mirror of
https://github.com/reactos/reactos.git
synced 2025-02-24 09:25:10 +00:00
786 lines
19 KiB
C++
786 lines
19 KiB
C++
/*
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* COPYRIGHT: See COPYING in the top level directory
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* PROJECT: ReactOS Kernel Streaming
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* FILE: drivers/wdm/audio/backpln/portcls/irpstream.cpp
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* PURPOSE: IRP Stream handling
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* PROGRAMMER: Johannes Anderwald
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*/
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#include "private.hpp"
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class CIrpQueue : public IIrpQueue
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{
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public:
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STDMETHODIMP QueryInterface( REFIID InterfaceId, PVOID* Interface);
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STDMETHODIMP_(ULONG) AddRef()
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{
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InterlockedIncrement(&m_Ref);
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return m_Ref;
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}
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STDMETHODIMP_(ULONG) Release()
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{
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InterlockedDecrement(&m_Ref);
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if (!m_Ref)
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{
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delete this;
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return 0;
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}
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return m_Ref;
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}
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IMP_IIrpQueue;
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CIrpQueue(IUnknown *OuterUnknown){}
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virtual ~CIrpQueue(){}
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protected:
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PKSPIN_CONNECT m_ConnectDetails;
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PKSPIN_DESCRIPTOR m_Descriptor;
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KSPIN_LOCK m_IrpListLock;
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LIST_ENTRY m_IrpList;
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LIST_ENTRY m_FreeIrpList;
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ULONG m_OutOfMapping;
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ULONG m_MaxFrameSize;
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ULONG m_Alignment;
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ULONG m_TagSupportEnabled;
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ULONG m_NumDataAvailable;
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volatile ULONG m_CurrentOffset;
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PIRP m_Irp;
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LONG m_Ref;
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};
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typedef struct
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{
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ULONG StreamHeaderCount;
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ULONG StreamHeaderIndex;
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ULONG TotalStreamData;
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PKSSTREAM_HEADER CurStreamHeader;
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PVOID * Data;
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PVOID * Tags;
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}KSSTREAM_DATA, *PKSSTREAM_DATA;
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#define STREAM_DATA_OFFSET (0)
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NTSTATUS
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NTAPI
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CIrpQueue::QueryInterface(
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IN REFIID refiid,
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OUT PVOID* Output)
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{
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if (IsEqualGUIDAligned(refiid, IID_IUnknown))
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{
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*Output = PVOID(PUNKNOWN(this));
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PUNKNOWN(*Output)->AddRef();
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return STATUS_SUCCESS;
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}
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return STATUS_UNSUCCESSFUL;
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}
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NTSTATUS
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NTAPI
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CIrpQueue::Init(
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IN PKSPIN_CONNECT ConnectDetails,
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IN PKSPIN_DESCRIPTOR Descriptor,
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IN ULONG FrameSize,
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IN ULONG Alignment,
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IN ULONG TagSupportEnabled)
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{
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m_ConnectDetails = ConnectDetails;
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m_Descriptor = Descriptor;
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m_MaxFrameSize = FrameSize;
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m_Alignment = Alignment;
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m_TagSupportEnabled = TagSupportEnabled;
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InitializeListHead(&m_IrpList);
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InitializeListHead(&m_FreeIrpList);
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KeInitializeSpinLock(&m_IrpListLock);
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return STATUS_SUCCESS;
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}
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NTSTATUS
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NTAPI
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CIrpQueue::AddMapping(
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IN PIRP Irp,
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OUT PULONG Data)
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{
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PKSSTREAM_HEADER Header;
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NTSTATUS Status = STATUS_UNSUCCESSFUL;
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PIO_STACK_LOCATION IoStack;
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ULONG Index, Length;
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PMDL Mdl;
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PKSSTREAM_DATA StreamData;
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PC_ASSERT(KeGetCurrentIrql() == PASSIVE_LEVEL);
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// allocate stream data
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StreamData = (PKSSTREAM_DATA)AllocateItem(NonPagedPool, sizeof(KSSTREAM_DATA), TAG_PORTCLASS);
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if (!StreamData)
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{
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// not enough memory
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return STATUS_INSUFFICIENT_RESOURCES;
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}
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// get current irp stack location
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IoStack = IoGetCurrentIrpStackLocation(Irp);
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// lets probe the irp
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if (IoStack->Parameters.DeviceIoControl.IoControlCode == IOCTL_KS_WRITE_STREAM)
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{
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// probe IOCTL_KS_WRITE_STREAM
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Status = KsProbeStreamIrp(Irp, KSSTREAM_WRITE | KSPROBE_ALLOCATEMDL | KSPROBE_PROBEANDLOCK | KSPROBE_SYSTEMADDRESS, 0);
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}
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else if (IoStack->Parameters.DeviceIoControl.IoControlCode == IOCTL_KS_READ_STREAM)
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{
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// probe IOCTL_KS_READ_STREAM
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Status = KsProbeStreamIrp(Irp, KSSTREAM_READ | KSPROBE_ALLOCATEMDL | KSPROBE_PROBEANDLOCK | KSPROBE_SYSTEMADDRESS, 0);
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}
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// check for success
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if (!NT_SUCCESS(Status))
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{
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// irp probing failed
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FreeItem(StreamData, TAG_PORTCLASS);
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return Status;
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}
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// get first stream header
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Header = (PKSSTREAM_HEADER)Irp->AssociatedIrp.SystemBuffer;
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// store header
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StreamData->CurStreamHeader = Header;
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// sanity check
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PC_ASSERT(Header);
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// first calculate the numbers of stream headers
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Length = IoStack->Parameters.DeviceIoControl.OutputBufferLength;
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do
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{
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/* subtract size */
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Length -= Header->Size;
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/* increment header count */
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StreamData->StreamHeaderCount++;
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if (m_Descriptor->DataFlow == KSPIN_DATAFLOW_IN)
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{
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// irp sink
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StreamData->TotalStreamData += Header->DataUsed;
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}
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else
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{
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// irp source
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StreamData->TotalStreamData += Header->FrameExtent;
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}
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/* move to next header */
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Header = (PKSSTREAM_HEADER)((ULONG_PTR)Header + Header->Size);
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}while(Length);
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// sanity check
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ASSERT(StreamData->StreamHeaderCount);
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// allocate array for storing the pointers of the data */
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StreamData->Data = (PVOID*)AllocateItem(NonPagedPool, sizeof(PVOID) * StreamData->StreamHeaderCount, TAG_PORTCLASS);
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if (!StreamData->Data)
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{
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// out of memory
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FreeItem(StreamData, TAG_PORTCLASS);
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// done
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return STATUS_INSUFFICIENT_RESOURCES;
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}
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if (m_TagSupportEnabled)
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{
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// allocate array for storing the pointers of the data */
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StreamData->Tags = (PVOID*)AllocateItem(NonPagedPool, sizeof(PVOID) * StreamData->StreamHeaderCount, TAG_PORTCLASS);
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if (!StreamData->Data)
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{
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// out of memory
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FreeItem(StreamData->Data, TAG_PORTCLASS);
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FreeItem(StreamData, TAG_PORTCLASS);
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// done
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return STATUS_INSUFFICIENT_RESOURCES;
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}
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}
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// now get a system address for the user buffers
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Header = (PKSSTREAM_HEADER)Irp->AssociatedIrp.SystemBuffer;
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Mdl = Irp->MdlAddress;
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for(Index = 0; Index < StreamData->StreamHeaderCount; Index++)
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{
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/* get system address */
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StreamData->Data[Index] = MmGetSystemAddressForMdlSafe(Mdl, NormalPagePriority);
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/* check for success */
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if (!StreamData->Data[Index])
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{
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// out of resources
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FreeItem(StreamData->Data, TAG_PORTCLASS);
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if (m_TagSupportEnabled)
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{
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// free tag array
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FreeItem(StreamData->Tags, TAG_PORTCLASS);
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}
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FreeItem(StreamData, TAG_PORTCLASS);
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// done
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return STATUS_INSUFFICIENT_RESOURCES;
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}
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if (m_Descriptor->DataFlow == KSPIN_DATAFLOW_IN)
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{
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// increment available data
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InterlockedExchangeAdd((PLONG)&m_NumDataAvailable, Header->DataUsed);
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}
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else if (m_Descriptor->DataFlow == KSPIN_DATAFLOW_OUT)
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{
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// increment available data
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InterlockedExchangeAdd((PLONG)&m_NumDataAvailable, Header->FrameExtent);
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}
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// move to next header / mdl
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Mdl = Mdl->Next;
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Header = (PKSSTREAM_HEADER)((ULONG_PTR)Header + Header->Size);
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}
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// store stream data
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Irp->Tail.Overlay.DriverContext[STREAM_DATA_OFFSET] = (PVOID)StreamData;
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*Data = StreamData->TotalStreamData;
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// mark irp as pending
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IoMarkIrpPending(Irp);
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// add irp to cancelable queue
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KsAddIrpToCancelableQueue(&m_IrpList, &m_IrpListLock, Irp, KsListEntryTail, NULL);
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// disable mapping failed status
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m_OutOfMapping = FALSE;
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// done
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return STATUS_SUCCESS;
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}
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NTSTATUS
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NTAPI
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CIrpQueue::GetMapping(
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OUT PUCHAR * Buffer,
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OUT PULONG BufferSize)
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{
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PIRP Irp;
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ULONG Offset;
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PKSSTREAM_DATA StreamData;
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// check if there is an irp in the partially processed
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if (m_Irp)
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{
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// use last irp
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if (m_Irp->Cancel == FALSE)
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{
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Irp = m_Irp;
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Offset = m_CurrentOffset;
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}
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else
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{
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// irp has been cancelled
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m_Irp->IoStatus.Status = STATUS_CANCELLED;
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IoCompleteRequest(m_Irp, IO_NO_INCREMENT);
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m_Irp = Irp = NULL;
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m_CurrentOffset = 0;
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}
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}
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else
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{
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// get a fresh new irp from the queue
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m_Irp = Irp = KsRemoveIrpFromCancelableQueue(&m_IrpList, &m_IrpListLock, KsListEntryHead, KsAcquireAndRemoveOnlySingleItem);
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m_CurrentOffset = Offset = 0;
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}
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if (!Irp)
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{
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// no irp buffer available
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return STATUS_UNSUCCESSFUL;
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}
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// get stream data
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StreamData = (PKSSTREAM_DATA)Irp->Tail.Overlay.DriverContext[STREAM_DATA_OFFSET];
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// sanity check
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PC_ASSERT(StreamData);
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// get buffer size
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if (m_Descriptor->DataFlow == KSPIN_DATAFLOW_IN)
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{
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// sink pin
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*BufferSize = StreamData->CurStreamHeader->DataUsed - Offset;
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}
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else
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{
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// source pin
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*BufferSize = StreamData->CurStreamHeader->FrameExtent - Offset;
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}
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// sanity check
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PC_ASSERT(*BufferSize);
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// store buffer
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*Buffer = &((PUCHAR)StreamData->Data[StreamData->StreamHeaderIndex])[Offset];
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// unset flag that no irps are available
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m_OutOfMapping = FALSE;
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return STATUS_SUCCESS;
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}
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VOID
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NTAPI
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CIrpQueue::UpdateMapping(
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IN ULONG BytesWritten)
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{
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PKSSTREAM_DATA StreamData;
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ULONG Size;
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PIO_STACK_LOCATION IoStack;
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// sanity check
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ASSERT(m_Irp);
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// get stream data
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StreamData = (PKSSTREAM_DATA)m_Irp->Tail.Overlay.DriverContext[STREAM_DATA_OFFSET];
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// sanity check
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ASSERT(StreamData);
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// add to current offset
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InterlockedExchangeAdd((volatile PLONG)&m_CurrentOffset, (LONG)BytesWritten);
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if (m_Descriptor->DataFlow == KSPIN_DATAFLOW_OUT)
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{
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// store written bytes (source pin)
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StreamData->CurStreamHeader->DataUsed += BytesWritten;
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}
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// decrement available data counter
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m_NumDataAvailable -= BytesWritten;
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// get audio buffer size
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if (m_Descriptor->DataFlow == KSPIN_DATAFLOW_OUT)
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Size = StreamData->CurStreamHeader->FrameExtent;
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else
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Size = StreamData->CurStreamHeader->DataUsed;
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// sanity check
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PC_ASSERT(Size);
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if (m_CurrentOffset >= Size)
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{
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// sanity check
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PC_ASSERT(Size == m_CurrentOffset);
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if (StreamData->StreamHeaderIndex + 1 < StreamData->StreamHeaderCount)
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{
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// move to next stream header
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StreamData->CurStreamHeader = (PKSSTREAM_HEADER)((ULONG_PTR)StreamData->CurStreamHeader + StreamData->CurStreamHeader->Size);
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// increment stream header index
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StreamData->StreamHeaderIndex++;
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// reset offset
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m_CurrentOffset = 0;
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// done
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return;
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}
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//
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// all stream buffers have been played
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// check if this is a looped buffer
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//
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if (m_ConnectDetails->Interface.Id == KSINTERFACE_STANDARD_LOOPED_STREAMING)
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{
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// looped streaming repeat the buffers untill
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// the caller decides to stop the streams
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// reset stream header index
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StreamData->StreamHeaderIndex = 0;
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// reset stream header
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StreamData->CurStreamHeader = (PKSSTREAM_HEADER)m_Irp->AssociatedIrp.SystemBuffer;
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// increment available data
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InterlockedExchangeAdd((PLONG)&m_NumDataAvailable, StreamData->TotalStreamData);
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// re-insert irp
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KsAddIrpToCancelableQueue(&m_IrpList, &m_IrpListLock, m_Irp, KsListEntryTail, NULL);
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// clear current irp
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m_Irp = NULL;
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// reset offset
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m_CurrentOffset = 0;
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// done
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return;
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}
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// free stream data array
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FreeItem(StreamData->Data, TAG_PORTCLASS);
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if (m_TagSupportEnabled)
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{
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// free tag array
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FreeItem(StreamData->Tags, TAG_PORTCLASS);
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}
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// free stream data
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FreeItem(StreamData, TAG_PORTCLASS);
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// get io stack
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IoStack = IoGetCurrentIrpStackLocation(m_Irp);
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// store operation status
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m_Irp->IoStatus.Status = STATUS_SUCCESS;
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// store operation length
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m_Irp->IoStatus.Information = IoStack->Parameters.DeviceIoControl.OutputBufferLength;
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// complete the request
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IoCompleteRequest(m_Irp, IO_SOUND_INCREMENT);
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// remove irp as it is complete
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m_Irp = NULL;
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// reset offset
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m_CurrentOffset = 0;
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}
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}
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ULONG
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NTAPI
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CIrpQueue::NumData()
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{
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// returns the amount of audio stream data available
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return m_NumDataAvailable;
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}
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BOOL
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NTAPI
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CIrpQueue::CancelBuffers()
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{
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//TODO: own cancel routine
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// is there an active irp
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if (m_Irp)
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{
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// re-insert it to cancelable queue
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KsAddIrpToCancelableQueue(&m_IrpList, &m_IrpListLock, m_Irp, KsListEntryTail, NULL);
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//set it to zero
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m_Irp = NULL;
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}
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// cancel all irps
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KsCancelIo(&m_IrpList, &m_IrpListLock);
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// reset number of data available
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m_NumDataAvailable = 0;
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// done
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return TRUE;
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}
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NTSTATUS
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NTAPI
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CIrpQueue::GetMappingWithTag(
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IN PVOID Tag,
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OUT PPHYSICAL_ADDRESS PhysicalAddress,
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OUT PVOID *VirtualAddress,
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OUT PULONG ByteCount,
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OUT PULONG Flags)
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{
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PKSSTREAM_DATA StreamData;
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/* sanity checks */
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PC_ASSERT(Tag != NULL);
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PC_ASSERT(PhysicalAddress);
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PC_ASSERT(VirtualAddress);
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PC_ASSERT(ByteCount);
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PC_ASSERT(Flags);
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if (!m_Irp)
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{
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// get an irp from the queue
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m_Irp = KsRemoveIrpFromCancelableQueue(&m_IrpList, &m_IrpListLock, KsListEntryHead, KsAcquireAndRemoveOnlySingleItem);
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}
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// check if there is an irp
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if (!m_Irp)
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{
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// no irp available
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m_OutOfMapping = TRUE;
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return STATUS_NOT_FOUND;
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}
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// get stream data
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StreamData = (PKSSTREAM_DATA)m_Irp->Tail.Overlay.DriverContext[STREAM_DATA_OFFSET];
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// sanity check
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PC_ASSERT(StreamData->StreamHeaderIndex < StreamData->StreamHeaderCount);
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// setup mapping
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*PhysicalAddress = MmGetPhysicalAddress(StreamData->Data[StreamData->StreamHeaderIndex]);
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*VirtualAddress = StreamData->Data[StreamData->StreamHeaderIndex];
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// store tag in irp
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StreamData->Tags[StreamData->StreamHeaderIndex] = Tag;
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// mapping size
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if (m_Descriptor->DataFlow == KSPIN_DATAFLOW_IN)
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{
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// sink pin
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*ByteCount = StreamData->CurStreamHeader->DataUsed;
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// decrement num data available
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m_NumDataAvailable -= StreamData->CurStreamHeader->DataUsed;
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}
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else
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{
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// source pin
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*ByteCount = StreamData->CurStreamHeader->FrameExtent;
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// decrement num data available
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m_NumDataAvailable -= StreamData->CurStreamHeader->FrameExtent;
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}
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if (StreamData->StreamHeaderIndex + 1 == StreamData->StreamHeaderCount)
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{
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// last mapping
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*Flags = 1;
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// insert mapping into free list
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ExInterlockedInsertTailList(&m_FreeIrpList, &m_Irp->Tail.Overlay.ListEntry, &m_IrpListLock);
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// clear irp
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m_Irp = NULL;
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}
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else
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{
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// one more mapping in the irp
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*Flags = 0;
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// increment header index
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StreamData->StreamHeaderIndex++;
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|
|
// move to next header
|
|
StreamData->CurStreamHeader = (PKSSTREAM_HEADER)((ULONG_PTR)StreamData->CurStreamHeader + StreamData->CurStreamHeader->Size);
|
|
}
|
|
|
|
// done
|
|
return STATUS_SUCCESS;
|
|
}
|
|
|
|
NTSTATUS
|
|
NTAPI
|
|
CIrpQueue::ReleaseMappingWithTag(
|
|
IN PVOID Tag)
|
|
{
|
|
PIRP Irp;
|
|
PLIST_ENTRY CurEntry;
|
|
PKSSTREAM_DATA StreamData;
|
|
PIO_STACK_LOCATION IoStack;
|
|
ULONG Index;
|
|
|
|
// first check if there is an active irp
|
|
if (m_Irp)
|
|
{
|
|
// now check if there are already used mappings
|
|
StreamData = (PKSSTREAM_DATA)m_Irp->Tail.Overlay.DriverContext[STREAM_DATA_OFFSET];
|
|
|
|
if (StreamData->StreamHeaderIndex)
|
|
{
|
|
// check if the released mapping is one current processed irps
|
|
for(Index = 0; Index < StreamData->StreamHeaderIndex; Index++)
|
|
{
|
|
// check if it is the same tag
|
|
if (StreamData->Tags[Index] == Tag)
|
|
{
|
|
// mark mapping as released
|
|
StreamData->Tags[Index] = NULL;
|
|
|
|
// done
|
|
return STATUS_SUCCESS;
|
|
}
|
|
|
|
}
|
|
}
|
|
}
|
|
|
|
// remove irp from used list
|
|
CurEntry = ExInterlockedRemoveHeadList(&m_FreeIrpList, &m_IrpListLock);
|
|
|
|
// sanity check
|
|
PC_ASSERT(CurEntry);
|
|
|
|
// get irp from list entry
|
|
Irp = (PIRP)CONTAINING_RECORD(CurEntry, IRP, Tail.Overlay.ListEntry);
|
|
|
|
// get stream data
|
|
StreamData = (PKSSTREAM_DATA)Irp->Tail.Overlay.DriverContext[STREAM_DATA_OFFSET];
|
|
|
|
// sanity check
|
|
PC_ASSERT(StreamData->StreamHeaderIndex + 1 == StreamData->StreamHeaderCount);
|
|
|
|
// check if the released mapping is one of these
|
|
for(Index = 0; Index < StreamData->StreamHeaderCount; Index++)
|
|
{
|
|
if (StreamData->Tags[Index] == Tag)
|
|
{
|
|
// mark mapping as released
|
|
StreamData->Tags[Index] = NULL;
|
|
|
|
// done
|
|
break;
|
|
}
|
|
else
|
|
{
|
|
//
|
|
// we assume that mappings are released in the same order as they have been acquired
|
|
// therefore if the current mapping is not the searched one, it must have been already
|
|
// released
|
|
//
|
|
PC_ASSERT(StreamData->Tags[Index] == NULL);
|
|
}
|
|
}
|
|
|
|
// check if this is the last one released mapping
|
|
if (Index + 1 == StreamData->StreamHeaderCount)
|
|
{
|
|
// last mapping released
|
|
// now check if this is a looped buffer
|
|
if (m_ConnectDetails->Interface.Id == KSINTERFACE_STANDARD_LOOPED_STREAMING)
|
|
{
|
|
// looped buffers are not completed when they have been played
|
|
// they are completed when the stream is set to stop
|
|
|
|
// reset stream header index
|
|
StreamData->StreamHeaderIndex = 0;
|
|
|
|
// reset stream header
|
|
StreamData->CurStreamHeader = (PKSSTREAM_HEADER)Irp->AssociatedIrp.SystemBuffer;
|
|
|
|
// increment available data
|
|
InterlockedExchangeAdd((PLONG)&m_NumDataAvailable, StreamData->TotalStreamData);
|
|
|
|
// re-insert irp
|
|
KsAddIrpToCancelableQueue(&m_IrpList, &m_IrpListLock, Irp, KsListEntryTail, NULL);
|
|
|
|
// done
|
|
return STATUS_SUCCESS;
|
|
}
|
|
|
|
//
|
|
// time to complete non looped buffer
|
|
//
|
|
|
|
// free stream data array
|
|
FreeItem(StreamData->Data, TAG_PORTCLASS);
|
|
|
|
// free stream tags array
|
|
FreeItem(StreamData->Tags, TAG_PORTCLASS);
|
|
|
|
// free stream data
|
|
FreeItem(StreamData, TAG_PORTCLASS);
|
|
|
|
// get io stack
|
|
IoStack = IoGetCurrentIrpStackLocation(Irp);
|
|
|
|
// store operation status
|
|
Irp->IoStatus.Status = STATUS_SUCCESS;
|
|
|
|
// store operation length
|
|
Irp->IoStatus.Information = IoStack->Parameters.DeviceIoControl.OutputBufferLength;
|
|
|
|
// complete the request
|
|
IoCompleteRequest(Irp, IO_SOUND_INCREMENT);
|
|
}
|
|
|
|
return STATUS_SUCCESS;
|
|
}
|
|
|
|
BOOLEAN
|
|
NTAPI
|
|
CIrpQueue::HasLastMappingFailed()
|
|
{
|
|
return m_OutOfMapping;
|
|
}
|
|
|
|
ULONG
|
|
NTAPI
|
|
CIrpQueue::GetCurrentIrpOffset()
|
|
{
|
|
|
|
return m_CurrentOffset;
|
|
}
|
|
|
|
BOOLEAN
|
|
NTAPI
|
|
CIrpQueue::GetAcquiredTagRange(
|
|
IN PVOID * FirstTag,
|
|
IN PVOID * LastTag)
|
|
{
|
|
KIRQL OldLevel;
|
|
BOOLEAN Ret = FALSE;
|
|
//PIRP Irp;
|
|
//PLIST_ENTRY CurEntry;
|
|
//PKSSTREAM_DATA StreamData;
|
|
|
|
// lock list
|
|
KeAcquireSpinLock(&m_IrpListLock, &OldLevel);
|
|
|
|
// initialize to zero
|
|
*FirstTag = NULL;
|
|
*LastTag = NULL;
|
|
|
|
UNIMPLEMENTED;
|
|
|
|
// release lock
|
|
KeReleaseSpinLock(&m_IrpListLock, OldLevel);
|
|
// done
|
|
return Ret;
|
|
}
|
|
|
|
NTSTATUS
|
|
NTAPI
|
|
NewIrpQueue(
|
|
IN IIrpQueue **Queue)
|
|
{
|
|
CIrpQueue *This = new(NonPagedPool, TAG_PORTCLASS)CIrpQueue(NULL);
|
|
if (!This)
|
|
return STATUS_INSUFFICIENT_RESOURCES;
|
|
|
|
This->AddRef();
|
|
|
|
*Queue = (IIrpQueue*)This;
|
|
return STATUS_SUCCESS;
|
|
}
|
|
|