modified example accordingto latest version of irext-core
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/*
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* Copyright (C) 2016 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#ifndef SYSTEM_PERIPHERALMANAGER_UART_DEVICE_H_
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#define SYSTEM_PERIPHERALMANAGER_UART_DEVICE_H_
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#include <sys/cdefs.h>
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#include <sys/types.h>
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__BEGIN_DECLS
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/// @defgroup Uart Uart device interface
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/// @brief Functions to control an UART device.
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///
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/// These functions can be used to control an UART device.
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/// @{
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/// UART Parity
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typedef enum AUartParity {
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AUART_PARITY_NONE = 0, /**< No parity */
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AUART_PARITY_EVEN = 1, /**< Even parity */
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AUART_PARITY_ODD = 2, /**< Odd parity */
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AUART_PARITY_MARK = 3, /**< Mark parity, always 1 */
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AUART_PARITY_SPACE = 4 /**< Space parity, always 0 */
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} AUartParity;
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/// Modem control lines.
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typedef enum AUartModemControlLine {
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AUART_MODEM_CONTROL_LE = 1 << 0, /**< Data set ready/Line enable */
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AUART_MODEM_CONTROL_DTR = 1 << 1, /**< Data terminal ready */
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AUART_MODEM_CONTROL_RTS = 1 << 2, /**< Request to send */
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AUART_MODEM_CONTROL_ST = 1 << 3, /**< Secondary TXD */
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AUART_MODEM_CONTROL_SR = 1 << 4, /**< Secondary RXD */
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AUART_MODEM_CONTROL_CTS = 1 << 5, /**< Clear to send */
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AUART_MODEM_CONTROL_CD = 1 << 6, /**< Data carrier detect */
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AUART_MODEM_CONTROL_RI = 1 << 7, /**< Ring */
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AUART_MODEM_CONTROL_DSR = 1 << 8 /**< Data set ready */
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} AUartModemControlLine;
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// Hardware Flow Control
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typedef enum AUartHardwareFlowControl {
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AUART_HARDWARE_FLOW_CONTROL_NONE = 0, /**< No hardware flow control */
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AUART_HARDWARE_FLOW_CONTROL_AUTO_RTSCTS = 1 /**< Auto RTS/CTS */
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} AUartHardwareFlowControl;
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/// Flush queue selection
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typedef enum AUartFlushDirection {
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AUART_FLUSH_IN = 0, /**< Flushes data received but not read */
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AUART_FLUSH_OUT = 1, /**< Flushes data written but not transmitted */
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AUART_FLUSH_IN_OUT = 2 /**< Flushes both in and out */
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} AUartFlushDirection;
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typedef struct AUartDevice AUartDevice;
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/// Writes to a UART device.
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/// @param device Pointer to the AUartDevice struct.
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/// @param data Data to write.
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/// @param len Size of the data to write.
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/// @param bytes_written Output pointer to the number of bytes written.
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/// @return 0 on success, errno on error.
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int AUartDevice_write(const AUartDevice* device,
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const void* data,
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uint32_t len,
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uint32_t* bytes_written);
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/// Reads from a UART device.
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/// @param device Pointer to the AUartDevice struct.
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/// @param data Buffer to read the data into.
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/// @param len Number of bytes to read.
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/// @param bytes_read Output pointer to the number of bytes read.
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/// @return 0 on success, errno on error.
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int AUartDevice_read(const AUartDevice* device,
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void* data,
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uint32_t len,
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uint32_t* bytes_read);
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/// Sets the input and output speed of a UART device.
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/// @param device Pointer to the AUartDevice struct.
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/// @param baudrate Speed in baud.
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/// @return 0 on success, errno on error.
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int AUartDevice_setBaudrate(const AUartDevice* device, uint32_t baudrate);
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/// Sets number of stop bits for the UART device.
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/// @param device Pointer to the AUartDevice struct.
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/// @param stop_bits Number of stop bits. Typically 1 or 2.
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/// @return 0 on success, errno on error.
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int AUartDevice_setStopBits(const AUartDevice* device, uint32_t stop_bits);
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/// Sets the data size of a character for the UART device.
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/// @param device Pointer to the AUartDevice struct.
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/// @param data_size Number of bits per character. Typically between 5 and 8.
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/// @return 0 on success, errno on error.
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int AUartDevice_setDataSize(const AUartDevice* device, uint32_t data_size);
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/// Sets the parity mode for the UART device.
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/// @param device Pointer to the AUartDevice struct.
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/// @param mode Parity mode.
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/// @return 0 on success, errno on error.
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int AUartDevice_setParity(const AUartDevice* device, AUartParity mode);
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/// Sets the hardware flow control mode for the UART device.
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/// @param device Pointer to the AUartDevice struct.
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/// @param mode Flow control mode.
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/// @return 0 on success, errno on error.
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int AUartDevice_setHardwareFlowControl(const AUartDevice* device,
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AUartHardwareFlowControl mode);
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/// Sets the modem control bits for the UART device.
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/// @param device Pointer to the AUartDevice struct.
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/// @param lines Lines to set. AUartModemControlLine values OR'ed together.
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/// @return 0 on success, errno on error.
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int AUartDevice_setModemControl(const AUartDevice* device, uint32_t lines);
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/// Clears the modem control bits for the UART device.
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/// @param device Pointer to the AUartDevice struct.
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/// @param lines Lines to clear. AUartModemControlLine values OR'ed together.
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/// @return 0 on success, errno on error.
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int AUartDevice_clearModemControl(const AUartDevice* device, uint32_t lines);
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/// Sends a break to the UART device.
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/// @param device Pointer to the AUartDevice struct.
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/// @param duration Duration of break transmission in milliseconds. If 0,
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/// transmits zero-valued bits for at least 0.25 seconds, and not more
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/// than 0.5 seconds.
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/// @return 0 on success, errno on error.
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int AUartDevice_sendBreak(const AUartDevice* device, uint32_t duration_msecs);
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/// Flushes specified queue for the UART device.
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/// @param device Pointer to the AUartDevice struct.
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/// @param direction Direction to flush.
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/// @return 0 on success, errno on error.
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int AUartDevice_flush(const AUartDevice* device, AUartFlushDirection direction);
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/// Gets a file descriptor to be notified when data can be read.
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///
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/// You can use this file descriptor to poll on incoming data instead of
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/// actively reading for new data.
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///
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/// @param device Pointer to the AUartDevice struct.
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/// @param fd Output pointer to the file descriptor.
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/// @return 0 on success, errno on error.
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int AUartDevice_getPollingFd(const AUartDevice* device, int* fd);
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/// Acknowledges an input event.
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///
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/// This must be called after receiving an event notification on the polling
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/// file descriptor.
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/// If you don't acknowledge an event, peripheral manager will assume you are
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/// still processing it and you will not receive any more events.
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/// If you acknowledge an event before reading the data from the device, you
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/// will receive an event immediately as there will still be data available.
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///
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/// @param fd File descriptor to acknowledge the event on.
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/// @return 0 on success, errno on error.
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int AUartDevice_ackInputEvent(int fd);
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/// Destroys a AUartDevice struct.
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/// @param device Pointer to the AUartDevice struct.
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void AUartDevice_delete(AUartDevice* device);
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/// @}
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__END_DECLS
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#endif // SYSTEM_PERIPHERALMANAGER_UART_DEVICE_H_
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