C1523BDFEFCA55C3C85B763
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  #   %ˆÌËƒ­‹Êa–Ü4ý()¨‰P@Š�>¦-ÿÉ Ø    %/* SPDX-License-Identifier: GPL-2.0 WITH Linux-syscall-note */
#ifndef _LINUX_TIME_H
#define _LINUX_TIME_H

#include <linux/types.h>
#include <linux/time_types.h>

#ifndef _STRUCT_TIMESPEC
#define _STRUCT_TIMESPEC
struct timespec {
	__kernel_old_time_t	tv_sec;		/* seconds */
	long			tv_nsec;	/* nanoseconds */
};
#endif

struct timeval {
	__kernel_old_time_t	tv_sec;		/* seconds */
	__kernel_suseconds_t	tv_usec;	/* microseconds */
};

struct itimerspec {
	struct timespec it_interval;/* timer period */
	struct timespec it_value;	/* timer expiration */
};

struct itimerval {
	struct timeval it_interval;/* timer interval */
	struct timeval it_value;	/* current value */
};

struct timezone {
	int	tz_minuteswest;	/* minutes west of Greenwich */
	int	tz_dsttime;	/* type of dst correction */
};

/*
 * Names of the interval timers, and structure
 * defining a timer setting:
 */
#define	ITIMER_REAL		0
#define	ITIMER_VIRTUAL		1
#define	ITIMER_PROF		2

/*
 * The IDs of the various system clocks (for POSIX.1b interval timers):
 */
#define CLOCK_REALTIME			0
#define CLOCK_MONOTONIC			1
#define CLOCK_PROCESS_CPUTIME_ID	2
#define CLOCK_THREAD_CPUTIME_ID		3
#define CLOCK_MONOTONIC_RAW		4
#define CLOCK_REALTIME_COARSE		5
#define CLOCK_MONOTONIC_COARSE		6
#define CLOCK_BOOTTIME			7
#define CLOCK_REALTIME_ALARM		8
#define CLOCK_BOOTTIME_ALARM		9
/*
 * The driver implementing this got removed. The clock ID is kept as a
 * place holder. Do not reuse!
 */
#define CLOCK_SGI_CYCLE			10
#define CLOCK_TAI			11

#define MAX_CLOCKS			16
#define CLOCKS_MASK			(CLOCK_REALTIME | CLOCK_MONOTONIC)
#define CLOCKS_MONO			CLOCK_MONOTONIC

/*
 * The various flags for setting POSIX.1b interval timers:
 */
#define TIMER_ABSTIME			0x01

#endif /* _LINUX_TIME_H */
     'ˆÍÌƒ/µË¾É 	Z    '/* SPDX-License-Identifier: GPL-1.0+ WITH Linux-syscall-note */
/* 	pg.h (c) 1998  Grant R. Guenther <grant@torque.net>
 		       Under the terms of the GNU General Public License


	pg.h defines the user interface to the generic ATAPI packet
        command driver for parallel port ATAPI devices (pg). The
	driver is loosely modelled after the generic SCSI driver, sg,
	although the actual interface is different.

	The pg driver provides a simple character device interface for
        sending ATAPI commands to a device.  With the exception of the
	ATAPI reset operation, all operations are performed by a pair
        of read and write operations to the appropriate /dev/pgN device.
	A write operation delivers a command and any outbound data in
        a single buffer.  Normally, the write will succeed unless the
        device is offline or malfunctioning, or there is already another
	command pending.  If the write succeeds, it should be followed
        immediately by a read operation, to obtain any returned data and
        status information.  A read will fail if there is no operation
        in progress.

	As a special case, the device can be reset with a write operation,
        and in this case, no following read is expected, or permitted.

	There are no ioctl() operations.  Any single operation
	may transfer at most PG_MAX_DATA bytes.  Note that the driver must
        copy the data through an internal buffer.  In keeping with all
	current ATAPI devices, command packets are assumed to be exactly
	12 bytes in length.

	To permit future changes to this interface, the headers in the
	read and write buffers contain a single character "magic" flag.
        Currently this flag must be the character "P".

*/

#ifndef _LINUX_PG_H
#define _LINUX_PG_H

#define PG_MAGIC	'P'
#define PG_RESET	'Z'
#define PG_COMMAND	'C'

#define PG_MAX_DATA	32768

struct pg_write_hdr {

	char	magic;		/* == PG_MAGIC */
	char	func;		/* PG_RESET or PG_COMMAND */
	int     dlen;		/* number of bytes expected to transfer */
	int     timeout;	/* number of seconds before timeout */
	char	packet[12];	/* packet command */

};

struct pg_read_hdr {

	char	magic;		/* == PG_MAGIC */
	char	scsi;		/* "s