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487 lines
13 KiB
487 lines
13 KiB
/*++
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Copyright (c) 2001 Microsoft Corporation
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Module Name:
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file.c
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Abstract:
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This module contains kd host machine file I/O support.
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Author:
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Matt Holle (matth) April-2001
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Revision History:
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--*/
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#include "bd.h"
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#include "bootlib.h"
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#include "kddll.h"
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#define TRANSFER_LENGTH 8192
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#define KD_MAX_REMOTE_FILES 16
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//
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// Keep track of all the remote files.
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typedef struct _KD_REMOTE_FILE {
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ULONG64 RemoteHandle;
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} KD_REMOTE_FILE, *PKD_REMOTE_FILE;
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KD_REMOTE_FILE BdRemoteFiles[KD_MAX_REMOTE_FILES];
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// KD_CONTEXT KdContext;
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// temporary buffer used for transferring data back and forth.
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// UCHAR TransferBuffer[TRANSFER_LENGTH];
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UCHAR BdFileTransferBuffer[TRANSFER_LENGTH];
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ARC_STATUS
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BdCreateRemoteFile(
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OUT PHANDLE Handle,
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OUT PULONG64 Length, OPTIONAL
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IN PCHAR FileName,
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IN ACCESS_MASK DesiredAccess,
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IN ULONG FileAttributes,
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IN ULONG ShareAccess,
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IN ULONG CreateDisposition,
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IN ULONG CreateOptions
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)
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{
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DBGKD_FILE_IO Irp;
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ULONG DownloadedFileIndex;
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ULONG Index;
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STRING MessageData;
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STRING MessageHeader;
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ULONG ReturnCode;
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ULONG PacketLength;
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ANSI_STRING aString;
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UNICODE_STRING uString;
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if( !BdDebuggerEnabled ) {
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return STATUS_DEBUGGER_INACTIVE;
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}
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if( (!FileName) ||
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(strlen(FileName) > PACKET_MAX_SIZE) ) {
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DbgPrint( "BdCreateRemoteFile: Bad parameter\n" );
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return STATUS_INVALID_PARAMETER;
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}
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if (BdDebuggerNotPresent != FALSE) {
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Irp.Status = STATUS_DEBUGGER_INACTIVE;
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goto Exit;
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}
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//
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// Look for an open slot.
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//
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for (DownloadedFileIndex = 0; DownloadedFileIndex < KD_MAX_REMOTE_FILES; DownloadedFileIndex++) {
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if (BdRemoteFiles[DownloadedFileIndex].RemoteHandle == 0) {
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break;
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}
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}
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if (DownloadedFileIndex >= KD_MAX_REMOTE_FILES) {
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DbgPrint( "BdCreateRemoteFile: No more empty handles available for this file.\n" );
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Irp.Status = STATUS_NO_MEMORY;
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goto Exit;
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}
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//
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// Fix up the packet that we'll send to the kernel debugger.
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//
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Irp.ApiNumber = DbgKdCreateFileApi;
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Irp.u.CreateFile.DesiredAccess = DesiredAccess;
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Irp.u.CreateFile.FileAttributes = FileAttributes;
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Irp.u.CreateFile.ShareAccess = ShareAccess;
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Irp.u.CreateFile.CreateDisposition = CreateDisposition;
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Irp.u.CreateFile.CreateOptions = CreateOptions;
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Irp.u.CreateFile.Handle = 0;
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Irp.u.CreateFile.Length = 0;
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MessageHeader.Length = sizeof(Irp);
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MessageHeader.MaximumLength = sizeof(Irp);
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MessageHeader.Buffer = (PCHAR)&Irp;
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//
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// Send him a unicode file name.
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//
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RtlInitString( &aString, FileName );
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uString.Buffer = (PWCHAR)BdFileTransferBuffer;
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uString.MaximumLength = sizeof(BdFileTransferBuffer);
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RtlAnsiStringToUnicodeString( &uString, &aString, FALSE );
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MessageData.Length = (USHORT)((strlen(FileName)+1) * sizeof(WCHAR));
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MessageData.Buffer = BdFileTransferBuffer;
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//
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// Send packet to the kernel debugger on the host machine and ask him to
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// send us a handle to the file.
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//
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BdSendPacket(PACKET_TYPE_KD_FILE_IO,
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&MessageHeader,
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&MessageData);
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if (BdDebuggerNotPresent != FALSE) {
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Irp.Status = STATUS_DEBUGGER_INACTIVE;
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goto Exit;
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}
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//
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// We asked for the handle, now receive it.
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//
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MessageData.MaximumLength = sizeof(BdFileTransferBuffer);
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MessageData.Buffer = (PCHAR)BdFileTransferBuffer;
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ReturnCode = BD_PACKET_TIMEOUT;
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Index = 0;
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while( (ReturnCode == BD_PACKET_TIMEOUT) &&
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(Index < 10) ) {
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ReturnCode = BdReceivePacket(PACKET_TYPE_KD_FILE_IO,
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&MessageHeader,
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&MessageData,
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&PacketLength);
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Index++;
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}
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//
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// BdReceivePacket *may* return BD_PACKET_RECEIVED eventhough the kernel
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// debugger failed to actually find the file we wanted. Therefore, we
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// need to check the Irp.Status value too before assuming we got the
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// information we wanted.
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//
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// Note: don't check for Irp.u.CreateFile.Length == 0 because we don't
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// want to exclude downloading zero-length files.
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//
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if( (ReturnCode == BD_PACKET_RECEIVED) &&
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(NT_SUCCESS(Irp.Status)) ) {
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Irp.Status = STATUS_SUCCESS;
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} else {
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Irp.Status = STATUS_INVALID_PARAMETER;
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}
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Exit:
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if (NT_SUCCESS(Irp.Status)) {
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BdRemoteFiles[DownloadedFileIndex].RemoteHandle = Irp.u.CreateFile.Handle;
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// Add one so that zero is reserved for invalid-handle.
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*Handle = UlongToHandle(DownloadedFileIndex + 1);
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if (ARGUMENT_PRESENT(Length)) {
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*Length = Irp.u.CreateFile.Length;
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}
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}
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return Irp.Status;
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}
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ARC_STATUS
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BdReadRemoteFile(
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IN HANDLE Handle,
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IN ULONG64 Offset,
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OUT PVOID Buffer,
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IN ULONG Length,
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OUT PULONG Completed
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)
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{
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DBGKD_FILE_IO Irp;
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ULONG Index;
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ULONG _Completed = 0;
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if( !BdDebuggerEnabled ) {
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return STATUS_DEBUGGER_INACTIVE;
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}
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Index = HandleToUlong(Handle) - 1;
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if( (Index >= KD_MAX_REMOTE_FILES) ||
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(BdRemoteFiles[Index].RemoteHandle == 0) ) {
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DbgPrint( "BdReadRemoteFile: Bad parameters!\n" );
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Irp.Status = STATUS_INVALID_PARAMETER;
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goto Exit;
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}
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Irp.ApiNumber = DbgKdReadFileApi;
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Irp.Status = STATUS_SUCCESS;
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Irp.u.ReadFile.Handle = BdRemoteFiles[Index].RemoteHandle;
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Irp.u.ReadFile.Offset = Offset;
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while (Length > 0) {
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STRING MessageData;
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STRING MessageHeader;
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ULONG ReturnCode;
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ULONG RecvLength;
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if (Length > PACKET_MAX_SIZE - sizeof(Irp)) {
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Irp.u.ReadFile.Length = PACKET_MAX_SIZE - sizeof(Irp);
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} else {
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Irp.u.ReadFile.Length = Length;
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}
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MessageHeader.Length = sizeof(Irp);
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MessageHeader.MaximumLength = sizeof(Irp);
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MessageHeader.Buffer = (PCHAR)&Irp;
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//
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// Send packet to the kernel debugger on the host machine.
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//
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BdSendPacket(PACKET_TYPE_KD_FILE_IO,
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&MessageHeader,
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NULL);
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//
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// Receive packet from the kernel debugger on the host machine.
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//
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MessageData.MaximumLength = (USHORT)Irp.u.ReadFile.Length;
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MessageData.Buffer = Buffer;
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do {
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ReturnCode = BdReceivePacket(PACKET_TYPE_KD_FILE_IO,
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&MessageHeader,
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&MessageData,
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&RecvLength);
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} while (ReturnCode == BD_PACKET_TIMEOUT);
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if (ReturnCode == BD_PACKET_RECEIVED) {
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if (!NT_SUCCESS(Irp.Status)) {
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break;
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}
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_Completed += RecvLength;
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Buffer = (PVOID)((PUCHAR)Buffer + RecvLength);
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Irp.u.ReadFile.Offset += RecvLength;
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Length -= RecvLength;
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}
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}
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*Completed = _Completed;
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Exit:
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return Irp.Status;
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}
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ARC_STATUS
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BdCloseRemoteFile(
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IN HANDLE Handle
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)
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{
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DBGKD_FILE_IO Irp;
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ULONG Index;
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if( !BdDebuggerEnabled ) {
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return STATUS_DEBUGGER_INACTIVE;
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}
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Index = HandleToUlong(Handle) - 1;
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if (Index >= KD_MAX_REMOTE_FILES) {
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return STATUS_INVALID_PARAMETER;
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}
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if (BdRemoteFiles[Index].RemoteHandle == 0) {
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Irp.Status = STATUS_INVALID_PARAMETER;
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goto Exit;
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}
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Irp.ApiNumber = DbgKdCloseFileApi;
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Irp.u.CloseFile.Handle = BdRemoteFiles[Index].RemoteHandle;
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for (;;) {
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STRING MessageData;
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STRING MessageHeader;
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ULONG ReturnCode;
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ULONG RecvLength;
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MessageHeader.Length = sizeof(Irp);
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MessageHeader.MaximumLength = sizeof(Irp);
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MessageHeader.Buffer = (PCHAR)&Irp;
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//
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// Send packet to the kernel debugger on the host machine.
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//
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BdSendPacket(PACKET_TYPE_KD_FILE_IO,
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&MessageHeader,
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NULL);
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//
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// Receive packet from the kernel debugger on the host machine.
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//
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MessageData.MaximumLength = BD_MESSAGE_BUFFER_SIZE;
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MessageData.Buffer = (PCHAR)BdMessageBuffer;
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do {
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ReturnCode = BdReceivePacket(PACKET_TYPE_KD_FILE_IO,
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&MessageHeader,
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&MessageData,
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&RecvLength);
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} while (ReturnCode == BD_PACKET_TIMEOUT);
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if (ReturnCode == BD_PACKET_RECEIVED) {
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break;
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}
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}
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if (NT_SUCCESS(Irp.Status)) {
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BdRemoteFiles[Index].RemoteHandle = 0;
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}
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Exit:
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return Irp.Status;
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}
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ARC_STATUS
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BdPullRemoteFile(
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IN PCHAR FileName,
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IN ULONG FileAttributes,
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IN ULONG CreateDisposition,
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IN ULONG CreateOptions,
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IN ULONG FileId
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)
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{
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ARC_STATUS Status = ESUCCESS;
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PUCHAR BaseFilePointer = NULL;
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PUCHAR WorkingMemoryPointer = NULL;
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ULONG64 Length = 0;
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HANDLE RemoteHandle = NULL;
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ULONG64 Offset = 0;
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ULONG basePage = 0;
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PBL_FILE_TABLE fileTableEntry = NULL;
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if( !BdDebuggerEnabled ) {
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return STATUS_DEBUGGER_INACTIVE;
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}
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// Open the remote file for reading.
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Status = BdCreateRemoteFile(&RemoteHandle, &Length, FileName,
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FILE_GENERIC_READ, FILE_ATTRIBUTE_NORMAL,
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FILE_SHARE_READ, FILE_OPEN, 0);
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if (!NT_SUCCESS(Status)) {
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//
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// File probably doesn't exist on the debugger.
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//
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goto Exit;
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}
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//
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// Allocate memory for the file, then download it.
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//
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Status = BlAllocateAlignedDescriptor( LoaderFirmwareTemporary,
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0,
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(ULONG)((Length + PAGE_SIZE - 1) >> PAGE_SHIFT),
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0,
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&basePage );
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if ( Status != ESUCCESS ) {
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DbgPrint( "BdPullRemoteFile: BlAllocateAlignedDescriptor failed! (%x)\n", Status );
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goto Exit;
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}
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//
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// Keep track of our pointers.
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// BaseFilePointer will point to the starting address of the block
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// we're about to download the file into.
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//
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// Working MemoryPointer will move through memory as we download small
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// chunks of the file.
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//
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BaseFilePointer = (PUCHAR)ULongToPtr( (basePage << PAGE_SHIFT) );
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WorkingMemoryPointer = BaseFilePointer;
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//
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// Download the file.
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//
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Offset = 0;
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while( Offset < Length ) {
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ULONG ReqLength, ReqCompleted;
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if((Length - Offset) > TRANSFER_LENGTH) {
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ReqLength = TRANSFER_LENGTH;
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} else {
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ReqLength = (ULONG)(Length - Offset);
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}
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Status = BdReadRemoteFile( RemoteHandle,
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Offset,
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WorkingMemoryPointer,
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ReqLength,
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&ReqCompleted );
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if (!NT_SUCCESS(Status) || ReqCompleted == 0) {
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DbgPrint( "BdPullRemoteFile: BdReadRemoteFile failed! (%x)\n", Status );
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goto Exit;
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}
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// Increment our working pointer so we copy the next chunk
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// into the next spot in memory.
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WorkingMemoryPointer += ReqLength;
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Offset += ReqLength;
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}
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//
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// We got the file, so setup the BL_FILE_TABLE
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// entry for this file. We'll pretend that we got this file
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// off the network because that's pretty close, and it allows
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// us to conveniently record the memory block where we're about
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// to download this file.
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//
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{
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extern BL_DEVICE_ENTRY_TABLE NetDeviceEntryTable;
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fileTableEntry = &BlFileTable[FileId];
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fileTableEntry->Flags.Open = 1;
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fileTableEntry->DeviceId = NET_DEVICE_ID;
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fileTableEntry->u.NetFileContext.FileSize = (ULONG)Length;
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fileTableEntry->u.NetFileContext.InMemoryCopy = BaseFilePointer;
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fileTableEntry->Position.QuadPart = 0;
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fileTableEntry->Flags.Read = 1;
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fileTableEntry->DeviceEntryTable = &NetDeviceEntryTable;
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RtlZeroMemory( fileTableEntry->StructureContext, sizeof(NET_STRUCTURE_CONTEXT) );
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//
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// If we've called NetIntialize before (like if we're really booting from
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// the net, or if we've come through here before), then he returns immediately
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// so the call isn't expensive.
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//
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// If we're not booting from the net, and we've never called NetInitialize before,
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// then this will do nothing but setup his function table and return quickly.
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//
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NetInitialize();
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}
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DbgPrint( "BD: Loaded remote file %s\n", FileName );
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Exit:
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if (RemoteHandle != NULL) {
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BdCloseRemoteFile(RemoteHandle);
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}
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return Status;
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}
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