thread-r0drv-nt.cpp revision 327eb9cb3b67ef426f4f654a97412afa0b86fb56
/* $Id$ */
/** @file
* IPRT - Threads, Ring-0 Driver, NT.
*/
/*
* Copyright (C) 2006-2007 Sun Microsystems, Inc.
*
* This file is part of VirtualBox Open Source Edition (OSE), as
* available from http://www.virtualbox.org. This file is free software;
* you can redistribute it and/or modify it under the terms of the GNU
* General Public License (GPL) as published by the Free Software
* Foundation, in version 2 as it comes in the "COPYING" file of the
* VirtualBox OSE distribution. VirtualBox OSE is distributed in the
* hope that it will be useful, but WITHOUT ANY WARRANTY of any kind.
*
* The contents of this file may alternatively be used under the terms
* of the Common Development and Distribution License Version 1.0
* (CDDL) only, as it comes in the "COPYING.CDDL" file of the
* VirtualBox OSE distribution, in which case the provisions of the
* CDDL are applicable instead of those of the GPL.
*
* You may elect to license modified versions of this file under the
* terms and conditions of either the GPL or the CDDL or both.
*
* Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa
* Clara, CA 95054 USA or visit http://www.sun.com if you need
* additional information or have any questions.
*/
/*******************************************************************************
* Header Files *
*******************************************************************************/
#include "the-nt-kernel.h"
#include <iprt/thread.h>
#include <iprt/err.h>
#include <iprt/assert.h>
#include <iprt/asm.h>
#include "internal-r0drv-nt.h"
__BEGIN_DECLS
NTSTATUS NTAPI ZwYieldExecution(void);
__END_DECLS
RTDECL(RTNATIVETHREAD) RTThreadNativeSelf(void)
{
return (RTNATIVETHREAD)PsGetCurrentThread();
}
RTDECL(int) RTThreadSleep(unsigned cMillies)
{
LARGE_INTEGER Interval;
Interval.QuadPart = -(int64_t)cMillies * 10000;
NTSTATUS rcNt = KeDelayExecutionThread(KernelMode, TRUE, &Interval);
switch (rcNt)
{
case STATUS_SUCCESS:
return VINF_SUCCESS;
case STATUS_ALERTED:
case STATUS_USER_APC:
return VERR_INTERRUPTED;
default:
return RTErrConvertFromNtStatus(rcNt);
}
}
RTDECL(bool) RTThreadYield(void)
{
return ZwYieldExecution() != STATUS_NO_YIELD_PERFORMED;
}
RTDECL(bool) RTThreadPreemptIsEnabled(RTTHREAD hThread)
{
Assert(hThread == NIL_RTTHREAD);
KIRQL Irql = KeGetCurrentIrql();
if (Irql > APC_LEVEL)
return false;
#if defined(RT_ARCH_X86) || defined(RT_ARCH_AMD64)
if (!(ASMGetFlags() & 0x00000200 /* X86_EFL_IF */))
return false;
#endif
return true;
}
RTDECL(bool) RTThreadPreemptIsPending(RTTHREAD hThread)
{
Assert(hThread == NIL_RTTHREAD);
/*
* Read the globals and check if they are useful.
*/
uint32_t const offQuantumEnd = g_offrtNtPbQuantumEnd;
uint32_t const cbQuantumEnd = g_cbrtNtPbQuantumEnd;
uint32_t const offDpcQueueDepth = g_offrtNtPbDpcQueueDepth;
if (!offQuantumEnd && !cbQuantumEnd && !offDpcQueueDepth)
return false;
Assert((offQuantumEnd && cbQuantumEnd) || (!offQuantumEnd && !cbQuantumEnd));
/*
* Disable interrupts so we won't be messed around.
*/
bool fPending;
RTCCUINTREG fSavedFlags = ASMIntDisableFlags();
#ifdef RT_ARCH_X86
PKPCR pPcr = (PKPCR)__readfsdword(RT_OFFSETOF(KPCR,SelfPcr));
uint8_t *pbPrcb = (uint8_t *)pPcr->Prcb;
#elif defined(RT_ARCH_AMD64)
/* HACK ALERT! The offset is from windbg/vista64. */
PKPCR pPcr = (PKPCR)__readgsqword(RT_OFFSETOF(KPCR,Self));
uint8_t *pbPrcb = (uint8_t *)pPcr->CurrentPrcb;
#else
# error "port me"
#endif
/* Check QuantumEnd. */
if (cbQuantumEnd == 1)
{
uint8_t volatile *pbQuantumEnd = (uint8_t volatile *)(pbPrcb + offQuantumEnd);
fPending = *pbQuantumEnd == TRUE;
}
else if (cbQuantumEnd == sizeof(uint32_t))
{
uint32_t volatile *pu32QuantumEnd = (uint32_t volatile *)(pbPrcb + offQuantumEnd);
fPending = *pu32QuantumEnd != 0;
}
/* Check DpcQueueDepth. */
if ( !fPending
&& offDpcQueueDepth)
{
uint32_t volatile *pu32DpcQueueDepth = (uint32_t volatile *)(pbPrcb + offDpcQueueDepth);
fPending = *pu32DpcQueueDepth > 0;
}
ASMSetFlags(fSavedFlags);
return fPending;
}
RTDECL(void) RTThreadPreemptDisable(PRTTHREADPREEMPTSTATE pState)
{
AssertPtr(pState);
Assert(pState->uchOldIrql == 255);
Assert(KeGetCurrentIrql() <= DISPATCH_LEVEL);
KeRaiseIrql(DISPATCH_LEVEL, &pState->uchOldIrql);
}
RTDECL(void) RTThreadPreemptRestore(PRTTHREADPREEMPTSTATE pState)
{
AssertPtr(pState);
KeLowerIrql(pState->uchOldIrql);
pState->uchOldIrql = 255;
}