Mercurial > flash_v2
view packages/hal/arm/pid/current/misc/prog_flash.c @ 60:3836136e7743 ecos-sw-1999-12-17
Merge from eCos master repository on 1999-12-17-19:44:58-GMT
| author | jlarmour |
|---|---|
| date | Fri, 17 Dec 1999 20:15:45 +0000 |
| parents | 6e51d764f8f1 |
| children | c38311975d4f |
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//========================================================================== // // prog_flash.c // // ARM PID7 eval board FLASH program tool // //========================================================================== //####COPYRIGHTBEGIN#### // // ------------------------------------------- // The contents of this file are subject to the Cygnus eCos Public License // Version 1.0 (the "License"); you may not use this file except in // compliance with the License. You may obtain a copy of the License at // http://sourceware.cygnus.com/ecos // // 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 Cygnus Operating System, released // September 30, 1998. // // The Initial Developer of the Original Code is Cygnus. Portions created // by Cygnus are Copyright (C) 1998,1999 Cygnus Solutions. All Rights Reserved. // ------------------------------------------- // //####COPYRIGHTEND#### //========================================================================== //#####DESCRIPTIONBEGIN#### // // Author(s): gthomas // Contributors: gthomas // Date: 1998-11-18 // Description: Tool used to program onboard FLASH image //####DESCRIPTIONEND#### // // This program will program the FLASH on the PID board // It is similar to 'flash' (which also downloads S records) but it always // programs from a fixed buffer. This is sufficient to load/update the GDB // stubs on the board. // #include <pkgconf/libc.h> // Configuration header #include <cyg/kernel/kapi.h> #include <stdlib.h> #include <ctype.h> #include <cyg/infra/testcase.h> #include <sys/cstartup.h> #ifndef FALSE #define FALSE 0 #define TRUE 1 #endif extern void diag_printf(const char *, ...); int identify_FLASH(void); void write_sector(int, char *); char *flash_buffer = (char *)0x60000; char *flash_buffer_end = (char *)0x80000; #ifdef BE_IMAGE #define BUF(x) buf[x^3] #else #define BUF(x) buf[x] #endif // FUNCTIONS externC void cyg_package_start( void ) { #ifdef CYGPKG_LIBC cyg_iso_c_start(); #else (void)main(0, NULL); #endif } // cyg_package_start() int main( int argc, char *argv[] ) { int i; diag_printf("FLASH here!\n"); while (identify_FLASH() == 0) { diag_printf("... Please change FLASH jumper\n"); cyg_thread_delay(5*100); } diag_printf("About to program FLASH using data at %x..%x\n", flash_buffer, flash_buffer_end); diag_printf("*** Press RESET now to abort!\n"); cyg_thread_delay(5*100); diag_printf("\n"); diag_printf("...Programming FLASH\n"); i = 0; while (flash_buffer < flash_buffer_end) { write_sector(i++, flash_buffer); flash_buffer += 256; } diag_printf("All done!\n"); while (1) ; } // Adapted from ARM sample code #define SEQ_ADD1 0x5555 #define SEQ_ADD2 0xAAAA #define START_CMD1 0xAA #define START_CMD2 0x55 #define ID_CMD 0x90 #define PROG_CMD 0xA0 #define STOP_CMD 0xF0 #define MAN_ATMEL 0x1F #define ATMEL_AT29C040_ID 0X5B #define ATMEL_AT29C040A_ID 0XA4 #define ATMEL_AT29C1024_ID 0X25 #define ATMEL_SECTOR_SIZE 256 #define ATMEL_MAX_SECTORS 2048 int manuf_code, device_code, sector_size, max_no_of_sectors, word_mode; volatile char *FLASH = (volatile char *)0x04000000; int identify_FLASH(void ) { // Enter Software Product Identification Mode FLASH[SEQ_ADD1] = START_CMD1; FLASH[SEQ_ADD2] = START_CMD2; FLASH[SEQ_ADD1] = ID_CMD; // Wait at least 10ms cyg_thread_delay(2); // Read Manufacturer and device code from the device manuf_code = FLASH[0]; device_code = FLASH[1]; diag_printf("manuf: %x, device: %x\n", manuf_code, device_code); // Exit Software Product Identification Mode FLASH[SEQ_ADD1] = START_CMD1; FLASH[SEQ_ADD2] = START_CMD2; FLASH[SEQ_ADD1] = STOP_CMD; // Wait at least 10ms cyg_thread_delay(5); if (manuf_code != MAN_ATMEL) { diag_printf ( "Error: Wrong Manufaturer: %02x\n",manuf_code ); return (0); } switch (device_code) { case ATMEL_AT29C040A_ID: diag_printf ("AT29C040A recognised\n"); sector_size = ATMEL_SECTOR_SIZE; max_no_of_sectors = ATMEL_MAX_SECTORS; word_mode = FALSE; break; case ATMEL_AT29C1024_ID: diag_printf ("AT29C1024 recognised\n"); sector_size = ATMEL_SECTOR_SIZE; max_no_of_sectors = ATMEL_MAX_SECTORS; word_mode = TRUE; break; default : diag_printf ( "Error: Unsupported device: %02x\n", device_code); return (0); } return (1); } void write_sector(int num, char *buf) { int i, cnt; volatile char *wrt = (volatile char *)&FLASH[num*sector_size]; // diag_printf("Writing to %08x\n", wrt); // Enter Program Mode FLASH[SEQ_ADD1] = START_CMD1; FLASH[SEQ_ADD2] = START_CMD2; FLASH[SEQ_ADD1] = PROG_CMD; // Note: write bytes as longs regardless of bus width for (i = 0; i < sector_size; i++) { wrt[i] = BUF(i); } // Wait for sector to program cnt = 0; i = sector_size - 1; while (wrt[i] != BUF(i)) { if (cnt++ > 0x01000000) break; } // diag_printf("Out - i: %d, wrt[i] = %08X.%08X, BUF(i) = %08X, count = %x\n", i, &wrt[i], wrt[i], BUF(i), cnt); // Verify for (i = 0; i < sector_size; i++) { for (cnt = 0; cnt < 10; cnt++) { if (wrt[i] == BUF(i)) break; cyg_thread_delay(1); } if (cnt == 10) { diag_printf("Can't program at 0x%08X: %02X not %02X\n", wrt, *wrt, BUF(0)); } } }
