mirror of
https://github.com/reactos/reactos.git
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173 lines
6.3 KiB
C
173 lines
6.3 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/include/internal/lpc_x.h
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* PURPOSE: Internal Inlined Functions for Local Procedure Call
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* PROGRAMMERS: Alex Ionescu (alex.ionescu@reactos.org)
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*/
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//
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// Gets the message type, removing the kernel-mode flag
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//
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#define LpcpGetMessageType(x) \
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((x)->u2.s2.Type &~ LPC_KERNELMODE_MESSAGE)
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//
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// Waits on an LPC semaphore for a receive operation
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//
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#define LpcpReceiveWait(s, w) \
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{ \
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LPCTRACE(LPC_REPLY_DEBUG, "Wait: %p\n", s); \
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Status = KeWaitForSingleObject(s, \
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WrLpcReceive, \
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w, \
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FALSE, \
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NULL); \
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LPCTRACE(LPC_REPLY_DEBUG, "Wait done: %lx\n", Status); \
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}
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//
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// Waits on an LPC semaphore for a reply operation
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//
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#define LpcpReplyWait(s, w) \
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{ \
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LPCTRACE(LPC_SEND_DEBUG, "Wait: %p\n", s); \
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Status = KeWaitForSingleObject(s, \
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WrLpcReply, \
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w, \
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FALSE, \
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NULL); \
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LPCTRACE(LPC_SEND_DEBUG, "Wait done: %lx\n", Status); \
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if (Status == STATUS_USER_APC) \
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{ \
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/* We were preempted by an APC */ \
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if (KeReadStateSemaphore(s)) \
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{ \
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/* It's still signaled, so wait on it */ \
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KeWaitForSingleObject(s, \
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WrExecutive, \
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KernelMode, \
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FALSE, \
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NULL); \
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Status = STATUS_SUCCESS; \
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} \
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} \
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}
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//
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// Waits on an LPC semaphore for a connect operation
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//
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#define LpcpConnectWait(s, w) \
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{ \
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LPCTRACE(LPC_CONNECT_DEBUG, "Wait: %p\n", s); \
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Status = KeWaitForSingleObject(s, \
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Executive, \
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w, \
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FALSE, \
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NULL); \
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LPCTRACE(LPC_CONNECT_DEBUG, "Wait done: %lx\n", Status);\
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if (Status == STATUS_USER_APC) \
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{ \
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/* We were preempted by an APC */ \
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if (KeReadStateSemaphore(s)) \
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{ \
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/* It's still signaled, so wait on it */ \
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KeWaitForSingleObject(s, \
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WrExecutive, \
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KernelMode, \
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FALSE, \
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NULL); \
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Status = STATUS_SUCCESS; \
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} \
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} \
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}
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//
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// Releases an LPC Semaphore to complete a wait
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//
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#define LpcpCompleteWait(s) \
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{ \
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/* Release the semaphore */ \
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LPCTRACE(LPC_SEND_DEBUG, "Release: %p\n", s); \
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KeReleaseSemaphore(s, 1, 1, FALSE); \
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}
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//
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// Allocates a new message
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//
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static __inline
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PLPCP_MESSAGE
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LpcpAllocateFromPortZone(VOID)
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{
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PLPCP_MESSAGE Message;
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/* Allocate a message from the port zone while holding the lock */
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KeAcquireGuardedMutex(&LpcpLock);
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Message = (PLPCP_MESSAGE)ExAllocateFromPagedLookasideList(&LpcpMessagesLookaside);
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if (!Message)
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{
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/* Fail, and let caller cleanup */
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KeReleaseGuardedMutex(&LpcpLock);
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return NULL;
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}
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/* Initialize it */
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InitializeListHead(&Message->Entry);
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Message->RepliedToThread = NULL;
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Message->Request.u2.ZeroInit = 0;
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/* Release the lock */
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KeReleaseGuardedMutex(&LpcpLock);
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return Message;
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}
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//
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// Get the LPC Message associated to the Thread
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//
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FORCEINLINE
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PLPCP_MESSAGE
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LpcpGetMessageFromThread(IN PETHREAD Thread)
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{
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/* Check if the port flag is set */
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if (((ULONG_PTR)Thread->LpcReplyMessage) & LPCP_THREAD_FLAG_IS_PORT)
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{
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/* The pointer is actually a port, not a message, so return NULL */
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return NULL;
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}
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/* Otherwise, this is a message. Return the pointer */
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return (PLPCP_MESSAGE)((ULONG_PTR)Thread->LpcReplyMessage & ~LPCP_THREAD_FLAGS);
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}
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FORCEINLINE
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PLPCP_PORT_OBJECT
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LpcpGetPortFromThread(IN PETHREAD Thread)
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{
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/* Check if the port flag is set */
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if (((ULONG_PTR)Thread->LpcReplyMessage) & LPCP_THREAD_FLAG_IS_PORT)
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{
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/* The pointer is actually a port, return it */
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return (PLPCP_PORT_OBJECT)((ULONG_PTR)Thread->LpcWaitingOnPort &
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~LPCP_THREAD_FLAGS);
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}
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/* Otherwise, this is a message. There is nothing to return */
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return NULL;
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}
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FORCEINLINE
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VOID
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LpcpSetPortToThread(IN PETHREAD Thread,
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IN PLPCP_PORT_OBJECT Port)
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{
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/* Set the port object */
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Thread->LpcWaitingOnPort = (PVOID)(((ULONG_PTR)Port) |
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LPCP_THREAD_FLAG_IS_PORT);
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}
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FORCEINLINE
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PLPCP_DATA_INFO
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LpcpGetDataInfoFromMessage(PPORT_MESSAGE Message)
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{
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return (PLPCP_DATA_INFO)((PUCHAR)Message + Message->u2.s2.DataInfoOffset);
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}
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