generated from hulk/gd32e23x_template_cmake_vscode
feature(actuator):添加推杆驱动函数新函数
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@@ -9,4 +9,6 @@ void actuator_init(void);
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void actuator_output(actuator_channel_t channel, uint16_t duty, actuator_direction_t direction);
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void actuator_stop(actuator_channel_t channel);
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#endif // ACTUATOR_H
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+23
-2
@@ -80,19 +80,21 @@ void actuator_output(actuator_channel_t channel, uint16_t duty, actuator_directi
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// For example, setting the duty cycle to a specific value to activate the actuator
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if (channel == ACTUATOR_CH1) {
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if (direction == DIRECTION_PUSH) {
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SEGGER_RTT_printf(0, "Actuator CH1 PUSH with duty %d\n", duty);
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SEGGER_RTT_printf(0, "[ACTUATOR] Actuator CH1 PUSH with duty %d\n", duty);
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gpio_bit_reset(ACTUATOR_CH1_GPIO_PORT, ACTUATOR_CH1_GPIO_PIN); // Set direction LOW
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timer_channel_output_pulse_value_config(ACTUATOR_PWM_TIMER, ACTUATOR_CH1_PWM_TIMER_CH, duty);
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} else if (direction == DIRECTION_PULL) {
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SEGGER_RTT_printf(0, "Actuator CH1 PULL with duty %d\n", duty);
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SEGGER_RTT_printf(0, "[ACTUATOR] Actuator CH1 PULL with duty %d\n", duty);
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gpio_bit_set(ACTUATOR_CH1_GPIO_PORT, ACTUATOR_CH1_GPIO_PIN); // Set direction HIGH
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timer_channel_output_pulse_value_config(ACTUATOR_PWM_TIMER, ACTUATOR_CH1_PWM_TIMER_CH, (999 - duty));
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}
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} else if (channel == ACTUATOR_CH2) {
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if (direction == DIRECTION_PUSH) {
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SEGGER_RTT_printf(0, "[ACTUATOR] Actuator CH2 PUSH with duty %d\n", duty);
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gpio_bit_reset(ACTUATOR_CH2_GPIO_PORT, ACTUATOR_CH2_GPIO_PIN); // Set direction LOW
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timer_channel_output_pulse_value_config(ACTUATOR_PWM_TIMER, ACTUATOR_CH2_PWM_TIMER_CH, duty);
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} else if (direction == DIRECTION_PULL) {
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SEGGER_RTT_printf(0, "[ACTUATOR] Actuator CH2 PULL with duty %d\n", duty);
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gpio_bit_set(ACTUATOR_CH2_GPIO_PORT, ACTUATOR_CH2_GPIO_PIN); // Set direction HIGH
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timer_channel_output_pulse_value_config(ACTUATOR_PWM_TIMER, ACTUATOR_CH2_PWM_TIMER_CH, (999 - duty));
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}
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@@ -103,4 +105,23 @@ void actuator_output(actuator_channel_t channel, uint16_t duty, actuator_directi
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gpio_bit_reset(ACTUATOR_CH1_GPIO_PORT, ACTUATOR_CH1_GPIO_PIN); // Set CH1 direction LOW
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gpio_bit_reset(ACTUATOR_CH2_GPIO_PORT, ACTUATOR_CH2_GPIO_PIN); // Set CH2 direction LOW
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}
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}
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void actuator_stop(actuator_channel_t channel) {
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if(channel == ACTUATOR_CH1) {
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SEGGER_RTT_printf(0, "[ACTUATOR] Stopping Actuator CH1\n");
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timer_channel_output_pulse_value_config(ACTUATOR_PWM_TIMER, ACTUATOR_CH1_PWM_TIMER_CH, 999); // Ensure CH1 is off
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gpio_bit_set(ACTUATOR_CH1_GPIO_PORT, ACTUATOR_CH1_GPIO_PIN); // Set CH1 direction LOW
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} else if(channel == ACTUATOR_CH2) {
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SEGGER_RTT_printf(0, "[ACTUATOR] Stopping Actuator CH2\n");
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timer_channel_output_pulse_value_config(ACTUATOR_PWM_TIMER, ACTUATOR_CH2_PWM_TIMER_CH, 999); // Ensure CH2 is off
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gpio_bit_set(ACTUATOR_CH2_GPIO_PORT, ACTUATOR_CH2_GPIO_PIN); // Set CH2 direction LOW
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} else {
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// Invalid channel, handle error if necessary
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SEGGER_RTT_printf(0, "[ACTUATOR] Invalid channel specified for stop: %d\n", channel);
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timer_channel_output_pulse_value_config(ACTUATOR_PWM_TIMER, ACTUATOR_CH1_PWM_TIMER_CH, 999); // Ensure CH1 is off
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timer_channel_output_pulse_value_config(ACTUATOR_PWM_TIMER, ACTUATOR_CH2_PWM_TIMER_CH, 999); // Ensure CH2 is off
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gpio_bit_set(ACTUATOR_CH1_GPIO_PORT, ACTUATOR_CH1_GPIO_PIN); // Set CH1 direction LOW
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gpio_bit_set(ACTUATOR_CH2_GPIO_PORT, ACTUATOR_CH2_GPIO_PIN); // Set CH2 direction LOW
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}
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}
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