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90 lines
2.2 KiB
90 lines
2.2 KiB
/*++
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Copyright (c) 1999 Microsoft Corporation
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Module Name:
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locks.c
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Abstract:
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Millennium locks. See below for details of the WHY you might
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do this.
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Author:
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Scott Holden (sholden) 2/10/2000
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Revision History:
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--*/
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#include "tcpipbase.h"
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//
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// The TCP/IP stacks makes a number of assumptions about the receive indication
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// path being at DPC. Since Millennium indicates receives up on a global event
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// at PASSIVE level, we need to take extra precautions in this path to return
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// the thread to the correct IRQL upon releasing a spin lock.
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//
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// Since TCP/IP will grab locks and release in a different order and in some
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// situations CTEGetLockAtDPC will not save the previous IRQL, there were many
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// issues with leaving threads at the wrong IRQL when enabling spin locks.
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//
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// This implementation solves this issue -- since we are on a uniproc machine.
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// When we enter the first lock, we can raise IRQL to DISPATCH to ensure
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// that we are not pre-empted. Each additional lock will increment the count.
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// When the last lock is released, the old IRQL is restored.
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//
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//
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LONG gTcpipLock = 0;
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KIRQL gTcpipOldIrql;
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VOID
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TcpipMillenGetLock(
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CTELock *pLock
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)
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{
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#if DBG
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KIRQL OldIrql;
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#endif // DBG
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ASSERT(gTcpipLock >= 0);
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// First spinlock acquire raises DPC.
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if (gTcpipLock++ == 0) {
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KeRaiseIrql(DISPATCH_LEVEL, &gTcpipOldIrql);
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}
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// Verify that our individual locks are somehow not reentrant.
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// KeAcquireSpinLock will do that for us on Millennium.
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ASSERT((KeAcquireSpinLock(pLock, &OldIrql),OldIrql==DISPATCH_LEVEL) && ((*pLock)&1));
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ASSERT(gTcpipLock >= 1);
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return;
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}
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VOID
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TcpipMillenFreeLock(
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CTELock *pLock
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)
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{
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ASSERT(gTcpipLock >= 1);
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// Verify that our individual locks are somehow not reentrant.
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// KeReleaseSpinLock on Millennium does that and more for us.
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ASSERT(KeGetCurrentIrql()==DISPATCH_LEVEL &&
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(KeReleaseSpinLock(pLock, DISPATCH_LEVEL),TRUE));
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// Last release lowers IRQL to original.
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if (--gTcpipLock == 0) {
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KeLowerIrql(gTcpipOldIrql);
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}
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ASSERT(gTcpipLock >= 0);
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return;
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}
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