1aa5bd7e9SDale Farnsworth /* 2aa5bd7e9SDale Farnsworth * rtc class driver for the Maxim MAX6900 chip 3aa5bd7e9SDale Farnsworth * 4aa5bd7e9SDale Farnsworth * Author: Dale Farnsworth <dale@farnsworth.org> 5aa5bd7e9SDale Farnsworth * 6aa5bd7e9SDale Farnsworth * based on previously existing rtc class drivers 7aa5bd7e9SDale Farnsworth * 8aa5bd7e9SDale Farnsworth * 2007 (c) MontaVista, Software, Inc. This file is licensed under 9aa5bd7e9SDale Farnsworth * the terms of the GNU General Public License version 2. This program 10aa5bd7e9SDale Farnsworth * is licensed "as is" without any warranty of any kind, whether express 11aa5bd7e9SDale Farnsworth * or implied. 12aa5bd7e9SDale Farnsworth */ 13aa5bd7e9SDale Farnsworth 14aa5bd7e9SDale Farnsworth #include <linux/module.h> 15aa5bd7e9SDale Farnsworth #include <linux/i2c.h> 16aa5bd7e9SDale Farnsworth #include <linux/bcd.h> 17aa5bd7e9SDale Farnsworth #include <linux/rtc.h> 18aa5bd7e9SDale Farnsworth #include <linux/delay.h> 19aa5bd7e9SDale Farnsworth 20*6fd5c03fSAlessandro Zummo #define DRV_VERSION "0.2" 21aa5bd7e9SDale Farnsworth 22aa5bd7e9SDale Farnsworth /* 23aa5bd7e9SDale Farnsworth * register indices 24aa5bd7e9SDale Farnsworth */ 25aa5bd7e9SDale Farnsworth #define MAX6900_REG_SC 0 /* seconds 00-59 */ 26aa5bd7e9SDale Farnsworth #define MAX6900_REG_MN 1 /* minutes 00-59 */ 27aa5bd7e9SDale Farnsworth #define MAX6900_REG_HR 2 /* hours 00-23 */ 28aa5bd7e9SDale Farnsworth #define MAX6900_REG_DT 3 /* day of month 00-31 */ 29aa5bd7e9SDale Farnsworth #define MAX6900_REG_MO 4 /* month 01-12 */ 30aa5bd7e9SDale Farnsworth #define MAX6900_REG_DW 5 /* day of week 1-7 */ 31aa5bd7e9SDale Farnsworth #define MAX6900_REG_YR 6 /* year 00-99 */ 32aa5bd7e9SDale Farnsworth #define MAX6900_REG_CT 7 /* control */ 338a2601f6SDale Farnsworth /* register 8 is undocumented */ 348a2601f6SDale Farnsworth #define MAX6900_REG_CENTURY 9 /* century */ 358a2601f6SDale Farnsworth #define MAX6900_REG_LEN 10 368a2601f6SDale Farnsworth 378a2601f6SDale Farnsworth #define MAX6900_BURST_LEN 8 /* can burst r/w first 8 regs */ 38aa5bd7e9SDale Farnsworth 39aa5bd7e9SDale Farnsworth #define MAX6900_REG_CT_WP (1 << 7) /* Write Protect */ 40aa5bd7e9SDale Farnsworth 41aa5bd7e9SDale Farnsworth /* 42aa5bd7e9SDale Farnsworth * register read/write commands 43aa5bd7e9SDale Farnsworth */ 44aa5bd7e9SDale Farnsworth #define MAX6900_REG_CONTROL_WRITE 0x8e 458a2601f6SDale Farnsworth #define MAX6900_REG_CENTURY_WRITE 0x92 468a2601f6SDale Farnsworth #define MAX6900_REG_CENTURY_READ 0x93 47aa5bd7e9SDale Farnsworth #define MAX6900_REG_RESERVED_READ 0x96 488a2601f6SDale Farnsworth #define MAX6900_REG_BURST_WRITE 0xbe 498a2601f6SDale Farnsworth #define MAX6900_REG_BURST_READ 0xbf 50aa5bd7e9SDale Farnsworth 51aa5bd7e9SDale Farnsworth #define MAX6900_IDLE_TIME_AFTER_WRITE 3 /* specification says 2.5 mS */ 52aa5bd7e9SDale Farnsworth 53*6fd5c03fSAlessandro Zummo static struct i2c_driver max6900_driver; 54aa5bd7e9SDale Farnsworth 55aa5bd7e9SDale Farnsworth static int max6900_i2c_read_regs(struct i2c_client *client, u8 *buf) 56aa5bd7e9SDale Farnsworth { 578a2601f6SDale Farnsworth u8 reg_burst_read[1] = { MAX6900_REG_BURST_READ }; 588a2601f6SDale Farnsworth u8 reg_century_read[1] = { MAX6900_REG_CENTURY_READ }; 598a2601f6SDale Farnsworth struct i2c_msg msgs[4] = { 60aa5bd7e9SDale Farnsworth { 61aa5bd7e9SDale Farnsworth .addr = client->addr, 62aa5bd7e9SDale Farnsworth .flags = 0, /* write */ 638a2601f6SDale Farnsworth .len = sizeof(reg_burst_read), 64*6fd5c03fSAlessandro Zummo .buf = reg_burst_read} 65*6fd5c03fSAlessandro Zummo , 66aa5bd7e9SDale Farnsworth { 67aa5bd7e9SDale Farnsworth .addr = client->addr, 68aa5bd7e9SDale Farnsworth .flags = I2C_M_RD, 698a2601f6SDale Farnsworth .len = MAX6900_BURST_LEN, 70*6fd5c03fSAlessandro Zummo .buf = buf} 71*6fd5c03fSAlessandro Zummo , 728a2601f6SDale Farnsworth { 738a2601f6SDale Farnsworth .addr = client->addr, 748a2601f6SDale Farnsworth .flags = 0, /* write */ 758a2601f6SDale Farnsworth .len = sizeof(reg_century_read), 76*6fd5c03fSAlessandro Zummo .buf = reg_century_read} 77*6fd5c03fSAlessandro Zummo , 788a2601f6SDale Farnsworth { 798a2601f6SDale Farnsworth .addr = client->addr, 808a2601f6SDale Farnsworth .flags = I2C_M_RD, 818a2601f6SDale Farnsworth .len = sizeof(buf[MAX6900_REG_CENTURY]), 828a2601f6SDale Farnsworth .buf = &buf[MAX6900_REG_CENTURY] 83aa5bd7e9SDale Farnsworth } 84aa5bd7e9SDale Farnsworth }; 85aa5bd7e9SDale Farnsworth int rc; 86aa5bd7e9SDale Farnsworth 87aa5bd7e9SDale Farnsworth rc = i2c_transfer(client->adapter, msgs, ARRAY_SIZE(msgs)); 88aa5bd7e9SDale Farnsworth if (rc != ARRAY_SIZE(msgs)) { 89*6fd5c03fSAlessandro Zummo dev_err(&client->dev, "%s: register read failed\n", __func__); 90aa5bd7e9SDale Farnsworth return -EIO; 91aa5bd7e9SDale Farnsworth } 92aa5bd7e9SDale Farnsworth return 0; 93aa5bd7e9SDale Farnsworth } 94aa5bd7e9SDale Farnsworth 95aa5bd7e9SDale Farnsworth static int max6900_i2c_write_regs(struct i2c_client *client, u8 const *buf) 96aa5bd7e9SDale Farnsworth { 978a2601f6SDale Farnsworth u8 i2c_century_buf[1 + 1] = { MAX6900_REG_CENTURY_WRITE }; 988a2601f6SDale Farnsworth struct i2c_msg century_msgs[1] = { 99aa5bd7e9SDale Farnsworth { 100aa5bd7e9SDale Farnsworth .addr = client->addr, 101aa5bd7e9SDale Farnsworth .flags = 0, /* write */ 1028a2601f6SDale Farnsworth .len = sizeof(i2c_century_buf), 103*6fd5c03fSAlessandro Zummo .buf = i2c_century_buf} 1048a2601f6SDale Farnsworth }; 1058a2601f6SDale Farnsworth u8 i2c_burst_buf[MAX6900_BURST_LEN + 1] = { MAX6900_REG_BURST_WRITE }; 1068a2601f6SDale Farnsworth struct i2c_msg burst_msgs[1] = { 1078a2601f6SDale Farnsworth { 1088a2601f6SDale Farnsworth .addr = client->addr, 1098a2601f6SDale Farnsworth .flags = 0, /* write */ 1108a2601f6SDale Farnsworth .len = sizeof(i2c_burst_buf), 111*6fd5c03fSAlessandro Zummo .buf = i2c_burst_buf} 112aa5bd7e9SDale Farnsworth }; 113aa5bd7e9SDale Farnsworth int rc; 114aa5bd7e9SDale Farnsworth 1158a2601f6SDale Farnsworth /* 1168a2601f6SDale Farnsworth * We have to make separate calls to i2c_transfer because of 1178a2601f6SDale Farnsworth * the need to delay after each write to the chip. Also, 1188a2601f6SDale Farnsworth * we write the century byte first, since we set the write-protect 1198a2601f6SDale Farnsworth * bit as part of the burst write. 1208a2601f6SDale Farnsworth */ 1218a2601f6SDale Farnsworth i2c_century_buf[1] = buf[MAX6900_REG_CENTURY]; 122*6fd5c03fSAlessandro Zummo 1238a2601f6SDale Farnsworth rc = i2c_transfer(client->adapter, century_msgs, 1248a2601f6SDale Farnsworth ARRAY_SIZE(century_msgs)); 1258a2601f6SDale Farnsworth if (rc != ARRAY_SIZE(century_msgs)) 1268a2601f6SDale Farnsworth goto write_failed; 127*6fd5c03fSAlessandro Zummo 1288a2601f6SDale Farnsworth msleep(MAX6900_IDLE_TIME_AFTER_WRITE); 129aa5bd7e9SDale Farnsworth 1308a2601f6SDale Farnsworth memcpy(&i2c_burst_buf[1], buf, MAX6900_BURST_LEN); 1318a2601f6SDale Farnsworth 1328a2601f6SDale Farnsworth rc = i2c_transfer(client->adapter, burst_msgs, ARRAY_SIZE(burst_msgs)); 1338a2601f6SDale Farnsworth if (rc != ARRAY_SIZE(burst_msgs)) 1348a2601f6SDale Farnsworth goto write_failed; 1358a2601f6SDale Farnsworth msleep(MAX6900_IDLE_TIME_AFTER_WRITE); 1368a2601f6SDale Farnsworth 1378a2601f6SDale Farnsworth return 0; 1388a2601f6SDale Farnsworth 1398a2601f6SDale Farnsworth write_failed: 140*6fd5c03fSAlessandro Zummo dev_err(&client->dev, "%s: register write failed\n", __func__); 141aa5bd7e9SDale Farnsworth return -EIO; 142aa5bd7e9SDale Farnsworth } 143aa5bd7e9SDale Farnsworth 144aa5bd7e9SDale Farnsworth static int max6900_i2c_read_time(struct i2c_client *client, struct rtc_time *tm) 145aa5bd7e9SDale Farnsworth { 146aa5bd7e9SDale Farnsworth int rc; 147aa5bd7e9SDale Farnsworth u8 regs[MAX6900_REG_LEN]; 148aa5bd7e9SDale Farnsworth 149aa5bd7e9SDale Farnsworth rc = max6900_i2c_read_regs(client, regs); 150aa5bd7e9SDale Farnsworth if (rc < 0) 151aa5bd7e9SDale Farnsworth return rc; 152aa5bd7e9SDale Farnsworth 153aa5bd7e9SDale Farnsworth tm->tm_sec = BCD2BIN(regs[MAX6900_REG_SC]); 154aa5bd7e9SDale Farnsworth tm->tm_min = BCD2BIN(regs[MAX6900_REG_MN]); 155aa5bd7e9SDale Farnsworth tm->tm_hour = BCD2BIN(regs[MAX6900_REG_HR] & 0x3f); 156aa5bd7e9SDale Farnsworth tm->tm_mday = BCD2BIN(regs[MAX6900_REG_DT]); 157aa5bd7e9SDale Farnsworth tm->tm_mon = BCD2BIN(regs[MAX6900_REG_MO]) - 1; 1588a2601f6SDale Farnsworth tm->tm_year = BCD2BIN(regs[MAX6900_REG_YR]) + 1598a2601f6SDale Farnsworth BCD2BIN(regs[MAX6900_REG_CENTURY]) * 100 - 1900; 160aa5bd7e9SDale Farnsworth tm->tm_wday = BCD2BIN(regs[MAX6900_REG_DW]); 161aa5bd7e9SDale Farnsworth 162aa5bd7e9SDale Farnsworth return 0; 163aa5bd7e9SDale Farnsworth } 164aa5bd7e9SDale Farnsworth 165aa5bd7e9SDale Farnsworth static int max6900_i2c_clear_write_protect(struct i2c_client *client) 166aa5bd7e9SDale Farnsworth { 167aa5bd7e9SDale Farnsworth int rc; 168aa5bd7e9SDale Farnsworth rc = i2c_smbus_write_byte_data(client, MAX6900_REG_CONTROL_WRITE, 0); 169aa5bd7e9SDale Farnsworth if (rc < 0) { 170aa5bd7e9SDale Farnsworth dev_err(&client->dev, "%s: control register write failed\n", 1712a4e2b87SHarvey Harrison __func__); 172aa5bd7e9SDale Farnsworth return -EIO; 173aa5bd7e9SDale Farnsworth } 174aa5bd7e9SDale Farnsworth return 0; 175aa5bd7e9SDale Farnsworth } 176aa5bd7e9SDale Farnsworth 177*6fd5c03fSAlessandro Zummo static int 178*6fd5c03fSAlessandro Zummo max6900_i2c_set_time(struct i2c_client *client, struct rtc_time const *tm) 179aa5bd7e9SDale Farnsworth { 180aa5bd7e9SDale Farnsworth u8 regs[MAX6900_REG_LEN]; 181aa5bd7e9SDale Farnsworth int rc; 182aa5bd7e9SDale Farnsworth 183aa5bd7e9SDale Farnsworth rc = max6900_i2c_clear_write_protect(client); 184aa5bd7e9SDale Farnsworth if (rc < 0) 185aa5bd7e9SDale Farnsworth return rc; 186aa5bd7e9SDale Farnsworth 187aa5bd7e9SDale Farnsworth regs[MAX6900_REG_SC] = BIN2BCD(tm->tm_sec); 188aa5bd7e9SDale Farnsworth regs[MAX6900_REG_MN] = BIN2BCD(tm->tm_min); 189aa5bd7e9SDale Farnsworth regs[MAX6900_REG_HR] = BIN2BCD(tm->tm_hour); 190aa5bd7e9SDale Farnsworth regs[MAX6900_REG_DT] = BIN2BCD(tm->tm_mday); 191aa5bd7e9SDale Farnsworth regs[MAX6900_REG_MO] = BIN2BCD(tm->tm_mon + 1); 192aa5bd7e9SDale Farnsworth regs[MAX6900_REG_DW] = BIN2BCD(tm->tm_wday); 1938a2601f6SDale Farnsworth regs[MAX6900_REG_YR] = BIN2BCD(tm->tm_year % 100); 1948a2601f6SDale Farnsworth regs[MAX6900_REG_CENTURY] = BIN2BCD((tm->tm_year + 1900) / 100); 1958a2601f6SDale Farnsworth /* set write protect */ 1968a2601f6SDale Farnsworth regs[MAX6900_REG_CT] = MAX6900_REG_CT_WP; 197aa5bd7e9SDale Farnsworth 198aa5bd7e9SDale Farnsworth rc = max6900_i2c_write_regs(client, regs); 199aa5bd7e9SDale Farnsworth if (rc < 0) 200aa5bd7e9SDale Farnsworth return rc; 201aa5bd7e9SDale Farnsworth 202aa5bd7e9SDale Farnsworth return 0; 203aa5bd7e9SDale Farnsworth } 204aa5bd7e9SDale Farnsworth 205aa5bd7e9SDale Farnsworth static int max6900_rtc_read_time(struct device *dev, struct rtc_time *tm) 206aa5bd7e9SDale Farnsworth { 207aa5bd7e9SDale Farnsworth return max6900_i2c_read_time(to_i2c_client(dev), tm); 208aa5bd7e9SDale Farnsworth } 209aa5bd7e9SDale Farnsworth 210aa5bd7e9SDale Farnsworth static int max6900_rtc_set_time(struct device *dev, struct rtc_time *tm) 211aa5bd7e9SDale Farnsworth { 212aa5bd7e9SDale Farnsworth return max6900_i2c_set_time(to_i2c_client(dev), tm); 213aa5bd7e9SDale Farnsworth } 214aa5bd7e9SDale Farnsworth 215*6fd5c03fSAlessandro Zummo static int max6900_remove(struct i2c_client *client) 216aa5bd7e9SDale Farnsworth { 217*6fd5c03fSAlessandro Zummo struct rtc_device *rtc = i2c_get_clientdata(client); 218aa5bd7e9SDale Farnsworth 219aa5bd7e9SDale Farnsworth if (rtc) 220aa5bd7e9SDale Farnsworth rtc_device_unregister(rtc); 221aa5bd7e9SDale Farnsworth 222*6fd5c03fSAlessandro Zummo return 0; 223aa5bd7e9SDale Farnsworth } 224aa5bd7e9SDale Farnsworth 225aa5bd7e9SDale Farnsworth static const struct rtc_class_ops max6900_rtc_ops = { 226aa5bd7e9SDale Farnsworth .read_time = max6900_rtc_read_time, 227aa5bd7e9SDale Farnsworth .set_time = max6900_rtc_set_time, 228aa5bd7e9SDale Farnsworth }; 229aa5bd7e9SDale Farnsworth 230*6fd5c03fSAlessandro Zummo static int 231*6fd5c03fSAlessandro Zummo max6900_probe(struct i2c_client *client, const struct i2c_device_id *id) 232aa5bd7e9SDale Farnsworth { 233*6fd5c03fSAlessandro Zummo struct rtc_device *rtc; 234aa5bd7e9SDale Farnsworth 235*6fd5c03fSAlessandro Zummo if (!i2c_check_functionality(client->adapter, I2C_FUNC_I2C)) 236*6fd5c03fSAlessandro Zummo return -ENODEV; 237aa5bd7e9SDale Farnsworth 238*6fd5c03fSAlessandro Zummo dev_info(&client->dev, "chip found, driver version " DRV_VERSION "\n"); 239aa5bd7e9SDale Farnsworth 240aa5bd7e9SDale Farnsworth rtc = rtc_device_register(max6900_driver.driver.name, 241*6fd5c03fSAlessandro Zummo &client->dev, &max6900_rtc_ops, THIS_MODULE); 242*6fd5c03fSAlessandro Zummo if (IS_ERR(rtc)) 243*6fd5c03fSAlessandro Zummo return PTR_ERR(rtc); 244aa5bd7e9SDale Farnsworth 245aa5bd7e9SDale Farnsworth i2c_set_clientdata(client, rtc); 246aa5bd7e9SDale Farnsworth 247aa5bd7e9SDale Farnsworth return 0; 248aa5bd7e9SDale Farnsworth } 249aa5bd7e9SDale Farnsworth 250*6fd5c03fSAlessandro Zummo static struct i2c_driver max6900_driver = { 251*6fd5c03fSAlessandro Zummo .driver = { 252*6fd5c03fSAlessandro Zummo .name = "rtc-max6900", 253*6fd5c03fSAlessandro Zummo }, 254*6fd5c03fSAlessandro Zummo .probe = max6900_probe, 255*6fd5c03fSAlessandro Zummo .remove = max6900_remove, 256*6fd5c03fSAlessandro Zummo }; 257*6fd5c03fSAlessandro Zummo 258aa5bd7e9SDale Farnsworth static int __init max6900_init(void) 259aa5bd7e9SDale Farnsworth { 260aa5bd7e9SDale Farnsworth return i2c_add_driver(&max6900_driver); 261aa5bd7e9SDale Farnsworth } 262aa5bd7e9SDale Farnsworth 263aa5bd7e9SDale Farnsworth static void __exit max6900_exit(void) 264aa5bd7e9SDale Farnsworth { 265aa5bd7e9SDale Farnsworth i2c_del_driver(&max6900_driver); 266aa5bd7e9SDale Farnsworth } 267aa5bd7e9SDale Farnsworth 268aa5bd7e9SDale Farnsworth MODULE_DESCRIPTION("Maxim MAX6900 RTC driver"); 269*6fd5c03fSAlessandro Zummo MODULE_AUTHOR("Dale Farnsworth <dale@farnsworth.org>"); 270aa5bd7e9SDale Farnsworth MODULE_LICENSE("GPL"); 271aa5bd7e9SDale Farnsworth MODULE_VERSION(DRV_VERSION); 272aa5bd7e9SDale Farnsworth 273aa5bd7e9SDale Farnsworth module_init(max6900_init); 274aa5bd7e9SDale Farnsworth module_exit(max6900_exit); 275