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📄 meta_factory_nvram_cb.cpp

📁 MTK 手机软件开发 META 源代码,开发环境: C++ Builder
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/*****************************************************************************
*  Copyright Statement:
*  --------------------
*  This software is protected by Copyright and the information contained
*  herein is confidential. The software may not be copied and the information
*  contained herein may not be used or disclosed except with the written
*  permission of MediaTek Inc. (C) 2005
*
*  BY OPENING THIS FILE, BUYER HEREBY UNEQUIVOCALLY ACKNOWLEDGES AND AGREES
*  THAT THE SOFTWARE/FIRMWARE AND ITS DOCUMENTATIONS ("MEDIATEK SOFTWARE")
*  RECEIVED FROM MEDIATEK AND/OR ITS REPRESENTATIVES ARE PROVIDED TO BUYER ON
*  AN "AS-IS" BASIS ONLY. MEDIATEK EXPRESSLY DISCLAIMS ANY AND ALL WARRANTIES,
*  EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE IMPLIED WARRANTIES OF
*  MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE OR NONINFRINGEMENT.
*  NEITHER DOES MEDIATEK PROVIDE ANY WARRANTY WHATSOEVER WITH RESPECT TO THE
*  SOFTWARE OF ANY THIRD PARTY WHICH MAY BE USED BY, INCORPORATED IN, OR
*  SUPPLIED WITH THE MEDIATEK SOFTWARE, AND BUYER AGREES TO LOOK ONLY TO SUCH
*  THIRD PARTY FOR ANY WARRANTY CLAIM RELATING THERETO. MEDIATEK SHALL ALSO
*  NOT BE RESPONSIBLE FOR ANY MEDIATEK SOFTWARE RELEASES MADE TO BUYER'S
*  SPECIFICATION OR TO CONFORM TO A PARTICULAR STANDARD OR OPEN FORUM.
*
*  BUYER'S SOLE AND EXCLUSIVE REMEDY AND MEDIATEK'S ENTIRE AND CUMULATIVE
*  LIABILITY WITH RESPECT TO THE MEDIATEK SOFTWARE RELEASED HEREUNDER WILL BE,
*  AT MEDIATEK'S OPTION, TO REVISE OR REPLACE THE MEDIATEK SOFTWARE AT ISSUE,
*  OR REFUND ANY SOFTWARE LICENSE FEES OR SERVICE CHARGE PAID BY BUYER TO
*  MEDIATEK FOR SUCH MEDIATEK SOFTWARE AT ISSUE.
*
*  THE TRANSACTION CONTEMPLATED HEREUNDER SHALL BE CONSTRUED IN ACCORDANCE
*  WITH THE LAWS OF THE STATE OF CALIFORNIA, USA, EXCLUDING ITS CONFLICT OF
*  LAWS PRINCIPLES.  ANY DISPUTES, CONTROVERSIES OR CLAIMS ARISING THEREOF AND
*  RELATED THERETO SHALL BE SETTLED BY ARBITRATION IN SAN FRANCISCO, CA, UNDER
*  THE RULES OF THE INTERNATIONAL CHAMBER OF COMMERCE (ICC).
*
*****************************************************************************/
/*****************************************************************************
 *
 * Filename:
 * ---------
 *   META_Factory_NVRAM_cb.cpp
 *
 * Project:
 * --------
 *   Maui META APP
 *
 * Description:
 * ------------
 *  META factory NVRAM callback source
 *
 * Author:
 * -------
 *  Andy Ueng (mtk00490)
 *
 *============================================================================
 *             HISTORY
 * Below this line, this part is controlled by PVCS VM. DO NOT MODIFY!!
 *------------------------------------------------------------------------------
 * $Revision$
 * $Modtime$
 * $Log$
 *
 *------------------------------------------------------------------------------
 * Upper this line, this part is controlled by PVCS VM. DO NOT MODIFY!!
 *============================================================================
 ****************************************************************************/
#pragma hdrstop

// common
#ifndef  _METAAPP_COMMON_H_
#include "metaapp_common.h"
#endif

#include "META_Factory.h"
#include "T_META_factory_calibration.h"
#include "bb_adc.h"

#ifndef  _TIME_UTILS_H_
#include "time_utils.h"
#endif

#pragma package(smart_init)
extern bool  is_suspend_cal;
extern T_META_factory_calibration* pt_calibration;
extern CBBADC* MF_BB_ADC_ptr; // META_Factory.cpp
//===========================================================================
void ccb_write_agc_to_nvram( void )
{
    frmFatcory->DisableAllCalTimer();
    if(is_suspend_cal == true && pt_calibration != NULL )
    {
        is_suspend_cal = false;
        pt_calibration->Resume();
     }
}

//---------------------------------------------------------------------------
void ccb_read_ip2_from_nvram( void )
{
    frmFatcory->DisableAllCalTimer();
    if(is_suspend_cal == true && pt_calibration != NULL )
    {
        is_suspend_cal = false;
        pt_calibration->Resume();
    }

}

//---------------------------------------------------------------------------
void ccb_write_ip2_to_nvram( void )
{
    frmFatcory->DisableAllCalTimer();
    if(is_suspend_cal == true && pt_calibration != NULL )
    {
        is_suspend_cal = false;
        pt_calibration->Resume();
     }
}

//---------------------------------------------------------------------------
void ccb_write_afc_to_nvram( void )
{
    frmFatcory->DisableAllCalTimer();
    if(is_suspend_cal == true && pt_calibration != NULL )
    {
        is_suspend_cal = false;
        pt_calibration->Resume();
    }

}

//---------------------------------------------------------------------------
void ccb_write_crystal_afc_to_nvram( void )
{
    frmFatcory->DisableAllCalTimer();
    if(is_suspend_cal == true && pt_calibration != NULL )
    {
        is_suspend_cal = false;
        pt_calibration->Resume();
    }
}

//---------------------------------------------------------------------------
void ccb_read_apc_from_nvram( void )
{
    frmFatcory->DisableAllCalTimer();
    if(is_suspend_cal == true && pt_calibration != NULL )
    {
        is_suspend_cal = false;
        pt_calibration->Resume();
    }

}

//---------------------------------------------------------------------------
void ccb_write_apc_to_nvram( void )
{
    frmFatcory->DisableAllCalTimer();
    if(is_suspend_cal == true && pt_calibration != NULL )
    {
        is_suspend_cal = false;
        pt_calibration->Resume();
    }

}

//---------------------------------------------------------------------------
void ccb_write_txiq_to_nvram( void )
{
    frmFatcory->DisableAllCalTimer();
    if(is_suspend_cal == true && pt_calibration != NULL )
    {
        is_suspend_cal = false;
        pt_calibration->Resume();
    }

}

//---------------------------------------------------------------------------
void ccb_read_txiq_from_nvram( void )
{
    frmFatcory->DisableAllCalTimer();
    if(is_suspend_cal == true && pt_calibration != NULL )
    {
        is_suspend_cal = false;
        pt_calibration->Resume();
    }

}

//------------------------------------------------------------------------------
void ccb_read_ADC_from_nvram( void )
{
    frmFatcory->DisableAllCalTimer();
    if(MF_BB_ADC_ptr->Get_ConfirmState() != METAAPP_SUCCESS)
    {
        pt_calibration->CalErrorHandler( WM_MF_NVRAM_ADC_READ_FAIL );
        pt_calibration->log->Add( DateToStr(Date()) +  " " + CurrentTimeStr() + " FAIL: ADC calibration read slope and offset from NVRAM, state = " +
                                  IntToStr(MF_BB_ADC_ptr->Get_ConfirmState())
                  );
        return;
    }

    if(is_suspend_cal && pt_calibration != NULL )
    {
        is_suspend_cal = false;
        pt_calibration->Resume();
    }

}

//------------------------------------------------------------------------------
void ccb_write_ADC_to_nvram(void)
{
    frmFatcory->DisableAllCalTimer();
    if(MF_BB_ADC_ptr->Get_ConfirmState() != METAAPP_SUCCESS)
    {

        pt_calibration->PostErrorMsg( WM_MF_NVRAM_ADC_WRITE_FAIL );
        pt_calibration->log->Add( DateToStr(Date()) +  " " + CurrentTimeStr() + " FAIL: ADC calibration write slope and offset to NVRAM, state = " +
                 IntToStr(MF_BB_ADC_ptr->Get_ConfirmState())
                );
    }

    if (is_suspend_cal && pt_calibration != NULL)
    {
        is_suspend_cal = false;
        pt_calibration->Resume();
    }

}

//------------------------------------------------------------------------------
void CNF_MF_write_WiFi_to_nvram( void )
{
    frmFatcory->DisableAllCalTimer();
    if( is_suspend_cal && pt_calibration != NULL )
    {
        is_suspend_cal = false;
        pt_calibration->Resume();
    }

}

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