view src/cs/drivers/drv_app/buzzer/buzzer.c @ 638:cab2f315827e

FFS dev.c: added Spansion PL032J to the "generic" table With the discovery of first GTM900 and then Tango, it now appears that Openmoko was not the only manuf after all who kept TI's TCS211 firmware largely intact (as opposed to changing it beyond all recognition like Compal, Chi-Mei and BenQ did), thus we are now getting new "alien" targets on which we reuse the original manuf's FFS with IMEI and RF calibration tables as if it were native. On these targets we use the original device table for FFS, even though we previously thought that it would never apply to any target other than dsample, leonardo and gtamodem. We have previously added Samsung K5L33xxCAM (a new kind of multi-ID device) to the generic table to support its use in Huawei GTM900-B modules; now we got news that some slightly older GTM900-B specimen used S71PL032J instead, so we are now adding PL032J as well.
author Mychaela Falconia <falcon@freecalypso.org>
date Thu, 30 Jan 2020 17:45:48 +0000
parents 945cf7f506b2
children
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/*
 * BUZZER.C
 *
 * Buzzer driver
 *
 * Target : ARM
 *
 * Copyright (c) Texas Instruments 2000
 *
 */


#include "main/sys_types.h"
#include "memif/mem.h"
#include "armio/armio.h"
#include "buzzer.h"
#include "timer/timer.h"

#include "board.cfg"

/* 
 * Initialize buzzer
 *
 */
void BZ_Init(void)
{
}

/*
 * BZ_Enable / BZ_Disable
 * 
 * Enable / disable buzzer
 * 
 * The buzzer uses timer 1
 */ 
void BZ_Enable(void)
{
  *((volatile SYS_UWORD16 *) ARMIO_PWM_CNTL) |= BZ_ON; 
}

void BZ_Disable(void)
{
  *((volatile SYS_UWORD16 *) ARMIO_PWM_CNTL) &= ~BZ_ON; 
}

/*
 * BZ_Tone
 * 
 * Changes the timer count to set the tone frequency in Hz
 * 
 * 58 ticks= 1 ms, which give a frequency of 500 Hz
 *
 *
 */
void BZ_Tone(int f)
{
    if (f > 255)
    {
        f = 255;
    }
  *((volatile SYS_UWORD16 *) ARMIO_LOAD_TIM) = f;
}

/*
 * BZ_Volume
 * 
 * Changes the buzzer volume
 * 
 */
void BZ_Volume(int v)
{
  // the level range is 0 up to 63
    if (v > 63)
    {
        v = 63;
    }
  *((volatile SYS_UWORD16 *) BZ_LEVEL) = v;
}

/*
 * BZ_KeyBeep_ON
 * 
 * Audio feedback to user after keybeep
 *
 */
void BZ_KeyBeep_ON(void)
{
  volatile int i;

  BZ_Init ();
  BZ_Volume (255);
  BZ_Enable ();
  BZ_Tone (50);
  
  for (i = 0; i < 17000; i++)
    ;
  
  BZ_Disable ();
}



/*
 * BZ_KeyBeep_OFF
 * 
 * Audio feedback to user after keybeep
 *
 */
void BZ_KeyBeep_OFF(void)
{
  volatile int i;

  BZ_Init ();
  BZ_Volume (255);
  BZ_Enable ();
  BZ_Tone (100);
  
  for (i = 0; i < 17000; i++)
    ;
  
  BZ_Disable ();
}



/*
 * LT_Enable / LT_Disable
 * 
 * Enable / disable LCD lighting
 * 
 */
void LT_Enable(void)
{
#if (BOARD == 7 || BOARD == 8 || BOARD == 9)
   *((volatile SYS_UWORD16 *) ARMIO_PWM_CNTL) |= LT_ON;
#endif
}
void LT_Disable(void)
{
#if (BOARD == 7 || BOARD == 8 || BOARD == 9)
   *((volatile SYS_UWORD16 *) ARMIO_PWM_CNTL) &= ~LT_ON;
#endif
}


/*
 * LT_Level
 * 
 * Set LCD display level
 */
void LT_Level(SYS_WORD8 level)
{
   if (level > 63) level=63;

   // the level range is 0 up to 63
   *((volatile SYS_UWORD16 *) LT_LEVEL) = level;
}


/*
 * LT_Status
 * 
 * Return lighting status for sleep manager
 * 
 */
SYS_BOOL LT_Status(void)
{
#if (BOARD == 7 || BOARD == 8 || BOARD == 9)
   if (*((volatile SYS_UWORD16 *) ARMIO_PWM_CNTL) & LT_ON) 
      return(1);		 // the light is on
   else
      return(0); 
#endif

return(0); 

}