timer.c 3.5 KB

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  1. #include "timer.h"
  2. #include "gd32e230_timer.h"
  3. #include "adc.h"
  4. uint16_t voltage_s[200] = {0};
  5. uint16_t current_s[200] = {0};
  6. static void ConfigTimer14(unsigned short arr, unsigned short psc)
  7. {
  8. timer_parameter_struct timer_initpara; //timer_initpara用于存放定时器的参数
  9. //使能RCU相关时钟
  10. rcu_periph_clock_enable(RCU_TIMER14); //使能TIMER14的时钟
  11. timer_deinit(TIMER14); //设置TIMER14参数恢复默认值
  12. timer_struct_para_init(&timer_initpara); //初始化timer_initpara
  13. //配置TIMER14
  14. timer_initpara.prescaler = psc; //设置预分频器值
  15. timer_initpara.counterdirection = TIMER_COUNTER_UP; //设置向上计数模式
  16. timer_initpara.period = arr; //设置自动重装载值
  17. timer_initpara.clockdivision = TIMER_CKDIV_DIV1; //设置时钟分割
  18. timer_init(TIMER14, &timer_initpara); //根据参数初始化定时器
  19. timer_interrupt_enable(TIMER14, TIMER_INT_UP); //使能定时器的更新中断
  20. nvic_irq_enable(TIMER14_IRQn, 0); //配置NVIC设置优先级
  21. timer_disable(TIMER14); //使能定时器
  22. }
  23. static void ConfigTimer15(unsigned short arr, unsigned short psc)
  24. {
  25. timer_parameter_struct timer_initpara; //timer_initpara用于存放定时器的参数
  26. //使能RCU相关时钟
  27. rcu_periph_clock_enable(RCU_TIMER15); //使能TIMER15的时钟
  28. timer_deinit(TIMER15); //设置TIMER15参数恢复默认值
  29. timer_struct_para_init(&timer_initpara); //初始化timer_initpara
  30. //配置TIMER15
  31. timer_initpara.prescaler = psc; //设置预分频器值
  32. timer_initpara.counterdirection = TIMER_COUNTER_UP; //设置向上计数模式
  33. timer_initpara.period = arr; //设置自动重装载值
  34. timer_initpara.clockdivision = TIMER_CKDIV_DIV1; //设置时钟分割
  35. timer_init(TIMER15, &timer_initpara); //根据参数初始化定时器
  36. timer_interrupt_enable(TIMER15, TIMER_INT_UP); //使能定时器的更新中断
  37. nvic_irq_enable(TIMER15_IRQn, 3); //配置NVIC设置优先级
  38. timer_enable(TIMER15); //使能定时器
  39. }
  40. void InitTimer(void)
  41. {
  42. ConfigTimer14(99, 71); //100ns
  43. ConfigTimer15(9999, 7199); //1s
  44. }
  45. void ADC_TimerEnable(void)
  46. {
  47. timer_enable(TIMER14);
  48. }
  49. void ADC_TimerDisable(void)
  50. {
  51. timer_disable(TIMER14);
  52. }
  53. extern uint8_t flash_led;
  54. extern uint8_t read_flag;
  55. extern uint16_t adc_original_value[4];
  56. void TIMER14_IRQHandler(void)
  57. {
  58. static int index = 0;
  59. if(timer_interrupt_flag_get(TIMER14, TIMER_INT_FLAG_UP) == SET) //判断定时器更新中断是否发生
  60. {
  61. timer_interrupt_flag_clear(TIMER14, TIMER_INT_FLAG_UP); //清除定时器更新中断标志
  62. }
  63. // adc_original_value[0] = adc_channel_sample_V_P();
  64. // adc_original_value[1] = adc_channel_sample_V_S();
  65. // adc_original_value[2] = adc_channel_sample_I_P();
  66. // adc_original_value[3] = adc_channel_sample_I_S();
  67. if(adc_original_value[0]>0x20 )
  68. voltage_s[index] = adc_original_value[0] -5;
  69. else
  70. voltage_s[index] = 0;
  71. if(adc_original_value[2] > 0x10 )
  72. current_s[index++] = adc_original_value[2]-4;
  73. else
  74. current_s[index++] = 0;
  75. if(index == 200)
  76. {
  77. index = 0;
  78. ADC_TimerDisable(); //close timer and calculate
  79. read_flag = 1;
  80. }
  81. //adc_channel_sample()
  82. //read_flag = 1;
  83. //ADC_TimerDisable();
  84. }
  85. void TIMER15_IRQHandler(void)
  86. {
  87. if(timer_interrupt_flag_get(TIMER15, TIMER_INT_FLAG_UP) == SET) //判断定时器更新中断是否发生
  88. {
  89. timer_interrupt_flag_clear(TIMER15, TIMER_INT_FLAG_UP); //清除定时器更新中断标志
  90. }
  91. flash_led = 1;
  92. }