494 .probe_new
= isl12026_probe_new
,
495 .remove
= isl12026_remove
,
498 module_i2c_driver(isl12026_driver
);
500 MODULE_DESCRIPTION("ISL 12026 RTC driver");
501 MODULE_LICENSE("GPL");