KT24-1110_65E-HA-651B/apps/common/key/adkey.c
2024-11-10 18:44:17 +08:00

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#include "key_driver.h"
#include "adkey.h"
#include "gpio.h"
#include "system/event.h"
#include "app_config.h"
#if TCFG_ADKEY_ENABLE
static const struct adkey_platform_data *__this = NULL;
u8 ad_get_key_value(void);
//按键驱动扫描参数列表
struct key_driver_para adkey_scan_para = {
.scan_time = 10, //按键扫描频率, 单位: ms
.last_key = NO_KEY, //上一次get_value按键值, 初始化为NO_KEY;
.filter_time = 2, //按键消抖延时;
.long_time = 75, //按键判定长按数量
.hold_time = (75 + 15), //按键判定HOLD数量
.click_delay_time = 20, //按键被抬起后等待连击延时数量
.key_type = KEY_DRIVER_TYPE_AD,
.get_value = ad_get_key_value,
};
u8 ad_get_key_value(void)
{
u8 i;
u16 ad_data;
if (!__this->enable) {
return NO_KEY;
}
/* ad_data = adc_get_voltage(__this->ad_channel); */
ad_data = adc_get_value(__this->ad_channel);
/* printf("ad_value = %d \n", ad_data); */
for (i = 0; i < ADKEY_MAX_NUM; i++) {
if ((ad_data <= __this->ad_value[i]) && (__this->ad_value[i] < 0x3ffL)) {
return __this->key_value[i];
}
}
return NO_KEY;
}
int adkey_init(const struct adkey_platform_data *adkey_data)
{
__this = adkey_data;
if (!__this) {
return -EINVAL;
}
if (!__this->enable) {
return KEY_NOT_SUPPORT;
}
adc_add_sample_ch(__this->ad_channel); //注意初始化AD_KEY之前先初始化ADC
#if (TCFG_ADKEY_LED_IO_REUSE || TCFG_ADKEY_IR_IO_REUSE || TCFG_ADKEY_LED_SPI_IO_REUSE)
#else
gpio_set_die(__this->adkey_pin, 0);
gpio_set_direction(__this->adkey_pin, 1);
gpio_set_pull_down(__this->adkey_pin, 0);
if (__this->extern_up_en) {
gpio_set_pull_up(__this->adkey_pin, 0);
} else {
gpio_set_pull_up(__this->adkey_pin, 1);
}
#endif
return 0;
}
#if (TCFG_ADKEY_LED_IO_REUSE || TCFG_ADKEY_IR_IO_REUSE || TCFG_ADKEY_LED_SPI_IO_REUSE)
#if TCFG_ADKEY_IR_IO_REUSE
static u8 ir_io_sus = 0;
extern u8 ir_io_suspend(void);
extern u8 ir_io_resume(void);
#endif
#if TCFG_ADKEY_LED_IO_REUSE
static u8 led_io_sus = 0;
extern u8 led_io_suspend(void);
extern u8 led_io_resume(void);
#endif
#if TCFG_ADKEY_LED_SPI_IO_REUSE
static u8 led_spi_sus = 0;
extern u8 led_spi_suspend(void);
extern u8 led_spi_resume(void);
#endif
u8 adc_io_reuse_enter(u32 ch)
{
if (ch == __this->ad_channel) {
#if TCFG_ADKEY_IR_IO_REUSE
if (ir_io_suspend()) {
return 1;
} else {
ir_io_sus = 1;
}
#endif
#if TCFG_ADKEY_LED_IO_REUSE
if (led_io_suspend()) {
return 1;
} else {
led_io_sus = 1;
}
#endif
#if TCFG_ADKEY_LED_SPI_IO_REUSE
if (led_spi_suspend()) {
return 1;
} else {
led_spi_sus = 1;
}
#endif
gpio_set_die(__this->adkey_pin, 0);
gpio_set_direction(__this->adkey_pin, 1);
gpio_set_pull_down(__this->adkey_pin, 0);
if (__this->extern_up_en) {
gpio_set_pull_up(__this->adkey_pin, 0);
} else {
gpio_set_pull_up(__this->adkey_pin, 1);
}
}
return 0;
}
u8 adc_io_reuse_exit(u32 ch)
{
if (ch == __this->ad_channel) {
#if TCFG_ADKEY_IR_IO_REUSE
if (ir_io_sus) {
ir_io_sus = 0;
ir_io_resume();
}
#endif
#if TCFG_ADKEY_LED_IO_REUSE
if (led_io_sus) {
led_io_sus = 0;
led_io_resume();
}
#endif
#if TCFG_ADKEY_LED_SPI_IO_REUSE
if (led_spi_sus) {
led_spi_sus = 0;
led_spi_resume();
}
#endif
}
return 0;
}
#endif
#endif /* #if TCFG_ADKEY_ENABLE */