474 lines
12 KiB
C
474 lines
12 KiB
C
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/******************************************************************************\
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* This is a part of the Microsoft Source Code Samples.
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* Copyright 1995 - 1997 Microsoft Corporation.
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* All rights reserved.
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* This source code is only intended as a supplement to
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* Microsoft Development Tools and/or WinHelp documentation.
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* See these sources for detailed information regarding the
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* Microsoft samples programs.
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\******************************************************************************/
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/*++
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Copyright (c) 1997 Microsoft Corporation
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Module Name:
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SrvStoC.c
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Abstract:
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This file implements the server-to-client flow
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of data for remote server. The data is the output
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of the child program intermingled with client input.
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Author:
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Dave Hart 30 May 1997
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Environment:
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Console App. User mode.
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Revision History:
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--*/
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#include <windows.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <io.h>
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#include <string.h>
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#include "Remote.h"
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#include "Server.h"
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VOID
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FASTCALL
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StartServerToClientFlow(
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VOID
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)
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{
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PREMOTE_CLIENT pClient;
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//
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// Start read operations against the temp file for
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// all active clients that aren't currently doing
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// read temp/write client operations and that are
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// fully connected.
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//
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for (pClient = (PREMOTE_CLIENT) ClientListHead.Flink;
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pClient != (PREMOTE_CLIENT) &ClientListHead;
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pClient = (PREMOTE_CLIENT) pClient->Links.Flink ) {
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if (! pClient->cbWrite) {
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StartReadTempFile( pClient );
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}
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}
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}
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VOID
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FASTCALL
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StartReadTempFile(
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PREMOTE_CLIENT pClient
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)
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{
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//
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// pClient->cbWrite is used dually. WriteSessionOutputCompleted
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// uses it when 0 bytes are written to know how much to ask
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// to write when it resubmits the request. We use it to
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// indicate whether a read temp/write session chain of I/Os
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// is currently active for this client.
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//
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if (pClient->cbWrite) {
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ErrorExit("StartReadTempFile entered with nonzero cbWrite.");
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}
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if (dwWriteFilePointer > pClient->dwFilePos) {
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pClient->cbWrite = min(BUFFSIZE,
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dwWriteFilePointer - pClient->dwFilePos);
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pClient->WriteOverlapped.OffsetHigh = 0;
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pClient->WriteOverlapped.Offset = pClient->dwFilePos;
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if ( ! ReadFileEx(
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pClient->rSaveFile,
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pClient->ReadTempBuffer,
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pClient->cbWrite,
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&pClient->WriteOverlapped,
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ReadTempFileCompleted
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)) {
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if (ERROR_HANDLE_EOF == GetLastError()) {
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pClient->cbWrite = 0;
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} else {
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TRACE(SESSION, ("ReadFileEx for temp file failed error %d, closing client.\n", GetLastError()));
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CloseClient(pClient);
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}
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}
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}
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}
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VOID
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WINAPI
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ReadTempFileCompleted(
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DWORD dwError,
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DWORD cbRead,
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LPOVERLAPPED lpO
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)
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{
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PREMOTE_CLIENT pClient;
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pClient = CONTAINING_RECORD(lpO, REMOTE_CLIENT, WriteOverlapped);
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if (HandleSessionError(pClient, dwError)) {
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return;
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}
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if (cbRead != pClient->cbWrite) {
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TRACE(SESSION, ("Read %d from temp file asked for %d\n", cbRead, pClient->cbWrite));
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}
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if (cbRead) {
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pClient->cbReadTempBuffer = cbRead;
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pClient->dwFilePos += cbRead;
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StartWriteSessionOutput(pClient);
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} else {
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//
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// Note that the server to client flow is halting for now
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// for this client.
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//
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pClient->cbWrite = 0;
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}
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}
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VOID
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FASTCALL
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StartWriteSessionOutput(
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PREMOTE_CLIENT pClient
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)
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{
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DWORD cbRead;
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char *pch;
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cbRead = pClient->cbReadTempBuffer;
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//
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// We need to split commands from other text read
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// from the temp file and hold off on writing them
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// to the client until we make sure we're not the
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// client that submitted it. This isn't perfect
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// since we match on client name which can be
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// duplicated but it solves the problem of
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// duplicated input most of the time.
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//
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for (pch = pClient->ReadTempBuffer;
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pch < pClient->ReadTempBuffer + cbRead;
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pch++) {
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if ( ! (pClient->ServerFlags & SFLG_READINGCOMMAND) ) {
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if (BEGINMARK == *pch) {
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pClient->ServerFlags |= SFLG_READINGCOMMAND;
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if (pch != pClient->ReadTempBuffer &&
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pClient->cbWriteBuffer) {
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//
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// Start a write of everything we've come across
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// before the start of this command, with
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// WriteSessionOutputCompletedWriteNext specified
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// so we can continue processing the remainder
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// of pReadTempBuffer.
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//
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pClient->cbReadTempBuffer -= (DWORD)( pch - pClient->ReadTempBuffer) + 1;
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cbRead = pClient->cbReadTempBuffer;
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#if DBG
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if (pClient->cbReadTempBuffer == (DWORD)-1) {
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ErrorExit("cbReadTempBuffer underflow.");
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}
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#endif
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MoveMemory(pClient->ReadTempBuffer, pch + 1, cbRead);
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pClient->cbWrite = pClient->cbWriteBuffer;
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pClient->WriteOverlapped.OffsetHigh = 0;
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pClient->WriteOverlapped.Offset = 0;
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if ( ! WriteFileEx(
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pClient->PipeWriteH,
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pClient->WriteBuffer,
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pClient->cbWrite,
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&pClient->WriteOverlapped,
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WriteSessionOutputCompletedWriteNext
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)) {
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CloseClient(pClient);
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}
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TRACE(SESSION, ("%p Wrote %d bytes pre-command output\n", pClient, pClient->cbWrite));
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pClient->cbWriteBuffer = 0;
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return;
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}
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} else {
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if (pClient->cbWriteBuffer == BUFFSIZE) {
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ErrorExit("cbWriteBuffer overflow");
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}
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pClient->WriteBuffer[ pClient->cbWriteBuffer++ ] = *pch;
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}
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} else {
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if (ENDMARK == *pch ||
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pClient->cbCommandBuffer == BUFFSIZE) {
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pClient->ServerFlags &= ~SFLG_READINGCOMMAND;
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//
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// Preceding ENDMARK is the pClient in hex ascii of the
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// client that generated the command, not null terminated.
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//
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if (ENDMARK == *pch) {
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pClient->cbCommandBuffer -=
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min(pClient->cbCommandBuffer, sizeof(pClient->HexAsciiId));
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}
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//
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// We hide each client's input from their output pipe
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// because their local remote.exe has already displayed it.
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//
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if ( pClient->cbCommandBuffer &&
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! (ENDMARK == *pch &&
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! memcmp(
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pch - sizeof(pClient->HexAsciiId),
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pClient->HexAsciiId,
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sizeof(pClient->HexAsciiId)))) {
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//
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// Start a write of the accumulated command with
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// WriteSessionOutputCompletedWriteNext specified
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// so we can continue processing the remainder
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// of pReadTempBuffer.
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//
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pClient->cbReadTempBuffer -= (DWORD)(pch - pClient->ReadTempBuffer) + 1;
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MoveMemory(pClient->ReadTempBuffer, pch + 1, pClient->cbReadTempBuffer);
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pClient->cbWrite = pClient->cbCommandBuffer;
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pClient->cbCommandBuffer = 0;
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pClient->WriteOverlapped.OffsetHigh = 0;
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pClient->WriteOverlapped.Offset = 0;
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if ( ! WriteFileEx(
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pClient->PipeWriteH,
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pClient->CommandBuffer,
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pClient->cbWrite,
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&pClient->WriteOverlapped,
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WriteSessionOutputCompletedWriteNext
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)) {
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CloseClient(pClient);
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return;
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} else {
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TRACE(SESSION, ("%p Wrote %d bytes command\n", pClient, pClient->cbWrite));
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return;
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}
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} else {
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//
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// We're eating this command for this session.
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//
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pClient->cbCommandBuffer = 0;
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}
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} else {
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pClient->CommandBuffer[ pClient->cbCommandBuffer++ ] = *pch;
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}
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}
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}
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//
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// We're done with the ReadTempBuffer.
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//
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pClient->cbReadTempBuffer = 0;
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if (pClient->cbWriteBuffer) {
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pClient->cbWrite = pClient->cbWriteBuffer;
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pClient->WriteOverlapped.OffsetHigh = 0;
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pClient->WriteOverlapped.Offset = 0;
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if ( ! WriteFileEx(
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pClient->PipeWriteH,
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pClient->WriteBuffer,
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pClient->cbWrite,
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&pClient->WriteOverlapped,
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WriteSessionOutputCompletedReadNext
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)) {
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CloseClient(pClient);
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return;
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} else {
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TRACE(SESSION, ("%p Wrote %d bytes normal\n", pClient, pClient->cbWrite));
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pClient->cbWriteBuffer = 0;
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}
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} else {
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//
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// Write buffer is empty.
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//
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pClient->cbWrite = 0;
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StartReadTempFile(pClient);
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}
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}
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BOOL
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FASTCALL
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WriteSessionOutputCompletedCommon(
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PREMOTE_CLIENT pClient,
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DWORD dwError,
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DWORD cbWritten,
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LPOVERLAPPED_COMPLETION_ROUTINE lpCompletionRoutine
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)
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{
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if (HandleSessionError(pClient, dwError)) {
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return TRUE;
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}
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if (!pClient->cbWrite) {
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ErrorExit("Zero cbWrite in WriteSessionOutputCompletedCommon");
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}
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if (!cbWritten && pClient->cbWrite) {
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printf("WriteSessionOutput zero bytes written of %d.\n", pClient->cbWrite);
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ErrorExit("WriteSessionOutputCompletedCommon failure");
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return TRUE;
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}
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#if DBG
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if (cbWritten != pClient->cbWrite) {
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printf("%p cbWritten %d cbWrite %d\n", pClient, cbWritten, pClient->cbWrite);
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}
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#endif
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return FALSE;
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}
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VOID
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WINAPI
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WriteSessionOutputCompletedWriteNext(
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DWORD dwError,
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DWORD cbWritten,
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LPOVERLAPPED lpO
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)
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{
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PREMOTE_CLIENT pClient;
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pClient = CONTAINING_RECORD(lpO, REMOTE_CLIENT, WriteOverlapped);
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if (WriteSessionOutputCompletedCommon(
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pClient,
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dwError,
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cbWritten,
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WriteSessionOutputCompletedWriteNext
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)) {
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return;
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}
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StartWriteSessionOutput(pClient);
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}
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VOID
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WINAPI
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WriteSessionOutputCompletedReadNext(
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DWORD dwError,
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DWORD cbWritten,
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LPOVERLAPPED lpO
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)
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{
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PREMOTE_CLIENT pClient;
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pClient = CONTAINING_RECORD(lpO, REMOTE_CLIENT, WriteOverlapped);
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if (WriteSessionOutputCompletedCommon(
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pClient,
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dwError,
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cbWritten,
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WriteSessionOutputCompletedReadNext
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)) {
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return;
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}
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//
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// Start another temp file read.
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//
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pClient->cbWrite = 0;
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StartReadTempFile(pClient);
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}
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