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[/] [openrisc/] [trunk/] [rtos/] [ecos-2.0/] [packages/] [devs/] [wallclock/] [dallas/] [ds1742/] [v2_0/] [ds1742.inl] - Rev 27
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//==========================================================================
//
// devs/wallclock/ds1742.inl
//
// Wallclock implementation for Dallas 1742
//
//==========================================================================
//####ECOSGPLCOPYRIGHTBEGIN####
// -------------------------------------------
// This file is part of eCos, the Embedded Configurable Operating System.
// Copyright (C) 1998, 1999, 2000, 2001, 2002 Red Hat, Inc.
//
// eCos is free software; you can redistribute it and/or modify it under
// the terms of the GNU General Public License as published by the Free
// Software Foundation; either version 2 or (at your option) any later version.
//
// eCos is distributed in the hope that it will be useful, but WITHOUT ANY
// WARRANTY; without even the implied warranty of MERCHANTABILITY or
// FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
// for more details.
//
// You should have received a copy of the GNU General Public License along
// with eCos; if not, write to the Free Software Foundation, Inc.,
// 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA.
//
// As a special exception, if other files instantiate templates or use macros
// or inline functions from this file, or you compile this file and link it
// with other works to produce a work based on this file, this file does not
// by itself cause the resulting work to be covered by the GNU General Public
// License. However the source code for this file must still be made available
// in accordance with section (3) of the GNU General Public License.
//
// This exception does not invalidate any other reasons why a work based on
// this file might be covered by the GNU General Public License.
//
// Alternative licenses for eCos may be arranged by contacting Red Hat, Inc.
// at http://sources.redhat.com/ecos/ecos-license/
// -------------------------------------------
//####ECOSGPLCOPYRIGHTEND####
//==========================================================================
//#####DESCRIPTIONBEGIN####
//
// Author(s): jskov
// Contributors: jskov
// Date: 2000-05-25
// Purpose: Wallclock driver for Dallas 1742
//
//####DESCRIPTIONEND####
//
//==========================================================================
#ifndef DS_BASE
# error "Need to know base of DS1742 RAM"
#endif
#include <cyg/infra/cyg_type.h> // Common type definitions and support
#include <cyg/hal/hal_io.h> // IO macros
// Offsets from DS_BASE
#define DS_SECONDS 0x7f9 // control bit!
#define DS_SECONDS_MASK 0x7f
#define DS_MINUTES 0x7fa
#define DS_HOUR 0x7fb
#define DS_DAY 0x7fc // control bits
#define DS_DAY_MASK 0x07
#define DS_DATE 0x7fd
#define DS_MONTH 0x7fe
#define DS_YEAR 0x7ff
#define DS_CENTURY 0x7f8 // control bits!
#define DS_CENTURY_MASK 0x3f
// Control bits
#define DS_SECONDS_OSC 0x80 // set to stop oscillator (power save)
#define DS_CENTURY_READ 0x40 // set during read
#define DS_CENTURY_WRITE 0x80 // set during write
#define DS_DAY_BF 0x80 // battery flag
#define DS_DAY_FT 0x40 // frequency test
// Make sure test modes are disabled and that clock is running.
static void
init_ds_hwclock(void)
{
cyg_uint8 _tmp;
// Enable clock
HAL_READ_UINT8(DS_BASE+DS_SECONDS, _tmp);
_tmp &= ~DS_SECONDS_OSC;
HAL_WRITE_UINT8(DS_BASE+DS_SECONDS, _tmp);
// clear frequency test
HAL_READ_UINT8(DS_BASE+DS_DAY, _tmp);
_tmp &= ~DS_DAY_FT;
HAL_WRITE_UINT8(DS_BASE+DS_DAY, _tmp);
}
static void
set_ds_hwclock(cyg_uint32 year, cyg_uint32 month, cyg_uint32 mday,
cyg_uint32 hour, cyg_uint32 minute, cyg_uint32 second)
{
cyg_uint8 _tmp;
// Init write operation
HAL_READ_UINT8(DS_BASE+DS_CENTURY, _tmp);
_tmp &= ~(DS_CENTURY_WRITE|DS_CENTURY_READ);
_tmp |= DS_CENTURY_WRITE;
HAL_WRITE_UINT8(DS_BASE+DS_CENTURY, _tmp);
// Entries with control bits
HAL_READ_UINT8(DS_BASE+DS_CENTURY, _tmp);
_tmp &= ~DS_CENTURY_MASK;
_tmp |= TO_BCD(year/100) & DS_CENTURY_MASK;
HAL_WRITE_UINT8(DS_BASE+DS_CENTURY, _tmp);
HAL_READ_UINT8(DS_BASE+DS_SECONDS, _tmp);
_tmp &= ~DS_SECONDS_MASK;
_tmp |= TO_BCD(second) & DS_SECONDS_MASK;
HAL_WRITE_UINT8(DS_BASE+DS_SECONDS, _tmp);
HAL_READ_UINT8(DS_BASE+DS_DAY, _tmp);
_tmp &= ~DS_DAY_FT; // clear frequency test
HAL_WRITE_UINT8(DS_BASE+DS_DAY, _tmp);
// Dedicated entries
HAL_WRITE_UINT8(DS_BASE+DS_YEAR, TO_BCD(year % 100));
HAL_WRITE_UINT8(DS_BASE+DS_MONTH, TO_BCD(month));
HAL_WRITE_UINT8(DS_BASE+DS_DATE, TO_BCD(mday));
HAL_WRITE_UINT8(DS_BASE+DS_HOUR, TO_BCD(hour));
HAL_WRITE_UINT8(DS_BASE+DS_MINUTES, TO_BCD(minute));
// Enable clock
HAL_READ_UINT8(DS_BASE+DS_SECONDS, _tmp);
_tmp &= ~DS_SECONDS_OSC;
HAL_WRITE_UINT8(DS_BASE+DS_SECONDS, _tmp);
// Finish write operation
HAL_READ_UINT8(DS_BASE+DS_CENTURY, _tmp);
_tmp &= ~(DS_CENTURY_WRITE|DS_CENTURY_READ);
HAL_WRITE_UINT8(DS_BASE+DS_CENTURY, _tmp);
}
static void
get_ds_hwclock(cyg_uint32* year, cyg_uint32* month, cyg_uint32* mday,
cyg_uint32* hour, cyg_uint32* minute, cyg_uint32* second)
{
cyg_uint8 _tmp;
// Init read operation
HAL_READ_UINT8(DS_BASE+DS_CENTURY, _tmp);
_tmp &= ~(DS_CENTURY_WRITE|DS_CENTURY_READ);
_tmp |= DS_CENTURY_READ;
HAL_WRITE_UINT8(DS_BASE+DS_CENTURY, _tmp);
// Entries with control bits
HAL_READ_UINT8(DS_BASE+DS_CENTURY, _tmp);
_tmp &= DS_CENTURY_MASK;
*year = 100*TO_DEC(_tmp);
HAL_READ_UINT8(DS_BASE+DS_SECONDS, _tmp);
_tmp &= DS_SECONDS_MASK;
*second = TO_DEC(_tmp);
// Dedicated entries
HAL_READ_UINT8(DS_BASE+DS_YEAR, _tmp);
*year += TO_DEC(_tmp);
HAL_READ_UINT8(DS_BASE+DS_MONTH, _tmp);
*month = TO_DEC(_tmp);
HAL_READ_UINT8(DS_BASE+DS_DATE, _tmp);
*mday = TO_DEC(_tmp);
HAL_READ_UINT8(DS_BASE+DS_HOUR, _tmp);
*hour = TO_DEC(_tmp);
HAL_READ_UINT8(DS_BASE+DS_MINUTES, _tmp);
*minute = TO_DEC(_tmp);
// Finish read operation
HAL_READ_UINT8(DS_BASE+DS_CENTURY, _tmp);
_tmp &= ~(DS_CENTURY_WRITE|DS_CENTURY_READ);
HAL_WRITE_UINT8(DS_BASE+DS_CENTURY, _tmp);
}
//-----------------------------------------------------------------------------
// End of devs/wallclock/ds1742.inl
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