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12 Commits

Author SHA1 Message Date
Neil Dorin
1cf4039315 Adds logic to only instantiate screensaver if mobile control is enabled on room 2023-10-19 16:55:36 -06:00
Neil Dorin
3d15227aa2 makes RunRouteAction virtual method 2023-10-19 14:12:30 -06:00
Neil Dorin
23a37ebb37 #1145 moves LoadTieLines() to after device activation sequence 2023-10-18 15:28:22 -06:00
Andrew Welker
75895604ed Merge pull request #1143 from PepperDash/feature/add-secureTcpClient-to-commFactory
Add secureTcpClient to comm factory
2023-10-10 10:41:03 -05:00
jdevito
de6f8c7896 feat: adds secureTcpClient to comm factory 2023-10-10 06:07:37 -05:00
Neil Dorin
8612fab4fe Merge pull request #1138 from PepperDash/hotfix/huddle-room-interfaces
Break IEssentialsRoom down further
2023-09-28 15:26:44 -06:00
Andrew Welker
b9fd9f23a4 refactor: break IEssentialsRoom down further
In order to allow for easier composition of interfaces for room plugins, the IEssentialsRoom interface needed to be broken down further to the simplest components a room would need to function. The interfaces are composited in the huddle space and the Huddle VTC interfaces.
2023-09-28 15:42:38 -05:00
Andrew Welker
4bdac8d9e9 Merge pull request #1131 from PepperDash/hotfix/mpc3-keypad-processor
Update MPC3 Touchpanel Controller
2023-09-12 14:53:04 -05:00
Jason DeVito
2afa9df705 fix: removes HdPsXxx controller, propertiesConfig and join map 2023-09-12 14:08:20 -05:00
Jason DeVito
316d545bda refactor(wip): updates keypad initializeFeedbacks method 2023-09-08 15:20:29 -05:00
Jason DeVito
13df52ab49 refactor(wip): updates constructor postActiviate call to seperate methods for enabling/disabling buttons and feedbacks 2023-09-08 13:47:34 -05:00
Jason DeVito
527457baf5 refactor(wip): MPC3 class refactor constructor 2023-09-08 13:00:27 -05:00
21 changed files with 395 additions and 1283 deletions

View File

@@ -337,19 +337,20 @@ namespace PepperDash.Essentials
void Load()
{
LoadDevices();
LoadTieLines();
LoadRooms();
LoadLogoServer();
DeviceManager.ActivateAll();
LoadTieLines();
var mobileControl = GetMobileControlDevice();
if (mobileControl == null) return;
mobileControl.LinkSystemMonitorToAppServer();
}
}
/// <summary>
/// Reads all devices from config and adds them to DeviceManager
@@ -401,20 +402,21 @@ namespace PepperDash.Essentials
}
else if (this.ControllerPrompt.IndexOf("mpc3", StringComparison.OrdinalIgnoreCase) > -1)
{
Debug.Console(2, "MPC3 processor type detected. Adding Mpc3TouchpanelController.");
Debug.Console(2, "MPC3 processor type detected. Adding Mpc3TouchpanelController.");
var butToken = devConf.Properties["buttons"];
if (butToken != null)
{
var buttons = butToken.ToObject<Dictionary<string, Essentials.Core.Touchpanels.KeypadButton>>();
var tpController = new Essentials.Core.Touchpanels.Mpc3TouchpanelController(devConf.Key, devConf.Name, Global.ControlSystem, buttons);
DeviceManager.AddDevice(tpController);
}
else
{
Debug.Console(0, Debug.ErrorLogLevel.Error, "Error: Unable to deserialize buttons collection for device: {0}", devConf.Key);
}
var butToken = devConf.Properties["buttons"];
if (butToken == null)
{
Debug.Console(0, Debug.ErrorLogLevel.Error,
"Error: Unable to deserialize buttons collection for device: {0}", devConf.Key);
continue;
}
var buttons = butToken.ToObject<Dictionary<string, Essentials.Core.Touchpanels.KeypadButton>>();
var tpController = new Core.Touchpanels.Mpc3TouchpanelController(
string.Format("{0}-keypadButtons", devConf.Key), devConf.Name, Global.ControlSystem, buttons);
DeviceManager.AddDevice(tpController);
}
else
{

View File

@@ -334,7 +334,7 @@ namespace PepperDash.Essentials
/// route or commands
/// </summary>
/// <param name="name"></param>
public void RunRouteAction(string routeKey, Action successCallback)
public virtual void RunRouteAction(string routeKey, Action successCallback)
{
// Run this on a separate thread
new CTimer(o =>

View File

@@ -7,7 +7,8 @@ using PepperDash.Essentials.Room.Config;
namespace PepperDash.Essentials
{
public interface IEssentialsHuddleSpaceRoom : IEssentialsRoom, IHasCurrentSourceInfoChange, IRunRouteAction, IRunDefaultPresentRoute, IHasDefaultDisplay, IHasCurrentVolumeControls
public interface IEssentialsHuddleSpaceRoom : IEssentialsRoom, IHasCurrentSourceInfoChange, IRunRouteAction, IRunDefaultPresentRoute, IHasDefaultDisplay, IHasCurrentVolumeControls, IRoomOccupancy,
IEmergency, IMicrophonePrivacy
{
bool ExcludeFromGlobalFunctions { get; }

View File

@@ -8,7 +8,8 @@ using PepperDash.Essentials.Devices.Common.AudioCodec;
namespace PepperDash.Essentials
{
public interface IEssentialsHuddleVtc1Room : IEssentialsRoom, IHasCurrentSourceInfoChange,
IPrivacy, IHasCurrentVolumeControls, IRunRouteAction, IRunDefaultCallRoute, IHasVideoCodec, IHasAudioCodec, IHasDefaultDisplay, IHasInCallFeedback
IPrivacy, IHasCurrentVolumeControls, IRunRouteAction, IRunDefaultCallRoute, IHasVideoCodec, IHasAudioCodec, IHasDefaultDisplay, IHasInCallFeedback,
IRoomOccupancy, IEmergency, IMicrophonePrivacy
{
EssentialsHuddleVtc1PropertiesConfig PropertiesConfig { get; }

View File

@@ -48,10 +48,8 @@ namespace PepperDash.Essentials
// spin up different room drivers depending on room type
var room = DeviceManager.GetDeviceForKey(roomKey);
if (room is IEssentialsHuddleSpaceRoom)
{
// Screen Saver Driver
mainDriver.ScreenSaverController = new ScreenSaverController(mainDriver, _config);
{
SetupScreenSaver(room, mainDriver);
// Header Driver
Debug.Console(0, this, "Adding header driver");
@@ -94,10 +92,9 @@ namespace PepperDash.Essentials
}
else if (room is IEssentialsHuddleVtc1Room)
{
Debug.Console(0, this, "Adding huddle space VTC AV driver");
// Screen Saver Driver
mainDriver.ScreenSaverController = new ScreenSaverController(mainDriver, _config);
Debug.Console(0, this, "Adding huddle space VTC AV driver");
SetupScreenSaver(room, mainDriver);
// Header Driver
mainDriver.HeaderDriver = new EssentialsHeaderDriver(mainDriver, _config);
@@ -148,6 +145,16 @@ namespace PepperDash.Essentials
Debug.Console(0, this, "ERROR: Cannot load AvFunctionsDriver for room '{0}'", roomKey);
}
}
private void SetupScreenSaver(IKeyed room, EssentialsPanelMainInterfaceDriver mainDriver)
{
var huddleRoom = room as IEssentialsRoom;
// Screen Saver Driver
if (huddleRoom.IsMobileControlEnabled)
{
mainDriver.ScreenSaverController = new ScreenSaverController(mainDriver, _config);
}
}
public void LoadAndShowDriver(PanelDriverBase driver)

View File

@@ -1,190 +0,0 @@
using System;
using PepperDash.Essentials.Core;
namespace PepperDash_Essentials_Core.Bridges
{
public class HdPsXxxControllerJoinMap : JoinMapBaseAdvanced
{
#region Digital
[JoinName("EnableAutoRoute")]
public JoinDataComplete EnableAutoRoute = new JoinDataComplete(
new JoinData
{
JoinNumber = 1,
JoinSpan = 1
},
new JoinMetadata
{
Description = "Enable Automatic Routing on Xx1 Switchers",
JoinCapabilities = eJoinCapabilities.ToFromSIMPL,
JoinType = eJoinType.Digital
});
[JoinName("InputSync")]
public JoinDataComplete InputSync = new JoinDataComplete(
new JoinData
{
JoinNumber = 2,
JoinSpan = 8
},
new JoinMetadata
{
Description = "Device Input Sync",
JoinCapabilities = eJoinCapabilities.ToSIMPL,
JoinType = eJoinType.Digital
});
[JoinName("EnableInputHdcp")]
public JoinDataComplete EnableInputHdcp = new JoinDataComplete(
new JoinData
{
JoinNumber = 11,
JoinSpan = 8
},
new JoinMetadata
{
Description = "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
{
Description = "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
{
Description = "Device Onlne",
JoinCapabilities = eJoinCapabilities.ToSIMPL,
JoinType = eJoinType.Digital
});
#endregion
#region Analog
[JoinName("OutputRoute")]
public JoinDataComplete OutputRoute = new JoinDataComplete(
new JoinData
{
JoinNumber = 11,
JoinSpan = 2
},
new JoinMetadata
{
Description = "Device Output Route Set/Get",
JoinCapabilities = eJoinCapabilities.ToFromSIMPL,
JoinType = eJoinType.Analog
});
#endregion
#region Serial
[JoinName("Name")]
public JoinDataComplete Name = new JoinDataComplete(
new JoinData
{
JoinNumber = 1,
JoinSpan = 1
},
new JoinMetadata
{
Description = "Device Name",
JoinCapabilities = eJoinCapabilities.ToSIMPL,
JoinType = eJoinType.Serial
});
[JoinName("InputName")]
public JoinDataComplete InputName = new JoinDataComplete(
new JoinData
{
JoinNumber = 2,
JoinSpan = 8
},
new JoinMetadata
{
Description = "Device Input Name",
JoinCapabilities = eJoinCapabilities.ToSIMPL,
JoinType = eJoinType.Serial
});
[JoinName("OutputName")]
public JoinDataComplete OutputName = new JoinDataComplete(
new JoinData
{
JoinNumber = 11,
JoinSpan = 2
},
new JoinMetadata
{
Description = "Device Output Name",
JoinCapabilities = eJoinCapabilities.ToSIMPL,
JoinType = eJoinType.Serial
});
[JoinName("OutputRoutedName")]
public JoinDataComplete OutputRoutedName = new JoinDataComplete(
new JoinData
{
JoinNumber = 16,
JoinSpan = 2
},
new JoinMetadata
{
Description = "Device Output Route Name",
JoinCapabilities = eJoinCapabilities.ToSIMPL,
JoinType = eJoinType.Serial
});
#endregion
/// <summary>
/// Constructor to use when instantiating this join map without inheriting from it
/// </summary>
/// <param name="joinStart">Join this join map will start at</param>
public HdPsXxxControllerJoinMap(uint joinStart)
: this(joinStart, typeof(HdPsXxxControllerJoinMap))
{
}
/// <summary>
/// Constructor to use when extending this Join map
/// </summary>
/// <param name="joinStart">Join this join map will start at</param>
/// <param name="type">Type of the child join map</param>
protected HdPsXxxControllerJoinMap(uint joinStart, Type type)
: base(joinStart, type)
{
}
}
}

View File

@@ -81,6 +81,15 @@ namespace PepperDash.Essentials.Core
}
case eControlMethod.Telnet:
break;
case eControlMethod.SecureTcpIp:
{
var secureTcp = new GenericSecureTcpIpClient(deviceConfig.Key + "-secureTcp", c.Address, c.Port, c.BufferSize);
secureTcp.AutoReconnect = c.AutoReconnect;
if (secureTcp.AutoReconnect)
secureTcp.AutoReconnectIntervalMs = c.AutoReconnectIntervalMs;
comm = secureTcp;
break;
}
default:
break;
}

View File

@@ -1,218 +0,0 @@
using System;
using System.Collections.Generic;
using System.Linq;
using PepperDash.Core;
using Crestron.SimplSharp;
using PepperDash.Essentials.Core;
namespace PepperDash.Essentials.Core.DeviceInfo
{
public static class NetworkDeviceHelpers
{
/// <summary>
/// Event raised when ArpTable changes
/// </summary>
public static event ArpTableEventHandler ArpTableUpdated;
/// <summary>
/// Delegate called by ArpTableUpdated
/// </summary>
/// <param name="args">contains the entire ARP table and a bool to note if there was an error in retrieving the data</param>
public delegate void ArpTableEventHandler(ArpTableEventArgs args);
private static readonly char NewLineSplitter = CrestronEnvironment.NewLine.ToCharArray().First();
private static readonly string NewLine = CrestronEnvironment.NewLine;
private static readonly CCriticalSection Lock = new CCriticalSection();
/// <summary>
/// Last resolved ARP table - it is recommended to refresh the arp before using this.
/// </summary>
public static List<ArpEntry> ArpTable { get; private set; }
/// <summary>
/// Force recheck of ARP table
/// </summary>
public static void RefreshArp()
{
var error = false;
try
{
Lock.Enter();
var consoleResponse = string.Empty;
if (!CrestronConsole.SendControlSystemCommand("showarptable", ref consoleResponse)) return;
if (string.IsNullOrEmpty(consoleResponse))
{
error = true;
return;
}
ArpTable.Clear();
Debug.Console(2, "ConsoleResponse of 'showarptable' : {0}{1}", NewLine, consoleResponse);
var myLines =
consoleResponse.Split(NewLineSplitter)
.ToList()
.Where(o => (o.Contains(':') && !o.Contains("Type", StringComparison.OrdinalIgnoreCase)))
.ToList();
foreach (var line in myLines)
{
var item = line;
var seperator = item.Contains('\t') ? '\t' : ' ';
var dataPoints = item.Split(seperator);
if (dataPoints == null || dataPoints.Length < 2) continue;
var ipAddress = SanitizeIpAddress(dataPoints.First().TrimAll());
var macAddress = dataPoints.Last();
ArpTable.Add(new ArpEntry(ipAddress, macAddress));
}
}
catch (Exception ex)
{
Debug.Console(0, "Exception in \"RefreshArp\" : {0}", ex.Message);
error = true;
}
finally
{
Lock.Leave();
OnArpTableUpdated(new ArpTableEventArgs(ArpTable, error));
}
}
private static void OnArpTableUpdated(ArpTableEventArgs args)
{
if (args == null) return;
var handler = ArpTableUpdated;
if (handler == null) return;
handler.Invoke(args);
}
static NetworkDeviceHelpers()
{
ArpTable = new List<ArpEntry>();
}
/// <summary>
/// Removes leading zeros, leading whitespace, and trailing whitespace from an IPAddress string
/// </summary>
/// <param name="ipAddressIn">Ip Address to Santitize</param>
/// <returns>Sanitized Ip Address</returns>
public static string SanitizeIpAddress(string ipAddressIn)
{
try
{
var ipAddress = IPAddress.Parse(ipAddressIn.TrimStart('0'));
return ipAddress.ToString();
}
catch (Exception ex)
{
Debug.Console(0, "Unable to Santize Ip : {0}", ex.Message);
return ipAddressIn;
}
}
/// <summary>
/// Resolves a hostname by IP Address using DNS
/// </summary>
/// <param name="ipAddress">IP Address to resolve from</param>
/// <returns>Resolved Hostname - on failure to determine hostname, will return IP Address</returns>
public static string ResolveHostnameFromIp(string ipAddress)
{
try
{
var santitizedIp = SanitizeIpAddress(ipAddress);
var hostEntry = Dns.GetHostEntry(santitizedIp);
return hostEntry == null ? ipAddress : hostEntry.HostName;
}
catch (Exception ex)
{
Debug.Console(0, "Exception Resolving Hostname from IP Address : {0}", ex.Message);
return ipAddress;
}
}
/// <summary>
/// Resolves an IP Address by hostname using DNS
/// </summary>
/// <param name="hostName">Hostname to resolve from</param>
/// <returns>Resolved IP Address - on a failure to determine IP Address, will return hostname</returns>
public static string ResolveIpFromHostname(string hostName)
{
try
{
var hostEntry = Dns.GetHostEntry(hostName);
return hostEntry == null ? hostName : hostEntry.AddressList.First().ToString();
}
catch (Exception ex)
{
Debug.Console(0, "Exception Resolving IP Address from Hostname : {0}", ex.Message);
return hostName;
}
}
}
/// <summary>
/// Object to hold data about an arp entry
/// </summary>
public class ArpEntry
{
public readonly IPAddress IpAddress;
public readonly string MacAddress;
/// <summary>
/// Constructs new ArpEntry object
/// </summary>
/// <param name="ipAddress">string formatted as ipv4 address</param>
/// <param name="macAddress">mac address string - format is unimportant</param>
public ArpEntry(string ipAddress, string macAddress)
{
if (string.IsNullOrEmpty(ipAddress))
{
throw new ArgumentException("\"ipAddress\" cannot be null or empty");
}
if (string.IsNullOrEmpty(macAddress))
{
throw new ArgumentException("\"macAddress\" cannot be null or empty");
}
IpAddress = IPAddress.Parse(ipAddress.TrimStart().TrimStart('0').TrimEnd());
MacAddress = macAddress;
}
}
/// <summary>
/// Arguments passed by the ArpTableUpdated event
/// </summary>
public class ArpTableEventArgs : EventArgs
{
/// <summary>
/// The retrieved ARP Table
/// </summary>
public readonly List<ArpEntry> ArpTable;
/// <summary>
/// True if there was a problem retrieving the ARP Table
/// </summary>
public readonly bool Error;
/// <summary>
/// Constructor for ArpTableEventArgs
/// </summary>
/// <param name="arpTable">The entirety of the retrieved ARP table</param>
/// <param name="error">True of an error was encountered updating the ARP table</param>
public ArpTableEventArgs(List<ArpEntry> arpTable, bool error)
{
ArpTable = arpTable;
Error = error;
}
/// <summary>
/// Constructor for ArpTableEventArgs - assumes no error encountered in retrieving ARP Table
/// </summary>
/// <param name="arpTable">The entirety of the retrieved ARP table</param>
public ArpTableEventArgs(List<ArpEntry> arpTable)
{
ArpTable = arpTable;
Error = false;
}
}
}

View File

@@ -72,6 +72,10 @@ namespace PepperDash.Essentials.Core
{
IBasicVolumeControls CurrentVolumeControls { get; }
event EventHandler<VolumeDeviceChangeEventArgs> CurrentVolumeDeviceChange;
void SetDefaultLevels();
bool ZeroVolumeWhenSwtichingVolumeDevices { get; }
}

View File

@@ -1,5 +1,4 @@
using System;
using System.ComponentModel;
using System.Collections.Generic;
using System.Linq;
using System.Text;
@@ -9,70 +8,17 @@ namespace PepperDash.Essentials.Core
{
public static class StringExtensions
{
/// <summary>
/// Returns null if a string is empty, otherwise returns the string
/// </summary>
/// <param name="s">string input</param>
/// <returns>null if the string is emtpy, otherwise returns the string</returns>
public static string NullIfEmpty(this string s)
{
return string.IsNullOrEmpty(s) ? null : s;
}
/// <summary>
/// Returns null if a string is empty or made of only whitespace characters, otherwise returns the string
/// </summary>
/// <param name="s">string input</param>
/// <returns>null if the string is wempty or made of only whitespace characters, otherwise returns the string</returns>
public static string NullIfWhiteSpace(this string s)
{
return string.IsNullOrEmpty(s.Trim()) ? null : s;
}
/// <summary>
/// Returns a replacement string if the input string is empty or made of only whitespace characters, otherwise returns the input string
/// </summary>
/// <param name="s">input string</param>
/// <param name="newString">string to replace with if input string is empty or whitespace</param>
/// <returns>returns newString if s is null, emtpy, or made of whitespace characters, otherwise returns s</returns>
public static string ReplaceIfNullOrEmpty(this string s, string newString)
{
return string.IsNullOrEmpty(s) ? newString : s;
}
/// <summary>
/// Overload for Contains that allows setting an explicit String Comparison
/// </summary>
/// <param name="source">Source String</param>
/// <param name="toCheck">String to check in Source String</param>
/// <param name="comp">Comparison parameters</param>
/// <returns>true of string contains "toCheck"</returns>
public static bool Contains(this string source, string toCheck, StringComparison comp)
{
if (string.IsNullOrEmpty(source)) return false;
return source.IndexOf(toCheck, comp) >= 0;
}
/// <summary>
/// Performs TrimStart() and TrimEnd() on source string
/// </summary>
/// <param name="source">String to Trim</param>
/// <returns>Trimmed String</returns>
public static string TrimAll(this string source)
{
return string.IsNullOrEmpty(source) ? string.Empty : source.TrimStart().TrimEnd();
}
/// <summary>
/// Performs TrimStart(chars char[]) and TrimEnd(chars char[]) on source string.
/// </summary>
/// <param name="source">String to Trim</param>
/// <param name="chars">Char Array to trim from string</param>
/// <returns>Trimmed String</returns>
public static string TrimAll(this string source, char[] chars)
{
return string.IsNullOrEmpty(source) ? string.Empty : source.TrimStart(chars).TrimEnd(chars);
}
}
}

View File

@@ -148,15 +148,20 @@ namespace PepperDash.Essentials.Core.Fusion
ReadGuidFile(guidFilePath);
}
if (Room.RoomOccupancy != null)
var occupancyRoom = Room as IRoomOccupancy;
if (occupancyRoom != null)
{
if (Room.OccupancyStatusProviderIsRemote)
if (occupancyRoom.RoomOccupancy != null)
{
SetUpRemoteOccupancy();
}
else
{
SetUpLocalOccupancy();
if (occupancyRoom.OccupancyStatusProviderIsRemote)
{
SetUpRemoteOccupancy();
}
else
{
SetUpLocalOccupancy();
}
}
}
@@ -1523,10 +1528,15 @@ namespace PepperDash.Essentials.Core.Fusion
// Tie to method on occupancy object
//occSensorShutdownMinutes.OutputSig.UserObject(new Action(ushort)(b => Room.OccupancyObj.SetShutdownMinutes(b));
var occRoom = Room as IRoomOccupancy;
if (occRoom != null)
{
occRoom.RoomOccupancy.RoomIsOccupiedFeedback.LinkInputSig(occSensorAsset.RoomOccupied.InputSig);
occRoom.RoomOccupancy.RoomIsOccupiedFeedback.OutputChange += RoomIsOccupiedFeedback_OutputChange;
}
RoomOccupancyRemoteStringFeedback = new StringFeedback(() => _roomOccupancyRemoteString);
Room.RoomOccupancy.RoomIsOccupiedFeedback.LinkInputSig(occSensorAsset.RoomOccupied.InputSig);
Room.RoomOccupancy.RoomIsOccupiedFeedback.OutputChange += RoomIsOccupiedFeedback_OutputChange;
RoomOccupancyRemoteStringFeedback.LinkInputSig(occSensorAsset.RoomOccupancyInfo.InputSig);
//}

View File

@@ -127,7 +127,6 @@
<Compile Include="Bridges\IBridge.cs" />
<Compile Include="Bridges\JoinMaps\AirMediaControllerJoinMap.cs" />
<Compile Include="Bridges\JoinMaps\AppleTvJoinMap.cs" />
<Compile Include="Bridges\JoinMaps\HdPsXxxControllerJoinMap.cs" />
<Compile Include="Bridges\JoinMaps\IAnalogInputJoinMap.cs" />
<Compile Include="Bridges\JoinMaps\IDigitalOutputJoinMap.cs" />
<Compile Include="Bridges\JoinMaps\PduJoinMapBase.cs" />
@@ -201,7 +200,6 @@
<Compile Include="Crestron IO\Relay\GenericRelayDevice.cs" />
<Compile Include="Crestron IO\Relay\ISwitchedOutput.cs" />
<Compile Include="Crestron IO\StatusSign\StatusSignController.cs" />
<Compile Include="Device Info\NetworkDeviceHelpers.cs" />
<Compile Include="Devices\PowerInterfaces.cs" />
<Compile Include="Web\RequestHandlers\AppDebugRequestHandler.cs" />
<Compile Include="Web\RequestHandlers\GetFeedbacksForDeviceRequestHandler.cs" />

View File

@@ -38,7 +38,7 @@ namespace PepperDash.Essentials.Core
ScheduledEventGroup FeatureEventGroup;
public IEssentialsRoom Room { get; private set; }
public IRoomOccupancy Room { get; private set; }
private Fusion.EssentialsHuddleSpaceFusionSystemControllerBase FusionRoom;
@@ -84,7 +84,7 @@ namespace PepperDash.Essentials.Core
/// </summary>
void SetUpDevice()
{
Room = DeviceManager.GetDeviceForKey(PropertiesConfig.RoomKey) as IEssentialsRoom;
Room = DeviceManager.GetDeviceForKey(PropertiesConfig.RoomKey) as IRoomOccupancy;
if (Room != null)
{
@@ -235,12 +235,23 @@ namespace PepperDash.Essentials.Core
if (FeatureEnabled)
{
// Check room power state first
if (!Room.OnFeedback.BoolValue)
{
Debug.Console(1, this, "Powering Room on to default source");
Room.RunDefaultPresentRoute();
var essentialsRoom = Room as IEssentialsRoom;
if (essentialsRoom != null) {
if (!essentialsRoom.OnFeedback.BoolValue)
{
Debug.Console(1, this, "Powering Room on to default source");
var defaultRouteRoom = Room as IRunDefaultPresentRoute;
if (defaultRouteRoom != null)
{
defaultRouteRoom.RunDefaultPresentRoute();
}
}
}
// Check room power state first
}
}
}

View File

@@ -17,15 +17,10 @@ namespace PepperDash.Essentials.Core
/// </summary>
public interface IEssentialsRoom : IKeyName, IReconfigurableDevice, IRunDefaultPresentRoute, IEnvironmentalControls
{
BoolFeedback OnFeedback { get; }
event EventHandler<EventArgs> RoomOccupancyIsSet;
BoolFeedback OnFeedback { get; }
BoolFeedback IsWarmingUpFeedback { get; }
BoolFeedback IsCoolingDownFeedback { get; }
IOccupancyStatusProvider RoomOccupancy { get; }
bool OccupancyStatusProviderIsRemote { get; }
BoolFeedback IsCoolingDownFeedback { get; }
bool IsMobileControlEnabled { get; }
IMobileControlRoomBridge MobileControlRoomBridge { get; }
@@ -35,31 +30,16 @@ namespace PepperDash.Essentials.Core
SecondsCountdownTimer ShutdownPromptTimer { get; }
int ShutdownPromptSeconds { get; }
int ShutdownVacancySeconds { get; }
eShutdownType ShutdownType { get; }
EssentialsRoomEmergencyBase Emergency { get; }
Core.Privacy.MicrophonePrivacyController MicrophonePrivacy { get; }
eShutdownType ShutdownType { get; }
string LogoUrlLightBkgnd { get; }
string LogoUrlDarkBkgnd { get; }
eVacancyMode VacancyMode { get; }
void StartShutdown(eShutdownType type);
bool ZeroVolumeWhenSwtichingVolumeDevices { get; }
void Shutdown();
void StartShutdown(eShutdownType type);
void StartRoomVacancyTimer(eVacancyMode mode);
void Shutdown();
void SetRoomOccupancy(IOccupancyStatusProvider statusProvider, int timeoutMinutes);
void PowerOnToDefaultOrLastSource();
void SetDefaultLevels();
void RoomVacatedForTimeoutPeriod(object o);
void PowerOnToDefaultOrLastSource();
}
}

View File

@@ -41,7 +41,6 @@ namespace PepperDash.Essentials.Core
void RunRouteAction(string routeKey, string sourceListKey);
void RunRouteAction(string routeKey, string sourceListKey, Action successCallback);
}
/// <summary>
@@ -78,4 +77,30 @@ namespace PepperDash.Essentials.Core
bool HasEnvironmentalControlDevices { get; }
}
public interface IRoomOccupancy:IKeyed
{
IOccupancyStatusProvider RoomOccupancy { get; }
bool OccupancyStatusProviderIsRemote { get; }
void SetRoomOccupancy(IOccupancyStatusProvider statusProvider, int timeoutMinutes);
void RoomVacatedForTimeoutPeriod(object o);
void StartRoomVacancyTimer(eVacancyMode mode);
eVacancyMode VacancyMode { get; }
event EventHandler<EventArgs> RoomOccupancyIsSet;
}
public interface IEmergency
{
EssentialsRoomEmergencyBase Emergency { get; }
}
public interface IMicrophonePrivacy
{
Core.Privacy.MicrophonePrivacyController MicrophonePrivacy { get; }
}
}

View File

@@ -42,7 +42,7 @@ namespace PepperDash.Essentials.Core
public enum eRoutingPortConnectionType
{
None, BackplaneOnly, DisplayPort, Dvi, Hdmi, Rgb, Vga, LineAudio, DigitalAudio, Sdi,
Composite, Component, DmCat, DmMmFiber, DmSmFiber, Speaker, Streaming, UsbC, HdBaseT
Composite, Component, DmCat, DmMmFiber, DmSmFiber, Speaker, Streaming
}
/// <summary>

View File

@@ -199,45 +199,5 @@ namespace PepperDash.Essentials.Core.Routing
/// MediaPlayer
/// </summary>
public const string MediaPlayer = "mediaPlayer";
/// <summary>
/// UsbCIn
/// </summary>
public const string UsbCIn = "usbCIn";
/// <summary>
/// UsbCIn1
/// </summary>
public const string UsbCIn1 = "usbCIn1";
/// <summary>
/// UsbCIn2
/// </summary>
public const string UsbCIn2 = "usbCIn2";
/// <summary>
/// UsbCIn3
/// </summary>
public const string UsbCIn3 = "usbCIn3";
/// <summary>
/// UsbCOut
/// </summary>
public const string UsbCOut = "usbCOut";
/// <summary>
/// UsbCOut1
/// </summary>
public const string UsbCOut1 = "usbCOut1";
/// <summary>
/// UsbCOut2
/// </summary>
public const string UsbCOut2 = "usbCOut2";
/// <summary>
/// UsbCOut3
/// </summary>
public const string UsbCOut3 = "usbCOut3";
/// <summary>
/// HdBaseTIn
/// </summary>
public const string HdBaseTIn = "hdBaseTIn";
/// <summary>
/// HdBaseTOut
/// </summary>
public const string HdBaseTOut = "hdBaseTOut";
}
}
}

View File

@@ -1,144 +1,295 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
using System.Collections.Generic;
using System.Globalization;
using Crestron.SimplSharpPro;
using Newtonsoft.Json;
using PepperDash.Core;
using PepperDash.Essentials.Core;
namespace PepperDash.Essentials.Core.Touchpanels
{
/// <summary>
/// A wrapper class for the touchpanel portion of an MPC3 class process to allow for configurable
/// behavior of the keybad buttons
/// </summary>
public class Mpc3TouchpanelController : Device
{
MPC3Basic _Touchpanel;
/// <summary>
/// A wrapper class for the touchpanel portion of an MPC3 class process to allow for configurable
/// behavior of the keybad buttons
/// </summary>
public class Mpc3TouchpanelController : Device
{
readonly MPC3Basic _touchpanel;
Dictionary<string, KeypadButton> _Buttons;
readonly Dictionary<string, KeypadButton> _buttons;
public Mpc3TouchpanelController(string key, string name, CrestronControlSystem processor, Dictionary<string, KeypadButton> buttons)
: base(key, name)
{
_Touchpanel = processor.ControllerTouchScreenSlotDevice as MPC3Basic;
_Buttons = buttons;
public Mpc3TouchpanelController(string key, string name, CrestronControlSystem processor, Dictionary<string, KeypadButton> buttons)
: base(key, name)
{
_touchpanel = processor.ControllerTouchScreenSlotDevice as MPC3Basic;
if (_touchpanel == null)
{
Debug.Console(1, this, "Failed to construct MPC3 Touchpanel Controller with key {0}, check configuration", key);
return;
}
_Touchpanel.ButtonStateChange += new Crestron.SimplSharpPro.DeviceSupport.ButtonEventHandler(_Touchpanel_ButtonStateChange);
_touchpanel.ButtonStateChange += _touchpanel_ButtonStateChange;
_buttons = buttons;
if (_buttons == null)
{
Debug.Console(1, this,
"Button properties are null, failed to setup MPC3 Touch Controller, check configuration");
return;
}
AddPostActivationAction(() =>
{
// Link up the button feedbacks to the specified BoolFeedbacks
foreach (var button in _Buttons)
{
var feedbackConfig = button.Value.Feedback;
var device = DeviceManager.GetDeviceForKey(feedbackConfig.DeviceKey) as Device;
if (device != null)
{
var bKey = button.Key.ToLower();
AddPostActivationAction(() =>
{
foreach (var button in _buttons)
{
var buttonKey = button.Key.ToLower();
var buttonConfig = button.Value;
var feedback = device.GetFeedbackProperty(feedbackConfig.FeedbackName);
InitializeButton(buttonKey, buttonConfig);
InitializeButtonFeedback(buttonKey, buttonConfig);
}
});
}
var bFeedback = feedback as BoolFeedback;
var iFeedback = feedback as IntFeedback;
if (bFeedback != null)
{
/// <summary>
/// Enables/disables buttons based on event type configuration
/// </summary>
/// <param name="key"></param>
/// <param name="config"></param>
public void InitializeButton(string key, KeypadButton config)
{
if (config == null)
{
Debug.Console(1, this, "Button '{0}' config is null, unable to initialize", key);
return;
}
if (bKey == "power")
{
bFeedback.LinkCrestronFeedback(_Touchpanel.FeedbackPower);
continue;
}
else if (bKey == "mute")
{
bFeedback.LinkCrestronFeedback(_Touchpanel.FeedbackMute);
continue;
}
int buttonNumber;
TryParseInt(key, out buttonNumber);
// Link to the Crestron Feedback corresponding to the button number
bFeedback.LinkCrestronFeedback(_Touchpanel.Feedbacks[UInt16.Parse(button.Key)]);
}
else if (iFeedback != null)
{
if (bKey == "volumefeedback")
{
var volFeedback = feedback as IntFeedback;
// TODO: Figure out how to subsribe to a volume IntFeedback and link it to the voluem
volFeedback.LinkInputSig(_Touchpanel.VolumeBargraph);
}
}
else
{
Debug.Console(1, this, "Unable to get BoolFeedback with name: {0} from device: {1}", feedbackConfig.FeedbackName, device.Key);
}
}
else
{
Debug.Console(1, this, "Unable to get device with key: {0}", feedbackConfig.DeviceKey);
}
}
});
}
var buttonEventTypes = config.EventTypes;
void _Touchpanel_ButtonStateChange(GenericBase device, Crestron.SimplSharpPro.DeviceSupport.ButtonEventArgs args)
{
Debug.Console(1, this, "Button {0} ({1}), {2}", args.Button.Number, args.Button.Name, args.NewButtonState);
var type = args.NewButtonState.ToString();
switch (key)
{
case ("power"):
{
if (buttonEventTypes == null)
_touchpanel.DisablePowerButton();
else
_touchpanel.EnablePowerButton();
if (_Buttons.ContainsKey(args.Button.Number.ToString()))
{
Press(args.Button.Number.ToString(), type);
}
else if(_Buttons.ContainsKey(args.Button.Name.ToString()))
{
Press(args.Button.Name.ToString(), type);
}
}
break;
}
case ("volumeup"):
{
if (buttonEventTypes == null)
_touchpanel.DisableVolumeUpButton();
/// <summary>
/// Runs the function associated with this button/type. One of the following strings:
/// Pressed, Released, Tapped, DoubleTapped, Held, HeldReleased
/// </summary>
/// <param name="number"></param>
/// <param name="type"></param>
public void Press(string number, string type)
{
// TODO: In future, consider modifying this to generate actions at device activation time
// to prevent the need to dynamically call the method via reflection on each button press
if (!_Buttons.ContainsKey(number)) { return; }
var but = _Buttons[number];
if (but.EventTypes.ContainsKey(type))
{
foreach (var a in but.EventTypes[type]) { DeviceJsonApi.DoDeviceAction(a); }
}
}
break;
}
case ("volumedown"):
{
if (buttonEventTypes == null)
_touchpanel.DisableVolumeDownButton();
break;
}
case ("volumefeedback"):
{
}
break;
}
case ("mute"):
{
if (buttonEventTypes == null)
_touchpanel.DisableMuteButton();
else
_touchpanel.EnableMuteButton();
/// <summary>
/// Represents the configuration of a keybad buggon
/// </summary>
public class KeypadButton
{
public Dictionary<string, DeviceActionWrapper[]> EventTypes { get; set; }
public KeypadButtonFeedback Feedback { get; set; }
break;
}
default:
{
if (buttonNumber == 0)
break;
public KeypadButton()
{
EventTypes = new Dictionary<string, DeviceActionWrapper[]>();
Feedback = new KeypadButtonFeedback();
}
}
if (buttonEventTypes == null)
_touchpanel.DisableNumericalButton((uint)buttonNumber);
else
_touchpanel.EnableNumericalButton((uint)buttonNumber);
/// <summary>
///
/// </summary>
public class KeypadButtonFeedback
{
public string DeviceKey { get; set; }
public string FeedbackName { get; set; }
}
break;
}
}
Debug.Console(1, this, "Button '{0}' {1}", key, buttonEventTypes == null
? "is disabled, verify eventTypes are configured."
: "is enabled");
}
/// <summary>
/// Links button feedback if configured
/// </summary>
/// <param name="key"></param>
/// <param name="config"></param>
public void InitializeButtonFeedback(string key, KeypadButton config)
{
if (config == null)
{
Debug.Console(1, this, "Button '{0}' config is null, unable to initialize feedback", key);
return;
}
int buttonNumber;
TryParseInt(key, out buttonNumber);
// Link up the button feedbacks to the specified device feedback
var buttonFeedback = config.Feedback;
if (buttonFeedback == null)
{
Debug.Console(1, this, "Button '{0}' feedback not configured and will not be implemented. Verify feedback is configured if required.", key);
return;
}
var device = DeviceManager.GetDeviceForKey(buttonFeedback.DeviceKey) as Device;
if (device == null)
{
Debug.Console(1, this, "Button '{0}' feedback device with key '{0}' not found, feedback will not be implemented. Verify feedback deviceKey is properly configured.",
buttonFeedback.DeviceKey);
return;
}
// TODO [ ] verify if this can replace the current method
var deviceFeedback = device.GetFeedbackProperty(buttonFeedback.FeedbackName);
Debug.Console(0, this, "deviceFeedback.GetType().Name: '{0}'", deviceFeedback.GetType().Name);
//switch (feedback.GetType().Name.ToLower())
//{
// case("boolfeedback"):
// {
// break;
// }
// case("intfeedback"):
// {
// break;
// }
// case("stringfeedback"):
// {
// break;
// }
//}
var boolFeedback = deviceFeedback as BoolFeedback;
var intFeedback = deviceFeedback as IntFeedback;
switch (key)
{
case ("power"):
{
if (boolFeedback != null) boolFeedback.LinkCrestronFeedback(_touchpanel.FeedbackPower);
break;
}
case ("volumeup"):
case ("volumedown"):
case ("volumefeedback"):
{
if (intFeedback != null)
{
var volumeFeedback = intFeedback;
volumeFeedback.LinkInputSig(_touchpanel.VolumeBargraph);
}
break;
}
case ("mute"):
{
if (boolFeedback != null) boolFeedback.LinkCrestronFeedback(_touchpanel.FeedbackMute);
break;
}
default:
{
if (boolFeedback != null) boolFeedback.LinkCrestronFeedback(_touchpanel.Feedbacks[(uint)buttonNumber]);
break;
}
}
}
/// <summary>
/// Try parse int helper method
/// </summary>
/// <param name="str"></param>
/// <param name="result"></param>
/// <returns></returns>
public bool TryParseInt(string str, out int result)
{
try
{
result = int.Parse(str);
return true;
}
catch
{
result = 0;
return false;
}
}
private void _touchpanel_ButtonStateChange(GenericBase device, Crestron.SimplSharpPro.DeviceSupport.ButtonEventArgs args)
{
Debug.Console(1, this, "Button {0} ({1}), {2}", args.Button.Number, args.Button.Name, args.NewButtonState);
var type = args.NewButtonState.ToString();
if (_buttons.ContainsKey(args.Button.Number.ToString(CultureInfo.InvariantCulture)))
{
Press(args.Button.Number.ToString(CultureInfo.InvariantCulture), type);
}
else if (_buttons.ContainsKey(args.Button.Name.ToString()))
{
Press(args.Button.Name.ToString(), type);
}
}
/// <summary>
/// Runs the function associated with this button/type. One of the following strings:
/// Pressed, Released, Tapped, DoubleTapped, Held, HeldReleased
/// </summary>
/// <param name="buttonKey"></param>
/// <param name="type"></param>
public void Press(string buttonKey, string type)
{
// TODO: In future, consider modifying this to generate actions at device activation time
// to prevent the need to dynamically call the method via reflection on each button press
if (!_buttons.ContainsKey(buttonKey)) return;
var button = _buttons[buttonKey];
if (!button.EventTypes.ContainsKey(type)) return;
foreach (var eventType in button.EventTypes[type]) DeviceJsonApi.DoDeviceAction(eventType);
}
}
/// <summary>
/// Represents the configuration of a keypad button
/// </summary>
public class KeypadButton
{
[JsonProperty("eventTypes")]
public Dictionary<string, DeviceActionWrapper[]> EventTypes { get; set; }
[JsonProperty("feedback")]
public KeypadButtonFeedback Feedback { get; set; }
public KeypadButton()
{
EventTypes = new Dictionary<string, DeviceActionWrapper[]>();
Feedback = new KeypadButtonFeedback();
}
}
/// <summary>
/// Represents the configuration of a keypad button feedback
/// </summary>
public class KeypadButtonFeedback
{
[JsonProperty("deviceKey")]
public string DeviceKey { get; set; }
[JsonProperty("feedbackName")]
public string FeedbackName { get; set; }
}
}

View File

@@ -1,553 +0,0 @@
using System;
using System.Collections.Generic;
using System.Linq;
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DM;
using Newtonsoft.Json;
using PepperDash.Core;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Bridges;
using PepperDash.Essentials.Core.Config;
using PepperDash_Essentials_Core.Bridges;
using PepperDash_Essentials_DM;
using PepperDash_Essentials_DM.Config;
namespace PepperDash_Essentials_DM.Chassis
{
[Description("Wrapper class for all HdPsXxx switchers")]
public class HdPsXxxController : CrestronGenericBridgeableBaseDevice, IRoutingNumericWithFeedback
{
private readonly HdPsXxx _chassis;
public RoutingPortCollection<RoutingInputPort> InputPorts { get; private set; }
public RoutingPortCollection<RoutingOutputPort> OutputPorts { get; private set; }
public Dictionary<uint, string> InputNames { get; set; }
public Dictionary<uint, string> OutputNames { get; set; }
public FeedbackCollection<StringFeedback> InputNameFeedbacks { get; private set; }
public FeedbackCollection<BoolFeedback> InputHdcpEnableFeedback { get; private set; }
public FeedbackCollection<StringFeedback> OutputNameFeedbacks { get; private set; }
public FeedbackCollection<StringFeedback> OutputRouteNameFeedback { get; private set; }
public FeedbackCollection<BoolFeedback> VideoInputSyncFeedbacks { get; private set; }
public FeedbackCollection<IntFeedback> VideoOutputRouteFeedbacks { get; private set; }
public StringFeedback DeviceNameFeedback { get; private set; }
public BoolFeedback AutoRouteFeedback { get; private set; }
public event EventHandler<RoutingNumericEventArgs> NumericSwitchChange;
public event EventHandler<DMInputEventArgs> DmInputChange;
/// <summary>
/// Constructor
/// </summary>
/// <param name="key"></param>
/// <param name="name"></param>
/// <param name="chassis">HdPs401 device instance</param>
/// <param name="props"></param>
public HdPsXxxController(string key, string name, HdPsXxx chassis, HdPsXxxPropertiesConfig props)
: base(key, name, chassis)
{
_chassis = chassis;
Name = name;
if (props == null)
{
Debug.Console(1, this, "HdPsXxxController properties are null, failed to build device");
return;
}
InputPorts = new RoutingPortCollection<RoutingInputPort>();
InputNameFeedbacks = new FeedbackCollection<StringFeedback>();
InputHdcpEnableFeedback = new FeedbackCollection<BoolFeedback>();
InputNames = new Dictionary<uint, string>();
OutputPorts = new RoutingPortCollection<RoutingOutputPort>();
OutputNameFeedbacks = new FeedbackCollection<StringFeedback>();
OutputRouteNameFeedback = new FeedbackCollection<StringFeedback>();
OutputNames = new Dictionary<uint, string>();
VideoInputSyncFeedbacks = new FeedbackCollection<BoolFeedback>();
VideoOutputRouteFeedbacks = new FeedbackCollection<IntFeedback>();
if (_chassis.NumberOfOutputs == 1)
AutoRouteFeedback = new BoolFeedback(() => _chassis.PriorityRouteOnFeedback.BoolValue);
InputNames = props.Inputs;
SetupInputs(InputNames);
OutputNames = props.Outputs;
SetupOutputs(OutputNames);
}
// input setup
private void SetupInputs(Dictionary<uint, string> dict)
{
if (dict == null)
{
Debug.Console(1, this, "Failed to setup inputs, properties are null");
return;
}
foreach (var kvp in dict)
{
Debug.Console(1, this, "props.Input[{0}]: {1}", kvp.Key, kvp.Value);
}
foreach (var item in _chassis.HdmiInputs)
{
var input = item;
var index = item.Number;
var key = string.Format("hdmiIn{0}", index);
var name = string.IsNullOrEmpty(InputNames[index]) ? string.Format("HDMI Input {0}", index) : InputNames[index];
InputNameFeedbacks.Add(new StringFeedback(name, () => InputNames[index]));
var port = new RoutingInputPort(key, eRoutingSignalType.AudioVideo, eRoutingPortConnectionType.Hdmi, input, this)
{
FeedbackMatchObject = input
};
Debug.Console(1, this, "Adding Input port: {0}", port.Key);
InputPorts.Add(port);
InputHdcpEnableFeedback.Add(new BoolFeedback(name, () => input.InputPort.HdcpSupportOnFeedback.BoolValue));
VideoInputSyncFeedbacks.Add(new BoolFeedback(name, () => input.VideoDetectedFeedback.BoolValue));
}
foreach (var item in _chassis.DmLiteInputs)
{
var input = item;
var index = item.Number;
var key = string.Format("dmLiteIn{0}", index);
var name = string.IsNullOrEmpty(InputNames[index]) ? string.Format("DM Input {0}", index) : InputNames[index];
input.Name.StringValue = name;
InputNameFeedbacks.Add(new StringFeedback(name, () => InputNames[index]));
var port = new RoutingInputPort(key, eRoutingSignalType.AudioVideo, eRoutingPortConnectionType.Hdmi, input, this)
{
FeedbackMatchObject = input
};
Debug.Console(0, this, "Adding Input port: {0}", port.Key);
InputPorts.Add(port);
InputHdcpEnableFeedback.Add(new BoolFeedback(name, () => input.InputPort.HdcpSupportOnFeedback.BoolValue));
VideoInputSyncFeedbacks.Add(new BoolFeedback(name, () => input.VideoDetectedFeedback.BoolValue));
}
_chassis.DMInputChange += _chassis_InputChange;
}
// output setup
private void SetupOutputs(Dictionary<uint, string> dict)
{
if (dict == null)
{
Debug.Console(1, this, "Failed to setup outputs, properties are null");
return;
}
foreach (var kvp in dict)
{
Debug.Console(1, this, "props.Output[{0}]: {1}", kvp.Key, kvp.Value);
}
foreach (var item in _chassis.HdmiDmLiteOutputs)
{
var output = item;
var index = item.Number;
var key = string.Format("hdmiDmLiteOut{0}", index);
var name = string.IsNullOrEmpty(OutputNames[index]) ? string.Format("Output {0}", index) : OutputNames[index];
output.Name.StringValue = name;
var port = new RoutingOutputPort(key, eRoutingSignalType.AudioVideo, eRoutingPortConnectionType.Hdmi, output, this)
{
FeedbackMatchObject = output,
// set port for CEC
Port = output
};
Debug.Console(0, this, "Adding Output port: {0}", port.Key);
OutputPorts.Add(port);
OutputRouteNameFeedback.Add(new StringFeedback(name, () => output.VideoOutFeedback.NameFeedback.StringValue));
VideoOutputRouteFeedbacks.Add(new IntFeedback(name,
() => output.VideoOutFeedback == null ? 0 : (int) output.VideoOutFeedback.Number));
// TODO [ ] Investigate setting input priorities per output
// {{in1-priority-level}, {in2-priority-level}, .... {in6-priority-level}}
// default priority level input 1-4 ascending
//var priorities = new byte[] {1,2,3,4};
//output.OutputPort.InputPriorities(priorities);
if (port.Port == null) continue;
var hdmiOutputStreamCec = output.HdmiOutput.HdmiOutputPort.StreamCec;
if (hdmiOutputStreamCec != null)
{
var streamCec = new StreamCecWrapper(string.Format("{0}-hdmiOut{1}-streamCec", Key, index), hdmiOutputStreamCec);
DeviceManager.AddDevice(streamCec);
}
var dmLiteOutputStreamCec = output.DmLiteOutput.DmLiteOutputPort.StreamCec;
if (dmLiteOutputStreamCec != null)
{
var streamCec = new StreamCecWrapper(string.Format("{0}-dmLiteOut{1}-streamCec", Key, index), dmLiteOutputStreamCec);
DeviceManager.AddDevice(streamCec);
}
}
_chassis.DMOutputChange += _chassis_OutputChange;
}
#region BridgeLinking
/// <summary>
/// Link device to API
/// </summary>
/// <param name="trilist"></param>
/// <param name="joinStart"></param>
/// <param name="joinMapKey"></param>
/// <param name="bridge"></param>
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
var joinMap = new HdPsXxxControllerJoinMap(joinStart);
if (bridge != null)
{
bridge.AddJoinMap(Key, joinMap);
}
else
{
Debug.Console(0, this, "Please update config to use 'eiscApiAdvanced' to get all join map features for this device");
}
IsOnline.LinkInputSig(trilist.BooleanInput[joinMap.IsOnline.JoinNumber]);
DeviceNameFeedback.LinkInputSig(trilist.StringInput[joinMap.Name.JoinNumber]);
_chassis.OnlineStatusChange += _chassis_OnlineStatusChange;
LinkChassisInputsToApi(trilist, joinMap);
LinkChassisOutputsToApi(trilist, joinMap);
trilist.OnlineStatusChange += (sender, args) =>
{
if (!args.DeviceOnLine) return;
};
}
// links inputs to API
private void LinkChassisInputsToApi(BasicTriList trilist, HdPsXxxControllerJoinMap joinMap)
{
for (uint i = 1; i <= _chassis.NumberOfInputs; i++)
{
var input = i;
var inputName = InputNames[input];
var indexWithOffset = input - 1;
trilist.SetSigTrueAction(joinMap.EnableInputHdcp.JoinNumber + indexWithOffset, () => EnableHdcp(input));
trilist.SetSigTrueAction(joinMap.DisableInputHdcp.JoinNumber + indexWithOffset, () => DisableHdcp(input));
InputHdcpEnableFeedback[inputName].LinkInputSig(trilist.BooleanInput[joinMap.EnableInputHdcp.JoinNumber + indexWithOffset]);
InputHdcpEnableFeedback[inputName].LinkComplementInputSig(trilist.BooleanInput[joinMap.EnableInputHdcp.JoinNumber + indexWithOffset]);
VideoInputSyncFeedbacks[inputName].LinkInputSig(trilist.BooleanInput[joinMap.InputSync.JoinNumber + indexWithOffset]);
InputNameFeedbacks[inputName].LinkInputSig(trilist.StringInput[joinMap.InputName.JoinNumber + indexWithOffset]);
}
}
// links outputs to API
private void LinkChassisOutputsToApi(BasicTriList trilist, HdPsXxxControllerJoinMap joinMap)
{
for (uint i = 1; i <= _chassis.NumberOfOutputs; i++)
{
var output = i;
var outputName = OutputNames[output];
var indexWithOffset = output - 1;
trilist.SetUShortSigAction(joinMap.OutputRoute.JoinNumber + indexWithOffset, (a) =>
ExecuteNumericSwitch(a, (ushort)output, eRoutingSignalType.AudioVideo));
OutputNameFeedbacks[outputName].LinkInputSig(trilist.StringInput[joinMap.OutputName.JoinNumber + indexWithOffset]);
OutputRouteNameFeedback[outputName].LinkInputSig(trilist.StringInput[joinMap.OutputRoutedName.JoinNumber + indexWithOffset]);
VideoOutputRouteFeedbacks[outputName].LinkInputSig(trilist.UShortInput[joinMap.OutputRoute.JoinNumber + indexWithOffset]);
}
AutoRouteFeedback.LinkInputSig(trilist.BooleanInput[joinMap.EnableAutoRoute.JoinNumber]);
}
#endregion
/// <summary>
/// Executes a device switch using objects
/// </summary>
/// <param name="inputSelector"></param>
/// <param name="outputSelector"></param>
/// <param name="signalType"></param>
public void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType)
{
var input = inputSelector as HdPsXxxHdmiInput;
var output = outputSelector as HdPsXxxHdmiOutput;
Debug.Console(2, this, "ExecuteSwitch: input={0}, output={1}", input, output);
if (output == null)
{
Debug.Console(0, this, "Unable to make switch, output selector is not HdPsXxxHdmiOutput");
return;
}
// TODO [ ] Validate if sending the same input toggles the switch
var current = output.VideoOut;
if (current != input)
output.VideoOut = input;
}
/// <summary>
/// Executes a device switch using numeric values
/// </summary>
/// <param name="inputSelector"></param>
/// <param name="outputSelector"></param>
/// <param name="signalType"></param>
public void ExecuteNumericSwitch(ushort inputSelector, ushort outputSelector, eRoutingSignalType signalType)
{
var input = inputSelector == 0 ? null : _chassis.Inputs[inputSelector];
var output = _chassis.Outputs[outputSelector];
Debug.Console(2, this, "ExecuteNumericSwitch: input={0}, output={1}", input, output);
ExecuteSwitch(input, output, signalType);
}
/// <summary>
/// Enables Hdcp on the provided port
/// </summary>
/// <param name="port"></param>
public void EnableHdcp(uint port)
{
if (port <= 0 || port > _chassis.NumberOfInputs) return;
_chassis.HdmiInputs[port].InputPort.HdcpSupportOn();
InputHdcpEnableFeedback[InputNames[port]].FireUpdate();
}
/// <summary>
/// Disables Hdcp on the provided port
/// </summary>
/// <param name="port"></param>
public void DisableHdcp(uint port)
{
if (port <= 0 || port > _chassis.NumberOfInputs) return;
_chassis.HdmiInputs[port].InputPort.HdcpSupportOff();
InputHdcpEnableFeedback[InputNames[port]].FireUpdate();
}
/// <summary>
/// Enables switcher auto route
/// </summary>
public void EnableAutoRoute()
{
if (_chassis.NumberOfInputs == 1) return;
_chassis.AutoRouteOn();
}
/// <summary>
/// Disables switcher auto route
/// </summary>
public void DisableAutoRoute()
{
if (_chassis.NumberOfInputs == 1) return;
_chassis.AutoRouteOff();
}
#region Events
// _chassis online/offline event
private void _chassis_OnlineStatusChange(GenericBase currentDevice,
OnlineOfflineEventArgs args)
{
IsOnline.FireUpdate();
if (!args.DeviceOnLine) return;
foreach (var feedback in Feedbacks)
{
feedback.FireUpdate();
}
}
// _chassis input change event
private void _chassis_InputChange(Switch device, DMInputEventArgs args)
{
var eventId = args.EventId;
switch (eventId)
{
case DMInputEventIds.VideoDetectedEventId:
{
Debug.Console(1, this, "Event ID {0}: Updating VideoInputSyncFeedbacks", eventId);
foreach (var item in VideoInputSyncFeedbacks)
{
item.FireUpdate();
}
break;
}
case DMInputEventIds.InputNameFeedbackEventId:
case DMInputEventIds.InputNameEventId:
case DMInputEventIds.NameFeedbackEventId:
{
Debug.Console(1, this, "Event ID {0}: Updating name feedbacks", eventId);
var input = args.Number;
var name = _chassis.HdmiInputs[input].NameFeedback.StringValue;
Debug.Console(1, this, "Input {0} Name {1}", input, name);
break;
}
default:
{
Debug.Console(1, this, "Uhandled DM Input Event ID {0}", eventId);
break;
}
}
OnDmInputChange(args);
}
// _chassis output change event
private void _chassis_OutputChange(Switch device, DMOutputEventArgs args)
{
if (args.EventId != DMOutputEventIds.VideoOutEventId) return;
var output = args.Number;
var input = _chassis.HdmiDmLiteOutputs[output].VideoOutFeedback == null
? 0
: _chassis.HdmiDmLiteOutputs[output].VideoOutFeedback.Number;
var outputName = OutputNames[output];
var feedback = VideoOutputRouteFeedbacks[outputName];
if (feedback == null) return;
var inputPort = InputPorts.FirstOrDefault(
p => p.FeedbackMatchObject == _chassis.HdmiDmLiteOutputs[output].VideoOutFeedback);
var outputPort = OutputPorts.FirstOrDefault(
p => p.FeedbackMatchObject == _chassis.HdmiDmLiteOutputs[output]);
feedback.FireUpdate();
OnSwitchChange(new RoutingNumericEventArgs(
output, input, outputPort, inputPort, eRoutingSignalType.AudioVideo));
}
// Raise an event when the status of a switch object changes.
private void OnSwitchChange(RoutingNumericEventArgs args)
{
var newEvent = NumericSwitchChange;
if (newEvent != null) newEvent(this, args);
}
// Raise an event when the DM input changes.
private void OnDmInputChange(DMInputEventArgs args)
{
var newEvent = DmInputChange;
if (newEvent != null) newEvent(this, args);
}
#endregion
#region Factory
public class HdSp401ControllerFactory : EssentialsDeviceFactory<HdPsXxxController>
{
public HdSp401ControllerFactory()
{
TypeNames = new List<string>() { "hdps401", "hdps402", "hdps621", "hdps622" };
}
public override EssentialsDevice BuildDevice(DeviceConfig dc)
{
var key = dc.Key;
var name = dc.Name;
var type = dc.Type.ToLower();
Debug.Console(1, "Factory Attempting to create new {0} device", type);
var props = JsonConvert.DeserializeObject<HdPsXxxPropertiesConfig>(dc.Properties.ToString());
if (props == null)
{
Debug.Console(1, "Factory failed to create new HD-PSXxx device, properties config was null");
return null;
}
var ipid = props.Control.IpIdInt;
switch (type)
{
case ("hdps401"):
{
return new HdPsXxxController(key, name, new HdPs401(ipid, Global.ControlSystem), props);
}
case ("hdps402"):
{
return new HdPsXxxController(key, name, new HdPs402(ipid, Global.ControlSystem), props);
}
case ("hdps621"):
{
return new HdPsXxxController(key, name, new HdPs621(ipid, Global.ControlSystem), props);
}
case ("hdps622"):
{
return new HdPsXxxController(key, name, new HdPs622(ipid, Global.ControlSystem), props);
}
default:
{
Debug.Console(1, "Factory failed to create new {0} device", type);
return null;
}
}
}
}
#endregion
}
public class StreamCecWrapper : IKeyed, ICec
{
public string Key { get; private set; }
public Cec StreamCec { get; private set; }
public StreamCecWrapper(string key, Cec streamCec)
{
Key = key;
StreamCec = streamCec;
}
}
}

View File

@@ -1,30 +0,0 @@
using System.Collections.Generic;
using Newtonsoft.Json;
using PepperDash.Core;
using PepperDash.Essentials.DM.Config;
namespace PepperDash_Essentials_DM.Config
{
public class HdPsXxxPropertiesConfig
{
[JsonProperty("control")]
public ControlPropertiesConfig Control { get; set; }
[JsonProperty("inputs")]
//public Dictionary<uint, InputPropertiesConfig> Inputs { get; set; }
public Dictionary<uint, string> Inputs { get; set; }
[JsonProperty("outputs")]
//public Dictionary<uint, InputPropertiesConfig> Outputs { get; set; }
public Dictionary<uint, string> Outputs { get; set; }
public HdPsXxxPropertiesConfig()
{
//Inputs = new Dictionary<uint, InputPropertiesConfig>();
//Outputs = new Dictionary<uint, InputPropertiesConfig>();
Inputs = new Dictionary<uint, string>();
Outputs = new Dictionary<uint, string>();
}
}
}

View File

@@ -104,8 +104,6 @@
<Compile Include="Chassis\HdMd8xNController.cs" />
<Compile Include="Chassis\HdMdNxM4kEBridgeableController.cs" />
<Compile Include="Chassis\HdMdNxM4kEController.cs" />
<Compile Include="Chassis\HdPsXxxController.cs" />
<Compile Include="Config\HdPsXxxPropertiesConfig.cs" />
<Compile Include="Config\InputPropertiesConfig.cs" />
<Compile Include="Endpoints\EndpointInterfaces.cs" />
<Compile Include="Endpoints\DGEs\DgeJoinMap.cs" />