ntoskrnl.exe: Implement Ke(Initialize|Insert|Remove)DeviceQueue.
Signed-off-by: Rémi Bernon <rbernon@codeweavers.com> Signed-off-by: Zebediah Figura <zfigura@codeweavers.com> Signed-off-by: Alexandre Julliard <julliard@winehq.org>
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0f48202335
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2862ff6ba7
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@ -567,7 +567,7 @@
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@ stub KeI386SetGdtSelector
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@ stub KeIcacheFlushCount
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@ stdcall KeInitializeApc(ptr ptr long ptr ptr ptr long ptr)
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@ stub KeInitializeDeviceQueue
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@ stdcall KeInitializeDeviceQueue(ptr)
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@ stdcall KeInitializeDpc(ptr ptr ptr)
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@ stdcall KeInitializeEvent(ptr long long)
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@ stub KeInitializeInterrupt
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@ -579,7 +579,7 @@
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@ stdcall KeInitializeTimer(ptr)
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@ stdcall KeInitializeTimerEx(ptr long)
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@ stub KeInsertByKeyDeviceQueue
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@ stub KeInsertDeviceQueue
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@ stdcall KeInsertDeviceQueue(ptr ptr)
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@ stub KeInsertHeadQueue
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@ stdcall KeInsertQueue(ptr ptr)
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@ stub KeInsertQueueApc
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@ -617,7 +617,7 @@
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@ stdcall KeReleaseSpinLockFromDpcLevel(ptr)
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@ stub KeRemoveByKeyDeviceQueue
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@ stub KeRemoveByKeyDeviceQueueIfBusy
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@ stub KeRemoveDeviceQueue
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@ stdcall KeRemoveDeviceQueue(ptr)
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@ stub KeRemoveEntryDeviceQueue
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@ stub KeRemoveQueue
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@ stub KeRemoveQueueDpc
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@ -1362,3 +1362,50 @@ BOOLEAN WINAPI KeSetTimer(KTIMER *timer, LARGE_INTEGER duetime, KDPC *dpc)
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return KeSetTimerEx(timer, duetime, 0, dpc);
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}
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void WINAPI KeInitializeDeviceQueue( KDEVICE_QUEUE *queue )
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{
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TRACE( "queue %p.\n", queue );
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KeInitializeSpinLock( &queue->Lock );
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InitializeListHead( &queue->DeviceListHead );
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queue->Busy = FALSE;
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queue->Type = IO_TYPE_DEVICE_QUEUE;
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queue->Size = sizeof(*queue);
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}
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BOOLEAN WINAPI KeInsertDeviceQueue( KDEVICE_QUEUE *queue, KDEVICE_QUEUE_ENTRY *entry )
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{
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BOOL insert;
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KIRQL irql;
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TRACE( "queue %p, entry %p.\n", queue, entry );
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KeAcquireSpinLock( &queue->Lock, &irql );
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insert = entry->Inserted = queue->Busy;
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if (insert) InsertTailList( &queue->DeviceListHead, &entry->DeviceListEntry );
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queue->Busy = TRUE;
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KeReleaseSpinLock( &queue->Lock, irql );
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return insert;
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}
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KDEVICE_QUEUE_ENTRY *WINAPI KeRemoveDeviceQueue( KDEVICE_QUEUE *queue )
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{
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KDEVICE_QUEUE_ENTRY *entry = NULL;
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KIRQL irql;
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TRACE( "queue %p.\n", queue );
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KeAcquireSpinLock( &queue->Lock, &irql );
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if (IsListEmpty( &queue->DeviceListHead )) queue->Busy = FALSE;
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else
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{
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entry = CONTAINING_RECORD( RemoveHeadList( &queue->DeviceListHead ),
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KDEVICE_QUEUE_ENTRY, DeviceListEntry );
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entry->Inserted = FALSE;
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}
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KeReleaseSpinLock( &queue->Lock, irql );
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return entry;
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}
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@ -141,6 +141,133 @@ static void test_irp_struct(IRP *irp, DEVICE_OBJECT *device)
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IoFreeIrp(irp);
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}
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static int cancel_queue_cnt;
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static void WINAPI cancel_queued_irp(DEVICE_OBJECT *device, IRP *irp)
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{
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IoReleaseCancelSpinLock(irp->CancelIrql);
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ok(irp->Cancel == TRUE, "Cancel = %x\n", irp->Cancel);
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ok(!irp->CancelRoutine, "CancelRoutine = %p\n", irp->CancelRoutine);
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irp->IoStatus.Status = STATUS_CANCELLED;
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irp->IoStatus.Information = 0;
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cancel_queue_cnt++;
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}
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static void test_queue(void)
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{
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KDEVICE_QUEUE_ENTRY *entry;
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KDEVICE_QUEUE queue;
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BOOLEAN ret;
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KIRQL irql;
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IRP *irp;
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irp = IoAllocateIrp(1, FALSE);
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memset(&queue, 0xcd, sizeof(queue));
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KeInitializeDeviceQueue(&queue);
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ok(!queue.Busy, "unexpected Busy state\n");
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ok(queue.Size == sizeof(queue), "unexpected Size %x\n", queue.Size);
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ok(queue.Type == IO_TYPE_DEVICE_QUEUE, "unexpected Type %x\n", queue.Type);
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ok(IsListEmpty(&queue.DeviceListHead), "expected empty queue list\n");
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ret = KeInsertDeviceQueue(&queue, &irp->Tail.Overlay.DeviceQueueEntry);
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ok(!ret, "expected KeInsertDeviceQueue to not insert IRP\n");
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ok(queue.Busy, "expected Busy state\n");
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ok(IsListEmpty(&queue.DeviceListHead), "expected empty queue list\n");
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ok(!irp->Tail.Overlay.DeviceQueueEntry.Inserted, "expected not inserted\n");
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entry = KeRemoveDeviceQueue(&queue);
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ok(!entry, "expected KeRemoveDeviceQueue to return NULL\n");
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ok(!queue.Busy, "unexpected Busy state\n");
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ok(IsListEmpty(&queue.DeviceListHead), "expected empty queue list\n");
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ok(!irp->Tail.Overlay.DeviceQueueEntry.Inserted, "expected not inserted\n");
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ret = KeInsertDeviceQueue(&queue, &irp->Tail.Overlay.DeviceQueueEntry);
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ok(!ret, "expected KeInsertDeviceQueue to not insert IRP\n");
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ok(queue.Busy, "expected Busy state\n");
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ok(IsListEmpty(&queue.DeviceListHead), "expected empty queue list\n");
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ok(!irp->Tail.Overlay.DeviceQueueEntry.Inserted, "expected not inserted\n");
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ret = KeInsertDeviceQueue(&queue, &irp->Tail.Overlay.DeviceQueueEntry);
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ok(ret, "expected KeInsertDeviceQueue to insert IRP\n");
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ok(queue.Busy, "expected Busy state\n");
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ok(!IsListEmpty(&queue.DeviceListHead), "unexpected empty queue list\n");
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ok(irp->Tail.Overlay.DeviceQueueEntry.Inserted, "expected inserted\n");
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ok(queue.DeviceListHead.Flink == &irp->Tail.Overlay.DeviceQueueEntry.DeviceListEntry,
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"unexpected queue list head\n");
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entry = KeRemoveDeviceQueue(&queue);
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ok(entry != NULL, "expected KeRemoveDeviceQueue to return non-NULL\n");
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ok(CONTAINING_RECORD(entry, IRP, Tail.Overlay.DeviceQueueEntry) == irp,
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"unexpected IRP returned\n");
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ok(queue.Busy, "expected Busy state\n");
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ok(IsListEmpty(&queue.DeviceListHead), "expected empty queue list\n");
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ok(!irp->Tail.Overlay.DeviceQueueEntry.Inserted, "expected not inserted\n");
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entry = KeRemoveDeviceQueue(&queue);
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ok(entry == NULL, "expected KeRemoveDeviceQueue to return NULL\n");
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ok(!queue.Busy, "unexpected Busy state\n");
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ok(IsListEmpty(&queue.DeviceListHead), "expected empty queue list\n");
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ok(!irp->Tail.Overlay.DeviceQueueEntry.Inserted, "expected not inserted\n");
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IoCancelIrp(irp);
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ok(irp->Cancel, "unexpected non-cancelled state\n");
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ret = KeInsertDeviceQueue(&queue, &irp->Tail.Overlay.DeviceQueueEntry);
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ok(!ret, "expected KeInsertDeviceQueue to not insert IRP\n");
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ok(queue.Busy, "expected Busy state\n");
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ok(IsListEmpty(&queue.DeviceListHead), "expected empty queue list\n");
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ok(!irp->Tail.Overlay.DeviceQueueEntry.Inserted, "expected inserted\n");
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ret = KeInsertDeviceQueue(&queue, &irp->Tail.Overlay.DeviceQueueEntry);
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ok(ret, "expected KeInsertDeviceQueue to insert IRP\n");
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ok(queue.Busy, "expected Busy state\n");
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ok(!IsListEmpty(&queue.DeviceListHead), "unexpected empty queue list\n");
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ok(irp->Tail.Overlay.DeviceQueueEntry.Inserted, "expected inserted\n");
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ok(queue.DeviceListHead.Flink == &irp->Tail.Overlay.DeviceQueueEntry.DeviceListEntry,
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"unexpected queue list head\n");
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entry = KeRemoveDeviceQueue(&queue);
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ok(entry != NULL, "expected KeRemoveDeviceQueue to return non-NULL\n");
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ok(CONTAINING_RECORD(entry, IRP, Tail.Overlay.DeviceQueueEntry) == irp,
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"unexpected IRP returned\n");
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ok(queue.Busy, "expected Busy state\n");
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ok(IsListEmpty(&queue.DeviceListHead), "expected empty queue list\n");
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ok(!irp->Tail.Overlay.DeviceQueueEntry.Inserted, "expected inserted\n");
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ok(irp->Cancel, "unexpected non-cancelled state\n");
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IoFreeIrp(irp);
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irp = IoAllocateIrp(1, FALSE);
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IoAcquireCancelSpinLock(&irql);
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IoSetCancelRoutine(irp, cancel_queued_irp);
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IoReleaseCancelSpinLock(irql);
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ret = KeInsertDeviceQueue(&queue, &irp->Tail.Overlay.DeviceQueueEntry);
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ok(ret, "expected KeInsertDeviceQueue to insert IRP\n");
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ok(queue.Busy, "expected Busy state\n");
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ok(!IsListEmpty(&queue.DeviceListHead), "expected empty queue list\n");
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ok(irp->Tail.Overlay.DeviceQueueEntry.Inserted, "expected inserted\n");
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ok(queue.DeviceListHead.Flink == &irp->Tail.Overlay.DeviceQueueEntry.DeviceListEntry,
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"unexpected queue list head\n");
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IoCancelIrp(irp);
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ok(irp->Cancel, "unexpected non-cancelled state\n");
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ok(cancel_queue_cnt, "expected cancel routine to be called\n");
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entry = KeRemoveDeviceQueue(&queue);
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ok(entry != NULL, "expected KeRemoveDeviceQueue to return non-NULL\n");
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ok(CONTAINING_RECORD(entry, IRP, Tail.Overlay.DeviceQueueEntry) == irp,
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"unexpected IRP returned\n");
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ok(irp->Cancel, "unexpected non-cancelled state\n");
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ok(cancel_queue_cnt, "expected cancel routine to be called\n");
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ok(queue.Busy, "expected Busy state\n");
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ok(IsListEmpty(&queue.DeviceListHead), "expected empty queue list\n");
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ok(!irp->Tail.Overlay.DeviceQueueEntry.Inserted, "expected inserted\n");
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IoFreeIrp(irp);
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}
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static void test_mdl_map(void)
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{
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char buffer[20] = "test buffer";
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@ -2128,6 +2255,7 @@ static NTSTATUS main_test(DEVICE_OBJECT *device, IRP *irp, IO_STACK_LOCATION *st
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test_init_funcs();
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test_load_driver();
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test_sync();
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test_queue();
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test_version();
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test_stack_callout();
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test_lookaside_list();
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@ -397,6 +397,7 @@ typedef struct _WAIT_CONTEXT_BLOCK {
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#define IO_TYPE_ERROR_LOG 0x0b
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#define IO_TYPE_ERROR_MESSAGE 0x0c
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#define IO_TYPE_DEVICE_OBJECT_EXTENSION 0x0d
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#define IO_TYPE_DEVICE_QUEUE 0x14
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typedef struct _DEVICE_OBJECT {
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CSHORT Type;
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@ -1750,6 +1751,7 @@ void WINAPI KeEnterCriticalRegion(void);
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void WINAPI KeGenericCallDpc(PKDEFERRED_ROUTINE,PVOID);
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ULONG WINAPI KeGetCurrentProcessorNumber(void);
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PKTHREAD WINAPI KeGetCurrentThread(void);
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void WINAPI KeInitializeDeviceQueue(KDEVICE_QUEUE*);
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void WINAPI KeInitializeDpc(KDPC*,PKDEFERRED_ROUTINE,void*);
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void WINAPI KeInitializeEvent(PRKEVENT,EVENT_TYPE,BOOLEAN);
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void WINAPI KeInitializeMutex(PRKMUTEX,ULONG);
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@ -1760,6 +1762,7 @@ static FORCEINLINE void WINAPI KeInitializeSpinLock( KSPIN_LOCK *lock )
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}
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void WINAPI KeInitializeTimerEx(PKTIMER,TIMER_TYPE);
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void WINAPI KeInitializeTimer(KTIMER*);
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BOOLEAN WINAPI KeInsertDeviceQueue(KDEVICE_QUEUE*,KDEVICE_QUEUE_ENTRY*);
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void WINAPI KeLeaveCriticalRegion(void);
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ULONG WINAPI KeQueryActiveProcessorCountEx(USHORT);
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KAFFINITY WINAPI KeQueryActiveProcessors(void);
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@ -1772,6 +1775,7 @@ LONG WINAPI KeReleaseMutex(PRKMUTEX,BOOLEAN);
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LONG WINAPI KeReleaseSemaphore(PRKSEMAPHORE,KPRIORITY,LONG,BOOLEAN);
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void WINAPI KeReleaseSpinLock(KSPIN_LOCK*,KIRQL);
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void WINAPI KeReleaseSpinLockFromDpcLevel(KSPIN_LOCK*);
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KDEVICE_QUEUE_ENTRY * WINAPI KeRemoveDeviceQueue(KDEVICE_QUEUE*);
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LONG WINAPI KeResetEvent(PRKEVENT);
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void WINAPI KeRevertToUserAffinityThread(void);
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void WINAPI KeRevertToUserAffinityThreadEx(KAFFINITY affinity);
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