view src/cs/drivers/drv_app/ffs/board/ffspcm.c @ 624:012028896cfb

FFS dev.c, Leonardo target: Fujitsu MB84VF5F5F4J2 #if 0'ed out The FFS code we got from TI/Openmoko had a stanza for "Fujitsu MB84VF5F5F4J2 stacked device", using a fake device ID code that would need to be patched manually into cfgffs.c (suppressing and overriding autodetection) and using an FFS base address in the nCS2 bank, indicating that this FFS config was probably meant for the MCP version of Leonardo which allows for 16 MiB flash with a second bank on nCS2. We previously had this FFS config stanza conditionalized under CONFIG_TARGET_LEONARDO because the base address contained therein is invalid for other targets, but now that we actually have a Leonardo build target in FC Magnetite, I realize that the better approach is to #if 0 out this stanza altogether: it is already non-functional because it uses a fake device ID code, thus it is does not add support for more Leonardo board variants, instead it is just noise.
author Mychaela Falconia <falcon@freecalypso.org>
date Sun, 22 Dec 2019 21:24:29 +0000
parents 945cf7f506b2
children
line wrap: on
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/*
 * Flash File System (ffs)
 *
 * WCP PCM Compatibility Support
 */

#include <string.h>
#include "main/sys_types.h"
#include "memif/mem.h"
#include "ffs/ffs.h" 
#include "ffs/board/ffspcm.h"
#include "nucleus.h"
#include "csmi/csmi.h" 
#include "csmi/csmi_gsmctrl.h" 
#include "ffs/pcm.h" 


// Factory FFS area description
#pragma DATA_SECTION(FlashImage, ".ffs_img")
const unsigned char FlashImage[0x4000];


/*
 *
 * ffs_InitRFCap
 * 
 * Purpose  : Set rfcap for tri-band config
 *
 * Arguments: In : none
 *                 
 *            Out: none
 *
 * Returns  : none
 *
 */

#define SIZE_EF_RFCAP	16

static const UBYTE rfcap_TriBand[SIZE_EF_RFCAP] =   {0x00, 0x0F, 0x41, 0x10, 0x00, 0x00, 0x00, 0x00, \
                                                     0x40, 0x00, 0x00, 0xA5, 0x05, 0x00, 0xC0, 0x00};

static const UBYTE rfcap_DualExt[SIZE_EF_RFCAP] =   {0x00, 0x0B, 0x41, 0x00, 0x00, 0x00, 0x00, 0x00, \
                                                     0x40, 0x00, 0x00, 0xA5, 0x05, 0x00, 0xC0, 0x00};
                                                     
effs_t ffs_InitRFCap ()
{
    ffs_mkdir_nb("/gsm" ,0);
    ffs_mkdir_nb("/gsm/com" ,0);

    ffs_fwrite_nb("/gsm/com/rfcap", (void*)rfcap_TriBand, SIZE_EF_RFCAP, 0);
}

/*
 *
 * ffs_SetBand
 * 
 * Purpose  : Set std config according to the selected Band
 *
 * Arguments: In : Band number
 *                 
 *            Out: none
 *
 * Returns  : none
 *
 */

effs_t ffs_SetBand (unsigned char* band)
{
    // Check validity of std band (1, 3 and 6 are supported)
    switch(*band)
    {
        case 1:
        case 3:
        case 6:
          // fall through
          break;

        default:
          return EFFS_BADNAME;
    }

    // Write STD file and set global variable
    ffs_fwrite_nb("/pcm/STD", band, 1, 0);
}

/*
 *
 * ffs_GetBand
 * 
 * Purpose  : Get STD config as recorded in FFS
 *
 * Arguments: In : none
 *                 
 *            Out: none
 *
 * Returns  : STD
 *
 */

unsigned char ffs_GetBand ()
{
    UBYTE   ubStd = 0;
    effs_t  result;

    // get FFS value
    result = ffs_fread("/pcm/STD", &ubStd, 1);

    // default if an error occured : 900-1800
    if (result < EFFS_OK)
    {
        ubStd = 6;
    }

    return ubStd;
}

/*
 * ffs_restore
 *
 * Restores flash file system from MPU Persistent Storage
 * Restore Factory FFS in cae of file corruption
 *
 * Procedure described in PE023 document
 *
 */

void ffs_restore(void)
{
    effs_t res;

    // FFS restore procedure started
    // send a message through CSMI
    if( GC_RestoreFFSReq(FFS_BASE_ADDRESS, IMAGE_SIZE) == CSMI_ERROR )
    {
      // In case of MPU File corruption, 
      // restore working FFS from factory FFS
      memcpy((char *) FFS_BASE_ADDRESS, FlashImage, IMAGE_SIZE);

      // backup FFS on MPU side 
      // if we are running with the OS
      if(GC_RunningWithOs())
        ffs_backup();
    }
}

/*
 * ffs_backup
 *
 * Backup flash file system
 *
 * Procedure described in PE023 document
 *
 */

void ffs_backup(void)
{
    // FFS backup procedure started
    // send a message through CSMI
    GC_BackupFFSReq(FFS_BASE_ADDRESS, IMAGE_SIZE);
}