mp-r0drv-darwin.cpp revision 1ba8a0ccd2665ea7cdb82f6b0f65c5145265c786
/* $Id$ */
/** @file
* IPRT - Multiprocessor, Ring-0 Driver, Darwin.
*/
/*
* Copyright (C) 2008 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-darwin-kernel.h"
#include <iprt/mp.h>
#include <iprt/err.h>
#include <iprt/asm.h>
#include "r0drv/mp-r0drv.h"
#define MY_DARWIN_MAX_CPUS (0xf + 1) /* see MAX_CPUS */
DECLINLINE(int) rtMpDarwinMaxCpus(void)
{
return ml_get_max_cpus();
}
RTDECL(RTCPUID) RTMpCpuId(void)
{
return cpu_number();
}
RTDECL(int) RTMpCpuIdToSetIndex(RTCPUID idCpu)
{
return idCpu < MY_DARWIN_MAX_CPUS ? (int)idCpu : -1;
}
RTDECL(RTCPUID) RTMpCpuIdFromSetIndex(int iCpu)
{
return (unsigned)iCpu < MY_DARWIN_MAX_CPUS ? (RTCPUID)iCpu : NIL_RTCPUID;
}
RTDECL(RTCPUID) RTMpGetMaxCpuId(void)
{
return rtMpDarwinMaxCpus() - 1;
}
RTDECL(bool) RTMpIsCpuPossible(RTCPUID idCpu)
{
return idCpu < MY_DARWIN_MAX_CPUS
&& idCpu < (RTCPUID)rtMpDarwinMaxCpus();
}
RTDECL(PRTCPUSET) RTMpGetSet(PRTCPUSET pSet)
{
}
RTDECL(RTCPUID) RTMpGetCount(void)
{
return rtMpDarwinMaxCpus();
}
RTDECL(PRTCPUSET) RTMpGetOnlineSet(PRTCPUSET pSet)
{
/** @todo darwin R0 MP */
return RTMpGetSet(pSet);
}
RTDECL(RTCPUID) RTMpGetOnlineCount(void)
{
/** @todo darwin R0 MP */
return RTMpGetCount();
}
RTDECL(bool) RTMpIsCpuOnline(RTCPUID idCpu)
{
/** @todo darwin R0 MP */
return RTMpIsCpuPossible(idCpu);
}
RTDECL(PRTCPUSET) RTMpGetPresentSet(PRTCPUSET pSet)
{
return RTMpGetSet(pSet);
}
RTDECL(RTCPUID) RTMpGetPresentCount(void)
{
return RTMpGetCount();
}
RTDECL(bool) RTMpIsCpuPresent(RTCPUID idCpu)
{
return RTMpIsCpuPossible(idCpu);
}
RTDECL(uint32_t) RTMpGetCurFrequency(RTCPUID idCpu)
{
/** @todo darwin R0 MP (rainy day) */
return 0;
}
RTDECL(uint32_t) RTMpGetMaxFrequency(RTCPUID idCpu)
{
/** @todo darwin R0 MP (rainy day) */
return 0;
}
/**
* Wrapper between the native darwin per-cpu callback and PFNRTWORKER
* for the RTMpOnAll API.
*
* @param pvArg Pointer to the RTMPARGS package.
*/
static void rtmpOnAllDarwinWrapper(void *pvArg)
{
PRTMPARGS pArgs = (PRTMPARGS)pvArg;
pArgs->pfnWorker(cpu_number(), pArgs->pvUser1, pArgs->pvUser2);
}
RTDECL(int) RTMpOnAll(PFNRTMPWORKER pfnWorker, void *pvUser1, void *pvUser2)
{
RTMPARGS Args;
Args.pfnWorker = pfnWorker;
Args.pvUser1 = pvUser1;
Args.pvUser2 = pvUser2;
Args.idCpu = NIL_RTCPUID;
Args.cHits = 0;
mp_rendezvous_no_intrs(rtmpOnAllDarwinWrapper, &Args);
return VINF_SUCCESS;
}
/**
* Wrapper between the native darwin per-cpu callback and PFNRTWORKER
* for the RTMpOnOthers API.
*
* @param pvArg Pointer to the RTMPARGS package.
*/
static void rtmpOnOthersDarwinWrapper(void *pvArg)
{
PRTMPARGS pArgs = (PRTMPARGS)pvArg;
RTCPUID idCpu = cpu_number();
if (pArgs->idCpu != idCpu)
pArgs->pfnWorker(idCpu, pArgs->pvUser1, pArgs->pvUser2);
}
RTDECL(int) RTMpOnOthers(PFNRTMPWORKER pfnWorker, void *pvUser1, void *pvUser2)
{
int rc;
RTMPARGS Args;
Args.pfnWorker = pfnWorker;
Args.pvUser1 = pvUser1;
Args.pvUser2 = pvUser2;
Args.idCpu = NIL_RTCPUID;
Args.cHits = 0;
mp_rendezvous_no_intrs(rtmpOnOthersDarwinWrapper, &Args);
return VINF_SUCCESS;
}
/**
* Wrapper between the native darwin per-cpu callback and PFNRTWORKER
* for the RTMpOnSpecific API.
*
* @param pvArg Pointer to the RTMPARGS package.
*/
static void rtmpOnSpecificDarwinWrapper(void *pvArg)
{
PRTMPARGS pArgs = (PRTMPARGS)pvArg;
RTCPUID idCpu = cpu_number();
if (pArgs->idCpu == idCpu)
{
pArgs->pfnWorker(idCpu, pArgs->pvUser1, pArgs->pvUser2);
ASMAtomicIncU32(&pArgs->cHits);
}
}
RTDECL(int) RTMpOnSpecific(RTCPUID idCpu, PFNRTMPWORKER pfnWorker, void *pvUser1, void *pvUser2)
{
int rc;
RTMPARGS Args;
Args.pfnWorker = pfnWorker;
Args.pvUser1 = pvUser1;
Args.pvUser2 = pvUser2;
Args.idCpu = idCpu;
Args.cHits = 0;
mp_rendezvous_no_intrs(rtmpOnSpecificDarwinWrapper, &Args);
return Args.cHits == 1
? VINF_SUCCESS
: VERR_CPU_NOT_FOUND;
}