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Raphael Assenat
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Linus Torvalds
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Jun 25, 2006
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--- | ||
refs/heads/master: 9be05b57bd9152b7c26b1599b87aeb42a102f0cf | ||
refs/heads/master: 362600fe60fd18a25b4de8ec544b9e24e77e1484 |
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/* drivers/rtc/rtc-v3020.c | ||
* | ||
* Copyright (C) 2006 8D Technologies inc. | ||
* Copyright (C) 2004 Compulab Ltd. | ||
* | ||
* This program is free software; you can redistribute it and/or modify | ||
* it under the terms of the GNU General Public License version 2 as | ||
* published by the Free Software Foundation. | ||
* | ||
* Driver for the V3020 RTC | ||
* | ||
* Changelog: | ||
* | ||
* 10-May-2006: Raphael Assenat <raph@8d.com> | ||
* - Converted to platform driver | ||
* - Use the generic rtc class | ||
* | ||
* ??-???-2004: Someone at Compulab | ||
* - Initial driver creation. | ||
* | ||
*/ | ||
#include <linux/platform_device.h> | ||
#include <linux/module.h> | ||
#include <linux/init.h> | ||
#include <linux/rtc.h> | ||
#include <linux/types.h> | ||
#include <linux/bcd.h> | ||
#include <linux/rtc-v3020.h> | ||
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#include <asm/io.h> | ||
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#undef DEBUG | ||
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struct v3020 { | ||
void __iomem *ioaddress; | ||
int leftshift; | ||
struct rtc_device *rtc; | ||
}; | ||
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static void v3020_set_reg(struct v3020 *chip, unsigned char address, | ||
unsigned char data) | ||
{ | ||
int i; | ||
unsigned char tmp; | ||
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tmp = address; | ||
for (i = 0; i < 4; i++) { | ||
writel((tmp & 1) << chip->leftshift, chip->ioaddress); | ||
tmp >>= 1; | ||
} | ||
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/* Commands dont have data */ | ||
if (!V3020_IS_COMMAND(address)) { | ||
for (i = 0; i < 8; i++) { | ||
writel((data & 1) << chip->leftshift, chip->ioaddress); | ||
data >>= 1; | ||
} | ||
} | ||
} | ||
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static unsigned char v3020_get_reg(struct v3020 *chip, unsigned char address) | ||
{ | ||
unsigned int data=0; | ||
int i; | ||
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for (i = 0; i < 4; i++) { | ||
writel((address & 1) << chip->leftshift, chip->ioaddress); | ||
address >>= 1; | ||
} | ||
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for (i = 0; i < 8; i++) { | ||
data >>= 1; | ||
if (readl(chip->ioaddress) & (1 << chip->leftshift)) | ||
data |= 0x80; | ||
} | ||
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return data; | ||
} | ||
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static int v3020_read_time(struct device *dev, struct rtc_time *dt) | ||
{ | ||
struct v3020 *chip = dev_get_drvdata(dev); | ||
int tmp; | ||
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/* Copy the current time to ram... */ | ||
v3020_set_reg(chip, V3020_CMD_CLOCK2RAM, 0); | ||
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/* ...and then read constant values. */ | ||
tmp = v3020_get_reg(chip, V3020_SECONDS); | ||
dt->tm_sec = BCD2BIN(tmp); | ||
tmp = v3020_get_reg(chip, V3020_MINUTES); | ||
dt->tm_min = BCD2BIN(tmp); | ||
tmp = v3020_get_reg(chip, V3020_HOURS); | ||
dt->tm_hour = BCD2BIN(tmp); | ||
tmp = v3020_get_reg(chip, V3020_MONTH_DAY); | ||
dt->tm_mday = BCD2BIN(tmp); | ||
tmp = v3020_get_reg(chip, V3020_MONTH); | ||
dt->tm_mon = BCD2BIN(tmp); | ||
tmp = v3020_get_reg(chip, V3020_WEEK_DAY); | ||
dt->tm_wday = BCD2BIN(tmp); | ||
tmp = v3020_get_reg(chip, V3020_YEAR); | ||
dt->tm_year = BCD2BIN(tmp)+100; | ||
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#ifdef DEBUG | ||
printk("\n%s : Read RTC values\n",__FUNCTION__); | ||
printk("tm_hour: %i\n",dt->tm_hour); | ||
printk("tm_min : %i\n",dt->tm_min); | ||
printk("tm_sec : %i\n",dt->tm_sec); | ||
printk("tm_year: %i\n",dt->tm_year); | ||
printk("tm_mon : %i\n",dt->tm_mon); | ||
printk("tm_mday: %i\n",dt->tm_mday); | ||
printk("tm_wday: %i\n",dt->tm_wday); | ||
#endif | ||
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return 0; | ||
} | ||
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static int v3020_set_time(struct device *dev, struct rtc_time *dt) | ||
{ | ||
struct v3020 *chip = dev_get_drvdata(dev); | ||
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#ifdef DEBUG | ||
printk("\n%s : Setting RTC values\n",__FUNCTION__); | ||
printk("tm_sec : %i\n",dt->tm_sec); | ||
printk("tm_min : %i\n",dt->tm_min); | ||
printk("tm_hour: %i\n",dt->tm_hour); | ||
printk("tm_mday: %i\n",dt->tm_mday); | ||
printk("tm_wday: %i\n",dt->tm_wday); | ||
printk("tm_year: %i\n",dt->tm_year); | ||
#endif | ||
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/* Write all the values to ram... */ | ||
v3020_set_reg(chip, V3020_SECONDS, BIN2BCD(dt->tm_sec)); | ||
v3020_set_reg(chip, V3020_MINUTES, BIN2BCD(dt->tm_min)); | ||
v3020_set_reg(chip, V3020_HOURS, BIN2BCD(dt->tm_hour)); | ||
v3020_set_reg(chip, V3020_MONTH_DAY, BIN2BCD(dt->tm_mday)); | ||
v3020_set_reg(chip, V3020_MONTH, BIN2BCD(dt->tm_mon)); | ||
v3020_set_reg(chip, V3020_WEEK_DAY, BIN2BCD(dt->tm_wday)); | ||
v3020_set_reg(chip, V3020_YEAR, BIN2BCD(dt->tm_year % 100)); | ||
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/* ...and set the clock. */ | ||
v3020_set_reg(chip, V3020_CMD_RAM2CLOCK, 0); | ||
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/* Compulab used this delay here. I dont know why, | ||
* the datasheet does not specify a delay. */ | ||
/*mdelay(5);*/ | ||
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return 0; | ||
} | ||
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static struct rtc_class_ops v3020_rtc_ops = { | ||
.read_time = v3020_read_time, | ||
.set_time = v3020_set_time, | ||
}; | ||
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static int rtc_probe(struct platform_device *pdev) | ||
{ | ||
struct v3020_platform_data *pdata = pdev->dev.platform_data; | ||
struct v3020 *chip; | ||
struct rtc_device *rtc; | ||
int retval = -EBUSY; | ||
int i; | ||
int temp; | ||
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if (pdev->num_resources != 1) | ||
return -EBUSY; | ||
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if (pdev->resource[0].flags != IORESOURCE_MEM) | ||
return -EBUSY; | ||
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if (pdev == NULL) | ||
return -EBUSY; | ||
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chip = kzalloc(sizeof *chip, GFP_KERNEL); | ||
if (!chip) | ||
return -ENOMEM; | ||
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chip->leftshift = pdata->leftshift; | ||
chip->ioaddress = ioremap(pdev->resource[0].start, 1); | ||
if (chip->ioaddress == NULL) | ||
goto err_chip; | ||
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/* Make sure the v3020 expects a communication cycle | ||
* by reading 8 times */ | ||
for (i = 0; i < 8; i++) | ||
temp = readl(chip->ioaddress); | ||
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/* Test chip by doing a write/read sequence | ||
* to the chip ram */ | ||
v3020_set_reg(chip, V3020_SECONDS, 0x33); | ||
if(v3020_get_reg(chip, V3020_SECONDS) != 0x33) { | ||
retval = -ENODEV; | ||
goto err_io; | ||
} | ||
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/* Make sure frequency measurment mode, test modes, and lock | ||
* are all disabled */ | ||
v3020_set_reg(chip, V3020_STATUS_0, 0x0); | ||
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dev_info(&pdev->dev, "Chip available at physical address 0x%p," | ||
"data connected to D%d\n", | ||
(void*)pdev->resource[0].start, | ||
chip->leftshift); | ||
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platform_set_drvdata(pdev, chip); | ||
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rtc = rtc_device_register("v3020", | ||
&pdev->dev, &v3020_rtc_ops, THIS_MODULE); | ||
if (IS_ERR(rtc)) { | ||
retval = PTR_ERR(rtc); | ||
goto err_io; | ||
} | ||
chip->rtc = rtc; | ||
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return 0; | ||
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err_io: | ||
iounmap(chip->ioaddress); | ||
err_chip: | ||
kfree(chip); | ||
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return retval; | ||
} | ||
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static int rtc_remove(struct platform_device *dev) | ||
{ | ||
struct v3020 *chip = platform_get_drvdata(dev); | ||
struct rtc_device *rtc = chip->rtc; | ||
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if (rtc) | ||
rtc_device_unregister(rtc); | ||
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iounmap(chip->ioaddress); | ||
kfree(chip); | ||
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return 0; | ||
} | ||
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static struct platform_driver rtc_device_driver = { | ||
.probe = rtc_probe, | ||
.remove = rtc_remove, | ||
.driver = { | ||
.name = "v3020", | ||
.owner = THIS_MODULE, | ||
}, | ||
}; | ||
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static __init int v3020_init(void) | ||
{ | ||
return platform_driver_register(&rtc_device_driver); | ||
} | ||
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static __exit void v3020_exit(void) | ||
{ | ||
platform_driver_unregister(&rtc_device_driver); | ||
} | ||
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module_init(v3020_init); | ||
module_exit(v3020_exit); | ||
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MODULE_DESCRIPTION("V3020 RTC"); | ||
MODULE_AUTHOR("Raphael Assenat"); | ||
MODULE_LICENSE("GPL"); |
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/* | ||
* v3020.h - Registers definition and platform data structure for the v3020 RTC. | ||
* | ||
* This file is subject to the terms and conditions of the GNU General Public | ||
* License. See the file "COPYING" in the main directory of this archive | ||
* for more details. | ||
* | ||
* Copyright (C) 2006, 8D Technologies inc. | ||
*/ | ||
#ifndef __LINUX_V3020_H | ||
#define __LINUX_V3020_H | ||
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/* The v3020 has only one data pin but which one | ||
* is used depends on the board. */ | ||
struct v3020_platform_data { | ||
int leftshift; /* (1<<(leftshift)) & readl() */ | ||
}; | ||
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#define V3020_STATUS_0 0x00 | ||
#define V3020_STATUS_1 0x01 | ||
#define V3020_SECONDS 0x02 | ||
#define V3020_MINUTES 0x03 | ||
#define V3020_HOURS 0x04 | ||
#define V3020_MONTH_DAY 0x05 | ||
#define V3020_MONTH 0x06 | ||
#define V3020_YEAR 0x07 | ||
#define V3020_WEEK_DAY 0x08 | ||
#define V3020_WEEK 0x09 | ||
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#define V3020_IS_COMMAND(val) ((val)>=0x0E) | ||
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#define V3020_CMD_RAM2CLOCK 0x0E | ||
#define V3020_CMD_CLOCK2RAM 0x0F | ||
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#endif /* __LINUX_V3020_H */ |