view src/gpf3/frame/vsi_sem.c @ 632:d968a3216ba0

new tangomdm build target TCS211/Magnetite built for target leonardo runs just fine on the Tango-based Caramel board, but a more proper tangomdm build target is preferable in order to better market these Tango modems to prospective commercial customers. The only differences are in GPIO and MCSI config: * MCSI is enabled in the tangomdm build config. * GPIO 1 is loudspeaker amplifier control on Leonardo, but on Tango platforms it can be used for anything. On Caramel boards this GPIO should be configured as an output driving high. * GPIO 2 needs to be configured as Calypso input on Leonardo, but on Tango platforms it can be used for anything. On Caramel boards this GPIO should be configured as an output, either high or low is OK.
author Mychaela Falconia <falcon@freecalypso.org>
date Sat, 04 Jan 2020 19:27:41 +0000
parents c41a534f33c6
children
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/* 
+------------------------------------------------------------------------------
|  File:       vsi_sem.c
+------------------------------------------------------------------------------
|  Copyright 2002 Texas Instruments Berlin, AG 
|                 All rights reserved. 
| 
|                 This file is confidential and a trade secret of Texas 
|                 Instruments Berlin, AG 
|                 The receipt of or possession of this file does not convey 
|                 any rights to reproduce or disclose its contents or to 
|                 manufacture, use, or sell anything it may describe, in 
|                 whole, or in part, without the specific written consent of 
|                 Texas Instruments Berlin, AG. 
+----------------------------------------------------------------------------- 
|  Purpose :  This Module defines the virtual system interface part
|             for the semaphore handling.
+----------------------------------------------------------------------------- 
*/ 

#ifndef __VSI_SEM_C__
#define __VSI_SEM_C__
#endif

/*==== INCLUDES ===================================================*/

#include "typedefs.h"
#include "vsi.h"
#include "os.h"
#include "frm_defs.h"
#include "frm_types.h"
#include "frm_glob.h"

/*==== TYPES ======================================================*/


/*==== CONSTANTS ==================================================*/


/*==== EXTERNALS ==================================================*/
/* -------------- S H A R E D - BEGIN ---------------- */
#ifdef _TOOLS_
#pragma data_seg("FRAME_SHARED")
#endif

/*==== VARIABLES ==================================================*/


#ifdef _TOOLS_
#pragma data_seg()
#endif
/* -------------- S H A R E D - END ---------------- */

/*==== FUNCTIONS ==================================================*/


#ifndef RUN_INT_RAM
/*
+--------------------------------------------------------------------+
| PROJECT : GSM-Frame (8415)           MODULE  : VSI_SEM             |
| STATE   : code                       ROUTINE : vsi_s_open          |
+--------------------------------------------------------------------+

  PURPOSE : opens a semaphore, creates if not exist

*/

T_HANDLE vsi_s_open (T_HANDLE Caller, char *Name, USHORT Count)
{
OS_HANDLE SemHandle;

  /*
   * if semaphore already exists, return handle
   */
  if ( os_OpenSemaphore ( Caller, Name, &SemHandle ) != OS_ERROR )
    return SemHandle;

  /*
   * if semaphore not exists, create
   */
  if ( os_CreateSemaphore ( Caller, Name, Count, &SemHandle, pf_TaskTable[Caller].MemPoolHandle ) != OS_ERROR )
    return SemHandle;
  else
    vsi_o_assert( Caller, OS_SYST_ERR_MAX_SEMA, __FILE__, __LINE__,
                  "Number of created semaphores > MAX_SEMAPHORES" );

  /*
   * if semaphore cannot be created, return VSI_ERROR
   */
  return VSI_ERROR;
}
#endif

#ifndef RUN_INT_RAM
/*
+--------------------------------------------------------------------+
| PROJECT : GSM-Frame (8415)           MODULE  : VSI_SEM             |
| STATE   : code                       ROUTINE : vsi_s_close          |
+--------------------------------------------------------------------+

  PURPOSE : closes a semaphore

*/

int vsi_s_close (T_HANDLE Caller, T_HANDLE SemHandle)
{

  if ( os_CloseSemaphore ( Caller, SemHandle ) != OS_ERROR )
    return VSI_OK;

  return VSI_ERROR;
}
#endif

#ifndef RUN_FLASH
/*
+--------------------------------------------------------------------+
| PROJECT : GSM-Frame (8415)           MODULE  : VSI_SEM             |
| STATE   : code                       ROUTINE : vsi_s_get           |
+--------------------------------------------------------------------+

  PURPOSE : obtains a semaphore

*/

int vsi_s_get (T_HANDLE Caller, T_HANDLE SemHandle)
{
LONG Status;

  Status = os_ObtainSemaphore ( Caller, SemHandle, OS_SUSPEND );
  if ( Status == OS_OK || Status == OS_WAITED )
    return VSI_OK;

  return VSI_ERROR;
}
#endif

#ifndef RUN_FLASH
/*
+--------------------------------------------------------------------+
| PROJECT : GSM-Frame (8415)           MODULE  : VSI_SEM             |
| STATE   : code                       ROUTINE : vsi_s_release       |
+--------------------------------------------------------------------+

  PURPOSE : releases a semaphore

*/

int vsi_s_release (T_HANDLE Caller, T_HANDLE SemHandle)
{

  if ( os_ReleaseSemaphore ( Caller, SemHandle ) != OS_ERROR )
    return VSI_OK;

  return VSI_ERROR;
}
#endif

#ifndef RUN_INT_RAM
/*
+--------------------------------------------------------------------+
| PROJECT : GSM-Frame (8415)           MODULE  : VSI_SEM             |
| STATE   : code                       ROUTINE : vsi_s_status        |
+--------------------------------------------------------------------+

  PURPOSE : request the current count of a semaphore

*/

int vsi_s_status (T_HANDLE Caller, T_HANDLE SemHandle, USHORT *Count )
{

  if ( os_QuerySemaphore ( Caller, SemHandle, Count ) != OS_ERROR )
    return VSI_OK;

  return VSI_ERROR;
}
#endif