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https://github.com/reactos/reactos.git
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c424146e2c
svn path=/branches/cmake-bringup/; revision=48236
1165 lines
37 KiB
C
1165 lines
37 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: lib/drivers/sound/mmixer/controls.c
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* PURPOSE: Mixer Control Iteration Functions
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* PROGRAMMER: Johannes Anderwald
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*/
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#include "priv.h"
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MIXER_STATUS
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MMixerGetTargetPinsByNodeConnectionIndex(
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IN PMIXER_CONTEXT MixerContext,
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IN PKSMULTIPLE_ITEM NodeConnections,
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IN PKSMULTIPLE_ITEM NodeTypes,
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IN ULONG bUpDirection,
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IN ULONG NodeConnectionIndex,
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IN ULONG PinCount,
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OUT PULONG Pins)
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{
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PKSTOPOLOGY_CONNECTION Connection;
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ULONG PinId, NodeConnectionCount, Index;
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PULONG NodeConnection;
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MIXER_STATUS Status;
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/* sanity check */
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ASSERT(NodeConnectionIndex < NodeConnections->Count);
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Connection = (PKSTOPOLOGY_CONNECTION)(NodeConnections + 1);
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//DPRINT("FromNode %u FromNodePin %u -> ToNode %u ToNodePin %u\n", Connection[NodeConnectionIndex].FromNode, Connection[NodeConnectionIndex].FromNodePin, Connection[NodeConnectionIndex].ToNode, Connection[NodeConnectionIndex].ToNodePin );
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if ((Connection[NodeConnectionIndex].ToNode == KSFILTER_NODE && bUpDirection == FALSE) ||
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(Connection[NodeConnectionIndex].FromNode == KSFILTER_NODE && bUpDirection == TRUE))
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{
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/* iteration stops here */
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if (bUpDirection)
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PinId = Connection[NodeConnectionIndex].FromNodePin;
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else
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PinId = Connection[NodeConnectionIndex].ToNodePin;
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//DPRINT("GetTargetPinsByNodeIndex FOUND Target Pin %u Parsed %u\n", PinId, Pins[PinId]);
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// sanity check
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ASSERT(PinId < PinCount);
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/* mark pin index as a target pin */
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Pins[PinId] = TRUE;
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return MM_STATUS_SUCCESS;
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}
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// get all node indexes referenced by that node
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if (bUpDirection)
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{
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Status = MMixerGetNodeIndexes(MixerContext, NodeConnections, Connection[NodeConnectionIndex].FromNode, TRUE, FALSE, &NodeConnectionCount, &NodeConnection);
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}
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else
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{
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Status = MMixerGetNodeIndexes(MixerContext, NodeConnections, Connection[NodeConnectionIndex].ToNode, TRUE, TRUE, &NodeConnectionCount, &NodeConnection);
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}
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if (Status == MM_STATUS_SUCCESS)
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{
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for(Index = 0; Index < NodeConnectionCount; Index++)
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{
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// iterate recursively into the nodes
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Status = MMixerGetTargetPinsByNodeConnectionIndex(MixerContext, NodeConnections, NodeTypes, bUpDirection, NodeConnection[Index], PinCount, Pins);
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ASSERT(Status == MM_STATUS_SUCCESS);
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}
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// free node connection indexes
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MixerContext->Free(NodeConnection);
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}
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return Status;
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}
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MIXER_STATUS
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MMixerGetControlsFromPinByConnectionIndex(
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IN PMIXER_CONTEXT MixerContext,
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IN PKSMULTIPLE_ITEM NodeConnections,
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IN PKSMULTIPLE_ITEM NodeTypes,
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IN ULONG bUpDirection,
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IN ULONG NodeConnectionIndex,
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OUT PULONG Nodes)
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{
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PKSTOPOLOGY_CONNECTION CurConnection;
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LPGUID NodeType;
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ULONG NodeIndex;
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MIXER_STATUS Status;
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ULONG NodeConnectionCount, Index;
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PULONG NodeConnection;
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/* get current connection */
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CurConnection = MMixerGetConnectionByIndex(NodeConnections, NodeConnectionIndex);
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if (bUpDirection)
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NodeIndex = CurConnection->FromNode;
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else
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NodeIndex = CurConnection->ToNode;
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if (NodeIndex > NodeTypes->Count)
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{
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// reached end of pin connection
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return MM_STATUS_SUCCESS;
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}
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/* get target node type of current connection */
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NodeType = MMixerGetNodeType(NodeTypes, NodeIndex);
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if (IsEqualGUIDAligned(NodeType, &KSNODETYPE_SUM) || IsEqualGUIDAligned(NodeType, &KSNODETYPE_MUX))
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{
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if (bUpDirection)
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{
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/* add the sum / mux node to destination line */
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Nodes[NodeIndex] = TRUE;
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}
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return MM_STATUS_SUCCESS;
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}
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/* now add the node */
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Nodes[NodeIndex] = TRUE;
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/* get all node indexes referenced by that node */
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if (bUpDirection)
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{
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Status = MMixerGetNodeIndexes(MixerContext, NodeConnections, NodeIndex, TRUE, FALSE, &NodeConnectionCount, &NodeConnection);
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}
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else
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{
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Status = MMixerGetNodeIndexes(MixerContext, NodeConnections, NodeIndex, TRUE, TRUE, &NodeConnectionCount, &NodeConnection);
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}
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if (Status == MM_STATUS_SUCCESS)
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{
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for(Index = 0; Index < NodeConnectionCount; Index++)
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{
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/* iterate recursively into the nodes */
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Status = MMixerGetControlsFromPinByConnectionIndex(MixerContext, NodeConnections, NodeTypes, bUpDirection, NodeConnection[Index], Nodes);
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ASSERT(Status == MM_STATUS_SUCCESS);
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}
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/* free node connection indexes */
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MixerContext->Free(NodeConnection);
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}
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return Status;
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}
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MIXER_STATUS
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MMixerAddMixerControl(
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IN PMIXER_CONTEXT MixerContext,
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IN LPMIXER_INFO MixerInfo,
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IN HANDLE hDevice,
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IN PKSMULTIPLE_ITEM NodeTypes,
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IN ULONG NodeIndex,
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IN LPMIXERLINE_EXT MixerLine,
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OUT LPMIXERCONTROLW MixerControl)
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{
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LPGUID NodeType;
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KSP_NODE Node;
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ULONG BytesReturned;
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MIXER_STATUS Status;
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LPWSTR Name;
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/* initialize mixer control */
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MixerControl->cbStruct = sizeof(MIXERCONTROLW);
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MixerControl->dwControlID = MixerInfo->ControlId;
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/* get node type */
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NodeType = MMixerGetNodeType(NodeTypes, NodeIndex);
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/* store control type */
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MixerControl->dwControlType = MMixerGetControlTypeFromTopologyNode(NodeType);
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MixerControl->fdwControl = MIXERCONTROL_CONTROLF_UNIFORM; //FIXME
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MixerControl->cMultipleItems = 0; //FIXME
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if (MixerControl->dwControlType == MIXERCONTROL_CONTROLTYPE_MUTE)
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{
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MixerControl->Bounds.dwMinimum = 0;
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MixerControl->Bounds.dwMaximum = 1;
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}
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else if (MixerControl->dwControlType == MIXERCONTROL_CONTROLTYPE_VOLUME)
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{
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MixerControl->Bounds.dwMinimum = 0;
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MixerControl->Bounds.dwMaximum = 0xFFFF;
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MixerControl->Metrics.cSteps = 0xC0; //FIXME
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}
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/* setup request to retrieve name */
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Node.NodeId = NodeIndex;
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Node.Property.Id = KSPROPERTY_TOPOLOGY_NAME;
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Node.Property.Flags = KSPROPERTY_TYPE_GET;
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Node.Property.Set = KSPROPSETID_Topology;
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Node.Reserved = 0;
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/* get node name size */
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Status = MixerContext->Control(hDevice, IOCTL_KS_PROPERTY, (PVOID)&Node, sizeof(KSP_NODE), NULL, 0, &BytesReturned);
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if (Status == MM_STATUS_MORE_ENTRIES)
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{
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ASSERT(BytesReturned != 0);
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Name = (LPWSTR)MixerContext->Alloc(BytesReturned);
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if (!Name)
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{
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/* not enough memory */
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return MM_STATUS_NO_MEMORY;
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}
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/* get node name */
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Status = MixerContext->Control(hDevice, IOCTL_KS_PROPERTY, (PVOID)&Node, sizeof(KSP_NODE), (LPVOID)Name, BytesReturned, &BytesReturned);
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if (Status == MM_STATUS_SUCCESS)
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{
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MixerContext->Copy(MixerControl->szShortName, Name, (min(MIXER_SHORT_NAME_CHARS, wcslen(Name)+1)) * sizeof(WCHAR));
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MixerControl->szShortName[MIXER_SHORT_NAME_CHARS-1] = L'\0';
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MixerContext->Copy(MixerControl->szName, Name, (min(MIXER_LONG_NAME_CHARS, wcslen(Name)+1)) * sizeof(WCHAR));
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MixerControl->szName[MIXER_LONG_NAME_CHARS-1] = L'\0';
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}
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/* free name buffer */
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MixerContext->Free(Name);
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}
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MixerInfo->ControlId++;
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#if 0
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if (MixerControl->dwControlType == MIXERCONTROL_CONTROLTYPE_MUX)
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{
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KSNODEPROPERTY Property;
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ULONG PinId = 2;
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/* setup the request */
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RtlZeroMemory(&Property, sizeof(KSNODEPROPERTY));
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Property.NodeId = NodeIndex;
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Property.Property.Id = KSPROPERTY_AUDIO_MUX_SOURCE;
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Property.Property.Flags = KSPROPERTY_TYPE_SET;
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Property.Property.Set = KSPROPSETID_Audio;
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/* get node volume level info */
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Status = MixerContext->Control(hDevice, IOCTL_KS_PROPERTY, (PVOID)&Property, sizeof(KSNODEPROPERTY), (PVOID)&PinId, sizeof(ULONG), &BytesReturned);
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DPRINT1("Status %x NodeIndex %u PinId %u\n", Status, NodeIndex, PinId);
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//DbgBreakPoint();
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}else
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#endif
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if (MixerControl->dwControlType == MIXERCONTROL_CONTROLTYPE_VOLUME)
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{
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KSNODEPROPERTY_AUDIO_CHANNEL Property;
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ULONG Length;
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PKSPROPERTY_DESCRIPTION Desc;
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PKSPROPERTY_MEMBERSHEADER Members;
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PKSPROPERTY_STEPPING_LONG Range;
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Length = sizeof(KSPROPERTY_DESCRIPTION) + sizeof(KSPROPERTY_MEMBERSHEADER) + sizeof(KSPROPERTY_STEPPING_LONG);
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Desc = (PKSPROPERTY_DESCRIPTION)MixerContext->Alloc(Length);
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ASSERT(Desc);
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/* setup the request */
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RtlZeroMemory(&Property, sizeof(KSNODEPROPERTY_AUDIO_CHANNEL));
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Property.NodeProperty.NodeId = NodeIndex;
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Property.NodeProperty.Property.Id = KSPROPERTY_AUDIO_VOLUMELEVEL;
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Property.NodeProperty.Property.Flags = KSPROPERTY_TYPE_BASICSUPPORT;
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Property.NodeProperty.Property.Set = KSPROPSETID_Audio;
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/* get node volume level info */
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Status = MixerContext->Control(hDevice, IOCTL_KS_PROPERTY, (PVOID)&Property, sizeof(KSNODEPROPERTY_AUDIO_CHANNEL), Desc, Length, &BytesReturned);
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if (Status == MM_STATUS_SUCCESS)
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{
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LPMIXERVOLUME_DATA VolumeData;
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ULONG Steps, MaxRange, Index;
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LONG Value;
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Members = (PKSPROPERTY_MEMBERSHEADER)(Desc + 1);
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Range = (PKSPROPERTY_STEPPING_LONG)(Members + 1);
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DPRINT("NodeIndex %u Range Min %d Max %d Steps %x UMin %x UMax %x\n", NodeIndex, Range->Bounds.SignedMinimum, Range->Bounds.SignedMaximum, Range->SteppingDelta, Range->Bounds.UnsignedMinimum, Range->Bounds.UnsignedMaximum);
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MaxRange = Range->Bounds.UnsignedMaximum - Range->Bounds.UnsignedMinimum;
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if (MaxRange)
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{
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ASSERT(MaxRange);
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VolumeData = (LPMIXERVOLUME_DATA)MixerContext->Alloc(sizeof(MIXERVOLUME_DATA));
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if (!VolumeData)
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return MM_STATUS_NO_MEMORY;
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Steps = MaxRange / Range->SteppingDelta + 1;
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/* store mixer control info there */
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VolumeData->Header.dwControlID = MixerControl->dwControlID;
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VolumeData->SignedMaximum = Range->Bounds.SignedMaximum;
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VolumeData->SignedMinimum = Range->Bounds.SignedMinimum;
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VolumeData->SteppingDelta = Range->SteppingDelta;
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VolumeData->ValuesCount = Steps;
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VolumeData->InputSteppingDelta = 0x10000 / Steps;
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VolumeData->Values = (PLONG)MixerContext->Alloc(sizeof(LONG) * Steps);
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if (!VolumeData->Values)
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{
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MixerContext->Free(Desc);
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MixerContext->Free(VolumeData);
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return MM_STATUS_NO_MEMORY;
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}
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Value = Range->Bounds.SignedMinimum;
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for(Index = 0; Index < Steps; Index++)
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{
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VolumeData->Values[Index] = Value;
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Value += Range->SteppingDelta;
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}
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InsertTailList(&MixerLine->LineControlsExtraData, &VolumeData->Header.Entry);
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}
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}
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MixerContext->Free(Desc);
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}
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DPRINT("Status %x Name %S\n", Status, MixerControl->szName);
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return MM_STATUS_SUCCESS;
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}
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MIXER_STATUS
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MMixerAddMixerSourceLine(
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IN PMIXER_CONTEXT MixerContext,
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IN OUT LPMIXER_INFO MixerInfo,
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IN HANDLE hDevice,
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IN PKSMULTIPLE_ITEM NodeConnections,
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IN PKSMULTIPLE_ITEM NodeTypes,
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IN ULONG PinId,
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IN ULONG bBridgePin,
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IN ULONG bTargetPin)
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{
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LPMIXERLINE_EXT SrcLine, DstLine;
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MIXER_STATUS Status;
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KSP_PIN Pin;
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LPWSTR PinName;
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GUID NodeType;
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ULONG BytesReturned, ControlCount, Index;
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LPGUID Node;
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PULONG Nodes;
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if (!bTargetPin)
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{
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/* allocate src mixer line */
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SrcLine = (LPMIXERLINE_EXT)MixerContext->Alloc(sizeof(MIXERLINE_EXT));
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if (!SrcLine)
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return MM_STATUS_NO_MEMORY;
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/* zero struct */
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RtlZeroMemory(SrcLine, sizeof(MIXERLINE_EXT));
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}
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else
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{
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ASSERT(!IsListEmpty(&MixerInfo->LineList));
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SrcLine = MMixerGetSourceMixerLineByLineId(MixerInfo, DESTINATION_LINE);
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}
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/* get destination line */
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DstLine = MMixerGetSourceMixerLineByLineId(MixerInfo, DESTINATION_LINE);
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ASSERT(DstLine);
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if (!bTargetPin)
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{
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/* initialize mixer src line */
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SrcLine->hDevice = hDevice;
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SrcLine->PinId = PinId;
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SrcLine->Line.cbStruct = sizeof(MIXERLINEW);
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/* initialize mixer destination line */
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SrcLine->Line.cbStruct = sizeof(MIXERLINEW);
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SrcLine->Line.dwDestination = 0;
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SrcLine->Line.dwSource = DstLine->Line.cConnections;
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SrcLine->Line.dwLineID = (DstLine->Line.cConnections * 0x10000);
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SrcLine->Line.fdwLine = MIXERLINE_LINEF_ACTIVE | MIXERLINE_LINEF_SOURCE;
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SrcLine->Line.dwUser = 0;
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SrcLine->Line.cChannels = DstLine->Line.cChannels;
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SrcLine->Line.cConnections = 0;
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SrcLine->Line.Target.dwType = 1;
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SrcLine->Line.Target.dwDeviceID = DstLine->Line.Target.dwDeviceID;
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SrcLine->Line.Target.wMid = MixerInfo->MixCaps.wMid;
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SrcLine->Line.Target.wPid = MixerInfo->MixCaps.wPid;
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SrcLine->Line.Target.vDriverVersion = MixerInfo->MixCaps.vDriverVersion;
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InitializeListHead(&SrcLine->LineControlsExtraData);
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ASSERT(MixerInfo->MixCaps.szPname[MAXPNAMELEN-1] == L'\0');
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wcscpy(SrcLine->Line.Target.szPname, MixerInfo->MixCaps.szPname);
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}
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/* allocate a node arrary */
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Nodes = (PULONG)MixerContext->Alloc(sizeof(ULONG) * NodeTypes->Count);
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if (!Nodes)
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{
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/* not enough memory */
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if (!bTargetPin)
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{
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MixerContext->Free(SrcLine);
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}
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return MM_STATUS_NO_MEMORY;
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}
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Status = MMixerGetControlsFromPin(MixerContext, NodeConnections, NodeTypes, PinId, bTargetPin, Nodes);
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if (Status != MM_STATUS_SUCCESS)
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{
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/* something went wrong */
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if (!bTargetPin)
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{
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MixerContext->Free(SrcLine);
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}
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MixerContext->Free(Nodes);
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return Status;
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}
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/* now count all nodes controlled by that pin */
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ControlCount = 0;
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for(Index = 0; Index < NodeTypes->Count; Index++)
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{
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if (Nodes[Index])
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{
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// get node type
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Node = MMixerGetNodeType(NodeTypes, Index);
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if (MMixerGetControlTypeFromTopologyNode(Node))
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{
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// found a node which can be resolved to a type
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ControlCount++;
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}
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}
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}
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/* now allocate the line controls */
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if (ControlCount)
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{
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SrcLine->LineControls = (LPMIXERCONTROLW)MixerContext->Alloc(sizeof(MIXERCONTROLW) * ControlCount);
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if (!SrcLine->LineControls)
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{
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/* no memory available */
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if (!bTargetPin)
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{
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MixerContext->Free(SrcLine);
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}
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MixerContext->Free(Nodes);
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return MM_STATUS_NO_MEMORY;
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}
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SrcLine->NodeIds = (PULONG)MixerContext->Alloc(sizeof(ULONG) * ControlCount);
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if (!SrcLine->NodeIds)
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{
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/* no memory available */
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MixerContext->Free(SrcLine->LineControls);
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if (!bTargetPin)
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{
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MixerContext->Free(SrcLine);
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}
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MixerContext->Free(Nodes);
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return MM_STATUS_NO_MEMORY;
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}
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/* zero line controls */
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RtlZeroMemory(SrcLine->LineControls, sizeof(MIXERCONTROLW) * ControlCount);
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RtlZeroMemory(SrcLine->NodeIds, sizeof(ULONG) * ControlCount);
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ControlCount = 0;
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for(Index = 0; Index < NodeTypes->Count; Index++)
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{
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if (Nodes[Index])
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{
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// get node type
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Node = MMixerGetNodeType(NodeTypes, Index);
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if (MMixerGetControlTypeFromTopologyNode(Node))
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{
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/* store the node index for retrieving / setting details */
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SrcLine->NodeIds[ControlCount] = Index;
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Status = MMixerAddMixerControl(MixerContext, MixerInfo, hDevice, NodeTypes, Index, SrcLine, &SrcLine->LineControls[ControlCount]);
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if (Status == MM_STATUS_SUCCESS)
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{
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/* increment control count on success */
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ControlCount++;
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}
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}
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}
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}
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/* store control count */
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SrcLine->Line.cControls = ControlCount;
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}
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/* release nodes array */
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MixerContext->Free(Nodes);
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/* get pin category */
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Pin.PinId = PinId;
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Pin.Reserved = 0;
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Pin.Property.Flags = KSPROPERTY_TYPE_GET;
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Pin.Property.Set = KSPROPSETID_Pin;
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Pin.Property.Id = KSPROPERTY_PIN_CATEGORY;
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/* try get pin category */
|
|
Status = MixerContext->Control(hDevice, IOCTL_KS_PROPERTY, (PVOID)&Pin, sizeof(KSP_PIN), (LPVOID)&NodeType, sizeof(GUID), &BytesReturned);
|
|
if (Status != MM_STATUS_SUCCESS)
|
|
{
|
|
//FIXME
|
|
//map component type
|
|
}
|
|
|
|
/* retrieve pin name */
|
|
Pin.PinId = PinId;
|
|
Pin.Reserved = 0;
|
|
Pin.Property.Flags = KSPROPERTY_TYPE_GET;
|
|
Pin.Property.Set = KSPROPSETID_Pin;
|
|
Pin.Property.Id = KSPROPERTY_PIN_NAME;
|
|
|
|
/* try get pin name size */
|
|
Status = MixerContext->Control(hDevice, IOCTL_KS_PROPERTY, (PVOID)&Pin, sizeof(KSP_PIN), NULL, 0, &BytesReturned);
|
|
|
|
if (Status == MM_STATUS_MORE_ENTRIES)
|
|
{
|
|
PinName = (LPWSTR)MixerContext->Alloc(BytesReturned);
|
|
if (PinName)
|
|
{
|
|
/* try get pin name */
|
|
Status = MixerContext->Control(hDevice, IOCTL_KS_PROPERTY, (PVOID)&Pin, sizeof(KSP_PIN), (LPVOID)PinName, BytesReturned, &BytesReturned);
|
|
|
|
if (Status == MM_STATUS_SUCCESS)
|
|
{
|
|
MixerContext->Copy(SrcLine->Line.szShortName, PinName, (min(MIXER_SHORT_NAME_CHARS, wcslen(PinName)+1)) * sizeof(WCHAR));
|
|
SrcLine->Line.szShortName[MIXER_SHORT_NAME_CHARS-1] = L'\0';
|
|
|
|
MixerContext->Copy(SrcLine->Line.szName, PinName, (min(MIXER_LONG_NAME_CHARS, wcslen(PinName)+1)) * sizeof(WCHAR));
|
|
SrcLine->Line.szName[MIXER_LONG_NAME_CHARS-1] = L'\0';
|
|
}
|
|
MixerContext->Free(PinName);
|
|
}
|
|
}
|
|
|
|
/* insert src line */
|
|
if (!bTargetPin)
|
|
{
|
|
InsertTailList(&MixerInfo->LineList, &SrcLine->Entry);
|
|
DstLine->Line.cConnections++;
|
|
}
|
|
|
|
return MM_STATUS_SUCCESS;
|
|
}
|
|
|
|
MIXER_STATUS
|
|
MMixerCreateDestinationLine(
|
|
IN PMIXER_CONTEXT MixerContext,
|
|
IN LPMIXER_INFO MixerInfo,
|
|
IN ULONG bInputMixer,
|
|
IN LPWSTR LineName)
|
|
{
|
|
LPMIXERLINE_EXT DestinationLine;
|
|
|
|
// allocate a mixer destination line
|
|
DestinationLine = (LPMIXERLINE_EXT) MixerContext->Alloc(sizeof(MIXERLINE_EXT));
|
|
if (!MixerInfo)
|
|
{
|
|
// no memory
|
|
return MM_STATUS_NO_MEMORY;
|
|
}
|
|
|
|
/* initialize mixer destination line */
|
|
DestinationLine->Line.cbStruct = sizeof(MIXERLINEW);
|
|
DestinationLine->Line.dwSource = MAXULONG;
|
|
DestinationLine->Line.dwLineID = DESTINATION_LINE;
|
|
DestinationLine->Line.fdwLine = MIXERLINE_LINEF_ACTIVE;
|
|
DestinationLine->Line.dwUser = 0;
|
|
DestinationLine->Line.dwComponentType = (bInputMixer == 0 ? MIXERLINE_COMPONENTTYPE_DST_SPEAKERS : MIXERLINE_COMPONENTTYPE_DST_WAVEIN);
|
|
DestinationLine->Line.cChannels = 2; //FIXME
|
|
|
|
if (LineName)
|
|
{
|
|
MixerContext->Copy(DestinationLine->Line.szShortName, LineName, (min(MIXER_SHORT_NAME_CHARS, wcslen(LineName)+1)) * sizeof(WCHAR));
|
|
DestinationLine->Line.szShortName[MIXER_SHORT_NAME_CHARS-1] = L'\0';
|
|
|
|
MixerContext->Copy(DestinationLine->Line.szName, LineName, (min(MIXER_LONG_NAME_CHARS, wcslen(LineName)+1)) * sizeof(WCHAR));
|
|
DestinationLine->Line.szName[MIXER_LONG_NAME_CHARS-1] = L'\0';
|
|
|
|
}
|
|
else
|
|
{
|
|
/* FIXME no name was found for pin */
|
|
wcscpy(DestinationLine->Line.szShortName, L"Summe");
|
|
wcscpy(DestinationLine->Line.szName, L"Summe");
|
|
}
|
|
|
|
DestinationLine->Line.Target.dwType = (bInputMixer == 0 ? MIXERLINE_TARGETTYPE_WAVEOUT : MIXERLINE_TARGETTYPE_WAVEIN);
|
|
DestinationLine->Line.Target.dwDeviceID = !bInputMixer;
|
|
DestinationLine->Line.Target.wMid = MixerInfo->MixCaps.wMid;
|
|
DestinationLine->Line.Target.wPid = MixerInfo->MixCaps.wPid;
|
|
DestinationLine->Line.Target.vDriverVersion = MixerInfo->MixCaps.vDriverVersion;
|
|
|
|
ASSERT(MixerInfo->MixCaps.szPname[MAXPNAMELEN-1] == 0);
|
|
wcscpy(DestinationLine->Line.Target.szPname, MixerInfo->MixCaps.szPname);
|
|
|
|
// initialize extra line
|
|
InitializeListHead(&DestinationLine->LineControlsExtraData);
|
|
|
|
// insert into mixer info
|
|
InsertHeadList(&MixerInfo->LineList, &DestinationLine->Entry);
|
|
|
|
// done
|
|
return MM_STATUS_SUCCESS;
|
|
}
|
|
|
|
MIXER_STATUS
|
|
MMixerGetControlsFromPin(
|
|
IN PMIXER_CONTEXT MixerContext,
|
|
IN PKSMULTIPLE_ITEM NodeConnections,
|
|
IN PKSMULTIPLE_ITEM NodeTypes,
|
|
IN ULONG PinId,
|
|
IN ULONG bUpDirection,
|
|
OUT PULONG Nodes)
|
|
{
|
|
ULONG NodeConnectionCount, Index;
|
|
MIXER_STATUS Status;
|
|
PULONG NodeConnection;
|
|
|
|
/* sanity check */
|
|
ASSERT(PinId != (ULONG)-1);
|
|
|
|
/* get all node indexes referenced by that pin */
|
|
if (bUpDirection)
|
|
Status = MMixerGetNodeIndexes(MixerContext, NodeConnections, PinId, FALSE, FALSE, &NodeConnectionCount, &NodeConnection);
|
|
else
|
|
Status = MMixerGetNodeIndexes(MixerContext, NodeConnections, PinId, FALSE, TRUE, &NodeConnectionCount, &NodeConnection);
|
|
|
|
for(Index = 0; Index < NodeConnectionCount; Index++)
|
|
{
|
|
/* get all associated controls */
|
|
Status = MMixerGetControlsFromPinByConnectionIndex(MixerContext, NodeConnections, NodeTypes, bUpDirection, NodeConnection[Index], Nodes);
|
|
}
|
|
|
|
MixerContext->Free(NodeConnection);
|
|
|
|
return Status;
|
|
}
|
|
|
|
|
|
|
|
|
|
MIXER_STATUS
|
|
MMixerAddMixerSourceLines(
|
|
IN PMIXER_CONTEXT MixerContext,
|
|
IN OUT LPMIXER_INFO MixerInfo,
|
|
IN HANDLE hDevice,
|
|
IN PKSMULTIPLE_ITEM NodeConnections,
|
|
IN PKSMULTIPLE_ITEM NodeTypes,
|
|
IN ULONG PinsCount,
|
|
IN ULONG BridgePinIndex,
|
|
IN ULONG TargetPinIndex,
|
|
IN PULONG Pins)
|
|
{
|
|
ULONG Index;
|
|
|
|
for(Index = PinsCount; Index > 0; Index--)
|
|
{
|
|
DPRINT("MMixerAddMixerSourceLines Index %lu Pin %lu\n", Index-1, Pins[Index-1]);
|
|
if (Pins[Index-1])
|
|
{
|
|
MMixerAddMixerSourceLine(MixerContext, MixerInfo, hDevice, NodeConnections, NodeTypes, Index-1, (Index -1 == BridgePinIndex), (Index -1 == TargetPinIndex));
|
|
}
|
|
}
|
|
return MM_STATUS_SUCCESS;
|
|
}
|
|
|
|
|
|
MIXER_STATUS
|
|
MMixerHandlePhysicalConnection(
|
|
IN PMIXER_CONTEXT MixerContext,
|
|
IN PMIXER_LIST MixerList,
|
|
IN OUT LPMIXER_INFO MixerInfo,
|
|
IN ULONG bInput,
|
|
IN PKSPIN_PHYSICALCONNECTION OutConnection)
|
|
{
|
|
PULONG PinsRef = NULL, PinConnectionIndex = NULL, PinsSrcRef;
|
|
ULONG PinsRefCount, Index, PinConnectionIndexCount;
|
|
MIXER_STATUS Status;
|
|
PKSMULTIPLE_ITEM NodeTypes = NULL;
|
|
PKSMULTIPLE_ITEM NodeConnections = NULL;
|
|
PULONG MixerControls;
|
|
ULONG MixerControlsCount;
|
|
LPMIXER_DATA MixerData;
|
|
|
|
|
|
// open the connected filter
|
|
OutConnection->SymbolicLinkName[1] = L'\\';
|
|
MixerData = MMixerGetDataByDeviceName(MixerList, OutConnection->SymbolicLinkName);
|
|
ASSERT(MixerData);
|
|
|
|
// store connected mixer handle
|
|
MixerInfo->hMixer = MixerData->hDevice;
|
|
|
|
// get connected filter pin count
|
|
PinsRefCount = MMixerGetFilterPinCount(MixerContext, MixerData->hDevice);
|
|
ASSERT(PinsRefCount);
|
|
|
|
PinsRef = (PULONG)MixerContext->Alloc(sizeof(ULONG) * PinsRefCount);
|
|
if (!PinsRef)
|
|
{
|
|
// no memory
|
|
return MM_STATUS_UNSUCCESSFUL;
|
|
}
|
|
|
|
// get topology node types
|
|
Status = MMixerGetFilterTopologyProperty(MixerContext, MixerData->hDevice, KSPROPERTY_TOPOLOGY_NODES, &NodeTypes);
|
|
if (Status != MM_STATUS_SUCCESS)
|
|
{
|
|
MixerContext->Free(PinsRef);
|
|
return Status;
|
|
}
|
|
|
|
// get topology connections
|
|
Status = MMixerGetFilterTopologyProperty(MixerContext, MixerData->hDevice, KSPROPERTY_TOPOLOGY_CONNECTIONS, &NodeConnections);
|
|
if (Status != MM_STATUS_SUCCESS)
|
|
{
|
|
MixerContext->Free(PinsRef);
|
|
MixerContext->Free(NodeTypes);
|
|
return Status;
|
|
}
|
|
// gets connection index of the bridge pin which connects to a node
|
|
DPRINT("Pin %lu\n", OutConnection->Pin);
|
|
|
|
Status = MMixerGetNodeIndexes(MixerContext, NodeConnections, OutConnection->Pin, FALSE, !bInput, &PinConnectionIndexCount, &PinConnectionIndex);
|
|
if (Status != MM_STATUS_SUCCESS)
|
|
{
|
|
MixerContext->Free(PinsRef);
|
|
MixerContext->Free(NodeTypes);
|
|
MixerContext->Free(NodeConnections);
|
|
return Status;
|
|
}
|
|
|
|
/* there should be no split in the bridge pin */
|
|
ASSERT(PinConnectionIndexCount == 1);
|
|
|
|
/* find all target pins of this connection */
|
|
Status = MMixerGetTargetPinsByNodeConnectionIndex(MixerContext, NodeConnections, NodeTypes, FALSE, PinConnectionIndex[0], PinsRefCount, PinsRef);
|
|
if (Status != MM_STATUS_SUCCESS)
|
|
{
|
|
MixerContext->Free(PinsRef);
|
|
MixerContext->Free(NodeTypes);
|
|
MixerContext->Free(NodeConnections);
|
|
MixerContext->Free(PinConnectionIndex);
|
|
return Status;
|
|
}
|
|
|
|
for(Index = 0; Index < PinsRefCount; Index++)
|
|
{
|
|
DPRINT("PinsRefCount %lu Index %lu Value %lu\n", PinsRefCount, Index, PinsRef[Index]);
|
|
if (PinsRef[Index])
|
|
{
|
|
// found a target pin, now get all references
|
|
Status = MMixerGetNodeIndexes(MixerContext, NodeConnections, Index, FALSE, FALSE, &MixerControlsCount, &MixerControls);
|
|
if (Status != MM_STATUS_SUCCESS)
|
|
{
|
|
DPRINT("MMixerGetNodeIndexes failed with %u\n", Status);
|
|
break;
|
|
}
|
|
|
|
/* sanity check */
|
|
ASSERT(MixerControlsCount == 1);
|
|
|
|
PinsSrcRef = (PULONG)MixerContext->Alloc(PinsRefCount * sizeof(ULONG));
|
|
if (!PinsSrcRef)
|
|
{
|
|
/* no memory */
|
|
MixerContext->Free(PinsRef);
|
|
MixerContext->Free(NodeTypes);
|
|
MixerContext->Free(NodeConnections);
|
|
MixerContext->Free(PinConnectionIndex);
|
|
MixerContext->Free(MixerControls);
|
|
return MM_STATUS_NO_MEMORY;
|
|
}
|
|
|
|
// now get all connected source pins
|
|
Status = MMixerGetTargetPinsByNodeConnectionIndex(MixerContext, NodeConnections, NodeTypes, TRUE, MixerControls[0], PinsRefCount, PinsSrcRef);
|
|
if (Status != MM_STATUS_SUCCESS)
|
|
{
|
|
// failed */
|
|
MixerContext->Free(PinsRef);
|
|
MixerContext->Free(NodeTypes);
|
|
MixerContext->Free(NodeConnections);
|
|
MixerContext->Free(PinConnectionIndex);
|
|
MixerContext->Free(MixerControls);
|
|
MixerContext->Free(PinsSrcRef);
|
|
return Status;
|
|
}
|
|
|
|
/* add pins from target line */
|
|
if (!bInput)
|
|
{
|
|
// dont add bridge pin for input mixers
|
|
PinsSrcRef[Index] = TRUE;
|
|
PinsSrcRef[OutConnection->Pin] = TRUE;
|
|
}
|
|
PinsSrcRef[OutConnection->Pin] = TRUE;
|
|
|
|
Status = MMixerAddMixerSourceLines(MixerContext, MixerInfo, MixerData->hDevice, NodeConnections, NodeTypes, PinsRefCount, OutConnection->Pin, Index, PinsSrcRef);
|
|
|
|
MixerContext->Free(MixerControls);
|
|
MixerContext->Free(PinsSrcRef);
|
|
}
|
|
}
|
|
|
|
return Status;
|
|
}
|
|
|
|
|
|
MIXER_STATUS
|
|
MMixerInitializeFilter(
|
|
IN PMIXER_CONTEXT MixerContext,
|
|
IN PMIXER_LIST MixerList,
|
|
IN LPMIXER_DATA MixerData,
|
|
IN PKSMULTIPLE_ITEM NodeTypes,
|
|
IN PKSMULTIPLE_ITEM NodeConnections,
|
|
IN ULONG PinCount,
|
|
IN ULONG NodeIndex,
|
|
IN ULONG bInputMixer)
|
|
{
|
|
LPMIXER_INFO MixerInfo;
|
|
MIXER_STATUS Status;
|
|
PKSPIN_PHYSICALCONNECTION OutConnection;
|
|
ULONG Index;
|
|
ULONG * Pins;
|
|
ULONG bUsed;
|
|
ULONG BytesReturned;
|
|
KSP_PIN Pin;
|
|
LPWSTR Buffer = NULL;
|
|
ULONG PinId;
|
|
|
|
// allocate a mixer info struct
|
|
MixerInfo = (LPMIXER_INFO) MixerContext->Alloc(sizeof(MIXER_INFO));
|
|
if (!MixerInfo)
|
|
{
|
|
// no memory
|
|
return MM_STATUS_NO_MEMORY;
|
|
}
|
|
|
|
// intialize mixer caps */
|
|
MixerInfo->MixCaps.wMid = MM_MICROSOFT; //FIXME
|
|
MixerInfo->MixCaps.wPid = MM_PID_UNMAPPED; //FIXME
|
|
MixerInfo->MixCaps.vDriverVersion = 1; //FIXME
|
|
MixerInfo->MixCaps.fdwSupport = 0;
|
|
MixerInfo->MixCaps.cDestinations = 1;
|
|
MixerInfo->hMixer = MixerData->hDevice;
|
|
|
|
// get mixer name
|
|
MMixerGetDeviceName(MixerContext, MixerInfo, MixerData->hDeviceInterfaceKey);
|
|
|
|
// initialize line list
|
|
InitializeListHead(&MixerInfo->LineList);
|
|
InitializeListHead(&MixerInfo->EventList);
|
|
|
|
// sanity check
|
|
ASSERT(PinCount);
|
|
|
|
// now allocate an array which will receive the indices of the pin
|
|
// which has a ADC / DAC nodetype in its path
|
|
Pins = (PULONG)MixerContext->Alloc(PinCount * sizeof(ULONG));
|
|
|
|
if (!Pins)
|
|
{
|
|
// no memory
|
|
MMixerFreeMixerInfo(MixerContext, MixerInfo);
|
|
return MM_STATUS_NO_MEMORY;
|
|
}
|
|
|
|
// now get the target pins of the ADC / DAC node
|
|
Status = MMixerGetTargetPins(MixerContext, NodeTypes, NodeConnections, NodeIndex, !bInputMixer, Pins, PinCount);
|
|
|
|
// find a target pin with a name
|
|
PinId = PinCount +1;
|
|
for(Index = 0; Index < PinCount; Index++)
|
|
{
|
|
if (Pins[Index])
|
|
{
|
|
// store index of pin
|
|
PinId = Index;
|
|
|
|
/* retrieve pin name */
|
|
Pin.PinId = Index;
|
|
Pin.Reserved = 0;
|
|
Pin.Property.Flags = KSPROPERTY_TYPE_GET;
|
|
Pin.Property.Set = KSPROPSETID_Pin;
|
|
Pin.Property.Id = KSPROPERTY_PIN_NAME;
|
|
|
|
/* try get pin name size */
|
|
Status = MixerContext->Control(MixerData->hDevice, IOCTL_KS_PROPERTY, (PVOID)&Pin, sizeof(KSP_PIN), NULL, 0, &BytesReturned);
|
|
|
|
if (Status == MM_STATUS_MORE_ENTRIES)
|
|
{
|
|
Buffer = (LPWSTR)MixerContext->Alloc(BytesReturned);
|
|
if (Buffer)
|
|
{
|
|
/* try get pin name */
|
|
Status = MixerContext->Control(MixerData->hDevice, IOCTL_KS_PROPERTY, (PVOID)&Pin, sizeof(KSP_PIN), (PVOID)Buffer, BytesReturned, &BytesReturned);
|
|
if (Status != MM_STATUS_SUCCESS)
|
|
{
|
|
MixerContext->Free((PVOID)Buffer);
|
|
Buffer = NULL;
|
|
}
|
|
else
|
|
{
|
|
// found name, done
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
if (PinId < PinCount)
|
|
{
|
|
// create an wave info struct
|
|
MMixerInitializeWaveInfo(MixerContext, MixerList, MixerData, MixerInfo->MixCaps.szPname, bInputMixer, PinId);
|
|
}
|
|
|
|
Status = MMixerCreateDestinationLine(MixerContext, MixerInfo, bInputMixer, Buffer);
|
|
|
|
if (Buffer)
|
|
{
|
|
// free name
|
|
MixerContext->Free(Buffer);
|
|
}
|
|
|
|
if (Status != MM_STATUS_SUCCESS)
|
|
{
|
|
// failed to create destination line
|
|
MixerContext->Free(MixerInfo);
|
|
MixerContext->Free(Pins);
|
|
|
|
return Status;
|
|
}
|
|
|
|
RtlZeroMemory(Pins, sizeof(ULONG) * PinCount);
|
|
// now get the target pins of the ADC / DAC node
|
|
Status = MMixerGetTargetPins(MixerContext, NodeTypes, NodeConnections, NodeIndex, bInputMixer, Pins, PinCount);
|
|
|
|
if (Status != MM_STATUS_SUCCESS)
|
|
{
|
|
// failed to locate target pins
|
|
MixerContext->Free(Pins);
|
|
MMixerFreeMixerInfo(MixerContext, MixerInfo);
|
|
DPRINT("MMixerGetTargetPins failed with %u\n", Status);
|
|
return Status;
|
|
}
|
|
|
|
// filter hasnt been used
|
|
bUsed = FALSE;
|
|
|
|
// now check all pins and generate new lines for destination lines
|
|
for(Index = 0; Index < PinCount; Index++)
|
|
{
|
|
DPRINT("Index %lu TargetPin %lu\n", Index, Pins[Index]);
|
|
// is the current index a target pin
|
|
if (Pins[Index])
|
|
{
|
|
// check if the pin has a physical connection
|
|
Status = MMixerGetPhysicalConnection(MixerContext, MixerData->hDevice, Index, &OutConnection);
|
|
if (Status == MM_STATUS_SUCCESS)
|
|
{
|
|
// the pin has a physical connection
|
|
Status = MMixerHandlePhysicalConnection(MixerContext, MixerList, MixerInfo, bInputMixer, OutConnection);
|
|
DPRINT("MMixerHandlePhysicalConnection status %u\n", Status);
|
|
MixerContext->Free(OutConnection);
|
|
bUsed = TRUE;
|
|
}
|
|
else
|
|
{
|
|
// filter exposes the topology on the same filter
|
|
MMixerAddMixerSourceLine(MixerContext, MixerInfo, MixerData->hDevice, NodeConnections, NodeTypes, Index, FALSE, FALSE);
|
|
bUsed = TRUE;
|
|
}
|
|
}
|
|
}
|
|
MixerContext->Free(Pins);
|
|
|
|
if (bUsed)
|
|
{
|
|
// store mixer info in list
|
|
if (!bInputMixer && MixerList->MixerListCount == 1)
|
|
{
|
|
//FIXME preferred device should be inserted at front
|
|
//windows always inserts output mixer in front
|
|
InsertHeadList(&MixerList->MixerList, &MixerInfo->Entry);
|
|
}
|
|
else
|
|
{
|
|
InsertTailList(&MixerList->MixerList, &MixerInfo->Entry);
|
|
}
|
|
MixerList->MixerListCount++;
|
|
DPRINT("New MixerCount %lu\n", MixerList->MixerListCount);
|
|
}
|
|
else
|
|
{
|
|
// failed to create a mixer topology
|
|
MMixerFreeMixerInfo(MixerContext, MixerInfo);
|
|
}
|
|
|
|
// done
|
|
return Status;
|
|
}
|
|
|
|
MIXER_STATUS
|
|
MMixerSetupFilter(
|
|
IN PMIXER_CONTEXT MixerContext,
|
|
IN PMIXER_LIST MixerList,
|
|
IN LPMIXER_DATA MixerData,
|
|
IN PULONG DeviceCount)
|
|
{
|
|
PKSMULTIPLE_ITEM NodeTypes = NULL, NodeConnections = NULL;
|
|
MIXER_STATUS Status;
|
|
ULONG PinCount;
|
|
ULONG NodeIndex;
|
|
|
|
// get number of pins
|
|
PinCount = MMixerGetFilterPinCount(MixerContext, MixerData->hDevice);
|
|
ASSERT(PinCount);
|
|
DPRINT("NumOfPins: %lu\n", PinCount);
|
|
|
|
// get filter node types
|
|
Status = MMixerGetFilterTopologyProperty(MixerContext, MixerData->hDevice, KSPROPERTY_TOPOLOGY_NODES, &NodeTypes);
|
|
if (Status != MM_STATUS_SUCCESS)
|
|
{
|
|
// failed
|
|
return Status;
|
|
}
|
|
|
|
// get filter node connections
|
|
Status = MMixerGetFilterTopologyProperty(MixerContext, MixerData->hDevice, KSPROPERTY_TOPOLOGY_CONNECTIONS, &NodeConnections);
|
|
if (Status != MM_STATUS_SUCCESS)
|
|
{
|
|
// failed
|
|
MixerContext->Free(NodeTypes);
|
|
return Status;
|
|
}
|
|
|
|
// check if the filter has an wave out node
|
|
|
|
NodeIndex = MMixerGetIndexOfGuid(NodeTypes, &KSNODETYPE_DAC);
|
|
if (NodeIndex != MAXULONG)
|
|
{
|
|
// it has
|
|
Status = MMixerInitializeFilter(MixerContext, MixerList, MixerData, NodeTypes, NodeConnections, PinCount, NodeIndex, FALSE);
|
|
DPRINT("MMixerInitializeFilter Status %u\n", Status);
|
|
// check for success
|
|
if (Status == MM_STATUS_SUCCESS)
|
|
{
|
|
// increment mixer count
|
|
(*DeviceCount)++;
|
|
}
|
|
|
|
}
|
|
|
|
// check if the filter has an wave in node
|
|
NodeIndex = MMixerGetIndexOfGuid(NodeTypes, &KSNODETYPE_ADC);
|
|
if (NodeIndex != MAXULONG)
|
|
{
|
|
// it has
|
|
Status = MMixerInitializeFilter(MixerContext, MixerList, MixerData, NodeTypes, NodeConnections, PinCount, NodeIndex, TRUE);
|
|
DPRINT("MMixerInitializeFilter Status %u\n", Status);
|
|
// check for success
|
|
if (Status == MM_STATUS_SUCCESS)
|
|
{
|
|
// increment mixer count
|
|
(*DeviceCount)++;
|
|
}
|
|
|
|
}
|
|
|
|
//free resources
|
|
MixerContext->Free((PVOID)NodeTypes);
|
|
MixerContext->Free((PVOID)NodeConnections);
|
|
|
|
// done
|
|
return Status;
|
|
}
|
|
|
|
|
|
MIXER_STATUS
|
|
MMixerAddEvent(
|
|
IN PMIXER_CONTEXT MixerContext,
|
|
IN OUT LPMIXER_INFO MixerInfo,
|
|
IN ULONG NodeId)
|
|
{
|
|
KSE_NODE Property;
|
|
LPEVENT_ITEM EventData;
|
|
ULONG BytesReturned;
|
|
MIXER_STATUS Status;
|
|
|
|
EventData = (LPEVENT_ITEM)MixerContext->AllocEventData(sizeof(LIST_ENTRY));
|
|
if (!EventData)
|
|
{
|
|
// not enough memory
|
|
return MM_STATUS_NO_MEMORY;
|
|
}
|
|
|
|
/* setup request */
|
|
Property.Event.Set = KSEVENTSETID_AudioControlChange;
|
|
Property.Event.Flags = KSEVENT_TYPE_TOPOLOGY|KSEVENT_TYPE_ENABLE;
|
|
Property.Event.Id = KSEVENT_CONTROL_CHANGE;
|
|
|
|
Property.NodeId = NodeId;
|
|
Property.Reserved = 0;
|
|
|
|
Status = MixerContext->Control(MixerInfo->hMixer, IOCTL_KS_ENABLE_EVENT, (PVOID)&Property, sizeof(KSP_NODE), (PVOID)EventData, sizeof(KSEVENTDATA), &BytesReturned);
|
|
if (Status != MM_STATUS_SUCCESS)
|
|
{
|
|
// failed to add event
|
|
MixerContext->FreeEventData(EventData);
|
|
return Status;
|
|
}
|
|
|
|
//store event
|
|
InsertTailList(&MixerInfo->EventList, &EventData->Entry);
|
|
return Status;
|
|
}
|
|
|
|
MIXER_STATUS
|
|
MMixerAddEvents(
|
|
IN PMIXER_CONTEXT MixerContext,
|
|
IN OUT LPMIXER_INFO MixerInfo)
|
|
{
|
|
PKSMULTIPLE_ITEM NodeTypes;
|
|
ULONG Index;
|
|
MIXER_STATUS Status;
|
|
LPGUID Guid;
|
|
|
|
// get filter node types
|
|
Status = MMixerGetFilterTopologyProperty(MixerContext, MixerInfo->hMixer, KSPROPERTY_TOPOLOGY_NODES, &NodeTypes);
|
|
|
|
if (Status != MM_STATUS_SUCCESS)
|
|
{
|
|
// failed
|
|
return Status;
|
|
}
|
|
|
|
for(Index = 0; Index < NodeTypes->Count; Index++)
|
|
{
|
|
Guid = MMixerGetNodeType(NodeTypes, Index);
|
|
if (IsEqualGUID(&KSNODETYPE_VOLUME, Guid) || IsEqualGUID(&KSNODETYPE_MUTE, Guid))
|
|
{
|
|
//add an event for volume / mute controls
|
|
//TODO: extra control types
|
|
MMixerAddEvent(MixerContext, MixerInfo, Index);
|
|
}
|
|
}
|
|
|
|
// free node types
|
|
MixerContext->Free(NodeTypes);
|
|
|
|
return MM_STATUS_SUCCESS;
|
|
}
|