/*++ Copyright (c) Microsoft Corporation All Rights Reserved Module Name: speakerhswavtable.h Abstract: Declaration of wave miniport tables for the speaker (external: headset). --*/ #ifndef _SYSVAD_SPEAKERHSWAVTABLE_H_ #define _SYSVAD_SPEAKERHSWAVTABLE_H_ // To keep the code simple assume device supports only 48KHz, 16-bit, stereo (PCM and NON-PCM) #define SPEAKERHS_DEVICE_MAX_CHANNELS 2 // Max Channels. #define SPEAKERHS_HOST_MAX_CHANNELS 2 // Max Channels. #define SPEAKERHS_HOST_MIN_BITS_PER_SAMPLE 16 // Min Bits Per Sample #define SPEAKERHS_HOST_MAX_BITS_PER_SAMPLE 16 // Max Bits Per Sample #define SPEAKERHS_HOST_MIN_SAMPLE_RATE 24000 // Min Sample Rate #define SPEAKERHS_HOST_MAX_SAMPLE_RATE 96000 // Max Sample Rate #define SPEAKERHS_OFFLOAD_MAX_CHANNELS 2 // Max Channels. #define SPEAKERHS_OFFLOAD_MIN_BITS_PER_SAMPLE 16 // Min Bits Per Sample #define SPEAKERHS_OFFLOAD_MAX_BITS_PER_SAMPLE 16 // Max Bits Per Sample #define SPEAKERHS_OFFLOAD_MIN_SAMPLE_RATE 44100 // Min Sample Rate #define SPEAKERHS_OFFLOAD_MAX_SAMPLE_RATE 48000 // Max Sample Rate #define SPEAKERHS_LOOPBACK_MAX_CHANNELS SPEAKERHS_HOST_MAX_CHANNELS // Must be equal to host pin's Max Channels. #define SPEAKERHS_LOOPBACK_MIN_BITS_PER_SAMPLE SPEAKERHS_HOST_MIN_BITS_PER_SAMPLE // Must be equal to host pin's Min Bits Per Sample #define SPEAKERHS_LOOPBACK_MAX_BITS_PER_SAMPLE SPEAKERHS_HOST_MAX_BITS_PER_SAMPLE // Must be equal to host pin's Max Bits Per Sample #define SPEAKERHS_LOOPBACK_MIN_SAMPLE_RATE SPEAKERHS_HOST_MIN_SAMPLE_RATE // Must be equal to host pin's Min Sample Rate #define SPEAKERHS_LOOPBACK_MAX_SAMPLE_RATE SPEAKERHS_HOST_MAX_SAMPLE_RATE // Must be equal to host pin's Max Sample Rate #define SPEAKERHS_DOLBY_DIGITAL_MAX_CHANNELS 2 // Max Channels. #define SPEAKERHS_DOLBY_DIGITAL_MIN_BITS_PER_SAMPLE 16 // Min Bits Per Sample #define SPEAKERHS_DOLBY_DIGITAL_MAX_BITS_PER_SAMPLE 16 // Max Bits Per Sample #define SPEAKERHS_DOLBY_DIGITAL_MIN_SAMPLE_RATE 44100 // Min Sample Rate #define SPEAKERHS_DOLBY_DIGITAL_MAX_SAMPLE_RATE 44100 // Max Sample Rate // // Max # of pin instances. // #define SPEAKERHS_MAX_INPUT_SYSTEM_STREAMS 6 #define SPEAKERHS_MAX_INPUT_OFFLOAD_STREAMS MAX_INPUT_OFFLOAD_STREAMS #define SPEAKERHS_MAX_OUTPUT_LOOPBACK_STREAMS MAX_OUTPUT_LOOPBACK_STREAMS //============================================================================= static KSDATAFORMAT_WAVEFORMATEXTENSIBLE SpeakerHsAudioEngineSupportedDeviceFormats[] = { { // 0 : First entry in htis table is the default format for the audio engine { sizeof(KSDATAFORMAT_WAVEFORMATEXTENSIBLE), 0, 0, 0, STATICGUIDOF(KSDATAFORMAT_TYPE_AUDIO), STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM), STATICGUIDOF(KSDATAFORMAT_SPECIFIER_WAVEFORMATEX) }, { { WAVE_FORMAT_EXTENSIBLE, 2, 44100, 176400, 4, 16, sizeof(WAVEFORMATEXTENSIBLE) - sizeof(WAVEFORMATEX) }, 16, KSAUDIO_SPEAKER_STEREO, STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM) } }, { // 1 { sizeof(KSDATAFORMAT_WAVEFORMATEXTENSIBLE), 0, 0, 0, STATICGUIDOF(KSDATAFORMAT_TYPE_AUDIO), STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM), STATICGUIDOF(KSDATAFORMAT_SPECIFIER_WAVEFORMATEX) }, { { WAVE_FORMAT_EXTENSIBLE, 2, 24000, 96000, 4, 16, sizeof(WAVEFORMATEXTENSIBLE) - sizeof(WAVEFORMATEX) }, 16, KSAUDIO_SPEAKER_STEREO, STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM) } }, { // 2 { sizeof(KSDATAFORMAT_WAVEFORMATEXTENSIBLE), 0, 0, 0, STATICGUIDOF(KSDATAFORMAT_TYPE_AUDIO), STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM), STATICGUIDOF(KSDATAFORMAT_SPECIFIER_WAVEFORMATEX) }, { { WAVE_FORMAT_EXTENSIBLE, 2, 48000, 192000, 4, 16, sizeof(WAVEFORMATEXTENSIBLE) - sizeof(WAVEFORMATEX) }, 16, KSAUDIO_SPEAKER_STEREO, STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM) } }, { // 3 { sizeof(KSDATAFORMAT_WAVEFORMATEXTENSIBLE), 0, 0, 0, STATICGUIDOF(KSDATAFORMAT_TYPE_AUDIO), STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM), STATICGUIDOF(KSDATAFORMAT_SPECIFIER_WAVEFORMATEX) }, { { WAVE_FORMAT_EXTENSIBLE, 2, 88200, 352800, 4, 16, sizeof(WAVEFORMATEXTENSIBLE) - sizeof(WAVEFORMATEX) }, 16, KSAUDIO_SPEAKER_STEREO, STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM) } }, { // 4 { sizeof(KSDATAFORMAT_WAVEFORMATEXTENSIBLE), 0, 0, 0, STATICGUIDOF(KSDATAFORMAT_TYPE_AUDIO), STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM), STATICGUIDOF(KSDATAFORMAT_SPECIFIER_WAVEFORMATEX) }, { { WAVE_FORMAT_EXTENSIBLE, 2, 96000, 384000, 4, 16, sizeof(WAVEFORMATEXTENSIBLE) - sizeof(WAVEFORMATEX) }, 16, KSAUDIO_SPEAKER_STEREO, STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM) } } }; static KSDATAFORMAT_WAVEFORMATEXTENSIBLE SpeakerHsHostPinSupportedDeviceFormats[] = { { // 0 { sizeof(KSDATAFORMAT_WAVEFORMATEXTENSIBLE), 0, 0, 0, STATICGUIDOF(KSDATAFORMAT_TYPE_AUDIO), STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM), STATICGUIDOF(KSDATAFORMAT_SPECIFIER_WAVEFORMATEX) }, { { WAVE_FORMAT_EXTENSIBLE, 2, 24000, 96000, 4, 16, sizeof(WAVEFORMATEXTENSIBLE)-sizeof(WAVEFORMATEX) }, 16, KSAUDIO_SPEAKER_STEREO, STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM) } }, { // 1 { sizeof(KSDATAFORMAT_WAVEFORMATEXTENSIBLE), 0, 0, 0, STATICGUIDOF(KSDATAFORMAT_TYPE_AUDIO), STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM), STATICGUIDOF(KSDATAFORMAT_SPECIFIER_WAVEFORMATEX) }, { { WAVE_FORMAT_EXTENSIBLE, 2, 32000, 128000, 4, 16, sizeof(WAVEFORMATEXTENSIBLE)-sizeof(WAVEFORMATEX) }, 16, KSAUDIO_SPEAKER_STEREO, STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM) } }, { // 2 { sizeof(KSDATAFORMAT_WAVEFORMATEXTENSIBLE), 0, 0, 0, STATICGUIDOF(KSDATAFORMAT_TYPE_AUDIO), STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM), STATICGUIDOF(KSDATAFORMAT_SPECIFIER_WAVEFORMATEX) }, { { WAVE_FORMAT_EXTENSIBLE, 2, 44100, 176400, 4, 16, sizeof(WAVEFORMATEXTENSIBLE) - sizeof(WAVEFORMATEX) }, 16, KSAUDIO_SPEAKER_STEREO, STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM) } }, { // 3 { sizeof(KSDATAFORMAT_WAVEFORMATEXTENSIBLE), 0, 0, 0, STATICGUIDOF(KSDATAFORMAT_TYPE_AUDIO), STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM), STATICGUIDOF(KSDATAFORMAT_SPECIFIER_WAVEFORMATEX) }, { { WAVE_FORMAT_EXTENSIBLE, 2, 48000, 192000, 4, 16, sizeof(WAVEFORMATEXTENSIBLE) - sizeof(WAVEFORMATEX) }, 16, KSAUDIO_SPEAKER_STEREO, STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM) } }, { // 4 { sizeof(KSDATAFORMAT_WAVEFORMATEXTENSIBLE), 0, 0, 0, STATICGUIDOF(KSDATAFORMAT_TYPE_AUDIO), STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM), STATICGUIDOF(KSDATAFORMAT_SPECIFIER_WAVEFORMATEX) }, { { WAVE_FORMAT_EXTENSIBLE, 2, 88200, 352800, 4, 16, sizeof(WAVEFORMATEXTENSIBLE) - sizeof(WAVEFORMATEX) }, 16, KSAUDIO_SPEAKER_STEREO, STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM) } }, { // 5 { sizeof(KSDATAFORMAT_WAVEFORMATEXTENSIBLE), 0, 0, 0, STATICGUIDOF(KSDATAFORMAT_TYPE_AUDIO), STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM), STATICGUIDOF(KSDATAFORMAT_SPECIFIER_WAVEFORMATEX) }, { { WAVE_FORMAT_EXTENSIBLE, 2, 96000, 384000, 4, 16, sizeof(WAVEFORMATEXTENSIBLE) - sizeof(WAVEFORMATEX) }, 16, KSAUDIO_SPEAKER_STEREO, STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM) } } }; static KSDATAFORMAT_WAVEFORMATEXTENSIBLE SpeakerHsOffloadPinSupportedDeviceFormats[] = { { // 0 { sizeof(KSDATAFORMAT_WAVEFORMATEXTENSIBLE), 0, 0, 0, STATICGUIDOF(KSDATAFORMAT_TYPE_AUDIO), STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM), STATICGUIDOF(KSDATAFORMAT_SPECIFIER_WAVEFORMATEX) }, { { WAVE_FORMAT_EXTENSIBLE, 2, 44100, 176400, 4, 16, sizeof(WAVEFORMATEXTENSIBLE) - sizeof(WAVEFORMATEX) }, 16, KSAUDIO_SPEAKER_STEREO, STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM) } }, { // 1 { sizeof(KSDATAFORMAT_WAVEFORMATEXTENSIBLE), 0, 0, 0, STATICGUIDOF(KSDATAFORMAT_TYPE_AUDIO), STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM), STATICGUIDOF(KSDATAFORMAT_SPECIFIER_WAVEFORMATEX) }, { { WAVE_FORMAT_EXTENSIBLE, 2, 48000, 192000, 4, 16, sizeof(WAVEFORMATEXTENSIBLE) - sizeof(WAVEFORMATEX) }, 16, KSAUDIO_SPEAKER_STEREO, STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM) } } }; // // Supported modes (only on streaming pins). // static MODE_AND_DEFAULT_FORMAT SpeakerHsHostPinSupportedDeviceModes[] = { { STATIC_AUDIO_SIGNALPROCESSINGMODE_RAW, &SpeakerHsHostPinSupportedDeviceFormats[3].DataFormat // 48KHz }, { STATIC_AUDIO_SIGNALPROCESSINGMODE_DEFAULT, &SpeakerHsHostPinSupportedDeviceFormats[3].DataFormat // 48KHz }, { STATIC_AUDIO_SIGNALPROCESSINGMODE_MEDIA, &SpeakerHsHostPinSupportedDeviceFormats[3].DataFormat // 48KHz }, { STATIC_AUDIO_SIGNALPROCESSINGMODE_MOVIE, &SpeakerHsHostPinSupportedDeviceFormats[3].DataFormat // 48KHz }, { STATIC_AUDIO_SIGNALPROCESSINGMODE_COMMUNICATIONS, &SpeakerHsHostPinSupportedDeviceFormats[0].DataFormat // 24KHz }, { STATIC_AUDIO_SIGNALPROCESSINGMODE_NOTIFICATION, &SpeakerHsHostPinSupportedDeviceFormats[3].DataFormat // 48KHz } }; static MODE_AND_DEFAULT_FORMAT SpeakerHsOffloadPinSupportedDeviceModes[] = { { STATIC_AUDIO_SIGNALPROCESSINGMODE_DEFAULT, &SpeakerHsOffloadPinSupportedDeviceFormats[1].DataFormat // 48KHz }, { STATIC_AUDIO_SIGNALPROCESSINGMODE_MEDIA, &SpeakerHsOffloadPinSupportedDeviceFormats[1].DataFormat // 48KHz } }; // // The entries here must follow the same order as the filter's pin // descriptor array. // static PIN_DEVICE_FORMATS_AND_MODES SpeakerHsPinDeviceFormatsAndModes[] = { { SystemRenderPin, SpeakerHsHostPinSupportedDeviceFormats, SIZEOF_ARRAY(SpeakerHsHostPinSupportedDeviceFormats), SpeakerHsHostPinSupportedDeviceModes, SIZEOF_ARRAY(SpeakerHsHostPinSupportedDeviceModes) }, { OffloadRenderPin, SpeakerHsOffloadPinSupportedDeviceFormats, SIZEOF_ARRAY(SpeakerHsOffloadPinSupportedDeviceFormats), SpeakerHsOffloadPinSupportedDeviceModes, SIZEOF_ARRAY(SpeakerHsOffloadPinSupportedDeviceModes), }, { RenderLoopbackPin, SpeakerHsHostPinSupportedDeviceFormats, // Must support all the formats supported by host pin SIZEOF_ARRAY(SpeakerHsHostPinSupportedDeviceFormats), NULL, // loopback doesn't support modes. 0 }, { BridgePin, NULL, 0, NULL, 0 }, { NoPin, // For convenience, offload engine device formats appended here SpeakerHsAudioEngineSupportedDeviceFormats, SIZEOF_ARRAY(SpeakerHsAudioEngineSupportedDeviceFormats), NULL, // no modes for this entry. 0 } }; //============================================================================= static KSDATARANGE_AUDIO SpeakerHsPinDataRangesStream[] = { { // 0 { sizeof(KSDATARANGE_AUDIO), KSDATARANGE_ATTRIBUTES, // An attributes list follows this data range 0, 0, STATICGUIDOF(KSDATAFORMAT_TYPE_AUDIO), STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM), STATICGUIDOF(KSDATAFORMAT_SPECIFIER_WAVEFORMATEX) }, SPEAKERHS_HOST_MAX_CHANNELS, SPEAKERHS_HOST_MIN_BITS_PER_SAMPLE, SPEAKERHS_HOST_MAX_BITS_PER_SAMPLE, SPEAKERHS_HOST_MIN_SAMPLE_RATE, SPEAKERHS_HOST_MAX_SAMPLE_RATE }, { // 1 { sizeof(KSDATARANGE_AUDIO), KSDATARANGE_ATTRIBUTES, // An attributes list follows this data range 0, 0, STATICGUIDOF(KSDATAFORMAT_TYPE_AUDIO), STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM), STATICGUIDOF(KSDATAFORMAT_SPECIFIER_WAVEFORMATEX) }, SPEAKERHS_OFFLOAD_MAX_CHANNELS, SPEAKERHS_OFFLOAD_MIN_BITS_PER_SAMPLE, SPEAKERHS_OFFLOAD_MAX_BITS_PER_SAMPLE, SPEAKERHS_OFFLOAD_MIN_SAMPLE_RATE, SPEAKERHS_OFFLOAD_MAX_SAMPLE_RATE }, { // 2 { sizeof(KSDATARANGE_AUDIO), 0, 0, 0, STATICGUIDOF(KSDATAFORMAT_TYPE_AUDIO), STATICGUIDOF(KSDATAFORMAT_SUBTYPE_PCM), STATICGUIDOF(KSDATAFORMAT_SPECIFIER_WAVEFORMATEX) }, SPEAKERHS_LOOPBACK_MAX_CHANNELS, SPEAKERHS_LOOPBACK_MIN_BITS_PER_SAMPLE, SPEAKERHS_LOOPBACK_MAX_BITS_PER_SAMPLE, SPEAKERHS_LOOPBACK_MIN_SAMPLE_RATE, SPEAKERHS_LOOPBACK_MAX_SAMPLE_RATE } }; static PKSDATARANGE SpeakerHsPinDataRangePointersStream[] = { PKSDATARANGE(&SpeakerHsPinDataRangesStream[0]), PKSDATARANGE(&PinDataRangeAttributeList) }; static PKSDATARANGE SpeakerHsPinDataRangePointersOffloadStream[] = { PKSDATARANGE(&SpeakerHsPinDataRangesStream[1]), PKSDATARANGE(&PinDataRangeAttributeList) }; static PKSDATARANGE SpeakerHsPinDataRangePointersLoopbackStream[] = { PKSDATARANGE(&SpeakerHsPinDataRangesStream[2]) }; //============================================================================= static KSDATARANGE SpeakerHsPinDataRangesBridge[] = { { sizeof(KSDATARANGE), 0, 0, 0, STATICGUIDOF(KSDATAFORMAT_TYPE_AUDIO), STATICGUIDOF(KSDATAFORMAT_SUBTYPE_ANALOG), STATICGUIDOF(KSDATAFORMAT_SPECIFIER_NONE) } }; static PKSDATARANGE SpeakerHsPinDataRangePointersBridge[] = { &SpeakerHsPinDataRangesBridge[0] }; //============================================================================= static PCPROPERTY_ITEM PropertiesSpeakerHsOffloadPin[] = { { &KSPROPSETID_OffloadPin, // define new property set KSPROPERTY_OFFLOAD_PIN_GET_STREAM_OBJECT_POINTER, // define properties KSPROPERTY_TYPE_GET | KSPROPERTY_TYPE_BASICSUPPORT, PropertyHandler_OffloadPin }, { &KSPROPSETID_OffloadPin, // define new property set KSPROPERTY_OFFLOAD_PIN_VERIFY_STREAM_OBJECT_POINTER, // define properties KSPROPERTY_TYPE_SET | KSPROPERTY_TYPE_BASICSUPPORT, PropertyHandler_OffloadPin } }; DEFINE_PCAUTOMATION_TABLE_PROP(AutomationSpeakerHsOffloadPin, PropertiesSpeakerHsOffloadPin); //============================================================================= static PCPIN_DESCRIPTOR SpeakerHsWaveMiniportPins[] = { // Wave Out Streaming Pin (renderer) KSPIN_WAVE_RENDER_SINK_SYSTEM { SPEAKERHS_MAX_INPUT_SYSTEM_STREAMS, SPEAKERHS_MAX_INPUT_SYSTEM_STREAMS, 0, NULL, { 0, NULL, 0, NULL, SIZEOF_ARRAY(SpeakerHsPinDataRangePointersStream), SpeakerHsPinDataRangePointersStream, KSPIN_DATAFLOW_IN, KSPIN_COMMUNICATION_SINK, &KSCATEGORY_AUDIO, NULL, 0 } }, // Wave Out Streaming Pin (Renderer) KSPIN_WAVE_RENDER_SINK_OFFLOAD { SPEAKERHS_MAX_INPUT_OFFLOAD_STREAMS, SPEAKERHS_MAX_INPUT_OFFLOAD_STREAMS, 0, &AutomationSpeakerHsOffloadPin, // AutomationTable { 0, NULL, 0, NULL, SIZEOF_ARRAY(SpeakerHsPinDataRangePointersOffloadStream), SpeakerHsPinDataRangePointersOffloadStream, KSPIN_DATAFLOW_IN, KSPIN_COMMUNICATION_SINK, &KSCATEGORY_AUDIO, NULL, 0 } }, // Wave Out Streaming Pin (Renderer) KSPIN_WAVE_RENDER_SINK_LOOPBACK { SPEAKERHS_MAX_OUTPUT_LOOPBACK_STREAMS, SPEAKERHS_MAX_OUTPUT_LOOPBACK_STREAMS, 0, NULL, { 0, NULL, 0, NULL, SIZEOF_ARRAY(SpeakerHsPinDataRangePointersLoopbackStream), SpeakerHsPinDataRangePointersLoopbackStream, KSPIN_DATAFLOW_OUT, KSPIN_COMMUNICATION_SINK, &KSNODETYPE_AUDIO_LOOPBACK, NULL, 0 } }, // Wave Out Bridge Pin (Renderer) KSPIN_WAVE_RENDER_SOURCE { 0, 0, 0, NULL, { 0, NULL, 0, NULL, SIZEOF_ARRAY(SpeakerHsPinDataRangePointersBridge), SpeakerHsPinDataRangePointersBridge, KSPIN_DATAFLOW_OUT, KSPIN_COMMUNICATION_NONE, &KSCATEGORY_AUDIO, NULL, 0 } }, }; //============================================================================= static PCNODE_DESCRIPTOR SpeakerHsWaveMiniportNodes[] = { // KSNODE_WAVE_AUDIO_ENGINE { 0, // Flags NULL, // AutomationTable &KSNODETYPE_AUDIO_ENGINE, // Type KSNODETYPE_AUDIO_ENGINE NULL // Name } }; //============================================================================= // // ---------------------------- // | | // System Pin 0-->| |--> 2 Loopback Pin // | HW Audio Engine node | // Offload Pin 1-->| |--> 3 KSPIN_WAVE_RENDER_SOURCE // | | // ---------------------------- static PCCONNECTION_DESCRIPTOR SpeakerHsWaveMiniportConnections[] = { { PCFILTER_NODE, KSPIN_WAVE_RENDER_SINK_SYSTEM, KSNODE_WAVE_AUDIO_ENGINE, 1 }, { PCFILTER_NODE, KSPIN_WAVE_RENDER_SINK_OFFLOAD, KSNODE_WAVE_AUDIO_ENGINE, 2 }, { KSNODE_WAVE_AUDIO_ENGINE, 3, PCFILTER_NODE, KSPIN_WAVE_RENDER_SINK_LOOPBACK }, { KSNODE_WAVE_AUDIO_ENGINE, 0, PCFILTER_NODE, KSPIN_WAVE_RENDER_SOURCE }, }; //============================================================================= static PCPROPERTY_ITEM PropertiesSpeakerHsWaveFilter[] = { { &KSPROPSETID_Pin, KSPROPERTY_PIN_PROPOSEDATAFORMAT, KSPROPERTY_TYPE_SET | KSPROPERTY_TYPE_BASICSUPPORT, PropertyHandler_WaveFilter }, { &KSPROPSETID_Pin, KSPROPERTY_PIN_PROPOSEDATAFORMAT2, KSPROPERTY_TYPE_GET | KSPROPERTY_TYPE_BASICSUPPORT, PropertyHandler_WaveFilter } }; DEFINE_PCAUTOMATION_TABLE_PROP(AutomationSpeakerHsWaveFilter, PropertiesSpeakerHsWaveFilter); //============================================================================= static PCFILTER_DESCRIPTOR SpeakerHsWaveMiniportFilterDescriptor = { 0, // Version &AutomationSpeakerHsWaveFilter, // AutomationTable sizeof(PCPIN_DESCRIPTOR), // PinSize SIZEOF_ARRAY(SpeakerHsWaveMiniportPins), // PinCount SpeakerHsWaveMiniportPins, // Pins sizeof(PCNODE_DESCRIPTOR), // NodeSize SIZEOF_ARRAY(SpeakerHsWaveMiniportNodes), // NodeCount SpeakerHsWaveMiniportNodes, // Nodes SIZEOF_ARRAY(SpeakerHsWaveMiniportConnections), // ConnectionCount SpeakerHsWaveMiniportConnections, // Connections 0, // CategoryCount NULL // Categories - use defaults (audio, render, capture) }; #endif // _SYSVAD_SPEAKERHSWAVTABLE_H_