mirror of
https://github.com/RT-Thread/rt-thread.git
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* [dd][rtc] set the RTC alarm thread stack size default. Signed-off-by: GuEe-GUI <2991707448@qq.com> * [dm][rtc] make Kconfig import for DM Signed-off-by: GuEe-GUI <2991707448@qq.com> * [dm][rtc] support DM API for RTC 1. rtc_dev_set_name for RTC device init the name auto. 2. rtc_wkalarm_to_timestamp and rtc_timestamp_to_wkalarm for rt_rtc_wkalarm/time_t convert. Signed-off-by: GuEe-GUI <2991707448@qq.com> * [dm][rtc] add new drivers 1. Dallas/Maxim DS1302 2. Dallas/Maxim DS1307/37/38/39/40, ST M41T11 3. Goldfish Real Time Clock 4. Haoyu Microelectronics HYM8563 5. NXP PCF8523 6. Philips PCF8563/Epson RTC8564 7. ARM PL031 8. Epson RX8010SJ Signed-off-by: GuEe-GUI <2991707448@qq.com> --------- Signed-off-by: GuEe-GUI <2991707448@qq.com>
674 lines
16 KiB
C
674 lines
16 KiB
C
/*
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* Copyright (c) 2006-2022, RT-Thread Development Team
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*
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* SPDX-License-Identifier: Apache-2.0
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*
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* Change Logs:
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* Date Author Notes
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* 2022-11-26 GuEe-GUI first version
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*/
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#include <rtthread.h>
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#include <rtdevice.h>
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#define DBG_TAG "rtc.pcf8563"
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#define DBG_LVL DBG_INFO
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#include <rtdbg.h>
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#include "rtc_dm.h"
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#define PCF8563_REG_ST1 0x00 /* status */
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#define PCF8563_REG_ST2 0x01
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#define PCF8563_BIT_AIE RT_BIT(1)
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#define PCF8563_BIT_AF RT_BIT(3)
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#define PCF8563_BITS_ST2_N (7 << 5)
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#define PCF8563_REG_SC 0x02 /* datetime */
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#define PCF8563_REG_MN 0x03
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#define PCF8563_REG_HR 0x04
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#define PCF8563_REG_DM 0x05
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#define PCF8563_REG_DW 0x06
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#define PCF8563_REG_MO 0x07
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#define PCF8563_REG_YR 0x08
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#define PCF8563_REG_AMN 0x09 /* alarm */
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#define PCF8563_REG_CLKO 0x0d /* clock out */
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#define PCF8563_REG_CLKO_FE 0x80 /* clock out enabled */
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#define PCF8563_REG_CLKO_F_MASK 0x03 /* frequenc mask */
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#define PCF8563_REG_CLKO_F_32768H 0x00
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#define PCF8563_REG_CLKO_F_1024HZ 0x01
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#define PCF8563_REG_CLKO_F_32HZ 0x02
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#define PCF8563_REG_CLKO_F_1HZ 0x03
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#define PCF8563_REG_TMRC 0x0e /* timer control */
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#define PCF8563_TMRC_ENABLE RT_BIT(7)
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#define PCF8563_TMRC_4096 0
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#define PCF8563_TMRC_64 1
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#define PCF8563_TMRC_1 2
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#define PCF8563_TMRC_1_60 3
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#define PCF8563_TMRC_MASK 3
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#define PCF8563_REG_TMR 0x0f /* timer */
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#define PCF8563_SC_LV 0x80 /* low voltage */
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#define PCF8563_MO_C 0x80 /* century */
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struct pcf8563_rtc
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{
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struct rt_device parent;
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struct rt_clk_node clkout_hw;
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struct rt_clk_cell cell;
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struct rt_clk_cell *cells[1];
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int irq;
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int c_polarity;
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struct rt_i2c_client *client;
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struct rt_thread *irq_thread;
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struct rt_rtc_wkalarm wkalarm;
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};
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#define raw_to_pcf8563_rtc(raw) rt_container_of(raw, struct pcf8563_rtc, parent)
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#define raw_to_pcf8563_clkout(raw) rt_container_of(raw, struct pcf8563_rtc, clkout_hw)
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static rt_err_t pcf8563_read_block_data(struct pcf8563_rtc *pcf8563,
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rt_uint8_t reg, rt_uint8_t length, rt_uint8_t *buf)
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{
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rt_int32_t res;
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struct rt_i2c_msg msg[2];
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struct rt_i2c_client *client = pcf8563->client;
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msg[0].buf = ®
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msg[0].addr = client->client_addr;
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msg[0].len = 1;
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msg[0].flags = RT_I2C_WR;
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msg[1].buf = buf;
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msg[1].addr = client->client_addr;
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msg[1].len = length;
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msg[1].flags = RT_I2C_RD;
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res = rt_i2c_transfer(client->bus, msg, 2);
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return res > 0 ? RT_EOK : res;
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}
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static rt_err_t pcf8563_write_block_data(struct pcf8563_rtc *pcf8563,
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rt_uint8_t reg, rt_uint8_t length, rt_uint8_t *buf)
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{
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rt_int32_t res;
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struct rt_i2c_client *client = pcf8563->client;
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for (int i = 0; i < length; i++)
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{
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rt_uint8_t data[2] = { reg + i, buf[i] };
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res = rt_i2c_master_send(client->bus, client->client_addr,
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RT_I2C_WR, data, sizeof(data));
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if (res != sizeof(data))
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{
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return -RT_EIO;
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}
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}
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return RT_EOK;
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}
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static rt_err_t pcf8563_set_alarm_mode(struct pcf8563_rtc *pcf8563, rt_bool_t on)
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{
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rt_err_t err;
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rt_uint8_t buf;
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err = pcf8563_read_block_data(pcf8563, PCF8563_REG_ST2, 1, &buf);
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if (err)
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{
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return err;
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}
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if (on)
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{
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buf |= PCF8563_BIT_AIE;
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}
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else
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{
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buf &= ~PCF8563_BIT_AIE;
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}
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buf &= ~(PCF8563_BIT_AF | PCF8563_BITS_ST2_N);
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err = pcf8563_write_block_data(pcf8563, PCF8563_REG_ST2, 1, &buf);
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if (err)
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{
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LOG_E("Write %s error", "PCF8563_REG_ST2");
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return -RT_EIO;
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}
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return RT_EOK;
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}
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static rt_err_t pcf8563_get_alarm_mode(struct pcf8563_rtc *pcf8563,
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rt_uint8_t *en, rt_uint8_t *pen)
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{
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rt_err_t err;
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rt_uint8_t buf;
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err = pcf8563_read_block_data(pcf8563, PCF8563_REG_ST2, 1, &buf);
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if (err)
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{
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return err;
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}
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if (en)
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{
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*en = !!(buf & PCF8563_BIT_AIE);
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}
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if (pen)
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{
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*pen = !!(buf & PCF8563_BIT_AF);
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}
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return RT_EOK;
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}
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static int pcf8563_rtc_read_time(struct pcf8563_rtc *pcf8563, time_t *sec)
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{
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rt_err_t err;
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struct tm tm;
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rt_uint8_t buf[9];
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err = pcf8563_read_block_data(pcf8563, PCF8563_REG_ST1, 9, buf);
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if (err)
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{
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return err;
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}
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if (buf[PCF8563_REG_SC] & PCF8563_SC_LV)
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{
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LOG_E("Low voltage detected, date/time is not reliable");
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return -RT_EINVAL;
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}
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tm.tm_sec = rt_bcd2bin(buf[PCF8563_REG_SC] & 0x7f);
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tm.tm_min = rt_bcd2bin(buf[PCF8563_REG_MN] & 0x7f);
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tm.tm_hour = rt_bcd2bin(buf[PCF8563_REG_HR] & 0x3f); /* rtc hr 0-23 */
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tm.tm_mday = rt_bcd2bin(buf[PCF8563_REG_DM] & 0x3f);
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tm.tm_wday = buf[PCF8563_REG_DW] & 0x07;
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tm.tm_mon = rt_bcd2bin(buf[PCF8563_REG_MO] & 0x1f) - 1; /* rtc mn 1-12 */
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tm.tm_year = rt_bcd2bin(buf[PCF8563_REG_YR]) + 100;
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/* detect the polarity heuristically. see note above. */
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pcf8563->c_polarity = (buf[PCF8563_REG_MO] & PCF8563_MO_C) ?
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(tm.tm_year >= 100) : (tm.tm_year < 100);
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*sec = timegm(&tm);
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return RT_EOK;
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}
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static int pcf8563_rtc_set_time(struct pcf8563_rtc *pcf8563, time_t *sec)
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{
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struct tm *tm;
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rt_uint8_t buf[9];
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tm = localtime(sec);
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/* hours, minutes and seconds */
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buf[PCF8563_REG_SC] = rt_bin2bcd(tm->tm_sec);
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buf[PCF8563_REG_MN] = rt_bin2bcd(tm->tm_min);
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buf[PCF8563_REG_HR] = rt_bin2bcd(tm->tm_hour);
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buf[PCF8563_REG_DM] = rt_bin2bcd(tm->tm_mday);
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/* month, 1 - 12 */
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buf[PCF8563_REG_MO] = rt_bin2bcd(tm->tm_mon + 1);
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/* year and century */
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buf[PCF8563_REG_YR] = rt_bin2bcd(tm->tm_year - 100);
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if (pcf8563->c_polarity ? (tm->tm_year >= 100) : (tm->tm_year < 100))
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{
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buf[PCF8563_REG_MO] |= PCF8563_MO_C;
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}
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buf[PCF8563_REG_DW] = tm->tm_wday & 0x07;
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return pcf8563_write_block_data(pcf8563, PCF8563_REG_SC,
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9 - PCF8563_REG_SC, buf + PCF8563_REG_SC);
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}
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static int pcf8563_rtc_read_alarm(struct pcf8563_rtc *pcf8563,
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struct rt_rtc_wkalarm *alarm)
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{
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rt_err_t err;
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rt_uint8_t pending, buf[4];
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err = pcf8563_read_block_data(pcf8563, PCF8563_REG_AMN, 4, buf);
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if (err)
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{
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return err;
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}
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alarm->tm_sec = 0;
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alarm->tm_min = rt_bcd2bin(buf[0] & 0x7f);
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alarm->tm_hour = rt_bcd2bin(buf[1] & 0x3f);
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alarm->tm_mday = rt_bcd2bin(buf[2] & 0x3f);
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/* alarm->tm_wday = rt_bcd2bin(buf[3] & 0x7); */
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return pcf8563_get_alarm_mode(pcf8563, (rt_uint8_t *)&alarm->enable, &pending);
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}
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static int pcf8563_rtc_set_alarm(struct pcf8563_rtc *pcf8563,
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struct rt_rtc_wkalarm *alarm)
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{
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rt_err_t err;
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rt_uint8_t buf[4];
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struct rt_rtc_wkalarm *wkalarm = &pcf8563->wkalarm;
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buf[0] = rt_bin2bcd(alarm->tm_min);
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buf[1] = rt_bin2bcd(alarm->tm_hour);
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buf[2] = rt_bin2bcd(alarm->tm_mday);
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buf[3] = 0 & 0x07; /* alarm->tm_wday */
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err = pcf8563_write_block_data(pcf8563, PCF8563_REG_AMN, 4, buf);
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if (err)
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{
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return err;
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}
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err = pcf8563_set_alarm_mode(pcf8563, alarm->enable);
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if (!err)
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{
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wkalarm->enable = alarm->enable;
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wkalarm->tm_hour = alarm->tm_hour;
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wkalarm->tm_min = alarm->tm_min;
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wkalarm->tm_sec = alarm->tm_sec;
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}
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return err;
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}
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static rt_err_t pcf8563_rtc_control(rt_device_t dev, int cmd, void *args)
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{
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rt_err_t err = RT_EOK;
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struct pcf8563_rtc *pcf8563 = raw_to_pcf8563_rtc(dev);
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if (!args)
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{
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return -RT_EINVAL;
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}
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switch (cmd)
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{
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case RT_DEVICE_CTRL_RTC_GET_TIME:
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err = pcf8563_rtc_read_time(pcf8563, args);
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break;
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case RT_DEVICE_CTRL_RTC_SET_TIME:
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err = pcf8563_rtc_set_time(pcf8563, args);
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break;
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case RT_DEVICE_CTRL_RTC_GET_TIMEVAL:
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err = pcf8563_rtc_read_time(pcf8563, (time_t *)&((struct timeval *)args)->tv_sec);
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break;
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case RT_DEVICE_CTRL_RTC_SET_TIMEVAL:
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err = pcf8563_rtc_set_time(pcf8563, (time_t *)&((struct timeval *)args)->tv_sec);
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break;
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case RT_DEVICE_CTRL_RTC_GET_ALARM:
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err = pcf8563_rtc_read_alarm(pcf8563, args);
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break;
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case RT_DEVICE_CTRL_RTC_SET_ALARM:
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err = pcf8563_rtc_set_alarm(pcf8563, args);
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break;
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default:
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err = -RT_EINVAL;
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break;
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}
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return err;
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}
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#ifdef RT_USING_DEVICE_OPS
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const static struct rt_device_ops pcf8563_rtc_ops =
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{
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.control = pcf8563_rtc_control,
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};
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#endif
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static void pcf8563_rtc_thread_isr(void *param)
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{
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rt_err_t err;
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rt_uint8_t pending;
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struct pcf8563_rtc *pcf8563 = param;
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while (RT_TRUE)
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{
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rt_thread_suspend(pcf8563->irq_thread);
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rt_schedule();
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err = pcf8563_get_alarm_mode(pcf8563, NULL, &pending);
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if (err)
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{
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continue;
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}
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if (pending)
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{
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rt_alarm_update(&pcf8563->parent, 1);
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pcf8563_set_alarm_mode(pcf8563, 1);
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}
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}
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}
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static void pcf8563_rtc_isr(int irqno, void *param)
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{
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struct pcf8563_rtc *pcf8563 = param;
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rt_thread_resume(pcf8563->irq_thread);
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}
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static const int clkout_rates[] =
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{
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32768, 1024, 32, 1,
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};
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static rt_err_t pcf8563_clkout_control(struct pcf8563_rtc *pcf8563, rt_bool_t enable)
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{
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rt_err_t err;
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rt_uint8_t buf;
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if ((err = pcf8563_read_block_data(pcf8563, PCF8563_REG_CLKO, 1, &buf)))
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{
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return err;
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}
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if (enable)
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{
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buf |= PCF8563_REG_CLKO_FE;
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}
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else
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{
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buf &= ~PCF8563_REG_CLKO_FE;
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}
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return pcf8563_write_block_data(pcf8563, PCF8563_REG_CLKO, 1, &buf);
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}
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static rt_err_t pcf8563_clkout_prepare(struct rt_clk_cell *cell)
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{
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struct pcf8563_rtc *pcf8563 = raw_to_pcf8563_clkout(cell->clk_np);
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return pcf8563_clkout_control(pcf8563, RT_TRUE);
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}
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static void pcf8563_clkout_unprepare(struct rt_clk_cell *cell)
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{
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struct pcf8563_rtc *pcf8563 = raw_to_pcf8563_clkout(cell->clk_np);
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pcf8563_clkout_control(pcf8563, RT_FALSE);
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}
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static rt_bool_t pcf8563_clkout_is_prepared(struct rt_clk_cell *cell)
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{
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rt_uint8_t buf;
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struct pcf8563_rtc *pcf8563 = raw_to_pcf8563_clkout(cell->clk_np);
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if (pcf8563_read_block_data(pcf8563, PCF8563_REG_CLKO, 1, &buf))
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{
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return RT_FALSE;
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}
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return !!(buf & PCF8563_REG_CLKO_FE);
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}
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static rt_ubase_t pcf8563_clkout_recalc_rate(struct rt_clk_cell *cell, rt_ubase_t parent_rate)
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{
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rt_err_t err;
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rt_uint8_t buf;
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struct pcf8563_rtc *pcf8563 = raw_to_pcf8563_clkout(cell->clk_np);
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err = pcf8563_read_block_data(pcf8563, PCF8563_REG_CLKO, 1, &buf);
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if (err)
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{
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return err;
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}
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buf &= PCF8563_REG_CLKO_F_MASK;
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return clkout_rates[buf];
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}
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static rt_base_t pcf8563_clkout_round_rate(struct rt_clk_cell *cell, rt_ubase_t drate,
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rt_ubase_t *prate)
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{
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for (int i = 0; i < RT_ARRAY_SIZE(clkout_rates); ++i)
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{
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if (clkout_rates[i] <= drate)
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{
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return clkout_rates[i];
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}
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}
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return 0;
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}
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static rt_err_t pcf8563_clkout_set_rate(struct rt_clk_cell *cell, rt_ubase_t rate,
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rt_ubase_t parent_rate)
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{
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rt_err_t err;
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|
rt_uint8_t buf;
|
|
struct pcf8563_rtc *pcf8563 = raw_to_pcf8563_clkout(cell->clk_np);
|
|
|
|
err = pcf8563_read_block_data(pcf8563, PCF8563_REG_CLKO, 1, &buf);
|
|
|
|
if (err)
|
|
{
|
|
return err;
|
|
}
|
|
|
|
for (int i = 0; i < RT_ARRAY_SIZE(clkout_rates); ++i)
|
|
{
|
|
if (clkout_rates[i] == rate)
|
|
{
|
|
buf &= ~PCF8563_REG_CLKO_F_MASK;
|
|
buf |= i;
|
|
|
|
return pcf8563_write_block_data(pcf8563, PCF8563_REG_CLKO, 1, &buf);
|
|
}
|
|
}
|
|
|
|
|
|
return -RT_EINVAL;
|
|
}
|
|
|
|
static const struct rt_clk_ops pcf8563_clkout_ops =
|
|
{
|
|
.prepare = pcf8563_clkout_prepare,
|
|
.unprepare = pcf8563_clkout_unprepare,
|
|
.is_prepared = pcf8563_clkout_is_prepared,
|
|
.recalc_rate = pcf8563_clkout_recalc_rate,
|
|
.round_rate = pcf8563_clkout_round_rate,
|
|
.set_rate = pcf8563_clkout_set_rate,
|
|
};
|
|
|
|
static void pcf8563_clkout_register_clk(struct pcf8563_rtc *pcf8563, struct rt_device *dev)
|
|
{
|
|
rt_uint8_t buf = 0;
|
|
|
|
/* Disable the clkout output */
|
|
if (pcf8563_write_block_data(pcf8563, PCF8563_REG_CLKO, 1, &buf))
|
|
{
|
|
return;
|
|
}
|
|
|
|
pcf8563->cells[0] = &pcf8563->cell;
|
|
pcf8563->cell.name = "pcf8563-clkout";
|
|
pcf8563->cell.ops = &pcf8563_clkout_ops;
|
|
rt_dm_dev_prop_read_string(dev, "clock-output-names", &pcf8563->cell.name);
|
|
|
|
pcf8563->clkout_hw.dev = dev;
|
|
pcf8563->clkout_hw.cells_nr = 1;
|
|
pcf8563->clkout_hw.cells = pcf8563->cells;
|
|
|
|
if (rt_clk_register(&pcf8563->clkout_hw))
|
|
{
|
|
return;
|
|
}
|
|
}
|
|
|
|
static rt_err_t pcf8563_rtc_probe(struct rt_i2c_client *client)
|
|
{
|
|
rt_err_t err;
|
|
rt_uint8_t buf;
|
|
const char *dev_name;
|
|
struct rt_device *dev = &client->parent;
|
|
struct pcf8563_rtc *pcf8563 = rt_calloc(1, sizeof(*pcf8563));
|
|
|
|
if (!pcf8563)
|
|
{
|
|
return -RT_ENOMEM;
|
|
}
|
|
|
|
pcf8563->irq = rt_dm_dev_get_irq(dev, 0);
|
|
pcf8563->client = client;
|
|
|
|
/* Set timer to lowest frequency to save power (ref Haoyu datasheet) */
|
|
buf = PCF8563_TMRC_1_60;
|
|
|
|
if ((err = pcf8563_write_block_data(pcf8563, PCF8563_REG_TMRC, 1, &buf)))
|
|
{
|
|
LOG_E("Write %s error", "PCF8563_REG_TMRC");
|
|
goto _fail;
|
|
}
|
|
|
|
/* Clear flags and disable interrupts */
|
|
buf = 0;
|
|
|
|
if ((err = pcf8563_write_block_data(pcf8563, PCF8563_REG_ST2, 1, &buf)))
|
|
{
|
|
LOG_E("Write %s error", "PCF8563_REG_ST2");
|
|
goto _fail;
|
|
}
|
|
|
|
if (pcf8563->irq >= 0)
|
|
{
|
|
pcf8563->irq_thread = rt_thread_create("rtc-pcf8563", &pcf8563_rtc_thread_isr,
|
|
pcf8563, DM_THREAD_STACK_SIZE, RT_THREAD_PRIORITY_MAX / 2, 10);
|
|
|
|
if (!pcf8563->irq_thread)
|
|
{
|
|
err = -RT_ERROR;
|
|
LOG_E("Create RTC IRQ thread fail");
|
|
goto _fail;
|
|
}
|
|
|
|
rt_thread_startup(pcf8563->irq_thread);
|
|
|
|
rt_hw_interrupt_install(pcf8563->irq, pcf8563_rtc_isr, pcf8563, "rtc-pcf8563");
|
|
rt_hw_interrupt_umask(pcf8563->irq);
|
|
}
|
|
|
|
dev->user_data = pcf8563;
|
|
|
|
pcf8563->parent.type = RT_Device_Class_RTC;
|
|
#ifdef RT_USING_DEVICE_OPS
|
|
pcf8563->parent.ops = &pcf8563_rtc_ops;
|
|
#else
|
|
pcf8563->parent.control = pcf8563_rtc_control;
|
|
#endif
|
|
|
|
rtc_dev_set_name(&pcf8563->parent);
|
|
dev_name = rt_dm_dev_get_name(&pcf8563->parent);
|
|
rt_device_register(&pcf8563->parent, dev_name, RT_DEVICE_FLAG_RDWR);
|
|
|
|
pcf8563_clkout_register_clk(pcf8563, dev);
|
|
|
|
return RT_EOK;
|
|
|
|
_fail:
|
|
if (pcf8563->irq_thread)
|
|
{
|
|
rt_thread_delete(pcf8563->irq_thread);
|
|
}
|
|
rt_free(pcf8563);
|
|
|
|
return err;
|
|
}
|
|
|
|
static rt_err_t pcf8563_rtc_remove(struct rt_i2c_client *client)
|
|
{
|
|
struct pcf8563_rtc *pcf8563 = client->parent.user_data;
|
|
|
|
rt_dm_dev_unbind_fwdata(&client->parent, RT_NULL);
|
|
|
|
if (pcf8563->irq >= 0)
|
|
{
|
|
if (pcf8563->wkalarm.enable)
|
|
{
|
|
pcf8563_set_alarm_mode(pcf8563, RT_FALSE);
|
|
}
|
|
|
|
rt_hw_interrupt_mask(pcf8563->irq);
|
|
rt_pic_detach_irq(pcf8563->irq, pcf8563);
|
|
|
|
rt_thread_delete(pcf8563->irq_thread);
|
|
}
|
|
|
|
if (pcf8563->cells[0])
|
|
{
|
|
rt_clk_unregister(&pcf8563->clkout_hw);
|
|
}
|
|
|
|
rt_device_unregister(&pcf8563->parent);
|
|
|
|
rt_free(pcf8563);
|
|
|
|
return RT_EOK;
|
|
}
|
|
|
|
static const struct rt_i2c_device_id pcf8563_rtc_ids[] =
|
|
{
|
|
{ .name = "pcf8563" },
|
|
{ .name = "rtc8564" },
|
|
{ .name = "pca8565" },
|
|
{ /* sentinel */ },
|
|
};
|
|
|
|
static const struct rt_ofw_node_id pcf8563_rtc_ofw_ids[] =
|
|
{
|
|
{ .compatible = "nxp,pcf8563" },
|
|
{ .compatible = "epson,rtc8564" },
|
|
{ .compatible = "microcrystal,rv8564" },
|
|
{ .compatible = "nxp,pca8565" },
|
|
{ /* sentinel */ },
|
|
};
|
|
|
|
static struct rt_i2c_driver pcf8563_rtc_driver =
|
|
{
|
|
.ids = pcf8563_rtc_ids,
|
|
.ofw_ids = pcf8563_rtc_ofw_ids,
|
|
|
|
.probe = pcf8563_rtc_probe,
|
|
.remove = pcf8563_rtc_remove,
|
|
};
|
|
RT_I2C_DRIVER_EXPORT(pcf8563_rtc_driver);
|