239 lines
6.1 KiB
C
239 lines
6.1 KiB
C
/*
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* Copyright (c) 2019, Linaro Limited.
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*
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* SPDX-License-Identifier: Apache-2.0
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*/
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#include <counter.h>
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#include <fsl_gpt.h>
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#include <logging/log.h>
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LOG_MODULE_REGISTER(mcux_gpt, CONFIG_COUNTER_LOG_LEVEL);
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struct mcux_gpt_config {
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/* info must be first element */
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struct counter_config_info info;
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GPT_Type *base;
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clock_name_t clock_source;
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};
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struct mcux_gpt_data {
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counter_alarm_callback_t alarm_callback;
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counter_top_callback_t top_callback;
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void *alarm_user_data;
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void *top_user_data;
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};
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static int mcux_gpt_start(struct device *dev)
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{
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const struct mcux_gpt_config *config = dev->config->config_info;
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GPT_StartTimer(config->base);
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return 0;
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}
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static int mcux_gpt_stop(struct device *dev)
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{
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const struct mcux_gpt_config *config = dev->config->config_info;
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GPT_StopTimer(config->base);
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return 0;
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}
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static u32_t mcux_gpt_read(struct device *dev)
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{
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const struct mcux_gpt_config *config = dev->config->config_info;
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return GPT_GetCurrentTimerCount(config->base);
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}
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static int mcux_gpt_set_alarm(struct device *dev, u8_t chan_id,
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const struct counter_alarm_cfg *alarm_cfg)
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{
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const struct mcux_gpt_config *config = dev->config->config_info;
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struct mcux_gpt_data *data = dev->driver_data;
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u32_t current = mcux_gpt_read(dev);
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u32_t ticks = alarm_cfg->ticks;
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if (chan_id != 0) {
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LOG_ERR("Invalid channel id");
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return -EINVAL;
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}
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if ((alarm_cfg->flags & COUNTER_ALARM_CFG_ABSOLUTE) == 0) {
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ticks += current;
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}
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if (data->alarm_callback) {
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return -EBUSY;
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}
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data->alarm_callback = alarm_cfg->callback;
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data->alarm_user_data = alarm_cfg->user_data;
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GPT_SetOutputCompareValue(config->base, kGPT_OutputCompare_Channel1,
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ticks);
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GPT_EnableInterrupts(config->base, kGPT_OutputCompare1InterruptEnable);
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return 0;
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}
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static int mcux_gpt_cancel_alarm(struct device *dev, u8_t chan_id)
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{
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const struct mcux_gpt_config *config = dev->config->config_info;
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struct mcux_gpt_data *data = dev->driver_data;
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if (chan_id != 0) {
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LOG_ERR("Invalid channel id");
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return -EINVAL;
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}
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GPT_DisableInterrupts(config->base, kGPT_OutputCompare1InterruptEnable);
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data->alarm_callback = NULL;
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return 0;
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}
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void mcux_gpt_isr(void *p)
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{
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struct device *dev = p;
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const struct mcux_gpt_config *config = dev->config->config_info;
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struct mcux_gpt_data *data = dev->driver_data;
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u32_t current = mcux_gpt_read(dev);
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u32_t status;
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status = GPT_GetStatusFlags(config->base, kGPT_OutputCompare1Flag |
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kGPT_RollOverFlag);
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GPT_ClearStatusFlags(config->base, status);
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__DSB();
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if ((status & kGPT_OutputCompare1Flag) && data->alarm_callback) {
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GPT_DisableInterrupts(config->base,
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kGPT_OutputCompare1InterruptEnable);
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counter_alarm_callback_t alarm_cb = data->alarm_callback;
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data->alarm_callback = NULL;
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alarm_cb(dev, 0, current, data->alarm_user_data);
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}
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if ((status & kGPT_RollOverFlag) && data->top_callback) {
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data->top_callback(dev, data->top_user_data);
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}
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}
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static u32_t mcux_gpt_get_pending_int(struct device *dev)
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{
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const struct mcux_gpt_config *config = dev->config->config_info;
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return GPT_GetStatusFlags(config->base, kGPT_OutputCompare1Flag);
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}
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static int mcux_gpt_set_top_value(struct device *dev,
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const struct counter_top_cfg *cfg)
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{
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const struct mcux_gpt_config *config = dev->config->config_info;
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struct mcux_gpt_data *data = dev->driver_data;
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if (cfg->ticks != config->info.max_top_value) {
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LOG_ERR("Wrap can only be set to 0x%x",
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config->info.max_top_value);
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return -ENOTSUP;
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}
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data->top_callback = cfg->callback;
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data->top_user_data = cfg->user_data;
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GPT_EnableInterrupts(config->base, kGPT_RollOverFlagInterruptEnable);
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return 0;
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}
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static u32_t mcux_gpt_get_top_value(struct device *dev)
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{
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const struct mcux_gpt_config *config = dev->config->config_info;
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return config->info.max_top_value;
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}
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static u32_t mcux_gpt_get_max_relative_alarm(struct device *dev)
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{
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const struct mcux_gpt_config *config = dev->config->config_info;
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return config->info.max_top_value;
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}
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static int mcux_gpt_init(struct device *dev)
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{
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const struct mcux_gpt_config *config = dev->config->config_info;
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gpt_config_t gptConfig;
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u32_t clock_freq;
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/* Adjust divider to match expected freq */
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clock_freq = CLOCK_GetFreq(config->clock_source);
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if (clock_freq % config->info.freq) {
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LOG_ERR("Cannot Adjust GPT freq to %u\n", config->info.freq);
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return -EINVAL;
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}
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GPT_GetDefaultConfig(&gptConfig);
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gptConfig.enableFreeRun = true; /* Do not reset on compare */
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gptConfig.clockSource = kGPT_ClockSource_Periph;
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gptConfig.divider = clock_freq / config->info.freq;
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GPT_Init(config->base, &gptConfig);
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return 0;
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}
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static const struct counter_driver_api mcux_gpt_driver_api = {
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.start = mcux_gpt_start,
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.stop = mcux_gpt_stop,
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.read = mcux_gpt_read,
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.set_alarm = mcux_gpt_set_alarm,
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.cancel_alarm = mcux_gpt_cancel_alarm,
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.set_top_value = mcux_gpt_set_top_value,
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.get_pending_int = mcux_gpt_get_pending_int,
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.get_top_value = mcux_gpt_get_top_value,
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.get_max_relative_alarm = mcux_gpt_get_max_relative_alarm,
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};
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#define GPT_DEVICE_INIT_MCUX(n) \
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static struct mcux_gpt_data mcux_gpt_data_ ## n; \
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\
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static const struct mcux_gpt_config mcux_gpt_config_ ## n = { \
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.base = (void *)DT_COUNTER_MCUX_GPT_ ## n ## _BASE_ADDRESS, \
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.clock_source = kCLOCK_PerClk, \
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.info = { \
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.max_top_value = UINT32_MAX, \
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.freq = 25000000, \
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.channels = 1, \
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}, \
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}; \
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\
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static int mcux_gpt_## n ##_init(struct device *dev); \
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DEVICE_AND_API_INIT(mcux_gpt ## n, \
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DT_COUNTER_MCUX_GPT_ ## n ## _NAME, \
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mcux_gpt_## n ##_init, \
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&mcux_gpt_data_ ## n, \
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&mcux_gpt_config_ ## n, \
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POST_KERNEL, CONFIG_KERNEL_INIT_PRIORITY_DEVICE, \
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&mcux_gpt_driver_api); \
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\
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static int mcux_gpt_## n ##_init(struct device *dev) \
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{ \
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IRQ_CONNECT(DT_COUNTER_MCUX_GPT_## n ##_IRQ, \
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DT_COUNTER_MCUX_GPT_## n ##_IRQ_PRI, \
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mcux_gpt_isr, DEVICE_GET(mcux_gpt ## n), 0); \
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irq_enable(DT_COUNTER_MCUX_GPT_## n ##_IRQ); \
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return mcux_gpt_init(dev); \
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} \
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#ifdef CONFIG_COUNTER_MCUX_GPT1
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GPT_DEVICE_INIT_MCUX(1)
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#endif
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#ifdef CONFIG_COUNTER_MCUX_GPT2
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GPT_DEVICE_INIT_MCUX(2)
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#endif
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