This ends up being just a file interface for dive computers that expose their data as a filesystem that can be mounted. Right now that's only the Garmin Descent Mk1, although technically the Uemis Zurich also did that (but oddly, and the backend was never merged into libdivecomputer). Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
320 lines
9.6 KiB
C
320 lines
9.6 KiB
C
/*
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* libdivecomputer
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*
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* Copyright (C) 2016 Jef Driesen
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston,
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* MA 02110-1301 USA
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*/
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#ifndef DC_IOSTREAM_H
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#define DC_IOSTREAM_H
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#include <stddef.h>
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#include <libdivecomputer/common.h>
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#include <libdivecomputer/context.h>
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#ifdef __cplusplus
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extern "C" {
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#endif /* __cplusplus */
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/**
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* Opaque object representing a I/O stream.
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*/
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typedef struct dc_iostream_t dc_iostream_t;
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/**
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* The parity checking scheme.
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*/
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typedef enum dc_parity_t {
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DC_PARITY_NONE, /**< No parity */
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DC_PARITY_ODD, /**< Odd parity */
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DC_PARITY_EVEN, /**< Even parity */
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DC_PARITY_MARK, /**< Mark parity (always 1) */
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DC_PARITY_SPACE /**< Space parity (alwasy 0) */
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} dc_parity_t;
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/**
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* The number of stop bits.
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*/
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typedef enum dc_stopbits_t {
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DC_STOPBITS_ONE, /**< 1 stop bit */
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DC_STOPBITS_ONEPOINTFIVE, /**< 1.5 stop bits*/
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DC_STOPBITS_TWO /**< 2 stop bits */
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} dc_stopbits_t;
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/**
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* The flow control.
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*/
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typedef enum dc_flowcontrol_t {
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DC_FLOWCONTROL_NONE, /**< No flow control */
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DC_FLOWCONTROL_HARDWARE, /**< Hardware (RTS/CTS) flow control */
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DC_FLOWCONTROL_SOFTWARE /**< Software (XON/XOFF) flow control */
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} dc_flowcontrol_t;
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/**
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* The direction of the data transmission.
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*/
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typedef enum dc_direction_t {
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DC_DIRECTION_INPUT = 0x01, /**< Input direction */
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DC_DIRECTION_OUTPUT = 0x02, /**< Output direction */
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DC_DIRECTION_ALL = DC_DIRECTION_INPUT | DC_DIRECTION_OUTPUT /**< All directions */
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} dc_direction_t;
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/**
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* The line signals.
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*/
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typedef enum dc_line_t {
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DC_LINE_DCD = 0x01, /**< Data carrier detect */
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DC_LINE_CTS = 0x02, /**< Clear to send */
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DC_LINE_DSR = 0x04, /**< Data set ready */
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DC_LINE_RNG = 0x08, /**< Ring indicator */
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} dc_line_t;
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/**
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* Get the transport type.
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*
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* @param[in] iostream A valid I/O stream.
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* @returns The transport type of the I/O stream.
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*/
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dc_transport_t
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dc_iostream_get_transport (dc_iostream_t *iostream);
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/**
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* Set the read timeout.
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*
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* There are three distinct modes available:
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*
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* 1. Blocking (timeout < 0):
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*
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* The read operation is blocked until all the requested bytes have
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* been received. If the requested number of bytes does not arrive,
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* the operation will block forever.
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*
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* 2. Non-blocking (timeout == 0):
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*
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* The read operation returns immediately with the bytes that have
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* already been received, even if no bytes have been received.
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*
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* 3. Timeout (timeout > 0):
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*
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* The read operation is blocked until all the requested bytes have
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* been received. If the requested number of bytes does not arrive
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* within the specified amount of time, the operation will return
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* with the bytes that have already been received.
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*
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* @param[in] iostream A valid I/O stream.
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* @param[in] timeout The timeout in milliseconds.
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* @returns #DC_STATUS_SUCCESS on success, or another #dc_status_t code
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* on failure.
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*/
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dc_status_t
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dc_iostream_set_timeout (dc_iostream_t *iostream, int timeout);
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/**
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* Set the state of the break condition.
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*
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* @param[in] iostream A valid I/O stream.
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* @param[in] value The break condition state.
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* @returns #DC_STATUS_SUCCESS on success, or another #dc_status_t code
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* on failure.
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*/
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dc_status_t
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dc_iostream_set_break (dc_iostream_t *iostream, unsigned int value);
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/**
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* Set the state of the DTR line.
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*
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* @param[in] iostream A valid I/O stream.
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* @param[in] value The DTR line state.
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* @returns #DC_STATUS_SUCCESS on success, or another #dc_status_t code
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* on failure.
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*/
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dc_status_t
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dc_iostream_set_dtr (dc_iostream_t *iostream, unsigned int value);
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/**
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* Set the state of the RTS line.
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*
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* @param[in] iostream A valid I/O stream.
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* @param[in] value The RTS line state.
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* @returns #DC_STATUS_SUCCESS on success, or another #dc_status_t code
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* on failure.
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*/
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dc_status_t
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dc_iostream_set_rts (dc_iostream_t *iostream, unsigned int value);
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/**
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* Query the state of the line signals.
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*
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* @param[in] iostream A valid I/O stream.
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* @param[out] value A location to store the bitmap with the state
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* of the line signals.
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* @returns #DC_STATUS_SUCCESS on success, or another #dc_status_t code
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* on failure.
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*/
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dc_status_t
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dc_iostream_get_lines (dc_iostream_t *iostream, unsigned int *value);
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/**
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* Query the number of available bytes in the input buffer.
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*
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* @param[in] iostream A valid I/O stream.
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* @param[out] value A location to store the number of bytes in the
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* input buffer.
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* @returns #DC_STATUS_SUCCESS on success, or another #dc_status_t code
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* on failure.
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*/
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dc_status_t
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dc_iostream_get_available (dc_iostream_t *iostream, size_t *value);
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/**
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* Configure the line settings.
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*
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* @param[in] iostream A valid I/O stream.
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* @param[in] baudrate The baud rate setting.
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* @param[in] databits The number of data bits.
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* @param[in] parity The parity setting.
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* @param[in] stopbits The number of stop bits.
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* @param[in] flowcontrol The flow control setting.
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* @returns #DC_STATUS_SUCCESS on success, or another #dc_status_t code
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* on failure.
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*/
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dc_status_t
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dc_iostream_configure (dc_iostream_t *iostream, unsigned int baudrate, unsigned int databits, dc_parity_t parity, dc_stopbits_t stopbits, dc_flowcontrol_t flowcontrol);
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/**
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* Poll the I/O stream for available data.
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*
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* There are three distinct modes available:
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*
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* 1. Blocking (timeout < 0):
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*
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* The poll operation is blocked until one or more bytes have been
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* received. If no bytes are received, the operation will block
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* forever.
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*
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* 2. Non-blocking (timeout == 0):
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*
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* The poll operation returns immediately, even if no bytes have
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* been received.
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*
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* 3. Timeout (timeout > 0):
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*
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* The poll operation is blocked until one or more bytes have been
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* received. If no bytes are received within the specified amount of
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* time, the operation will return with a timeout.
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*
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* @param[in] iostream A valid I/O stream.
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* @param[in] timeout The timeout in milliseconds.
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* @returns #DC_STATUS_SUCCESS on success, #DC_STATUS_TIMEOUT on
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* timeout, or another #dc_status_t code on failure.
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*/
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dc_status_t
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dc_iostream_poll (dc_iostream_t *iostream, int timeout);
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/**
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* Read data from the I/O stream.
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*
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* @param[in] iostream A valid I/O stream.
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* @param[out] data The memory buffer to read the data into.
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* @param[in] size The number of bytes to read.
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* @param[out] actual An (optional) location to store the actual
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* number of bytes transferred.
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* @returns #DC_STATUS_SUCCESS on success, or another #dc_status_t code
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* on failure.
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*/
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dc_status_t
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dc_iostream_read (dc_iostream_t *iostream, void *data, size_t size, size_t *actual);
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/**
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* Write data to the I/O stream.
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*
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* @param[in] iostream A valid I/O stream.
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* @param[in] data The memory buffer to write the data from.
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* @param[in] size The number of bytes to write.
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* @param[out] actual An (optional) location to store the actual
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* number of bytes transferred.
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* @returns #DC_STATUS_SUCCESS on success, or another #dc_status_t code
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* on failure.
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*/
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dc_status_t
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dc_iostream_write (dc_iostream_t *iostream, const void *data, size_t size, size_t *actual);
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/**
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* Perform an I/O stream specific request.
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*
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* @param[in] iostream A valid I/O stream.
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* @param[in] request The request to perform.
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* @param[in,out] data The request specific data.
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* @param[in] size The size of the request specific data.
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* @returns #DC_STATUS_SUCCESS on success, or another #dc_status_t code
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* on failure.
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*/
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dc_status_t
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dc_iostream_ioctl (dc_iostream_t *iostream, unsigned int request, void *data, size_t size);
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/**
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* Flush the internal output buffer and wait until the data has been
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* transmitted.
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*
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* @param[in] iostream A valid I/O stream.
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* @returns #DC_STATUS_SUCCESS on success, or another #dc_status_t code
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* on failure.
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*/
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dc_status_t
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dc_iostream_flush (dc_iostream_t *iostream);
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/**
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* Discards all data from the internal buffers.
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*
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* @param[in] iostream A valid I/O stream.
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* @param[in] direction The direction of the buffer(s).
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* @returns #DC_STATUS_SUCCESS on success, or another #dc_status_t code
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* on failure.
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*/
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dc_status_t
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dc_iostream_purge (dc_iostream_t *iostream, dc_direction_t direction);
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/**
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* Suspend execution of the current thread for the specified amount of
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* time.
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*
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* @param[in] iostream A valid I/O stream.
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* @param[in] milliseconds The number of milliseconds to sleep.
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* @returns #DC_STATUS_SUCCESS on success, or another #dc_status_t code
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* on failure.
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*/
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dc_status_t
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dc_iostream_sleep (dc_iostream_t *iostream, unsigned int milliseconds);
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/**
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* Close the I/O stream and free all resources.
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*
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* @param[in] iostream A valid I/O stream.
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* @returns #DC_STATUS_SUCCESS on success, or another #dc_status_t code
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* on failure.
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*/
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dc_status_t
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dc_iostream_close (dc_iostream_t *iostream);
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dc_status_t
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dc_usb_storage_open (dc_iostream_t **out, dc_context_t *context, const char *name);
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#ifdef __cplusplus
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}
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#endif /* __cplusplus */
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#endif /* DC_IOSTREAM_H */
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