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https://github.com/reactos/reactos.git
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94c25baf85
And why the ARM HAL uses KPCR::InterruptRoutine, a field only defined in *powerpc*/ketypes.h, is beyond me, but OK... See Timo vs. Alex discussion, explaining that KIPCR is a ReactOS-only thing: https://reactos.org/archives/public/ros-dev/2008-August/010549.html
342 lines
6.6 KiB
C
342 lines
6.6 KiB
C
/*
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* PROJECT: ReactOS HAL
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* LICENSE: BSD - See COPYING.ARM in the top level directory
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* FILE: hal/halarm/generic/pic.c
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* PURPOSE: HAL PIC Management and Control Code
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* PROGRAMMERS: ReactOS Portable Systems Group
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*/
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/* INCLUDES *******************************************************************/
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#include <hal.h>
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#define NDEBUG
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#include <debug.h>
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#undef KeGetCurrentIrql
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/* GLOBALS ********************************************************************/
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ULONG HalpIrqlTable[HIGH_LEVEL + 1] =
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{
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0xFFFFFFFF, // IRQL 0 PASSIVE_LEVEL
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0xFFFFFFFD, // IRQL 1 APC_LEVEL
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0xFFFFFFF9, // IRQL 2 DISPATCH_LEVEL
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0xFFFFFFD9, // IRQL 3
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0xFFFFFF99, // IRQL 4
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0xFFFFFF19, // IRQL 5
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0xFFFFFE19, // IRQL 6
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0xFFFFFC19, // IRQL 7
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0xFFFFF819, // IRQL 8
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0xFFFFF019, // IRQL 9
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0xFFFFE019, // IRQL 10
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0xFFFFC019, // IRQL 11
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0xFFFF8019, // IRQL 12
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0xFFFF0019, // IRQL 13
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0xFFFE0019, // IRQL 14
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0xFFFC0019, // IRQL 15
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0xFFF80019, // IRQL 16
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0xFFF00019, // IRQL 17
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0xFFE00019, // IRQL 18
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0xFFC00019, // IRQL 19
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0xFF800019, // IRQL 20
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0xFF000019, // IRQL 21
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0xFE000019, // IRQL 22
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0xFC000019, // IRQL 23
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0xF0000019, // IRQL 24
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0x80000019, // IRQL 25
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0x19, // IRQL 26
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0x18, // IRQL 27 PROFILE_LEVEL
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0x10, // IRQL 28 CLOCK2_LEVEL
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0x00, // IRQL 29 IPI_LEVEL
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0x00, // IRQL 30 POWER_LEVEL
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0x00, // IRQL 31 HIGH_LEVEL
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};
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UCHAR HalpMaskTable[HIGH_LEVEL + 1] =
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{
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PROFILE_LEVEL, // INT 0 WATCHDOG
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APC_LEVEL, // INT 1 SOFTWARE INTERRUPT
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DISPATCH_LEVEL,// INT 2 COMM RX
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IPI_LEVEL, // INT 3 COMM TX
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CLOCK2_LEVEL, // INT 4 TIMER 0
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3,
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4,
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5,
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6,
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7,
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8,
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9,
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10,
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11,
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12,
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13,
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14,
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15,
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16,
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17,
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18,
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19,
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20,
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21,
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22,
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23,
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24,
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25,
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26,
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26,
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26
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};
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/* FUNCTIONS ******************************************************************/
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VOID
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HalpInitializeInterrupts(VOID)
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{
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PKPCR Pcr = KeGetPcr();
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/* Fill out the IRQL mappings */
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RtlCopyMemory(Pcr->IrqlTable, HalpIrqlTable, sizeof(Pcr->IrqlTable));
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RtlCopyMemory(Pcr->IrqlMask, HalpMaskTable, sizeof(Pcr->IrqlMask));
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}
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/* IRQL MANAGEMENT ************************************************************/
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/*
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* @implemented
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*/
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ULONG
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HalGetInterruptSource(VOID)
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{
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ULONG InterruptStatus;
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/* Get the interrupt status, and return the highest bit set */
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InterruptStatus = READ_REGISTER_ULONG(VIC_INT_STATUS);
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return 31 - _clz(InterruptStatus);
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}
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/*
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* @implemented
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*/
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KIRQL
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NTAPI
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KeGetCurrentIrql(VOID)
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{
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/* Return the IRQL */
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return KeGetPcr()->Irql;
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}
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/*
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* @implemented
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*/
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KIRQL
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NTAPI
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KeRaiseIrqlToDpcLevel(VOID)
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{
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PKPCR Pcr = KeGetPcr();
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KIRQL CurrentIrql;
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/* Save and update IRQL */
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CurrentIrql = Pcr->Irql;
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Pcr->Irql = DISPATCH_LEVEL;
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#ifdef IRQL_DEBUG
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/* Validate correct raise */
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if (CurrentIrql > DISPATCH_LEVEL) KeBugCheck(IRQL_NOT_GREATER_OR_EQUAL);
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#endif
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/* Return the previous value */
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return CurrentIrql;
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}
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/*
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* @implemented
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*/
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KIRQL
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NTAPI
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KeRaiseIrqlToSynchLevel(VOID)
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{
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PKPCR Pcr = KeGetPcr();
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KIRQL CurrentIrql;
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/* Save and update IRQL */
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CurrentIrql = Pcr->Irql;
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Pcr->Irql = SYNCH_LEVEL;
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#ifdef IRQL_DEBUG
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/* Validate correct raise */
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if (CurrentIrql > SYNCH_LEVEL)
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{
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/* Crash system */
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KeBugCheckEx(IRQL_NOT_GREATER_OR_EQUAL,
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CurrentIrql,
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SYNCH_LEVEL,
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0,
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1);
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}
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#endif
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/* Return the previous value */
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return CurrentIrql;
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}
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/*
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* @implemented
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*/
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KIRQL
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FASTCALL
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KfRaiseIrql(IN KIRQL NewIrql)
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{
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ARM_STATUS_REGISTER Flags;
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PKPCR Pcr = KeGetPcr();
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KIRQL CurrentIrql;
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ULONG InterruptMask;
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/* Disable interrupts */
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Flags = KeArmStatusRegisterGet();
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_disable();
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/* Read current IRQL */
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CurrentIrql = Pcr->Irql;
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#ifdef IRQL_DEBUG
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/* Validate correct raise */
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if (CurrentIrql > NewIrql)
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{
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/* Crash system */
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Pcr->Irql = PASSIVE_LEVEL;
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KeBugCheck(IRQL_NOT_GREATER_OR_EQUAL);
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}
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#endif
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/* Clear interrupts associated to the old IRQL */
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WRITE_REGISTER_ULONG(VIC_INT_CLEAR, 0xFFFFFFFF);
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/* Set the new interrupt mask */
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InterruptMask = Pcr->IrqlTable[NewIrql];
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WRITE_REGISTER_ULONG(VIC_INT_ENABLE, InterruptMask);
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/* Set new IRQL */
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Pcr->Irql = NewIrql;
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/* Restore interrupt state */
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if (!Flags.IrqDisable) _enable();
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/* Return old IRQL */
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return CurrentIrql;
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}
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/*
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* @implemented
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*/
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VOID
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FASTCALL
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KfLowerIrql(IN KIRQL NewIrql)
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{
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ARM_STATUS_REGISTER Flags;
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PKPCR Pcr = KeGetPcr();
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ULONG InterruptMask;
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/* Disableinterrupts */
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Flags = KeArmStatusRegisterGet();
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_disable();
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#ifdef IRQL_DEBUG
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/* Validate correct lower */
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if (OldIrql > Pcr->Irql)
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{
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/* Crash system */
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Pcr->Irql = HIGH_LEVEL;
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KeBugCheck(IRQL_NOT_LESS_OR_EQUAL);
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}
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#endif
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/* Clear interrupts associated to the old IRQL */
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WRITE_REGISTER_ULONG(VIC_INT_CLEAR, 0xFFFFFFFF);
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/* Set the new interrupt mask */
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InterruptMask = Pcr->IrqlTable[NewIrql];
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WRITE_REGISTER_ULONG(VIC_INT_ENABLE, InterruptMask);
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/* Save the new IRQL and restore interrupt state */
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Pcr->Irql = NewIrql;
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if (!Flags.IrqDisable) _enable();
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}
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/* SOFTWARE INTERRUPTS ********************************************************/
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/*
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* @implemented
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*/
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VOID
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FASTCALL
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HalRequestSoftwareInterrupt(IN KIRQL Irql)
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{
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/* Force a software interrupt */
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WRITE_REGISTER_ULONG(VIC_SOFT_INT, 1 << Irql);
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}
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/*
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* @implemented
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*/
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VOID
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FASTCALL
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HalClearSoftwareInterrupt(IN KIRQL Irql)
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{
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/* Clear software interrupt */
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WRITE_REGISTER_ULONG(VIC_SOFT_INT_CLEAR, 1 << Irql);
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}
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/* SYSTEM INTERRUPTS **********************************************************/
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/*
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* @implemented
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*/
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BOOLEAN
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NTAPI
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HalEnableSystemInterrupt(IN ULONG Vector,
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IN KIRQL Irql,
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IN KINTERRUPT_MODE InterruptMode)
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{
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UNIMPLEMENTED;
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while (TRUE);
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return FALSE;
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}
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/*
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* @implemented
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*/
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VOID
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NTAPI
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HalDisableSystemInterrupt(IN ULONG Vector,
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IN KIRQL Irql)
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{
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UNIMPLEMENTED;
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while (TRUE);
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}
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/*
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* @implemented
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*/
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BOOLEAN
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NTAPI
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HalBeginSystemInterrupt(IN KIRQL Irql,
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IN ULONG Vector,
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OUT PKIRQL OldIrql)
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{
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UNIMPLEMENTED;
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while (TRUE);
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return FALSE;
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}
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/*
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* @implemented
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*/
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VOID
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NTAPI
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HalEndSystemInterrupt(IN KIRQL OldIrql,
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IN PKTRAP_FRAME TrapFrame)
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{
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UNIMPLEMENTED;
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while (TRUE);
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}
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/* EOF */
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