181 lines
5.7 KiB
C
181 lines
5.7 KiB
C
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/*
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* This file is part of Adafruit for EFR32 project
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*
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* The MIT License (MIT)
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*
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* Copyright 2023 Silicon Laboratories Inc. www.silabs.com
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy
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* of this software and associated documentation files (the "Software"), to deal
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* in the Software without restriction, including without limitation the rights
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* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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* copies of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in
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* all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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* THE SOFTWARE.
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*/
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#include "py/runtime.h"
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#include "common-hal/pwmio/PWMOut.h"
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#include "shared-bindings/pwmio/PWMOut.h"
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#include "shared-bindings/microcontroller/Pin.h"
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STATIC sl_pwm_instance_t pwm_handle[TIM_BANK_ARRAY_LEN];
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STATIC bool never_reset_tim[TIM_BANK_ARRAY_LEN];
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mcu_tim_pin_obj_t mcu_tim_list[TIM_BANK_ARRAY_LEN] = {
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TIM(TIMER0, 0, FN_TIMER0_CC0, NULL),
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TIM(TIMER1, 0, FN_TIMER1_CC0, NULL),
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TIM(TIMER2, 0, FN_TIMER2_CC0, NULL),
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TIM(TIMER3, 0, FN_TIMER3_CC0, NULL),
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TIM(TIMER4, 0, FN_TIMER4_CC0, NULL),
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};
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// Reset all pwm channel
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void pwmout_reset(void) {
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uint8_t tim_index;
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for (tim_index = 0; tim_index < TIM_BANK_ARRAY_LEN; tim_index++) {
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mcu_tim_pin_obj_t *l_tim = &mcu_tim_list[tim_index];
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if (l_tim->pin != NULL) {
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sl_pwm_deinit(&pwm_handle[tim_index]);
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}
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}
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}
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// Create a PWM object associated with the given pin
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pwmout_result_t common_hal_pwmio_pwmout_construct(pwmio_pwmout_obj_t *self,
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const mcu_pin_obj_t *pin,
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uint16_t duty,
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uint32_t frequency,
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bool variable_frequency) {
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uint8_t tim_num = TIM_BANK_ARRAY_LEN;
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uint8_t percent = (duty * 100) / 65535;
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sl_pwm_config_t pwm_config;
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pwm_config.frequency = frequency;
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pwm_config.polarity = PWM_ACTIVE_LOW;
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mcu_tim_pin_obj_t *l_tim;
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uint8_t tim_index;
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if (self->tim == NULL) {
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for (tim_index = 0; tim_index < tim_num; tim_index++) {
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l_tim = &mcu_tim_list[tim_index];
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if ((l_tim->pin == NULL && pin->function_list[l_tim->fn_index] == 1)
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|| l_tim->pin == pin) {
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l_tim->pin = pin;
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self->tim = l_tim;
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self->handle = &pwm_handle[tim_index];
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break;
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}
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}
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}
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if (self->tim == NULL) {
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return PWMOUT_ALL_TIMERS_ON_PIN_IN_USE;
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}
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self->duty_cycle = duty;
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self->variable_frequency = variable_frequency;
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self->frequency = frequency;
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self->handle->port = pin->port;
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self->handle->pin = pin->number;
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self->handle->timer = self->tim->timer;
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self->handle->channel = self->tim->channel;
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self->tim->pin = pin;
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if (SL_STATUS_OK != sl_pwm_init(self->handle, &pwm_config)) {
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return PWMOUT_INITIALIZATION_ERROR;
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}
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sl_pwm_start(self->handle);
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sl_pwm_set_duty_cycle(self->handle, percent);
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common_hal_mcu_pin_claim(pin);
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return PWMOUT_OK;
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}
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// Mark pwm obj to never reset after reload
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void common_hal_pwmio_pwmout_never_reset(pwmio_pwmout_obj_t *self) {
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uint8_t tim_index;
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for (tim_index = 0; tim_index < TIM_BANK_ARRAY_LEN; tim_index++) {
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if (&mcu_tim_list[tim_index] == self->tim) {
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never_reset_tim[tim_index] = true;
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common_hal_never_reset_pin(self->tim->pin);
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break;
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}
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}
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}
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// Pwm will be reset after reloading.
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void common_hal_pwmio_pwmout_reset_ok(pwmio_pwmout_obj_t *self) {
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uint8_t tim_index;
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for (tim_index = 0; tim_index < TIM_BANK_ARRAY_LEN; tim_index++) {
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if (&mcu_tim_list[tim_index] == self->tim) {
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never_reset_tim[tim_index] = false;
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break;
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}
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}
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}
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// Check pwm obj status, deinited or not
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bool common_hal_pwmio_pwmout_deinited(pwmio_pwmout_obj_t *self) {
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return self->tim == NULL;
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}
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// Deint pwm obj
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void common_hal_pwmio_pwmout_deinit(pwmio_pwmout_obj_t *self) {
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sl_pwm_deinit(self->handle);
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common_hal_reset_pin(self->tim->pin);
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mcu_tim_pin_obj_t *l_tim = self->tim;
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l_tim->pin = NULL;
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}
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// Set pwm duty cycle
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void common_hal_pwmio_pwmout_set_duty_cycle(pwmio_pwmout_obj_t *self,
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uint16_t duty) {
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uint8_t percent = (duty * 100) / 65535;
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sl_pwm_set_duty_cycle(self->handle, percent);
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self->duty_cycle = duty;
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}
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// Get pwm duty cycle
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uint16_t common_hal_pwmio_pwmout_get_duty_cycle(pwmio_pwmout_obj_t *self) {
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return self->duty_cycle;
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}
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// Set pwm frequency
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void common_hal_pwmio_pwmout_set_frequency(pwmio_pwmout_obj_t *self,
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uint32_t frequency) {
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sl_pwm_config_t pwm_config;
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pwm_config.frequency = frequency;
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pwm_config.polarity = PWM_ACTIVE_LOW;
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sl_pwm_init(self->handle, &pwm_config);
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}
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// Get pwm frequency
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uint32_t common_hal_pwmio_pwmout_get_frequency(pwmio_pwmout_obj_t *self) {
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return self->frequency;
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}
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// Check variable frequency
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bool common_hal_pwmio_pwmout_get_variable_frequency(pwmio_pwmout_obj_t *self) {
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return self->variable_frequency;
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}
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// Get pin value in pwmio obj
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const mcu_pin_obj_t *common_hal_pwmio_pwmout_get_pin(pwmio_pwmout_obj_t *self) {
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return self->tim->pin;
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}
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