📄 flash_program_buf.c
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//==========================================================================
//
// flash_program_buf.c
//
// Flash programming
//
//==========================================================================
//####COPYRIGHTBEGIN####
//
// -------------------------------------------
// The contents of this file are subject to the Red Hat eCos Public License
// Version 1.1 (the "License"); you may not use this file except in
// compliance with the License. You may obtain a copy of the License at
// http://www.redhat.com/
//
// Software distributed under the License is distributed on an "AS IS"
// basis, WITHOUT WARRANTY OF ANY KIND, either express or implied. See the
// License for the specific language governing rights and limitations under
// the License.
//
// The Original Code is eCos - Embedded Configurable Operating System,
// released September 30, 1998.
//
// The Initial Developer of the Original Code is Red Hat.
// Portions created by Red Hat are
// Copyright (C) 1998, 1999, 2000, 2001 Red Hat, Inc.
// All Rights Reserved.
// -------------------------------------------
//
//####COPYRIGHTEND####
//==========================================================================
//#####DESCRIPTIONBEGIN####
//
// Author(s): gthomas, hmt
// Contributors: gthomas
// Date: 2001-02-14
// Purpose:
// Description:
//
//####DESCRIPTIONEND####
//
//==========================================================================
#include "strata.h"
#include <pkgconf/hal.h>
#include <cyg/hal/hal_arch.h>
#include <cyg/hal/hal_cache.h>
//
// CAUTION! This code must be copied to RAM before execution. Therefore,
// it must not contain any code which might be position dependent!
//
int
flash_program_buf(volatile flash_t *addr, flash_t *data, int len,
unsigned long block_mask, int buffer_size)
{
volatile flash_t *ROM;
volatile flash_t *BA;
flash_t stat = 0;
int timeout = 50000;
int cache_on;
#ifdef FLASH_Write_Buffer
int i, wc;
#endif
HAL_DCACHE_IS_ENABLED(cache_on);
if (cache_on) {
HAL_DCACHE_SYNC();
HAL_DCACHE_DISABLE();
}
// Get base address and map addresses to virtual addresses
ROM = FLASH_P2V( CYGNUM_FLASH_BASE_MASK & (unsigned int)addr );
BA = FLASH_P2V( block_mask & (unsigned int)addr );
addr = FLASH_P2V(addr);
// Clear any error conditions
ROM[0] = FLASH_Clear_Status;
#ifdef FLASH_Write_Buffer
// Write any big chunks first
while (len >= buffer_size) {
wc = buffer_size;
if (wc > len) wc = len;
len -= wc;
// convert 'wc' in bytes to 'wc' in 'flash_t'
wc = wc / sizeof(flash_t); // Word count
*BA = FLASH_Write_Buffer;
timeout = 5000000;
while(((stat = ROM[0]) & FLASH_Status_Ready) != FLASH_Status_Ready) {
if (--timeout == 0) {
goto bad;
}
*BA = FLASH_Write_Buffer;
}
*BA = FLASHWORD(wc-1); // Count is 0..N-1
for (i = 0; i < wc; i++) {
*(addr+i) = *(data+i);
}
*BA = FLASH_Confirm;
ROM[0] = FLASH_Read_Status;
timeout = 5000000;
while(((stat = ROM[0]) & FLASH_Status_Ready) != FLASH_Status_Ready) {
if (--timeout == 0) {
goto bad;
}
}
// Jump out if there was an error
if (stat & FLASH_ErrorMask) {
goto bad;
}
// And verify the data - also increments the pointers.
*BA = FLASH_Reset;
for (i = 0; i < wc; i++) {
if ( *addr++ != *data++ ) {
stat = FLASH_ErrorNotVerified;
goto bad;
}
}
}
#endif
while (len > 0) {
ROM[0] = FLASH_Program;
*addr = *data;
timeout = 5000000;
while(((stat = ROM[0]) & FLASH_Status_Ready) != FLASH_Status_Ready) {
if (--timeout == 0) {
goto bad;
}
}
if (stat & FLASH_ErrorMask) {
break;
}
ROM[0] = FLASH_Reset;
if (*addr++ != *data++) {
stat = FLASH_ErrorNotVerified;
break;
}
len -= sizeof( flash_t );
}
// Restore ROM to "normal" mode
bad:
ROM[0] = FLASH_Reset;
if (cache_on) {
HAL_DCACHE_ENABLE();
}
return stat;
}
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