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haiku-beta6/headers/private/kernel/syscall_restart.h
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/*
* Copyright 2008, Haiku Inc. All rights reserved.
* Distributed under the terms of the MIT License.
*/
#ifndef _KERNEL_SYSCALL_RESTART_H
#define _KERNEL_SYSCALL_RESTART_H
#include <OS.h>
#include <thread.h>
/*! Helper function for syscalls with relative timeout.
Converts the given relative timeout to an absolute timeout or retrieves
the value from the syscall restart parameters, if the syscall has been
restarted. A negative value means infinite timeout.
*/
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static inline void
syscall_restart_handle_timeout_pre(bigtime_t& timeout)
{
// If restarted, get the timeout from the restart parameters. Otherwise
// convert relative timeout to an absolute one.
struct thread* thread = thread_get_current_thread();
if ((thread->flags & THREAD_FLAGS_SYSCALL_RESTARTED) != 0)
timeout = *(bigtime_t*)thread->syscall_restart.parameters;
else if (timeout >= 0) {
timeout += system_time();
// deal with overflow
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if (timeout < 0)
timeout = B_INFINITE_TIMEOUT;
}
}
/*! Helper function for syscalls with flags + timeout.
If necessary converts the given timeout to an absolute timeout or retrieves
the value from the syscall restart parameters, if the syscall has been
restarted.
*/
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static inline void
syscall_restart_handle_timeout_pre(uint32& flags, bigtime_t& timeout)
{
// If restarted, get the timeout from the restart parameters. Otherwise
// convert relative timeout to an absolute one. Note that we preserve
// relative 0 us timeouts, so that the syscall can still decide whether to
// return B_WOULD_BLOCK instead of B_TIMED_OUT.
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struct thread* thread = thread_get_current_thread();
if ((thread->flags & THREAD_FLAGS_SYSCALL_RESTARTED) != 0) {
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timeout = *(bigtime_t*)thread->syscall_restart.parameters;
if (timeout > 0 && (flags & B_RELATIVE_TIMEOUT) != 0)
flags = (flags & ~B_RELATIVE_TIMEOUT) | B_ABSOLUTE_TIMEOUT;
} else if ((flags & B_RELATIVE_TIMEOUT) != 0) {
if (timeout > 0) {
timeout += system_time();
// deal with overflow
if (timeout < 0)
timeout = B_INFINITE_TIMEOUT;
flags = (flags & ~B_RELATIVE_TIMEOUT) | B_ABSOLUTE_TIMEOUT;
}
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}
}
static inline status_t
syscall_restart_handle_timeout_post(status_t error, bigtime_t timeout)
{
if (error == B_INTERRUPTED) {
// interrupted -- store timeout and set flag for syscall restart
struct thread* thread = thread_get_current_thread();
*(bigtime_t*)thread->syscall_restart.parameters = timeout;
atomic_or(&thread->flags, THREAD_FLAGS_RESTART_SYSCALL);
}
return error;
}
static inline status_t
syscall_restart_handle_post(status_t error)
{
if (error == B_INTERRUPTED) {
// interrupted -- set flag for syscall restart
struct thread* thread = thread_get_current_thread();
atomic_or(&thread->flags, THREAD_FLAGS_RESTART_SYSCALL);
}
return error;
}
static inline bool
syscall_restart_ioctl_is_restarted()
{
struct thread* thread = thread_get_current_thread();
return (thread->flags & THREAD_FLAGS_IOCTL_SYSCALL) != 0
&& (thread->flags & THREAD_FLAGS_SYSCALL_RESTARTED) != 0;
}
static inline status_t
syscall_restart_ioctl_handle_post(status_t error)
{
if (error == B_INTERRUPTED) {
// interrupted -- set flag for syscall restart
struct thread* thread = thread_get_current_thread();
if ((thread->flags & THREAD_FLAGS_IOCTL_SYSCALL) != 0)
atomic_or(&thread->flags, THREAD_FLAGS_RESTART_SYSCALL);
}
return error;
}
#endif // _KERNEL_SYSCALL_RESTART_H