view src/cs/drivers/drv_app/buzzer/buzzer.c @ 221:5bf097aeaad7

LLS: when turning off all LEDs on boot, skip LED-C Having LLS turn off LED-A and LED-B on boot is normally unnecessary (they should already be off in Iota), but it is harmless, hence this logic is kept for robustness. However, having LLS read-modify-write the BCICTL2 register (to turn off LED-C) creates a potential race condition with FCHG writes to this register, especially in the case when baseband switch-on is caused by VCHG and charging is expected to start right away. Furthermore, control of the charging LED itself (on those hw targets that have it) is the responsibility of the FCHG SWE, hence LLS should leave it alone.
author Mychaela Falconia <falcon@freecalypso.org>
date Mon, 26 Apr 2021 21:55:13 +0000
parents 4e78acac3d88
children 4f839e1991e8
line wrap: on
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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); 

}