rtt-f030/bsp/lpc408x/drivers/drv_hwtimer.c

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2015-09-06 16:37:43 +08:00
/*
* File : drv_hwtimer.c
* This file is part of RT-Thread RTOS
* COPYRIGHT (C) 2015, RT-Thread Development Team
*
* The license and distribution terms for this file may be
* found in the file LICENSE in this distribution or at
* http://www.rt-thread.org/license/LICENSE
*
* Change Logs:
* Date Author Notes
* 2015-09-02 heyuanjie87 the first version
*/
#include <rtthread.h>
#include <rtdevice.h>
#include "lpc_timer.h"
#include "lpc_clkpwr.h"
#include "drv_hwtimer.h"
#ifdef RT_USING_HWTIMER
static void NVIC_Configuration(void)
{
NVIC_EnableIRQ(TIMER0_IRQn);
}
static void timer_init(rt_hwtimer_t *timer, rt_uint32_t state)
{
LPC_TIM_TypeDef *tim;
TIM_TIMERCFG_Type cfg;
tim = (LPC_TIM_TypeDef *)timer->parent.user_data;
TIM_DeInit(tim);
if (state == 1)
{
NVIC_Configuration();
cfg.PrescaleOption = TIM_PRESCALE_TICKVAL;
cfg.PrescaleValue = 0xFFFF;
TIM_Init(tim, TIM_TIMER_MODE, &cfg);
}
}
static rt_err_t timer_start(rt_hwtimer_t *timer, rt_uint32_t t, rt_hwtimer_mode_t opmode)
{
LPC_TIM_TypeDef *tim;
TIM_MATCHCFG_Type match;
tim = (LPC_TIM_TypeDef *)timer->parent.user_data;
match.MatchChannel = 0;
match.IntOnMatch = ENABLE;
match.ResetOnMatch = ENABLE;
match.StopOnMatch = (opmode == HWTIMER_MODE_ONESHOT)? ENABLE : DISABLE;
match.ExtMatchOutputType = 0;
match.MatchValue = t;
TIM_ConfigMatch(tim, &match);
TIM_Cmd(tim, ENABLE);
return RT_EOK;
}
static void timer_stop(rt_hwtimer_t *timer)
{
LPC_TIM_TypeDef *tim;
tim = (LPC_TIM_TypeDef *)timer->parent.user_data;
TIM_Cmd(tim, DISABLE);
}
static rt_err_t timer_ctrl(rt_hwtimer_t *timer, rt_uint32_t cmd, void *arg)
{
LPC_TIM_TypeDef *tim;
rt_err_t err = RT_EOK;
tim = (LPC_TIM_TypeDef *)timer->parent.user_data;
switch (cmd)
{
case HWTIMER_CTRL_FREQ_SET:
{
uint32_t clk;
uint32_t pre;
clk = CLKPWR_GetCLK(CLKPWR_CLKTYPE_PER);
pre = clk / *((uint32_t*)arg) - 1;
tim->PR = pre;
}
break;
default:
{
err = -RT_ENOSYS;
}
break;
}
return err;
}
static rt_uint32_t timer_counter_get(rt_hwtimer_t *timer)
{
LPC_TIM_TypeDef *tim;
tim = (LPC_TIM_TypeDef *)timer->parent.user_data;
return tim->TC;
}
static const struct rt_hwtimer_info _info =
{
1000000, /* the maximum count frequency can be set */
2000, /* the minimum count frequency can be set */
0xFFFFFF, /* the maximum counter value */
HWTIMER_CNTMODE_UP,/* Increment or Decreasing count mode */
};
static const struct rt_hwtimer_ops _ops =
{
timer_init,
timer_start,
timer_stop,
timer_counter_get,
timer_ctrl,
};
static rt_hwtimer_t _timer0;
int lpc_hwtimer_init(void)
{
_timer0.info = &_info;
_timer0.ops = &_ops;
rt_device_hwtimer_register(&_timer0, "timer0", LPC_TIM0);
return 0;
}
void TIMER0_IRQHandler(void)
{
if (TIM_GetIntStatus(LPC_TIM0, TIM_MR0_INT) != RESET)
{
TIM_ClearIntPending(LPC_TIM0, TIM_MR0_INT);
rt_device_hwtimer_isr(&_timer0);
}
}
INIT_BOARD_EXPORT(lpc_hwtimer_init);
#endif