reactos/hal/halx86/generic/halinit.c
Johannes Anderwald 64a772037e - Revert 49927 "Update to trunk" as it breaks KsStudio (again)
svn path=/branches/audio-bringup/; revision=49979
2010-12-07 21:46:43 +00:00

188 lines
5.1 KiB
C

/*
* PROJECT: ReactOS HAL
* LICENSE: GPL - See COPYING in the top level directory
* FILE: hal/halx86/generic/halinit.c
* PURPOSE: HAL Entrypoint and Initialization
* PROGRAMMERS: Alex Ionescu (alex.ionescu@reactos.org)
*/
/* INCLUDES ******************************************************************/
#include <hal.h>
#define NDEBUG
#include <debug.h>
/* GLOBALS *******************************************************************/
BOOLEAN HalpPciLockSettings;
/* PRIVATE FUNCTIONS *********************************************************/
VOID
NTAPI
HalpGetParameters(IN PLOADER_PARAMETER_BLOCK LoaderBlock)
{
PCHAR CommandLine;
/* Make sure we have a loader block and command line */
if ((LoaderBlock) && (LoaderBlock->LoadOptions))
{
/* Read the command line */
CommandLine = LoaderBlock->LoadOptions;
/* Check if PCI is locked */
if (strstr(CommandLine, "PCILOCK")) HalpPciLockSettings = TRUE;
/* Check for initial breakpoint */
if (strstr(CommandLine, "BREAK")) DbgBreakPoint();
}
}
/* FUNCTIONS *****************************************************************/
/*
* @implemented
*/
BOOLEAN
NTAPI
HalInitSystem(IN ULONG BootPhase,
IN PLOADER_PARAMETER_BLOCK LoaderBlock)
{
PKPRCB Prcb = KeGetCurrentPrcb();
/* Check the boot phase */
if (!BootPhase)
{
/* Phase 0... save bus type */
HalpBusType = LoaderBlock->u.I386.MachineType & 0xFF;
/* Get command-line parameters */
HalpGetParameters(LoaderBlock);
/* Checked HAL requires checked kernel */
#if DBG
if (!(Prcb->BuildType & PRCB_BUILD_DEBUG))
{
/* No match, bugcheck */
KeBugCheckEx(MISMATCHED_HAL, 2, Prcb->BuildType, 1, 0);
}
#else
/* Release build requires release HAL */
if (Prcb->BuildType & PRCB_BUILD_DEBUG)
{
/* No match, bugcheck */
KeBugCheckEx(MISMATCHED_HAL, 2, Prcb->BuildType, 0, 0);
}
#endif
#ifdef CONFIG_SMP
/* SMP HAL requires SMP kernel */
if (Prcb->BuildType & PRCB_BUILD_UNIPROCESSOR)
{
/* No match, bugcheck */
KeBugCheckEx(MISMATCHED_HAL, 2, Prcb->BuildType, 0, 0);
}
#endif
/* Validate the PRCB */
if (Prcb->MajorVersion != PRCB_MAJOR_VERSION)
{
/* Validation failed, bugcheck */
KeBugCheckEx(MISMATCHED_HAL, 1, Prcb->MajorVersion, 1, 0);
}
#ifndef _MINIHAL_
/* Initialize ACPI */
HalpSetupAcpiPhase0(LoaderBlock);
/* Initialize the PICs */
HalpInitializePICs(TRUE);
#endif
/* Force initial PIC state */
KfRaiseIrql(KeGetCurrentIrql());
/* Initialize CMOS lock */
KeInitializeSpinLock(&HalpSystemHardwareLock);
/* Initialize CMOS */
HalpInitializeCmos();
/* Fill out the dispatch tables */
HalQuerySystemInformation = HaliQuerySystemInformation;
HalSetSystemInformation = HaliSetSystemInformation;
HalInitPnpDriver = HaliInitPnpDriver;
#ifndef _MINIHAL_
HalGetDmaAdapter = HalpGetDmaAdapter;
#else
HalGetDmaAdapter = NULL;
#endif
HalGetInterruptTranslator = NULL; // FIXME: TODO
#ifndef _MINIHAL_
HalResetDisplay = HalpBiosDisplayReset;
#else
HalResetDisplay = NULL;
#endif
HalHaltSystem = HaliHaltSystem;
/* Register IRQ 2 */
HalpRegisterVector(IDT_INTERNAL,
PRIMARY_VECTOR_BASE + 2,
PRIMARY_VECTOR_BASE + 2,
HIGH_LEVEL);
/* Setup I/O space */
HalpDefaultIoSpace.Next = HalpAddressUsageList;
HalpAddressUsageList = &HalpDefaultIoSpace;
/* Setup busy waiting */
HalpCalibrateStallExecution();
#ifndef _MINIHAL_
/* Initialize the clock */
HalpInitializeClock();
#endif
/*
* We could be rebooting with a pending profile interrupt,
* so clear it here before interrupts are enabled
*/
HalStopProfileInterrupt(ProfileTime);
/* Do some HAL-specific initialization */
HalpInitPhase0(LoaderBlock);
}
else if (BootPhase == 1)
{
/* Initialize bus handlers */
HalpInitBusHandlers();
#ifndef _MINIHAL_
/* Enable IRQ 0 */
HalpEnableInterruptHandler(IDT_DEVICE,
0,
PRIMARY_VECTOR_BASE,
CLOCK2_LEVEL,
HalpClockInterrupt,
Latched);
/* Enable IRQ 8 */
HalpEnableInterruptHandler(IDT_DEVICE,
0,
PRIMARY_VECTOR_BASE + 8,
PROFILE_LEVEL,
HalpProfileInterrupt,
Latched);
/* Initialize DMA. NT does this in Phase 0 */
HalpInitDma();
#endif
/* Do some HAL-specific initialization */
HalpInitPhase1();
}
/* All done, return */
return TRUE;
}