mirror of
https://github.com/reactos/reactos.git
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487 lines
16 KiB
C
487 lines
16 KiB
C
/*
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* PROJECT: ReactOS Kernel
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* LICENSE: GPL - See COPYING in the top level directory
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* FILE: ntoskrnl/lpc/complete.c
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* PURPOSE: Local Procedure Call: Connection Completion
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* PROGRAMMERS: Alex Ionescu (alex.ionescu@reactos.org)
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*/
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/* INCLUDES ******************************************************************/
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#include <ntoskrnl.h>
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#define NDEBUG
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#include <debug.h>
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/* PRIVATE FUNCTIONS *********************************************************/
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VOID
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NTAPI
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LpcpPrepareToWakeClient(IN PETHREAD Thread)
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{
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PAGED_CODE();
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/* Make sure the thread isn't dying and it has a valid chain */
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if (!(Thread->LpcExitThreadCalled) &&
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!(IsListEmpty(&Thread->LpcReplyChain)))
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{
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/* Remove it from the list and reinitialize it */
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RemoveEntryList(&Thread->LpcReplyChain);
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InitializeListHead(&Thread->LpcReplyChain);
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}
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}
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/* PUBLIC FUNCTIONS **********************************************************/
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/*
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* @implemented
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*/
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NTSTATUS
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NTAPI
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NtAcceptConnectPort(OUT PHANDLE PortHandle,
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IN PVOID PortContext OPTIONAL,
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IN PPORT_MESSAGE ReplyMessage,
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IN BOOLEAN AcceptConnection,
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IN OUT PPORT_VIEW ServerView OPTIONAL,
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OUT PREMOTE_PORT_VIEW ClientView OPTIONAL)
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{
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NTSTATUS Status;
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KPROCESSOR_MODE PreviousMode = KeGetPreviousMode();
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PORT_VIEW CapturedServerView;
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PORT_MESSAGE CapturedReplyMessage;
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ULONG ConnectionInfoLength;
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PLPCP_PORT_OBJECT ConnectionPort, ServerPort, ClientPort;
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PLPCP_CONNECTION_MESSAGE ConnectMessage;
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PLPCP_MESSAGE Message;
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PVOID ClientSectionToMap = NULL;
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HANDLE Handle;
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PEPROCESS ClientProcess;
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PETHREAD ClientThread;
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LARGE_INTEGER SectionOffset;
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PAGED_CODE();
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LPCTRACE(LPC_COMPLETE_DEBUG,
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"Context: %p. Message: %p. Accept: %lx. Views: %p/%p\n",
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PortContext,
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ReplyMessage,
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AcceptConnection,
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ClientView,
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ServerView);
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/* Check if the call comes from user mode */
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if (PreviousMode != KernelMode)
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{
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_SEH2_TRY
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{
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/* Probe the PortHandle */
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ProbeForWriteHandle(PortHandle);
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/* Probe the basic ReplyMessage structure */
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ProbeForRead(ReplyMessage, sizeof(*ReplyMessage), sizeof(ULONG));
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CapturedReplyMessage = *(volatile PORT_MESSAGE*)ReplyMessage;
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ConnectionInfoLength = CapturedReplyMessage.u1.s1.DataLength;
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/* Probe the connection info */
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ProbeForRead(ReplyMessage + 1, ConnectionInfoLength, 1);
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/* The following parameters are optional */
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/* Capture the server view */
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if (ServerView)
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{
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ProbeForWrite(ServerView, sizeof(*ServerView), sizeof(ULONG));
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CapturedServerView = *(volatile PORT_VIEW*)ServerView;
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/* Validate the size of the server view */
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if (CapturedServerView.Length != sizeof(CapturedServerView))
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{
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/* Invalid size */
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_SEH2_YIELD(return STATUS_INVALID_PARAMETER);
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}
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}
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/* Capture the client view */
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if (ClientView)
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{
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ProbeForWrite(ClientView, sizeof(*ClientView), sizeof(ULONG));
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/* Validate the size of the client view */
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if (((volatile REMOTE_PORT_VIEW*)ClientView)->Length != sizeof(*ClientView))
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{
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/* Invalid size */
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_SEH2_YIELD(return STATUS_INVALID_PARAMETER);
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}
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}
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}
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_SEH2_EXCEPT(EXCEPTION_EXECUTE_HANDLER)
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{
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/* There was an exception, return the exception code */
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_SEH2_YIELD(return _SEH2_GetExceptionCode());
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}
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_SEH2_END;
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}
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else
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{
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CapturedReplyMessage = *ReplyMessage;
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ConnectionInfoLength = CapturedReplyMessage.u1.s1.DataLength;
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/* Capture the server view */
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if (ServerView)
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{
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/* Validate the size of the server view */
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if (ServerView->Length != sizeof(*ServerView))
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{
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/* Invalid size */
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return STATUS_INVALID_PARAMETER;
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}
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CapturedServerView = *ServerView;
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}
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/* Capture the client view */
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if (ClientView)
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{
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/* Validate the size of the client view */
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if (ClientView->Length != sizeof(*ClientView))
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{
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/* Invalid size */
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return STATUS_INVALID_PARAMETER;
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}
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}
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}
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/* Get the client process and thread */
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Status = PsLookupProcessThreadByCid(&CapturedReplyMessage.ClientId,
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&ClientProcess,
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&ClientThread);
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if (!NT_SUCCESS(Status)) return Status;
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/* Acquire the LPC Lock */
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KeAcquireGuardedMutex(&LpcpLock);
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/* Make sure that the client wants a reply, and this is the right one */
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if (!(LpcpGetMessageFromThread(ClientThread)) ||
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!(CapturedReplyMessage.MessageId) ||
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(ClientThread->LpcReplyMessageId != CapturedReplyMessage.MessageId))
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{
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/* Not the reply asked for, or no reply wanted, fail */
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KeReleaseGuardedMutex(&LpcpLock);
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ObDereferenceObject(ClientProcess);
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ObDereferenceObject(ClientThread);
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return STATUS_REPLY_MESSAGE_MISMATCH;
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}
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/* Now get the message and connection message */
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Message = LpcpGetMessageFromThread(ClientThread);
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ConnectMessage = (PLPCP_CONNECTION_MESSAGE)(Message + 1);
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/* Get the client and connection port as well */
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ClientPort = ConnectMessage->ClientPort;
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ConnectionPort = ClientPort->ConnectionPort;
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/* Make sure that the reply is being sent to the proper server process */
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if (ConnectionPort->ServerProcess != PsGetCurrentProcess())
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{
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/* It's not, so fail */
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KeReleaseGuardedMutex(&LpcpLock);
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ObDereferenceObject(ClientProcess);
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ObDereferenceObject(ClientThread);
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return STATUS_REPLY_MESSAGE_MISMATCH;
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}
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/* At this point, don't let other accept attempts happen */
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ClientThread->LpcReplyMessage = NULL;
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ClientThread->LpcReplyMessageId = 0;
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/* Clear the client port for now as well, then release the lock */
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ConnectMessage->ClientPort = NULL;
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KeReleaseGuardedMutex(&LpcpLock);
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/* Check the connection information length */
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if (ConnectionInfoLength > ConnectionPort->MaxConnectionInfoLength)
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{
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/* Normalize it since it's too large */
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ConnectionInfoLength = ConnectionPort->MaxConnectionInfoLength;
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}
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/* Set the sizes of our reply message */
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Message->Request.u1.s1.DataLength = (CSHORT)ConnectionInfoLength +
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sizeof(LPCP_CONNECTION_MESSAGE);
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Message->Request.u1.s1.TotalLength = sizeof(LPCP_MESSAGE) +
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Message->Request.u1.s1.DataLength;
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/* Setup the reply message */
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Message->Request.u2.s2.Type = LPC_REPLY;
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Message->Request.u2.s2.DataInfoOffset = 0;
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Message->Request.ClientId = CapturedReplyMessage.ClientId;
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Message->Request.MessageId = CapturedReplyMessage.MessageId;
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Message->Request.ClientViewSize = 0;
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_SEH2_TRY
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{
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RtlCopyMemory(ConnectMessage + 1, ReplyMessage + 1, ConnectionInfoLength);
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}
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_SEH2_EXCEPT(EXCEPTION_EXECUTE_HANDLER)
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{
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Status = _SEH2_GetExceptionCode();
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_SEH2_YIELD(goto Cleanup);
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}
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_SEH2_END;
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/* At this point, if the caller refused the connection, go to cleanup */
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if (!AcceptConnection)
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{
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DPRINT1("LPC connection was refused\n");
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goto Cleanup;
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}
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/* Otherwise, create the actual port */
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Status = ObCreateObject(PreviousMode,
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LpcPortObjectType,
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NULL,
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PreviousMode,
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NULL,
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sizeof(LPCP_PORT_OBJECT),
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0,
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0,
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(PVOID*)&ServerPort);
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if (!NT_SUCCESS(Status)) goto Cleanup;
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/* Set it up */
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RtlZeroMemory(ServerPort, sizeof(LPCP_PORT_OBJECT));
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ServerPort->PortContext = PortContext;
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ServerPort->Flags = LPCP_COMMUNICATION_PORT;
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ServerPort->MaxMessageLength = ConnectionPort->MaxMessageLength;
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InitializeListHead(&ServerPort->LpcReplyChainHead);
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InitializeListHead(&ServerPort->LpcDataInfoChainHead);
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/* Reference the connection port until we're fully setup */
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ObReferenceObject(ConnectionPort);
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/* Link the ports together */
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ServerPort->ConnectionPort = ConnectionPort;
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ServerPort->ConnectedPort = ClientPort;
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ClientPort->ConnectedPort = ServerPort;
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/* Also set the creator CID */
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ServerPort->Creator = PsGetCurrentThread()->Cid;
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ClientPort->Creator = Message->Request.ClientId;
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/* Get the section associated and then clear it, while inside the lock */
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KeAcquireGuardedMutex(&LpcpLock);
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ClientSectionToMap = ConnectMessage->SectionToMap;
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ConnectMessage->SectionToMap = NULL;
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KeReleaseGuardedMutex(&LpcpLock);
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/* Now check if there's a client section */
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if (ClientSectionToMap)
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{
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/* Setup the offset */
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SectionOffset.QuadPart = ConnectMessage->ClientView.SectionOffset;
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/* Map the section */
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Status = MmMapViewOfSection(ClientSectionToMap,
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PsGetCurrentProcess(),
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&ServerPort->ClientSectionBase,
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0,
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0,
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&SectionOffset,
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&ConnectMessage->ClientView.ViewSize,
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ViewUnmap,
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0,
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PAGE_READWRITE);
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/* Update the offset and check for mapping status */
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ConnectMessage->ClientView.SectionOffset = SectionOffset.LowPart;
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if (NT_SUCCESS(Status))
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{
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/* Set the view base */
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ConnectMessage->ClientView.ViewRemoteBase = ServerPort->
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ClientSectionBase;
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/* Save and reference the mapping process */
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ServerPort->MappingProcess = PsGetCurrentProcess();
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ObReferenceObject(ServerPort->MappingProcess);
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}
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else
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{
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/* Otherwise, quit */
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ObDereferenceObject(ServerPort);
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DPRINT1("Client section mapping failed: %lx\n", Status);
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DPRINT1("View base, offset, size: %p %lx %p\n",
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ServerPort->ClientSectionBase,
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ConnectMessage->ClientView.ViewSize,
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SectionOffset);
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goto Cleanup;
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}
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}
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/* Check if there's a server section */
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if (ServerView)
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{
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/* FIXME: TODO */
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UNREFERENCED_PARAMETER(CapturedServerView);
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ASSERT(FALSE);
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}
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/* Reference the server port until it's fully inserted */
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ObReferenceObject(ServerPort);
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/* Insert the server port in the namespace */
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Status = ObInsertObject(ServerPort,
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NULL,
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PORT_ALL_ACCESS,
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0,
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NULL,
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&Handle);
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if (!NT_SUCCESS(Status))
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{
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/* We failed, remove the extra reference and cleanup */
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ObDereferenceObject(ServerPort);
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goto Cleanup;
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}
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/* Enter SEH to write back the results */
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_SEH2_TRY
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{
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/* Check if the caller gave a client view */
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if (ClientView)
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{
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/* Fill it out */
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ClientView->ViewBase = ConnectMessage->ClientView.ViewRemoteBase;
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ClientView->ViewSize = ConnectMessage->ClientView.ViewSize;
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}
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/* Return the handle to user mode */
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*PortHandle = Handle;
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}
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_SEH2_EXCEPT(EXCEPTION_EXECUTE_HANDLER)
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{
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/* Cleanup and return the exception code */
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ObCloseHandle(Handle, PreviousMode);
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ObDereferenceObject(ServerPort);
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Status = _SEH2_GetExceptionCode();
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_SEH2_YIELD(goto Cleanup);
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}
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_SEH2_END;
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LPCTRACE(LPC_COMPLETE_DEBUG,
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"Handle: %p. Messages: %p/%p. Ports: %p/%p/%p\n",
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Handle,
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Message,
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ConnectMessage,
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ServerPort,
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ClientPort,
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ConnectionPort);
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/* If there was no port context, use the handle by default */
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if (!PortContext) ServerPort->PortContext = Handle;
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ServerPort->ClientThread = ClientThread;
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/* Set this message as the LPC Reply message while holding the lock */
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KeAcquireGuardedMutex(&LpcpLock);
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ClientThread->LpcReplyMessage = Message;
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KeReleaseGuardedMutex(&LpcpLock);
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/* Clear the thread pointer so it doesn't get cleaned later */
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ClientThread = NULL;
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/* Remove the extra reference we had added */
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ObDereferenceObject(ServerPort);
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Cleanup:
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/* If there was a section, dereference it */
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if (ClientSectionToMap) ObDereferenceObject(ClientSectionToMap);
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/* Check if we got here while still having a client thread */
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if (ClientThread)
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{
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KeAcquireGuardedMutex(&LpcpLock);
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ClientThread->LpcReplyMessage = Message;
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LpcpPrepareToWakeClient(ClientThread);
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KeReleaseGuardedMutex(&LpcpLock);
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LpcpCompleteWait(&ClientThread->LpcReplySemaphore);
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ObDereferenceObject(ClientThread);
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}
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/* Dereference the client port if we have one, and the process */
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LPCTRACE(LPC_COMPLETE_DEBUG,
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"Status: %lx. Thread: %p. Process: [%.16s]\n",
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Status,
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ClientThread,
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ClientProcess->ImageFileName);
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if (ClientPort) ObDereferenceObject(ClientPort);
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ObDereferenceObject(ClientProcess);
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return Status;
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}
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/*
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* @implemented
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*/
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NTSTATUS
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NTAPI
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NtCompleteConnectPort(IN HANDLE PortHandle)
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{
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NTSTATUS Status;
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KPROCESSOR_MODE PreviousMode = KeGetPreviousMode();
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PLPCP_PORT_OBJECT Port;
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PETHREAD Thread;
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PAGED_CODE();
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LPCTRACE(LPC_COMPLETE_DEBUG, "Handle: %p\n", PortHandle);
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/* Get the Port Object */
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Status = ObReferenceObjectByHandle(PortHandle,
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PORT_ALL_ACCESS,
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LpcPortObjectType,
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PreviousMode,
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(PVOID*)&Port,
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NULL);
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if (!NT_SUCCESS(Status)) return Status;
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/* Make sure this is a connection port */
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if ((Port->Flags & LPCP_PORT_TYPE_MASK) != LPCP_COMMUNICATION_PORT)
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{
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/* It isn't, fail */
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ObDereferenceObject(Port);
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return STATUS_INVALID_PORT_HANDLE;
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}
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/* Acquire the lock */
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KeAcquireGuardedMutex(&LpcpLock);
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/* Make sure we have a client thread */
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if (!Port->ClientThread)
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{
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/* We don't, fail */
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KeReleaseGuardedMutex(&LpcpLock);
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ObDereferenceObject(Port);
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return STATUS_INVALID_PARAMETER;
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}
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/* Get the thread */
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Thread = Port->ClientThread;
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/* Make sure it has a reply message */
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if (!LpcpGetMessageFromThread(Thread))
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{
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/* It doesn't, quit */
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KeReleaseGuardedMutex(&LpcpLock);
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ObDereferenceObject(Port);
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return STATUS_SUCCESS;
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}
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/* Clear the client thread and wake it up */
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Port->ClientThread = NULL;
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LpcpPrepareToWakeClient(Thread);
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/* Release the lock and wait for an answer */
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KeReleaseGuardedMutex(&LpcpLock);
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LpcpCompleteWait(&Thread->LpcReplySemaphore);
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/* Dereference the Thread and Port and return */
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ObDereferenceObject(Port);
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ObDereferenceObject(Thread);
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LPCTRACE(LPC_COMPLETE_DEBUG, "Port: %p. Thread: %p\n", Port, Thread);
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return Status;
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}
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/* EOF */
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