diff packages/redboot/current/src/flash.c @ 115:6ed91473a1cd ecos-sw-2000-08-21

Merge from eCos master repository on 2000-08-21-22:40:54-BST
author jlarmour
date Fri, 25 Aug 2000 17:32:38 +0000
parents
children bd1a71e3e476
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new file mode 100644
--- /dev/null
+++ b/packages/redboot/current/src/flash.c
@@ -0,0 +1,971 @@
+//==========================================================================
+//
+//      flash.c
+//
+//      RedBoot - FLASH memory support
+//
+//==========================================================================
+//####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 Red Hat, Inc.                             
+// All Rights Reserved.                                                     
+// -------------------------------------------                              
+//                                                                          
+//####COPYRIGHTEND####
+//==========================================================================
+//#####DESCRIPTIONBEGIN####
+//
+// Author(s):    gthomas
+// Contributors: gthomas
+// Date:         2000-07-28
+// Purpose:      
+// Description:  
+//              
+// This code is part of RedBoot (tm).
+//
+//####DESCRIPTIONEND####
+//
+//==========================================================================
+
+#include <redboot.h>
+#include <cyg/io/flash.h>
+
+struct image_desc {
+    unsigned char name[16];      // Null terminated name
+    unsigned long flash_base;    // Address within FLASH of image
+    unsigned long mem_base;      // Address in memory where it executes
+    unsigned long size;          // Length of image
+    unsigned long entry_point;   // Execution entry point
+    unsigned char _pad[256-40];
+    unsigned long desc_cksum;    // Checksum over image descriptor
+    unsigned long file_cksum;    // Checksum over image data
+};
+
+// Exported CLI functions
+RedBoot_cmd("fis", 
+            "Manage FLASH images", 
+            "{cmds}",
+            do_fis
+    );
+RedBoot_cmd("fconfig",
+            "Manage configuration kept in FLASH memory",
+            "",
+            do_flash_config
+    );
+
+// Internal commands
+local_cmd_entry("init",
+                "Initialize FLASH Image System [FIS]",
+                "",
+                fis_init,
+                FIS_cmds
+    );
+local_cmd_entry("list",
+                "Display contents of FLASH Image System [FIS]",
+                "",
+                fis_list,
+                FIS_cmds
+    );
+local_cmd_entry("free",
+                "Display free [available] locations within FLASH Image System [FIS]",
+                "",
+                fis_free,
+                FIS_cmds
+    );
+local_cmd_entry("erase",
+                "Erase FLASH contents",
+                "-f <flash_addr> -l <length>",
+                fis_erase,
+                FIS_cmds
+    );
+local_cmd_entry("delete",
+                "Display an image from FLASH Image System [FIS]",
+                "name",
+                fis_delete,
+                FIS_cmds
+    );
+local_cmd_entry("load",
+                "Load image from FLASH Image System [FIS] into RAM",
+                "name",
+                fis_load,
+                FIS_cmds
+    );
+local_cmd_entry("create",
+                "Create an image",
+                "-b <mem_base> -l <length> [-f <flash_addr>] [-e <entry_point>] [-r <ram_addr>] <name>",
+                fis_create,
+                FIS_cmds
+    );
+
+// Define table boundaries
+CYG_HAL_TABLE_BEGIN( __FIS_cmds_TAB__, FIS_cmds);
+CYG_HAL_TABLE_END( __FIS_cmds_TAB_END__, FIS_cmds);
+
+extern struct cmd __FIS_cmds_TAB__[], __FIS_cmds_TAB_END__;
+
+// Local data used by these routines
+static void *flash_start, *flash_end;
+static int block_size, blocks;
+static void *fis_work_block;
+
+static void
+fis_usage(char *why)
+{
+    printf("*** invalid 'fis' command: %s\n", why);
+    cmd_usage(__FIS_cmds_TAB__, &__FIS_cmds_TAB_END__, "fis ");
+}
+
+static void
+fis_init(int argc, char *argv[])
+{
+    int stat, img_count = 0;
+    struct image_desc *img;
+    void *fis_base, *err_addr;
+#ifdef CYGSEM_REDBOOT_FLASH_CONFIG
+    void *cfg_base;
+#endif
+    bool full_init = false;
+
+    if (argc > 2) {
+        if (strcmp(argv[2], "-f") != 0) {
+            fis_usage("bad parameter");
+            return;
+        }
+        full_init = true;
+    }
+    if (!verify_action("About to initialize [format] FLASH image system")) {
+        printf("** Aborted\n");
+        return;
+    }
+    printf("*** Initialize FLASH Image System\n");
+    if (full_init) {
+        if ((stat = flash_erase((void *)((unsigned long)flash_start+(2*block_size)), 
+                                (blocks-4)*block_size, (void **)&err_addr)) != 0) {
+            printf("   initialization failed %p: %x(%s)\n", err_addr, stat, flash_errmsg(stat));
+        }
+    } else {
+        printf("    Warning: device contents not erased, some blocks may not be usable\n");
+    }
+    // Create a pseudo image for RedBoot
+    img = (struct image_desc *)fis_work_block;
+    memset(img, 0, sizeof(*img));
+    strcpy(img->name, "RedBoot");
+    img->flash_base = (unsigned long)flash_start;
+    img->mem_base = (unsigned long)flash_start;
+    img->size = 0;
+    img++;  img_count++;
+    // And a backup image
+    memset(img, 0, sizeof(*img));
+    strcpy(img->name, "RedBoot[backup]");
+    img->flash_base = (unsigned long)flash_start+block_size;
+    img->mem_base = (unsigned long)flash_start+block_size;
+    img->size = 0;
+    img++;  img_count++;
+#ifdef CYGSEM_REDBOOT_FLASH_CONFIG
+    // And a descriptor for the configuration data
+    memset(img, 0, sizeof(*img));
+    strcpy(img->name, "RedBoot config");
+    cfg_base = (void *)((unsigned long)flash_end - (2*block_size));
+    img->flash_base = (unsigned long)cfg_base;
+    img->mem_base = (unsigned long)cfg_base;
+    img->size = block_size;
+    img++;  img_count++;
+#endif
+    // And a descriptor for the descriptor table itself
+    memset(img, 0, sizeof(*img));
+    strcpy(img->name, "FIS directory");
+    fis_base = (void *)((unsigned long)flash_end - block_size);
+    img->flash_base = (unsigned long)fis_base;
+    img->mem_base = (unsigned long)fis_base;
+    img->size = block_size;
+    img++;  img_count++;
+    if ((stat = flash_erase(fis_base, block_size, (void **)&err_addr)) != 0) {
+            printf("   initialization failed %p: %x(%s)\n", err_addr, stat, flash_errmsg(stat));
+    } else {
+        if ((stat = flash_program(fis_base, fis_work_block, 
+                                  img_count*sizeof(*img), (void **)&err_addr)) != 0) {
+            printf("Error writing image descriptors at %p: %x(%s)\n", 
+                   err_addr, stat, flash_errmsg(stat));
+        }
+    }
+}
+
+static void
+fis_list(int argc, char *argv[])
+{
+    struct image_desc *img;
+    int i;
+
+    img = (struct image_desc *)((unsigned long)flash_end - block_size);    
+    printf("Name              FLASH addr   Mem addr    Length    Entry point\n");
+    for (i = 0;  i < block_size/sizeof(*img);  i++, img++) {
+        if (img->name[0] != (unsigned char)0xFF) {
+            printf("%-16s  0x%08lX   0x%08lX  0x%06lX  0x%08lX\n", img->name, 
+                   img->flash_base, img->mem_base, img->size, img->entry_point);
+        }
+    }
+}
+
+static void
+fis_free(int argc, char *argv[])
+{
+    unsigned long *fis_ptr, *fis_end;
+    unsigned long *area_start;
+
+    fis_ptr = (unsigned long *)((unsigned long)flash_start + 2*block_size);
+    fis_end = (unsigned long *)((unsigned long)flash_end + block_size);
+    fis_end = (unsigned long *)(unsigned long)flash_end;
+    area_start = fis_ptr;
+    while (fis_ptr < fis_end) {
+        if (*fis_ptr != (unsigned long)0xFFFFFFFF) {
+            if (area_start != fis_ptr) {
+                // Assume that this is something
+                printf("  0x%08lX .. 0x%08lX\n", 
+                       (unsigned long)area_start, (unsigned long)fis_ptr);
+            }
+            // Find next blank block
+            area_start = fis_ptr;
+            while (area_start < fis_end) {
+                if (*area_start == (unsigned long)0xFFFFFFFF) {
+                    break;
+                }
+                area_start += block_size / sizeof(unsigned long);
+            }
+            fis_ptr = area_start;
+        } else {
+            fis_ptr += block_size / sizeof(unsigned long);
+        }
+    }
+    if (area_start != fis_ptr) {
+        printf("  0x%08lX .. 0x%08lX\n", 
+               (unsigned long)area_start, (unsigned long)fis_ptr);
+    }
+}
+
+// Find the first unused area of flash which is long enougn
+static bool
+fis_find_free(unsigned long *addr, unsigned long length)
+{
+    unsigned long *fis_ptr, *fis_end;
+    unsigned long *area_start;
+
+    fis_ptr = (unsigned long *)((unsigned long)flash_start + 2*block_size);
+    fis_end = (unsigned long *)(unsigned long)flash_end;
+    area_start = fis_ptr;
+    while (fis_ptr < fis_end) {
+        if (*fis_ptr != (unsigned long)0xFFFFFFFF) {
+            if (area_start != fis_ptr) {
+                // Assume that this is something
+                if ((fis_ptr-area_start) >= length) {
+                    *addr = (unsigned long)area_start;
+                    return true;
+                }
+            }
+            // Find next blank block
+            area_start = fis_ptr;
+            while (area_start < fis_end) {
+                if (*area_start == (unsigned long)0xFFFFFFFF) {
+                    break;
+                }
+                area_start += block_size / sizeof(unsigned long);
+            }
+            fis_ptr = area_start;
+        } else {
+            fis_ptr += block_size / sizeof(unsigned long);
+        }
+    }
+    if (area_start != fis_ptr) {
+        if ((fis_ptr-area_start) >= length) {
+            *addr = (unsigned long)area_start;
+            return true;
+        }
+    }
+    return false;
+}
+
+static void
+fis_create(int argc, char *argv[])
+{
+    int i, stat;
+    unsigned long mem_addr, exec_addr, flash_addr, entry_addr, length;
+    char *name;
+    bool mem_addr_set = false;
+    bool exec_addr_set = false;
+    bool entry_addr_set = false;
+    bool flash_addr_set = false;
+    bool length_set = false;
+    void *fis_addr, *err_addr;
+    struct image_desc *img;
+    bool slot_found;
+    struct option_info opts[5];
+    bool prog_ok;
+
+    init_opts(&opts[0], 'b', true, OPTION_ARG_TYPE_NUM, 
+              (void **)&mem_addr, (bool *)&mem_addr_set, "memory base address");
+    init_opts(&opts[1], 'r', true, OPTION_ARG_TYPE_NUM, 
+              (void **)&exec_addr, (bool *)&exec_addr_set, "ram base address");
+    init_opts(&opts[2], 'e', true, OPTION_ARG_TYPE_NUM, 
+              (void **)&entry_addr, (bool *)&entry_addr_set, "entry point address");
+    init_opts(&opts[3], 'f', true, OPTION_ARG_TYPE_NUM, 
+              (void **)&flash_addr, (bool *)&flash_addr_set, "FLASH memory base address");
+    init_opts(&opts[4], 'l', true, OPTION_ARG_TYPE_NUM, 
+              (void **)&length, (bool *)&length_set, "length");
+    if (!scan_opts(argc, argv, 2, opts, 5, (void *)&name, OPTION_ARG_TYPE_STR, "file name"))
+    {
+        fis_usage("invalid arguments");
+        return;
+    }
+
+
+    if (!mem_addr_set || !length_set || !name) {
+        fis_usage("required parameter missing");
+        return;
+    }
+    if (flash_addr_set &&
+        ((stat = flash_verify_addr((void *)flash_addr)) ||
+         (stat = flash_verify_addr((void *)(flash_addr+length-1))))) {
+        printf("Invalid FLASH address: %p (%s)\n", (void *)flash_addr, flash_errmsg(stat));
+        printf("   valid range is %p-%p\n", (void *)flash_start, (void *)flash_end);
+        return;
+    }
+    if ((mem_addr < (unsigned long)ram_start) ||
+        ((mem_addr+length) >= (unsigned long)ram_end)) {
+        printf("Invalid RAM address: %p\n", (void *)mem_addr);
+        printf("   valid range is %p-%p\n", (void *)ram_start, (void *)ram_end);
+        return;
+    }
+    if (strlen(name) >= sizeof(img->name)) {
+        printf("Name is too long, must be less than %d chars\n", (int)sizeof(img->name));
+        return;
+    }
+    if (!flash_addr_set && !fis_find_free(&flash_addr, length)) {
+        printf("Can't locate %ld bytes free in FLASH\n", length);
+        return;
+    }
+    // Find a slot in the directory for this entry
+    // First, see if an image by this name is already present
+    slot_found = false;
+    fis_addr = (void *)((unsigned long)flash_end - block_size);
+    memcpy(fis_work_block, fis_addr, block_size);
+    img = (struct image_desc *)fis_work_block;
+    for (i = 0;  i < block_size/sizeof(*img);  i++, img++) {
+        if ((img->name[0] != (unsigned char)0xFF) && (strcmp(name, img->name) == 0)) {
+            if (img->flash_base != flash_addr) {
+                printf("Image found, but FLASH address incorrect\n");
+                return;
+            }
+            if (!verify_action("An image named '%s' exists", name)) {
+                return;
+            } else {
+                slot_found = true;
+                break;
+            }
+        }
+    }
+    // If not found, try and find an empty slot
+    if (!slot_found) {
+        img = (struct image_desc *)fis_work_block;
+        for (i = 0;  i < block_size/sizeof(*img);  i++, img++) {
+            if (img->name[0] == (unsigned char)0xFF) {
+                slot_found = true;
+                break;
+            }
+        }
+    }
+    // Safety check - make sure the address range is not within the code we're running
+    if (flash_code_overlaps((void *)flash_addr, (void *)(flash_addr+length-1))) {
+        printf("Can't program this region - contains code in use!\n");
+        return;
+    }
+    prog_ok = true;
+    if (prog_ok) {
+        // Erase area to be programmed
+        if ((stat = flash_erase((void *)flash_addr, length, (void **)&err_addr)) != 0) {
+            printf("Can't erase region at %p: %x(%s)\n", err_addr, stat, flash_errmsg(stat));
+            prog_ok = false;
+        }
+    }
+    if (prog_ok) {
+        // Now program it
+        if ((stat = flash_program((void *)flash_addr, (void *)mem_addr, length, (void **)&err_addr)) != 0) {
+            printf("Can't program region at %p: %x(%s)\n", err_addr, stat, flash_errmsg(stat));
+            prog_ok = false;
+        }
+    }
+    // Update directory
+    memset(img, 0, sizeof(*img));
+    strcpy(img->name, name);
+    img->flash_base = flash_addr;
+    img->mem_base = exec_addr_set ? exec_addr : (flash_addr_set ? flash_addr : mem_addr);
+    img->entry_point = entry_addr_set ? entry_addr : (unsigned long)entry_address;  // Hope it's been set
+    img->size = length;
+    if ((stat = flash_erase((void *)fis_addr, block_size, (void **)&err_addr)) != 0) {
+        printf("Error erasing at %p: %x(%s)\n", err_addr, stat, flash_errmsg(stat));
+        // Don't try to program if the erase failed
+    } else {
+        // Now program it
+        if ((stat = flash_program((void *)fis_addr, (void *)fis_work_block, block_size, (void **)&err_addr)) != 0) {
+            printf("Error programming at %p: %x(%s)\n", err_addr, stat, flash_errmsg(stat));
+        }
+    }
+}
+
+static void
+fis_erase(int argc, char *argv[])
+{
+    int stat;
+    unsigned long flash_addr, length;
+    bool flash_addr_set = false;
+    bool length_set = false;
+    void *err_addr;
+    struct option_info opts[2];
+
+    init_opts(&opts[0], 'f', true, OPTION_ARG_TYPE_NUM, 
+              (void **)&flash_addr, (bool *)&flash_addr_set, "FLASH memory base address");
+    init_opts(&opts[1], 'l', true, OPTION_ARG_TYPE_NUM, 
+              (void **)&length, (bool *)&length_set, "length");
+    if (!scan_opts(argc, argv, 2, opts, 2, (void **)0, 0, ""))
+    {
+        fis_usage("invalid arguments");
+        return;
+    }
+
+    if (!flash_addr_set || !length_set) {
+        fis_usage("missing argument");
+        return;
+    }
+    if (flash_addr_set &&
+        ((stat = flash_verify_addr((void *)flash_addr)) ||
+         (stat = flash_verify_addr((void *)(flash_addr+length-1))))) {
+        printf("Invalid FLASH address: %p (%s)\n", (void *)flash_addr, flash_errmsg(stat));
+        printf("   valid range is %p-%p\n", (void *)flash_start, (void *)flash_end);
+        return;
+    }
+    // Safety check - make sure the address range is not within the code we're running
+    if (flash_code_overlaps((void *)flash_addr, (void *)(flash_addr+length-1))) {
+        printf("Can't program this region - contains code in use!\n");
+        return;
+    }
+    if ((stat = flash_erase((void *)flash_addr, length, (void **)&err_addr)) != 0) {
+        printf("Error erasing at %p: %x(%s)\n", err_addr, stat, flash_errmsg(stat));
+    }
+}
+
+static void
+fis_delete(int argc, char *argv[])
+{
+    char *name;
+    int i, stat;
+    void *fis_addr, *err_addr;
+    struct image_desc *img;
+    bool slot_found;
+
+    if (!scan_opts(argc, argv, 2, 0, 0, (void **)&name, OPTION_ARG_TYPE_STR, "image name"))
+    {
+        fis_usage("invalid arguments");
+        return;
+    }
+
+    slot_found = false;
+    fis_addr = (void *)((unsigned long)flash_end - block_size);
+    memcpy(fis_work_block, fis_addr, block_size);
+    img = (struct image_desc *)fis_work_block;
+    img += 2;  // Skip reserved files
+    for (i = 2;  i < block_size/sizeof(*img);  i++, img++) {
+        if ((img->name[0] != (unsigned char)0xFF) && (strcmp(name, img->name) == 0)) {
+            if (!verify_action("Delete image '%s'", name)) {
+                return;
+            } else {
+                slot_found = true;
+                break;
+            }
+        }
+    }
+    if (!slot_found) {
+        printf("No image '%s' found\n", name);
+        return;
+    }
+    // Erase data blocks (free space)
+    if ((stat = flash_erase((void *)img->flash_base, img->size, (void **)&err_addr)) != 0) {
+        printf("Error erasing at %p: %x(%s)\n", err_addr, stat, flash_errmsg(stat));
+    }
+    // Update directory
+    memset(img, 0xFF, sizeof(*img));
+    if ((stat = flash_erase((void *)fis_addr, block_size, (void **)&err_addr)) != 0) {
+        printf("Error erasing at %p: %x(%s)\n", err_addr, stat, flash_errmsg(stat));
+        // Don't try to program if the erase failed
+    } else {
+        // Now program it
+        if ((stat = flash_program((void *)fis_addr, (void *)fis_work_block, block_size, (void **)&err_addr)) != 0) {
+            printf("Error programming at %p: %x(%s)\n", err_addr, stat, flash_errmsg(stat));
+        }
+    }
+}
+
+static void
+fis_load(int argc, char *argv[])
+{
+    char *name;
+    int i;
+    void *fis_addr;
+    struct image_desc *img;
+    bool slot_found;
+
+    if (!scan_opts(argc, argv, 2, 0, 0, (void **)&name, OPTION_ARG_TYPE_STR, "image name"))
+    {
+        fis_usage("invalid arguments");
+        return;
+    }
+
+    slot_found = false;
+    fis_addr = (void *)((unsigned long)flash_end - block_size);
+    memcpy(fis_work_block, fis_addr, block_size);
+    img = (struct image_desc *)fis_work_block;
+    for (i = 0;  i < block_size/sizeof(*img);  i++, img++) {
+        if ((img->name[0] != (unsigned char)0xFF) && (strcmp(name, img->name) == 0)) {
+            slot_found = true;
+            break;
+        }
+    }
+    if (!slot_found) {
+        printf("No image '%s' found\n", name);
+        return;
+    }
+    // Load image from FLASH into RAM
+    if ((img->mem_base < (unsigned long)ram_start) ||
+        ((img->mem_base+img->size) >= (unsigned long)ram_end)) {
+        printf("Not a loadable image\n");
+        return;
+    }
+    memcpy((void *)img->mem_base, (void *)img->flash_base, img->size);
+    entry_address = (unsigned long *)img->entry_point;
+}
+
+static bool
+do_flash_init(void)
+{
+    int stat;
+    static int init = 0;
+
+    if (!init) {
+        init = 1;
+        if ((stat = flash_init((void *)(ram_end-FLASH_MIN_WORKSPACE), 
+                               FLASH_MIN_WORKSPACE)) != 0) {
+            printf("FLASH: driver init failed!, status: %x\n", stat);
+            return false;
+        }
+        flash_get_limits((void *)0, (void **)&flash_start, (void **)&flash_end);
+        flash_get_block_info(&block_size, &blocks);
+        printf("FLASH: %p - %p, %d blocks of %p bytes ea.\n", 
+               flash_start, flash_end, blocks, (void *)block_size);
+        fis_work_block = (unsigned char *)(ram_end-FLASH_MIN_WORKSPACE-block_size);
+    }
+    return true;
+}
+
+void
+do_fis(int argc, char *argv[])
+{
+    struct cmd *cmd;
+
+    if (argc < 2) {
+        fis_usage("too few arguments");
+        return;
+    }
+    if (!do_flash_init()) return;
+    if ((cmd = cmd_search(__FIS_cmds_TAB__, &__FIS_cmds_TAB_END__, 
+                          argv[1])) != (struct cmd *)0) {
+        (cmd->fun)(argc, argv);
+        return;
+    }
+    fis_usage("unrecognized command");
+}
+
+#ifdef CYGSEM_REDBOOT_FLASH_CONFIG
+#include <flash_config.h>
+
+// Configuration data, saved in FLASH, used to set/update RedBoot
+// normal "configuration" data items.
+static struct _config {
+    unsigned long key1;
+    unsigned char config_data[1024-(3*4)];
+    unsigned long key2;
+    unsigned long cksum;
+} config;
+
+#define CONFIG_KEY1    0x0BADFACE
+#define CONFIG_KEY2    0xDEADDEAD
+
+#define CONFIG_DONE    0
+#define CONFIG_ABORT  -1
+#define CONFIG_CHANGED 1
+#define CONFIG_OK      2
+#define CONFIG_BACK    3
+#define CONFIG_BAD     4
+
+// Note: the following options are related.  If 'bootp' is false, then
+// the other values are used in the configuration.  Because of the way
+// that configuration tables are generated, they should have names which
+// are related.  The configuration options will show up lexicographically
+// ordered, thus the peculiar naming.
+RedBoot_config_option("Run script at boot",
+                      boot_script,
+                      ALWAYS_ENABLED, true,
+                      CONFIG_BOOL
+    );
+RedBoot_config_option("Boot script",
+                      boot_script_data,
+                      "boot_script", true,
+                      CONFIG_SCRIPT
+    );
+RedBoot_config_option("Boot script timeout",
+                      boot_script_timeout,
+                      "boot_script", true,
+                      CONFIG_INT
+    );
+
+CYG_HAL_TABLE_BEGIN( __CONFIG_options_TAB__, RedBoot_config_options);
+CYG_HAL_TABLE_END( __CONFIG_options_TAB_END__, RedBoot_config_options);
+
+extern struct config_option __CONFIG_options_TAB__[], __CONFIG_options_TAB_END__[];
+
+static int
+get_config(struct config_option *opt, int offset)
+{
+    char line[80], *sp, *lp;
+    int ret;
+    bool hold_bool_val, enable;
+    unsigned long hold_int_val;
+#ifdef CYGPKG_REDBOOT_NETWORKING
+    in_addr_t hold_ip_val;
+    enet_addr_t hold_esa_val;
+    int esa_ptr;
+    char *esp;
+#endif
+    void *val_ptr;
+
+    if (opt->enable) {
+        flash_get_config(opt->enable, &enable, CONFIG_BOOL);
+        if ((opt->enable_sense && !enable) ||
+            (!opt->enable_sense && enable)) {
+            return CONFIG_OK;  // Disabled field
+        }
+    }
+    val_ptr = (void *)((unsigned char *)&config + offset);
+    printf("%s: ", opt->title);
+    switch (opt->type) {
+    case CONFIG_BOOL:
+        printf("%s ", *(bool *)val_ptr ? "true" : "false");
+        break;
+    case CONFIG_INT:
+        printf("%d ", *(int *)val_ptr);
+        break;
+#ifdef CYGPKG_REDBOOT_NETWORKING
+    case CONFIG_IP:
+        printf("%s ", inet_ntoa((in_addr_t *)val_ptr));
+        break;
+    case CONFIG_ESA:
+        for (esa_ptr = 0;  esa_ptr < sizeof(enet_addr_t);  esa_ptr++) {
+            printf("0x%02X", ((unsigned char *)val_ptr)[esa_ptr]);
+            if (esa_ptr < (sizeof(enet_addr_t)-1)) printf(":");
+        }
+        printf(" ");
+        break;
+#endif
+    case CONFIG_STRING:
+        printf("??");
+        return CONFIG_OK;  // FIXME - skip for now
+    case CONFIG_SCRIPT:
+        printf("\n");
+        sp = lp = (unsigned char *)val_ptr;
+        while (*sp) {
+            while (*lp != '\n') lp++;
+            *lp = '\0';
+            printf(".. %s\n", sp);
+            *lp++ = '\n';
+            sp = lp;
+        }
+        break;
+    }
+    if (opt->type != CONFIG_SCRIPT) {
+        ret = gets(line, sizeof(line), 0);    
+        if (ret < 0) return CONFIG_ABORT;
+        if (strlen(line) == 0) return CONFIG_OK;  // Just a CR - leave value untouched
+        if (line[0] == '.') return CONFIG_DONE;
+        if (line[0] == '^') return CONFIG_BACK;
+    }
+    switch (opt->type) {
+    case CONFIG_BOOL:
+        hold_bool_val = *(bool *)val_ptr;
+        if (!parse_bool(line, (bool *)val_ptr)) {
+            return CONFIG_BAD;
+        }
+        if (hold_bool_val != *(bool *)val_ptr) {
+            return CONFIG_CHANGED;
+        } else {
+            return CONFIG_OK;
+        }
+        break;
+    case CONFIG_INT:
+        hold_int_val = *(unsigned long *)val_ptr;
+        if (!parse_num(line, (unsigned long *)val_ptr, 0, 0)) {
+            return CONFIG_BAD;
+        }
+        if (hold_int_val != *(unsigned long *)val_ptr) {
+            return CONFIG_CHANGED;
+        } else {
+            return CONFIG_OK;
+        }
+        break;
+#ifdef CYGPKG_REDBOOT_NETWORKING
+    case CONFIG_IP:
+        hold_ip_val.s_addr = ((in_addr_t *)val_ptr)->s_addr;
+        if (!inet_aton(line, (in_addr_t *)val_ptr)) {
+            return CONFIG_BAD;
+        }
+        if (hold_ip_val.s_addr != ((in_addr_t *)val_ptr)->s_addr) {
+            return CONFIG_CHANGED;
+        } else {
+            return CONFIG_OK;
+        }
+        break;
+    case CONFIG_ESA:
+        memcpy(&hold_esa_val, val_ptr, sizeof(enet_addr_t));
+        esp = line;
+        for (esa_ptr = 0;  esa_ptr < sizeof(enet_addr_t);  esa_ptr++) {
+            unsigned long esa_byte;
+            if (!parse_num(esp, &esa_byte, &esp, ":")) {
+                memcpy(val_ptr, &hold_esa_val, sizeof(enet_addr_t));
+                return CONFIG_BAD;
+            }
+            ((unsigned char *)val_ptr)[esa_ptr] = esa_byte;
+        }
+        return CONFIG_CHANGED;
+        break;
+#endif
+    case CONFIG_SCRIPT:
+        // Assume it always changes
+        sp = (unsigned char *)val_ptr;
+        printf("Enter script, terminate with empty line\n");
+        while (true) {
+            *sp = '\0';
+            printf(">> ");
+            ret = gets(line, sizeof(line), 0);
+            if (ret < 0) return CONFIG_ABORT;
+            if (strlen(line) == 0) break;
+            lp = line;
+            while (*lp) {
+                *sp++ = *lp++;
+            }
+            *sp++ = '\n';
+        }
+        break;
+    case CONFIG_STRING:
+        printf("??");
+    }
+    return CONFIG_CHANGED;
+}
+
+//
+// Manage configuration information with the FLASH
+//
+
+// Calculate a simple checksum.  This is used to validate configuration
+// data.  Since it is used for sensitive information, it makes sense to
+// be somewhat careful when accepting it.  Also, the [strange] addition
+// of shifted data helps make this work even if the data layout changes
+// over time.
+
+static unsigned long
+_cksum(unsigned long *buf, int len)
+{
+    unsigned long cksum = 0;
+    int shift = 0;
+
+    // Round 'len' up to multiple of longwords
+    len = (len + (sizeof(unsigned long)-1)) / sizeof(unsigned long);   
+    while (len-- > 0) {
+        cksum ^= (*buf | (*buf << shift));
+        buf++;
+        if (++shift == 16) shift = 0;
+    }
+    return cksum;
+}
+
+static int
+config_length(int type)
+{
+    switch (type) {
+    case CONFIG_BOOL:
+        return sizeof(bool);
+    case CONFIG_INT:
+        return sizeof(unsigned long);
+#ifdef CYGPKG_REDBOOT_NETWORKING
+    case CONFIG_IP:
+        return sizeof(in_addr_t);
+    case CONFIG_ESA:
+        // Would like this to be sizeof(enet_addr_t), but that causes much
+        // pain since it fouls the alignment of data which follows.
+        return 8;
+#endif
+    case CONFIG_STRING:
+        return 0;
+    case CONFIG_SCRIPT:
+        return MAX_SCRIPT_LENGTH;
+    }
+}
+
+void
+do_flash_config(int argc, char *argv[])
+{
+    int stat, ret;
+    void *cfg_base, *err_addr;
+    bool need_update = false;
+    struct config_option *optbeg = __CONFIG_options_TAB__;
+    struct config_option *optend = __CONFIG_options_TAB_END__;
+    struct config_option *opt = __CONFIG_options_TAB__;
+    struct _config hold_config;
+    int offset = sizeof(unsigned long);
+
+    if (!do_flash_init()) return;
+    memcpy(&hold_config, &config, sizeof(config));
+    script = (unsigned char *)0;
+
+    while (opt != optend) {
+        ret = get_config(opt, offset);
+        switch (ret) {
+        case CONFIG_DONE:
+            goto done;
+        case CONFIG_ABORT:
+            memcpy(&config, &hold_config, sizeof(config));
+            return;
+        case CONFIG_CHANGED:
+            need_update = true;
+        case CONFIG_OK:
+            offset += config_length(opt->type);
+            opt++;
+            break;
+        case CONFIG_BACK:
+            if (opt != optbeg) opt--;
+            continue;
+        case CONFIG_BAD:
+            // Nothing - make him do it again
+            printf ("** invalid entry\n");
+        }
+    }
+
+ done:
+    if (!need_update) return;
+    config.key1 = CONFIG_KEY1;  config.key2 = CONFIG_KEY2;
+    config.cksum = _cksum((unsigned long *)&config, sizeof(config)-sizeof(config.cksum));
+    cfg_base = (void *)((unsigned long)flash_end - (2*block_size));
+    if (verify_action("Update RedBoot non-volatile configuration")) {
+        if ((stat = flash_erase(cfg_base, block_size, (void **)&err_addr)) != 0) {
+            printf("   initialization failed %p: %x(%s)\n", err_addr, stat, flash_errmsg(stat));
+        } else {
+            if ((stat = flash_program(cfg_base, (void *)&config, 
+                                      sizeof(config), (void **)&err_addr)) != 0) {
+                printf("Error writing config data at %p: %x(%s)\n", 
+                       err_addr, stat, flash_errmsg(stat));
+            }
+        }
+    }
+}
+
+void
+flash_get_config(char *key, void *val, int type)
+{
+    struct config_option *optend = __CONFIG_options_TAB_END__;
+    struct config_option *opt = __CONFIG_options_TAB__;
+    int offset = sizeof(unsigned long);  // Offset past starting 'key'
+    void *val_ptr;
+
+    if (!do_flash_init()) return;
+
+    while (opt != optend) {
+        val_ptr = (void *)((unsigned char *)&config + offset);
+        if (strcmp(opt->key, key) == 0) {
+            if (opt->type == type) {
+                switch (opt->type) {
+                case CONFIG_BOOL:
+                    *(bool *)val = *(bool *)val_ptr;
+                    break;
+                case CONFIG_INT:
+                    *(unsigned long *)val = *(unsigned long *)val_ptr;
+                    break;
+#ifdef CYGPKG_REDBOOT_NETWORKING
+                case CONFIG_IP:
+                    memcpy(val, val_ptr, sizeof(in_addr_t));
+                    break;
+                case CONFIG_ESA:
+                    memcpy(val, val_ptr, sizeof(enet_addr_t));
+                    break;
+#endif
+                case CONFIG_STRING:
+                    break;
+                case CONFIG_SCRIPT:
+                    // Just return a pointer to the script
+                    *(unsigned char **)val = (unsigned char *)val_ptr;
+                    break;
+                }
+            } else {
+                printf("Request for config value '%s' - wrong type\n", key);
+            }
+            return;
+        }
+        offset += config_length(opt->type);
+        opt++;
+    }
+
+    printf("Can't find config value '%s'\n", key);
+}
+
+//
+// Attempt to get configuration information from the FLASH.
+// If available (i.e. good checksum, etc), initialize "known"
+// values for later use.
+//
+static void
+load_flash_config(void)
+{
+    void *cfg_base;
+    bool use_boot_script;
+
+    config_ok = false;
+    if (!do_flash_init()) return;
+    cfg_base = (void *)((unsigned long)flash_end - (2*block_size));
+    memcpy(&config, cfg_base, sizeof(config));
+    if ((_cksum((unsigned long *)&config, sizeof(config)-sizeof(config.cksum)) != config.cksum) ||
+        (config.key1 != CONFIG_KEY1)|| (config.key2 != CONFIG_KEY2)) {
+        printf("FLASH configuration checksum error or invalid key\n");
+        script = (unsigned char *)0;
+        memset(&config, 0, sizeof(config));
+        return;
+    }
+    flash_get_config("boot_script", &use_boot_script, CONFIG_BOOL);
+    if (use_boot_script) {
+        flash_get_config("boot_script_data", &script, CONFIG_SCRIPT);
+        flash_get_config("boot_script_timeout", &script_timeout, CONFIG_INT);
+    }
+    config_ok = true;
+}
+
+RedBoot_init(load_flash_config, RedBoot_INIT_FIRST);
+
+#endif