| 12
 3
 4
 5
 6
 7
 8
 9
 10
 11
 12
 13
 14
 15
 16
 17
 18
 19
 20
 21
 22
 23
 24
 25
 26
 27
 28
 29
 30
 31
 32
 33
 34
 35
 36
 37
 38
 39
 40
 41
 42
 43
 44
 45
 46
 47
 48
 49
 50
 51
 52
 53
 54
 55
 56
 57
 58
 59
 60
 61
 62
 63
 64
 65
 66
 67
 68
 69
 70
 71
 72
 73
 74
 75
 76
 77
 78
 79
 80
 81
 82
 83
 84
 85
 86
 87
 88
 89
 90
 91
 92
 93
 94
 95
 96
 97
 98
 99
 100
 101
 102
 103
 104
 105
 106
 107
 108
 109
 110
 111
 112
 113
 114
 115
 116
 117
 118
 119
 120
 121
 122
 123
 124
 125
 126
 127
 128
 129
 130
 131
 132
 133
 134
 135
 136
 137
 138
 139
 140
 141
 142
 143
 144
 145
 146
 147
 148
 149
 150
 151
 152
 153
 154
 155
 156
 157
 158
 159
 160
 161
 162
 163
 164
 165
 166
 167
 168
 169
 170
 171
 172
 173
 174
 175
 176
 177
 178
 179
 180
 
 | /*
 * (C) Copyright 2001 Sysgo Real-Time Solutions, GmbH <www.elinos.com>
 * Andreas Heppel <aheppel@sysgo.de>
 *
 * SPDX-License-Identifier:	GPL-2.0+
 */
/*
 * Date & Time support for the MK48T59 RTC
 */
#undef	RTC_DEBUG
#include <common.h>
#include <command.h>
#include <config.h>
#include <rtc.h>
#include <mk48t59.h>
#if defined(CONFIG_BAB7xx)
static uchar rtc_read (short reg)
{
	out8(RTC_PORT_ADDR0, reg & 0xFF);
	out8(RTC_PORT_ADDR1, (reg>>8) & 0xFF);
	return in8(RTC_PORT_DATA);
}
static void rtc_write (short reg, uchar val)
{
	out8(RTC_PORT_ADDR0, reg & 0xFF);
	out8(RTC_PORT_ADDR1, (reg>>8) & 0xFF);
	out8(RTC_PORT_DATA, val);
}
#elif defined(CONFIG_EVAL5200)
static uchar rtc_read (short reg)
{
	return in8(RTC(reg));
}
static void rtc_write (short reg, uchar val)
{
	out8(RTC(reg),val);
}
#else
# error Board specific rtc access functions should be supplied
#endif
/* ------------------------------------------------------------------------- */
void *nvram_read(void *dest, const short src, size_t count)
{
	uchar *d = (uchar *) dest;
	short s = src;
	while (count--)
		*d++ = rtc_read(s++);
	return dest;
}
void nvram_write(short dest, const void *src, size_t count)
{
	short d = dest;
	uchar *s = (uchar *) src;
	while (count--)
		rtc_write(d++, *s++);
}
#if defined(CONFIG_CMD_DATE)
/* ------------------------------------------------------------------------- */
int rtc_get (struct rtc_time *tmp)
{
	uchar save_ctrl_a;
	uchar sec, min, hour, mday, wday, mon, year;
	/* Simple: freeze the clock, read it and allow updates again */
	save_ctrl_a = rtc_read(RTC_CONTROLA);
	/* Set the register to read the value. */
	save_ctrl_a |= RTC_CA_READ;
	rtc_write(RTC_CONTROLA, save_ctrl_a);
	sec		= rtc_read (RTC_SECONDS);
	min		= rtc_read (RTC_MINUTES);
	hour	= rtc_read (RTC_HOURS);
	mday	= rtc_read (RTC_DAY_OF_MONTH);
	wday	= rtc_read (RTC_DAY_OF_WEEK);
	mon		= rtc_read (RTC_MONTH);
	year	= rtc_read (RTC_YEAR);
	/* re-enable update */
	save_ctrl_a &= ~RTC_CA_READ;
	rtc_write(RTC_CONTROLA, save_ctrl_a);
#ifdef RTC_DEBUG
	printf ( "Get RTC year: %02x mon/cent: %02x mday: %02x wday: %02x "
		"hr: %02x min: %02x sec: %02x\n",
		year, mon, mday, wday,
		hour, min, sec );
#endif
	tmp->tm_sec  = bcd2bin (sec  & 0x7F);
	tmp->tm_min  = bcd2bin (min  & 0x7F);
	tmp->tm_hour = bcd2bin (hour & 0x3F);
	tmp->tm_mday = bcd2bin (mday & 0x3F);
	tmp->tm_mon  = bcd2bin (mon & 0x1F);
	tmp->tm_year = bcd2bin (year);
	tmp->tm_wday = bcd2bin (wday & 0x07);
	if(tmp->tm_year<70)
		tmp->tm_year+=2000;
	else
		tmp->tm_year+=1900;
	tmp->tm_yday = 0;
	tmp->tm_isdst= 0;
#ifdef RTC_DEBUG
	printf ( "Get DATE: %4d-%02d-%02d (wday=%d)  TIME: %2d:%02d:%02d\n",
		tmp->tm_year, tmp->tm_mon, tmp->tm_mday, tmp->tm_wday,
		tmp->tm_hour, tmp->tm_min, tmp->tm_sec);
#endif
	return 0;
}
int rtc_set (struct rtc_time *tmp)
{
	uchar save_ctrl_a;
#ifdef RTC_DEBUG
	printf ( "Set DATE: %4d-%02d-%02d (wday=%d)  TIME: %2d:%02d:%02d\n",
		tmp->tm_year, tmp->tm_mon, tmp->tm_mday, tmp->tm_wday,
		tmp->tm_hour, tmp->tm_min, tmp->tm_sec);
#endif
	save_ctrl_a = rtc_read(RTC_CONTROLA);
	save_ctrl_a |= RTC_CA_WRITE;
	rtc_write(RTC_CONTROLA, save_ctrl_a); /* disables the RTC to update the regs */
	rtc_write (RTC_YEAR, bin2bcd(tmp->tm_year % 100));
	rtc_write (RTC_MONTH, bin2bcd(tmp->tm_mon));
	rtc_write (RTC_DAY_OF_WEEK, bin2bcd(tmp->tm_wday));
	rtc_write (RTC_DAY_OF_MONTH, bin2bcd(tmp->tm_mday));
	rtc_write (RTC_HOURS, bin2bcd(tmp->tm_hour));
	rtc_write (RTC_MINUTES, bin2bcd(tmp->tm_min ));
	rtc_write (RTC_SECONDS, bin2bcd(tmp->tm_sec ));
	save_ctrl_a &= ~RTC_CA_WRITE;
	rtc_write(RTC_CONTROLA, save_ctrl_a); /* enables the RTC to update the regs */
	return 0;
}
void rtc_reset (void)
{
	uchar control_b;
	/*
	 * Start oscillator here.
	 */
	control_b = rtc_read(RTC_CONTROLB);
	control_b &= ~RTC_CB_STOP;
	rtc_write(RTC_CONTROLB, control_b);
}
void rtc_set_watchdog(short multi, short res)
{
	uchar wd_value;
	wd_value = RTC_WDS | ((multi & 0x1F) << 2) | (res & 0x3);
	rtc_write(RTC_WATCHDOG, wd_value);
}
#endif
 |