diff options
Diffstat (limited to 'drivers/rtc/rtc-pcf2123.c')
-rw-r--r-- | drivers/rtc/rtc-pcf2123.c | 271 |
1 files changed, 194 insertions, 77 deletions
diff --git a/drivers/rtc/rtc-pcf2123.c b/drivers/rtc/rtc-pcf2123.c index ea8a31c91641..da27738b1242 100644 --- a/drivers/rtc/rtc-pcf2123.c +++ b/drivers/rtc/rtc-pcf2123.c @@ -48,6 +48,7 @@ #define DRV_VERSION "0.6" +/* REGISTERS */ #define PCF2123_REG_CTRL1 (0x00) /* Control Register 1 */ #define PCF2123_REG_CTRL2 (0x01) /* Control Register 2 */ #define PCF2123_REG_SC (0x02) /* datetime */ @@ -57,10 +58,54 @@ #define PCF2123_REG_DW (0x06) #define PCF2123_REG_MO (0x07) #define PCF2123_REG_YR (0x08) +#define PCF2123_REG_ALRM_MN (0x09) /* Alarm Registers */ +#define PCF2123_REG_ALRM_HR (0x0a) +#define PCF2123_REG_ALRM_DM (0x0b) +#define PCF2123_REG_ALRM_DW (0x0c) +#define PCF2123_REG_OFFSET (0x0d) /* Clock Rate Offset Register */ +#define PCF2123_REG_TMR_CLKOUT (0x0e) /* Timer Registers */ +#define PCF2123_REG_CTDWN_TMR (0x0f) + +/* PCF2123_REG_CTRL1 BITS */ +#define CTRL1_CLEAR (0) /* Clear */ +#define CTRL1_CORR_INT BIT(1) /* Correction irq enable */ +#define CTRL1_12_HOUR BIT(2) /* 12 hour time */ +#define CTRL1_SW_RESET (BIT(3) | BIT(4) | BIT(6)) /* Software reset */ +#define CTRL1_STOP BIT(5) /* Stop the clock */ +#define CTRL1_EXT_TEST BIT(7) /* External clock test mode */ + +/* PCF2123_REG_CTRL2 BITS */ +#define CTRL2_TIE BIT(0) /* Countdown timer irq enable */ +#define CTRL2_AIE BIT(1) /* Alarm irq enable */ +#define CTRL2_TF BIT(2) /* Countdown timer flag */ +#define CTRL2_AF BIT(3) /* Alarm flag */ +#define CTRL2_TI_TP BIT(4) /* Irq pin generates pulse */ +#define CTRL2_MSF BIT(5) /* Minute or second irq flag */ +#define CTRL2_SI BIT(6) /* Second irq enable */ +#define CTRL2_MI BIT(7) /* Minute irq enable */ + +/* PCF2123_REG_SC BITS */ +#define OSC_HAS_STOPPED BIT(7) /* Clock has been stopped */ + +/* PCF2123_REG_ALRM_XX BITS */ +#define ALRM_ENABLE BIT(7) /* MN, HR, DM, or DW alarm enable */ + +/* PCF2123_REG_TMR_CLKOUT BITS */ +#define CD_TMR_4096KHZ (0) /* 4096 KHz countdown timer */ +#define CD_TMR_64HZ (1) /* 64 Hz countdown timer */ +#define CD_TMR_1HZ (2) /* 1 Hz countdown timer */ +#define CD_TMR_60th_HZ (3) /* 60th Hz countdown timer */ +#define CD_TMR_TE BIT(3) /* Countdown timer enable */ + +/* PCF2123_REG_OFFSET BITS */ +#define OFFSET_SIGN_BIT BIT(6) /* 2's complement sign bit */ +#define OFFSET_COARSE BIT(7) /* Coarse mode offset */ +#define OFFSET_STEP (2170) /* Offset step in parts per billion */ + +/* READ/WRITE ADDRESS BITS */ +#define PCF2123_WRITE BIT(4) +#define PCF2123_READ (BIT(4) | BIT(7)) -#define PCF2123_SUBADDR (1 << 4) -#define PCF2123_WRITE ((0 << 7) | PCF2123_SUBADDR) -#define PCF2123_READ ((1 << 7) | PCF2123_SUBADDR) static struct spi_driver pcf2123_driver; @@ -84,12 +129,44 @@ static inline void pcf2123_delay_trec(void) ndelay(30); } +static int pcf2123_read(struct device *dev, u8 reg, u8 *rxbuf, size_t size) +{ + struct spi_device *spi = to_spi_device(dev); + int ret; + + reg |= PCF2123_READ; + ret = spi_write_then_read(spi, ®, 1, rxbuf, size); + pcf2123_delay_trec(); + + return ret; +} + +static int pcf2123_write(struct device *dev, u8 *txbuf, size_t size) +{ + struct spi_device *spi = to_spi_device(dev); + int ret; + + txbuf[0] |= PCF2123_WRITE; + ret = spi_write(spi, txbuf, size); + pcf2123_delay_trec(); + + return ret; +} + +static int pcf2123_write_reg(struct device *dev, u8 reg, u8 val) +{ + u8 txbuf[2]; + + txbuf[0] = reg; + txbuf[1] = val; + return pcf2123_write(dev, txbuf, sizeof(txbuf)); +} + static ssize_t pcf2123_show(struct device *dev, struct device_attribute *attr, char *buffer) { - struct spi_device *spi = to_spi_device(dev); struct pcf2123_sysfs_reg *r; - u8 txbuf[1], rxbuf[1]; + u8 rxbuf[1]; unsigned long reg; int ret; @@ -99,19 +176,16 @@ static ssize_t pcf2123_show(struct device *dev, struct device_attribute *attr, if (ret) return ret; - txbuf[0] = PCF2123_READ | reg; - ret = spi_write_then_read(spi, txbuf, 1, rxbuf, 1); + ret = pcf2123_read(dev, reg, rxbuf, 1); if (ret < 0) return -EIO; - pcf2123_delay_trec(); + return sprintf(buffer, "0x%x\n", rxbuf[0]); } static ssize_t pcf2123_store(struct device *dev, struct device_attribute *attr, const char *buffer, size_t count) { - struct spi_device *spi = to_spi_device(dev); struct pcf2123_sysfs_reg *r; - u8 txbuf[2]; unsigned long reg; unsigned long val; @@ -127,27 +201,78 @@ static ssize_t pcf2123_store(struct device *dev, struct device_attribute *attr, if (ret) return ret; - txbuf[0] = PCF2123_WRITE | reg; - txbuf[1] = val; - ret = spi_write(spi, txbuf, sizeof(txbuf)); + pcf2123_write_reg(dev, reg, val); if (ret < 0) return -EIO; - pcf2123_delay_trec(); return count; } +static int pcf2123_read_offset(struct device *dev, long *offset) +{ + int ret; + s8 reg; + + ret = pcf2123_read(dev, PCF2123_REG_OFFSET, ®, 1); + if (ret < 0) + return ret; + + if (reg & OFFSET_COARSE) + reg <<= 1; /* multiply by 2 and sign extend */ + else + reg |= (reg & OFFSET_SIGN_BIT) << 1; /* sign extend only */ + + *offset = ((long)reg) * OFFSET_STEP; + + return 0; +} + +/* + * The offset register is a 7 bit signed value with a coarse bit in bit 7. + * The main difference between the two is normal offset adjusts the first + * second of n minutes every other hour, with 61, 62 and 63 being shoved + * into the 60th minute. + * The coarse adjustment does the same, but every hour. + * the two overlap, with every even normal offset value corresponding + * to a coarse offset. Based on this algorithm, it seems that despite the + * name, coarse offset is a better fit for overlapping values. + */ +static int pcf2123_set_offset(struct device *dev, long offset) +{ + s8 reg; + + if (offset > OFFSET_STEP * 127) + reg = 127; + else if (offset < OFFSET_STEP * -128) + reg = -128; + else + reg = (s8)((offset + (OFFSET_STEP >> 1)) / OFFSET_STEP); + + /* choose fine offset only for odd values in the normal range */ + if (reg & 1 && reg <= 63 && reg >= -64) { + /* Normal offset. Clear the coarse bit */ + reg &= ~OFFSET_COARSE; + } else { + /* Coarse offset. Divide by 2 and set the coarse bit */ + reg >>= 1; + reg |= OFFSET_COARSE; + } + + return pcf2123_write_reg(dev, PCF2123_REG_OFFSET, reg); +} + static int pcf2123_rtc_read_time(struct device *dev, struct rtc_time *tm) { - struct spi_device *spi = to_spi_device(dev); - u8 txbuf[1], rxbuf[7]; + u8 rxbuf[7]; int ret; - txbuf[0] = PCF2123_READ | PCF2123_REG_SC; - ret = spi_write_then_read(spi, txbuf, sizeof(txbuf), - rxbuf, sizeof(rxbuf)); + ret = pcf2123_read(dev, PCF2123_REG_SC, rxbuf, sizeof(rxbuf)); if (ret < 0) return ret; - pcf2123_delay_trec(); + + if (rxbuf[0] & OSC_HAS_STOPPED) { + dev_info(dev, "clock was stopped. Time is not valid\n"); + return -EINVAL; + } tm->tm_sec = bcd2bin(rxbuf[0] & 0x7F); tm->tm_min = bcd2bin(rxbuf[1] & 0x7F); @@ -170,7 +295,6 @@ static int pcf2123_rtc_read_time(struct device *dev, struct rtc_time *tm) static int pcf2123_rtc_set_time(struct device *dev, struct rtc_time *tm) { - struct spi_device *spi = to_spi_device(dev); u8 txbuf[8]; int ret; @@ -181,15 +305,12 @@ static int pcf2123_rtc_set_time(struct device *dev, struct rtc_time *tm) tm->tm_mday, tm->tm_mon, tm->tm_year, tm->tm_wday); /* Stop the counter first */ - txbuf[0] = PCF2123_WRITE | PCF2123_REG_CTRL1; - txbuf[1] = 0x20; - ret = spi_write(spi, txbuf, 2); + ret = pcf2123_write_reg(dev, PCF2123_REG_CTRL1, CTRL1_STOP); if (ret < 0) return ret; - pcf2123_delay_trec(); /* Set the new time */ - txbuf[0] = PCF2123_WRITE | PCF2123_REG_SC; + txbuf[0] = PCF2123_REG_SC; txbuf[1] = bin2bcd(tm->tm_sec & 0x7F); txbuf[2] = bin2bcd(tm->tm_min & 0x7F); txbuf[3] = bin2bcd(tm->tm_hour & 0x3F); @@ -198,18 +319,48 @@ static int pcf2123_rtc_set_time(struct device *dev, struct rtc_time *tm) txbuf[6] = bin2bcd((tm->tm_mon + 1) & 0x1F); /* rtc mn 1-12 */ txbuf[7] = bin2bcd(tm->tm_year < 100 ? tm->tm_year : tm->tm_year - 100); - ret = spi_write(spi, txbuf, sizeof(txbuf)); + ret = pcf2123_write(dev, txbuf, sizeof(txbuf)); if (ret < 0) return ret; - pcf2123_delay_trec(); /* Start the counter */ - txbuf[0] = PCF2123_WRITE | PCF2123_REG_CTRL1; - txbuf[1] = 0x00; - ret = spi_write(spi, txbuf, 2); + ret = pcf2123_write_reg(dev, PCF2123_REG_CTRL1, CTRL1_CLEAR); + if (ret < 0) + return ret; + + return 0; +} + +static int pcf2123_reset(struct device *dev) +{ + int ret; + u8 rxbuf[2]; + + ret = pcf2123_write_reg(dev, PCF2123_REG_CTRL1, CTRL1_SW_RESET); + if (ret < 0) + return ret; + + /* Stop the counter */ + dev_dbg(dev, "stopping RTC\n"); + ret = pcf2123_write_reg(dev, PCF2123_REG_CTRL1, CTRL1_STOP); + if (ret < 0) + return ret; + + /* See if the counter was actually stopped */ + dev_dbg(dev, "checking for presence of RTC\n"); + ret = pcf2123_read(dev, PCF2123_REG_CTRL1, rxbuf, sizeof(rxbuf)); + if (ret < 0) + return ret; + + dev_dbg(dev, "received data from RTC (0x%02X 0x%02X)\n", + rxbuf[0], rxbuf[1]); + if (!(rxbuf[0] & CTRL1_STOP)) + return -ENODEV; + + /* Start the counter */ + ret = pcf2123_write_reg(dev, PCF2123_REG_CTRL1, CTRL1_CLEAR); if (ret < 0) return ret; - pcf2123_delay_trec(); return 0; } @@ -217,13 +368,16 @@ static int pcf2123_rtc_set_time(struct device *dev, struct rtc_time *tm) static const struct rtc_class_ops pcf2123_rtc_ops = { .read_time = pcf2123_rtc_read_time, .set_time = pcf2123_rtc_set_time, + .read_offset = pcf2123_read_offset, + .set_offset = pcf2123_set_offset, + }; static int pcf2123_probe(struct spi_device *spi) { struct rtc_device *rtc; + struct rtc_time tm; struct pcf2123_plat_data *pdata; - u8 txbuf[2], rxbuf[2]; int ret, i; pdata = devm_kzalloc(&spi->dev, sizeof(struct pcf2123_plat_data), @@ -232,56 +386,19 @@ static int pcf2123_probe(struct spi_device *spi) return -ENOMEM; spi->dev.platform_data = pdata; - /* Send a software reset command */ - txbuf[0] = PCF2123_WRITE | PCF2123_REG_CTRL1; - txbuf[1] = 0x58; - dev_dbg(&spi->dev, "resetting RTC (0x%02X 0x%02X)\n", - txbuf[0], txbuf[1]); - ret = spi_write(spi, txbuf, 2 * sizeof(u8)); - if (ret < 0) - goto kfree_exit; - pcf2123_delay_trec(); - - /* Stop the counter */ - txbuf[0] = PCF2123_WRITE | PCF2123_REG_CTRL1; - txbuf[1] = 0x20; - dev_dbg(&spi->dev, "stopping RTC (0x%02X 0x%02X)\n", - txbuf[0], txbuf[1]); - ret = spi_write(spi, txbuf, 2 * sizeof(u8)); - if (ret < 0) - goto kfree_exit; - pcf2123_delay_trec(); - - /* See if the counter was actually stopped */ - txbuf[0] = PCF2123_READ | PCF2123_REG_CTRL1; - dev_dbg(&spi->dev, "checking for presence of RTC (0x%02X)\n", - txbuf[0]); - ret = spi_write_then_read(spi, txbuf, 1 * sizeof(u8), - rxbuf, 2 * sizeof(u8)); - dev_dbg(&spi->dev, "received data from RTC (0x%02X 0x%02X)\n", - rxbuf[0], rxbuf[1]); - if (ret < 0) - goto kfree_exit; - pcf2123_delay_trec(); - - if (!(rxbuf[0] & 0x20)) { - dev_err(&spi->dev, "chip not found\n"); - ret = -ENODEV; - goto kfree_exit; + ret = pcf2123_rtc_read_time(&spi->dev, &tm); + if (ret < 0) { + ret = pcf2123_reset(&spi->dev); + if (ret < 0) { + dev_err(&spi->dev, "chip not found\n"); + goto kfree_exit; + } } dev_info(&spi->dev, "chip found, driver version " DRV_VERSION "\n"); dev_info(&spi->dev, "spiclk %u KHz.\n", (spi->max_speed_hz + 500) / 1000); - /* Start the counter */ - txbuf[0] = PCF2123_WRITE | PCF2123_REG_CTRL1; - txbuf[1] = 0x00; - ret = spi_write(spi, txbuf, sizeof(txbuf)); - if (ret < 0) - goto kfree_exit; - pcf2123_delay_trec(); - /* Finalize the initialization */ rtc = devm_rtc_device_register(&spi->dev, pcf2123_driver.driver.name, &pcf2123_rtc_ops, THIS_MODULE); |