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358 lines
9.3 KiB
358 lines
9.3 KiB
/* |
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* Copyright (c) 2019, Manivannan Sadhasivam <mani@kernel.org> |
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* |
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* SPDX-License-Identifier: Apache-2.0 |
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*/ |
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#define DT_DRV_COMPAT nxp_imx_iuart |
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#include <zephyr/device.h> |
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#include <zephyr/drivers/uart.h> |
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#include <zephyr/drivers/clock_control.h> |
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#include <zephyr/irq.h> |
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#include <errno.h> |
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#include <fsl_uart.h> |
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#include <zephyr/drivers/pinctrl.h> |
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struct mcux_iuart_config { |
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UART_Type *base; |
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const struct device *clock_dev; |
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clock_control_subsys_t clock_subsys; |
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uint32_t baud_rate; |
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/* initial parity, 0 for none, 1 for odd, 2 for even */ |
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uint8_t parity; |
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const struct pinctrl_dev_config *pincfg; |
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#ifdef CONFIG_UART_INTERRUPT_DRIVEN |
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void (*irq_config_func)(const struct device *dev); |
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#endif |
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}; |
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struct mcux_iuart_data { |
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#ifdef CONFIG_UART_INTERRUPT_DRIVEN |
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uart_irq_callback_user_data_t callback; |
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void *cb_data; |
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#endif |
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}; |
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static int mcux_iuart_poll_in(const struct device *dev, unsigned char *c) |
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{ |
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const struct mcux_iuart_config *config = dev->config; |
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int ret = -1; |
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if (UART_GetStatusFlag(config->base, kUART_RxDataReadyFlag)) { |
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*c = UART_ReadByte(config->base); |
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ret = 0; |
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} |
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return ret; |
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} |
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static void mcux_iuart_poll_out(const struct device *dev, unsigned char c) |
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{ |
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const struct mcux_iuart_config *config = dev->config; |
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while (!(UART_GetStatusFlag(config->base, kUART_TxReadyFlag))) { |
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} |
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UART_WriteByte(config->base, c); |
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} |
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static int mcux_iuart_err_check(const struct device *dev) |
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{ |
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const struct mcux_iuart_config *config = dev->config; |
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int err = 0; |
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if (UART_GetStatusFlag(config->base, kUART_RxOverrunFlag)) { |
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err |= UART_ERROR_OVERRUN; |
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UART_ClearStatusFlag(config->base, kUART_RxOverrunFlag); |
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} |
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if (UART_GetStatusFlag(config->base, kUART_ParityErrorFlag)) { |
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err |= UART_ERROR_PARITY; |
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UART_ClearStatusFlag(config->base, kUART_ParityErrorFlag); |
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} |
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if (UART_GetStatusFlag(config->base, kUART_FrameErrorFlag)) { |
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err |= UART_ERROR_FRAMING; |
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UART_ClearStatusFlag(config->base, kUART_FrameErrorFlag); |
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} |
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return err; |
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} |
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#ifdef CONFIG_UART_INTERRUPT_DRIVEN |
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static int mcux_iuart_fifo_fill(const struct device *dev, |
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const uint8_t *tx_data, |
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int len) |
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{ |
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const struct mcux_iuart_config *config = dev->config; |
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int num_tx = 0U; |
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while ((len - num_tx > 0) && |
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(UART_GetStatusFlag(config->base, kUART_TxEmptyFlag))) { |
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UART_WriteByte(config->base, tx_data[num_tx++]); |
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} |
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return num_tx; |
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} |
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static int mcux_iuart_fifo_read(const struct device *dev, uint8_t *rx_data, |
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const int len) |
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{ |
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const struct mcux_iuart_config *config = dev->config; |
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int num_rx = 0U; |
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while ((len - num_rx > 0) && |
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(UART_GetStatusFlag(config->base, kUART_RxDataReadyFlag))) { |
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rx_data[num_rx++] = UART_ReadByte(config->base); |
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} |
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return num_rx; |
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} |
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static void mcux_iuart_irq_tx_enable(const struct device *dev) |
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{ |
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const struct mcux_iuart_config *config = dev->config; |
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UART_EnableInterrupts(config->base, kUART_TxEmptyEnable); |
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} |
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static void mcux_iuart_irq_tx_disable(const struct device *dev) |
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{ |
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const struct mcux_iuart_config *config = dev->config; |
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UART_DisableInterrupts(config->base, kUART_TxEmptyEnable); |
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} |
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static int mcux_iuart_irq_tx_complete(const struct device *dev) |
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{ |
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const struct mcux_iuart_config *config = dev->config; |
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return (UART_GetStatusFlag(config->base, kUART_TxEmptyFlag)) != 0U; |
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} |
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static int mcux_iuart_irq_tx_ready(const struct device *dev) |
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{ |
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const struct mcux_iuart_config *config = dev->config; |
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uint32_t mask = kUART_TxEmptyEnable; |
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return (UART_GetEnabledInterrupts(config->base) & mask) |
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&& mcux_iuart_irq_tx_complete(dev); |
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} |
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static void mcux_iuart_irq_rx_enable(const struct device *dev) |
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{ |
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const struct mcux_iuart_config *config = dev->config; |
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uint32_t mask = kUART_RxDataReadyEnable; |
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UART_EnableInterrupts(config->base, mask); |
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} |
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static void mcux_iuart_irq_rx_disable(const struct device *dev) |
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{ |
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const struct mcux_iuart_config *config = dev->config; |
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uint32_t mask = kUART_RxDataReadyEnable; |
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UART_DisableInterrupts(config->base, mask); |
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} |
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static int mcux_iuart_irq_rx_full(const struct device *dev) |
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{ |
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const struct mcux_iuart_config *config = dev->config; |
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return (UART_GetStatusFlag(config->base, kUART_RxDataReadyFlag)) != 0U; |
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} |
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static int mcux_iuart_irq_rx_pending(const struct device *dev) |
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{ |
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const struct mcux_iuart_config *config = dev->config; |
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uint32_t mask = kUART_RxDataReadyEnable; |
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return (UART_GetEnabledInterrupts(config->base) & mask) |
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&& mcux_iuart_irq_rx_full(dev); |
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} |
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static void mcux_iuart_irq_err_enable(const struct device *dev) |
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{ |
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const struct mcux_iuart_config *config = dev->config; |
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uint32_t mask = kUART_RxOverrunEnable | kUART_ParityErrorEnable | |
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kUART_FrameErrorEnable; |
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UART_EnableInterrupts(config->base, mask); |
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} |
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static void mcux_iuart_irq_err_disable(const struct device *dev) |
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{ |
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const struct mcux_iuart_config *config = dev->config; |
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uint32_t mask = kUART_RxOverrunEnable | kUART_ParityErrorEnable | |
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kUART_FrameErrorEnable; |
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UART_DisableInterrupts(config->base, mask); |
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} |
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static int mcux_iuart_irq_is_pending(const struct device *dev) |
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{ |
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return mcux_iuart_irq_tx_ready(dev) || mcux_iuart_irq_rx_pending(dev); |
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} |
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static int mcux_iuart_irq_update(const struct device *dev) |
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{ |
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return 1; |
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} |
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static void mcux_iuart_irq_callback_set(const struct device *dev, |
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uart_irq_callback_user_data_t cb, |
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void *cb_data) |
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{ |
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struct mcux_iuart_data *data = dev->data; |
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data->callback = cb; |
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data->cb_data = cb_data; |
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} |
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static void mcux_iuart_isr(const struct device *dev) |
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{ |
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struct mcux_iuart_data *data = dev->data; |
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if (data->callback) { |
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data->callback(dev, data->cb_data); |
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} |
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} |
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#endif /* CONFIG_UART_INTERRUPT_DRIVEN */ |
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static int mcux_iuart_init(const struct device *dev) |
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{ |
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const struct mcux_iuart_config *config = dev->config; |
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uart_config_t uart_config; |
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uint32_t clock_freq; |
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int err; |
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if (!device_is_ready(config->clock_dev)) { |
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return -ENODEV; |
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} |
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if (clock_control_get_rate(config->clock_dev, config->clock_subsys, |
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&clock_freq)) { |
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return -EINVAL; |
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} |
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UART_GetDefaultConfig(&uart_config); |
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uart_config.enableTx = true; |
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uart_config.enableRx = true; |
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uart_config.baudRate_Bps = config->baud_rate; |
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clock_control_on(config->clock_dev, config->clock_subsys); |
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switch (config->parity) { |
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case UART_CFG_PARITY_NONE: |
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uart_config.parityMode = kUART_ParityDisabled; |
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break; |
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case UART_CFG_PARITY_EVEN: |
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uart_config.parityMode = kUART_ParityEven; |
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break; |
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case UART_CFG_PARITY_ODD: |
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uart_config.parityMode = kUART_ParityOdd; |
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break; |
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default: |
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return -ENOTSUP; |
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} |
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UART_Init(config->base, &uart_config, clock_freq); |
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err = pinctrl_apply_state(config->pincfg, PINCTRL_STATE_DEFAULT); |
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if (err) { |
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clock_control_off(config->clock_dev, config->clock_subsys); |
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return err; |
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} |
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#ifdef CONFIG_UART_INTERRUPT_DRIVEN |
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config->irq_config_func(dev); |
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#endif |
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return 0; |
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} |
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static DEVICE_API(uart, mcux_iuart_driver_api) = { |
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.poll_in = mcux_iuart_poll_in, |
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.poll_out = mcux_iuart_poll_out, |
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.err_check = mcux_iuart_err_check, |
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#ifdef CONFIG_UART_INTERRUPT_DRIVEN |
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.fifo_fill = mcux_iuart_fifo_fill, |
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.fifo_read = mcux_iuart_fifo_read, |
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.irq_tx_enable = mcux_iuart_irq_tx_enable, |
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.irq_tx_disable = mcux_iuart_irq_tx_disable, |
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.irq_tx_complete = mcux_iuart_irq_tx_complete, |
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.irq_tx_ready = mcux_iuart_irq_tx_ready, |
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.irq_rx_enable = mcux_iuart_irq_rx_enable, |
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.irq_rx_disable = mcux_iuart_irq_rx_disable, |
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.irq_rx_ready = mcux_iuart_irq_rx_full, |
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.irq_err_enable = mcux_iuart_irq_err_enable, |
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.irq_err_disable = mcux_iuart_irq_err_disable, |
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.irq_is_pending = mcux_iuart_irq_is_pending, |
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.irq_update = mcux_iuart_irq_update, |
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.irq_callback_set = mcux_iuart_irq_callback_set, |
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#endif |
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}; |
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#ifdef CONFIG_UART_INTERRUPT_DRIVEN |
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#define MCUX_IUART_IRQ_INIT(n, i) \ |
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do { \ |
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IRQ_CONNECT(DT_INST_IRQ_BY_IDX(n, i, irq), \ |
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DT_INST_IRQ_BY_IDX(n, i, priority), \ |
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mcux_iuart_isr, DEVICE_DT_INST_GET(n), 0); \ |
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\ |
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irq_enable(DT_INST_IRQ_BY_IDX(n, i, irq)); \ |
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} while (false) |
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#define IUART_MCUX_CONFIG_FUNC(n) \ |
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static void mcux_iuart_config_func_##n(const struct device *dev) \ |
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{ \ |
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MCUX_IUART_IRQ_INIT(n, 0); \ |
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\ |
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IF_ENABLED(DT_INST_IRQ_HAS_IDX(n, 1), \ |
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(MCUX_IUART_IRQ_INIT(n, 1);)) \ |
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} |
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#define IUART_MCUX_IRQ_CFG_FUNC_INIT(n) \ |
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.irq_config_func = mcux_iuart_config_func_##n |
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#define IUART_MCUX_INIT_CFG(n) \ |
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IUART_MCUX_DECLARE_CFG(n, IUART_MCUX_IRQ_CFG_FUNC_INIT(n)) |
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#else |
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#define IUART_MCUX_CONFIG_FUNC(n) |
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#define IUART_MCUX_IRQ_CFG_FUNC_INIT |
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#define IUART_MCUX_INIT_CFG(n) \ |
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IUART_MCUX_DECLARE_CFG(n, IUART_MCUX_IRQ_CFG_FUNC_INIT) |
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#endif |
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#define IUART_MCUX_DECLARE_CFG(n, IRQ_FUNC_INIT) \ |
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static const struct mcux_iuart_config mcux_iuart_##n##_config = { \ |
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.base = (UART_Type *) DT_INST_REG_ADDR(n), \ |
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.clock_dev = DEVICE_DT_GET(DT_INST_CLOCKS_CTLR(n)), \ |
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.clock_subsys = (clock_control_subsys_t)DT_INST_CLOCKS_CELL(n, name),\ |
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.baud_rate = DT_INST_PROP(n, current_speed), \ |
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.parity = DT_INST_ENUM_IDX(n, parity), \ |
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.pincfg = PINCTRL_DT_INST_DEV_CONFIG_GET(n), \ |
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IRQ_FUNC_INIT \ |
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} |
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#define IUART_MCUX_INIT(n) \ |
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\ |
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static struct mcux_iuart_data mcux_iuart_##n##_data; \ |
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\ |
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static const struct mcux_iuart_config mcux_iuart_##n##_config;\ |
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\ |
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DEVICE_DT_INST_DEFINE(n, \ |
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mcux_iuart_init, \ |
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NULL, \ |
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&mcux_iuart_##n##_data, \ |
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&mcux_iuart_##n##_config, \ |
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PRE_KERNEL_1, \ |
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CONFIG_SERIAL_INIT_PRIORITY, \ |
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&mcux_iuart_driver_api); \ |
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\ |
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PINCTRL_DT_INST_DEFINE(n); \ |
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\ |
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IUART_MCUX_CONFIG_FUNC(n) \ |
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\ |
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IUART_MCUX_INIT_CFG(n); |
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DT_INST_FOREACH_STATUS_OKAY(IUART_MCUX_INIT)
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