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674 lines
19 KiB
674 lines
19 KiB
/*++
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Copyright (c) 1993 IBM Corporation
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Module Name:
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ntppc.h
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Abstract:
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User-mode visible PowerPC specific structures and constants
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Author:
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Rick Simpson 9-July-1993
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Based on ntmips.h, by David N. Cutler (davec) 31-Mar-1990
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Revision History:
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Chuck Bauman 3-August-1993 (Integrate NT product source)
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KPCR modifications need to be integrated
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because it was removed from ntppc.h.
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No changes required otherwise.
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--*/
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#ifndef _NTPPC_
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#define _NTPPC_
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#if _MSC_VER > 1000
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#pragma once
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#endif
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#include "ppcinst.h"
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#ifdef __cplusplus
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extern "C" {
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#endif
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// begin_ntddk begin_wdm begin_nthal begin_winnt
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#if defined(_PPC_)
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// end_winnt
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//
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// Define system time structure.
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//
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typedef struct _KSYSTEM_TIME {
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ULONG LowPart;
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LONG High1Time;
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LONG High2Time;
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} KSYSTEM_TIME, *PKSYSTEM_TIME;
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//
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// Define unsupported "keywords".
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//
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#define _cdecl
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// end_ntddk end_wdm end_nthal
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//
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// Define breakpoint codes.
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//
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// **FINISH** Use MIPS codes unless there's a reason not to
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//
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#define USER_BREAKPOINT 0 // user breakpoint
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#define KERNEL_BREAKPOINT 1 // kernel breakpoint
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#define BREAKIN_BREAKPOINT 2 // break into kernel debugger
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#define BRANCH_TAKEN_BREAKPOINT 3 // branch taken breakpoint
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#define BRANCH_NOT_TAKEN_BREAKPOINT 4 // branch not taken breakpoint
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#define SINGLE_STEP_BREAKPOINT 5 // single step breakpoint
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#define DIVIDE_OVERFLOW_BREAKPOINT 6 // divide overflow breakpoint
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#define DIVIDE_BY_ZERO_BREAKPOINT 7 // divide by zero breakpoint
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#define RANGE_CHECK_BREAKPOINT 8 // range check breakpoint
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#define STACK_OVERFLOW_BREAKPOINT 9 // MIPS code
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#define MULTIPLY_OVERFLOW_BREAKPOINT 10 // multiply overflow breakpoint
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#define DEBUG_PRINT_BREAKPOINT 20 // debug print breakpoint
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#define DEBUG_PROMPT_BREAKPOINT 21 // debug prompt breakpoint
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#define DEBUG_STOP_BREAKPOINT 22 // debug stop breakpoint
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#define DEBUG_LOAD_SYMBOLS_BREAKPOINT 23 // load symbols breakpoint
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#define DEBUG_UNLOAD_SYMBOLS_BREAKPOINT 24 // unload symbols breakpoint
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#define DEBUG_COMMAND_STRING_BREAKPOINT 25 // command string breakpoint
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//
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// Define PowerPC specific read control space commands for the
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// Kernel Debugger. These definitions are for values that must be
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// accessed via defined interfaces (Fast path System Call).
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//
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#define DEBUG_CONTROL_SPACE_PCR 1
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//
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// Define special fast path system service codes.
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//
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// N.B. These codes are VERY special. The high bit signifies a fast path
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// and the low bits signify what type.
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//
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#define RETRIEVE_TEB_PTR -3 // fetch address of TEB
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#define SET_LOW_WAIT_HIGH -2 // fast path event pair service
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#define SET_HIGH_WAIT_LOW -1 // fast path event pair service
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// begin_ntddk begin_nthal
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//
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//
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// Define size of kernel mode stack.
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//
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// **FINISH** This may not be the appropriate value for PowerPC
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#define KERNEL_STACK_SIZE 16384
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//
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// Define size of large kernel mode stack for callbacks.
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//
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#define KERNEL_LARGE_STACK_SIZE 61440
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//
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// Define number of pages to initialize in a large kernel stack.
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//
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#define KERNEL_LARGE_STACK_COMMIT 16384
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// begin_wdm
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//
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// Define bus error routine type.
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//
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struct _EXCEPTION_RECORD;
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struct _KEXCEPTION_FRAME;
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struct _KTRAP_FRAME;
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typedef
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VOID
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(*PKBUS_ERROR_ROUTINE) (
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IN struct _EXCEPTION_RECORD *ExceptionRecord,
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IN struct _KEXCEPTION_FRAME *ExceptionFrame,
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IN struct _KTRAP_FRAME *TrapFrame,
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IN PVOID VirtualAddress,
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IN PHYSICAL_ADDRESS PhysicalAddress
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);
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//
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// Macros to emit eieio, sync, and isync instructions.
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//
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#if defined(_M_PPC) && defined(_MSC_VER) && (_MSC_VER>=1000)
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void __emit( unsigned const __int32 );
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#define __builtin_eieio() __emit( 0x7C0006AC )
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#define __builtin_sync() __emit( 0x7C0004AC )
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#define __builtin_isync() __emit( 0x4C00012C )
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#else
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void __builtin_eieio(void);
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void __builtin_sync(void);
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void __builtin_isync(void);
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#endif
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// end_ntddk end_wdm end_nthal - Added to replace comment in the KPCR from ntmips.h
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//
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// Define address of data shared between user and kernel mode.
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//
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#define USER_SHARED_DATA ((KUSER_SHARED_DATA * const)0xFFFFE000)
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// begin_winnt
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//
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// The address of the TEB is placed into GPR 13 at context switch time
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// and should never be destroyed. To get the address of the TEB use
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// the compiler intrinsic to access it directly from GPR 13.
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//
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#if defined(_M_PPC) && defined(_MSC_VER) && (_MSC_VER>=1000)
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unsigned __gregister_get( unsigned const regnum );
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#define NtCurrentTeb() ((struct _TEB *)__gregister_get(13))
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#elif defined(_M_PPC)
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struct _TEB * __builtin_get_gpr13(VOID);
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#define NtCurrentTeb() ((struct _TEB *)__builtin_get_gpr13())
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#endif
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//
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// Define functions to get the address of the current fiber and the
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// current fiber data.
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//
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#define GetCurrentFiber() (((PNT_TIB)NtCurrentTeb())->FiberData)
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#define GetFiberData() (*(PVOID *)(GetCurrentFiber()))
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// begin_ntddk begin_nthal
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//
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// The following flags control the contents of the CONTEXT structure.
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//
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#if !defined(RC_INVOKED)
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#define CONTEXT_CONTROL 0x00000001L
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#define CONTEXT_FLOATING_POINT 0x00000002L
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#define CONTEXT_INTEGER 0x00000004L
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#define CONTEXT_DEBUG_REGISTERS 0x00000008L
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#define CONTEXT_FULL (CONTEXT_CONTROL | CONTEXT_FLOATING_POINT | CONTEXT_INTEGER)
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#endif
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//
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// Context Frame
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//
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// N.B. This frame must be exactly a multiple of 16 bytes in length.
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//
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// This frame has a several purposes: 1) it is used as an argument to
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// NtContinue, 2) it is used to constuct a call frame for APC delivery,
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// 3) it is used to construct a call frame for exception dispatching
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// in user mode, and 4) it is used in the user level thread creation
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// routines.
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//
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// Requires at least 8-byte alignment (double)
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//
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typedef struct _CONTEXT {
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//
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// This section is specified/returned if the ContextFlags word contains
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// the flag CONTEXT_FLOATING_POINT.
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//
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double Fpr0; // Floating registers 0..31
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double Fpr1;
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double Fpr2;
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double Fpr3;
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double Fpr4;
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double Fpr5;
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double Fpr6;
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double Fpr7;
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double Fpr8;
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double Fpr9;
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double Fpr10;
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double Fpr11;
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double Fpr12;
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double Fpr13;
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double Fpr14;
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double Fpr15;
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double Fpr16;
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double Fpr17;
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double Fpr18;
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double Fpr19;
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double Fpr20;
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double Fpr21;
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double Fpr22;
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double Fpr23;
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double Fpr24;
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double Fpr25;
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double Fpr26;
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double Fpr27;
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double Fpr28;
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double Fpr29;
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double Fpr30;
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double Fpr31;
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double Fpscr; // Floating point status/control reg
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//
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// This section is specified/returned if the ContextFlags word contains
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// the flag CONTEXT_INTEGER.
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//
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ULONG Gpr0; // General registers 0..31
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ULONG Gpr1;
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ULONG Gpr2;
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ULONG Gpr3;
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ULONG Gpr4;
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ULONG Gpr5;
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ULONG Gpr6;
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ULONG Gpr7;
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ULONG Gpr8;
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ULONG Gpr9;
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ULONG Gpr10;
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ULONG Gpr11;
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ULONG Gpr12;
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ULONG Gpr13;
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ULONG Gpr14;
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ULONG Gpr15;
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ULONG Gpr16;
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ULONG Gpr17;
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ULONG Gpr18;
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ULONG Gpr19;
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ULONG Gpr20;
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ULONG Gpr21;
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ULONG Gpr22;
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ULONG Gpr23;
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ULONG Gpr24;
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ULONG Gpr25;
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ULONG Gpr26;
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ULONG Gpr27;
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ULONG Gpr28;
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ULONG Gpr29;
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ULONG Gpr30;
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ULONG Gpr31;
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ULONG Cr; // Condition register
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ULONG Xer; // Fixed point exception register
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//
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// This section is specified/returned if the ContextFlags word contains
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// the flag CONTEXT_CONTROL.
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//
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ULONG Msr; // Machine status register
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ULONG Iar; // Instruction address register
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ULONG Lr; // Link register
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ULONG Ctr; // Count register
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//
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// The flags values within this flag control the contents of
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// a CONTEXT record.
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//
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// If the context record is used as an input parameter, then
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// for each portion of the context record controlled by a flag
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// whose value is set, it is assumed that that portion of the
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// context record contains valid context. If the context record
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// is being used to modify a thread's context, then only that
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// portion of the threads context will be modified.
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//
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// If the context record is used as an IN OUT parameter to capture
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// the context of a thread, then only those portions of the thread's
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// context corresponding to set flags will be returned.
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//
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// The context record is never used as an OUT only parameter.
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//
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ULONG ContextFlags;
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ULONG Fill[3]; // Pad out to multiple of 16 bytes
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//
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// This section is specified/returned if CONTEXT_DEBUG_REGISTERS is
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// set in ContextFlags. Note that CONTEXT_DEBUG_REGISTERS is NOT
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// included in CONTEXT_FULL.
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//
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ULONG Dr0; // Breakpoint Register 1
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ULONG Dr1; // Breakpoint Register 2
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ULONG Dr2; // Breakpoint Register 3
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ULONG Dr3; // Breakpoint Register 4
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ULONG Dr4; // Breakpoint Register 5
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ULONG Dr5; // Breakpoint Register 6
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ULONG Dr6; // Debug Status Register
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ULONG Dr7; // Debug Control Register
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} CONTEXT, *PCONTEXT;
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// end_ntddk end_nthal
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//
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// Stack frame header
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//
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// Order of appearance in stack frame:
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// Header (six words)
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// Parameters (at least eight words)
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// Local variables
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// Saved GPRs
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// Saved FPRs
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//
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// Minimum alignment is 8 bytes
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typedef struct _STACK_FRAME_HEADER { // GPR 1 points here
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ULONG BackChain; // Addr of previous frame
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ULONG GlueSaved1; // Used by glue code
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ULONG GlueSaved2;
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ULONG Reserved1; // Reserved
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ULONG Spare1; // Used by tracing, profiling, ...
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ULONG Spare2;
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ULONG Parameter0; // First 8 parameter words are
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ULONG Parameter1; // always present
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ULONG Parameter2;
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ULONG Parameter3;
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ULONG Parameter4;
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ULONG Parameter5;
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ULONG Parameter6;
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ULONG Parameter7;
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} STACK_FRAME_HEADER,*PSTACK_FRAME_HEADER;
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// end_winnt
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#define CONTEXT_TO_PROGRAM_COUNTER(Context) ((Context)->Iar)
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#define CONTEXT_LENGTH (sizeof(CONTEXT))
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#define CONTEXT_ALIGN (sizeof(double))
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#define CONTEXT_ROUND (CONTEXT_ALIGN - 1)
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//
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// Nonvolatile context pointer record.
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//
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typedef struct _KNONVOLATILE_CONTEXT_POINTERS {
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DOUBLE *FloatingContext[32];
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PULONG FpscrContext;
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PULONG IntegerContext[32];
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PULONG CrContext;
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PULONG XerContext;
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PULONG MsrContext;
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PULONG IarContext;
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PULONG LrContext;
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PULONG CtrContext;
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} KNONVOLATILE_CONTEXT_POINTERS, *PKNONVOLATILE_CONTEXT_POINTERS;
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// begin_nthal
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//
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// PowerPC special-purpose registers
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//
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//
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// Define Machine Status Register (MSR) fields
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//
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typedef struct _MSR {
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ULONG LE : 1; // 31 Little-Endian execution mode
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ULONG RI : 1; // 30 Recoverable Interrupt
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ULONG Rsv1 : 2; // 29..28 reserved
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ULONG DR : 1; // 27 Data Relocate
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ULONG IR : 1; // 26 Instruction Relocate
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ULONG IP : 1; // 25 Interrupt Prefix
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ULONG Rsv2 : 1; // 24 reserved
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ULONG FE1 : 1; // 23 Floating point Exception mode 1
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ULONG BE : 1; // 22 Branch trace Enable
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ULONG SE : 1; // 21 Single-step trace Enable
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ULONG FE0 : 1; // 20 Floating point Exception mode 0
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ULONG ME : 1; // 19 Machine check Enable
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ULONG FP : 1; // 18 Floating Point available
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ULONG PR : 1; // 17 Problem state
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ULONG EE : 1; // 16 External interrupt Enable
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ULONG ILE : 1; // 15 Interrupt Little-Endian mode
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ULONG IMPL : 1; // 14 Implementation dependent
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ULONG POW : 1; // 13 Power management enable
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ULONG Rsv3 : 13; // 12..0 reserved
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} MSR, *PMSR;
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//
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// Define Processor Version Register (PVR) fields
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//
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typedef struct _PVR {
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ULONG Revision : 16;
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ULONG Version : 16;
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} PVR, *PPVR;
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// end_nthal
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// begin_nthal
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//
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// Define Condition Register (CR) fields
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//
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// We name the structure CondR rather than CR, so that a pointer
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// to a condition register structure is PCondR rather than PCR.
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// (PCR is an NT data structure, the Processor Control Region.)
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typedef struct _CondR {
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ULONG CR7 : 4; // Eight 4-bit fields; machine numbers
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ULONG CR6 : 4; // them in Big-Endian order
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ULONG CR5 : 4;
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ULONG CR4 : 4;
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ULONG CR3 : 4;
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ULONG CR2 : 4;
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ULONG CR1 : 4;
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ULONG CR0 : 4;
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} CondR, *PCondR;
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//
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// Define Fixed Point Exception Register (XER) fields
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//
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typedef struct _XER {
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ULONG Rsv : 29; // 31..3 Reserved
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ULONG CA : 1; // 2 Carry
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ULONG OV : 1; // 1 Overflow
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ULONG SO : 1; // 0 Summary Overflow
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} XER, *PXER;
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//
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// Define Floating Point Status/Control Register (FPSCR) fields
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//
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typedef struct _FPSCR {
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ULONG RN : 2; // 31..30 Rounding control
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ULONG NI : 1; // 29 Non-IEEE mode
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ULONG XE : 1; // 28 Inexact exception Enable
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ULONG ZE : 1; // 27 Zero divide exception Enable
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ULONG UE : 1; // 26 Underflow exception Enable
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ULONG OE : 1; // 25 Overflow exception Enable
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ULONG VE : 1; // 24 Invalid operation exception Enable
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ULONG VXCVI : 1; // 23 Invalid op exception (integer convert)
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ULONG VXSQRT : 1; // 22 Invalid op exception (square root)
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ULONG VXSOFT : 1; // 21 Invalid op exception (software request)
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ULONG Res1 : 1; // 20 reserved
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ULONG FU : 1; // 19 Result Unordered or NaN
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ULONG FE : 1; // 18 Result Equal or zero
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ULONG FG : 1; // 17 Result Greater than or positive
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ULONG FL : 1; // 16 Result Less than or negative
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ULONG C : 1; // 15 Result Class descriptor
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ULONG FI : 1; // 14 Fraction Inexact
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ULONG FR : 1; // 13 Fraction Rounded
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ULONG VXVC : 1; // 12 Invalid op exception (compare)
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ULONG VXIMZ : 1; // 11 Invalid op exception (infinity * 0)
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ULONG VXZDZ : 1; // 10 Invalid op exception (0 / 0)
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ULONG VXIDI : 1; // 9 Invalid op exception (infinity / infinity)
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ULONG VXISI : 1; // 8 Invalid op exception (infinity - infinity)
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ULONG VXSNAN : 1; // 7 Invalid op exception (signalling NaN)
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ULONG XX : 1; // 6 Inexact exception
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ULONG ZX : 1; // 5 Zero divide exception
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ULONG UX : 1; // 4 Underflow exception
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ULONG OX : 1; // 3 Overflow exception
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ULONG VX : 1; // 2 Invalid operation exception summary
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ULONG FEX : 1; // 1 Enabled Exception summary
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ULONG FX : 1; // 0 Exception summary
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} FPSCR, *PFPSCR;
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// end_nthal
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// begin_nthal
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//
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// Define address space layout as defined by PowerPC memory management.
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//
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// The names come from MIPS hardwired virtual to first 512MB real.
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// We use these values to define the size of the PowerPC kernel BAT.
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// Must coordinate with values in ../private/mm/ppc/mippc.h.
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// This is 8MB on the PowerPC 601; may be larger for other models.
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//
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//
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#define KUSEG_BASE 0x0 // base of user segment
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#define KSEG0_BASE 0x80000000 // base of kernel BAT
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#define KSEG1_BASE PCR->Kseg0Top // end of kernel BAT
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#define KSEG2_BASE KSEG1_BASE // end of kernel BAT
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|
//
|
|
// A valid Page Table Entry has the following definition
|
|
//
|
|
|
|
typedef struct _HARDWARE_PTE {
|
|
ULONG Dirty : 2;
|
|
ULONG Valid : 1; // software
|
|
ULONG GuardedStorage : 1;
|
|
ULONG MemoryCoherence : 1;
|
|
ULONG CacheDisable : 1;
|
|
ULONG WriteThrough : 1;
|
|
ULONG Change : 1;
|
|
ULONG Reference : 1;
|
|
ULONG Write : 1; // software
|
|
ULONG CopyOnWrite : 1; // software
|
|
ULONG rsvd1 : 1;
|
|
ULONG PageFrameNumber : 20;
|
|
} HARDWARE_PTE, *PHARDWARE_PTE;
|
|
|
|
#define HARDWARE_PTE_DIRTY_MASK 0x3
|
|
|
|
// end_nthal
|
|
|
|
|
|
//
|
|
// Define PowerPC exception handling structures and function prototypes.
|
|
//
|
|
// These are adopted without change from the MIPS implementation.
|
|
//
|
|
|
|
//
|
|
// Function table entry structure definition.
|
|
//
|
|
|
|
typedef struct _RUNTIME_FUNCTION {
|
|
ULONG BeginAddress;
|
|
ULONG EndAddress;
|
|
PEXCEPTION_ROUTINE ExceptionHandler;
|
|
PVOID HandlerData;
|
|
ULONG PrologEndAddress;
|
|
} RUNTIME_FUNCTION, *PRUNTIME_FUNCTION;
|
|
|
|
//
|
|
// Scope table structure definition.
|
|
//
|
|
|
|
typedef struct _SCOPE_TABLE {
|
|
ULONG Count;
|
|
struct
|
|
{
|
|
ULONG BeginAddress;
|
|
ULONG EndAddress;
|
|
ULONG HandlerAddress;
|
|
ULONG JumpTarget;
|
|
} ScopeRecord[1];
|
|
} SCOPE_TABLE, *PSCOPE_TABLE;
|
|
|
|
//
|
|
// Runtime Library function prototypes.
|
|
//
|
|
|
|
VOID
|
|
RtlCaptureContext (
|
|
OUT PCONTEXT ContextRecord
|
|
);
|
|
|
|
PRUNTIME_FUNCTION
|
|
RtlLookupFunctionEntry (
|
|
IN ULONG ControlPc
|
|
);
|
|
|
|
ULONG
|
|
RtlVirtualUnwind (
|
|
IN ULONG ControlPc,
|
|
IN PRUNTIME_FUNCTION FunctionEntry,
|
|
IN OUT PCONTEXT ContextRecord,
|
|
OUT PBOOLEAN InFunction,
|
|
OUT PULONG EstablisherFrame,
|
|
IN OUT PKNONVOLATILE_CONTEXT_POINTERS ContextPointers OPTIONAL,
|
|
IN ULONG LowStackLimit,
|
|
IN ULONG HighStackLimit
|
|
);
|
|
|
|
//
|
|
// Define C structured exception handing function prototypes.
|
|
//
|
|
|
|
typedef struct _DISPATCHER_CONTEXT {
|
|
ULONG ControlPc;
|
|
PRUNTIME_FUNCTION FunctionEntry;
|
|
ULONG EstablisherFrame;
|
|
PCONTEXT ContextRecord;
|
|
} DISPATCHER_CONTEXT, *PDISPATCHER_CONTEXT;
|
|
|
|
|
|
struct _EXCEPTION_POINTERS;
|
|
|
|
typedef
|
|
LONG
|
|
(*EXCEPTION_FILTER) (
|
|
struct _EXCEPTION_POINTERS *ExceptionPointers
|
|
);
|
|
|
|
typedef
|
|
VOID
|
|
(*TERMINATION_HANDLER) (
|
|
BOOLEAN is_abnormal
|
|
);
|
|
|
|
// **FINISH** This may need alteration for PowerPC
|
|
// begin_winnt
|
|
|
|
VOID
|
|
__jump_unwind (
|
|
PVOID Fp,
|
|
PVOID TargetPc
|
|
);
|
|
|
|
// end_winnt
|
|
|
|
// begin_ntddk begin_wdm begin_nthal begin_winnt
|
|
#endif // defined(_PPC_)
|
|
// end_ntddk end_wdm end_nthal end_winnt
|
|
|
|
#ifdef __cplusplus
|
|
}
|
|
#endif
|
|
|
|
#endif // _NTPPC_
|