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54 Commits

Author SHA1 Message Date
Trevor Payne
eab0d2b1d7 Added HDMI Output Port to AirMediaController
modified RoutingSignalTypes for each of the input ports to use AudioVideo when applicable

Resolves #229
2020-06-04 12:21:47 -05:00
Neil Dorin
df8a885594 Merge pull request #228 from PepperDash/bugfix/eiscapi-debug-messages
Remove unnecessary methods in EiscApi and fix debug messages
2020-06-03 19:16:28 -06:00
Andrew Welker
5ea79ac94e #227 removes unnecessary methods and fixes debug messages 2020-06-03 16:23:57 -06:00
Neil Dorin
459dc951e9 Merge pull request #225 from PepperDash/hotfix/dm-rmc4kz100-build
Fix issue building DM-RMC-4KZ-100-C & DM-TX-4KZ-202-C
2020-06-03 11:28:54 -06:00
Andrew Welker
f823abacc1 Merge branch 'development' into hotfix/dm-rmc4kz100-build 2020-06-01 23:51:10 -06:00
Andrew Welker
f0eeae0432 Merge pull request #221 from PepperDash/feature/releaseAndMakeRoute-nullEx
Change ReleaseAndMakeRoute to use IRoutingSinkNoSwitching instead of IRoutingInputs
2020-05-28 18:32:15 -06:00
Nick Genovese
4b663eea62 -IRoutingSinkWithSwitching now inherits directly from IRoutingSink
-Marked IRoutingSinkNoSwitching as obsolete
-Updated HulldeSpace, VTCRoom, DualDisplayRoom that were casting from IRoutingSinkNoSwitching to IRoutingSink
2020-05-28 20:07:33 -04:00
Nick Genovese
8d2d45b5ce adds IRoutingSink for readability and adds a protection in ExecuteRoutes if the device happens to be IRoutingSinkWithNoSwitching and IRouting like a codec might potentially be 2020-05-28 19:37:45 -04:00
Andrew Welker
62fdd6a572 #219 changes ReleaseAndMakeRoute to IRoutingSinkNoSwitching
removes check for IRoutingSinkNoSwitching interface in GetRouteToSource
2020-05-28 17:24:24 -06:00
Nick Genovese
305fe5c372 added check when adding sink device for if the device is actually a sink 2020-05-28 14:02:43 -04:00
Andrew Welker
b39afe2f50 Merge pull request #217 from PepperDash/hotfix/genericcomm-incorrect-cast
Fix incorrect cast in GenericComm LinkToApi method
2020-05-27 10:51:26 -06:00
Andrew Welker
43698ba839 Merge branch 'development' into hotfix/genericcomm-incorrect-cast 2020-05-27 10:33:16 -06:00
Andrew Welker
b975ce6a6d Merge pull request #214 from PepperDash/feature/Improve-JoinMetadata
Updated JoinMetadata to add Description property
2020-05-22 15:43:10 -06:00
Trevor Payne
e83acd5bfa Merge branch 'feature/Improve-JoinMetadata' of https://github.com/PepperDash/Essentials into feature/Improve-JoinMetadata 2020-05-22 15:00:51 -05:00
Trevor Payne
2f1592bc62 Added XML Comments, Obsolete Message, and backer field
#214
2020-05-22 14:56:50 -05:00
Trevor Payne
1c609764b8 Merge branch 'development' into feature/Improve-JoinMetadata 2020-05-22 13:58:30 -05:00
Trevor Payne
c7464a1e34 Merge pull request #213 from PepperDash/feature/migrate-Comm&IR
Migrated Comm & IR Folder out of Config
2020-05-22 13:57:41 -05:00
Trevor Payne
608a9068b9 Updated JoinMetadata to add Description property
Updated Hrxx0WirelessRemoteController to remove references to JoinMetadata

#198
2020-05-22 13:56:18 -05:00
Trevor Payne
e006a4616a Migrated Comm & IR Folder out of Config
#208
2020-05-21 16:02:36 -05:00
Andrew Welker
677789bec1 Merge pull request #207 from PepperDash/feature/Add-IRoutingNumeric
Added new interface IRoutingNumeric
2020-05-21 13:30:11 -06:00
Andrew Welker
0dc589f2ea Merge branch 'development' into feature/Add-IRoutingNumeric 2020-05-21 13:13:53 -06:00
Trevor Payne
aecb36e937 Added IRoutingNumeric to HdMdNxM4kEBridgeableController
#207
2020-05-21 13:45:29 -05:00
Trevor Payne
be97fe15da Added IRoutingNumeric to DmpsRoutingController
#207
2020-05-21 12:30:26 -05:00
Trevor Payne
2a7311ba50 Revised DmChassisController ExecuteNumericSwitch method
#207
2020-05-21 12:17:04 -05:00
Trevor Payne
b95c341fca Revised DmBladeChassisController ExecuteNumericSwitch method
#207
2020-05-21 12:05:25 -05:00
Andrew Welker
469d3b0975 Merge pull request #211 from PepperDash/feature/Add-Description-Attributes
Added Description Attributes to Bridgeable Classes
2020-05-21 10:18:30 -06:00
Andrew Welker
bece417bf3 Merge branch 'development' into feature/Add-Description-Attributes 2020-05-21 10:03:23 -06:00
Andrew Welker
75774d128d Merge pull request #202 from PepperDash/feature/Updates-to-rf-gateways
Improvements to Infinet Ex Support
2020-05-21 10:02:57 -06:00
Andrew Welker
430c819813 Merge branch 'development' into feature/Updates-to-rf-gateways 2020-05-21 09:46:58 -06:00
Andrew Welker
6c2d8c02c1 Merge branch 'development' into feature/Add-Description-Attributes 2020-05-21 09:38:21 -06:00
Andrew Welker
2d0876486d Merge pull request #206 from PepperDash/feature/Improve-ControlPort-Constructors
Improve Control Port Constructors
2020-05-21 09:32:03 -06:00
Trevor Payne
22427b1246 Merge branch 'development' into feature/Updates-to-rf-gateways 2020-05-20 23:30:28 -05:00
Trevor Payne
3c7495aaa1 Added Description Attributes to Bridgeable Classes
#210
2020-05-20 23:27:21 -05:00
Trevor Payne
ef4b0441d3 Added new interface IRoutingNumeric
Updated DmChassisController

Updated DmBladeChassisController

Cleaned up some redundant interface referencing in RoutingInterfaces

#192
2020-05-20 22:10:29 -05:00
Trevor Payne
190697d855 Updated IRPortHelper
Updated IrOurputPortController

#205

Please Check my work - I'm a little less confident in this one
2020-05-20 21:53:48 -05:00
Trevor Payne
19e78d649f Updated GenericDigitalInputDevice
Compatibility Update to GenericRelayDevice

#205
2020-05-20 17:07:58 -05:00
Trevor Payne
0dad34893e Updated GenericRelayDevice
#205
2020-05-20 16:44:38 -05:00
Andrew Welker
1fee896a3d Merge pull request #204 from PepperDash/hotfix/dm-tx-bridging
Hotfix/dm tx bridging
2020-05-20 14:24:54 -06:00
Trevor Payne
b6f0ccbf17 Merge branch 'development' into hotfix/dm-tx-bridging 2020-05-20 15:09:41 -05:00
Trevor Payne
10bc39ffea Merge branch 'development' into feature/Updates-to-rf-gateways
New Release includes differing github actions.
2020-05-20 11:31:31 -05:00
Trevor Payne
2a9f6e253b Resolves #201
Improvements to CenRfgwController
Addition of Button Extensions
Addition of Hrxxx0WirelessRemoteController
Addition of InfinetId to EssentialsControlPropertiesConfig
Addition of CrestronRemotePropertiesConfig
2020-05-20 11:06:18 -05:00
Andrew Welker
0869961622 Merge pull request #197 from PepperDash/release/v1.5.2
1.5.2 Release
2020-05-20 08:20:58 -06:00
Andrew Welker
dedcfcbb66 Merge branch 'development' into release/v1.5.2 2020-05-19 14:55:10 -06:00
Andrew Welker
5707d12fbe Merge pull request #187 from PepperDash/feature/HD-MD-Switch-Improvements
HD-MDNxM-4K-E Switch Improvements
2020-05-15 13:46:45 -06:00
Trevor Payne
8fe586dfec Added the original class back and changed updated class slightly; Minor changes to factory 2020-05-15 14:32:49 -05:00
Trevor Payne
696f169ea4 Adds OnlineStatus Event for Trilist to repropogate data on new connection 2020-05-15 12:12:13 -05:00
Trevor Payne
efd4f379ee Resolves #186 - Completely refactored HD-MD-Switch Class 2020-05-15 10:42:56 -05:00
Trevor Payne
aef491855c Not Complete - Still Adding Feedbacks, Bridge, and JoinMaps 2020-05-14 17:20:19 -05:00
Andrew Welker
7882210eaf Merge pull request #184 from PepperDash/feature/fix-workflow-release-mechanism
Remove release creation for alpha & beta builds
2020-05-13 12:51:33 -06:00
Andrew Welker
138628613c Merge branch 'development' into feature/fix-workflow-release-mechanism 2020-05-13 12:27:36 -06:00
Andrew Welker
912e545678 Merge pull request #179 from PepperDash/feature/Add-IHasVideoMute
Add IHasVideoMute for projector interoperability
2020-05-13 09:54:27 -06:00
Trevor Payne
efe8b15763 Updated Interfaces to be more granular 2020-05-13 10:32:01 -05:00
Trevor Payne
f2cb95af96 removed some unintentionally added text from InputInterfaces.cs 2020-05-13 09:40:45 -05:00
Trevor Payne
3bf3ac2cce resolves #178 - Addedd Requested Interface IHasVideoMute 2020-05-13 09:35:56 -05:00
79 changed files with 2951 additions and 1746 deletions

View File

@@ -3,7 +3,6 @@ using System.Collections.Generic;
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.EthernetCommunication;
using PepperDash.Core;
using PepperDash.Essentials.Bridges;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Bridges;
using PepperDash.Essentials.Core.Config;
@@ -15,15 +14,11 @@ namespace PepperDash.Essentials.Bridges
{
public EiscApiPropertiesConfig PropertiesConfig { get; private set; }
protected Dictionary<string, JoinMapBaseAdvanced> JoinMaps { get; private set; }
public ThreeSeriesTcpIpEthernetIntersystemCommunications Eisc { get; private set; }
public EiscApi(DeviceConfig dc) :
base(dc.Key)
{
JoinMaps = new Dictionary<string, JoinMapBaseAdvanced>();
PropertiesConfig = dc.Properties.ToObject<EiscApiPropertiesConfig>();
//PropertiesConfig = JsonConvert.DeserializeObject<EiscApiPropertiesConfig>(dc.Properties.ToString());
@@ -69,60 +64,10 @@ namespace PepperDash.Essentials.Bridges
}
Debug.Console(1, this, "Devices Linked.");
});
}
/// <summary>
/// Adds a join map
/// </summary>
/// <param name="deviceKey"></param>
/// <param name="joinMap"></param>
public void AddJoinMap(string deviceKey, JoinMapBaseAdvanced joinMap)
{
if (!JoinMaps.ContainsKey(deviceKey))
{
JoinMaps.Add(deviceKey, joinMap);
}
else
{
Debug.Console(2, this, "Unable to add join map with key '{0}'. Key already exists in JoinMaps dictionary", deviceKey);
}
}
/// <summary>
/// Prints all the join maps on this bridge
/// </summary>
public void PrintJoinMaps()
{
Debug.Console(0, this, "Join Maps for EISC IPID: {0}", Eisc.ID.ToString("X"));
foreach (var joinMap in JoinMaps)
{
Debug.Console(0, "Join map for device '{0}':", joinMap.Key);
joinMap.Value.PrintJoinMapInfo();
}
}
/// <summary>
/// Prints the join map for a device by key
/// </summary>
/// <param name="deviceKey"></param>
public void PrintJoinMapForDevice(string deviceKey)
{
var joinMap = JoinMaps[deviceKey];
if (joinMap == null)
{
Debug.Console(0, this, "Unable to find joinMap for device with key: '{0}'", deviceKey);
return;
}
Debug.Console(0, "Join map for device '{0}' on EISC '{1}':", deviceKey, Key);
joinMap.PrintJoinMapInfo();
}
/// <summary>
/// Used for debugging to trigger an action based on a join number and type
/// </summary>
@@ -194,7 +139,7 @@ namespace PepperDash.Essentials.Bridges
try
{
if (Debug.Level >= 1)
Debug.Console(1, this, "EiscApiAdvanced change: {0} {1}={2}", args.Sig.Type, args.Sig.Number, args.Sig.StringValue);
Debug.Console(1, this, "EiscApi change: {0} {1}={2}", args.Sig.Type, args.Sig.Number, args.Sig.StringValue);
var uo = args.Sig.UserObject;
if (uo == null) return;

View File

@@ -555,7 +555,7 @@ namespace PepperDash.Essentials
/// <returns></returns>
bool DoRoute(SourceRouteListItem route, SourceListItem sourceItem, string sourceItemKey)
{
IRoutingSinkNoSwitching dest = null;
IRoutingSink dest = null;
if (route.DestinationKey.Equals("$defaultaudio", StringComparison.OrdinalIgnoreCase))
dest = DefaultAudioDevice as IRoutingSinkNoSwitching;

View File

@@ -71,7 +71,7 @@ namespace PepperDash.Essentials
public EssentialsHuddleRoomPropertiesConfig PropertiesConfig { get; private set; }
public IRoutingSinkWithSwitching DefaultDisplay { get; private set; }
public IRoutingSinkNoSwitching DefaultAudioDevice { get; private set; }
public IRoutingSink DefaultAudioDevice { get; private set; }
public IBasicVolumeControls DefaultVolumeControls { get; private set; }
public bool ExcludeFromGlobalFunctions { get; set; }
@@ -471,14 +471,14 @@ namespace PepperDash.Essentials
/// <returns></returns>
bool DoRoute(SourceRouteListItem route)
{
IRoutingSinkNoSwitching dest = null;
IRoutingSink dest = null;
if (route.DestinationKey.Equals("$defaultaudio", StringComparison.OrdinalIgnoreCase))
dest = DefaultAudioDevice;
else if (route.DestinationKey.Equals("$defaultDisplay", StringComparison.OrdinalIgnoreCase))
dest = DefaultDisplay;
else
dest = DeviceManager.GetDeviceForKey(route.DestinationKey) as IRoutingSinkNoSwitching;
dest = DeviceManager.GetDeviceForKey(route.DestinationKey) as IRoutingSink;
if (dest == null)
{

View File

@@ -590,7 +590,7 @@ namespace PepperDash.Essentials
/// <returns></returns>
bool DoRoute(SourceRouteListItem route)
{
IRoutingSinkNoSwitching dest = null;
IRoutingSink dest = null;
if (route.DestinationKey.Equals("$defaultaudio", StringComparison.OrdinalIgnoreCase))
dest = DefaultAudioDevice as IRoutingSinkNoSwitching;

View File

@@ -211,7 +211,7 @@ namespace PepperDash.Essentials
var comm = CommFactory.GetControlPropertiesConfig(dc);
var props = Newtonsoft.Json.JsonConvert.DeserializeObject<CrestronTouchpanelPropertiesConfig>(dc.Properties.ToString());
Debug.Console(1, "Factory Attempting to create new Generic Comm Device");
Debug.Console(1, "Factory Attempting to create new EssentialsTouchpanelController");
var panelController = new EssentialsTouchpanelController(dc.Key, dc.Name, dc.Type, props, comm.IpIdInt);

View File

@@ -0,0 +1,61 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
using PepperDash.Essentials.Core;
namespace PepperDash.Essentials.Core.Bridges
{
public class HdMdNxM4kEControllerJoinMap : JoinMapBaseAdvanced
{
[JoinName("Name")]
public JoinDataComplete Name = new JoinDataComplete(new JoinData() { JoinNumber = 1, JoinSpan = 1 },
new JoinMetadata() { Label = "Device Name", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Serial });
[JoinName("EnableAutoRoute")]
public JoinDataComplete EnableAutoRoute = new JoinDataComplete(new JoinData() { JoinNumber = 1, JoinSpan = 1 },
new JoinMetadata() { Label = "Enable Automatic Routing on 4x1 Switchers", JoinCapabilities = eJoinCapabilities.ToFromSIMPL, JoinType = eJoinType.Digital });
[JoinName("DisableAutoRoute")]
public JoinDataComplete DisableAutoRoute = new JoinDataComplete(new JoinData() { JoinNumber = 1, JoinSpan = 1 },
new JoinMetadata() { Label = "Disable Automatic Routing on 4x1 Switchers", JoinCapabilities = eJoinCapabilities.ToFromSIMPL, JoinType = eJoinType.Digital });
[JoinName("InputName")]
public JoinDataComplete InputName = new JoinDataComplete(new JoinData() { JoinNumber = 2, JoinSpan = 8 },
new JoinMetadata() { Label = "Device Input Name", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Serial });
[JoinName("InputSync")]
public JoinDataComplete InputSync = new JoinDataComplete(new JoinData() { JoinNumber = 2, JoinSpan = 8 },
new JoinMetadata() { Label = "Device Input Sync", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("OutputName")]
public JoinDataComplete OutputName = new JoinDataComplete(new JoinData() { JoinNumber = 11, JoinSpan = 2 },
new JoinMetadata() { Label = "Device Output Name", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Serial });
[JoinName("OutputRoute")]
public JoinDataComplete OutputRoute = new JoinDataComplete(new JoinData() { JoinNumber = 11, JoinSpan = 2 },
new JoinMetadata() { Label = "Device Output Route Set/Get", JoinCapabilities = eJoinCapabilities.ToFromSIMPL, JoinType = eJoinType.Analog });
[JoinName("OutputRoutedName")]
public JoinDataComplete OutputRoutedName = new JoinDataComplete(new JoinData() { JoinNumber = 16, JoinSpan = 2 },
new JoinMetadata() { Label = "Device Output Route Name", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Serial });
[JoinName("EnableInputHdcp")]
public JoinDataComplete EnableInputHdcp = new JoinDataComplete(new JoinData() { JoinNumber = 11, JoinSpan = 8 },
new JoinMetadata() { Label = "Device Enable Input Hdcp", JoinCapabilities = eJoinCapabilities.ToFromSIMPL, JoinType = eJoinType.Digital });
[JoinName("DisableInputHdcp")]
public JoinDataComplete DisableInputHdcp = new JoinDataComplete(new JoinData() { JoinNumber = 21, JoinSpan = 8 },
new JoinMetadata() { Label = "Device Disnable Input Hdcp", JoinCapabilities = eJoinCapabilities.ToFromSIMPL, JoinType = eJoinType.Digital });
[JoinName("IsOnline")]
public JoinDataComplete IsOnline = new JoinDataComplete(new JoinData() { JoinNumber = 30, JoinSpan = 1 },
new JoinMetadata() { Label = "Device Onlne", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
public HdMdNxM4kEControllerJoinMap(uint joinStart)
: base(joinStart, typeof(HdMdNxM4kEControllerJoinMap))
{
}
}
}

View File

@@ -0,0 +1,238 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
namespace PepperDash.Essentials.Core.Bridges
{
public class Hrxxx0WirelessRemoteControllerJoinMap : JoinMapBaseAdvanced
{
[JoinName("Power")]
public JoinDataComplete Power = new JoinDataComplete(new JoinData() { JoinNumber = 1, JoinSpan = 1 },
new JoinMetadata() { Label = "Power", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Menu")]
public JoinDataComplete Menu = new JoinDataComplete(new JoinData() { JoinNumber = 2, JoinSpan = 1 },
new JoinMetadata() { Label = "Menu", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Guide")]
public JoinDataComplete Guide = new JoinDataComplete(new JoinData() { JoinNumber = 3, JoinSpan = 1 },
new JoinMetadata() { Label = "Guide", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Info")]
public JoinDataComplete Info = new JoinDataComplete(new JoinData() { JoinNumber = 4, JoinSpan = 1 },
new JoinMetadata() { Label = "Info", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("VolumeUp")]
public JoinDataComplete VolumeUp = new JoinDataComplete(new JoinData() { JoinNumber = 5, JoinSpan = 1 },
new JoinMetadata() { Label = "VolumeUp", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("VolumeDown")]
public JoinDataComplete VolumeDown = new JoinDataComplete(new JoinData() { JoinNumber = 6, JoinSpan = 1 },
new JoinMetadata() { Label = "VolumeDown", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("DialPadUp")]
public JoinDataComplete DialPadUp = new JoinDataComplete(new JoinData() { JoinNumber = 7, JoinSpan = 1 },
new JoinMetadata() { Label = "DialPadUp", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("DialPadDown")]
public JoinDataComplete DialPadDown = new JoinDataComplete(new JoinData() { JoinNumber = 8, JoinSpan = 1 },
new JoinMetadata() { Label = "DialPadDown", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("DialPadLeft")]
public JoinDataComplete DialPadLeft = new JoinDataComplete(new JoinData() { JoinNumber = 9, JoinSpan = 1 },
new JoinMetadata() { Label = "DialPadLeft", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("DialPadRight")]
public JoinDataComplete DialPadRight = new JoinDataComplete(new JoinData() { JoinNumber = 10, JoinSpan = 1 },
new JoinMetadata() { Label = "DialPadRight", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("DialPadSelect")]
public JoinDataComplete DialPadSelect = new JoinDataComplete(new JoinData() { JoinNumber = 11, JoinSpan = 1 },
new JoinMetadata() { Label = "DialPadSelect", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("ChannelUp")]
public JoinDataComplete ChannelUp = new JoinDataComplete(new JoinData() { JoinNumber = 12, JoinSpan = 1 },
new JoinMetadata() { Label = "ChannelUp", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("ChannelDown")]
public JoinDataComplete ChannelDown = new JoinDataComplete(new JoinData() { JoinNumber = 13, JoinSpan = 1 },
new JoinMetadata() { Label = "ChannelDown", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Mute")]
public JoinDataComplete Mute = new JoinDataComplete(new JoinData() { JoinNumber = 14, JoinSpan = 1 },
new JoinMetadata() { Label = "Mute", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Exit")]
public JoinDataComplete Exit = new JoinDataComplete(new JoinData() { JoinNumber = 15, JoinSpan = 1 },
new JoinMetadata() { Label = "Exit", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Last")]
public JoinDataComplete Last = new JoinDataComplete(new JoinData() { JoinNumber = 16, JoinSpan = 1 },
new JoinMetadata() { Label = "Last", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Play")]
public JoinDataComplete Play = new JoinDataComplete(new JoinData() { JoinNumber = 17, JoinSpan = 1 },
new JoinMetadata() { Label = "Play", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Pause")]
public JoinDataComplete Pause = new JoinDataComplete(new JoinData() { JoinNumber = 18, JoinSpan = 1 },
new JoinMetadata() { Label = "Pause", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Rewind")]
public JoinDataComplete Rewind = new JoinDataComplete(new JoinData() { JoinNumber = 19, JoinSpan = 1 },
new JoinMetadata() { Label = "Rewind", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("FastForward")]
public JoinDataComplete FastForward = new JoinDataComplete(new JoinData() { JoinNumber = 20, JoinSpan = 1 },
new JoinMetadata() { Label = "FastForward", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("PreviousTrack")]
public JoinDataComplete PreviousTrack = new JoinDataComplete(new JoinData() { JoinNumber = 21, JoinSpan = 1 },
new JoinMetadata() { Label = "PreviousTrack", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("NextTrack")]
public JoinDataComplete NextTrack = new JoinDataComplete(new JoinData() { JoinNumber = 22, JoinSpan = 1 },
new JoinMetadata() { Label = "NextTrack", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Stop")]
public JoinDataComplete Stop = new JoinDataComplete(new JoinData() { JoinNumber = 23, JoinSpan = 1 },
new JoinMetadata() { Label = "Stop", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Record")]
public JoinDataComplete Record = new JoinDataComplete(new JoinData() { JoinNumber = 24, JoinSpan = 1 },
new JoinMetadata() { Label = "Record", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Dvr")]
public JoinDataComplete Dvr = new JoinDataComplete(new JoinData() { JoinNumber = 25, JoinSpan = 1 },
new JoinMetadata() { Label = "Dvr", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Keypad1")]
public JoinDataComplete Keypad1 = new JoinDataComplete(new JoinData() { JoinNumber = 26, JoinSpan = 1 },
new JoinMetadata() { Label = "Keypad1", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Keypad2Abc")]
public JoinDataComplete Keypad2 = new JoinDataComplete(new JoinData() { JoinNumber = 27, JoinSpan = 1 },
new JoinMetadata() { Label = "Keypad2Abc", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Keypad3Def")]
public JoinDataComplete Keypad3Def = new JoinDataComplete(new JoinData() { JoinNumber = 28, JoinSpan = 1 },
new JoinMetadata() { Label = "Keypad3Def", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Keypad4Ghi")]
public JoinDataComplete Keypad4Ghi = new JoinDataComplete(new JoinData() { JoinNumber = 29, JoinSpan = 1 },
new JoinMetadata() { Label = "Keypad4Ghi", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Keypad5Jkl")]
public JoinDataComplete Keypad5Jkl = new JoinDataComplete(new JoinData() { JoinNumber = 30, JoinSpan = 1 },
new JoinMetadata() { Label = "Keypad5Jkl", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Keypad6Mno")]
public JoinDataComplete Keypad6Mno = new JoinDataComplete(new JoinData() { JoinNumber = 31, JoinSpan = 1 },
new JoinMetadata() { Label = "Keypad6Mno", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Keypad7Pqrs")]
public JoinDataComplete Keypad7Pqrs = new JoinDataComplete(new JoinData() { JoinNumber = 32, JoinSpan = 1 },
new JoinMetadata() { Label = "Keypad7Pqrs", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Keypad8Tuv")]
public JoinDataComplete Keypad8Tuv = new JoinDataComplete(new JoinData() { JoinNumber = 33, JoinSpan = 1 },
new JoinMetadata() { Label = "Keypad8Tuv", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Keypad9Wxyz")]
public JoinDataComplete Keypad9Wxyz = new JoinDataComplete(new JoinData() { JoinNumber = 34, JoinSpan = 1 },
new JoinMetadata() { Label = "Keypad9Wxyz", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Keypad0")]
public JoinDataComplete Keypad0 = new JoinDataComplete(new JoinData() { JoinNumber = 35, JoinSpan = 1 },
new JoinMetadata() { Label = "Keypad0", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Clear")]
public JoinDataComplete Clear = new JoinDataComplete(new JoinData() { JoinNumber = 36, JoinSpan = 1 },
new JoinMetadata() { Label = "Clear", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Enter")]
public JoinDataComplete Enter = new JoinDataComplete(new JoinData() { JoinNumber = 37, JoinSpan = 1 },
new JoinMetadata() { Label = "Enter", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Red")]
public JoinDataComplete Red = new JoinDataComplete(new JoinData() { JoinNumber = 38, JoinSpan = 1 },
new JoinMetadata() { Label = "Red", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Green")]
public JoinDataComplete Green = new JoinDataComplete(new JoinData() { JoinNumber = 39, JoinSpan = 1 },
new JoinMetadata() { Label = "Green", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Yellow")]
public JoinDataComplete Yellow = new JoinDataComplete(new JoinData() { JoinNumber = 40, JoinSpan = 1 },
new JoinMetadata() { Label = "Yellow", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Blue")]
public JoinDataComplete Blue = new JoinDataComplete(new JoinData() { JoinNumber = 41, JoinSpan = 1 },
new JoinMetadata() { Label = "Blue", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Custom1")]
public JoinDataComplete Custom1 = new JoinDataComplete(new JoinData() { JoinNumber = 42, JoinSpan = 1 },
new JoinMetadata() { Label = "Custom1", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Custom2")]
public JoinDataComplete Custom2 = new JoinDataComplete(new JoinData() { JoinNumber = 43, JoinSpan = 1 },
new JoinMetadata() { Label = "Custom2", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Custom3")]
public JoinDataComplete Custom3 = new JoinDataComplete(new JoinData() { JoinNumber = 44, JoinSpan = 1 },
new JoinMetadata() { Label = "Custom3", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Custom4")]
public JoinDataComplete Custom4 = new JoinDataComplete(new JoinData() { JoinNumber = 45, JoinSpan = 1 },
new JoinMetadata() { Label = "Custom4", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Custom5")]
public JoinDataComplete Custom5 = new JoinDataComplete(new JoinData() { JoinNumber = 46, JoinSpan = 1 },
new JoinMetadata() { Label = "Custom5", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Custom6")]
public JoinDataComplete Custom6 = new JoinDataComplete(new JoinData() { JoinNumber = 47, JoinSpan = 1 },
new JoinMetadata() { Label = "Custom6", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Custom7")]
public JoinDataComplete Custom7 = new JoinDataComplete(new JoinData() { JoinNumber = 48, JoinSpan = 1 },
new JoinMetadata() { Label = "Custom7", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Custom8")]
public JoinDataComplete Custom8 = new JoinDataComplete(new JoinData() { JoinNumber = 49, JoinSpan = 1 },
new JoinMetadata() { Label = "Custom8", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Custom9")]
public JoinDataComplete Custom9 = new JoinDataComplete(new JoinData() { JoinNumber = 50, JoinSpan = 1 },
new JoinMetadata() { Label = "Custom9", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Fav")]
public JoinDataComplete Fav = new JoinDataComplete(new JoinData() { JoinNumber = 51, JoinSpan = 1 },
new JoinMetadata() { Label = "Fav", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("Home")]
public JoinDataComplete Home = new JoinDataComplete(new JoinData() { JoinNumber = 52, JoinSpan = 1 },
new JoinMetadata() { Label = "Home", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("BatteryLow")]
public JoinDataComplete BatteryLow = new JoinDataComplete(new JoinData() { JoinNumber = 53, JoinSpan = 1 },
new JoinMetadata() { Label = "BatteryLow", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("BatteryCritical")]
public JoinDataComplete BatteryCritical = new JoinDataComplete(new JoinData() { JoinNumber = 54, JoinSpan = 1 },
new JoinMetadata() { Label = "BatteryCritical", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Digital });
[JoinName("BatteryVoltage")]
public JoinDataComplete BatteryVoltage = new JoinDataComplete(new JoinData() { JoinNumber = 1, JoinSpan = 1 },
new JoinMetadata() { Label = "BatteryVoltage", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Analog });
public Hrxxx0WirelessRemoteControllerJoinMap(uint joinStart)
: base(joinStart, typeof(Hrxxx0WirelessRemoteControllerJoinMap))
{
}
}
}

View File

@@ -184,6 +184,26 @@ namespace PepperDash.Essentials.Core
throw new FormatException(string.Format("ERROR:Unable to convert Cresnet ID: {0} to hex. Error:\n{1}", CresnetId));
}
}
}
public string InfinetId { get; set; }
/// <summary>
/// Attepmts to provide uiont conversion of string InifinetId
/// </summary>
public uint InfinetIdInt
{
get
{
try
{
return Convert.ToUInt32(InfinetId, 16);
}
catch (Exception)
{
throw new FormatException(string.Format("ERROR:Unable to conver Infinet ID: {0} to hex. Error:\n{1}", InfinetId));
}
}
}
}

View File

@@ -0,0 +1,235 @@
using System;
using System.Collections.Generic;
using Crestron.SimplSharp;
using Crestron.SimplSharp.CrestronIO;
using Crestron.SimplSharpPro;
using Newtonsoft.Json;
using Newtonsoft.Json.Linq;
using PepperDash.Core;
using PepperDash.Essentials.Core.Config;
namespace PepperDash.Essentials.Core
{
/// <summary>
///
/// </summary>
public static class IRPortHelper
{
public static string IrDriverPathPrefix
{
get
{
return Global.FilePathPrefix + "IR" + Global.DirectorySeparator;
}
}
/// <summary>
/// Finds either the ControlSystem or a device controller that contains IR ports and
/// returns a port from the hardware device
/// </summary>
/// <param name="propsToken"></param>
/// <returns>IrPortConfig object. The port and or filename will be empty/null
/// if valid values don't exist on config</returns>
public static IrOutPortConfig GetIrPort(JToken propsToken)
{
var control = propsToken["control"];
if (control == null)
return null;
if (control["method"].Value<string>() != "ir")
{
Debug.Console(0, "IRPortHelper called with non-IR properties");
return null;
}
var port = new IrOutPortConfig();
var portDevKey = control.Value<string>("controlPortDevKey");
var portNum = control.Value<uint>("controlPortNumber");
if (portDevKey == null || portNum == 0)
{
Debug.Console(1, "WARNING: Properties is missing port device or port number");
return port;
}
IIROutputPorts irDev = null;
if (portDevKey.Equals("controlSystem", StringComparison.OrdinalIgnoreCase)
|| portDevKey.Equals("processor", StringComparison.OrdinalIgnoreCase))
irDev = Global.ControlSystem;
else
irDev = DeviceManager.GetDeviceForKey(portDevKey) as IIROutputPorts;
if (irDev == null)
{
Debug.Console(1, "[Config] Error, device with IR ports '{0}' not found", portDevKey);
return port;
}
if (portNum <= irDev.NumberOfIROutputPorts) // success!
{
var file = IrDriverPathPrefix + control["irFile"].Value<string>();
port.Port = irDev.IROutputPorts[portNum];
port.FileName = file;
return port; // new IrOutPortConfig { Port = irDev.IROutputPorts[portNum], FileName = file };
}
else
{
Debug.Console(1, "[Config] Error, device '{0}' IR port {1} out of range",
portDevKey, portNum);
return port;
}
}
public static IROutputPort GetIrOutputPort(DeviceConfig dc)
{
var irControllerKey = dc.Key + "-ir";
if (dc.Properties == null)
{
Debug.Console(0, "[{0}] WARNING: Device config does not include properties. IR will not function.", dc.Key);
return null;
}
var control = dc.Properties["control"];
if (control == null)
{
Debug.Console(0,
"WARNING: Device config does not include control properties. IR will not function for {0}", dc.Key);
return null;
}
var portDevKey = control.Value<string>("controlPortDevKey");
var portNum = control.Value<uint>("controlPortNumber");
IIROutputPorts irDev = null;
if (portDevKey == null)
{
Debug.Console(0, "WARNING: control properties is missing ir device for {0}", dc.Key);
return null;
}
if (portNum == 0)
{
Debug.Console(0, "WARNING: control properties is missing ir port number for {0}", dc.Key);
return null;
}
if (portDevKey.Equals("controlSystem", StringComparison.OrdinalIgnoreCase)
|| portDevKey.Equals("processor", StringComparison.OrdinalIgnoreCase))
irDev = Global.ControlSystem;
else
irDev = DeviceManager.GetDeviceForKey(portDevKey) as IIROutputPorts;
if (irDev == null)
{
Debug.Console(0, "WARNING: device with IR ports '{0}' not found", portDevKey);
return null;
}
if (portNum >= irDev.NumberOfIROutputPorts)
{
Debug.Console(0, "WARNING: device '{0}' IR port {1} out of range",
portDevKey, portNum);
return null;
}
var port = irDev.IROutputPorts[portNum];
port.LoadIRDriver(Global.FilePathPrefix + "IR" + Global.DirectorySeparator + control["irFile"].Value<string>());
return port;
}
public static IrOutputPortController GetIrOutputPortController(DeviceConfig config)
{
Debug.Console(1, "Attempting to create new Ir Port Controller");
if (config == null)
{
return null;
}
var irDevice = new IrOutputPortController(config.Key, GetIrOutputPort, config);
return irDevice;
}
/*
/// <summary>
/// Returns a ready-to-go IrOutputPortController from a DeviceConfig object.
/// </summary>
public static IrOutputPortController GetIrOutputPortController(DeviceConfig devConf)
{
var irControllerKey = devConf.Key + "-ir";
if (devConf.Properties == null)
{
Debug.Console(0, "[{0}] WARNING: Device config does not include properties. IR will not function.", devConf.Key);
return new IrOutputPortController(irControllerKey, null, "");
}
var control = devConf.Properties["control"];
if (control == null)
{
var c = new IrOutputPortController(irControllerKey, null, "");
Debug.Console(0, c, "WARNING: Device config does not include control properties. IR will not function");
return c;
}
var portDevKey = control.Value<string>("controlPortDevKey");
var portNum = control.Value<uint>("controlPortNumber");
IIROutputPorts irDev = null;
if (portDevKey == null)
{
var c = new IrOutputPortController(irControllerKey, null, "");
Debug.Console(0, c, "WARNING: control properties is missing ir device");
return c;
}
if (portNum == 0)
{
var c = new IrOutputPortController(irControllerKey, null, "");
Debug.Console(0, c, "WARNING: control properties is missing ir port number");
return c;
}
if (portDevKey.Equals("controlSystem", StringComparison.OrdinalIgnoreCase)
|| portDevKey.Equals("processor", StringComparison.OrdinalIgnoreCase))
irDev = Global.ControlSystem;
else
irDev = DeviceManager.GetDeviceForKey(portDevKey) as IIROutputPorts;
if (irDev == null)
{
var c = new IrOutputPortController(irControllerKey, null, "");
Debug.Console(0, c, "WARNING: device with IR ports '{0}' not found", portDevKey);
return c;
}
if (portNum <= irDev.NumberOfIROutputPorts) // success!
return new IrOutputPortController(irControllerKey, irDev.IROutputPorts[portNum],
IrDriverPathPrefix + control["irFile"].Value<string>());
else
{
var c = new IrOutputPortController(irControllerKey, null, "");
Debug.Console(0, c, "WARNING: device '{0}' IR port {1} out of range",
portDevKey, portNum);
return c;
}
}*/
}
/// <summary>
/// Wrapper to help in IR port creation
/// </summary>
public class IrOutPortConfig
{
public IROutputPort Port { get; set; }
public string FileName { get; set; }
public IrOutPortConfig()
{
FileName = "";
}
}
}

View File

@@ -1,105 +0,0 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
using Crestron.SimplSharpPro;
using Newtonsoft.Json;
namespace PepperDash.Essentials.Core
{
public class ComPortController : Device, IBasicCommunication
{
public event EventHandler<GenericCommMethodReceiveBytesArgs> BytesReceived;
public event EventHandler<GenericCommMethodReceiveTextArgs> TextReceived;
ComPort Port;
ComPort.ComPortSpec Spec;
public ComPortController(string key, IComPorts ComDevice, uint comPortNum, ComPort.ComPortSpec spec)
: base(key)
{
Port = ComDevice.ComPorts[comPortNum];
Spec = spec;
Debug.Console(2, "Creating com port '{0}'", key);
Debug.Console(2, "Com port spec:\r{0}", JsonConvert.SerializeObject(spec));
}
/// <summary>
/// Creates a ComPort if the parameters are correct. Returns and logs errors if not
/// </summary>
public static ComPortController GetComPortController(string key,
IComPorts comDevice, uint comPortNum, ComPort.ComPortSpec spec)
{
Debug.Console(1, "Creating com port '{0}'", key);
if (comDevice == null)
throw new ArgumentNullException("comDevice");
if (string.IsNullOrEmpty(key))
throw new ArgumentNullException("key");
if (comPortNum > comDevice.NumberOfComPorts)
{
Debug.Console(0, "[{0}] Com port {1} out of range on {2}",
key, comPortNum, comDevice.GetType().Name);
return null;
}
var port = new ComPortController(key, comDevice, comPortNum, spec);
return port;
}
/// <summary>
/// Registers port and sends ComSpec
/// </summary>
/// <returns>false if either register or comspec fails</returns>
public override bool CustomActivate()
{
var result = Port.Register();
if (result != eDeviceRegistrationUnRegistrationResponse.Success)
{
Debug.Console(0, this, "Cannot register Com port: {0}", result);
return false;
}
var specResult = Port.SetComPortSpec(Spec);
if (specResult != 0)
{
Debug.Console(0, this, "Cannot set comspec");
return false;
}
Port.SerialDataReceived += new ComPortDataReceivedEvent(Port_SerialDataReceived);
return true;
}
void Port_SerialDataReceived(ComPort ReceivingComPort, ComPortSerialDataEventArgs args)
{
if (BytesReceived != null)
{
var bytes = Encoding.GetEncoding(28591).GetBytes(args.SerialData);
BytesReceived(this, new GenericCommMethodReceiveBytesArgs(bytes));
}
if(TextReceived != null)
TextReceived(this, new GenericCommMethodReceiveTextArgs(args.SerialData));
}
public override bool Deactivate()
{
return Port.UnRegister() == eDeviceRegistrationUnRegistrationResponse.Success;
}
#region IBasicCommunication Members
public void SendText(string text)
{
Port.Send(text);
}
public void SendBytes(byte[] bytes)
{
var text = Encoding.GetEncoding(28591).GetString(bytes, 0, bytes.Length);
Port.Send(text);
}
#endregion
}
}

View File

@@ -1,160 +0,0 @@
using System;
using System.Collections.Generic;
using Crestron.SimplSharp;
using Crestron.SimplSharp.CrestronIO;
using Crestron.SimplSharpPro;
using Newtonsoft.Json;
using Newtonsoft.Json.Linq;
using PepperDash.Core;
using PepperDash.Essentials.Core.Config;
namespace PepperDash.Essentials.Core
{
/// <summary>
///
/// </summary>
public static class IRPortHelper
{
public static string IrDriverPathPrefix
{
get
{
return Global.FilePathPrefix + "IR" + Global.DirectorySeparator;
}
}
/// <summary>
/// Finds either the ControlSystem or a device controller that contains IR ports and
/// returns a port from the hardware device
/// </summary>
/// <param name="propsToken"></param>
/// <returns>IrPortConfig object. The port and or filename will be empty/null
/// if valid values don't exist on config</returns>
public static IrOutPortConfig GetIrPort(JToken propsToken)
{
var control = propsToken["control"];
if (control == null)
return null;
if (control["method"].Value<string>() != "ir")
{
Debug.Console(0, "IRPortHelper called with non-IR properties");
return null;
}
var port = new IrOutPortConfig();
var portDevKey = control.Value<string>("controlPortDevKey");
var portNum = control.Value<uint>("controlPortNumber");
if (portDevKey == null || portNum == 0)
{
Debug.Console(1, "WARNING: Properties is missing port device or port number");
return port;
}
IIROutputPorts irDev = null;
if (portDevKey.Equals("controlSystem", StringComparison.OrdinalIgnoreCase)
|| portDevKey.Equals("processor", StringComparison.OrdinalIgnoreCase))
irDev = Global.ControlSystem;
else
irDev = DeviceManager.GetDeviceForKey(portDevKey) as IIROutputPorts;
if (irDev == null)
{
Debug.Console(1, "[Config] Error, device with IR ports '{0}' not found", portDevKey);
return port;
}
if (portNum <= irDev.NumberOfIROutputPorts) // success!
{
var file = IrDriverPathPrefix + control["irFile"].Value<string>();
port.Port = irDev.IROutputPorts[portNum];
port.FileName = file;
return port; // new IrOutPortConfig { Port = irDev.IROutputPorts[portNum], FileName = file };
}
else
{
Debug.Console(1, "[Config] Error, device '{0}' IR port {1} out of range",
portDevKey, portNum);
return port;
}
}
/// <summary>
/// Returns a ready-to-go IrOutputPortController from a DeviceConfig object.
/// </summary>
public static IrOutputPortController GetIrOutputPortController(DeviceConfig devConf)
{
var irControllerKey = devConf.Key + "-ir";
if (devConf.Properties == null)
{
Debug.Console(0, "[{0}] WARNING: Device config does not include properties. IR will not function.", devConf.Key);
return new IrOutputPortController(irControllerKey, null, "");
}
var control = devConf.Properties["control"];
if (control == null)
{
var c = new IrOutputPortController(irControllerKey, null, "");
Debug.Console(0, c, "WARNING: Device config does not include control properties. IR will not function");
return c;
}
var portDevKey = control.Value<string>("controlPortDevKey");
var portNum = control.Value<uint>("controlPortNumber");
IIROutputPorts irDev = null;
if (portDevKey == null)
{
var c = new IrOutputPortController(irControllerKey, null, "");
Debug.Console(0, c, "WARNING: control properties is missing ir device");
return c;
}
if (portNum == 0)
{
var c = new IrOutputPortController(irControllerKey, null, "");
Debug.Console(0, c, "WARNING: control properties is missing ir port number");
return c;
}
if (portDevKey.Equals("controlSystem", StringComparison.OrdinalIgnoreCase)
|| portDevKey.Equals("processor", StringComparison.OrdinalIgnoreCase))
irDev = Global.ControlSystem;
else
irDev = DeviceManager.GetDeviceForKey(portDevKey) as IIROutputPorts;
if (irDev == null)
{
var c = new IrOutputPortController(irControllerKey, null, "");
Debug.Console(0, c, "WARNING: device with IR ports '{0}' not found", portDevKey);
return c;
}
if (portNum <= irDev.NumberOfIROutputPorts) // success!
return new IrOutputPortController(irControllerKey, irDev.IROutputPorts[portNum],
IrDriverPathPrefix + control["irFile"].Value<string>());
else
{
var c = new IrOutputPortController(irControllerKey, null, "");
Debug.Console(0, c, "WARNING: device '{0}' IR port {1} out of range",
portDevKey, portNum);
return c;
}
}
}
/// <summary>
/// Wrapper to help in IR port creation
/// </summary>
public class IrOutPortConfig
{
public IROutputPort Port { get; set; }
public string FileName { get; set; }
public IrOutPortConfig()
{
FileName = "";
}
}
}

View File

@@ -12,7 +12,8 @@ using PepperDash.Essentials.Core.Config;
namespace PepperDash.Essentials.Core.CrestronIO
{
{
[Description("Wrapper class for Digital Input")]
public class GenericDigitalInputDevice : EssentialsBridgeableDevice, IDigitalInput
{
public DigitalInput InputPort { get; private set; }
@@ -26,23 +27,78 @@ namespace PepperDash.Essentials.Core.CrestronIO
return () => InputPort.State;
}
}
public GenericDigitalInputDevice(string key, DigitalInput inputPort):
base(key)
{
InputStateFeedback = new BoolFeedback(InputStateFeedbackFunc);
InputPort = inputPort;
InputPort.StateChange += InputPort_StateChange;
}
public GenericDigitalInputDevice(string key, string name, Func<IOPortConfig, DigitalInput> postActivationFunc,
IOPortConfig config)
: base(key, name)
{
AddPostActivationAction(() =>
{
InputPort = postActivationFunc(config);
InputPort.Register();
InputPort.StateChange += InputPort_StateChange;
});
}
#region Events
void InputPort_StateChange(DigitalInput digitalInput, DigitalInputEventArgs args)
{
InputStateFeedback.FireUpdate();
}
InputStateFeedback.FireUpdate();
}
#endregion
#region PreActivate
private static DigitalInput GetDigitalInput(IOPortConfig dc)
{
IDigitalInputPorts ioPortDevice;
if (dc.PortDeviceKey.Equals("processor"))
{
if (!Global.ControlSystem.SupportsDigitalInput)
{
Debug.Console(0, "GetDigitalInput: Processor does not support Digital Inputs");
return null;
}
ioPortDevice = Global.ControlSystem;
}
else
{
var ioPortDev = DeviceManager.GetDeviceForKey(dc.PortDeviceKey) as IDigitalInputPorts;
if (ioPortDev == null)
{
Debug.Console(0, "GetDigitalInput: Device {0} is not a valid device", dc.PortDeviceKey);
return null;
}
ioPortDevice = ioPortDev;
}
if (ioPortDevice == null)
{
Debug.Console(0, "GetDigitalInput: Device '0' is not a valid IRelayPorts Device", dc.PortDeviceKey);
return null;
}
if (dc.PortNumber > ioPortDevice.NumberOfDigitalInputPorts)
{
Debug.Console(0, "GetDigitalInput: Device {0} does not contain a port {1}", dc.PortDeviceKey, dc.PortNumber);
}
return ioPortDevice.DigitalInputPorts[dc.PortNumber];
}
#endregion
#region Bridge Linking
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
var joinMap = new IDigitalInputJoinMap(joinStart);
@@ -65,98 +121,37 @@ namespace PepperDash.Essentials.Core.CrestronIO
{
Debug.Console(1, this, "Unable to link device '{0}'. Input is null", Key);
Debug.Console(1, this, "Error: {0}", e);
}
}
}
}
#endregion
#region Factory
public class GenericDigitalInputDeviceFactory : EssentialsDeviceFactory<GenericDigitalInputDevice>
{
public GenericDigitalInputDeviceFactory()
{
TypeNames = new List<string>() { "digitalinput" };
}
public override EssentialsDevice BuildDevice(DeviceConfig dc)
{
Debug.Console(1, "Factory Attempting to create new Generic Relay Device");
var props = JsonConvert.DeserializeObject<IOPortConfig>(dc.Properties.ToString());
if (props == null) return null;
var portDevice = new GenericDigitalInputDevice(dc.Key, dc.Name, GetDigitalInput, props);
return portDevice;
}
}
#endregion
}
public class GenericDigitalInputDeviceFactory : EssentialsDeviceFactory<GenericDigitalInputDevice>
{
public GenericDigitalInputDeviceFactory()
{
TypeNames = new List<string>() { "digitalinput" };
}
public override EssentialsDevice BuildDevice(DeviceConfig dc)
{
Debug.Console(1, "Factory Attempting to create new Digtal Input Device");
var props = JsonConvert.DeserializeObject<IOPortConfig>(dc.Properties.ToString());
IDigitalInputPorts portDevice;
if (props.PortDeviceKey == "processor")
portDevice = Global.ControlSystem as IDigitalInputPorts;
else
portDevice = DeviceManager.GetDeviceForKey(props.PortDeviceKey) as IDigitalInputPorts;
if (portDevice == null)
Debug.Console(0, "ERROR: Unable to add digital input device with key '{0}'. Port Device does not support digital inputs", dc.Key);
else
{
var cs = (portDevice as CrestronControlSystem);
if (cs == null)
{
Debug.Console(0, "ERROR: Port device for [{0}] is not control system", props.PortDeviceKey);
return null;
}
if (cs.SupportsVersiport)
{
Debug.Console(1, "Attempting to add Digital Input device to Versiport port '{0}'", props.PortNumber);
if (props.PortNumber > cs.NumberOfVersiPorts)
{
Debug.Console(0, "WARNING: Cannot add Vesiport {0} on {1}. Out of range",
props.PortNumber, props.PortDeviceKey);
return null;
}
Versiport vp = cs.VersiPorts[props.PortNumber];
if (!vp.Registered)
{
var regSuccess = vp.Register();
if (regSuccess == eDeviceRegistrationUnRegistrationResponse.Success)
{
Debug.Console(1, "Successfully Created Digital Input Device on Versiport");
return new GenericVersiportDigitalInputDevice(dc.Key, vp, props);
}
else
{
Debug.Console(0, "WARNING: Attempt to register versiport {0} on device with key '{1}' failed: {2}",
props.PortNumber, props.PortDeviceKey, regSuccess);
return null;
}
}
}
else if (cs.SupportsDigitalInput)
{
Debug.Console(1, "Attempting to add Digital Input device to Digital Input port '{0}'", props.PortNumber);
if (props.PortNumber > cs.NumberOfDigitalInputPorts)
{
Debug.Console(0, "WARNING: Cannot register DIO port {0} on {1}. Out of range",
props.PortNumber, props.PortDeviceKey);
return null;
}
DigitalInput digitalInput = cs.DigitalInputPorts[props.PortNumber];
if (!digitalInput.Registered)
{
if (digitalInput.Register() == eDeviceRegistrationUnRegistrationResponse.Success)
{
Debug.Console(1, "Successfully Created Digital Input Device on Digital Input");
return new GenericDigitalInputDevice(dc.Key, digitalInput);
}
else
Debug.Console(0, "WARNING: Attempt to register digital input {0} on device with key '{1}' failed.",
props.PortNumber, props.PortDeviceKey);
}
}
}
return null;
}
}
}

View File

@@ -14,46 +14,114 @@ namespace PepperDash.Essentials.Core.CrestronIO
{
/// <summary>
/// Represents a generic device controlled by relays
/// </summary>
/// </summary>
[Description("Wrapper class for a Relay")]
public class GenericRelayDevice : EssentialsBridgeableDevice, ISwitchedOutput
{
public Relay RelayOutput { get; private set; }
public BoolFeedback OutputIsOnFeedback { get; private set; }
public GenericRelayDevice(string key, Relay relay):
base(key)
{
OutputIsOnFeedback = new BoolFeedback(new Func<bool>(() => RelayOutput.State));
RelayOutput = relay;
RelayOutput.Register();
RelayOutput.StateChange += new RelayEventHandler(RelayOutput_StateChange);
}
public BoolFeedback OutputIsOnFeedback { get; private set; }
//Maintained for compatibility with PepperDash.Essentials.Core.Devices.CrestronProcessor
public GenericRelayDevice(string key, Relay relay) :
base(key)
{
OutputIsOnFeedback = new BoolFeedback(new Func<bool>(() => RelayOutput.State));
RelayOutput = relay;
RelayOutput.Register();
RelayOutput.StateChange += new RelayEventHandler(RelayOutput_StateChange);
}
public GenericRelayDevice(string key, string name, Func<IOPortConfig, Relay> postActivationFunc,
IOPortConfig config)
: base(key, name)
{
AddPostActivationAction(() =>
{
RelayOutput = postActivationFunc(config);
RelayOutput.Register();
RelayOutput.StateChange += RelayOutput_StateChange;
});
}
#region PreActivate
private static Relay GetRelay(IOPortConfig dc)
{
IRelayPorts relayDevice;
if(dc.PortDeviceKey.Equals("processor"))
{
if (!Global.ControlSystem.SupportsRelay)
{
Debug.Console(0, "GetRelayDevice: Processor does not support relays");
return null;
}
relayDevice = Global.ControlSystem;
}
else
{
var relayDev = DeviceManager.GetDeviceForKey(dc.PortDeviceKey) as IRelayPorts;
if (relayDev == null)
{
Debug.Console(0, "GetRelayDevice: Device {0} is not a valid device", dc.PortDeviceKey);
return null;
}
relayDevice = relayDev;
}
if (relayDevice == null)
{
Debug.Console(0, "GetRelayDevice: Device '0' is not a valid IRelayPorts Device", dc.PortDeviceKey);
return null;
}
if (dc.PortNumber > relayDevice.NumberOfRelayPorts)
{
Debug.Console(0, "GetRelayDevice: Device {0} does not contain a port {1}", dc.PortDeviceKey, dc.PortNumber);
}
return relayDevice.RelayPorts[dc.PortNumber];
}
#endregion
#region Events
void RelayOutput_StateChange(Relay relay, RelayEventArgs args)
{
OutputIsOnFeedback.FireUpdate();
OutputIsOnFeedback.FireUpdate();
}
public void OpenRelay()
{
RelayOutput.State = false;
}
public void CloseRelay()
{
RelayOutput.State = true;
}
public void ToggleRelayState()
{
if (RelayOutput.State == true)
OpenRelay();
else
CloseRelay();
#endregion
#region Methods
public void OpenRelay()
{
RelayOutput.State = false;
}
public void CloseRelay()
{
RelayOutput.State = true;
}
public void ToggleRelayState()
{
if (RelayOutput.State == true)
OpenRelay();
else
CloseRelay();
}
#endregion
#region ISwitchedOutput Members
@@ -67,8 +135,10 @@ namespace PepperDash.Essentials.Core.CrestronIO
OpenRelay();
}
#endregion
#endregion
#region Bridge Linking
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
var joinMap = new GenericRelayControllerJoinMap(joinStart);
@@ -98,77 +168,90 @@ namespace PepperDash.Essentials.Core.CrestronIO
// feedback for relay state
OutputIsOnFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Relay.JoinNumber]);
}
}
OutputIsOnFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Relay.JoinNumber]);
}
#endregion
#region Factory
public class GenericRelayDeviceFactory : EssentialsDeviceFactory<GenericRelayDevice>
{
public GenericRelayDeviceFactory()
{
TypeNames = new List<string>() { "relayoutput" };
}
public override EssentialsDevice BuildDevice(DeviceConfig dc)
{
Debug.Console(1, "Factory Attempting to create new Generic Relay Device");
var props = JsonConvert.DeserializeObject<IOPortConfig>(dc.Properties.ToString());
if (props == null) return null;
var portDevice = new GenericRelayDevice(dc.Key, dc.Name, GetRelay, props);
return portDevice;
/*
if (props.PortDeviceKey == "processor")
portDevice = Global.ControlSystem as IRelayPorts;
else
portDevice = DeviceManager.GetDeviceForKey(props.PortDeviceKey) as IRelayPorts;
public class GenericRelayDeviceFactory : EssentialsDeviceFactory<GenericRelayDevice>
{
public GenericRelayDeviceFactory()
{
TypeNames = new List<string>() { "relayoutput" };
}
public override EssentialsDevice BuildDevice(DeviceConfig dc)
{
Debug.Console(1, "Factory Attempting to create new Generic Relay Device");
var props = JsonConvert.DeserializeObject<IOPortConfig>(dc.Properties.ToString());
var key = dc.Key;
IRelayPorts portDevice;
if (props.PortDeviceKey == "processor")
portDevice = Global.ControlSystem as IRelayPorts;
else
portDevice = DeviceManager.GetDeviceForKey(props.PortDeviceKey) as IRelayPorts;
if (portDevice == null)
Debug.Console(0, "Unable to add relay device with key '{0}'. Port Device does not support relays", key);
else
{
var cs = (portDevice as CrestronControlSystem);
if (cs != null)
{
// The relay is on a control system processor
if (!cs.SupportsRelay || props.PortNumber > cs.NumberOfRelayPorts)
{
Debug.Console(0, "Port Device: {0} does not support relays or does not have enough relays");
return null;
}
}
if (portDevice == null)
Debug.Console(0, "Unable to add relay device with key '{0}'. Port Device does not support relays", key);
else
{
// The relay is on another device type
var cs = (portDevice as CrestronControlSystem);
if (props.PortNumber > portDevice.NumberOfRelayPorts)
if (cs != null)
{
Debug.Console(0, "Port Device: {0} does not have enough relays");
return null;
// The relay is on a control system processor
if (!cs.SupportsRelay || props.PortNumber > cs.NumberOfRelayPorts)
{
Debug.Console(0, "Port Device: {0} does not support relays or does not have enough relays");
return null;
}
}
}
Relay relay = portDevice.RelayPorts[props.PortNumber];
if (!relay.Registered)
{
if (relay.Register() == eDeviceRegistrationUnRegistrationResponse.Success)
return new GenericRelayDevice(key, relay);
else
Debug.Console(0, "Attempt to register relay {0} on device with key '{1}' failed.", props.PortNumber, props.PortDeviceKey);
{
// The relay is on another device type
if (props.PortNumber > portDevice.NumberOfRelayPorts)
{
Debug.Console(0, "Port Device: {0} does not have enough relays");
return null;
}
}
Relay relay = portDevice.RelayPorts[props.PortNumber];
if (!relay.Registered)
{
if (relay.Register() == eDeviceRegistrationUnRegistrationResponse.Success)
return new GenericRelayDevice(key, relay);
else
Debug.Console(0, "Attempt to register relay {0} on device with key '{1}' failed.", props.PortNumber, props.PortDeviceKey);
}
else
{
return new GenericRelayDevice(key, relay);
}
// Future: Check if portDevice is 3-series card or other non control system that supports versiports
}
else
{
return new GenericRelayDevice(key, relay);
}
// Future: Check if portDevice is 3-series card or other non control system that supports versiports
}
return null;
}
*/
}
}
#endregion
}
}

View File

@@ -33,7 +33,7 @@ namespace PepperDash.Essentials.Core
triList.SetBoolSigAction(141, dev.Right);
triList.SetBoolSigAction(142, dev.Select);
triList.SetBoolSigAction(130, dev.Menu);
triList.SetBoolSigAction(134, dev.Exit);
triList.SetBoolSigAction(134, dev.Exit);
}
public static void UnlinkButtons(this IDPad dev, BasicTriList triList)

View File

@@ -53,7 +53,7 @@ namespace PepperDash.Essentials.Core
public ConfigSnippetAttribute(string configSnippet)
{
Debug.Console(2, "Setting Description {0}", configSnippet);
Debug.Console(2, "Setting Config Snippet {0}", configSnippet);
_ConfigSnippet = configSnippet;
}
@@ -83,8 +83,9 @@ namespace PepperDash.Essentials.Core
foreach (var typeName in TypeNames)
{
Debug.Console(2, "Getting Description Attribute from class: '{0}'", typeof(T).FullName);
var attributes = typeof(T).GetCustomAttributes(typeof(DescriptionAttribute), true) as DescriptionAttribute[];
string description = attributes[0].Description;
var descriptionAttribute = typeof(T).GetCustomAttributes(typeof(DescriptionAttribute), true) as DescriptionAttribute[];
string description = descriptionAttribute[0].Description;
var snippetAttribute = typeof(T).GetCustomAttributes(typeof(ConfigSnippetAttribute), true) as ConfigSnippetAttribute[];
DeviceFactory.AddFactoryForType(typeName.ToLower(), description, typeof(T), BuildDevice);
}
}

View File

@@ -0,0 +1,22 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
namespace PepperDash.Essentials.Core
{
public interface IBasicVideoMute
{
void VideoMuteToggle();
}
public interface IBasicVideoMuteWithFeedback : IBasicVideoMute
{
BoolFeedback VideoMuteIsOn { get; }
void VideoMuteOn();
void VideoMuteOff();
}
}

View File

@@ -3,7 +3,10 @@ using System.Collections.Generic;
using System.Linq;
using Crestron.SimplSharp;
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DeviceSupport;
using Newtonsoft.Json.Linq;
using PepperDash.Essentials.Core.Config;
using PepperDash.Core;
@@ -37,9 +40,21 @@ namespace PepperDash.Essentials.Core
return;
}
LoadDriver(irDriverFilepath);
}
/// <summary>
}
public IrOutputPortController(string key, Func<DeviceConfig, IROutputPort> postActivationFunc,
DeviceConfig config)
: base(key)
{
AddPostActivationAction(() =>
{
IrPort = postActivationFunc(config);
});
}
/// <summary>
/// Loads the IR driver at path
/// </summary>
/// <param name="path"></param>
@@ -118,7 +133,6 @@ namespace PepperDash.Essentials.Core
{
Debug.Console(2, this, "Device {0}: IR Driver {1} does not contain command {2}",
Key, IrPort.IRDriverFileNameByIRDriverId(IrPortUid), command);
}
}
}
}

View File

@@ -13,8 +13,9 @@ using PepperDash.Essentials.Core.Bridges;
using PepperDash.Essentials.Core.Routing;
namespace PepperDash.Essentials.Core
{
public class BasicIrDisplay : DisplayBase, IBasicVolumeControls, IBridgeAdvanced
{
[Description("Wrapper class for a Basic IR Display")]
public class BasicIrDisplay : DisplayBase, IBasicVolumeControls, IBridgeAdvanced
{
public IrOutputPortController IrPort { get; private set; }
public ushort IrPulseTime { get; set; }

View File

@@ -0,0 +1,139 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.Gateways;
using Newtonsoft.Json;
using PepperDash.Core;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Config;
namespace PepperDash.Essentials.Core
{
[Description("Wrapper class for Crestron Infinet-EX Gateways")]
public class CenRfgwController : CrestronGenericBaseDevice
{
private GatewayBase _Gateway;
public GatewayBase GateWay { get { return _Gateway; } }
/// <summary>
/// Constructor for the on-board gateway
/// </summary>
/// <param name="key"></param>
/// <param name="name"></param>
public CenRfgwController(string key, string name, GatewayBase gateway) :
base(key, name, gateway)
{
_Gateway = gateway;
}
public static CenRfgwController GetNewExGatewayController(string key, string name, ushort ipId, ushort cresnetId, string gatewayType)
{
eExGatewayType type = (eExGatewayType)Enum.Parse(typeof(eExGatewayType), gatewayType, true);
try
{
var cs = Global.ControlSystem;
GatewayBase gw = null;
switch (type)
{
case eExGatewayType.Ethernet:
gw = new CenRfgwEx(ipId, cs);
break;
case eExGatewayType.EthernetShared:
gw = new CenRfgwExEthernetSharable(ipId, cs);
break;
case eExGatewayType.Cresnet:
gw = new CenRfgwExCresnet(cresnetId, cs);
break;
}
return new CenRfgwController(key, name, gw);
}
catch (Exception)
{
Debug.Console(0, "ERROR: Cannot create EX Gateway, id {0}, type {1}", type == eExGatewayType.Cresnet ? cresnetId : ipId, gatewayType);
return null;
}
}
public static CenRfgwController GetNewErGatewayController(string key, string name, ushort ipId, ushort cresnetId, string gatewayType)
{
eExGatewayType type = (eExGatewayType)Enum.Parse(typeof(eExGatewayType), gatewayType, true);
try
{
var cs = Global.ControlSystem;
GatewayBase gw = null;
switch (type)
{
case eExGatewayType.Ethernet:
gw = new CenErfgwPoe(ipId, cs);
break;
case eExGatewayType.EthernetShared:
gw = new CenErfgwPoeEthernetSharable(ipId, cs);
break;
case eExGatewayType.Cresnet:
gw = new CenErfgwPoeCresnet(cresnetId, cs);
break;
}
return new CenRfgwController(key, name, gw);
}
catch (Exception)
{
Debug.Console(0, "ERROR: Cannot create ER Gateway, id {0}, type {1}", type== eExGatewayType.Cresnet ? cresnetId : ipId, gatewayType);
return null;
}
}
}
public enum eExGatewayType
{
Ethernet, EthernetShared, Cresnet
}
#region Factory
public class CenRfgwControllerFactory : EssentialsDeviceFactory<CenRfgwController>
{
public CenRfgwControllerFactory()
{
TypeNames = new List<string>() { "cenrfgwex", "cenerfgwpoe" };
}
public override EssentialsDevice BuildDevice(DeviceConfig dc)
{
Debug.Console(1, "Factory Attempting to create new CEN-GWEXER Device");
var props = JsonConvert.DeserializeObject<EssentialsRfGatewayConfig>(dc.Properties.ToString());
var type = dc.Type.ToLower();
var control = props.Control;
var ipid = control.IpIdInt;
var cresnetId = control.CresnetIdInt;
var gatewayType = props.GatewayType;
switch (type)
{
case ("cenrfgwex"):
return CenRfgwController.GetNewExGatewayController(dc.Key, dc.Name,
(ushort)ipid, (ushort)cresnetId, gatewayType);
case ("cenerfgwpoe"):
return CenRfgwController.GetNewErGatewayController(dc.Key, dc.Name,
(ushort)ipid, (ushort)cresnetId, gatewayType);
default:
return null;
}
}
}
#endregion
}

View File

@@ -0,0 +1,23 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
using Newtonsoft.Json;
using Newtonsoft.Json.Linq;
using PepperDash.Core;
using PepperDash.Essentials.Core.Config;
namespace PepperDash.Essentials.Core
{
public class EssentialsRfGatewayConfig
{
[JsonProperty("control")]
public EssentialsControlPropertiesConfig Control { get; set; }
[JsonProperty("gatewayType")]
public string GatewayType { get; set; }
}
}

View File

@@ -17,8 +17,8 @@ namespace PepperDash.Essentials.Core
{
public static class Global
{
public static CrestronControlSystem ControlSystem { get; set; }
public static CrestronControlSystem ControlSystem { get; set; }
public static LicenseManager LicenseManager { get; set; }
/// <summary>

View File

@@ -1,6 +1,7 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Linq;
using System.Runtime.InteropServices;
using Crestron.SimplSharp.Reflection;
using PepperDash.Core;
@@ -345,8 +346,10 @@ namespace PepperDash.Essentials.Core
/// <summary>
/// Metadata describing the join
/// </summary>
public class JoinMetadata
{
public class JoinMetadata
{
private string _description;
/// <summary>
/// Join number (based on join offset value)
/// </summary>
@@ -361,10 +364,17 @@ namespace PepperDash.Essentials.Core
public uint JoinSpan { get; set; }
/// <summary>
/// A label for the join to better describe it's usage
/// A label for the join to better describe its usage
/// </summary>
[JsonProperty("label")]
public string Label { get; set; }
[Obsolete("Use Description instead")]
[JsonProperty("label")]
public string Label { get { return _description; } set { _description = value; } }
/// <summary>
/// A description for the join to better describe its usage
/// </summary>
[JsonProperty("description")]
public string Description { get { return _description; } set { _description = value; } }
/// <summary>
/// Signal type(s)
/// </summary>
@@ -454,11 +464,13 @@ namespace PepperDash.Essentials.Core
name = attribute.Name;
Debug.Console(2, "JoinName Attribute value: {0}", name);
return name;
}
}
}
}
[AttributeUsage(AttributeTargets.All)]
public class JoinNameAttribute : Attribute
public class JoinNameAttribute : CAttribute
{
private string _Name;
@@ -472,5 +484,5 @@ namespace PepperDash.Essentials.Core
{
get { return _Name; }
}
}
}
}

View File

@@ -62,6 +62,10 @@
<SpecificVersion>False</SpecificVersion>
<HintPath>..\..\..\..\..\..\..\..\..\..\ProgramData\Crestron\SDK\SSPDevices\Crestron.SimplSharpPro.Fusion.dll</HintPath>
</Reference>
<Reference Include="Crestron.SimplSharpPro.Gateways, Version=1.0.0.0, Culture=neutral, PublicKeyToken=1099c178b3b54c3b, processorArchitecture=MSIL">
<SpecificVersion>False</SpecificVersion>
<HintPath>..\..\..\..\..\ProgramData\Crestron\SDK\SSPDevices\Crestron.SimplSharpPro.Gateways.dll</HintPath>
</Reference>
<Reference Include="Crestron.SimplSharpPro.GeneralIO, Version=1.0.0.0, Culture=neutral, PublicKeyToken=1099c178b3b54c3b, processorArchitecture=MSIL">
<SpecificVersion>False</SpecificVersion>
<HintPath>..\..\..\..\..\..\..\..\ProgramData\Crestron\SDK\SSPDevices\Crestron.SimplSharpPro.GeneralIO.dll</HintPath>
@@ -129,15 +133,23 @@
<Compile Include="Bridges\JoinMaps\GenericLightingJoinMap.cs" />
<Compile Include="Bridges\JoinMaps\GenericRelayControllerJoinMap.cs" />
<Compile Include="Bridges\JoinMaps\GlsOccupancySensorBaseJoinMap.cs" />
<Compile Include="Bridges\JoinMaps\HdMdNxM4kEControllerJoinMap.cs" />
<Compile Include="Bridges\JoinMaps\HdMdxxxCEControllerJoinMap.cs" />
<Compile Include="Bridges\JoinMaps\Hrxxx0WirelessRemoteControllerJoinMap.cs" />
<Compile Include="Bridges\JoinMaps\IBasicCommunicationJoinMap.cs" />
<Compile Include="Bridges\JoinMaps\IDigitalInputJoinMap.cs" />
<Compile Include="Bridges\JoinMaps\SetTopBoxControllerJoinMap.cs" />
<Compile Include="Bridges\JoinMaps\StatusSignControllerJoinMap.cs" />
<Compile Include="Bridges\JoinMaps\SystemMonitorJoinMap.cs" />
<Compile Include="Config\Comm and IR\CecPortController.cs" />
<Compile Include="Config\Comm and IR\GenericComm.cs" />
<Compile Include="Config\Comm and IR\GenericHttpClient.cs" />
<Compile Include="Comm and IR\CecPortController.cs" />
<Compile Include="Comm and IR\CommFactory.cs" />
<Compile Include="Comm and IR\CommunicationExtras.cs" />
<Compile Include="Comm and IR\ComPortController.cs" />
<Compile Include="Comm and IR\ComSpecJsonConverter.cs" />
<Compile Include="Comm and IR\ConsoleCommMockDevice.cs" />
<Compile Include="Comm and IR\GenericComm.cs" />
<Compile Include="Comm and IR\GenericHttpClient.cs" />
<Compile Include="Comm and IR\IRPortHelper.cs" />
<Compile Include="Config\Essentials\ConfigUpdater.cs" />
<Compile Include="Config\Essentials\ConfigReader.cs" />
<Compile Include="Config\Essentials\ConfigWriter.cs" />
@@ -158,6 +170,7 @@
<Compile Include="Devices\DeviceFeedbackExtensions.cs" />
<Compile Include="Devices\EssentialsBridgeableDevice.cs" />
<Compile Include="Devices\EssentialsDevice.cs" />
<Compile Include="Devices\IProjectorInterfaces.cs" />
<Compile Include="Devices\PC\InRoomPc.cs" />
<Compile Include="Devices\PC\Laptop.cs" />
<Compile Include="Devices\ReconfigurableDevice.cs" />
@@ -175,6 +188,8 @@
<Compile Include="Fusion\FusionEventHandlers.cs" />
<Compile Include="Fusion\FusionProcessorQueries.cs" />
<Compile Include="Fusion\FusionRviDataClasses.cs" />
<Compile Include="Gateways\CenRfgwController.cs" />
<Compile Include="Gateways\EssentialsRfGatewayConfig.cs" />
<Compile Include="Global\JobTimer.cs" />
<Compile Include="Global\Scheduler.cs" />
<Compile Include="JoinMaps\JoinMapBase.cs" />
@@ -187,11 +202,6 @@
<Compile Include="Presets\PresetBase.cs" />
<Compile Include="Plugins\IPluginDeviceFactory.cs" />
<Compile Include="Ramps and Increments\ActionIncrementer.cs" />
<Compile Include="Config\Comm and IR\CommFactory.cs" />
<Compile Include="Config\Comm and IR\CommunicationExtras.cs" />
<Compile Include="Config\Comm and IR\ComSpecJsonConverter.cs" />
<Compile Include="Config\Comm and IR\ConsoleCommMockDevice.cs" />
<Compile Include="Config\Comm and IR\IRPortHelper.cs" />
<Compile Include="Config\BasicConfig.cs" />
<Compile Include="Config\ConfigPropertiesHelpers.cs" />
<Compile Include="Config\InfoConfig.cs" />
@@ -220,6 +230,9 @@
<Compile Include="Feedbacks\BoolFeedbackOneShot.cs" />
<Compile Include="Ramps and Increments\NumericalHelpers.cs" />
<Compile Include="Ramps and Increments\UshortSigIncrementer.cs" />
<Compile Include="Remotes\ButtonExtensions.cs" />
<Compile Include="Remotes\CrestronRemotePropertiesConfig.cs" />
<Compile Include="Remotes\Hrxx0WirelessRemoteController.cs" />
<Compile Include="Room\Behaviours\RoomOnToDefaultSourceWhenOccupied.cs" />
<Compile Include="Room\EssentialsRoomBase.cs" />
<Compile Include="Room\Interfaces.cs" />
@@ -275,7 +288,6 @@
<Compile Include="UI PageManagers\PageManager.cs" />
<Compile Include="UI PageManagers\SetTopBoxTwoPanelPageManager.cs" />
<Compile Include="VideoStatus\VideoStatusOutputs.cs" />
<Compile Include="Config\Comm and IR\ComPortController.cs" />
<Compile Include="Crestron\CrestronGenericBaseDevice.cs" />
<Compile Include="DeviceControlsParentInterfaces\IPresentationSource.cs" />
<Compile Include="Devices\DeviceManager.cs" />

View File

@@ -0,0 +1,47 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.DeviceSupport;
using PepperDash.Core;
namespace PepperDash.Essentials.Core
{
public static class ButtonExtensions
{
public static Button SetButtonAction(this Button button, Action<bool> a)
{
button.UserObject = a;
return button;
}
public static Button SetButtonAction(this CrestronCollection<Button> bc, uint sigNum, Action<bool> a)
{
return bc[sigNum].SetButtonAction(a);
}
public static bool GetBool(this CrestronCollection<Button> bc, uint sigNum)
{
return bc[sigNum].State == eButtonState.Pressed ? true : false;
}
public static Button SetButtonPressedAction(this CrestronCollection<Button> bc, uint sigNum, Action a)
{
return bc[sigNum].SetButtonAction(b => { if (b) a(); });
}
public static Button SetButtonReleasedAction(this CrestronCollection<Button> bc, uint sigNum, Action a)
{
return bc[sigNum].SetButtonAction(b => { if (!b) a(); });
}
public static Button SetButtonFalseAction(this Button button, Action a)
{
return button.SetButtonAction(b => { if (!b) a(); });
}
}
}

View File

@@ -0,0 +1,17 @@
using System;
using System.Collections.Generic;
using Newtonsoft.Json;
using Newtonsoft.Json.Converters;
using PepperDash.Core;
namespace PepperDash.Essentials.Core
{
public class CrestronRemotePropertiesConfig
{
[JsonProperty("control")]
public EssentialsControlPropertiesConfig Control { get; set; }
[JsonProperty("gatewayDeviceKey")]
public string GatewayDeviceKey { get; set; }
}
}

View File

@@ -0,0 +1,245 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.Gateways;
using Crestron.SimplSharpPro.Remotes;
using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharp.Reflection;
using Newtonsoft.Json;
using PepperDash.Core;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Config;
using PepperDash.Essentials.Core.Bridges;
namespace PepperDash.Essentials.Core
{
[Description("Wrapper class for all HR-Series remotes")]
public class Hrxx0WirelessRemoteController : EssentialsBridgeableDevice, IHasFeedback
{
private Hr1x0WirelessRemoteBase _remote;
public FeedbackCollection<Feedback> Feedbacks { get; set; }
public CrestronCollection<Button> Buttons { get { return _remote.Button; } }
public Hrxx0WirelessRemoteController(string key, Func<DeviceConfig, Hr1x0WirelessRemoteBase> preActivationFunc,
DeviceConfig config)
: base(key, config.Name)
{
Feedbacks = new FeedbackCollection<Feedback>();
AddPreActivationAction(() =>
{
_remote = preActivationFunc(config);
_remote.ButtonStateChange += new ButtonEventHandler(_remote_ButtonStateChange);
Feedbacks.Add(new BoolFeedback("BatteryCritical", () => _remote.BatteryCriticalFeedback.BoolValue));
Feedbacks.Add(new BoolFeedback("BatteryLow", () => _remote.BatteryLowFeedback.BoolValue));
Feedbacks.Add(new IntFeedback("BatteryVoltage", () => _remote.BatteryVoltageFeedback.UShortValue));
_remote.BaseEvent += new BaseEventHandler(_remote_BaseEvent);
});
}
void _remote_BaseEvent(GenericBase device, BaseEventArgs args)
{
if(args.EventId == Hr1x0EventIds.BatteryCriticalFeedbackEventId)
Feedbacks["BatteryCritical"].FireUpdate();
if(args.EventId == Hr1x0EventIds.BatteryLowFeedbackEventId)
Feedbacks["BatteryLow"].FireUpdate();
if(args.EventId == Hr1x0EventIds.BatteryVoltageFeedbackEventId)
Feedbacks["BatteryVoltage"].FireUpdate();
}
void _remote_ButtonStateChange(GenericBase device, ButtonEventArgs args)
{
try
{
var handler = args.Button.UserObject;
if (handler == null) return;
Debug.Console(1, this, "Executing Action: {0}", handler.ToString());
if (handler is Action<bool>)
{
(handler as Action<bool>)(args.Button.State == eButtonState.Pressed ? true : false);
}
}
catch (Exception e)
{
Debug.Console(2, this, "Error in ButtonStateChange handler: {0}", e);
}
}
#region Preactivation
private static Hr1x0WirelessRemoteBase GetHr1x0WirelessRemote(DeviceConfig config)
{
var props = JsonConvert.DeserializeObject<CrestronRemotePropertiesConfig>(config.Properties.ToString());
var type = config.Type;
var rfId = (uint)props.Control.InfinetIdInt;
GatewayBase gateway;
if (props.GatewayDeviceKey == "processor")
{
gateway = Global.ControlSystem.ControllerRFGatewayDevice;
}
else
{
var gatewayDev = DeviceManager.GetDeviceForKey(props.GatewayDeviceKey) as CenRfgwController;
if (gatewayDev == null)
{
Debug.Console(0, "GetHr1x0WirelessRemote: Device '{0}' is not a valid device", props.GatewayDeviceKey);
return null;
}
Debug.Console(0, "GetHr1x0WirelessRemote: Device '{0}' is a valid device", props.GatewayDeviceKey);
gateway = gatewayDev.GateWay;
}
if (gateway == null)
{
Debug.Console(0, "GetHr1x0WirelessRemote: Device '{0}' is not a valid gateway", props.GatewayDeviceKey);
return null;
}
switch (type)
{
case ("hr100"):
return new Hr100(rfId, gateway);
case ("hr150"):
return new Hr150(rfId, gateway);
case ("hr310"):
return new Hr310(rfId, gateway);
default:
return null;
}
}
static void gateway_BaseEvent(GenericBase device, BaseEventArgs args)
{
throw new NotImplementedException();
}
#endregion
#region Factory
public class Hrxx0WirelessRemoteControllerFactory : EssentialsDeviceFactory<Hrxx0WirelessRemoteController>
{
public Hrxx0WirelessRemoteControllerFactory()
{
TypeNames = new List<string>() { "hr100", "hr150", "hr310" };
}
public override EssentialsDevice BuildDevice(DeviceConfig dc)
{
Debug.Console(1, "Factory Attempting to create new HR-x00 Remote Device");
return new Hrxx0WirelessRemoteController(dc.Key, GetHr1x0WirelessRemote, dc);
}
}
#endregion
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
var joinMap = new Hrxxx0WirelessRemoteControllerJoinMap(joinStart);
var joinMapSerialized = JoinMapHelper.GetSerializedJoinMapForDevice(joinMapKey);
if (!string.IsNullOrEmpty(joinMapSerialized))
joinMap = JsonConvert.DeserializeObject<Hrxxx0WirelessRemoteControllerJoinMap>(joinMapSerialized);
bridge.AddJoinMap(Key, joinMap);
//List<string> ExcludedKeys = new List<string>();
foreach (var feedback in Feedbacks)
{
var myFeedback = feedback;
var joinData =
joinMap.Joins.FirstOrDefault(
x =>
x.Key.Equals(myFeedback.Key, StringComparison.InvariantCultureIgnoreCase));
if (string.IsNullOrEmpty((joinData.Key))) continue;
var name = joinData.Key;
var join = joinData.Value;
if (join.Metadata.JoinType == eJoinType.Digital)
{
Debug.Console(0, this, "Linking Bool Feedback '{0}' to join {1}", name, join.JoinNumber);
var someFeedback = myFeedback as BoolFeedback;
if(someFeedback == null) continue;
someFeedback.LinkInputSig(trilist.BooleanInput[join.JoinNumber]);
}
if (join.Metadata.JoinType == eJoinType.Analog)
{
Debug.Console(0, this, "Linking Analog Feedback '{0}' to join {1}", name, join.JoinNumber);
var someFeedback = myFeedback as IntFeedback;
if (someFeedback == null) continue;
someFeedback.LinkInputSig(trilist.UShortInput[join.JoinNumber]);
}
if (join.Metadata.JoinType == eJoinType.Serial)
{
Debug.Console(0, this, "Linking Serial Feedback '{0}' to join {1}", name, join.JoinNumber);
var someFeedback = myFeedback as StringFeedback;
if (someFeedback == null) continue;
someFeedback.LinkInputSig(trilist.StringInput[join.JoinNumber]);
}
}
//var newJoinKeys = joinMap.Joins.Keys.Except(ExcludedKeys).ToList();
//var newJoinMap = newJoinKeys.Where(k => joinMap.Joins.ContainsKey(k)).Select(k => joinMap.Joins[k]);
Debug.Console(2, this, "There are {0} remote buttons", _remote.Button.Count);
for (uint i = 1; i <= _remote.Button.Count; i++)
{
Debug.Console(2, this, "Attempting to link join index {0}", i);
var index = i;
var joinData =
joinMap.Joins.FirstOrDefault(
o =>
o.Key.Equals(_remote.Button[index].Name.ToString(),
StringComparison.InvariantCultureIgnoreCase));
if (string.IsNullOrEmpty((joinData.Key))) continue;
var join = joinData.Value;
var name = joinData.Key;
Debug.Console(2, this, "Setting User Object for '{0}'", name);
if (join.Metadata.JoinType == eJoinType.Digital)
{
_remote.Button[i].SetButtonAction((b) => trilist.BooleanInput[join.JoinNumber].BoolValue = b);
}
}
trilist.OnlineStatusChange += (d, args) =>
{
if (!args.DeviceOnLine) return;
foreach (var feedback in Feedbacks)
{
feedback.FireUpdate();
}
};
}
public void SetTrilistBool(BasicTriList trilist, uint join, bool b)
{
trilist.BooleanInput[join].BoolValue = b;
}
}
}

View File

@@ -22,7 +22,7 @@ namespace PepperDash.Essentials.Core
/// and then attempts a new Route and if sucessful, stores that RouteDescriptor
/// in RouteDescriptorCollection.DefaultCollection
/// </summary>
public static void ReleaseAndMakeRoute(this IRoutingInputs destination, IRoutingOutputs source, eRoutingSignalType signalType)
public static void ReleaseAndMakeRoute(this IRoutingSink destination, IRoutingOutputs source, eRoutingSignalType signalType)
{
destination.ReleaseRoute();
@@ -39,7 +39,7 @@ namespace PepperDash.Essentials.Core
/// RouteDescriptorCollection.DefaultCollection
/// </summary>
/// <param name="destination"></param>
public static void ReleaseRoute(this IRoutingInputs destination)
public static void ReleaseRoute(this IRoutingSink destination)
{
var current = RouteDescriptorCollection.DefaultCollection.RemoveRouteDescriptor(destination);
if (current != null)
@@ -56,7 +56,7 @@ namespace PepperDash.Essentials.Core
/// of an audio/video route are discovered a route descriptor is returned. If no route is
/// discovered, then null is returned
/// </summary>
public static RouteDescriptor GetRouteToSource(this IRoutingInputs destination, IRoutingOutputs source, eRoutingSignalType signalType)
public static RouteDescriptor GetRouteToSource(this IRoutingSink destination, IRoutingOutputs source, eRoutingSignalType signalType)
{
var routeDescr = new RouteDescriptor(source, destination, signalType);
// if it's a single signal type, find the route
@@ -152,7 +152,7 @@ namespace PepperDash.Essentials.Core
if (outputPortToUse == null)
{
// it's a sink device
routeTable.Routes.Add(new RouteSwitchDescriptor(goodInputPort));
routeTable.Routes.Add(new RouteSwitchDescriptor(goodInputPort));
}
else if (destination is IRouting)
{
@@ -265,14 +265,20 @@ namespace PepperDash.Essentials.Core
foreach (var route in Routes)
{
Debug.Console(2, "ExecuteRoutes: {0}", route.ToString());
if (route.SwitchingDevice is IRoutingSinkWithSwitching)
(route.SwitchingDevice as IRoutingSinkWithSwitching).ExecuteSwitch(route.InputPort.Selector);
else if (route.SwitchingDevice is IRouting)
{
(route.SwitchingDevice as IRouting).ExecuteSwitch(route.InputPort.Selector, route.OutputPort.Selector, SignalType);
route.OutputPort.InUseTracker.AddUser(Destination, "destination-" + SignalType);
Debug.Console(2, "Output port {0} routing. Count={1}", route.OutputPort.Key, route.OutputPort.InUseTracker.InUseCountFeedback.UShortValue);
}
if (route.SwitchingDevice is IRoutingSink)
{
var device = route.SwitchingDevice as IRoutingSinkWithSwitching;
if (device == null)
continue;
device.ExecuteSwitch(route.InputPort.Selector);
}
else if (route.SwitchingDevice is IRouting)
{
(route.SwitchingDevice as IRouting).ExecuteSwitch(route.InputPort.Selector, route.OutputPort.Selector, SignalType);
route.OutputPort.InUseTracker.AddUser(Destination, "destination-" + SignalType);
Debug.Console(2, "Output port {0} routing. Count={1}", route.OutputPort.Key, route.OutputPort.InUseTracker.InUseCountFeedback.UShortValue);
}
}
}

View File

@@ -1,109 +1,120 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.DM;
using PepperDash.Core;
namespace PepperDash.Essentials.Core
{
/// <summary>
/// The handler type for a Room's SourceInfoChange
/// </summary>
public delegate void SourceInfoChangeHandler(/*EssentialsRoomBase room,*/ SourceListItem info, ChangeType type);
//*******************************************************************************************
// Interfaces
/// <summary>
/// For rooms with a single presentation source, change event
/// </summary>
public interface IHasCurrentSourceInfoChange
{
string CurrentSourceInfoKey { get; set; }
SourceListItem CurrentSourceInfo { get; set; }
event SourceInfoChangeHandler CurrentSourceChange;
}
/// <summary>
/// Defines a class that has a collection of RoutingInputPorts
/// </summary>
public interface IRoutingInputs : IKeyed
{
RoutingPortCollection<RoutingInputPort> InputPorts { get; }
}
/// <summary>
/// Defines a class that has a collection of RoutingOutputPorts
/// </summary>
public interface IRoutingOutputs : IKeyed
{
RoutingPortCollection<RoutingOutputPort> OutputPorts { get; }
}
/// <summary>
/// For fixed-source endpoint devices
/// </summary>
public interface IRoutingSinkNoSwitching : IRoutingInputs, IHasCurrentSourceInfoChange
{
}
/// <summary>
/// Endpoint device like a display, that selects inputs
/// </summary>
public interface IRoutingSinkWithSwitching : IRoutingSinkNoSwitching, IHasCurrentSourceInfoChange
{
//void ClearRoute();
void ExecuteSwitch(object inputSelector);
}
/// <summary>
/// For devices like RMCs, baluns, other devices with no switching.
/// </summary>
public interface IRoutingInputsOutputs : IRoutingInputs, IRoutingOutputs
{
}
/// <summary>
/// Defines a midpoint device as have internal routing. Any devices in the middle of the
/// signal chain, that do switching, must implement this for routing to work otherwise
/// the routing algorithm will treat the IRoutingInputsOutputs device as a passthrough
/// device.
/// </summary>
public interface IRouting : IRoutingInputsOutputs
{
//void ClearRoute(object outputSelector);
void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType);
}
public interface ITxRouting : IRouting
{
IntFeedback VideoSourceNumericFeedback { get; }
IntFeedback AudioSourceNumericFeedback { get; }
void ExecuteNumericSwitch(ushort input, ushort output, eRoutingSignalType type);
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.DM;
using PepperDash.Core;
namespace PepperDash.Essentials.Core
{
/// <summary>
/// The handler type for a Room's SourceInfoChange
/// </summary>
public delegate void SourceInfoChangeHandler(/*EssentialsRoomBase room,*/ SourceListItem info, ChangeType type);
//*******************************************************************************************
// Interfaces
/// <summary>
/// For rooms with a single presentation source, change event
/// </summary>
public interface IHasCurrentSourceInfoChange
{
string CurrentSourceInfoKey { get; set; }
SourceListItem CurrentSourceInfo { get; set; }
event SourceInfoChangeHandler CurrentSourceChange;
}
/// <summary>
/// Defines a class that has a collection of RoutingInputPorts
/// </summary>
public interface IRoutingInputs : IKeyed
{
RoutingPortCollection<RoutingInputPort> InputPorts { get; }
}
/// <summary>
/// Defines a class that has a collection of RoutingOutputPorts
/// </summary>
public interface IRoutingOutputs : IKeyed
{
RoutingPortCollection<RoutingOutputPort> OutputPorts { get; }
}
/// <summary>
/// For fixed-source endpoint devices
/// </summary>
public interface IRoutingSink : IRoutingInputs, IHasCurrentSourceInfoChange
{
}
/// <summary>
/// For fixed-source endpoint devices
/// </summary>
[Obsolete]
public interface IRoutingSinkNoSwitching : IRoutingSink
{
}
/// <summary>
/// Endpoint device like a display, that selects inputs
/// </summary>
public interface IRoutingSinkWithSwitching : IRoutingSink
{
//void ClearRoute();
void ExecuteSwitch(object inputSelector);
}
/// <summary>
/// For devices like RMCs, baluns, other devices with no switching.
/// </summary>
public interface IRoutingInputsOutputs : IRoutingInputs, IRoutingOutputs
{
}
/// <summary>
/// Defines a midpoint device as have internal routing. Any devices in the middle of the
/// signal chain, that do switching, must implement this for routing to work otherwise
/// the routing algorithm will treat the IRoutingInputsOutputs device as a passthrough
/// device.
/// </summary>
public interface IRouting : IRoutingInputsOutputs
{
void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType);
}
public interface IRoutingNumeric : IRouting
{
void ExecuteNumericSwitch(ushort input, ushort output, eRoutingSignalType type);
}
public interface ITxRouting : IRoutingNumeric
{
IntFeedback VideoSourceNumericFeedback { get; }
IntFeedback AudioSourceNumericFeedback { get; }
}
/// <summary>
/// Defines a receiver that has internal routing (DM-RMC-4K-Z-SCALER-C)
/// </summary>
public interface IRmcRouting : IRouting
public interface IRmcRouting : IRoutingNumeric
{
IntFeedback AudioVideoSourceNumericFeedback { get; }
void ExecuteNumericSwitch(ushort input, ushort output, eRoutingSignalType type);
}
/// <summary>
/// Defines an IRoutingOutputs devices as being a source - the start of the chain
/// </summary>
public interface IRoutingSource : IRoutingOutputs
{
}
}
/// <summary>
/// Defines an IRoutingOutputs devices as being a source - the start of the chain
/// </summary>
public interface IRoutingSource : IRoutingOutputs
{
}
}

View File

@@ -16,6 +16,7 @@ using PepperDash.Essentials.Core.Config;
namespace PepperDash.Essentials.DM.AirMedia
{
[Description("Wrapper class for an AM-200 or AM-300")]
public class AirMediaController : CrestronGenericBridgeableBaseDevice, IRoutingInputsOutputs, IIROutputPorts, IComPorts
{
public AmX00 AirMedia { get; private set; }
@@ -51,13 +52,13 @@ namespace PepperDash.Essentials.DM.AirMedia
InputPorts = new RoutingPortCollection<RoutingInputPort>();
OutputPorts = new RoutingPortCollection<RoutingOutputPort>();
InputPorts.Add(new RoutingInputPort(DmPortName.Osd, eRoutingSignalType.Audio | eRoutingSignalType.Video,
InputPorts.Add(new RoutingInputPort(DmPortName.Osd, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.None, new Action(SelectPinPointUxLandingPage), this));
InputPorts.Add(new RoutingInputPort(DmPortName.AirMediaIn, eRoutingSignalType.Audio | eRoutingSignalType.Video,
InputPorts.Add(new RoutingInputPort(DmPortName.AirMediaIn, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.Streaming, new Action(SelectAirMedia), this));
InputPorts.Add(new RoutingInputPort(DmPortName.HdmiIn, eRoutingSignalType.Audio | eRoutingSignalType.Video,
InputPorts.Add(new RoutingInputPort(DmPortName.HdmiIn, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.Hdmi, new Action(SelectHdmiIn), this));
InputPorts.Add(new RoutingInputPort(DmPortName.AirBoardIn, eRoutingSignalType.Video,
@@ -65,10 +66,13 @@ namespace PepperDash.Essentials.DM.AirMedia
if (AirMedia is Am300)
{
InputPorts.Add(new RoutingInputPort(DmPortName.DmIn, eRoutingSignalType.Audio | eRoutingSignalType.Video,
InputPorts.Add(new RoutingInputPort(DmPortName.DmIn, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.DmCat, new Action(SelectDmIn), this));
}
OutputPorts.Add(new RoutingOutputPort(DmPortName.HdmiOut, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.Hdmi, null, this));
AirMedia.AirMedia.AirMediaChange += new Crestron.SimplSharpPro.DeviceSupport.GenericEventHandler(AirMedia_AirMediaChange);
IsInSessionFeedback = new BoolFeedback( new Func<bool>(() => AirMedia.AirMedia.StatusFeedback.UShortValue == 0 ));

View File

@@ -21,7 +21,8 @@ namespace PepperDash.Essentials.DM {
/// Builds a controller for basic DM-RMCs with Com and IR ports and no control functions
///
/// </summary>
public class DmBladeChassisController : CrestronGenericBridgeableBaseDevice, IDmSwitch, IRoutingInputsOutputs, IRouting, IHasFeedback {
public class DmBladeChassisController : CrestronGenericBridgeableBaseDevice, IDmSwitch, IRoutingNumeric
{
public DMChassisPropertiesConfig PropertiesConfig { get; set; }
public Switch Chassis { get; private set; }
@@ -563,14 +564,23 @@ namespace PepperDash.Essentials.DM {
var outCard = input == 0 ? null : Chassis.Outputs[output];
// NOTE THAT BITWISE COMPARISONS - TO CATCH ALL ROUTING TYPES
if ((sigType | eRoutingSignalType.Video) == eRoutingSignalType.Video) {
Chassis.VideoEnter.BoolValue = true;
Chassis.Outputs[output].VideoOut = inCard;
}
if ((sigType | eRoutingSignalType.Video) != eRoutingSignalType.Video) return;
Chassis.VideoEnter.BoolValue = true;
Chassis.Outputs[output].VideoOut = inCard;
}
#endregion
#region IRoutingNumeric Members
public void ExecuteNumericSwitch(ushort inputSelector, ushort outputSelector, eRoutingSignalType sigType)
{
ExecuteSwitch(inputSelector, outputSelector, sigType);
}
#endregion
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
var joinMap = new DmBladeChassisControllerJoinMap(joinStart);
@@ -808,6 +818,7 @@ namespace PepperDash.Essentials.DM {
});
}
}
}
/*

View File

@@ -21,7 +21,7 @@ namespace PepperDash.Essentials.DM
///
/// </summary>
[Description("Wrapper class for all DM-MD chassis variants from 8x8 to 32x32")]
public class DmChassisController : CrestronGenericBridgeableBaseDevice, IDmSwitch, IRoutingInputsOutputs, IRouting, IHasFeedback
public class DmChassisController : CrestronGenericBridgeableBaseDevice, IDmSwitch, IRoutingNumeric
{
public DMChassisPropertiesConfig PropertiesConfig { get; set; }
@@ -1094,6 +1094,15 @@ namespace PepperDash.Essentials.DM
}
#endregion
#region IRoutingNumeric Members
public void ExecuteNumericSwitch(ushort inputSelector, ushort outputSelector, eRoutingSignalType sigType)
{
ExecuteSwitch(inputSelector, outputSelector, sigType);
}
#endregion
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
var joinMap = new DmChassisControllerJoinMap(joinStart);

View File

@@ -18,8 +18,8 @@ using PepperDash.Essentials.DM.Config;
using Feedback = PepperDash.Essentials.Core.Feedback;
namespace PepperDash.Essentials.DM
{
public class DmpsRoutingController : EssentialsBridgeableDevice, IRouting, IHasFeedback
{
public class DmpsRoutingController : EssentialsBridgeableDevice, IRoutingNumeric, IHasFeedback
{
public CrestronControlSystem Dmps { get; set; }
public ISystemControl SystemControl { get; private set; }
@@ -661,8 +661,6 @@ namespace PepperDash.Essentials.DM
}
}
}
///
/// </summary>
void Dmps_DMOutputChange(Switch device, DMOutputEventArgs args)
{
Debug.Console(2, this, "DMOutputChange Output: {0} EventId: {1}", args.Number, args.EventId.ToString());
@@ -724,10 +722,7 @@ namespace PepperDash.Essentials.DM
{
if (RouteOffTimers.ContainsKey(pnt))
return;
RouteOffTimers[pnt] = new CTimer(o =>
{
ExecuteSwitch(0, pnt.Number, pnt.Type);
}, RouteOffTime);
RouteOffTimers[pnt] = new CTimer(o => ExecuteSwitch(0, pnt.Number, pnt.Type), RouteOffTime);
}
#region IRouting Members
@@ -809,6 +804,15 @@ namespace PepperDash.Essentials.DM
}
}
#endregion
#endregion
#region IRoutingNumeric Members
public void ExecuteNumericSwitch(ushort inputSelector, ushort outputSelector, eRoutingSignalType sigType)
{
ExecuteSwitch(inputSelector, outputSelector, sigType);
}
#endregion
}
}

View File

@@ -0,0 +1,405 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Newtonsoft.Json;
using Crestron.SimplSharp;
using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DM;
using PepperDash.Core;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.DM.Config;
using PepperDash.Essentials.Core.Bridges;
using PepperDash.Essentials.Core.Config;
namespace PepperDash.Essentials.DM.Chassis
{
[Description("Wrapper class for all HdMdNxM4E switchers")]
public class HdMdNxM4kEBridgeableController : CrestronGenericBridgeableBaseDevice, IRoutingInputsOutputs, IRoutingNumeric, IHasFeedback
{
private HdMdNxM _Chassis;
private HdMd4x14kE _Chassis4x1;
public Dictionary<uint, string> InputNames { get; set; }
public Dictionary<uint, string> OutputNames { get; set; }
public RoutingPortCollection<RoutingInputPort> InputPorts { get; private set; }
public RoutingPortCollection<RoutingOutputPort> OutputPorts { get; private set; }
public FeedbackCollection<BoolFeedback> VideoInputSyncFeedbacks { get; private set; }
public FeedbackCollection<IntFeedback> VideoOutputRouteFeedbacks { get; private set; }
public FeedbackCollection<StringFeedback> InputNameFeedbacks { get; private set; }
public FeedbackCollection<StringFeedback> OutputNameFeedbacks { get; private set; }
public FeedbackCollection<StringFeedback> OutputRouteNameFeedbacks { get; private set; }
public FeedbackCollection<BoolFeedback> InputHdcpEnableFeedback { get; private set; }
public FeedbackCollection<StringFeedback> DeviceNameFeedback { get; private set; }
public FeedbackCollection<BoolFeedback> AutoRouteFeedback { get; private set; }
#region Constructor
public HdMdNxM4kEBridgeableController(string key, string name, HdMdNxM chassis,
HdMdNxM4kEBridgeablePropertiesConfig props)
: base(key, name, chassis)
{
_Chassis = chassis;
var _props = props;
InputNames = props.Inputs;
OutputNames = props.Outputs;
VideoInputSyncFeedbacks = new FeedbackCollection<BoolFeedback>();
VideoOutputRouteFeedbacks = new FeedbackCollection<IntFeedback>();
InputNameFeedbacks = new FeedbackCollection<StringFeedback>();
OutputNameFeedbacks = new FeedbackCollection<StringFeedback>();
OutputRouteNameFeedbacks = new FeedbackCollection<StringFeedback>();
InputHdcpEnableFeedback = new FeedbackCollection<BoolFeedback>();
DeviceNameFeedback = new FeedbackCollection<StringFeedback>();
AutoRouteFeedback = new FeedbackCollection<BoolFeedback>();
InputPorts = new RoutingPortCollection<RoutingInputPort>();
OutputPorts = new RoutingPortCollection<RoutingOutputPort>();
DeviceNameFeedback.Add(new StringFeedback(this.Name, () => this.Name));
if (_Chassis.NumberOfInputs == 1)
{
_Chassis4x1 = _Chassis as HdMd4x14kE;
AutoRouteFeedback.Add(new BoolFeedback(this.Name + "-" + InputNames[1], () => _Chassis4x1.AutoModeOnFeedback.BoolValue));
}
for (uint i = 1; i <= _Chassis.NumberOfInputs; i++)
{
var inputName = InputNames[i];
_Chassis.Inputs[i].Name.StringValue = inputName;
InputPorts.Add(new RoutingInputPort(inputName, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.Hdmi, i, this));
VideoInputSyncFeedbacks.Add(new BoolFeedback(inputName, () => _Chassis.Inputs[i].VideoDetectedFeedback.BoolValue));
InputNameFeedbacks.Add(new StringFeedback(inputName, () => _Chassis.Inputs[i].Name.StringValue));
InputHdcpEnableFeedback.Add(new BoolFeedback(inputName, () => _Chassis.HdmiInputs[i].HdmiInputPort.HdcpSupportOnFeedback.BoolValue));
}
for (uint i = 1; i <= _Chassis.NumberOfOutputs; i++)
{
var outputName = OutputNames[i];
_Chassis.Outputs[i].Name.StringValue = outputName;
OutputPorts.Add(new RoutingOutputPort(outputName, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.Hdmi, i, this));
VideoOutputRouteFeedbacks.Add(new IntFeedback(outputName, () => (int)_Chassis.Outputs[i].VideoOutFeedback.Number));
OutputNameFeedbacks.Add(new StringFeedback(outputName, () => _Chassis.Outputs[i].Name.StringValue));
OutputRouteNameFeedbacks.Add(new StringFeedback(outputName, () => _Chassis.Outputs[i].VideoOutFeedback.NameFeedback.StringValue));
}
_Chassis.DMInputChange += new DMInputEventHandler(Chassis_DMInputChange);
_Chassis.DMOutputChange += new DMOutputEventHandler(Chassis_DMOutputChange);
AddPostActivationAction(AddFeedbackCollections);
}
#endregion
#region Methods
public void EnableHdcp(uint port)
{
if (port > _Chassis.NumberOfInputs) return;
if (port <= 0) return;
_Chassis.HdmiInputs[port].HdmiInputPort.HdcpSupportOn();
InputHdcpEnableFeedback[InputNames[port]].FireUpdate();
}
public void DisableHdcp(uint port)
{
if (port > _Chassis.NumberOfInputs) return;
if (port <= 0) return;
_Chassis.HdmiInputs[port].HdmiInputPort.HdcpSupportOff();
InputHdcpEnableFeedback[InputNames[port]].FireUpdate();
}
public void EnableAutoRoute()
{
if (_Chassis.NumberOfInputs != 1) return;
if (_Chassis4x1 == null) return;
_Chassis4x1.AutoModeOn();
}
public void DisableAutoRoute()
{
if (_Chassis.NumberOfInputs != 1) return;
if (_Chassis4x1 == null) return;
_Chassis4x1.AutoModeOff();
}
#region PostActivate
public void AddFeedbackCollections()
{
AddCollectionsToList(VideoInputSyncFeedbacks, InputHdcpEnableFeedback);
AddCollectionsToList(VideoOutputRouteFeedbacks);
AddCollectionsToList(InputNameFeedbacks, OutputNameFeedbacks, OutputRouteNameFeedbacks, DeviceNameFeedback);
}
#endregion
#region FeedbackCollection Methods
//Add arrays of collections
public void AddCollectionsToList(params FeedbackCollection<BoolFeedback>[] newFbs)
{
foreach (FeedbackCollection<BoolFeedback> fbCollection in newFbs)
{
foreach (var item in newFbs)
{
AddCollectionToList(item);
}
}
}
public void AddCollectionsToList(params FeedbackCollection<IntFeedback>[] newFbs)
{
foreach (FeedbackCollection<IntFeedback> fbCollection in newFbs)
{
foreach (var item in newFbs)
{
AddCollectionToList(item);
}
}
}
public void AddCollectionsToList(params FeedbackCollection<StringFeedback>[] newFbs)
{
foreach (FeedbackCollection<StringFeedback> fbCollection in newFbs)
{
foreach (var item in newFbs)
{
AddCollectionToList(item);
}
}
}
//Add Collections
public void AddCollectionToList(FeedbackCollection<BoolFeedback> newFbs)
{
foreach (var f in newFbs)
{
if (f == null) continue;
AddFeedbackToList(f);
}
}
public void AddCollectionToList(FeedbackCollection<IntFeedback> newFbs)
{
foreach (var f in newFbs)
{
if (f == null) continue;
AddFeedbackToList(f);
}
}
public void AddCollectionToList(FeedbackCollection<StringFeedback> newFbs)
{
foreach (var f in newFbs)
{
if (f == null) continue;
AddFeedbackToList(f);
}
}
//Add Individual Feedbacks
public void AddFeedbackToList(PepperDash.Essentials.Core.Feedback newFb)
{
if (newFb == null) return;
if (!Feedbacks.Contains(newFb))
{
Feedbacks.Add(newFb);
}
}
#endregion
#region IRouting Members
public void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType)
{
// Try to make switch only when necessary. The unit appears to toggle when already selected.
var current = _Chassis.HdmiOutputs[(uint)outputSelector].VideoOut;
if (current != _Chassis.HdmiInputs[(uint)inputSelector])
_Chassis.HdmiOutputs[(uint)outputSelector].VideoOut = _Chassis.HdmiInputs[(uint)inputSelector];
}
#endregion
#region IRoutingNumeric Members
public void ExecuteNumericSwitch(ushort inputSelector, ushort outputSelector, eRoutingSignalType signalType)
{
ExecuteSwitch(inputSelector, outputSelector, signalType);
}
#endregion
#endregion
#region Bridge Linking
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
var joinMap = new HdMdNxM4kEControllerJoinMap(joinStart);
var joinMapSerialized = JoinMapHelper.GetSerializedJoinMapForDevice(joinMapKey);
if (!string.IsNullOrEmpty(joinMapSerialized))
joinMap = JsonConvert.DeserializeObject<HdMdNxM4kEControllerJoinMap>(joinMapSerialized);
bridge.AddJoinMap(Key, joinMap);
IsOnline.LinkInputSig(trilist.BooleanInput[joinMap.IsOnline.JoinNumber]);
DeviceNameFeedback[this.Name].LinkInputSig(trilist.StringInput[joinMap.Name.JoinNumber]);
if (_Chassis4x1 != null)
{
AutoRouteFeedback[this.Name + "-" + InputNames[1]].LinkInputSig(trilist.BooleanInput[joinMap.EnableAutoRoute.JoinNumber]);
AutoRouteFeedback[this.Name + "-" + InputNames[1]].LinkComplementInputSig(trilist.BooleanInput[joinMap.DisableAutoRoute.JoinNumber]);
}
for (uint i = 1; i <= _Chassis.NumberOfInputs; i++)
{
var joinIndex = i - 1;
//Digital
VideoInputSyncFeedbacks[InputNames[i]].LinkInputSig(trilist.BooleanInput[joinMap.InputSync.JoinNumber + joinIndex]);
InputHdcpEnableFeedback[InputNames[i]].LinkInputSig(trilist.BooleanInput[joinMap.EnableInputHdcp.JoinNumber + joinIndex]);
InputHdcpEnableFeedback[InputNames[i]].LinkComplementInputSig(trilist.BooleanInput[joinMap.DisableInputHdcp.JoinNumber + joinIndex]);
trilist.SetSigTrueAction(joinMap.EnableInputHdcp.JoinNumber + joinIndex, () => EnableHdcp(i));
trilist.SetSigTrueAction(joinMap.DisableInputHdcp.JoinNumber + joinIndex, () => DisableHdcp(i));
//Serial
InputNameFeedbacks[InputNames[i]].LinkInputSig(trilist.StringInput[joinMap.InputName.JoinNumber + joinIndex]);
}
for (uint i = 1; i <= _Chassis.NumberOfOutputs; i++)
{
var joinIndex = i - 1;
//Analog
VideoOutputRouteFeedbacks[OutputNames[i]].LinkInputSig(trilist.UShortInput[joinMap.OutputRoute.JoinNumber + joinIndex]);
trilist.SetUShortSigAction(joinMap.OutputRoute.JoinNumber + joinIndex, (a) => ExecuteSwitch(a, i, eRoutingSignalType.AudioVideo));
//Serial
OutputNameFeedbacks[OutputNames[i]].LinkInputSig(trilist.StringInput[joinMap.OutputName.JoinNumber + joinIndex]);
OutputRouteNameFeedbacks[OutputNames[i]].LinkInputSig(trilist.StringInput[joinMap.OutputRoutedName.JoinNumber + joinIndex]);
}
_Chassis.OnlineStatusChange += new Crestron.SimplSharpPro.OnlineStatusChangeEventHandler(Chassis_OnlineStatusChange);
trilist.OnlineStatusChange += new Crestron.SimplSharpPro.OnlineStatusChangeEventHandler((d, args) =>
{
if (args.DeviceOnLine)
{
foreach (var feedback in Feedbacks)
{
feedback.FireUpdate();
}
}
});
}
#endregion
#region Events
void Chassis_OnlineStatusChange(Crestron.SimplSharpPro.GenericBase currentDevice, Crestron.SimplSharpPro.OnlineOfflineEventArgs args)
{
if (args.DeviceOnLine)
{
for (uint i = 1; i <= _Chassis.NumberOfInputs; i++)
{
_Chassis.Inputs[i].Name.StringValue = InputNames[i];
}
for (uint i = 1; i <= _Chassis.NumberOfOutputs; i++)
{
_Chassis.Outputs[i].Name.StringValue = OutputNames[i];
}
foreach (var feedback in Feedbacks)
{
feedback.FireUpdate();
}
}
}
void Chassis_DMOutputChange(Switch device, DMOutputEventArgs args)
{
if (args.EventId == DMOutputEventIds.VideoOutEventId)
{
foreach (var item in VideoOutputRouteFeedbacks)
{
item.FireUpdate();
}
}
}
void Chassis_DMInputChange(Switch device, DMInputEventArgs args)
{
if (args.EventId == DMInputEventIds.VideoDetectedEventId)
{
foreach (var item in VideoInputSyncFeedbacks)
{
item.FireUpdate();
}
}
}
#endregion
#region Factory
public class HdMdNxM4kEControllerFactory : EssentialsDeviceFactory<HdMdNxM4kEBridgeableController>
{
public HdMdNxM4kEControllerFactory()
{
TypeNames = new List<string>() { "hdmd4x14ke-bridgeable", "hdmd4x24ke", "hdmd6x24ke" };
}
public override EssentialsDevice BuildDevice(DeviceConfig dc)
{
Debug.Console(1, "Factory Attempting to create new HD-MD-NxM-4K-E Device");
var props = JsonConvert.DeserializeObject<HdMdNxM4kEBridgeablePropertiesConfig>(dc.Properties.ToString());
var type = dc.Type.ToLower();
var control = props.Control;
var ipid = control.IpIdInt;
var address = control.TcpSshProperties.Address;
switch (type)
{
case ("hdmd4x14ke-bridgeable"):
return new HdMdNxM4kEBridgeableController(dc.Key, dc.Name, new HdMd4x14kE(ipid, address, Global.ControlSystem), props);
case ("hdmd4x24ke"):
return new HdMdNxM4kEBridgeableController(dc.Key, dc.Name, new HdMd4x24kE(ipid, address, Global.ControlSystem), props);
case ("hdmd6x24ke"):
return new HdMdNxM4kEBridgeableController(dc.Key, dc.Name, new HdMd6x24kE(ipid, address, Global.ControlSystem), props);
default:
return null;
}
}
}
#endregion
}
}

View File

@@ -1,125 +1,128 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
using Crestron.SimplSharpPro.DM;
using PepperDash.Core;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.DM.Config;
namespace PepperDash.Essentials.DM.Chassis
{
public class HdMdNxM4kEController : Device, IRoutingInputsOutputs, IRouting
{
public HdMdNxM Chassis { get; private set; }
public RoutingPortCollection<RoutingInputPort> InputPorts { get; private set; }
public RoutingPortCollection<RoutingOutputPort> OutputPorts { get; private set; }
/// <summary>
///
/// </summary>
/// <param name="key"></param>
/// <param name="name"></param>
/// <param name="chassis"></param>
public HdMdNxM4kEController(string key, string name, HdMdNxM chassis,
HdMdNxM4kEPropertiesConfig props)
: base(key, name)
{
Chassis = chassis;
// logical ports
InputPorts = new RoutingPortCollection<RoutingInputPort>();
for (uint i = 1; i <= 4; i++)
{
InputPorts.Add(new RoutingInputPort("hdmiIn" + i, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, i, this));
}
OutputPorts = new RoutingPortCollection<RoutingOutputPort>();
OutputPorts.Add(new RoutingOutputPort(DmPortName.HdmiOut, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, null, this));
// physical settings
if (props != null && props.Inputs != null)
{
foreach (var kvp in props.Inputs)
{
// strip "hdmiIn"
var inputNum = Convert.ToUInt32(kvp.Key.Substring(6));
var port = chassis.HdmiInputs[inputNum].HdmiInputPort;
// set hdcp disables
if (kvp.Value.DisableHdcp)
{
Debug.Console(0, this, "Configuration disables HDCP support on {0}", kvp.Key);
port.HdcpSupportOff();
}
else
port.HdcpSupportOn();
}
}
}
public override bool CustomActivate()
{
var result = Chassis.Register();
if (result != Crestron.SimplSharpPro.eDeviceRegistrationUnRegistrationResponse.Success)
{
Debug.Console(0, this, "Device registration failed: {0}", result);
return false;
}
return base.CustomActivate();
}
#region IRouting Members
public void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType)
{
// Try to make switch only when necessary. The unit appears to toggle when already selected.
var current = Chassis.HdmiOutputs[1].VideoOut;
if(current != Chassis.HdmiInputs[(uint)inputSelector])
Chassis.HdmiOutputs[1].VideoOut = Chassis.HdmiInputs[(uint)inputSelector];
}
#endregion
/////////////////////////////////////////////////////
/// <summary>
///
/// </summary>
/// <param name="key"></param>
/// <param name="name"></param>
/// <param name="type"></param>
/// <param name="properties"></param>
/// <returns></returns>
public static HdMdNxM4kEController GetController(string key, string name,
string type, HdMdNxM4kEPropertiesConfig properties)
{
try
{
var ipid = properties.Control.IpIdInt;
var address = properties.Control.TcpSshProperties.Address;
type = type.ToLower();
if (type == "hdmd4x14ke")
{
var chassis = new HdMd4x14kE(ipid, address, Global.ControlSystem);
return new HdMdNxM4kEController(key, name, chassis, properties);
}
return null;
}
catch (Exception e)
{
Debug.Console(0, "ERROR Creating device key {0}: \r{1}", key, e);
return null;
}
}
}
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
using Crestron.SimplSharpPro.DM;
using PepperDash.Core;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.DM.Config;
namespace PepperDash.Essentials.DM.Chassis
{
public class HdMdNxM4kEController : Device, IRoutingInputsOutputs, IRouting
{
public HdMdNxM Chassis { get; private set; }
public RoutingPortCollection<RoutingInputPort> InputPorts { get; private set; }
public RoutingPortCollection<RoutingOutputPort> OutputPorts { get; private set; }
/// <summary>
///
/// </summary>
/// <param name="key"></param>
/// <param name="name"></param>
/// <param name="chassis"></param>
public HdMdNxM4kEController(string key, string name, HdMdNxM chassis,
HdMdNxM4kEPropertiesConfig props)
: base(key, name)
{
Chassis = chassis;
// logical ports
InputPorts = new RoutingPortCollection<RoutingInputPort>();
for (uint i = 1; i <= 4; i++)
{
InputPorts.Add(new RoutingInputPort("hdmiIn" + i, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, i, this));
}
OutputPorts = new RoutingPortCollection<RoutingOutputPort>();
OutputPorts.Add(new RoutingOutputPort(DmPortName.HdmiOut, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, null, this));
// physical settings
if (props != null && props.Inputs != null)
{
foreach (var kvp in props.Inputs)
{
// strip "hdmiIn"
var inputNum = Convert.ToUInt32(kvp.Key.Substring(6));
var port = chassis.HdmiInputs[inputNum].HdmiInputPort;
// set hdcp disables
if (kvp.Value.DisableHdcp)
{
Debug.Console(0, this, "Configuration disables HDCP support on {0}", kvp.Key);
port.HdcpSupportOff();
}
else
port.HdcpSupportOn();
}
}
}
public override bool CustomActivate()
{
var result = Chassis.Register();
if (result != Crestron.SimplSharpPro.eDeviceRegistrationUnRegistrationResponse.Success)
{
Debug.Console(0, this, "Device registration failed: {0}", result);
return false;
}
return base.CustomActivate();
}
#region IRouting Members
public void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType)
{
// Try to make switch only when necessary. The unit appears to toggle when already selected.
var current = Chassis.HdmiOutputs[1].VideoOut;
if (current != Chassis.HdmiInputs[(uint)inputSelector])
Chassis.HdmiOutputs[1].VideoOut = Chassis.HdmiInputs[(uint)inputSelector];
}
#endregion
/////////////////////////////////////////////////////
/// <summary>
///
/// </summary>
/// <param name="key"></param>
/// <param name="name"></param>
/// <param name="type"></param>
/// <param name="properties"></param>
/// <returns></returns>
public static HdMdNxM4kEController GetController(string key, string name,
string type, HdMdNxM4kEPropertiesConfig properties)
{
try
{
var ipid = properties.Control.IpIdInt;
var address = properties.Control.TcpSshProperties.Address;
type = type.ToLower();
if (type == "hdmd4x14ke")
{
Debug.Console(0, @"The 'hdmd4x14ke' device is not an Essentials Bridgeable device.
If an essentials Bridgeable Device is required, use the 'hdmd4x14ke-bridgeable' type");
var chassis = new HdMd4x14kE(ipid, address, Global.ControlSystem);
return new HdMdNxM4kEController(key, name, chassis, properties);
}
return null;
}
catch (Exception e)
{
Debug.Console(0, "ERROR Creating device key {0}: \r{1}", key, e);
return null;
}
}
}
}

View File

@@ -8,16 +8,28 @@ using Newtonsoft.Json;
using PepperDash.Core;
namespace PepperDash.Essentials.DM.Config
{
/// <summary>
/// Defines the properties section of HdMdNxM boxes
/// </summary>
public class HdMdNxM4kEPropertiesConfig
{
[JsonProperty("control")]
public ControlPropertiesConfig Control { get; set; }
[JsonProperty("inputs")]
public Dictionary<string, InputPropertiesConfig> Inputs { get; set; }
}
{
/// <summary>
/// Defines the properties section of HdMdNxM boxes
/// </summary>
public class HdMdNxM4kEPropertiesConfig
{
[JsonProperty("control")]
public ControlPropertiesConfig Control { get; set; }
[JsonProperty("inputs")]
public Dictionary<string, InputPropertiesConfig> Inputs { get; set; }
}
public class HdMdNxM4kEBridgeablePropertiesConfig
{
[JsonProperty("control")]
public ControlPropertiesConfig Control { get; set; }
[JsonProperty("inputs")]
public Dictionary<uint, string> Inputs { get; set; }
[JsonProperty("outputs")]
public Dictionary<uint, string> Outputs { get; set; }
}
}

View File

@@ -1,15 +1,16 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
namespace PepperDash.Essentials.DM.Config
{
public class InputPropertiesConfig
{
public string Name { get; set; }
public bool DisableHdcp { get; set; }
}
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
namespace PepperDash.Essentials.DM.Config
{
public class InputPropertiesConfig
{
public string Name { get; set; }
public bool DisableHdcp { get; set; }
}
}

View File

@@ -18,9 +18,7 @@ using Crestron.SimplSharpPro.DeviceSupport;
namespace PepperDash.Essentials.DM.Endpoints.DGEs
{
/// <summary>
/// Wrapper class for DGE-100 and DM-DGE-200-C
/// </summary>
[Description("Wrapper class for DGE-100")]
public class Dge100Controller : CrestronGenericBaseDevice, IComPorts, IIROutputPorts, IHasBasicTriListWithSmartObject, ICec
{
private readonly Dge100 _dge;

View File

@@ -20,6 +20,7 @@ namespace PepperDash.Essentials.DM.Endpoints.DGEs
/// <summary>
/// Wrapper class for DGE-100 and DM-DGE-200-C
/// </summary>
[Description("Wrapper class for DM-DGE-200-C")]
public class DmDge200CController : Dge100Controller, IRoutingInputsOutputs
{
private readonly DmDge200C _dge;

View File

@@ -11,7 +11,8 @@ namespace PepperDash.Essentials.DM
/// <summary>
/// Builds a controller for basic DM-RMCs with Com and IR ports and no control functions
///
/// </summary>
/// </summary>
[Description("Wrapper Class for DM-RMC-100-S")]
public class DmRmc100SController : DmRmcControllerBase, IRoutingInputsOutputs,
IIROutputPorts, IComPorts, ICec
{

View File

@@ -11,7 +11,8 @@ namespace PepperDash.Essentials.DM
/// <summary>
/// Builds a controller for basic DM-RMCs with Com and IR ports and no control functions
///
/// </summary>
/// </summary>
[Description("Wrapper Class for DM-RMC-150-S")]
public class DmRmc150SController : DmRmcControllerBase, IRoutingInputsOutputs,
IIROutputPorts, IComPorts, ICec
{

View File

@@ -12,8 +12,9 @@ namespace PepperDash.Essentials.DM
/// <summary>
/// Builds a controller for basic DM-RMCs with Com and IR ports and no control functions
///
/// </summary>
public class DmRmc200CController : DmRmcControllerBase, IRoutingInputsOutputs,
/// </summary>
[Description("Wrapper Class for DM-RMC-200-C")]
public class DmRmc200CController : DmRmcControllerBase, IRoutingInputsOutputs,
IIROutputPorts, IComPorts, ICec
{
private readonly DmRmc200C _rmc;

View File

@@ -12,7 +12,8 @@ namespace PepperDash.Essentials.DM
/// <summary>
/// Builds a controller for basic DM-RMCs with Com and IR ports and no control functions
///
/// </summary>
/// </summary>
[Description("Wrapper Class for DM-RMC-200-S2")]
public class DmRmc200S2Controller : DmRmcControllerBase, IRoutingInputsOutputs,
IIROutputPorts, IComPorts, ICec
{

View File

@@ -12,8 +12,9 @@ namespace PepperDash.Essentials.DM
/// <summary>
/// Builds a controller for basic DM-RMCs with Com and IR ports and no control functions
///
/// </summary>
public class DmRmc200SController : DmRmcControllerBase, IRoutingInputsOutputs,
/// </summary>
[Description("Wrapper Class for DM-RMC-200-S")]
public class DmRmc200SController : DmRmcControllerBase, IRoutingInputsOutputs,
IIROutputPorts, IComPorts, ICec
{
private readonly DmRmc200S _rmc;

View File

@@ -12,8 +12,9 @@ namespace PepperDash.Essentials.DM
/// <summary>
/// Builds a controller for basic DM-RMCs with Com and IR ports and no control functions
///
/// </summary>
public class DmRmc4kScalerCController : DmRmcControllerBase, IRoutingInputsOutputs, IBasicVolumeWithFeedback,
/// </summary>
[Description("Wrapper Class for DM-RMC-4K-SCALER-C")]
public class DmRmc4kScalerCController : DmRmcControllerBase, IRoutingInputsOutputs, IBasicVolumeWithFeedback,
IIROutputPorts, IComPorts, ICec, IRelayPorts
{
private readonly DmRmc4kScalerC _rmc;

View File

@@ -6,7 +6,9 @@ using PepperDash.Essentials.Core;
namespace PepperDash.Essentials.DM
{
{
[Description("Wrapper Class for DM-RMC-4K-100-C-1G")]
public class DmRmc4k100C1GController : DmHdBaseTControllerBase, IRoutingInputsOutputs,
IIROutputPorts, IComPorts, ICec
{

View File

@@ -12,7 +12,8 @@ namespace PepperDash.Essentials.DM
/// <summary>
/// Builds a controller for basic DM-RMCs with Com and IR ports and no control functions
///
/// </summary>
/// </summary>
[Description("Wrapper Class for DM-RMC-4K-SCALER-C-DSP")]
public class DmRmc4kScalerCDspController : DmRmcControllerBase, IRoutingInputsOutputs, IBasicVolumeWithFeedback,
IIROutputPorts, IComPorts, ICec, IRelayPorts
{

View File

@@ -7,7 +7,8 @@ using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Bridges;
namespace PepperDash.Essentials.DM
{
{
[Description("Wrapper Class for DM-RMC-4K-Z-100-C")]
public class DmRmc4kZ100CController : DmRmcX100CController
{
private readonly DmRmc4kz100C _rmc;

View File

@@ -11,6 +11,7 @@ using PepperDash.Core;
namespace PepperDash.Essentials.DM
{
[Description("Wrapper Class for DM-RMC-4K-Z-SCALER-C")]
public class DmRmc4kZScalerCController : DmRmcControllerBase, IRmcRouting,
IIROutputPorts, IComPorts, ICec
{

View File

@@ -12,8 +12,9 @@ namespace PepperDash.Essentials.DM
/// <summary>
/// Builds a controller for basic DM-RMCs with Com and IR ports and no control functions
///
/// </summary>
public class DmRmcScalerCController : DmRmcControllerBase, IRoutingInputsOutputs,
/// </summary>
[Description("Wrapper Class for DM-RMC-SCALER-C")]
public class DmRmcScalerCController : DmRmcControllerBase, IRoutingInputsOutputs,
IIROutputPorts, IComPorts, ICec
{
private readonly DmRmcScalerC _rmc;

View File

@@ -12,7 +12,8 @@ namespace PepperDash.Essentials.DM
/// <summary>
/// Builds a controller for basic DM-RMCs with Com and IR ports and no control functions
///
/// </summary>
/// </summary>
[Description("Wrapper Class for DM-RMC-SCALER-S2")]
public class DmRmcScalerS2Controller : DmRmcControllerBase, IRoutingInputsOutputs,
IIROutputPorts, IComPorts, ICec
{

View File

@@ -12,7 +12,8 @@ namespace PepperDash.Essentials.DM
/// <summary>
/// Builds a controller for basic DM-RMCs with Com and IR ports and no control functions
///
/// </summary>
/// </summary>
[Description("Wrapper Class for DM-RMC-SCALER-S")]
public class DmRmcScalerSController : DmRmcControllerBase, IRoutingInputsOutputs,
IIROutputPorts, IComPorts, ICec
{

View File

@@ -11,8 +11,9 @@ namespace PepperDash.Essentials.DM
/// <summary>
/// Builds a controller for basic DM-RMCs (both 4K and non-4K) with Com and IR ports and no control functions
///
/// </summary>
public class DmRmcX100CController : DmRmcControllerBase, IRoutingInputsOutputs,
/// </summary>
[Description("Wrapper Class for DM-RMC-4K-100-C & DM-RMC-100-C")]
public class DmRmcX100CController : DmRmcControllerBase, IRoutingInputsOutputs,
IIROutputPorts, IComPorts, ICec
{
private readonly DmRmc100C _rmc;

View File

@@ -16,7 +16,7 @@ namespace PepperDash.Essentials.DM
/// <summary>
/// Controller class for all DM-TX-201C/S/F transmitters
/// </summary>
[Description("Wrapper class for DM-TX-200-C Endpoint")]
[Description("Wrapper class for DM-TX-200-C")]
public class DmTx200Controller : DmTxControllerBase, ITxRouting, IHasFreeRun, IVgaBrightnessContrastControls
{
public DmTx200C2G Tx { get; private set; }

View File

@@ -14,7 +14,7 @@ namespace PepperDash.Essentials.DM
/// <summary>
/// Controller class for all DM-TX-201C/S/F transmitters
/// </summary>
[Description("Wrapper class for DM-TX-201-C Endpoint")]
[Description("Wrapper class for DM-TX-201-C")]
public class DmTx201CController : DmTxControllerBase, ITxRouting, IHasFreeRun, IVgaBrightnessContrastControls
{
public DmTx201C Tx { get; private set; }

View File

@@ -14,7 +14,7 @@ namespace PepperDash.Essentials.DM
/// <summary>
/// Controller class for all DM-TX-201S/F transmitters
/// </summary>
[Description("Wrapper class for DM-TX-201-S/F Endpoint")]
[Description("Wrapper class for DM-TX-201-S/F")]
public class DmTx201SController : DmTxControllerBase, ITxRouting, IHasFreeRun, IVgaBrightnessContrastControls
{
public DmTx201S Tx { get; private set; }

View File

@@ -17,8 +17,9 @@ using PepperDash.Essentials.DM.Config;
namespace PepperDash.Essentials.DM
{
using eVst = DmTx401C.eSourceSelection;
using eVst = DmTx401C.eSourceSelection;
[Description("Wrapper class for DM-TX-401-C")]
public class DmTx401CController : DmTxControllerBase, ITxRouting, IIROutputPorts, IComPorts, IHasFreeRun, IVgaBrightnessContrastControls
{
public DmTx401C Tx { get; private set; }

View File

@@ -9,8 +9,9 @@ using PepperDash.Essentials.Core.Bridges;
namespace PepperDash.Essentials.DM
{
using eVst = eX02VideoSourceType;
using eAst = eX02AudioSourceType;
using eAst = eX02AudioSourceType;
[Description("Wrapper class for DM-TX-4K-100-C-1G")]
public class DmTx4k100Controller : DmTxControllerBase, IRoutingInputsOutputs,
IIROutputPorts, IComPorts, ICec
{

View File

@@ -1,367 +1,369 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
using Crestron.SimplSharpPro;
//using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DM;
using Crestron.SimplSharpPro.DM.Endpoints;
using Crestron.SimplSharpPro.DM.Endpoints.Transmitters;
using PepperDash.Core;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Bridges;
using PepperDash.Essentials.DM.Config;
namespace PepperDash.Essentials.DM
{
using eVst = Crestron.SimplSharpPro.DeviceSupport.eX02VideoSourceType;
using eAst = Crestron.SimplSharpPro.DeviceSupport.eX02AudioSourceType;
public class DmTx4k202CController : DmTxControllerBase, ITxRouting, IHasFeedback,
IIROutputPorts, IComPorts
{
public DmTx4k202C Tx { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiIn1 { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiIn2 { get; private set; }
public RoutingOutputPort DmOut { get; private set; }
public RoutingOutputPort HdmiLoopOut { get; private set; }
public override StringFeedback ActiveVideoInputFeedback { get; protected set; }
public IntFeedback VideoSourceNumericFeedback { get; protected set; }
public IntFeedback AudioSourceNumericFeedback { get; protected set; }
public IntFeedback HdmiIn1HdcpCapabilityFeedback { get; protected set; }
public IntFeedback HdmiIn2HdcpCapabilityFeedback { get; protected set; }
public BoolFeedback Hdmi1VideoSyncFeedback { get; protected set; }
public BoolFeedback Hdmi2VideoSyncFeedback { get; protected set; }
//public override IntFeedback HdcpSupportAllFeedback { get; protected set; }
//public override ushort HdcpSupportCapability { get; protected set; }
/// <summary>
/// Helps get the "real" inputs, including when in Auto
/// </summary>
public Crestron.SimplSharpPro.DeviceSupport.eX02VideoSourceType ActualActiveVideoInput
{
get
{
if (Tx.VideoSourceFeedback != eVst.Auto)
return Tx.VideoSourceFeedback;
else // auto
{
if (Tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue)
return eVst.Hdmi1;
else if (Tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue)
return eVst.Hdmi2;
else
return eVst.AllDisabled;
}
}
}
public RoutingPortCollection<RoutingInputPort> InputPorts
{
get
{
return new RoutingPortCollection<RoutingInputPort>
{
HdmiIn1,
HdmiIn2,
AnyVideoInput
};
}
}
public RoutingPortCollection<RoutingOutputPort> OutputPorts
{
get
{
return new RoutingPortCollection<RoutingOutputPort> { DmOut, HdmiLoopOut };
}
}
public DmTx4k202CController(string key, string name, DmTx4k202C tx)
: base(key, name, tx)
{
Tx = tx;
HdmiIn1 = new RoutingInputPortWithVideoStatuses(DmPortName.HdmiIn1,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.Hdmi, eVst.Hdmi1, this,
VideoStatusHelper.GetHdmiInputStatusFuncs(tx.HdmiInputs[1]));
HdmiIn2 = new RoutingInputPortWithVideoStatuses(DmPortName.HdmiIn2,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.Hdmi, eVst.Hdmi2, this,
VideoStatusHelper.GetHdmiInputStatusFuncs(tx.HdmiInputs[2]));
ActiveVideoInputFeedback = new StringFeedback("ActiveVideoInput",
() => ActualActiveVideoInput.ToString());
Tx.HdmiInputs[1].InputStreamChange += InputStreamChangeEvent;
Tx.HdmiInputs[2].InputStreamChange += InputStreamChangeEvent;
Tx.BaseEvent += Tx_BaseEvent;
VideoSourceNumericFeedback = new IntFeedback(() => (int)Tx.VideoSourceFeedback);
AudioSourceNumericFeedback = new IntFeedback(() => (int)Tx.AudioSourceFeedback);
HdmiIn1HdcpCapabilityFeedback = new IntFeedback("HdmiIn1HdcpCapability", () => (int)tx.HdmiInputs[1].HdcpCapabilityFeedback);
HdmiIn2HdcpCapabilityFeedback = new IntFeedback("HdmiIn2HdcpCapability", () => (int)tx.HdmiInputs[2].HdcpCapabilityFeedback);
HdcpSupportCapability = eHdcpCapabilityType.Hdcp2_2Support;
Hdmi1VideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue);
Hdmi2VideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue);
var combinedFuncs = new VideoStatusFuncsWrapper
{
HdcpActiveFeedbackFunc = () =>
(ActualActiveVideoInput == eVst.Hdmi1
&& tx.HdmiInputs[1].VideoAttributes.HdcpActiveFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Hdmi2
&& tx.HdmiInputs[2].VideoAttributes.HdcpActiveFeedback.BoolValue),
HdcpStateFeedbackFunc = () =>
{
if (ActualActiveVideoInput == eVst.Hdmi1)
return tx.HdmiInputs[1].VideoAttributes.HdcpStateFeedback.ToString();
if (ActualActiveVideoInput == eVst.Hdmi2)
return tx.HdmiInputs[2].VideoAttributes.HdcpStateFeedback.ToString();
return "";
},
VideoResolutionFeedbackFunc = () =>
{
if (ActualActiveVideoInput == eVst.Hdmi1)
return tx.HdmiInputs[1].VideoAttributes.GetVideoResolutionString();
if (ActualActiveVideoInput == eVst.Hdmi2)
return tx.HdmiInputs[2].VideoAttributes.GetVideoResolutionString();
return "";
},
VideoSyncFeedbackFunc = () =>
(ActualActiveVideoInput == eVst.Hdmi1
&& tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Hdmi2
&& tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue)
};
AnyVideoInput = new RoutingInputPortWithVideoStatuses(DmPortName.AnyVideoIn,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.None, 0, this, combinedFuncs);
DmOut = new RoutingOutputPort(DmPortName.DmOut, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.DmCat, null, this);
HdmiLoopOut = new RoutingOutputPort(DmPortName.HdmiLoopOut, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, null, this);
AddToFeedbackList(ActiveVideoInputFeedback, VideoSourceNumericFeedback, AudioSourceNumericFeedback,
AnyVideoInput.VideoStatus.HasVideoStatusFeedback, AnyVideoInput.VideoStatus.HdcpActiveFeedback,
AnyVideoInput.VideoStatus.HdcpStateFeedback, AnyVideoInput.VideoStatus.VideoResolutionFeedback,
AnyVideoInput.VideoStatus.VideoSyncFeedback, HdmiIn1HdcpCapabilityFeedback, HdmiIn2HdcpCapabilityFeedback,
Hdmi1VideoSyncFeedback, Hdmi2VideoSyncFeedback);
// Set Ports for CEC
HdmiIn1.Port = Tx.HdmiInputs[1];
HdmiIn2.Port = Tx.HdmiInputs[2];
HdmiLoopOut.Port = Tx.HdmiOutput;
DmOut.Port = Tx.DmOutput;
}
public override bool CustomActivate()
{
// Link up all of these damned events to the various RoutingPorts via a helper handler
Tx.HdmiInputs[1].InputStreamChange += (o, a) => FowardInputStreamChange(HdmiIn1, a.EventId);
Tx.HdmiInputs[1].VideoAttributes.AttributeChange += (o, a) => ForwardVideoAttributeChange(HdmiIn1, a.EventId);
Tx.HdmiInputs[2].InputStreamChange += (o, a) => FowardInputStreamChange(HdmiIn2, a.EventId);
Tx.HdmiInputs[2].VideoAttributes.AttributeChange += (o, a) => ForwardVideoAttributeChange(HdmiIn2, a.EventId);
// Base does register and sets up comm monitoring.
return base.CustomActivate();
}
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
var joinMap = GetDmTxJoinMap(joinStart, joinMapKey);
if (Hdmi1VideoSyncFeedback != null)
{
Hdmi1VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input1VideoSyncStatus.JoinNumber]);
}
if (Hdmi2VideoSyncFeedback != null)
{
Hdmi2VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input2VideoSyncStatus.JoinNumber]);
}
LinkDmTxToApi(this, trilist, joinMap, bridge);
}
public void ExecuteNumericSwitch(ushort input, ushort output, eRoutingSignalType type)
{
Debug.Console(2, this, "Executing Numeric Switch to input {0}.", input);
switch (type)
{
case eRoutingSignalType.Video:
switch (input)
{
case 0:
{
ExecuteSwitch(eVst.Auto, null, type);
break;
}
case 1:
{
ExecuteSwitch(HdmiIn1.Selector, null, type);
break;
}
case 2:
{
ExecuteSwitch(HdmiIn2.Selector, null, type);
break;
}
case 3:
{
ExecuteSwitch(eVst.AllDisabled, null, type);
break;
}
}
break;
case eRoutingSignalType.Audio:
switch (input)
{
case 0:
{
ExecuteSwitch(eAst.Auto, null, type);
break;
}
case 1:
{
ExecuteSwitch(eAst.Hdmi1, null, type);
break;
}
case 2:
{
ExecuteSwitch(eAst.Hdmi2, null, type);
break;
}
case 3:
{
ExecuteSwitch(eAst.AllDisabled, null, type);
break;
}
}
break;
}
}
public void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType)
{
if ((signalType | eRoutingSignalType.Video) == eRoutingSignalType.Video)
Tx.VideoSource = (eVst)inputSelector;
if ((signalType | eRoutingSignalType.Audio) == eRoutingSignalType.Audio)
Tx.AudioSource = (eAst)inputSelector;
}
void InputStreamChangeEvent(EndpointInputStream inputStream, EndpointInputStreamEventArgs args)
{
Debug.Console(2, "{0} event {1} stream {2}", this.Tx.ToString(), inputStream.ToString(), args.EventId.ToString());
switch (args.EventId)
{
case EndpointInputStreamEventIds.HdcpSupportOffFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.HdcpSupportOnFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) Hdmi1VideoSyncFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) Hdmi2VideoSyncFeedback.FireUpdate();
break;
}
}
void Tx_BaseEvent(GenericBase device, BaseEventArgs args)
{
var id = args.EventId;
Debug.Console(2, this, "EventId {0}", args.EventId);
switch (id)
{
case EndpointTransmitterBase.VideoSourceFeedbackEventId:
Debug.Console(2, this, " Video Source: {0}", Tx.VideoSourceFeedback);
ActiveVideoInputFeedback.FireUpdate();
VideoSourceNumericFeedback.FireUpdate();
ActiveVideoInputFeedback.FireUpdate();
break;
case EndpointTransmitterBase.AudioSourceFeedbackEventId:
Debug.Console(2, this, " Audio Source : {0}", Tx.AudioSourceFeedback);
AudioSourceNumericFeedback.FireUpdate();
break;
}
}
/// <summary>
/// Relays the input stream change to the appropriate RoutingInputPort.
/// </summary>
void FowardInputStreamChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
if (eventId != EndpointInputStreamEventIds.SyncDetectedFeedbackEventId)
{
return;
}
inputPort.VideoStatus.VideoSyncFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoSyncFeedback.FireUpdate();
}
/// <summary>
/// Relays the VideoAttributes change to a RoutingInputPort
/// </summary>
void ForwardVideoAttributeChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
//// LOCATION: Crestron.SimplSharpPro.DM.VideoAttributeEventIds
//Debug.Console(2, this, "VideoAttributes_AttributeChange event id={0} from {1}",
// args.EventId, (sender as VideoAttributesEnhanced).Owner.GetType());
switch (eventId)
{
case VideoAttributeEventIds.HdcpActiveFeedbackEventId:
inputPort.VideoStatus.HdcpActiveFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpActiveFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HdcpStateFeedbackEventId:
inputPort.VideoStatus.HdcpStateFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpStateFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HorizontalResolutionFeedbackEventId:
case VideoAttributeEventIds.VerticalResolutionFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
case VideoAttributeEventIds.FramesPerSecondFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
}
}
#region IIROutputPorts Members
public CrestronCollection<IROutputPort> IROutputPorts { get { return Tx.IROutputPorts; } }
public int NumberOfIROutputPorts { get { return Tx.NumberOfIROutputPorts; } }
#endregion
#region IComPorts Members
public CrestronCollection<ComPort> ComPorts { get { return Tx.ComPorts; } }
public int NumberOfComPorts { get { return Tx.NumberOfComPorts; } }
#endregion
}
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
using Crestron.SimplSharpPro;
//using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DM;
using Crestron.SimplSharpPro.DM.Endpoints;
using Crestron.SimplSharpPro.DM.Endpoints.Transmitters;
using PepperDash.Core;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Bridges;
using PepperDash.Essentials.DM.Config;
namespace PepperDash.Essentials.DM
{
using eVst = Crestron.SimplSharpPro.DeviceSupport.eX02VideoSourceType;
using eAst = Crestron.SimplSharpPro.DeviceSupport.eX02AudioSourceType;
[Description("Wrapper class for DM-TX-4K-202-C")]
public class DmTx4k202CController : DmTxControllerBase, ITxRouting, IHasFeedback,
IIROutputPorts, IComPorts
{
public DmTx4k202C Tx { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiIn1 { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiIn2 { get; private set; }
public RoutingOutputPort DmOut { get; private set; }
public RoutingOutputPort HdmiLoopOut { get; private set; }
public override StringFeedback ActiveVideoInputFeedback { get; protected set; }
public IntFeedback VideoSourceNumericFeedback { get; protected set; }
public IntFeedback AudioSourceNumericFeedback { get; protected set; }
public IntFeedback HdmiIn1HdcpCapabilityFeedback { get; protected set; }
public IntFeedback HdmiIn2HdcpCapabilityFeedback { get; protected set; }
public BoolFeedback Hdmi1VideoSyncFeedback { get; protected set; }
public BoolFeedback Hdmi2VideoSyncFeedback { get; protected set; }
//public override IntFeedback HdcpSupportAllFeedback { get; protected set; }
//public override ushort HdcpSupportCapability { get; protected set; }
/// <summary>
/// Helps get the "real" inputs, including when in Auto
/// </summary>
public Crestron.SimplSharpPro.DeviceSupport.eX02VideoSourceType ActualActiveVideoInput
{
get
{
if (Tx.VideoSourceFeedback != eVst.Auto)
return Tx.VideoSourceFeedback;
else // auto
{
if (Tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue)
return eVst.Hdmi1;
else if (Tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue)
return eVst.Hdmi2;
else
return eVst.AllDisabled;
}
}
}
public RoutingPortCollection<RoutingInputPort> InputPorts
{
get
{
return new RoutingPortCollection<RoutingInputPort>
{
HdmiIn1,
HdmiIn2,
AnyVideoInput
};
}
}
public RoutingPortCollection<RoutingOutputPort> OutputPorts
{
get
{
return new RoutingPortCollection<RoutingOutputPort> { DmOut, HdmiLoopOut };
}
}
public DmTx4k202CController(string key, string name, DmTx4k202C tx)
: base(key, name, tx)
{
Tx = tx;
HdmiIn1 = new RoutingInputPortWithVideoStatuses(DmPortName.HdmiIn1,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.Hdmi, eVst.Hdmi1, this,
VideoStatusHelper.GetHdmiInputStatusFuncs(tx.HdmiInputs[1]));
HdmiIn2 = new RoutingInputPortWithVideoStatuses(DmPortName.HdmiIn2,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.Hdmi, eVst.Hdmi2, this,
VideoStatusHelper.GetHdmiInputStatusFuncs(tx.HdmiInputs[2]));
ActiveVideoInputFeedback = new StringFeedback("ActiveVideoInput",
() => ActualActiveVideoInput.ToString());
Tx.HdmiInputs[1].InputStreamChange += InputStreamChangeEvent;
Tx.HdmiInputs[2].InputStreamChange += InputStreamChangeEvent;
Tx.BaseEvent += Tx_BaseEvent;
VideoSourceNumericFeedback = new IntFeedback(() => (int)Tx.VideoSourceFeedback);
AudioSourceNumericFeedback = new IntFeedback(() => (int)Tx.AudioSourceFeedback);
HdmiIn1HdcpCapabilityFeedback = new IntFeedback("HdmiIn1HdcpCapability", () => (int)tx.HdmiInputs[1].HdcpCapabilityFeedback);
HdmiIn2HdcpCapabilityFeedback = new IntFeedback("HdmiIn2HdcpCapability", () => (int)tx.HdmiInputs[2].HdcpCapabilityFeedback);
HdcpSupportCapability = eHdcpCapabilityType.Hdcp2_2Support;
Hdmi1VideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue);
Hdmi2VideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue);
var combinedFuncs = new VideoStatusFuncsWrapper
{
HdcpActiveFeedbackFunc = () =>
(ActualActiveVideoInput == eVst.Hdmi1
&& tx.HdmiInputs[1].VideoAttributes.HdcpActiveFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Hdmi2
&& tx.HdmiInputs[2].VideoAttributes.HdcpActiveFeedback.BoolValue),
HdcpStateFeedbackFunc = () =>
{
if (ActualActiveVideoInput == eVst.Hdmi1)
return tx.HdmiInputs[1].VideoAttributes.HdcpStateFeedback.ToString();
if (ActualActiveVideoInput == eVst.Hdmi2)
return tx.HdmiInputs[2].VideoAttributes.HdcpStateFeedback.ToString();
return "";
},
VideoResolutionFeedbackFunc = () =>
{
if (ActualActiveVideoInput == eVst.Hdmi1)
return tx.HdmiInputs[1].VideoAttributes.GetVideoResolutionString();
if (ActualActiveVideoInput == eVst.Hdmi2)
return tx.HdmiInputs[2].VideoAttributes.GetVideoResolutionString();
return "";
},
VideoSyncFeedbackFunc = () =>
(ActualActiveVideoInput == eVst.Hdmi1
&& tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Hdmi2
&& tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue)
};
AnyVideoInput = new RoutingInputPortWithVideoStatuses(DmPortName.AnyVideoIn,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.None, 0, this, combinedFuncs);
DmOut = new RoutingOutputPort(DmPortName.DmOut, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.DmCat, null, this);
HdmiLoopOut = new RoutingOutputPort(DmPortName.HdmiLoopOut, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, null, this);
AddToFeedbackList(ActiveVideoInputFeedback, VideoSourceNumericFeedback, AudioSourceNumericFeedback,
AnyVideoInput.VideoStatus.HasVideoStatusFeedback, AnyVideoInput.VideoStatus.HdcpActiveFeedback,
AnyVideoInput.VideoStatus.HdcpStateFeedback, AnyVideoInput.VideoStatus.VideoResolutionFeedback,
AnyVideoInput.VideoStatus.VideoSyncFeedback, HdmiIn1HdcpCapabilityFeedback, HdmiIn2HdcpCapabilityFeedback,
Hdmi1VideoSyncFeedback, Hdmi2VideoSyncFeedback);
// Set Ports for CEC
HdmiIn1.Port = Tx.HdmiInputs[1];
HdmiIn2.Port = Tx.HdmiInputs[2];
HdmiLoopOut.Port = Tx.HdmiOutput;
DmOut.Port = Tx.DmOutput;
}
public override bool CustomActivate()
{
// Link up all of these damned events to the various RoutingPorts via a helper handler
Tx.HdmiInputs[1].InputStreamChange += (o, a) => FowardInputStreamChange(HdmiIn1, a.EventId);
Tx.HdmiInputs[1].VideoAttributes.AttributeChange += (o, a) => ForwardVideoAttributeChange(HdmiIn1, a.EventId);
Tx.HdmiInputs[2].InputStreamChange += (o, a) => FowardInputStreamChange(HdmiIn2, a.EventId);
Tx.HdmiInputs[2].VideoAttributes.AttributeChange += (o, a) => ForwardVideoAttributeChange(HdmiIn2, a.EventId);
// Base does register and sets up comm monitoring.
return base.CustomActivate();
}
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
var joinMap = GetDmTxJoinMap(joinStart, joinMapKey);
if (Hdmi1VideoSyncFeedback != null)
{
Hdmi1VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input1VideoSyncStatus.JoinNumber]);
}
if (Hdmi2VideoSyncFeedback != null)
{
Hdmi2VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input2VideoSyncStatus.JoinNumber]);
}
LinkDmTxToApi(this, trilist, joinMap, bridge);
}
public void ExecuteNumericSwitch(ushort input, ushort output, eRoutingSignalType type)
{
Debug.Console(2, this, "Executing Numeric Switch to input {0}.", input);
switch (type)
{
case eRoutingSignalType.Video:
switch (input)
{
case 0:
{
ExecuteSwitch(eVst.Auto, null, type);
break;
}
case 1:
{
ExecuteSwitch(HdmiIn1.Selector, null, type);
break;
}
case 2:
{
ExecuteSwitch(HdmiIn2.Selector, null, type);
break;
}
case 3:
{
ExecuteSwitch(eVst.AllDisabled, null, type);
break;
}
}
break;
case eRoutingSignalType.Audio:
switch (input)
{
case 0:
{
ExecuteSwitch(eAst.Auto, null, type);
break;
}
case 1:
{
ExecuteSwitch(eAst.Hdmi1, null, type);
break;
}
case 2:
{
ExecuteSwitch(eAst.Hdmi2, null, type);
break;
}
case 3:
{
ExecuteSwitch(eAst.AllDisabled, null, type);
break;
}
}
break;
}
}
public void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType)
{
if ((signalType | eRoutingSignalType.Video) == eRoutingSignalType.Video)
Tx.VideoSource = (eVst)inputSelector;
if ((signalType | eRoutingSignalType.Audio) == eRoutingSignalType.Audio)
Tx.AudioSource = (eAst)inputSelector;
}
void InputStreamChangeEvent(EndpointInputStream inputStream, EndpointInputStreamEventArgs args)
{
Debug.Console(2, "{0} event {1} stream {2}", this.Tx.ToString(), inputStream.ToString(), args.EventId.ToString());
switch (args.EventId)
{
case EndpointInputStreamEventIds.HdcpSupportOffFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.HdcpSupportOnFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) Hdmi1VideoSyncFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) Hdmi2VideoSyncFeedback.FireUpdate();
break;
}
}
void Tx_BaseEvent(GenericBase device, BaseEventArgs args)
{
var id = args.EventId;
Debug.Console(2, this, "EventId {0}", args.EventId);
switch (id)
{
case EndpointTransmitterBase.VideoSourceFeedbackEventId:
Debug.Console(2, this, " Video Source: {0}", Tx.VideoSourceFeedback);
ActiveVideoInputFeedback.FireUpdate();
VideoSourceNumericFeedback.FireUpdate();
ActiveVideoInputFeedback.FireUpdate();
break;
case EndpointTransmitterBase.AudioSourceFeedbackEventId:
Debug.Console(2, this, " Audio Source : {0}", Tx.AudioSourceFeedback);
AudioSourceNumericFeedback.FireUpdate();
break;
}
}
/// <summary>
/// Relays the input stream change to the appropriate RoutingInputPort.
/// </summary>
void FowardInputStreamChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
if (eventId != EndpointInputStreamEventIds.SyncDetectedFeedbackEventId)
{
return;
}
inputPort.VideoStatus.VideoSyncFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoSyncFeedback.FireUpdate();
}
/// <summary>
/// Relays the VideoAttributes change to a RoutingInputPort
/// </summary>
void ForwardVideoAttributeChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
//// LOCATION: Crestron.SimplSharpPro.DM.VideoAttributeEventIds
//Debug.Console(2, this, "VideoAttributes_AttributeChange event id={0} from {1}",
// args.EventId, (sender as VideoAttributesEnhanced).Owner.GetType());
switch (eventId)
{
case VideoAttributeEventIds.HdcpActiveFeedbackEventId:
inputPort.VideoStatus.HdcpActiveFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpActiveFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HdcpStateFeedbackEventId:
inputPort.VideoStatus.HdcpStateFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpStateFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HorizontalResolutionFeedbackEventId:
case VideoAttributeEventIds.VerticalResolutionFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
case VideoAttributeEventIds.FramesPerSecondFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
}
}
#region IIROutputPorts Members
public CrestronCollection<IROutputPort> IROutputPorts { get { return Tx.IROutputPorts; } }
public int NumberOfIROutputPorts { get { return Tx.NumberOfIROutputPorts; } }
#endregion
#region IComPorts Members
public CrestronCollection<ComPort> ComPorts { get { return Tx.ComPorts; } }
public int NumberOfComPorts { get { return Tx.NumberOfComPorts; } }
#endregion
}
}

View File

@@ -18,8 +18,9 @@ using PepperDash.Essentials.DM.Config;
namespace PepperDash.Essentials.DM
{
using eVst = Crestron.SimplSharpPro.DeviceSupport.eX02VideoSourceType;
using eAst = Crestron.SimplSharpPro.DeviceSupport.eX02AudioSourceType;
using eAst = Crestron.SimplSharpPro.DeviceSupport.eX02AudioSourceType;
[Description("Wrapper class for DM-TX-4K-302-C")]
public class DmTx4k302CController : DmTxControllerBase, ITxRouting, IHasFeedback,
IIROutputPorts, IComPorts, IHasFreeRun, IVgaBrightnessContrastControls
{

View File

@@ -21,6 +21,7 @@ namespace PepperDash.Essentials.DM
/// <summary>
/// Controller class for all DM-TX-201C/S/F transmitters
/// </summary>
[Description("Wrapper class for DM-TX-4K-Z-100-C")]
public class DmTx4kz100Controller : DmTxControllerBase, IRoutingInputsOutputs, IHasFeedback,
IIROutputPorts, IComPorts, ICec
{

View File

@@ -1,358 +1,360 @@
using Crestron.SimplSharpPro;
//using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DM;
using Crestron.SimplSharpPro.DM.Endpoints;
using Crestron.SimplSharpPro.DM.Endpoints.Transmitters;
using PepperDash.Core;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Bridges;
namespace PepperDash.Essentials.DM
{
using eVst = eX02VideoSourceType;
using eAst = eX02AudioSourceType;
public class DmTx4kz302CController : DmTxControllerBase, ITxRouting,
IIROutputPorts, IComPorts
{
public DmTx4kz302C Tx { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiIn1 { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiIn2 { get; private set; }
public RoutingInputPortWithVideoStatuses DisplayPortIn { get; private set; }
public RoutingOutputPort DmOut { get; private set; }
public RoutingOutputPort HdmiLoopOut { get; private set; }
public override StringFeedback ActiveVideoInputFeedback { get; protected set; }
public IntFeedback VideoSourceNumericFeedback { get; protected set; }
public IntFeedback AudioSourceNumericFeedback { get; protected set; }
public IntFeedback HdmiIn1HdcpCapabilityFeedback { get; protected set; }
public IntFeedback HdmiIn2HdcpCapabilityFeedback { get; protected set; }
public BoolFeedback Hdmi1VideoSyncFeedback { get; protected set; }
public BoolFeedback Hdmi2VideoSyncFeedback { get; protected set; }
public BoolFeedback DisplayPortVideoSyncFeedback { get; protected set; }
//public override IntFeedback HdcpSupportAllFeedback { get; protected set; }
//public override ushort HdcpSupportCapability { get; protected set; }
/// <summary>
/// Helps get the "real" inputs, including when in Auto
/// </summary>
public eX02VideoSourceType ActualActiveVideoInput
{
get
{
if (Tx.VideoSourceFeedback != eVst.Auto)
return Tx.VideoSourceFeedback;
if (Tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue)
return eVst.Hdmi1;
if (Tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue)
return eVst.Hdmi2;
return Tx.DisplayPortInput.SyncDetectedFeedback.BoolValue ? eVst.Vga : eVst.AllDisabled;
}
}
public RoutingPortCollection<RoutingInputPort> InputPorts
{
get
{
return new RoutingPortCollection<RoutingInputPort>
{
HdmiIn1,
HdmiIn2,
DisplayPortIn,
AnyVideoInput
};
}
}
public RoutingPortCollection<RoutingOutputPort> OutputPorts
{
get
{
return new RoutingPortCollection<RoutingOutputPort> { DmOut, HdmiLoopOut };
}
}
public DmTx4kz302CController(string key, string name, DmTx4kz302C tx)
: base(key, name, tx)
{
Tx = tx;
HdmiIn1 = new RoutingInputPortWithVideoStatuses(DmPortName.HdmiIn1,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.Hdmi, eVst.Hdmi1, this,
VideoStatusHelper.GetHdmiInputStatusFuncs(tx.HdmiInputs[1]));
HdmiIn2 = new RoutingInputPortWithVideoStatuses(DmPortName.HdmiIn2,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.Hdmi, eVst.Hdmi2, this,
VideoStatusHelper.GetHdmiInputStatusFuncs(tx.HdmiInputs[2]));
DisplayPortIn = new RoutingInputPortWithVideoStatuses(DmPortName.VgaIn,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.DisplayPort, eVst.DisplayPort, this,
VideoStatusHelper.GetDisplayPortInputStatusFuncs(tx.DisplayPortInput));
ActiveVideoInputFeedback = new StringFeedback("ActiveVideoInput",
() => ActualActiveVideoInput.ToString());
Tx.HdmiInputs[1].InputStreamChange += InputStreamChangeEvent;
Tx.HdmiInputs[2].InputStreamChange += InputStreamChangeEvent;
Tx.DisplayPortInput.InputStreamChange += DisplayPortInputStreamChange;
Tx.BaseEvent += Tx_BaseEvent;
VideoSourceNumericFeedback = new IntFeedback(() => (int)Tx.VideoSourceFeedback);
AudioSourceNumericFeedback = new IntFeedback(() => (int)Tx.VideoSourceFeedback);
HdmiIn1HdcpCapabilityFeedback = new IntFeedback("HdmiIn1HdcpCapability", () => (int)tx.HdmiInputs[1].HdcpCapabilityFeedback);
HdmiIn2HdcpCapabilityFeedback = new IntFeedback("HdmiIn2HdcpCapability", () => (int)tx.HdmiInputs[2].HdcpCapabilityFeedback);
HdcpSupportCapability = eHdcpCapabilityType.Hdcp2_2Support;
Hdmi1VideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue);
Hdmi2VideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue);
DisplayPortVideoSyncFeedback = new BoolFeedback(() => (bool)tx.DisplayPortInput.SyncDetectedFeedback.BoolValue);
var combinedFuncs = new VideoStatusFuncsWrapper
{
HdcpActiveFeedbackFunc = () =>
(ActualActiveVideoInput == eVst.Hdmi1
&& tx.HdmiInputs[1].VideoAttributes.HdcpActiveFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Hdmi2
&& tx.HdmiInputs[2].VideoAttributes.HdcpActiveFeedback.BoolValue),
HdcpStateFeedbackFunc = () =>
{
if (ActualActiveVideoInput == eVst.Hdmi1)
return tx.HdmiInputs[1].VideoAttributes.HdcpStateFeedback.ToString();
return ActualActiveVideoInput == eVst.Hdmi2 ? tx.HdmiInputs[2].VideoAttributes.HdcpStateFeedback.ToString() : "";
},
VideoResolutionFeedbackFunc = () =>
{
if (ActualActiveVideoInput == eVst.Hdmi1)
return tx.HdmiInputs[1].VideoAttributes.GetVideoResolutionString();
if (ActualActiveVideoInput == eVst.Hdmi2)
return tx.HdmiInputs[2].VideoAttributes.GetVideoResolutionString();
return ActualActiveVideoInput == eVst.Vga ? tx.DisplayPortInput.VideoAttributes.GetVideoResolutionString() : "";
},
VideoSyncFeedbackFunc = () =>
(ActualActiveVideoInput == eVst.Hdmi1
&& tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Hdmi2
&& tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Vga
&& tx.DisplayPortInput.SyncDetectedFeedback.BoolValue)
};
AnyVideoInput = new RoutingInputPortWithVideoStatuses(DmPortName.AnyVideoIn,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.None, 0, this, combinedFuncs);
DmOut = new RoutingOutputPort(DmPortName.DmOut, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.DmCat, null, this);
HdmiLoopOut = new RoutingOutputPort(DmPortName.HdmiLoopOut, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, null, this);
AddToFeedbackList(ActiveVideoInputFeedback, VideoSourceNumericFeedback, AudioSourceNumericFeedback,
AnyVideoInput.VideoStatus.HasVideoStatusFeedback, AnyVideoInput.VideoStatus.HdcpActiveFeedback,
AnyVideoInput.VideoStatus.HdcpStateFeedback, AnyVideoInput.VideoStatus.VideoResolutionFeedback,
AnyVideoInput.VideoStatus.VideoSyncFeedback, HdmiIn1HdcpCapabilityFeedback, HdmiIn2HdcpCapabilityFeedback,
Hdmi1VideoSyncFeedback, Hdmi2VideoSyncFeedback, DisplayPortVideoSyncFeedback);
// Set Ports for CEC
HdmiIn1.Port = Tx.HdmiInputs[1];
HdmiIn2.Port = Tx.HdmiInputs[2];
HdmiLoopOut.Port = Tx.HdmiOutput;
DmOut.Port = Tx.DmOutput;
}
void DisplayPortInputStreamChange(EndpointInputStream inputStream, EndpointInputStreamEventArgs args)
{
Debug.Console(2, "{0} event {1} stream {2}", Tx.ToString(), inputStream.ToString(), args.EventId.ToString());
switch (args.EventId)
{
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
DisplayPortVideoSyncFeedback.FireUpdate();
break;
}
}
public override bool CustomActivate()
{
// Link up all of these damned events to the various RoutingPorts via a helper handler
Tx.HdmiInputs[1].InputStreamChange += (o, a) => FowardInputStreamChange(HdmiIn1, a.EventId);
Tx.HdmiInputs[1].VideoAttributes.AttributeChange += (o, a) => ForwardVideoAttributeChange(HdmiIn1, a.EventId);
Tx.HdmiInputs[2].InputStreamChange += (o, a) => FowardInputStreamChange(HdmiIn2, a.EventId);
Tx.HdmiInputs[2].VideoAttributes.AttributeChange += (o, a) => ForwardVideoAttributeChange(HdmiIn2, a.EventId);
Tx.DisplayPortInput.InputStreamChange += (o, a) => FowardInputStreamChange(DisplayPortIn, a.EventId);
Tx.DisplayPortInput.VideoAttributes.AttributeChange += (o, a) => ForwardVideoAttributeChange(DisplayPortIn, a.EventId);
// Base does register and sets up comm monitoring.
return base.CustomActivate();
}
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
var joinMap = GetDmTxJoinMap(joinStart, joinMapKey);
if (Hdmi1VideoSyncFeedback != null)
{
Hdmi1VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input1VideoSyncStatus.JoinNumber]);
}
if (Hdmi2VideoSyncFeedback != null)
{
Hdmi2VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input2VideoSyncStatus.JoinNumber]);
}
if (DisplayPortVideoSyncFeedback != null)
{
DisplayPortVideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input3VideoSyncStatus.JoinNumber]);
}
LinkDmTxToApi(this, trilist, joinMap, bridge);
}
public void ExecuteNumericSwitch(ushort input, ushort output, eRoutingSignalType type)
{
Debug.Console(2, this, "Executing Numeric Switch to input {0}.", input);
switch (input)
{
case 0:
{
ExecuteSwitch(eVst.Auto, null, eRoutingSignalType.Audio | eRoutingSignalType.Video);
break;
}
case 1:
{
ExecuteSwitch(HdmiIn1.Selector, null, eRoutingSignalType.Audio | eRoutingSignalType.Video);
break;
}
case 2:
{
ExecuteSwitch(HdmiIn2.Selector, null, eRoutingSignalType.Audio | eRoutingSignalType.Video);
break;
}
case 3:
{
ExecuteSwitch(DisplayPortIn.Selector, null, eRoutingSignalType.Audio | eRoutingSignalType.Video);
break;
}
case 4:
{
ExecuteSwitch(eVst.AllDisabled, null, eRoutingSignalType.Audio | eRoutingSignalType.Video);
break;
}
}
}
public void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType)
{
if ((signalType | eRoutingSignalType.Video) == eRoutingSignalType.Video)
Tx.VideoSource = (eVst)inputSelector;
// NOTE: It's possible that this particular TX model may not like the AudioSource property being set.
// The SIMPL definition only shows a single analog for AudioVideo Source
if ((signalType | eRoutingSignalType.Audio) == eRoutingSignalType.Audio)
//it doesn't
Debug.Console(2, this, "Unable to execute audio-only switch for tx {0}", Key);
//Tx.AudioSource = (eAst)inputSelector;
}
void InputStreamChangeEvent(EndpointInputStream inputStream, EndpointInputStreamEventArgs args)
{
Debug.Console(2, "{0} event {1} stream {2}", Tx.ToString(), inputStream.ToString(), args.EventId.ToString());
switch (args.EventId)
{
case EndpointInputStreamEventIds.HdcpSupportOffFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.HdcpSupportOnFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) Hdmi1VideoSyncFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) Hdmi2VideoSyncFeedback.FireUpdate();
break;
}
}
void Tx_BaseEvent(GenericBase device, BaseEventArgs args)
{
var id = args.EventId;
switch (id)
{
case EndpointTransmitterBase.VideoSourceFeedbackEventId:
Debug.Console(2, this, " Video Source: {0}", Tx.VideoSourceFeedback);
VideoSourceNumericFeedback.FireUpdate();
ActiveVideoInputFeedback.FireUpdate();
break;
case EndpointTransmitterBase.AudioSourceFeedbackEventId:
Debug.Console(2, this, " Audio Source: {0}", Tx.AudioSourceFeedback);
AudioSourceNumericFeedback.FireUpdate();
break;
}
}
/// <summary>
/// Relays the input stream change to the appropriate RoutingInputPort.
/// </summary>
void FowardInputStreamChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
if (eventId != EndpointInputStreamEventIds.SyncDetectedFeedbackEventId) return;
inputPort.VideoStatus.VideoSyncFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoSyncFeedback.FireUpdate();
}
/// <summary>
/// Relays the VideoAttributes change to a RoutingInputPort
/// </summary>
void ForwardVideoAttributeChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
//// LOCATION: Crestron.SimplSharpPro.DM.VideoAttributeEventIds
//Debug.Console(2, this, "VideoAttributes_AttributeChange event id={0} from {1}",
// args.EventId, (sender as VideoAttributesEnhanced).Owner.GetType());
switch (eventId)
{
case VideoAttributeEventIds.HdcpActiveFeedbackEventId:
inputPort.VideoStatus.HdcpActiveFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpActiveFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HdcpStateFeedbackEventId:
inputPort.VideoStatus.HdcpStateFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpStateFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HorizontalResolutionFeedbackEventId:
case VideoAttributeEventIds.VerticalResolutionFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
case VideoAttributeEventIds.FramesPerSecondFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
}
}
#region IIROutputPorts Members
public CrestronCollection<IROutputPort> IROutputPorts { get { return Tx.IROutputPorts; } }
public int NumberOfIROutputPorts { get { return Tx.NumberOfIROutputPorts; } }
#endregion
#region IComPorts Members
public CrestronCollection<ComPort> ComPorts { get { return Tx.ComPorts; } }
public int NumberOfComPorts { get { return Tx.NumberOfComPorts; } }
#endregion
}
using Crestron.SimplSharpPro;
//using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DM;
using Crestron.SimplSharpPro.DM.Endpoints;
using Crestron.SimplSharpPro.DM.Endpoints.Transmitters;
using PepperDash.Core;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Bridges;
namespace PepperDash.Essentials.DM
{
using eVst = eX02VideoSourceType;
using eAst = eX02AudioSourceType;
[Description("Wrapper class for DM-TX-4K-Z-302-C")]
public class DmTx4kz302CController : DmTxControllerBase, ITxRouting, IHasFeedback,
IIROutputPorts, IComPorts
{
public DmTx4kz302C Tx { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiIn1 { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiIn2 { get; private set; }
public RoutingInputPortWithVideoStatuses DisplayPortIn { get; private set; }
public RoutingOutputPort DmOut { get; private set; }
public RoutingOutputPort HdmiLoopOut { get; private set; }
public override StringFeedback ActiveVideoInputFeedback { get; protected set; }
public IntFeedback VideoSourceNumericFeedback { get; protected set; }
public IntFeedback AudioSourceNumericFeedback { get; protected set; }
public IntFeedback HdmiIn1HdcpCapabilityFeedback { get; protected set; }
public IntFeedback HdmiIn2HdcpCapabilityFeedback { get; protected set; }
public BoolFeedback Hdmi1VideoSyncFeedback { get; protected set; }
public BoolFeedback Hdmi2VideoSyncFeedback { get; protected set; }
public BoolFeedback DisplayPortVideoSyncFeedback { get; protected set; }
//public override IntFeedback HdcpSupportAllFeedback { get; protected set; }
//public override ushort HdcpSupportCapability { get; protected set; }
/// <summary>
/// Helps get the "real" inputs, including when in Auto
/// </summary>
public eX02VideoSourceType ActualActiveVideoInput
{
get
{
if (Tx.VideoSourceFeedback != eVst.Auto)
return Tx.VideoSourceFeedback;
if (Tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue)
return eVst.Hdmi1;
if (Tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue)
return eVst.Hdmi2;
return Tx.DisplayPortInput.SyncDetectedFeedback.BoolValue ? eVst.Vga : eVst.AllDisabled;
}
}
public RoutingPortCollection<RoutingInputPort> InputPorts
{
get
{
return new RoutingPortCollection<RoutingInputPort>
{
HdmiIn1,
HdmiIn2,
DisplayPortIn,
AnyVideoInput
};
}
}
public RoutingPortCollection<RoutingOutputPort> OutputPorts
{
get
{
return new RoutingPortCollection<RoutingOutputPort> { DmOut, HdmiLoopOut };
}
}
public DmTx4kz302CController(string key, string name, DmTx4kz302C tx)
: base(key, name, tx)
{
Tx = tx;
HdmiIn1 = new RoutingInputPortWithVideoStatuses(DmPortName.HdmiIn1,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.Hdmi, eVst.Hdmi1, this,
VideoStatusHelper.GetHdmiInputStatusFuncs(tx.HdmiInputs[1]));
HdmiIn2 = new RoutingInputPortWithVideoStatuses(DmPortName.HdmiIn2,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.Hdmi, eVst.Hdmi2, this,
VideoStatusHelper.GetHdmiInputStatusFuncs(tx.HdmiInputs[2]));
DisplayPortIn = new RoutingInputPortWithVideoStatuses(DmPortName.VgaIn,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.DisplayPort, eVst.DisplayPort, this,
VideoStatusHelper.GetDisplayPortInputStatusFuncs(tx.DisplayPortInput));
ActiveVideoInputFeedback = new StringFeedback("ActiveVideoInput",
() => ActualActiveVideoInput.ToString());
Tx.HdmiInputs[1].InputStreamChange += InputStreamChangeEvent;
Tx.HdmiInputs[2].InputStreamChange += InputStreamChangeEvent;
Tx.DisplayPortInput.InputStreamChange += DisplayPortInputStreamChange;
Tx.BaseEvent += Tx_BaseEvent;
VideoSourceNumericFeedback = new IntFeedback(() => (int)Tx.VideoSourceFeedback);
AudioSourceNumericFeedback = new IntFeedback(() => (int)Tx.VideoSourceFeedback);
HdmiIn1HdcpCapabilityFeedback = new IntFeedback("HdmiIn1HdcpCapability", () => (int)tx.HdmiInputs[1].HdcpCapabilityFeedback);
HdmiIn2HdcpCapabilityFeedback = new IntFeedback("HdmiIn2HdcpCapability", () => (int)tx.HdmiInputs[2].HdcpCapabilityFeedback);
HdcpSupportCapability = eHdcpCapabilityType.Hdcp2_2Support;
Hdmi1VideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue);
Hdmi2VideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue);
DisplayPortVideoSyncFeedback = new BoolFeedback(() => (bool)tx.DisplayPortInput.SyncDetectedFeedback.BoolValue);
var combinedFuncs = new VideoStatusFuncsWrapper
{
HdcpActiveFeedbackFunc = () =>
(ActualActiveVideoInput == eVst.Hdmi1
&& tx.HdmiInputs[1].VideoAttributes.HdcpActiveFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Hdmi2
&& tx.HdmiInputs[2].VideoAttributes.HdcpActiveFeedback.BoolValue),
HdcpStateFeedbackFunc = () =>
{
if (ActualActiveVideoInput == eVst.Hdmi1)
return tx.HdmiInputs[1].VideoAttributes.HdcpStateFeedback.ToString();
return ActualActiveVideoInput == eVst.Hdmi2 ? tx.HdmiInputs[2].VideoAttributes.HdcpStateFeedback.ToString() : "";
},
VideoResolutionFeedbackFunc = () =>
{
if (ActualActiveVideoInput == eVst.Hdmi1)
return tx.HdmiInputs[1].VideoAttributes.GetVideoResolutionString();
if (ActualActiveVideoInput == eVst.Hdmi2)
return tx.HdmiInputs[2].VideoAttributes.GetVideoResolutionString();
return ActualActiveVideoInput == eVst.Vga ? tx.DisplayPortInput.VideoAttributes.GetVideoResolutionString() : "";
},
VideoSyncFeedbackFunc = () =>
(ActualActiveVideoInput == eVst.Hdmi1
&& tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Hdmi2
&& tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Vga
&& tx.DisplayPortInput.SyncDetectedFeedback.BoolValue)
};
AnyVideoInput = new RoutingInputPortWithVideoStatuses(DmPortName.AnyVideoIn,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.None, 0, this, combinedFuncs);
DmOut = new RoutingOutputPort(DmPortName.DmOut, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.DmCat, null, this);
HdmiLoopOut = new RoutingOutputPort(DmPortName.HdmiLoopOut, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, null, this);
AddToFeedbackList(ActiveVideoInputFeedback, VideoSourceNumericFeedback, AudioSourceNumericFeedback,
AnyVideoInput.VideoStatus.HasVideoStatusFeedback, AnyVideoInput.VideoStatus.HdcpActiveFeedback,
AnyVideoInput.VideoStatus.HdcpStateFeedback, AnyVideoInput.VideoStatus.VideoResolutionFeedback,
AnyVideoInput.VideoStatus.VideoSyncFeedback, HdmiIn1HdcpCapabilityFeedback, HdmiIn2HdcpCapabilityFeedback,
Hdmi1VideoSyncFeedback, Hdmi2VideoSyncFeedback, DisplayPortVideoSyncFeedback);
// Set Ports for CEC
HdmiIn1.Port = Tx.HdmiInputs[1];
HdmiIn2.Port = Tx.HdmiInputs[2];
HdmiLoopOut.Port = Tx.HdmiOutput;
DmOut.Port = Tx.DmOutput;
}
void DisplayPortInputStreamChange(EndpointInputStream inputStream, EndpointInputStreamEventArgs args)
{
Debug.Console(2, "{0} event {1} stream {2}", Tx.ToString(), inputStream.ToString(), args.EventId.ToString());
switch (args.EventId)
{
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
DisplayPortVideoSyncFeedback.FireUpdate();
break;
}
}
public override bool CustomActivate()
{
// Link up all of these damned events to the various RoutingPorts via a helper handler
Tx.HdmiInputs[1].InputStreamChange += (o, a) => FowardInputStreamChange(HdmiIn1, a.EventId);
Tx.HdmiInputs[1].VideoAttributes.AttributeChange += (o, a) => ForwardVideoAttributeChange(HdmiIn1, a.EventId);
Tx.HdmiInputs[2].InputStreamChange += (o, a) => FowardInputStreamChange(HdmiIn2, a.EventId);
Tx.HdmiInputs[2].VideoAttributes.AttributeChange += (o, a) => ForwardVideoAttributeChange(HdmiIn2, a.EventId);
Tx.DisplayPortInput.InputStreamChange += (o, a) => FowardInputStreamChange(DisplayPortIn, a.EventId);
Tx.DisplayPortInput.VideoAttributes.AttributeChange += (o, a) => ForwardVideoAttributeChange(DisplayPortIn, a.EventId);
// Base does register and sets up comm monitoring.
return base.CustomActivate();
}
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
var joinMap = GetDmTxJoinMap(joinStart, joinMapKey);
if (Hdmi1VideoSyncFeedback != null)
{
Hdmi1VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input1VideoSyncStatus.JoinNumber]);
}
if (Hdmi2VideoSyncFeedback != null)
{
Hdmi2VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input2VideoSyncStatus.JoinNumber]);
}
if (DisplayPortVideoSyncFeedback != null)
{
DisplayPortVideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input3VideoSyncStatus.JoinNumber]);
}
LinkDmTxToApi(this, trilist, joinMap, bridge);
}
public void ExecuteNumericSwitch(ushort input, ushort output, eRoutingSignalType type)
{
Debug.Console(2, this, "Executing Numeric Switch to input {0}.", input);
switch (input)
{
case 0:
{
ExecuteSwitch(eVst.Auto, null, eRoutingSignalType.Audio | eRoutingSignalType.Video);
break;
}
case 1:
{
ExecuteSwitch(HdmiIn1.Selector, null, eRoutingSignalType.Audio | eRoutingSignalType.Video);
break;
}
case 2:
{
ExecuteSwitch(HdmiIn2.Selector, null, eRoutingSignalType.Audio | eRoutingSignalType.Video);
break;
}
case 3:
{
ExecuteSwitch(DisplayPortIn.Selector, null, eRoutingSignalType.Audio | eRoutingSignalType.Video);
break;
}
case 4:
{
ExecuteSwitch(eVst.AllDisabled, null, eRoutingSignalType.Audio | eRoutingSignalType.Video);
break;
}
}
}
public void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType)
{
if ((signalType | eRoutingSignalType.Video) == eRoutingSignalType.Video)
Tx.VideoSource = (eVst)inputSelector;
// NOTE: It's possible that this particular TX model may not like the AudioSource property being set.
// The SIMPL definition only shows a single analog for AudioVideo Source
if ((signalType | eRoutingSignalType.Audio) == eRoutingSignalType.Audio)
//it doesn't
Debug.Console(2, this, "Unable to execute audio-only switch for tx {0}", Key);
//Tx.AudioSource = (eAst)inputSelector;
}
void InputStreamChangeEvent(EndpointInputStream inputStream, EndpointInputStreamEventArgs args)
{
Debug.Console(2, "{0} event {1} stream {2}", Tx.ToString(), inputStream.ToString(), args.EventId.ToString());
switch (args.EventId)
{
case EndpointInputStreamEventIds.HdcpSupportOffFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.HdcpSupportOnFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) Hdmi1VideoSyncFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) Hdmi2VideoSyncFeedback.FireUpdate();
break;
}
}
void Tx_BaseEvent(GenericBase device, BaseEventArgs args)
{
var id = args.EventId;
switch (id)
{
case EndpointTransmitterBase.VideoSourceFeedbackEventId:
Debug.Console(2, this, " Video Source: {0}", Tx.VideoSourceFeedback);
VideoSourceNumericFeedback.FireUpdate();
ActiveVideoInputFeedback.FireUpdate();
break;
case EndpointTransmitterBase.AudioSourceFeedbackEventId:
Debug.Console(2, this, " Audio Source: {0}", Tx.AudioSourceFeedback);
AudioSourceNumericFeedback.FireUpdate();
break;
}
}
/// <summary>
/// Relays the input stream change to the appropriate RoutingInputPort.
/// </summary>
void FowardInputStreamChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
if (eventId != EndpointInputStreamEventIds.SyncDetectedFeedbackEventId) return;
inputPort.VideoStatus.VideoSyncFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoSyncFeedback.FireUpdate();
}
/// <summary>
/// Relays the VideoAttributes change to a RoutingInputPort
/// </summary>
void ForwardVideoAttributeChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
//// LOCATION: Crestron.SimplSharpPro.DM.VideoAttributeEventIds
//Debug.Console(2, this, "VideoAttributes_AttributeChange event id={0} from {1}",
// args.EventId, (sender as VideoAttributesEnhanced).Owner.GetType());
switch (eventId)
{
case VideoAttributeEventIds.HdcpActiveFeedbackEventId:
inputPort.VideoStatus.HdcpActiveFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpActiveFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HdcpStateFeedbackEventId:
inputPort.VideoStatus.HdcpStateFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpStateFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HorizontalResolutionFeedbackEventId:
case VideoAttributeEventIds.VerticalResolutionFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
case VideoAttributeEventIds.FramesPerSecondFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
}
}
#region IIROutputPorts Members
public CrestronCollection<IROutputPort> IROutputPorts { get { return Tx.IROutputPorts; } }
public int NumberOfIROutputPorts { get { return Tx.NumberOfIROutputPorts; } }
#endregion
#region IComPorts Members
public CrestronCollection<ComPort> ComPorts { get { return Tx.ComPorts; } }
public int NumberOfComPorts { get { return Tx.NumberOfComPorts; } }
#endregion
}
}

View File

@@ -28,16 +28,16 @@ namespace PepperDash.Essentials.DM
/// <param name="props"></param>
/// <returns></returns>
public static DmTxControllerBase GetDmTxController(string key, string name, string typeName, DmTxPropertiesConfig props)
{
// switch on type name... later...
{
// switch on type name... later...
typeName = typeName.ToLower();
//uint ipid = Convert.ToUInt16(props.Id, 16);
var ipid = props.Control.IpIdInt;
var pKey = props.ParentDeviceKey.ToLower();
typeName = typeName.ToLower();
//uint ipid = Convert.ToUInt16(props.Id, 16);
var ipid = props.Control.IpIdInt;
var pKey = props.ParentDeviceKey.ToLower();
if (pKey == "processor")
{
if (pKey == "processor")
{
// Catch constructor failures, mainly dues to IPID
try
{

View File

@@ -99,7 +99,9 @@
<Compile Include="Chassis\DmpsAudioOutputController.cs" />
<Compile Include="Chassis\DmpsInternalVirtualDmTxController.cs" />
<Compile Include="Chassis\DmpsRoutingController.cs" />
<Compile Include="Chassis\HdMdNxM4kEBridgeableController.cs" />
<Compile Include="Chassis\HdMdNxM4kEController.cs" />
<Compile Include="Config\InputPropertiesConfig.cs" />
<Compile Include="Endpoints\DGEs\DmDge200CController.cs" />
<Compile Include="Endpoints\Receivers\DmRmc4kZ100CController.cs" />
<Compile Include="Endpoints\Receivers\DmRmc4kZScalerCController.cs" />
@@ -113,7 +115,6 @@
<Compile Include="Config\DmTxConfig.cs" />
<Compile Include="Config\DMChassisConfig.cs" />
<Compile Include="Config\HdMdNxM4kEPropertiesConfig.cs" />
<Compile Include="Config\InputPropertiesConfig.cs" />
<Compile Include="DmPortName.cs" />
<Compile Include="Endpoints\DGEs\Dge100Controller.cs" />
<Compile Include="Endpoints\DGEs\DgePropertiesConfig.cs" />

View File

@@ -1,133 +0,0 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.Gateways;
using PepperDash.Core;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Config;
namespace PepperDash.Essentials.Devices.Common
{
public class CenRfgwController : CrestronGenericBaseDevice
{
public GatewayBase Gateway { get { return Hardware as GatewayBase; } }
/// <summary>
/// Constructor for the on-board gateway
/// </summary>
/// <param name="key"></param>
/// <param name="name"></param>
public CenRfgwController(string key, string name, GatewayBase gateway) :
base(key, name, gateway)
{
}
public static CenRfgwController GetNewExGatewayController(string key, string name, string id, string gatewayType)
{
uint uid;
eExGatewayType type;
try
{
uid = Convert.ToUInt32(id, 16);
type = (eExGatewayType)Enum.Parse(typeof(eExGatewayType), gatewayType, true);
var cs = Global.ControlSystem;
GatewayBase gw = null;
switch (type)
{
case eExGatewayType.Ethernet:
gw = new CenRfgwEx(uid, cs);
break;
case eExGatewayType.EthernetShared:
gw = new CenRfgwExEthernetSharable(uid, cs);
break;
case eExGatewayType.Cresnet:
gw = new CenRfgwExCresnet(uid, cs);
break;
}
return new CenRfgwController(key, name, gw);
}
catch (Exception)
{
Debug.Console(0, "ERROR: Cannot create EX Gateway, id {0}, type {1}", id, gatewayType);
return null;
}
}
public static CenRfgwController GetNewErGatewayController(string key, string name, string id, string gatewayType)
{
uint uid;
eExGatewayType type;
try
{
uid = Convert.ToUInt32(id, 16);
type = (eExGatewayType)Enum.Parse(typeof(eExGatewayType), gatewayType, true);
var cs = Global.ControlSystem;
GatewayBase gw = null;
switch (type)
{
case eExGatewayType.Ethernet:
gw = new CenErfgwPoe(uid, cs);
break;
case eExGatewayType.EthernetShared:
gw = new CenErfgwPoeEthernetSharable(uid, cs);
break;
case eExGatewayType.Cresnet:
gw = new CenErfgwPoeCresnet(uid, cs);
break;
}
return new CenRfgwController(key, name, gw);
}
catch (Exception)
{
Debug.Console(0, "ERROR: Cannot create EX Gateway, id {0}, type {1}", id, gatewayType);
return null;
}
}
/// <summary>
/// Gets the actual Crestron EX gateway for a given key. "processor" or the key of
/// a CenRfgwExController in DeviceManager
/// </summary>
/// <param name="key"></param>
/// <returns>Either processor GW or Gateway property of CenRfgwExController</returns>
public static GatewayBase GetExGatewayBaseForKey(string key)
{
key = key.ToLower();
if (key == "processor" && Global.ControlSystem.SupportsInternalRFGateway)
return Global.ControlSystem.ControllerRFGatewayDevice;
var gwCont = DeviceManager.GetDeviceForKey(key) as CenRfgwController;
if (gwCont != null)
return gwCont.Gateway;
return null;
}
}
public enum eExGatewayType
{
Ethernet, EthernetShared, Cresnet
}
public class CenRfgwControllerFactory : EssentialsDeviceFactory<CenRfgwController>
{
public CenRfgwControllerFactory()
{
TypeNames = new List<string>() { "cenrfgwex", "cenerfgwpoe" };
}
public override EssentialsDevice BuildDevice(DeviceConfig dc)
{
Debug.Console(1, "Factory Attempting to create new CEN-GWEXER Device");
return CenRfgwController.GetNewExGatewayController(dc.Key, dc.Name,
dc.Properties.Value<string>("id"), dc.Properties.Value<string>("gatewayType"));
}
}
}

View File

@@ -12,6 +12,6 @@ namespace PepperDash.Essentials.Devices.Displays
public interface IInputHdmi4 { void InputHdmi4(); }
public interface IInputDisplayPort1 { void InputDisplayPort1(); }
public interface IInputDisplayPort2 { void InputDisplayPort2(); }
public interface IInputVga1 { void InputVga1(); }
public interface IInputVga1 { void InputVga1(); }
}

View File

@@ -132,7 +132,6 @@
<Compile Include="Codec\iHasDialer.cs" />
<Compile Include="Codec\iHasDirectory.cs" />
<Compile Include="Codec\iHasScheduleAwareness.cs" />
<Compile Include="Crestron\Gateways\CenRfgwController.cs" />
<Compile Include="Display\ComTcpDisplayBase.cs" />
<Compile Include="Display\AvocorVTFDisplay.cs" />
<Compile Include="Display\InputInterfaces.cs" />

View File

@@ -13,6 +13,7 @@ using PepperDash.Essentials.Core.Bridges;
namespace PepperDash.Essentials.Devices.Common.Occupancy
{
[Description("Wrapper class for CEN-ODT-C-POE")]
public class CenOdtOccupancySensorBaseController : CrestronGenericBridgeableBaseDevice, IOccupancyStatusProvider
{
public CenOdtCPoe OccSensor { get; private set; }

View File

@@ -13,6 +13,7 @@ using PepperDash.Essentials.Core.Bridges;
namespace PepperDash.Essentials.Devices.Common.Occupancy
{
[Description("Wrapper class for Single Technology GLS Occupancy Sensors")]
public class GlsOccupancySensorBaseController : CrestronGenericBridgeableBaseDevice, IOccupancyStatusProvider
{
public GlsOccupancySensorBase OccSensor { get; private set; }

View File

@@ -13,6 +13,7 @@ using PepperDash.Essentials.Core.Bridges;
namespace PepperDash.Essentials.Devices.Common.Occupancy
{
[Description("Wrapper class for Dual Technology GLS Occupancy Sensors")]
public class GlsOdtOccupancySensorController : GlsOccupancySensorBaseController
{
public new GlsOdtCCn OccSensor { get; private set; }

View File

@@ -15,7 +15,8 @@ using PepperDash.Essentials.Core.Routing;
namespace PepperDash.Essentials.Devices.Common
{
public class IRSetTopBoxBase : EssentialsBridgeableDevice, ISetTopBoxControls, IRoutingOutputs, IUsageTracking, IPower
[Description("Wrapper class for an IR Set Top Box")]
public class IRSetTopBoxBase : EssentialsBridgeableDevice, ISetTopBoxControls, IRoutingOutputs, IUsageTracking, IPower
{
public IrOutputPortController IrPort { get; private set; }

View File

@@ -14,9 +14,9 @@ using PepperDash.Essentials.Core.Routing;
namespace PepperDash.Essentials.Devices.Common
{
[Description("Wrapper class for an IR-Controlled AppleTV")]
public class AppleTV : EssentialsBridgeableDevice, IDPad, ITransport, IUiDisplayInfo, IRoutingOutputs
{
public IrOutputPortController IrPort { get; private set; }
public const string StandardDriverName = "Apple AppleTV-v2.ir";
public uint DisplayUiType { get { return DisplayUiConstants.TypeAppleTv; } }

View File

@@ -12,7 +12,8 @@ using PepperDash.Essentials.Core.Config;
using PepperDash.Essentials.Core.Routing;
namespace PepperDash.Essentials.Devices.Common
{
{
[Description("Wrapper class for an IR-Controlled Roku")]
public class Roku2 : EssentialsDevice, IDPad, ITransport, IUiDisplayInfo, IRoutingOutputs
{
[Api]