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Darwin 0.2 Driver Kit
/*
* Copyright (c) 1999 Apple Computer, Inc. All rights reserved.
*
* @APPLE_LICENSE_HEADER_START@
*
* Portions Copyright (c) 1999 Apple Computer, Inc. All Rights
* Reserved. This file contains Original Code and/or Modifications of
* Original Code as defined in and that are subject to the Apple Public
* Source License Version 1.1 (the "License"). You may not use this file
* except in compliance with the License. Please obtain a copy of the
* License at http://www.apple.com/publicsource and read it before using
* this file.
*
* The Original Code and all software distributed under the License are
* distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY KIND, EITHER
* EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
* INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE OR NON- INFRINGEMENT. Please see the
* License for the specific language governing rights and limitations
* under the License.
*
* @APPLE_LICENSE_HEADER_END@
*/
/* Copyright (c) 1991 NeXT Computer, Inc. All rights reserved.
*
* NXConditionLock.m. Lock object with exported condition variable,
* kernel version.
*
* HISTORY
* 01-Aug-91 Doug Mitchell at NeXT
* Created.
*/
#define KERNEL 1
#define KERNEL_PRIVATE 1
#define ARCH_PRIVATE 1
#undef MACH_USER_API
#import <machkit/NXLock.h>
#import <kern/sched_prim.h>
#import <kernserv/lock.h>
/*
* _priv instance variable points to one of these.
*/
struct _priv {
simple_lock_t spin_lock;
lock_t sleep_lock;
int conditionVar;
};
@implementation NXConditionLock
- init
{
return [self initWith:0];
}
- initWith : (int)condition
{
struct _priv *p = _priv;
[super init];
if (p == 0) {
p = (struct _priv *)kalloc(sizeof (struct _priv));
p->spin_lock = simple_lock_alloc();
p->sleep_lock = lock_alloc();
_priv = p;
}
simple_lock_init(p->spin_lock);
lock_init(p->sleep_lock, TRUE);
p->conditionVar = condition;
return self;
}
- (int) condition
{
struct _priv *p = _priv;
return (p->conditionVar);
}
- free
{
struct _priv *p = _priv;
if (p) {
lock_free(p->sleep_lock);
simple_lock_free(p->spin_lock);
kfree(p, sizeof (struct _priv));
}
return [super free];
}
- lock
{
struct _priv *p = _priv;
lock_write(p->sleep_lock);
return self;
}
- unlock
{
struct _priv *p = _priv;
thread_wakeup_one(&p->conditionVar);
lock_done(p->sleep_lock);
return self;
}
- lockWhen : (int)condition
{
struct _priv *p = _priv;
/*
* First acquire ownership of the entire object.
*/
lock_write(p->sleep_lock);
while (condition != p->conditionVar) {
/*
* Need to hold a simple_lock when we call thread_sleep().
* Both _spin_lock and sleep_lock must be held to
* change _conditionVar.
*/
simple_lock(p->spin_lock);
lock_done(p->sleep_lock);
/*
* this is the critical section on a multi in which
* another thread could hold _sleep_lock, but they
* can't change _conditionVar. Holding _spin_lock here
* (until after assert_wait() is called from
* thread_sleep()) ensures that we'll be notified
* of changes in _conditionVar.
*/
thread_sleep((void *)&p->conditionVar, p->spin_lock, FALSE);
lock_write(p->sleep_lock);
}
return self;
}
- unlockWith : (int)condition
{
struct _priv *p = _priv;
/*
* _sleep_lock held, but not _spin_lock.
*/
simple_lock(p->spin_lock);
p->conditionVar = condition;
simple_unlock(p->spin_lock);
thread_wakeup_one(&p->conditionVar);
lock_done(p->sleep_lock);
return self;
}
@end
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