view src/cs/drivers/drv_app/buzzer/buzzer.c @ 223:740a8e8fc9d7

startup sync logic rework for the new PWON button boot scheme Previously we added logic to the MMI task to hold off PEI init until R2D is running, and then extended that condition to wait for FCHG init too. However, the dependencies of MMI upon R2D and FCHG don't start until mmiInit(), and that call is driven by Switch_ON() code, hence the wait for R2D and FCHG init can be made in that code path instead of the MMI task. Furthermore, with our new way of signaling PWON button boot to MMI, we need a new wait to ensure that the MMI task is up - previously this assurance was provided by the wait for Kp pointers to be set. Solution: revert our previous PEI init hold-off additions to MMI, add a new flag indicating MMI task init done, and put the combined wait for all needed conditions into our new PWON button boot code in power.c.
author Mychaela Falconia <falcon@freecalypso.org>
date Tue, 27 Apr 2021 06:24:52 +0000
parents 4e78acac3d88
children 4f839e1991e8
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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); 

}