Merge branch 'for-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/dtor/input
[linux-block.git] / drivers / rtc / rtc-isl1208.c
CommitLineData
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1/*
2 * Intersil ISL1208 rtc class driver
3 *
4 * Copyright 2005,2006 Hebert Valerio Riedel <hvr@gnu.org>
5 *
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms of the GNU General Public License as published by the
8 * Free Software Foundation; either version 2 of the License, or (at your
9 * option) any later version.
10 *
11 */
12
13#include <linux/module.h>
14#include <linux/i2c.h>
15#include <linux/bcd.h>
16#include <linux/rtc.h>
17
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18/* Register map */
19/* rtc section */
20#define ISL1208_REG_SC 0x00
21#define ISL1208_REG_MN 0x01
22#define ISL1208_REG_HR 0x02
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23#define ISL1208_REG_HR_MIL (1<<7) /* 24h/12h mode */
24#define ISL1208_REG_HR_PM (1<<5) /* PM/AM bit in 12h mode */
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25#define ISL1208_REG_DT 0x03
26#define ISL1208_REG_MO 0x04
27#define ISL1208_REG_YR 0x05
28#define ISL1208_REG_DW 0x06
29#define ISL1208_RTC_SECTION_LEN 7
30
31/* control/status section */
32#define ISL1208_REG_SR 0x07
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33#define ISL1208_REG_SR_ARST (1<<7) /* auto reset */
34#define ISL1208_REG_SR_XTOSCB (1<<6) /* crystal oscillator */
35#define ISL1208_REG_SR_WRTC (1<<4) /* write rtc */
36#define ISL1208_REG_SR_ALM (1<<2) /* alarm */
37#define ISL1208_REG_SR_BAT (1<<1) /* battery */
38#define ISL1208_REG_SR_RTCF (1<<0) /* rtc fail */
7e56a7dc 39#define ISL1208_REG_INT 0x08
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40#define ISL1208_REG_INT_ALME (1<<6) /* alarm enable */
41#define ISL1208_REG_INT_IM (1<<7) /* interrupt/alarm mode */
9edae7bc 42#define ISL1208_REG_09 0x09 /* reserved */
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43#define ISL1208_REG_ATR 0x0a
44#define ISL1208_REG_DTR 0x0b
45
46/* alarm section */
47#define ISL1208_REG_SCA 0x0c
48#define ISL1208_REG_MNA 0x0d
49#define ISL1208_REG_HRA 0x0e
50#define ISL1208_REG_DTA 0x0f
51#define ISL1208_REG_MOA 0x10
52#define ISL1208_REG_DWA 0x11
53#define ISL1208_ALARM_SECTION_LEN 6
54
55/* user section */
56#define ISL1208_REG_USR1 0x12
57#define ISL1208_REG_USR2 0x13
58#define ISL1208_USR_SECTION_LEN 2
59
9edae7bc 60static struct i2c_driver isl1208_driver;
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61
62/* block read */
63static int
64isl1208_i2c_read_regs(struct i2c_client *client, u8 reg, u8 buf[],
9edae7bc 65 unsigned len)
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66{
67 u8 reg_addr[1] = { reg };
68 struct i2c_msg msgs[2] = {
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69 {
70 .addr = client->addr,
71 .len = sizeof(reg_addr),
72 .buf = reg_addr
73 },
74 {
75 .addr = client->addr,
76 .flags = I2C_M_RD,
77 .len = len,
78 .buf = buf
79 }
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80 };
81 int ret;
82
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83 BUG_ON(reg > ISL1208_REG_USR2);
84 BUG_ON(reg + len > ISL1208_REG_USR2 + 1);
85
86 ret = i2c_transfer(client->adapter, msgs, 2);
87 if (ret > 0)
88 ret = 0;
89 return ret;
90}
91
92/* block write */
93static int
94isl1208_i2c_set_regs(struct i2c_client *client, u8 reg, u8 const buf[],
9edae7bc 95 unsigned len)
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96{
97 u8 i2c_buf[ISL1208_REG_USR2 + 2];
98 struct i2c_msg msgs[1] = {
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99 {
100 .addr = client->addr,
101 .len = len + 1,
102 .buf = i2c_buf
103 }
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104 };
105 int ret;
106
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107 BUG_ON(reg > ISL1208_REG_USR2);
108 BUG_ON(reg + len > ISL1208_REG_USR2 + 1);
109
110 i2c_buf[0] = reg;
111 memcpy(&i2c_buf[1], &buf[0], len);
112
113 ret = i2c_transfer(client->adapter, msgs, 1);
114 if (ret > 0)
115 ret = 0;
116 return ret;
117}
118
48fc7f7e 119/* simple check to see whether we have a isl1208 */
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120static int
121isl1208_i2c_validate_client(struct i2c_client *client)
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122{
123 u8 regs[ISL1208_RTC_SECTION_LEN] = { 0, };
124 u8 zero_mask[ISL1208_RTC_SECTION_LEN] = {
125 0x80, 0x80, 0x40, 0xc0, 0xe0, 0x00, 0xf8
126 };
127 int i;
128 int ret;
129
130 ret = isl1208_i2c_read_regs(client, 0, regs, ISL1208_RTC_SECTION_LEN);
131 if (ret < 0)
132 return ret;
133
134 for (i = 0; i < ISL1208_RTC_SECTION_LEN; ++i) {
9edae7bc 135 if (regs[i] & zero_mask[i]) /* check if bits are cleared */
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136 return -ENODEV;
137 }
138
139 return 0;
140}
141
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142static int
143isl1208_i2c_get_sr(struct i2c_client *client)
7e56a7dc 144{
c91fd91d 145 return i2c_smbus_read_byte_data(client, ISL1208_REG_SR);
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146}
147
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148static int
149isl1208_i2c_get_atr(struct i2c_client *client)
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150{
151 int atr = i2c_smbus_read_byte_data(client, ISL1208_REG_ATR);
7e56a7dc 152 if (atr < 0)
9edae7bc 153 return atr;
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154
155 /* The 6bit value in the ATR register controls the load
156 * capacitance C_load * in steps of 0.25pF
157 *
158 * bit (1<<5) of the ATR register is inverted
159 *
160 * C_load(ATR=0x20) = 4.50pF
161 * C_load(ATR=0x00) = 12.50pF
162 * C_load(ATR=0x1f) = 20.25pF
163 *
164 */
165
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166 atr &= 0x3f; /* mask out lsb */
167 atr ^= 1 << 5; /* invert 6th bit */
168 atr += 2 * 9; /* add offset of 4.5pF; unit[atr] = 0.25pF */
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169
170 return atr;
171}
172
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173static int
174isl1208_i2c_get_dtr(struct i2c_client *client)
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175{
176 int dtr = i2c_smbus_read_byte_data(client, ISL1208_REG_DTR);
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177 if (dtr < 0)
178 return -EIO;
179
180 /* dtr encodes adjustments of {-60,-40,-20,0,20,40,60} ppm */
9edae7bc 181 dtr = ((dtr & 0x3) * 20) * (dtr & (1 << 2) ? -1 : 1);
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182
183 return dtr;
184}
185
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186static int
187isl1208_i2c_get_usr(struct i2c_client *client)
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188{
189 u8 buf[ISL1208_USR_SECTION_LEN] = { 0, };
190 int ret;
191
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192 ret = isl1208_i2c_read_regs(client, ISL1208_REG_USR1, buf,
193 ISL1208_USR_SECTION_LEN);
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194 if (ret < 0)
195 return ret;
196
197 return (buf[1] << 8) | buf[0];
198}
199
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200static int
201isl1208_i2c_set_usr(struct i2c_client *client, u16 usr)
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202{
203 u8 buf[ISL1208_USR_SECTION_LEN];
204
205 buf[0] = usr & 0xff;
206 buf[1] = (usr >> 8) & 0xff;
207
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208 return isl1208_i2c_set_regs(client, ISL1208_REG_USR1, buf,
209 ISL1208_USR_SECTION_LEN);
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210}
211
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212static int
213isl1208_rtc_toggle_alarm(struct i2c_client *client, int enable)
214{
215 int icr = i2c_smbus_read_byte_data(client, ISL1208_REG_INT);
216
217 if (icr < 0) {
218 dev_err(&client->dev, "%s: reading INT failed\n", __func__);
219 return icr;
220 }
221
222 if (enable)
223 icr |= ISL1208_REG_INT_ALME | ISL1208_REG_INT_IM;
224 else
225 icr &= ~(ISL1208_REG_INT_ALME | ISL1208_REG_INT_IM);
226
227 icr = i2c_smbus_write_byte_data(client, ISL1208_REG_INT, icr);
228 if (icr < 0) {
229 dev_err(&client->dev, "%s: writing INT failed\n", __func__);
230 return icr;
231 }
232
233 return 0;
234}
235
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236static int
237isl1208_rtc_proc(struct device *dev, struct seq_file *seq)
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238{
239 struct i2c_client *const client = to_i2c_client(dev);
240 int sr, dtr, atr, usr;
241
242 sr = isl1208_i2c_get_sr(client);
243 if (sr < 0) {
244 dev_err(&client->dev, "%s: reading SR failed\n", __func__);
245 return sr;
246 }
247
248 seq_printf(seq, "status_reg\t:%s%s%s%s%s%s (0x%.2x)\n",
249 (sr & ISL1208_REG_SR_RTCF) ? " RTCF" : "",
250 (sr & ISL1208_REG_SR_BAT) ? " BAT" : "",
251 (sr & ISL1208_REG_SR_ALM) ? " ALM" : "",
252 (sr & ISL1208_REG_SR_WRTC) ? " WRTC" : "",
253 (sr & ISL1208_REG_SR_XTOSCB) ? " XTOSCB" : "",
9edae7bc 254 (sr & ISL1208_REG_SR_ARST) ? " ARST" : "", sr);
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255
256 seq_printf(seq, "batt_status\t: %s\n",
257 (sr & ISL1208_REG_SR_RTCF) ? "bad" : "okay");
258
259 dtr = isl1208_i2c_get_dtr(client);
9edae7bc 260 if (dtr >= 0 - 1)
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261 seq_printf(seq, "digital_trim\t: %d ppm\n", dtr);
262
263 atr = isl1208_i2c_get_atr(client);
264 if (atr >= 0)
265 seq_printf(seq, "analog_trim\t: %d.%.2d pF\n",
9edae7bc 266 atr >> 2, (atr & 0x3) * 25);
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267
268 usr = isl1208_i2c_get_usr(client);
269 if (usr >= 0)
270 seq_printf(seq, "user_data\t: 0x%.4x\n", usr);
271
272 return 0;
273}
274
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275static int
276isl1208_i2c_read_time(struct i2c_client *client, struct rtc_time *tm)
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277{
278 int sr;
279 u8 regs[ISL1208_RTC_SECTION_LEN] = { 0, };
280
281 sr = isl1208_i2c_get_sr(client);
282 if (sr < 0) {
283 dev_err(&client->dev, "%s: reading SR failed\n", __func__);
284 return -EIO;
285 }
286
287 sr = isl1208_i2c_read_regs(client, 0, regs, ISL1208_RTC_SECTION_LEN);
288 if (sr < 0) {
289 dev_err(&client->dev, "%s: reading RTC section failed\n",
290 __func__);
291 return sr;
292 }
293
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294 tm->tm_sec = bcd2bin(regs[ISL1208_REG_SC]);
295 tm->tm_min = bcd2bin(regs[ISL1208_REG_MN]);
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296
297 /* HR field has a more complex interpretation */
298 {
7e56a7dc 299 const u8 _hr = regs[ISL1208_REG_HR];
9edae7bc 300 if (_hr & ISL1208_REG_HR_MIL) /* 24h format */
fe20ba70 301 tm->tm_hour = bcd2bin(_hr & 0x3f);
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302 else {
303 /* 12h format */
fe20ba70 304 tm->tm_hour = bcd2bin(_hr & 0x1f);
9edae7bc 305 if (_hr & ISL1208_REG_HR_PM) /* PM flag set */
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306 tm->tm_hour += 12;
307 }
308 }
309
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310 tm->tm_mday = bcd2bin(regs[ISL1208_REG_DT]);
311 tm->tm_mon = bcd2bin(regs[ISL1208_REG_MO]) - 1; /* rtc starts at 1 */
312 tm->tm_year = bcd2bin(regs[ISL1208_REG_YR]) + 100;
313 tm->tm_wday = bcd2bin(regs[ISL1208_REG_DW]);
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314
315 return 0;
316}
317
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318static int
319isl1208_i2c_read_alarm(struct i2c_client *client, struct rtc_wkalrm *alarm)
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320{
321 struct rtc_time *const tm = &alarm->time;
322 u8 regs[ISL1208_ALARM_SECTION_LEN] = { 0, };
cf044f0e 323 int icr, yr, sr = isl1208_i2c_get_sr(client);
7e56a7dc 324
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325 if (sr < 0) {
326 dev_err(&client->dev, "%s: reading SR failed\n", __func__);
327 return sr;
328 }
329
330 sr = isl1208_i2c_read_regs(client, ISL1208_REG_SCA, regs,
9edae7bc 331 ISL1208_ALARM_SECTION_LEN);
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332 if (sr < 0) {
333 dev_err(&client->dev, "%s: reading alarm section failed\n",
334 __func__);
335 return sr;
336 }
337
338 /* MSB of each alarm register is an enable bit */
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339 tm->tm_sec = bcd2bin(regs[ISL1208_REG_SCA - ISL1208_REG_SCA] & 0x7f);
340 tm->tm_min = bcd2bin(regs[ISL1208_REG_MNA - ISL1208_REG_SCA] & 0x7f);
341 tm->tm_hour = bcd2bin(regs[ISL1208_REG_HRA - ISL1208_REG_SCA] & 0x3f);
342 tm->tm_mday = bcd2bin(regs[ISL1208_REG_DTA - ISL1208_REG_SCA] & 0x3f);
9edae7bc 343 tm->tm_mon =
fe20ba70
AB
344 bcd2bin(regs[ISL1208_REG_MOA - ISL1208_REG_SCA] & 0x1f) - 1;
345 tm->tm_wday = bcd2bin(regs[ISL1208_REG_DWA - ISL1208_REG_SCA] & 0x03);
7e56a7dc 346
cf044f0e
RM
347 /* The alarm doesn't store the year so get it from the rtc section */
348 yr = i2c_smbus_read_byte_data(client, ISL1208_REG_YR);
349 if (yr < 0) {
350 dev_err(&client->dev, "%s: reading RTC YR failed\n", __func__);
351 return yr;
352 }
353 tm->tm_year = bcd2bin(yr) + 100;
354
355 icr = i2c_smbus_read_byte_data(client, ISL1208_REG_INT);
356 if (icr < 0) {
357 dev_err(&client->dev, "%s: reading INT failed\n", __func__);
358 return icr;
359 }
360 alarm->enabled = !!(icr & ISL1208_REG_INT_ALME);
361
362 return 0;
363}
364
365static int
366isl1208_i2c_set_alarm(struct i2c_client *client, struct rtc_wkalrm *alarm)
367{
368 struct rtc_time *alarm_tm = &alarm->time;
369 u8 regs[ISL1208_ALARM_SECTION_LEN] = { 0, };
370 const int offs = ISL1208_REG_SCA;
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371 struct rtc_time rtc_tm;
372 int err, enable;
373
374 err = isl1208_i2c_read_time(client, &rtc_tm);
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375 if (err)
376 return err;
377
378 /* If the alarm time is before the current time disable the alarm */
f118db1e 379 if (!alarm->enabled || rtc_tm_sub(alarm_tm, &rtc_tm) <= 0)
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380 enable = 0x00;
381 else
382 enable = 0x80;
383
384 /* Program the alarm and enable it for each setting */
385 regs[ISL1208_REG_SCA - offs] = bin2bcd(alarm_tm->tm_sec) | enable;
386 regs[ISL1208_REG_MNA - offs] = bin2bcd(alarm_tm->tm_min) | enable;
387 regs[ISL1208_REG_HRA - offs] = bin2bcd(alarm_tm->tm_hour) |
388 ISL1208_REG_HR_MIL | enable;
389
390 regs[ISL1208_REG_DTA - offs] = bin2bcd(alarm_tm->tm_mday) | enable;
391 regs[ISL1208_REG_MOA - offs] = bin2bcd(alarm_tm->tm_mon + 1) | enable;
392 regs[ISL1208_REG_DWA - offs] = bin2bcd(alarm_tm->tm_wday & 7) | enable;
393
394 /* write ALARM registers */
395 err = isl1208_i2c_set_regs(client, offs, regs,
396 ISL1208_ALARM_SECTION_LEN);
397 if (err < 0) {
398 dev_err(&client->dev, "%s: writing ALARM section failed\n",
399 __func__);
400 return err;
401 }
402
403 err = isl1208_rtc_toggle_alarm(client, enable);
404 if (err)
405 return err;
406
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407 return 0;
408}
409
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410static int
411isl1208_rtc_read_time(struct device *dev, struct rtc_time *tm)
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412{
413 return isl1208_i2c_read_time(to_i2c_client(dev), tm);
414}
415
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416static int
417isl1208_i2c_set_time(struct i2c_client *client, struct rtc_time const *tm)
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418{
419 int sr;
420 u8 regs[ISL1208_RTC_SECTION_LEN] = { 0, };
421
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422 /* The clock has an 8 bit wide bcd-coded register (they never learn)
423 * for the year. tm_year is an offset from 1900 and we are interested
424 * in the 2000-2099 range, so any value less than 100 is invalid.
425 */
426 if (tm->tm_year < 100)
427 return -EINVAL;
428
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429 regs[ISL1208_REG_SC] = bin2bcd(tm->tm_sec);
430 regs[ISL1208_REG_MN] = bin2bcd(tm->tm_min);
431 regs[ISL1208_REG_HR] = bin2bcd(tm->tm_hour) | ISL1208_REG_HR_MIL;
7e56a7dc 432
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433 regs[ISL1208_REG_DT] = bin2bcd(tm->tm_mday);
434 regs[ISL1208_REG_MO] = bin2bcd(tm->tm_mon + 1);
435 regs[ISL1208_REG_YR] = bin2bcd(tm->tm_year - 100);
7e56a7dc 436
fe20ba70 437 regs[ISL1208_REG_DW] = bin2bcd(tm->tm_wday & 7);
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438
439 sr = isl1208_i2c_get_sr(client);
440 if (sr < 0) {
441 dev_err(&client->dev, "%s: reading SR failed\n", __func__);
442 return sr;
443 }
444
445 /* set WRTC */
9edae7bc 446 sr = i2c_smbus_write_byte_data(client, ISL1208_REG_SR,
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447 sr | ISL1208_REG_SR_WRTC);
448 if (sr < 0) {
449 dev_err(&client->dev, "%s: writing SR failed\n", __func__);
450 return sr;
451 }
452
453 /* write RTC registers */
454 sr = isl1208_i2c_set_regs(client, 0, regs, ISL1208_RTC_SECTION_LEN);
455 if (sr < 0) {
456 dev_err(&client->dev, "%s: writing RTC section failed\n",
457 __func__);
458 return sr;
459 }
460
461 /* clear WRTC again */
5b9fc795
DO
462 sr = isl1208_i2c_get_sr(client);
463 if (sr < 0) {
464 dev_err(&client->dev, "%s: reading SR failed\n", __func__);
465 return sr;
466 }
9edae7bc 467 sr = i2c_smbus_write_byte_data(client, ISL1208_REG_SR,
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468 sr & ~ISL1208_REG_SR_WRTC);
469 if (sr < 0) {
470 dev_err(&client->dev, "%s: writing SR failed\n", __func__);
471 return sr;
472 }
473
474 return 0;
475}
476
477
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478static int
479isl1208_rtc_set_time(struct device *dev, struct rtc_time *tm)
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480{
481 return isl1208_i2c_set_time(to_i2c_client(dev), tm);
482}
483
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484static int
485isl1208_rtc_read_alarm(struct device *dev, struct rtc_wkalrm *alarm)
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486{
487 return isl1208_i2c_read_alarm(to_i2c_client(dev), alarm);
488}
489
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490static int
491isl1208_rtc_set_alarm(struct device *dev, struct rtc_wkalrm *alarm)
492{
493 return isl1208_i2c_set_alarm(to_i2c_client(dev), alarm);
494}
495
496static irqreturn_t
497isl1208_rtc_interrupt(int irq, void *data)
498{
499 unsigned long timeout = jiffies + msecs_to_jiffies(1000);
500 struct i2c_client *client = data;
72fca4a4 501 struct rtc_device *rtc = i2c_get_clientdata(client);
cf044f0e
RM
502 int handled = 0, sr, err;
503
504 /*
505 * I2C reads get NAK'ed if we read straight away after an interrupt?
506 * Using a mdelay/msleep didn't seem to help either, so we work around
507 * this by continually trying to read the register for a short time.
508 */
509 while (1) {
510 sr = isl1208_i2c_get_sr(client);
511 if (sr >= 0)
512 break;
513
514 if (time_after(jiffies, timeout)) {
515 dev_err(&client->dev, "%s: reading SR failed\n",
516 __func__);
517 return sr;
518 }
519 }
520
521 if (sr & ISL1208_REG_SR_ALM) {
522 dev_dbg(&client->dev, "alarm!\n");
523
72fca4a4
JL
524 rtc_update_irq(rtc, 1, RTC_IRQF | RTC_AF);
525
cf044f0e
RM
526 /* Clear the alarm */
527 sr &= ~ISL1208_REG_SR_ALM;
528 sr = i2c_smbus_write_byte_data(client, ISL1208_REG_SR, sr);
529 if (sr < 0)
530 dev_err(&client->dev, "%s: writing SR failed\n",
531 __func__);
532 else
533 handled = 1;
534
535 /* Disable the alarm */
536 err = isl1208_rtc_toggle_alarm(client, 0);
537 if (err)
538 return err;
539 }
540
541 return handled ? IRQ_HANDLED : IRQ_NONE;
542}
543
ff8371ac 544static const struct rtc_class_ops isl1208_rtc_ops = {
9edae7bc
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545 .proc = isl1208_rtc_proc,
546 .read_time = isl1208_rtc_read_time,
547 .set_time = isl1208_rtc_set_time,
548 .read_alarm = isl1208_rtc_read_alarm,
cf044f0e 549 .set_alarm = isl1208_rtc_set_alarm,
7e56a7dc
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550};
551
552/* sysfs interface */
553
9edae7bc
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554static ssize_t
555isl1208_sysfs_show_atrim(struct device *dev,
556 struct device_attribute *attr, char *buf)
7e56a7dc 557{
9edae7bc 558 int atr = isl1208_i2c_get_atr(to_i2c_client(dev));
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559 if (atr < 0)
560 return atr;
561
9edae7bc 562 return sprintf(buf, "%d.%.2d pF\n", atr >> 2, (atr & 0x3) * 25);
7e56a7dc 563}
9edae7bc 564
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565static DEVICE_ATTR(atrim, S_IRUGO, isl1208_sysfs_show_atrim, NULL);
566
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567static ssize_t
568isl1208_sysfs_show_dtrim(struct device *dev,
569 struct device_attribute *attr, char *buf)
7e56a7dc 570{
9edae7bc 571 int dtr = isl1208_i2c_get_dtr(to_i2c_client(dev));
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572 if (dtr < 0)
573 return dtr;
574
575 return sprintf(buf, "%d ppm\n", dtr);
576}
9edae7bc 577
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578static DEVICE_ATTR(dtrim, S_IRUGO, isl1208_sysfs_show_dtrim, NULL);
579
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580static ssize_t
581isl1208_sysfs_show_usr(struct device *dev,
582 struct device_attribute *attr, char *buf)
7e56a7dc 583{
9edae7bc 584 int usr = isl1208_i2c_get_usr(to_i2c_client(dev));
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585 if (usr < 0)
586 return usr;
587
588 return sprintf(buf, "0x%.4x\n", usr);
589}
590
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591static ssize_t
592isl1208_sysfs_store_usr(struct device *dev,
593 struct device_attribute *attr,
594 const char *buf, size_t count)
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595{
596 int usr = -1;
597
598 if (buf[0] == '0' && (buf[1] == 'x' || buf[1] == 'X')) {
599 if (sscanf(buf, "%x", &usr) != 1)
600 return -EINVAL;
601 } else {
602 if (sscanf(buf, "%d", &usr) != 1)
603 return -EINVAL;
604 }
605
606 if (usr < 0 || usr > 0xffff)
607 return -EINVAL;
608
609 return isl1208_i2c_set_usr(to_i2c_client(dev), usr) ? -EIO : count;
610}
9edae7bc 611
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612static DEVICE_ATTR(usr, S_IRUGO | S_IWUSR, isl1208_sysfs_show_usr,
613 isl1208_sysfs_store_usr);
614
e17ab5cb
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615static struct attribute *isl1208_rtc_attrs[] = {
616 &dev_attr_atrim.attr,
617 &dev_attr_dtrim.attr,
618 &dev_attr_usr.attr,
619 NULL
620};
9edae7bc 621
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622static const struct attribute_group isl1208_rtc_sysfs_files = {
623 .attrs = isl1208_rtc_attrs,
624};
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625
626static int
d2653e92 627isl1208_probe(struct i2c_client *client, const struct i2c_device_id *id)
9edae7bc
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628{
629 int rc = 0;
630 struct rtc_device *rtc;
7e56a7dc 631
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632 if (!i2c_check_functionality(client->adapter, I2C_FUNC_I2C))
633 return -ENODEV;
7e56a7dc 634
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635 if (isl1208_i2c_validate_client(client) < 0)
636 return -ENODEV;
637
236b7187 638 rtc = devm_rtc_allocate_device(&client->dev);
adce8c14
SK
639 if (IS_ERR(rtc))
640 return PTR_ERR(rtc);
7e56a7dc 641
236b7187
DO
642 rtc->ops = &isl1208_rtc_ops;
643
9edae7bc 644 i2c_set_clientdata(client, rtc);
7e56a7dc 645
9edae7bc 646 rc = isl1208_i2c_get_sr(client);
7e56a7dc 647 if (rc < 0) {
9edae7bc 648 dev_err(&client->dev, "reading status failed\n");
adce8c14 649 return rc;
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650 }
651
652 if (rc & ISL1208_REG_SR_RTCF)
9edae7bc 653 dev_warn(&client->dev, "rtc power failure detected, "
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654 "please set clock.\n");
655
e17ab5cb 656 rc = sysfs_create_group(&client->dev.kobj, &isl1208_rtc_sysfs_files);
9edae7bc 657 if (rc)
adce8c14 658 return rc;
7e56a7dc 659
9d327c2d
MG
660 if (client->irq > 0) {
661 rc = devm_request_threaded_irq(&client->dev, client->irq, NULL,
662 isl1208_rtc_interrupt,
663 IRQF_SHARED | IRQF_ONESHOT,
664 isl1208_driver.driver.name,
665 client);
666 if (!rc) {
667 device_init_wakeup(&client->dev, 1);
668 enable_irq_wake(client->irq);
669 } else {
670 dev_err(&client->dev,
671 "Unable to request irq %d, no alarm support\n",
672 client->irq);
673 client->irq = 0;
674 }
675 }
676
236b7187 677 return rtc_register_device(rtc);
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678}
679
680static int
9edae7bc 681isl1208_remove(struct i2c_client *client)
7e56a7dc 682{
e17ab5cb 683 sysfs_remove_group(&client->dev.kobj, &isl1208_rtc_sysfs_files);
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684
685 return 0;
686}
687
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688static const struct i2c_device_id isl1208_id[] = {
689 { "isl1208", 0 },
5fa44f86 690 { "isl1218", 0 },
3760f736
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691 { }
692};
693MODULE_DEVICE_TABLE(i2c, isl1208_id);
694
03835504
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695static const struct of_device_id isl1208_of_match[] = {
696 { .compatible = "isil,isl1208" },
697 { .compatible = "isil,isl1218" },
698 { }
699};
700MODULE_DEVICE_TABLE(of, isl1208_of_match);
701
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702static struct i2c_driver isl1208_driver = {
703 .driver = {
03835504
JMC
704 .name = "rtc-isl1208",
705 .of_match_table = of_match_ptr(isl1208_of_match),
706 },
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707 .probe = isl1208_probe,
708 .remove = isl1208_remove,
3760f736 709 .id_table = isl1208_id,
9edae7bc 710};
7e56a7dc 711
0abc9201 712module_i2c_driver(isl1208_driver);
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713
714MODULE_AUTHOR("Herbert Valerio Riedel <hvr@gnu.org>");
715MODULE_DESCRIPTION("Intersil ISL1208 RTC driver");
716MODULE_LICENSE("GPL");