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/*++
Copyright (c) Microsoft Corporation All Rights Reserved
Module Name:
minipairs.h
Abstract:
Local audio endpoint filter definitions.
--*/
#ifndef _SYSVAD_MINIPAIRS_H_
#define _SYSVAD_MINIPAIRS_H_
#include "speakertopo.h"
#include "speakertoptable.h"
#include "speakerwavtable.h"
#include "speakerhptopo.h"
#include "speakerhptoptable.h"
#include "speakerhpwavtable.h"
#include "hdmitopo.h"
#include "hdmitoptable.h"
#include "hdmiwavtable.h"
#include "spdiftopo.h"
#include "spdiftoptable.h"
#include "spdifwavtable.h"
#include "micintopo.h"
#include "micintoptable.h"
#include "micinwavtable.h"
#include "micarraytopo.h"
#include "micarray1toptable.h"
#include "micarray2toptable.h"
#include "micarray3toptable.h"
#include "micarraywavtable.h"
#include "micarray2wavtable.h"
#include "micarray3wavtable.h"
NTSTATUS
CreateMiniportWaveRTSYSVAD
(
_Out_ PUNKNOWN *,
_In_ REFCLSID,
_In_opt_ PUNKNOWN,
_In_ POOL_FLAGS,
_In_ PUNKNOWN,
_In_opt_ PVOID,
_In_ PENDPOINT_MINIPAIR
);
NTSTATUS
CreateMiniportTopologySYSVAD
(
_Out_ PUNKNOWN *,
_In_ REFCLSID,
_In_opt_ PUNKNOWN,
_In_ POOL_FLAGS,
_In_ PUNKNOWN,
_In_opt_ PVOID,
_In_ PENDPOINT_MINIPAIR
);
//
// Describe buffer size constraints for WaveRT buffers
//
static struct
{
KSAUDIO_PACKETSIZE_CONSTRAINTS2 TransportPacketConstraints;
KSAUDIO_PACKETSIZE_PROCESSINGMODE_CONSTRAINT AdditionalProcessingConstraints[1];
} SysvadWaveRtPacketSizeConstraintsRender =
{
{
2 * HNSTIME_PER_MILLISECOND, // 2 ms minimum processing interval
FILE_BYTE_ALIGNMENT, // 1 byte packet size alignment
0, // no maximum packet size constraint
2, // 2 processing constraints follow
{
STATIC_AUDIO_SIGNALPROCESSINGMODE_DEFAULT, // constraint for default processing mode
128, // 128 samples per processing frame
0, // NA hns per processing frame
},
},
{
{
STATIC_AUDIO_SIGNALPROCESSINGMODE_MOVIE, // constraint for movie processing mode
1024, // 1024 samples per processing frame
0, // NA hns per processing frame
},
}
};
const SYSVAD_DEVPROPERTY SysvadWaveFilterInterfacePropertiesRender[] =
{
{
&DEVPKEY_KsAudio_PacketSize_Constraints2, // Key
DEVPROP_TYPE_BINARY, // Type
sizeof(SysvadWaveRtPacketSizeConstraintsRender), // BufferSize
&SysvadWaveRtPacketSizeConstraintsRender, // Buffer
},
};
static struct
{
KSAUDIO_PACKETSIZE_CONSTRAINTS2 TransportPacketConstraints;
} SysvadWaveRtPacketSizeConstraintsCapture =
{
{
2 * HNSTIME_PER_MILLISECOND, // 2 ms minimum processing interval
FILE_BYTE_ALIGNMENT, // 1 byte packet size alignment
0x100000, // 1 MB maximum packet size
1, // 1 processing constraint follows
{
STATIC_AUDIO_SIGNALPROCESSINGMODE_COMMUNICATIONS, // constraint for communications processing mode
0, // NA samples per processing frame
20 * HNSTIME_PER_MILLISECOND, // 200000 hns (20ms) per processing frame
},
},
};
const SYSVAD_DEVPROPERTY SysvadWaveFilterInterfacePropertiesCapture[] =
{
{
&DEVPKEY_KsAudio_PacketSize_Constraints2, // Key
DEVPROP_TYPE_BINARY, // Type
sizeof(SysvadWaveRtPacketSizeConstraintsCapture), // BufferSize
&SysvadWaveRtPacketSizeConstraintsCapture, // Buffer
},
};
//
// Render miniports.
//
/*********************************************************************
* Topology/Wave bridge connection for speaker (internal) *
* *
* +------+ +------+ *
* | Wave | | Topo | *
* | | | | *
* System --->|0 2|---> Loopback | | *
* | | | | *
* Offload --->|1 3|--------------->|0 1|---> Line Out *
* | | | | *
* +------+ +------+ *
*********************************************************************/
static
PHYSICALCONNECTIONTABLE SpeakerTopologyPhysicalConnections[] =
{
{
KSPIN_TOPO_WAVEOUT_SOURCE, // TopologyIn
KSPIN_WAVE_RENDER_SOURCE, // WaveOut
CONNECTIONTYPE_WAVE_OUTPUT
}
};
static
ENDPOINT_MINIPAIR SpeakerMiniports =
{
eSpeakerDevice,
L"TopologySpeaker", // make sure this or the template name matches with KSNAME_TopologySpeaker in the inf's [Strings] section
NULL, // optional template name
CreateMiniportTopologySYSVAD,
&SpeakerTopoMiniportFilterDescriptor,
0, NULL, // Interface properties
L"WaveSpeaker", // make sure this or the template name matches with KSNAME_WaveSpeaker in the inf's [Strings] section
NULL, // optional template name
CreateMiniportWaveRTSYSVAD,
&SpeakerWaveMiniportFilterDescriptor,
ARRAYSIZE(SysvadWaveFilterInterfacePropertiesRender), // Interface properties
SysvadWaveFilterInterfacePropertiesRender,
SPEAKER_DEVICE_MAX_CHANNELS,
SpeakerPinDeviceFormatsAndModes,
SIZEOF_ARRAY(SpeakerPinDeviceFormatsAndModes),
SpeakerTopologyPhysicalConnections,
SIZEOF_ARRAY(SpeakerTopologyPhysicalConnections),
ENDPOINT_OFFLOAD_SUPPORTED,
SpeakerModulesWaveFilter,
SIZEOF_ARRAY(SpeakerModulesWaveFilter),
&SpeakerModuleNotificationDeviceId,
};
/*********************************************************************
* Topology/Wave bridge connection for speaker (external:headphone) *
* *
* +------+ +------+ *
* | Wave | | Topo | *
* | | | | *
* System --->|0 2|---> Loopback | | *
* | | | | *
* Offload --->|1 3|--------------->|0 1|---> Line Out *
* | | | | *
* +------+ +------+ *
*********************************************************************/
static
PHYSICALCONNECTIONTABLE SpeakerHpTopologyPhysicalConnections[] =
{
{
KSPIN_TOPO_WAVEOUT_SOURCE, // TopologyIn
KSPIN_WAVE_RENDER_SOURCE, // WaveOut
CONNECTIONTYPE_WAVE_OUTPUT
}
};
static
ENDPOINT_MINIPAIR SpeakerHpMiniports =
{
eSpeakerHpDevice,
L"TopologySpeakerHeadphone", // make sure this or the template name matches with KSNAME_TopologySpeakerHeadphone in the inf's [Strings] section
NULL, // optional template name
CreateMiniportTopologySYSVAD,
&SpeakerHpTopoMiniportFilterDescriptor,
0, NULL, // Interface properties
L"WaveSpeakerHeadphone", // make sure this or the template name matches with KSNAME_WaveSpeakerHeadphone in the inf's [Strings] section
NULL, // optional template name
CreateMiniportWaveRTSYSVAD,
&SpeakerHpWaveMiniportFilterDescriptor,
0, NULL, // Interface properties
SPEAKERHP_DEVICE_MAX_CHANNELS,
SpeakerHpPinDeviceFormatsAndModes,
SIZEOF_ARRAY(SpeakerHpPinDeviceFormatsAndModes),
SpeakerHpTopologyPhysicalConnections,
SIZEOF_ARRAY(SpeakerHpTopologyPhysicalConnections),
ENDPOINT_OFFLOAD_SUPPORTED,
SpeakerHpModulesWaveFilter,
SIZEOF_ARRAY(SpeakerHpModulesWaveFilter),
&SpeakerHpModuleNotificationDeviceId,
};
/*********************************************************************
* Topology/Wave bridge connection for hdmi endpoint *
* *
* +------+ +------+ *
* | Wave | | Topo | *
* | | | | *
* System --->|0 1|---> Loopback | | *
* | | | | *
* | 2|--------------->|0 1|---> Line Out *
* | | | | *
* +------+ +------+ *
*********************************************************************/
static
PHYSICALCONNECTIONTABLE HdmiTopologyPhysicalConnections[] =
{
{
KSPIN_TOPO_WAVEOUT_SOURCE, // TopologyIn
KSPIN_WAVE_RENDER2_SOURCE, // WaveOut (no offloading)
CONNECTIONTYPE_WAVE_OUTPUT
}
};
static
ENDPOINT_MINIPAIR HdmiMiniports =
{
eHdmiRenderDevice,
L"TopologyHdmi", // make sure this or the template name matches with KSNAME_TopologyHdmi in the inf's [Strings] section
NULL, // optional template name
CreateHdmiMiniportTopology,
&HdmiTopoMiniportFilterDescriptor,
0, NULL, // Interface properties
L"WaveHdmi", // make sure this or the template name matches with KSNAME_WaveHdmi in the inf's [Strings] section
NULL, // optional template name
CreateMiniportWaveRTSYSVAD,
&HdmiWaveMiniportFilterDescriptor,
0, NULL, // Interface properties
HDMI_DEVICE_MAX_CHANNELS,
HdmiPinDeviceFormatsAndModes,
SIZEOF_ARRAY(HdmiPinDeviceFormatsAndModes),
HdmiTopologyPhysicalConnections,
SIZEOF_ARRAY(HdmiTopologyPhysicalConnections),
ENDPOINT_LOOPBACK_SUPPORTED,
NULL, 0, NULL, // audio module settings.
};
/*********************************************************************
* Topology/Wave bridge connection for spdif (internal) *
* *
* +------+ +------+ *
* | Wave | | Topo | *
* | | | | *
* System --->|0 2|---> Loopback | | *
* | | | | *
* Offload --->|1 3|--------------->|0 1|---> Line Out *
* | | | | *
* +------+ +------+ *
*********************************************************************/
static
PHYSICALCONNECTIONTABLE SpdifTopologyPhysicalConnections[] =
{
{
KSPIN_TOPO_WAVEOUT_SOURCE, // TopologyIn
KSPIN_WAVE_RENDER_SOURCE, // WaveOut
CONNECTIONTYPE_WAVE_OUTPUT
}
};
static
ENDPOINT_MINIPAIR SpdifMiniports =
{
eSpdifRenderDevice,
L"TopologySpdif", // make sure this or the template name matches with KSNAME_TopologySpeaker in the inf's [Strings] section
NULL, // optional template name
CreateMiniportTopologySYSVAD,
&SpdifTopoMiniportFilterDescriptor,
0, NULL, // Interface properties
L"WaveSpdif", // make sure this or the template name matches with KSNAME_WaveSpeaker in the inf's [Strings] section
NULL, // optional template name
CreateMiniportWaveRTSYSVAD,
&SpdifWaveMiniportFilterDescriptor,
ARRAYSIZE(SysvadWaveFilterInterfacePropertiesRender), // Interface properties
SysvadWaveFilterInterfacePropertiesRender,
SPDIF_DEVICE_MAX_CHANNELS,
SpdifPinDeviceFormatsAndModes,
SIZEOF_ARRAY(SpdifPinDeviceFormatsAndModes),
SpdifTopologyPhysicalConnections,
SIZEOF_ARRAY(SpdifTopologyPhysicalConnections),
ENDPOINT_OFFLOAD_SUPPORTED,
NULL, 0, NULL, // audio module settings.
};
//
// Capture miniports.
//
/*********************************************************************
* Topology/Wave bridge connection for mic in *
* *
* +------+ +------+ *
* | Topo | | Wave | *
* | | | | *
* Mic in --->|0 1|===>|0 1|---> Capture Host Pin *
* | | | | *
* +------+ +------+ *
*********************************************************************/
static
PHYSICALCONNECTIONTABLE MicInTopologyPhysicalConnections[] =
{
{
KSPIN_TOPO_BRIDGE, // TopologyOut
KSPIN_WAVE_BRIDGE, // WaveIn
CONNECTIONTYPE_TOPOLOGY_OUTPUT
}
};
static
ENDPOINT_MINIPAIR MicInMiniports =
{
eMicInDevice,
L"TopologyMicIn", // make sure this or the template name matches with KSNAME_TopologyMicIn in the inf's [Strings] section
NULL, // optional template name
CreateMiniportTopologySYSVAD,
&MicInTopoMiniportFilterDescriptor,
0, NULL, // Interface properties
L"WaveMicIn", // make sure this or the template name matches with KSNAME_WaveMicIn in the inf's [Strings] section
NULL, // optional template name
CreateMiniportWaveRTSYSVAD,
&MicInWaveMiniportFilterDescriptor,
0, NULL, // Interface properties
MICIN_DEVICE_MAX_CHANNELS,
MicInPinDeviceFormatsAndModes,
SIZEOF_ARRAY(MicInPinDeviceFormatsAndModes),
MicInTopologyPhysicalConnections,
SIZEOF_ARRAY(MicInTopologyPhysicalConnections),
ENDPOINT_NO_FLAGS,
NULL, 0, NULL, // audio module settings.
};
/*********************************************************************
* Topology/Wave bridge connection for mic array 1 (front) *
* *
* +------+ +------+ *
* | Topo | | Wave | *
* | | | | *
* Mic in --->|0 1|===>|0 1|---> Capture Host Pin *
* | | | | *
* +------+ +------+ *
*********************************************************************/
static
PHYSICALCONNECTIONTABLE MicArray1TopologyPhysicalConnections[] =
{
{
KSPIN_TOPO_BRIDGE, // TopologyOut
KSPIN_WAVE_BRIDGE, // WaveIn
CONNECTIONTYPE_TOPOLOGY_OUTPUT
}
};
static
ENDPOINT_MINIPAIR MicArray1Miniports =
{
eMicArrayDevice1,
L"TopologyMicArray1", // make sure this or the template name matches with KSNAME_TopologyMicArray1 in the inf's [Strings] section
NULL, // optional template name
CreateMicArrayMiniportTopology,
&MicArray1TopoMiniportFilterDescriptor,
0, NULL, // Interface properties
L"WaveMicArray1", // make sure this or the template name matches with KSNAME_WaveMicArray1 in the inf's [Strings] section
NULL, // optional template name
CreateMiniportWaveRTSYSVAD,
&MicArrayWaveMiniportFilterDescriptor,
ARRAYSIZE(SysvadWaveFilterInterfacePropertiesCapture), // Interface properties
SysvadWaveFilterInterfacePropertiesCapture,
MICARRAY_DEVICE_MAX_CHANNELS,
MicArrayPinDeviceFormatsAndModes,
SIZEOF_ARRAY(MicArrayPinDeviceFormatsAndModes),
MicArray1TopologyPhysicalConnections,
SIZEOF_ARRAY(MicArray1TopologyPhysicalConnections),
ENDPOINT_SOUNDDETECTOR_SUPPORTED,
NULL, 0, NULL, // audio module settings.
};
/*********************************************************************
* Topology/Wave bridge connection for mic array 2 (back) *
* *
* +------+ +------+ *
* | Topo | | Wave | *
* | | | | *
* Mic in --->|0 1|===>|0 1|---> Capture Host Pin *
* | | | | *
* +------+ +------+ *
*********************************************************************/
static
PHYSICALCONNECTIONTABLE MicArray2TopologyPhysicalConnections[] =
{
{
KSPIN_TOPO_BRIDGE, // TopologyOut
KSPIN_WAVE_BRIDGE, // WaveIn
CONNECTIONTYPE_TOPOLOGY_OUTPUT
}
};
static
ENDPOINT_MINIPAIR MicArray2Miniports =
{
eMicArrayDevice2,
L"TopologyMicArray2", // make sure this or the template name matches with KSNAME_TopologyMicArray2 in the inf's [Strings] section
NULL, // optional template name
CreateMicArrayMiniportTopology,
&MicArray2TopoMiniportFilterDescriptor,
0, NULL, // Interface properties
L"WaveMicArray2", // make sure this or the template name matches with KSNAME_WaveMicArray2 in the inf's [Strings] section
NULL, // optional template name
CreateMiniportWaveRTSYSVAD,
&MicArray2WaveMiniportFilterDescriptor,
ARRAYSIZE(SysvadWaveFilterInterfacePropertiesCapture), // Interface properties
SysvadWaveFilterInterfacePropertiesCapture,
MICARRAY2_DEVICE_MAX_CHANNELS,
MicArray2PinDeviceFormatsAndModes,
SIZEOF_ARRAY(MicArray2PinDeviceFormatsAndModes),
MicArray2TopologyPhysicalConnections,
SIZEOF_ARRAY(MicArray2TopologyPhysicalConnections),
ENDPOINT_SOUNDDETECTOR_SUPPORTED,
NULL, 0, NULL, // audio module settings.
};
/*********************************************************************
* Topology/Wave bridge connection for mic array 3 (combined) *
* *
* +------+ +------+ *
* | Topo | | Wave | *
* | | | | *
* Mic in --->|0 1|===>|0 1|---> Capture Host Pin *
* | | | | *
* +------+ +------+ *
*********************************************************************/
static
PHYSICALCONNECTIONTABLE MicArray3TopologyPhysicalConnections[] =
{
{
KSPIN_TOPO_BRIDGE, // TopologyOut
KSPIN_WAVE_BRIDGE, // WaveIn
CONNECTIONTYPE_TOPOLOGY_OUTPUT
}
};
static
ENDPOINT_MINIPAIR MicArray3Miniports =
{
eMicArrayDevice3,
L"TopologyMicArray3", // make sure this or the template name matches with KSNAME_TopologyMicArray3 in the inf's [Strings] section
NULL, // optional template name
CreateMicArrayMiniportTopology,
&MicArray3TopoMiniportFilterDescriptor,
0, NULL, // Interface properties
L"WaveMicArray3", // make sure this or the template name matches with KSNAME_WaveMicArray3 in the inf's [Strings] section
NULL, // optional template name
CreateMiniportWaveRTSYSVAD,
&MicArray3WaveMiniportFilterDescriptor,
0, NULL, // Interface properties
MICARRAY3_DEVICE_MAX_CHANNELS,
MicArray3PinDeviceFormatsAndModes,
SIZEOF_ARRAY(MicArray3PinDeviceFormatsAndModes),
MicArray3TopologyPhysicalConnections,
SIZEOF_ARRAY(MicArray3TopologyPhysicalConnections),
ENDPOINT_NO_FLAGS,
NULL, 0, NULL, // audio module settings.
};
//=============================================================================
//
// Render miniport pairs.
//
static
PENDPOINT_MINIPAIR g_RenderEndpoints[] =
{
&SpeakerMiniports,
&SpeakerHpMiniports,
&HdmiMiniports,
&SpdifMiniports,
};
#define g_cRenderEndpoints (SIZEOF_ARRAY(g_RenderEndpoints))
//=============================================================================
//
// Capture miniport pairs.
//
static
PENDPOINT_MINIPAIR g_CaptureEndpoints[] =
{
&MicInMiniports,
&MicArray1Miniports,
&MicArray2Miniports,
&MicArray3Miniports,
};
#define g_cCaptureEndpoints (SIZEOF_ARRAY(g_CaptureEndpoints))
//=============================================================================
//
// Total miniports = # endpoints * 2 (topology + wave).
//
#define g_MaxMiniports ((g_cRenderEndpoints + g_cCaptureEndpoints) * 2)
#endif // _SYSVAD_MINIPAIRS_H_
|