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1 Commits

Author SHA1 Message Date
Andrew Welker
a23766a62b fix DM 2-Series chassis RX build dict 2020-06-10 14:00:36 -06:00
27 changed files with 640 additions and 1356 deletions

View File

@@ -1,4 +1,4 @@
$latestVersions = $(git tag --merged origin/main)
$latestVersions = $(git tag --merged origin/master)
$latestVersion = [version]"0.0.0"
Foreach ($version in $latestVersions) {
Write-Host $version
@@ -18,7 +18,7 @@ $newVersion = [version]$latestVersion
$phase = ""
$newVersionString = ""
switch -regex ($Env:GITHUB_REF) {
'^refs\/heads\/main*.' {
'^refs\/heads\/master*.' {
$newVersionString = "{0}.{1}.{2}" -f $newVersion.Major, $newVersion.Minor, $newVersion.Build
}
'^refs\/heads\/feature\/*.' {

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@@ -18,8 +18,8 @@ env:
VERSION: 0.0.0-buildtype-buildnumber
# Defaults to debug for build type
BUILD_TYPE: Debug
# Defaults to main as the release branch. Change as necessary
RELEASE_BRANCH: main
# Defaults to master as the release branch. Change as necessary
RELEASE_BRANCH: master
jobs:
Build_Project:
runs-on: windows-latest
@@ -189,11 +189,11 @@ jobs:
run: git push --tags origin
- name: Check Directory
run: Get-ChildItem ./
# This step only runs if the branch is main or release/ runs and pushes the build to the public build repo
# This step only runs if the branch is master or release/ runs and pushes the build to the public build repo
Public_Push_Output:
needs: Build_Project
runs-on: windows-latest
if: contains(github.ref, 'main') || contains(github.ref, '/release/')
if: contains(github.ref, 'master') || contains(github.ref, '/release/')
steps:
# Checkout the repo
- name: check Github ref

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@@ -1,11 +1,11 @@
name: main Build using Docker
name: Master Build using Docker
on:
release:
types:
- created
branches:
- main
- master
env:
# solution path doesn't need slashes unless there it is multiple folders deep
# solution name does not include extension. .sln is assumed
@@ -15,8 +15,8 @@ env:
VERSION: 0.0.0-buildtype-buildnumber
# Defaults to debug for build type
BUILD_TYPE: Release
# Defaults to main as the release branch. Change as necessary
RELEASE_BRANCH: main
# Defaults to master as the release branch. Change as necessary
RELEASE_BRANCH: master
jobs:
Build_Project:
runs-on: windows-latest
@@ -114,8 +114,8 @@ jobs:
Remove-Item -Path ./Version/version.txt
Remove-Item -Path ./Version
# Checkout/Create the branch
- name: Checkout main branch
run: git checkout main
- name: Checkout Master branch
run: git checkout master
# Download the build output into the repo
- name: Download Build output
uses: actions/download-artifact@v1
@@ -151,13 +151,13 @@ jobs:
# Push the commit
- name: Push to Builds Repo
shell: powershell
run: git push -u origin main --force
run: git push -u origin master --force
# Push the tags
- name: Push tags
run: git push --tags origin
- name: Check Directory
run: Get-ChildItem ./
# This step only runs if the branch is main or release/ runs and pushes the build to the public build repo
# This step only runs if the branch is master or release/ runs and pushes the build to the public build repo
Public_Push_Output:
needs: Build_Project
runs-on: windows-latest
@@ -186,9 +186,9 @@ jobs:
Write-Output "::set-env name=VERSION::$version"
Remove-Item -Path ./Version/version.txt
Remove-Item -Path ./Version
# Checkout main branch
# Checkout master branch
- name: Create new branch
run: git checkout main
run: git checkout master
# Download the build output into the repo
- name: Download Build output
uses: actions/download-artifact@v1
@@ -224,7 +224,7 @@ jobs:
# Push the commit
- name: Push to Builds Repo
shell: powershell
run: git push -u origin main --force
run: git push -u origin master --force
# Push the tags
- name: Push tags
run: git push --tags origin

View File

@@ -1,4 +1,5 @@
using System;
using Crestron.SimplSharpPro.DeviceSupport;
namespace PepperDash.Essentials.Bridges
{
@@ -6,7 +7,8 @@ namespace PepperDash.Essentials.Bridges
/// Defines a device that uses the legacy JoinMapBase for its join map
/// </summary>
[Obsolete("IBridgeAdvanced should be used going forward with JoinMapBaseAdvanced")]
public interface IBridge:Core.Bridges.IBridge
public interface IBridge
{
void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey);
}
}

View File

@@ -10,7 +10,7 @@ PepperDash Essentials is an open source Crestron framework that can be configure
Essentials Framework is a collection of C# / Simpl# Pro libraries that can be utilized in several different manners. It is currently operating as a 100% configuration-driven system, and can be extended to add different workflows and behaviors, either through the addition of further device "types" or via the plug-in mechanism. The framework is a collection of "things" that are all related and interconnected, but in general do not have dependencies on each other.
## Minimum Requirements
- Essentials Framework runs on any Crestron 3-series processor, **4-series** processor or Crestron's VC-4 platform.
- Essentials Framework runs on any Crestron 3-series processor or Crestron's VC-4 platform.
- To edit and compile the source, Microsoft Visual Studio 2008 Professional with SP1 is required.
- Crestron's Simpl# Plugin is also required (must be obtained from Crestron).

View File

@@ -110,24 +110,15 @@ namespace PepperDash.Essentials.Core.Bridges
if (device == null) continue;
Debug.Console(1, this, "Linking Device: '{0}'", device.Key);
if (typeof (IBridge).IsAssignableFrom(device.GetType().GetCType()))
{
var basicBridge = device as IBridge;
if (basicBridge != null)
{
Debug.Console(0, this, Debug.ErrorLogLevel.Notice,
"Linking EiscApiAdvanced {0} to device {1} using obsolete join map. Please update the device's join map.",
Key, device.Key);
basicBridge.LinkToApi(Eisc, d.JoinStart, d.JoinMapKey);
}
continue;
}
//if (device is IBridge) // Check for this first to allow bridges in plugins to override existing bridges that apply to the same type.
//{
// Debug.Console(2, this, "'{0}' is IBridge", device.Key);
//}
if (!typeof (IBridgeAdvanced).IsAssignableFrom(device.GetType().GetCType()))
{
continue;
}
var bridge = device as IBridgeAdvanced;
if (bridge != null) bridge.LinkToApi(Eisc, d.JoinStart, d.JoinMapKey, this);
}

View File

@@ -1,19 +1,13 @@
using System;
using Crestron.SimplSharpPro.DeviceSupport;
using PepperDash.Core;
namespace PepperDash.Essentials.Core.Bridges
{
/// <summary>
/// Defines a device that uses JoinMapBaseAdvanced for its join map
/// </summary>
public interface IBridgeAdvanced:IKeyed
public interface IBridgeAdvanced
{
void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge);
}
public interface IBridge:IKeyed
{
void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey);
}
}

View File

@@ -89,43 +89,6 @@ namespace PepperDash.Essentials.Core.Bridges
public JoinDataComplete OutputNames = new JoinDataComplete(new JoinData() { JoinNumber = 301, JoinSpan = 32 },
new JoinMetadata() { Label = "DM Chassis Output Name", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Serial });
[JoinName("InputVideoNames")] public JoinDataComplete InputVideoNames =
new JoinDataComplete(new JoinData {JoinNumber = 501, JoinSpan = 200},
new JoinMetadata
{
Description = "Video Input Name",
JoinCapabilities = eJoinCapabilities.ToFromSIMPL,
JoinType = eJoinType.Serial
});
[JoinName("InputAudioNames")]
public JoinDataComplete InputAudioNames =
new JoinDataComplete(new JoinData { JoinNumber = 701, JoinSpan = 200 },
new JoinMetadata
{
Description = "Video Input Name",
JoinCapabilities = eJoinCapabilities.ToFromSIMPL,
JoinType = eJoinType.Serial
});
[JoinName("OutputVideoNames")]
public JoinDataComplete OutputVideoNames =
new JoinDataComplete(new JoinData { JoinNumber = 901, JoinSpan = 200 },
new JoinMetadata
{
Description = "Video Input Name",
JoinCapabilities = eJoinCapabilities.ToFromSIMPL,
JoinType = eJoinType.Serial
});
[JoinName("OutputAudioNames")]
public JoinDataComplete OutputAudioNames =
new JoinDataComplete(new JoinData { JoinNumber = 1101, JoinSpan = 200 },
new JoinMetadata
{
Description = "Video Input Name",
JoinCapabilities = eJoinCapabilities.ToFromSIMPL,
JoinType = eJoinType.Serial
});
[JoinName("OutputCurrentVideoInputNames")]
public JoinDataComplete OutputCurrentVideoInputNames = new JoinDataComplete(new JoinData() { JoinNumber = 2001, JoinSpan = 32 },
new JoinMetadata() { Label = "DM Chassis Video Output Currently Routed Video Input Name", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Serial });

View File

@@ -11,10 +11,8 @@ using PepperDash.Core;
namespace PepperDash.Essentials.Core
{
public class ComPortController : Device, IBasicCommunicationWithStreamDebugging
public class ComPortController : Device, IBasicCommunication
{
public CommunicationStreamDebugging StreamDebugging { get; private set; }
public event EventHandler<GenericCommMethodReceiveBytesArgs> BytesReceived;
public event EventHandler<GenericCommMethodReceiveTextArgs> TextReceived;
@@ -26,8 +24,6 @@ namespace PepperDash.Essentials.Core
public ComPortController(string key, Func<EssentialsControlPropertiesConfig, ComPort> postActivationFunc,
ComPort.ComPortSpec spec, EssentialsControlPropertiesConfig config) : base(key)
{
StreamDebugging = new CommunicationStreamDebugging(key);
Spec = spec;
AddPostActivationAction(() =>
@@ -95,12 +91,7 @@ namespace PepperDash.Essentials.Core
}
var textHandler = TextReceived;
if (textHandler != null)
{
if (StreamDebugging.RxStreamDebuggingIsEnabled)
Debug.Console(0, this, "Recevied: '{0}'", s);
textHandler(this, new GenericCommMethodReceiveTextArgs(s));
}
}
public override bool Deactivate()
@@ -114,10 +105,7 @@ namespace PepperDash.Essentials.Core
{
if (Port == null)
return;
if (StreamDebugging.TxStreamDebuggingIsEnabled)
Debug.Console(0, this, "Sending {0} characters of text: '{1}'", text.Length, text);
Port.Send(text);
Port.Send(text);
}
public void SendBytes(byte[] bytes)
@@ -125,9 +113,6 @@ namespace PepperDash.Essentials.Core
if (Port == null)
return;
var text = Encoding.GetEncoding(28591).GetString(bytes, 0, bytes.Length);
if (StreamDebugging.TxStreamDebuggingIsEnabled)
Debug.Console(0, this, "Sending {0} bytes: '{1}'", bytes.Length, ComTextHelper.GetEscapedText(bytes));
Port.Send(text);
}

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@@ -1,24 +0,0 @@
using System;
using Crestron.SimplSharpProInternal;
namespace PepperDash.Essentials.Core.CrestronIO.Cards
{
public class C3CardControllerBase:CrestronGenericBaseDevice
{
private readonly C3Card _card;
public C3CardControllerBase(string key, string name, C3Card hardware) : base(key, name, hardware)
{
_card = hardware;
}
#region Overrides of Object
public override string ToString()
{
return String.Format("{0} {1}", Key, _card.ToString());
}
#endregion
}
}

View File

@@ -1,29 +0,0 @@
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.ThreeSeriesCards;
namespace PepperDash.Essentials.Core.CrestronIO.Cards
{
public class C3Com3Controller:C3CardControllerBase, IComPorts
{
private readonly C3com3 _card;
public C3Com3Controller(string key, string name, C3com3 hardware) : base(key, name, hardware)
{
_card = hardware;
}
#region Implementation of IComPorts
public CrestronCollection<ComPort> ComPorts
{
get { return _card.ComPorts; }
}
public int NumberOfComPorts
{
get { return _card.NumberOfComPorts; }
}
#endregion
}
}

View File

@@ -1,29 +0,0 @@
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.ThreeSeriesCards;
namespace PepperDash.Essentials.Core.CrestronIO.Cards
{
public class C3Io16Controller:C3CardControllerBase,IIOPorts
{
private readonly C3io16 _card;
public C3Io16Controller(string key, string name, C3io16 hardware) : base(key, name, hardware)
{
_card = hardware;
}
#region Implementation of IIOPorts
public CrestronCollection<Versiport> VersiPorts
{
get { return _card.VersiPorts; }
}
public int NumberOfVersiPorts
{
get { return _card.NumberOfVersiPorts; }
}
#endregion
}
}

View File

@@ -1,29 +0,0 @@
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.ThreeSeriesCards;
namespace PepperDash.Essentials.Core.CrestronIO.Cards
{
public class C3Ir8Controller:C3CardControllerBase, IIROutputPorts
{
private readonly C3ir8 _card;
public C3Ir8Controller(string key, string name, C3ir8 hardware) : base(key, name, hardware)
{
_card = hardware;
}
#region Implementation of IIROutputPorts
public CrestronCollection<IROutputPort> IROutputPorts
{
get { return _card.IROutputPorts; }
}
public int NumberOfIROutputPorts
{
get { return _card.NumberOfIROutputPorts; }
}
#endregion
}
}

View File

@@ -1,29 +0,0 @@
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.ThreeSeriesCards;
namespace PepperDash.Essentials.Core.CrestronIO.Cards
{
public class C3Ry16Controller:C3CardControllerBase, IRelayPorts
{
private readonly C3ry16 _card;
public C3Ry16Controller(string key, string name, C3ry16 hardware) : base(key, name, hardware)
{
_card = hardware;
}
#region Implementation of IRelayPorts
public CrestronCollection<Relay> RelayPorts
{
get { return _card.RelayPorts; }
}
public int NumberOfRelayPorts
{
get { return _card.NumberOfRelayPorts; }
}
#endregion
}
}

View File

@@ -1,29 +0,0 @@
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.ThreeSeriesCards;
namespace PepperDash.Essentials.Core.CrestronIO.Cards
{
public class C3Ry8Controller:C3CardControllerBase, IRelayPorts
{
private readonly C3ry8 _card;
public C3Ry8Controller(string key, string name, C3ry8 hardware) : base(key, name, hardware)
{
_card = hardware;
}
#region Implementation of IRelayPorts
public CrestronCollection<Relay> RelayPorts
{
get { return _card.RelayPorts; }
}
public int NumberOfRelayPorts
{
get { return _card.NumberOfRelayPorts; }
}
#endregion
}
}

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@@ -1,116 +0,0 @@
using System;
using System.Collections.Generic;
using Crestron.SimplSharpPro.ThreeSeriesCards;
using Newtonsoft.Json;
using PepperDash.Core;
using PepperDash.Essentials.Core.Config;
namespace PepperDash.Essentials.Core.CrestronIO.Cards
{
[ConfigSnippet("\"properties\":{\"card\":\"c3com3\"}")]
public class CenCi31Controller : CrestronGenericBaseDevice
{
private const string CardKeyTemplate = "{0}-card";
private const string CardNameTemplate = "{0}:{1}:{2}";
private const uint CardSlot = 1;
private readonly CenCi31 _cardCage;
private readonly CenCi31Configuration _config;
private readonly Dictionary<string, Func<CenCi31, uint, C3CardControllerBase>> _cardDict;
public CenCi31Controller(string key, string name, CenCi31Configuration config, CenCi31 hardware) : base(key, name, hardware)
{
_cardCage = hardware;
_config = config;
_cardDict = new Dictionary<string, Func<CenCi31, uint, C3CardControllerBase>>
{
{
"c3com3",
(c, s) =>
new C3Com3Controller(String.Format(CardKeyTemplate, key),
String.Format(CardNameTemplate, key, s, "C3Com3"), new C3com3(_cardCage))
},
{
"c3io16",
(c, s) =>
new C3Io16Controller(String.Format(CardKeyTemplate, key),
String.Format(CardNameTemplate, key, s,"C3Io16"), new C3io16(_cardCage))
},
{
"c3ir8",
(c, s) =>
new C3Ir8Controller(String.Format(CardKeyTemplate, key),
String.Format(CardNameTemplate, key, s, "C3Ir8"), new C3ir8(_cardCage))
},
{
"c3ry16",
(c, s) =>
new C3Ry16Controller(String.Format(CardKeyTemplate, key),
String.Format(CardNameTemplate, key, s, "C3Ry16"), new C3ry16(_cardCage))
},
{
"c3ry8",
(c, s) =>
new C3Ry8Controller(String.Format(CardKeyTemplate, key),
String.Format(CardNameTemplate, key, s, "C3Ry8"), new C3ry8(_cardCage))
},
};
GetCards();
}
private void GetCards()
{
Func<CenCi31, uint, C3CardControllerBase> cardBuilder;
if (String.IsNullOrEmpty(_config.Card))
{
Debug.Console(0, this, "No card specified");
return;
}
if (!_cardDict.TryGetValue(_config.Card.ToLower(), out cardBuilder))
{
Debug.Console(0, "Unable to find factory for 3-Series card type {0}.", _config.Card);
return;
}
var device = cardBuilder(_cardCage, CardSlot);
DeviceManager.AddDevice(device);
}
}
public class CenCi31Configuration
{
[JsonProperty("card")]
public string Card { get; set; }
}
public class CenCi31ControllerFactory : EssentialsDeviceFactory<CenCi31Controller>
{
public CenCi31ControllerFactory()
{
TypeNames = new List<string> {"cenci31"};
}
#region Overrides of EssentialsDeviceFactory<CenCi31Controller>
public override EssentialsDevice BuildDevice(DeviceConfig dc)
{
Debug.Console(1, "Factory attempting to build new CEN-CI-1");
var controlProperties = CommFactory.GetControlPropertiesConfig(dc);
var ipId = controlProperties.IpIdInt;
var cardCage = new CenCi31(ipId, Global.ControlSystem);
var config = dc.Properties.ToObject<CenCi31Configuration>();
return new CenCi31Controller(dc.Key, dc.Name, config, cardCage);
}
#endregion
}
}

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@@ -1,131 +0,0 @@
using System;
using System.Collections.Generic;
using Crestron.SimplSharpPro.ThreeSeriesCards;
using Newtonsoft.Json;
using PepperDash.Core;
using PepperDash.Essentials.Core.Config;
namespace PepperDash.Essentials.Core.CrestronIO.Cards
{
[ConfigSnippet("\"properties\":{\"cards\":{\"1\":\"c3com3\",\"2\":\"c3ry16\",\"3\":\"c3ry8\"}}")]
public class CenCi33Controller : CrestronGenericBaseDevice
{
private const string CardKeyTemplate = "{0}-card{1}";
private const string CardNameTemplate = "{0}:{1}:{2}";
private const uint CardSlots = 3;
private readonly CenCi33 _cardCage;
private readonly CenCi33Configuration _config;
private readonly Dictionary<string, Func<CenCi33, uint, C3CardControllerBase>> _cardDict;
public CenCi33Controller(string key, string name, CenCi33Configuration config, CenCi33 hardware) : base(key, name, hardware)
{
_cardCage = hardware;
_config = config;
_cardDict = new Dictionary<string, Func<CenCi33, uint, C3CardControllerBase>>
{
{
"c3com3",
(c, s) =>
new C3Com3Controller(String.Format(CardKeyTemplate, key, s),
String.Format(CardNameTemplate, key, s, "C3Com3"), new C3com3(s,_cardCage))
},
{
"c3io16",
(c, s) =>
new C3Io16Controller(String.Format(CardKeyTemplate, key, s),
String.Format(CardNameTemplate, key, s, "C3Io16"), new C3io16(s,_cardCage))
},
{
"c3ir8",
(c, s) =>
new C3Ir8Controller(String.Format(CardKeyTemplate, key, s),
String.Format(CardNameTemplate, key, s, "C3Ir8"), new C3ir8(s,_cardCage))
},
{
"c3ry16",
(c, s) =>
new C3Ry16Controller(String.Format(CardKeyTemplate, key, s),
String.Format(CardNameTemplate, key, s, "C3Ry16"), new C3ry16(s,_cardCage))
},
{
"c3ry8",
(c, s) =>
new C3Ry8Controller(String.Format(CardKeyTemplate, key, s),
String.Format(CardNameTemplate, key, s, "C3Ry8"), new C3ry8(s,_cardCage))
},
};
GetCards();
}
private void GetCards()
{
if (_config.Cards == null)
{
Debug.Console(0, this, "No card configuration for this device found");
return;
}
for (uint i = 1; i <= CardSlots; i++)
{
string cardType;
if (!_config.Cards.TryGetValue(i, out cardType))
{
Debug.Console(1, this, "No card found for slot {0}", i);
continue;
}
if (String.IsNullOrEmpty(cardType))
{
Debug.Console(0, this, "No card specified for slot {0}", i);
return;
}
Func<CenCi33, uint, C3CardControllerBase> cardBuilder;
if (!_cardDict.TryGetValue(cardType.ToLower(), out cardBuilder))
{
Debug.Console(0, "Unable to find factory for 3-Series card type {0}.", cardType);
return;
}
var device = cardBuilder(_cardCage, i);
DeviceManager.AddDevice(device);
}
}
}
public class CenCi33Configuration
{
[JsonProperty("cards")]
public Dictionary<uint, string> Cards { get; set; }
}
public class CenCi33ControllerFactory : EssentialsDeviceFactory<CenCi33Controller>
{
public CenCi33ControllerFactory()
{
TypeNames = new List<string> {"cenci33"};
}
#region Overrides of EssentialsDeviceFactory<CenCi33Controller>
public override EssentialsDevice BuildDevice(DeviceConfig dc)
{
Debug.Console(1, "Factory attempting to build new CEN-CI-3");
var controlProperties = CommFactory.GetControlPropertiesConfig(dc);
var ipId = controlProperties.IpIdInt;
var cardCage = new CenCi33(ipId, Global.ControlSystem);
var config = dc.Properties.ToObject<CenCi33Configuration>();
return new CenCi33Controller(dc.Key, dc.Name, config, cardCage);
}
#endregion
}
}

View File

@@ -1,141 +0,0 @@
using System;
using System.Collections.Generic;
using Crestron.SimplSharpPro.ThreeSeriesCards;
using Newtonsoft.Json;
using PepperDash.Core;
using PepperDash.Essentials.Core.Config;
namespace PepperDash.Essentials.Core.CrestronIO.Cards
{
[ConfigSnippet("\"properties\":{\"cards\":{\"1\":\"c3com3\",\"2\":\"c3ry16\",\"3\":\"c3ry8\"}}")]
public class InternalCardCageController : EssentialsDevice
{
private const string CardKeyTemplate = "{0}-card{1}";
private const string CardNameTemplate = "{0}:{1}:{2}";
private const uint CardSlots = 3;
private readonly InternalCardCageConfiguration _config;
private readonly Dictionary<string, Func<uint, C3CardControllerBase>> _cardDict;
public InternalCardCageController(string key, string name, InternalCardCageConfiguration config) : base(key, name)
{
_config = config;
_cardDict = new Dictionary<string, Func<uint, C3CardControllerBase>>
{
{
"c3com3",
(s) =>
new C3Com3Controller(String.Format(CardKeyTemplate, key, s),
String.Format(CardNameTemplate, key, s, "C3Com3"), new C3com3(s,Global.ControlSystem))
},
{
"c3io16",
(s) =>
new C3Io16Controller(String.Format(CardKeyTemplate, key, s),
String.Format(CardNameTemplate, key, s, "C3Io16"), new C3io16(s,Global.ControlSystem))
},
{
"c3ir8",
(s) =>
new C3Ir8Controller(String.Format(CardKeyTemplate, key, s),
String.Format(CardNameTemplate, key, s, "C3Ir8"), new C3ir8(s,Global.ControlSystem))
},
{
"c3ry16",
(s) =>
new C3Ry16Controller(String.Format(CardKeyTemplate, key, s),
String.Format(CardNameTemplate, key, s, "C3Ry16"), new C3ry16(s,Global.ControlSystem))
},
{
"c3ry8",
(s) =>
new C3Ry8Controller(String.Format(CardKeyTemplate, key, s),
String.Format(CardNameTemplate, key, s, "C3Ry8"), new C3ry8(s,Global.ControlSystem))
},
};
GetCards();
}
private void GetCards()
{
if (_config.Cards == null)
{
Debug.Console(0, this, "No card configuration for this device found");
return;
}
for (uint i = 1; i <= CardSlots; i++)
{
string cardType;
if (!_config.Cards.TryGetValue(i, out cardType))
{
Debug.Console(1, this, "No card found for slot {0}", i);
continue;
}
if (String.IsNullOrEmpty(cardType))
{
Debug.Console(0, this, "No card specified for slot {0}", i);
return;
}
Func<uint, C3CardControllerBase> cardBuilder;
if (!_cardDict.TryGetValue(cardType.ToLower(), out cardBuilder))
{
Debug.Console(0, "Unable to find factory for 3-Series card type {0}.", cardType);
return;
}
try
{
var device = cardBuilder(i);
DeviceManager.AddDevice(device);
}
catch (InvalidOperationException ex)
{
Debug.Console(0, this, Debug.ErrorLogLevel.Error,
"Unable to add card {0} to internal card cage.\r\nError Message: {1}\r\nStack Trace: {2}",
cardType, ex.Message, ex.StackTrace);
}
}
}
}
public class InternalCardCageConfiguration
{
[JsonProperty("cards")]
public Dictionary<uint, string> Cards { get; set; }
}
public class InternalCardCageControllerFactory : EssentialsDeviceFactory<InternalCardCageController>
{
public InternalCardCageControllerFactory()
{
TypeNames = new List<string> {"internalcardcage"};
}
#region Overrides of EssentialsDeviceFactory<InternalCardCageController>
public override EssentialsDevice BuildDevice(DeviceConfig dc)
{
Debug.Console(1, "Factory attempting to build new Internal Card Cage Controller");
if (!Global.ControlSystem.SupportsThreeSeriesPlugInCards)
{
Debug.Console(0, Debug.ErrorLogLevel.Warning, "Current control system does NOT support 3-Series cards. Everything is NOT awesome.");
return null;
}
var config = dc.Properties.ToObject<InternalCardCageConfiguration>();
return new InternalCardCageController(dc.Key, dc.Name, config);
}
#endregion
}
}

View File

@@ -43,10 +43,7 @@ namespace PepperDash.Essentials.Core
CrestronConsole.AddNewConsoleCommand(s => CrestronConsole.ConsoleCommandResponse(DeviceJsonApi.GetApiMethods(s)), "apimethods", "", ConsoleAccessLevelEnum.AccessOperator);
CrestronConsole.AddNewConsoleCommand(SimulateComReceiveOnDevice, "devsimreceive",
"Simulates incoming data on a com device", ConsoleAccessLevelEnum.AccessOperator);
CrestronConsole.AddNewConsoleCommand(s => SetDeviceStreamDebugging(s), "setdevicestreamdebug", "set comm debug [deviceKey] [off/rx/tx/both] ([minutes])", ConsoleAccessLevelEnum.AccessOperator);
CrestronConsole.AddNewConsoleCommand(s => DisableAllDeviceStreamDebugging(), "disableallstreamdebug", "disables stream debugging on all devices", ConsoleAccessLevelEnum.AccessOperator);
}
}
/// <summary>
/// Calls activate steps on all Device class items
@@ -302,81 +299,5 @@ namespace PepperDash.Essentials.Core
}
com.SimulateReceive(match.Groups[2].Value);
}
/// <summary>
/// Attempts to set the debug level of a device
/// </summary>
/// <param name="s"></param>
public static void SetDeviceStreamDebugging(string s)
{
var args = s.Split(' ');
var deviceKey = args[0];
var setting = args[1];
var timeout= String.Empty;
if (args.Length >= 3)
{
timeout = args[2];
}
var device = GetDeviceForKey(deviceKey) as IStreamDebugging;
if (device == null)
{
Debug.Console(0, "Unable to get device with key: {0}", deviceKey);
return;
}
eStreamDebuggingSetting debugSetting;
try
{
debugSetting = (eStreamDebuggingSetting)Enum.Parse(typeof(eStreamDebuggingSetting), setting, true);
}
catch
{
Debug.Console(0, "Unable to convert setting value. Please use off/rx/tx/both");
return;
}
if (!string.IsNullOrEmpty(timeout))
{
try
{
var min = Convert.ToUInt32(timeout);
device.StreamDebugging.SetDebuggingWithSpecificTimeout(debugSetting, min);
Debug.Console(0, "Device: '{0}' debug level set to {1) for {2} minutes", deviceKey, debugSetting, min);
}
catch (Exception e)
{
Debug.Console(0, "Unable to convert minutes or settings value. Please use an integer value for minutes. Errro: {0}", e);
}
}
else
{
device.StreamDebugging.SetDebuggingWithDefaultTimeout(debugSetting);
Debug.Console(0, "Device: '{0}' debug level set to {1) for default time (30 minutes)", deviceKey, debugSetting);
}
}
/// <summary>
/// Sets stream debugging settings to off for all devices
/// </summary>
public static void DisableAllDeviceStreamDebugging()
{
foreach (var device in AllDevices)
{
var streamDevice = device as IStreamDebugging;
if (streamDevice != null)
{
streamDevice.StreamDebugging.SetDebuggingWithDefaultTimeout(eStreamDebuggingSetting.Off);
}
}
}
}
}

View File

@@ -1,236 +1,236 @@
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;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Config;
using PepperDash.Essentials.Core.Bridges;
using PepperDash.Essentials.Core.Routing;
namespace PepperDash.Essentials.Core
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;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Config;
using PepperDash.Essentials.Core.Bridges;
using PepperDash.Essentials.Core.Routing;
namespace PepperDash.Essentials.Core
{
[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; }
protected override Func<bool> PowerIsOnFeedbackFunc
{
get { return () => _PowerIsOn; }
}
protected override Func<bool> IsCoolingDownFeedbackFunc
{
get { return () => _IsCoolingDown; }
}
protected override Func<bool> IsWarmingUpFeedbackFunc
{
get { return () => _IsWarmingUp; }
}
bool _PowerIsOn;
bool _IsWarmingUp;
bool _IsCoolingDown;
public BasicIrDisplay(string key, string name, IROutputPort port, string irDriverFilepath)
: base(key, name)
{
IrPort = new IrOutputPortController(key + "-ir", port, irDriverFilepath);
DeviceManager.AddDevice(IrPort);
PowerIsOnFeedback.OutputChange += (o, a) => {
Debug.Console(2, this, "Power on={0}", _PowerIsOn);
if (_PowerIsOn) StartWarmingTimer();
else StartCoolingTimer();
};
IsWarmingUpFeedback.OutputChange += (o, a) => Debug.Console(2, this, "Warming up={0}", _IsWarmingUp);
IsCoolingDownFeedback.OutputChange += (o, a) => Debug.Console(2, this, "Cooling down={0}", _IsCoolingDown);
InputPorts.AddRange(new RoutingPortCollection<RoutingInputPort>
{
new RoutingInputPort(RoutingPortNames.HdmiIn1, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, new Action(Hdmi1), this, false),
new RoutingInputPort(RoutingPortNames.HdmiIn2, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, new Action(Hdmi2), this, false),
new RoutingInputPort(RoutingPortNames.HdmiIn3, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, new Action(Hdmi3), this, false),
new RoutingInputPort(RoutingPortNames.HdmiIn4, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, new Action(Hdmi4), this, false),
new RoutingInputPort(RoutingPortNames.ComponentIn, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, new Action(Component1), this, false),
new RoutingInputPort(RoutingPortNames.CompositeIn, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, new Action(Video1), this, false),
new RoutingInputPort(RoutingPortNames.AntennaIn, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, new Action(Antenna), this, false),
});
}
public void Hdmi1()
{
IrPort.Pulse(IROutputStandardCommands.IROut_HDMI_1, IrPulseTime);
}
public void Hdmi2()
{
IrPort.Pulse(IROutputStandardCommands.IROut_HDMI_2, IrPulseTime);
}
public void Hdmi3()
{
IrPort.Pulse(IROutputStandardCommands.IROut_HDMI_3, IrPulseTime);
}
public void Hdmi4()
{
IrPort.Pulse(IROutputStandardCommands.IROut_HDMI_4, IrPulseTime);
}
public void Component1()
{
IrPort.Pulse(IROutputStandardCommands.IROut_COMPONENT_1, IrPulseTime);
}
public void Video1()
{
IrPort.Pulse(IROutputStandardCommands.IROut_VIDEO_1, IrPulseTime);
}
public void Antenna()
{
IrPort.Pulse(IROutputStandardCommands.IROut_ANTENNA, IrPulseTime);
}
#region IPower Members
public override void PowerOn()
{
IrPort.Pulse(IROutputStandardCommands.IROut_POWER_ON, IrPulseTime);
_PowerIsOn = true;
PowerIsOnFeedback.FireUpdate();
}
public override void PowerOff()
{
_PowerIsOn = false;
PowerIsOnFeedback.FireUpdate();
IrPort.Pulse(IROutputStandardCommands.IROut_POWER_OFF, IrPulseTime);
}
public override void PowerToggle()
{
_PowerIsOn = false;
PowerIsOnFeedback.FireUpdate();
IrPort.Pulse(IROutputStandardCommands.IROut_POWER, IrPulseTime);
}
#endregion
#region IBasicVolumeControls Members
public void VolumeUp(bool pressRelease)
{
IrPort.PressRelease(IROutputStandardCommands.IROut_VOL_PLUS, pressRelease);
}
public void VolumeDown(bool pressRelease)
{
IrPort.PressRelease(IROutputStandardCommands.IROut_VOL_MINUS, pressRelease);
}
public void MuteToggle()
{
IrPort.Pulse(IROutputStandardCommands.IROut_MUTE, 200);
}
#endregion
void StartWarmingTimer()
{
_IsWarmingUp = true;
IsWarmingUpFeedback.FireUpdate();
new CTimer(o => {
_IsWarmingUp = false;
IsWarmingUpFeedback.FireUpdate();
}, 10000);
}
void StartCoolingTimer()
{
_IsCoolingDown = true;
IsCoolingDownFeedback.FireUpdate();
new CTimer(o =>
{
_IsCoolingDown = false;
IsCoolingDownFeedback.FireUpdate();
}, 7000);
}
#region IRoutingSink Members
/// <summary>
/// Typically called by the discovery routing algorithm.
/// </summary>
/// <param name="inputSelector">A delegate containing the input selector method to call</param>
public override void ExecuteSwitch(object inputSelector)
{
Debug.Console(2, this, "Switching to input '{0}'", (inputSelector as Action).ToString());
Action finishSwitch = () =>
{
var action = inputSelector as Action;
if (action != null)
action();
};
if (!PowerIsOnFeedback.BoolValue)
{
PowerOn();
EventHandler<FeedbackEventArgs> oneTimer = null;
oneTimer = (o, a) =>
{
if (IsWarmingUpFeedback.BoolValue) return; // Only catch done warming
IsWarmingUpFeedback.OutputChange -= oneTimer;
finishSwitch();
};
IsWarmingUpFeedback.OutputChange += oneTimer;
}
else // Do it!
finishSwitch();
}
#endregion
public void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
LinkDisplayToApi(this, trilist, joinStart, joinMapKey, bridge);
}
}
public class BasicIrDisplayFactory : EssentialsDeviceFactory<BasicIrDisplay>
{
public BasicIrDisplayFactory()
{
TypeNames = new List<string>() { "basicirdisplay" };
}
public override EssentialsDevice BuildDevice(DeviceConfig dc)
{
Debug.Console(1, "Factory Attempting to create new BasicIrDisplay Device");
var ir = IRPortHelper.GetIrPort(dc.Properties);
if (ir != null)
{
var display = new BasicIrDisplay(dc.Key, dc.Name, ir.Port, ir.FileName);
display.IrPulseTime = 200; // Set default pulse time for IR commands.
return display;
}
return null;
}
}
public class BasicIrDisplay : DisplayBase, IBasicVolumeControls, IBridgeAdvanced
{
public IrOutputPortController IrPort { get; private set; }
public ushort IrPulseTime { get; set; }
protected override Func<bool> PowerIsOnFeedbackFunc
{
get { return () => _PowerIsOn; }
}
protected override Func<bool> IsCoolingDownFeedbackFunc
{
get { return () => _IsCoolingDown; }
}
protected override Func<bool> IsWarmingUpFeedbackFunc
{
get { return () => _IsWarmingUp; }
}
bool _PowerIsOn;
bool _IsWarmingUp;
bool _IsCoolingDown;
public BasicIrDisplay(string key, string name, IROutputPort port, string irDriverFilepath)
: base(key, name)
{
IrPort = new IrOutputPortController(key + "-ir", port, irDriverFilepath);
DeviceManager.AddDevice(IrPort);
PowerIsOnFeedback.OutputChange += (o, a) => {
Debug.Console(2, this, "Power on={0}", _PowerIsOn);
if (_PowerIsOn) StartWarmingTimer();
else StartCoolingTimer();
};
IsWarmingUpFeedback.OutputChange += (o, a) => Debug.Console(2, this, "Warming up={0}", _IsWarmingUp);
IsCoolingDownFeedback.OutputChange += (o, a) => Debug.Console(2, this, "Cooling down={0}", _IsCoolingDown);
InputPorts.AddRange(new RoutingPortCollection<RoutingInputPort>
{
new RoutingInputPort(RoutingPortNames.HdmiIn1, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, new Action(Hdmi1), this, false),
new RoutingInputPort(RoutingPortNames.HdmiIn2, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, new Action(Hdmi2), this, false),
new RoutingInputPort(RoutingPortNames.HdmiIn3, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, new Action(Hdmi3), this, false),
new RoutingInputPort(RoutingPortNames.HdmiIn4, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, new Action(Hdmi4), this, false),
new RoutingInputPort(RoutingPortNames.ComponentIn, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, new Action(Component1), this, false),
new RoutingInputPort(RoutingPortNames.CompositeIn, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, new Action(Video1), this, false),
new RoutingInputPort(RoutingPortNames.AntennaIn, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, new Action(Antenna), this, false),
});
}
public void Hdmi1()
{
IrPort.Pulse(IROutputStandardCommands.IROut_HDMI_1, IrPulseTime);
}
public void Hdmi2()
{
IrPort.Pulse(IROutputStandardCommands.IROut_HDMI_2, IrPulseTime);
}
public void Hdmi3()
{
IrPort.Pulse(IROutputStandardCommands.IROut_HDMI_3, IrPulseTime);
}
public void Hdmi4()
{
IrPort.Pulse(IROutputStandardCommands.IROut_HDMI_4, IrPulseTime);
}
public void Component1()
{
IrPort.Pulse(IROutputStandardCommands.IROut_COMPONENT_1, IrPulseTime);
}
public void Video1()
{
IrPort.Pulse(IROutputStandardCommands.IROut_VIDEO_1, IrPulseTime);
}
public void Antenna()
{
IrPort.Pulse(IROutputStandardCommands.IROut_ANTENNA, IrPulseTime);
}
#region IPower Members
public override void PowerOn()
{
IrPort.Pulse(IROutputStandardCommands.IROut_POWER_ON, IrPulseTime);
_PowerIsOn = true;
PowerIsOnFeedback.FireUpdate();
}
public override void PowerOff()
{
_PowerIsOn = false;
PowerIsOnFeedback.FireUpdate();
IrPort.Pulse(IROutputStandardCommands.IROut_POWER_OFF, IrPulseTime);
}
public override void PowerToggle()
{
_PowerIsOn = false;
PowerIsOnFeedback.FireUpdate();
IrPort.Pulse(IROutputStandardCommands.IROut_POWER, IrPulseTime);
}
#endregion
#region IBasicVolumeControls Members
public void VolumeUp(bool pressRelease)
{
IrPort.PressRelease(IROutputStandardCommands.IROut_VOL_PLUS, pressRelease);
}
public void VolumeDown(bool pressRelease)
{
IrPort.PressRelease(IROutputStandardCommands.IROut_VOL_MINUS, pressRelease);
}
public void MuteToggle()
{
IrPort.Pulse(IROutputStandardCommands.IROut_MUTE, 200);
}
#endregion
void StartWarmingTimer()
{
_IsWarmingUp = true;
IsWarmingUpFeedback.FireUpdate();
new CTimer(o => {
_IsWarmingUp = false;
IsWarmingUpFeedback.FireUpdate();
}, 10000);
}
void StartCoolingTimer()
{
_IsCoolingDown = true;
IsCoolingDownFeedback.FireUpdate();
new CTimer(o =>
{
_IsCoolingDown = false;
IsCoolingDownFeedback.FireUpdate();
}, 7000);
}
#region IRoutingSink Members
/// <summary>
/// Typically called by the discovery routing algorithm.
/// </summary>
/// <param name="inputSelector">A delegate containing the input selector method to call</param>
public override void ExecuteSwitch(object inputSelector)
{
Debug.Console(2, this, "Switching to input '{0}'", (inputSelector as Action).ToString());
Action finishSwitch = () =>
{
var action = inputSelector as Action;
if (action != null)
action();
};
if (!PowerIsOnFeedback.BoolValue)
{
PowerOn();
EventHandler<FeedbackEventArgs> oneTimer = null;
oneTimer = (o, a) =>
{
if (IsWarmingUpFeedback.BoolValue) return; // Only catch done warming
IsWarmingUpFeedback.OutputChange -= oneTimer;
finishSwitch();
};
IsWarmingUpFeedback.OutputChange += oneTimer;
}
else // Do it!
finishSwitch();
}
#endregion
public void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
LinkDisplayToApi(this, trilist, joinStart, joinMapKey, bridge);
}
}
public class BasicIrDisplayFactory : EssentialsDeviceFactory<BasicIrDisplay>
{
public BasicIrDisplayFactory()
{
TypeNames = new List<string>() { "basicirdisplay" };
}
public override EssentialsDevice BuildDevice(DeviceConfig dc)
{
Debug.Console(1, "Factory Attempting to create new BasicIrDisplay Device");
var ir = IRPortHelper.GetIrPort(dc.Properties);
if (ir != null)
{
var display = new BasicIrDisplay(dc.Key, dc.Name, ir.Port, ir.FileName);
display.IrPulseTime = 200; // Set default pulse time for IR commands.
return display;
}
return null;
}
}
}

View File

@@ -103,7 +103,7 @@ namespace PepperDash.Essentials.Core
// Check for types that have been added by plugin dlls.
if (FactoryMethods.ContainsKey(typeName))
{
Debug.Console(0, Debug.ErrorLogLevel.Notice, "Loading '{0}' from Essentials Core", dc.Type);
Debug.Console(0, Debug.ErrorLogLevel.Notice, "Loading '{0}' from plugin", dc.Type);
return FactoryMethods[typeName].FactoryMethod(dc);
}

View File

@@ -64,7 +64,7 @@
</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>
<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>
@@ -74,10 +74,6 @@
<SpecificVersion>False</SpecificVersion>
<HintPath>..\..\..\..\..\..\..\..\..\..\ProgramData\Crestron\SDK\SSPDevices\Crestron.SimplSharpPro.Remotes.dll</HintPath>
</Reference>
<Reference Include="Crestron.SimplSharpPro.ThreeSeriesCards, Version=1.0.0.0, Culture=neutral, PublicKeyToken=1099c178b3b54c3b, processorArchitecture=MSIL">
<SpecificVersion>False</SpecificVersion>
<HintPath>..\..\..\..\..\..\..\..\ProgramData\Crestron\SDK\SSPDevices\Crestron.SimplSharpPro.ThreeSeriesCards.dll</HintPath>
</Reference>
<Reference Include="Crestron.SimplSharpPro.UI, Version=1.0.0.0, Culture=neutral, PublicKeyToken=1099c178b3b54c3b, processorArchitecture=MSIL">
<SpecificVersion>False</SpecificVersion>
<HintPath>..\..\..\..\..\..\..\..\..\..\ProgramData\Crestron\SDK\SSPDevices\Crestron.SimplSharpPro.UI.dll</HintPath>
@@ -160,17 +156,6 @@
<Compile Include="Config\Essentials\EssentialsConfig.cs" />
<Compile Include="Config\SourceDevicePropertiesConfigBase.cs" />
<Compile Include="Crestron IO\C2nRts\C2nRthsController.cs" />
<Compile Include="Crestron IO\Cards\C3CardControllerBase.cs" />
<Compile Include="Crestron IO\Cards\C3Com3Controller.cs" />
<Compile Include="Crestron IO\Cards\C3Io16Controller.cs" />
<Compile Include="Crestron IO\Cards\C3Ir8Controller.cs" />
<Compile Include="Crestron IO\Cards\C3Ry16Controller.cs" />
<Compile Include="Crestron IO\Cards\C3Ry8Controller.cs" />
<Compile Include="Crestron IO\Cards\CenCi31Controller.cs">
<SubType>Code</SubType>
</Compile>
<Compile Include="Crestron IO\Cards\CenCi33Controller.cs" />
<Compile Include="Crestron IO\Cards\InternalCardCageController.cs" />
<Compile Include="Crestron IO\Inputs\CenIoDigIn104Controller.cs" />
<Compile Include="Crestron IO\Inputs\GenericDigitalInputDevice.cs" />
<Compile Include="Crestron IO\Inputs\GenericVersiportInputDevice.cs" />

View File

@@ -609,7 +609,7 @@ namespace PepperDash.Essentials.DM {
{
Debug.Console(2, "Creating Tx Feedbacks {0}", ioSlot);
var txKey = TxDictionary[ioSlot];
var basicTxDevice = DeviceManager.GetDeviceForKey(txKey) as BasicDmTxControllerBase;
var basicTxDevice = DeviceManager.GetDeviceForKey(txKey) as DmTxControllerBase;
var advancedTxDevice = basicTxDevice as DmTxControllerBase;

View File

@@ -1163,9 +1163,9 @@ namespace PepperDash.Essentials.DM
{
Debug.Console(2, "Creating Tx Feedbacks {0}", ioSlot);
var txKey = TxDictionary[ioSlot];
var basicTxDevice = DeviceManager.GetDeviceForKey(txKey) as BasicDmTxControllerBase;
var basicTxDevice = DeviceManager.GetDeviceForKey(txKey) as DmTxControllerBase;
var advancedTxDevice = basicTxDevice as DmTxControllerBase;
var advancedTxDevice = basicTxDevice;
if (Chassis is DmMd8x8Cpu3 || Chassis is DmMd8x8Cpu3rps
|| Chassis is DmMd16x16Cpu3 || Chassis is DmMd16x16Cpu3rps

View File

@@ -3,16 +3,16 @@
using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DM;
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 DmTx4k100Controller : BasicDmTxControllerBase, IRoutingInputsOutputs,
using eAst = eX02AudioSourceType;
[Description("Wrapper class for DM-TX-4K-100-C-1G")]
public class DmTx4k100Controller : DmTxControllerBase, IRoutingInputsOutputs,
IIROutputPorts, IComPorts, ICec
{
public DmTx4K100C1G Tx { get; private set; }
@@ -68,13 +68,14 @@ namespace PepperDash.Essentials.DM
// Set Ports for CEC
HdmiIn.Port = Tx;
PreventRegistration = true;
}
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
Debug.Console(1, this, "No properties to link. Skipping device {0}", Name);
DmTxControllerJoinMap joinMap = GetDmTxJoinMap(joinStart, joinMapKey);
LinkDmTxToApi(this, trilist, joinMap, bridge);
}
#region IIROutputPorts Members
@@ -90,5 +91,7 @@ namespace PepperDash.Essentials.DM
#region ICec Members
public Cec StreamCec { get { return Tx.StreamCec; } }
#endregion
public override StringFeedback ActiveVideoInputFeedback { get; protected set; }
}
}

View File

@@ -1,364 +1,361 @@
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.DM;
using Crestron.SimplSharpPro.DM.Endpoints;
using Crestron.SimplSharpPro.DM.Endpoints.Transmitters;
using Newtonsoft.Json;
using PepperDash.Core;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Bridges;
using PepperDash.Essentials.DM.Config;
using PepperDash.Essentials.Core.Config;
namespace PepperDash.Essentials.DM
{
public class DmTxHelper
{
/// <summary>
/// A factory method for various DmTxControllers
/// </summary>
/// <param name="key"></param>
/// <param name="name"></param>
/// <param name="props"></param>
/// <returns></returns>
public static BasicDmTxControllerBase GetDmTxController(string key, string name, string typeName, DmTxPropertiesConfig props)
{
// 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();
if (pKey == "processor")
{
// Catch constructor failures, mainly dues to IPID
try
{
if(typeName.StartsWith("dmtx200"))
return new DmTx200Controller(key, name, new DmTx200C2G(ipid, Global.ControlSystem));
if (typeName.StartsWith("dmtx4kz100"))
return new DmTx4kz100Controller(key, name, new DmTx4kz100C1G(ipid, Global.ControlSystem));
if (typeName.StartsWith("dmtx201c"))
return new DmTx201CController(key, name, new DmTx201C(ipid, Global.ControlSystem));
if (typeName.StartsWith("dmtx201s"))
return new DmTx201SController(key, name, new DmTx201S(ipid, Global.ControlSystem));
if (typeName.StartsWith("dmtx4k202"))
return new DmTx4k202CController(key, name, new DmTx4k202C(ipid, Global.ControlSystem));
if (typeName.StartsWith("dmtx4kz202"))
return new DmTx4kz202CController(key, name, new DmTx4kz202C(ipid, Global.ControlSystem));
if (typeName.StartsWith("dmtx4k302"))
return new DmTx4k302CController(key, name, new DmTx4k302C(ipid, Global.ControlSystem));
if (typeName.StartsWith("dmtx4kz302"))
return new DmTx4kz302CController(key, name, new DmTx4kz302C(ipid, Global.ControlSystem));
if (typeName.StartsWith("dmtx401"))
return new DmTx401CController(key, name, new DmTx401C(ipid, Global.ControlSystem));
Debug.Console(0, "{1} WARNING: Cannot create DM-TX of type: '{0}'", typeName, key);
}
catch (Exception e)
{
Debug.Console(0, "[{0}] WARNING: Cannot create DM-TX device: {1}", key, e);
}
}
else
{
var parentDev = DeviceManager.GetDeviceForKey(pKey);
if (!(parentDev is IDmSwitch))
{
Debug.Console(0, "Cannot create DM device '{0}'. '{1}' is not a DM Chassis.",
key, pKey);
return null;
}
// Get the Crestron chassis and link stuff up
var switchDev = (parentDev as IDmSwitch);
var chassis = switchDev.Chassis;
var num = props.ParentInputNumber;
if (num <= 0 || num > chassis.NumberOfInputs)
{
Debug.Console(0, "Cannot create DM device '{0}'. Input number '{1}' is out of range",
key, num);
return null;
}
else
{
var controller = (parentDev as IDmSwitch);
controller.TxDictionary.Add(num, key);
}
// Catch constructor failures, mainly dues to IPID
try
{
// Must use different constructor for CPU3 chassis types. No IPID
if (chassis is DmMd8x8Cpu3 || chassis is DmMd16x16Cpu3 ||
chassis is DmMd32x32Cpu3 || chassis is DmMd8x8Cpu3rps ||
chassis is DmMd16x16Cpu3rps || chassis is DmMd32x32Cpu3rps||
chassis is DmMd128x128 || chassis is DmMd64x64)
{
if (typeName.StartsWith("dmtx200"))
return new DmTx200Controller(key, name, new DmTx200C2G(chassis.Inputs[num]));
if (typeName.StartsWith("dmtx201c"))
return new DmTx201CController(key, name, new DmTx201C(chassis.Inputs[num]));
if (typeName.StartsWith("dmtx201s"))
return new DmTx201SController(key, name, new DmTx201S(chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4k100"))
return new DmTx4k100Controller(key, name, new DmTx4K100C1G(chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4kz100"))
return new DmTx4kz100Controller(key, name, new DmTx4kz100C1G(chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4k202"))
return new DmTx4k202CController(key, name, new DmTx4k202C(chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4kz202"))
return new DmTx4kz202CController(key, name, new DmTx4kz202C(chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4k302"))
return new DmTx4k302CController(key, name, new DmTx4k302C(chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4kz302"))
return new DmTx4kz302CController(key, name, new DmTx4kz302C(chassis.Inputs[num]));
if (typeName.StartsWith("dmtx401"))
return new DmTx401CController(key, name, new DmTx401C(chassis.Inputs[num]));
}
else
{
if (typeName.StartsWith("dmtx200"))
return new DmTx200Controller(key, name, new DmTx200C2G(ipid, chassis.Inputs[num]));
if (typeName.StartsWith("dmtx201c"))
return new DmTx201CController(key, name, new DmTx201C(ipid, chassis.Inputs[num]));
if (typeName.StartsWith("dmtx201s"))
return new DmTx201SController(key, name, new DmTx201S(ipid, chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4k100"))
return new DmTx4k100Controller(key, name, new DmTx4K100C1G(ipid, chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4kz100"))
return new DmTx4kz100Controller(key, name, new DmTx4kz100C1G(ipid, chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4k202"))
return new DmTx4k202CController(key, name, new DmTx4k202C(ipid, chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4kz202"))
return new DmTx4kz202CController(key, name, new DmTx4kz202C(ipid, chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4k302"))
return new DmTx4k302CController(key, name, new DmTx4k302C(ipid, chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4kz302"))
return new DmTx4kz302CController(key, name, new DmTx4kz302C(ipid, chassis.Inputs[num]));
if (typeName.StartsWith("dmtx401"))
return new DmTx401CController(key, name, new DmTx401C(ipid, chassis.Inputs[num]));
}
}
catch (Exception e)
{
Debug.Console(0, "[{0}] WARNING: Cannot create DM-TX device: {1}", key, e);
}
}
return null;
}
}
public abstract class BasicDmTxControllerBase : CrestronGenericBridgeableBaseDevice
{
protected BasicDmTxControllerBase(string key, string name, GenericBase hardware)
: base(key, name, hardware)
{
}
}
/// <summary>
///
/// </summary>
[Description("Wrapper class for all DM-TX variants")]
public abstract class DmTxControllerBase : BasicDmTxControllerBase
{
public virtual void SetPortHdcpCapability(eHdcpCapabilityType hdcpMode, uint port) { }
public virtual eHdcpCapabilityType HdcpSupportCapability { get; protected set; }
public abstract StringFeedback ActiveVideoInputFeedback { get; protected set; }
public RoutingInputPortWithVideoStatuses AnyVideoInput { get; protected set; }
protected DmTxControllerBase(string key, string name, EndpointTransmitterBase hardware)
: base(key, name, hardware)
{
// if wired to a chassis, skip registration step in base class
if (hardware.DMInput != null)
{
this.PreventRegistration = true;
}
AddToFeedbackList(ActiveVideoInputFeedback);
}
protected DmTxControllerBase(string key, string name, DmHDBasedTEndPoint hardware) : base(key, name, hardware)
{
}
protected DmTxControllerJoinMap GetDmTxJoinMap(uint joinStart, string joinMapKey)
{
var joinMap = new DmTxControllerJoinMap(joinStart);
var joinMapSerialized = JoinMapHelper.GetSerializedJoinMapForDevice(joinMapKey);
if (!string.IsNullOrEmpty(joinMapSerialized))
joinMap = JsonConvert.DeserializeObject<DmTxControllerJoinMap>(joinMapSerialized);
return joinMap;
}
protected void LinkDmTxToApi(DmTxControllerBase tx, BasicTriList trilist, DmTxControllerJoinMap joinMap, EiscApiAdvanced bridge)
{
Debug.Console(1, tx, "Linking to Trilist '{0}'", trilist.ID.ToString("X"));
tx.IsOnline.LinkInputSig(trilist.BooleanInput[joinMap.IsOnline.JoinNumber]);
tx.AnyVideoInput.VideoStatus.VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.VideoSyncStatus.JoinNumber]);
tx.AnyVideoInput.VideoStatus.VideoResolutionFeedback.LinkInputSig(trilist.StringInput[joinMap.CurrentInputResolution.JoinNumber]);
trilist.UShortInput[joinMap.HdcpSupportCapability.JoinNumber].UShortValue = (ushort)tx.HdcpSupportCapability;
bool hdcpTypeSimple;
if (tx.Hardware is DmTx4kX02CBase)
hdcpTypeSimple = false;
else
hdcpTypeSimple = true;
if (tx is ITxRouting)
{
var txR = tx as ITxRouting;
trilist.SetUShortSigAction(joinMap.VideoInput.JoinNumber,
i => txR.ExecuteNumericSwitch(i, 0, eRoutingSignalType.Video));
trilist.SetUShortSigAction(joinMap.AudioInput.JoinNumber,
i => txR.ExecuteNumericSwitch(i, 0, eRoutingSignalType.Audio));
txR.VideoSourceNumericFeedback.LinkInputSig(trilist.UShortInput[joinMap.VideoInput.JoinNumber]);
txR.AudioSourceNumericFeedback.LinkInputSig(trilist.UShortInput[joinMap.AudioInput.JoinNumber]);
trilist.UShortInput[joinMap.HdcpSupportCapability.JoinNumber].UShortValue = (ushort)tx.HdcpSupportCapability;
if (txR.InputPorts[DmPortName.HdmiIn] != null)
{
var inputPort = txR.InputPorts[DmPortName.HdmiIn];
if (tx.Feedbacks["HdmiInHdcpCapability"] != null)
{
var intFeedback = tx.Feedbacks["HdmiInHdcpCapability"] as IntFeedback;
if (intFeedback != null)
intFeedback.LinkInputSig(trilist.UShortInput[joinMap.Port1HdcpState.JoinNumber]);
}
if (inputPort.ConnectionType == eRoutingPortConnectionType.Hdmi && inputPort.Port != null)
{
var port = inputPort.Port as EndpointHdmiInput;
SetHdcpCapabilityAction(hdcpTypeSimple, port, joinMap.Port1HdcpState.JoinNumber, trilist);
}
}
if (txR.InputPorts[DmPortName.HdmiIn1] != null)
{
var inputPort = txR.InputPorts[DmPortName.HdmiIn1];
if (tx.Feedbacks["HdmiIn1HdcpCapability"] != null)
{
var intFeedback = tx.Feedbacks["HdmiIn1HdcpCapability"] as IntFeedback;
if (intFeedback != null)
intFeedback.LinkInputSig(trilist.UShortInput[joinMap.Port1HdcpState.JoinNumber]);
}
if (inputPort.ConnectionType == eRoutingPortConnectionType.Hdmi && inputPort.Port != null)
{
var port = inputPort.Port as EndpointHdmiInput;
SetHdcpCapabilityAction(hdcpTypeSimple, port, joinMap.Port1HdcpState.JoinNumber, trilist);
}
}
if (txR.InputPorts[DmPortName.HdmiIn2] != null)
{
var inputPort = txR.InputPorts[DmPortName.HdmiIn2];
if (tx.Feedbacks["HdmiIn2HdcpCapability"] != null)
{
var intFeedback = tx.Feedbacks["HdmiIn2HdcpCapability"] as IntFeedback;
if (intFeedback != null)
intFeedback.LinkInputSig(trilist.UShortInput[joinMap.Port1HdcpState.JoinNumber]);
}
if (inputPort.ConnectionType == eRoutingPortConnectionType.Hdmi && inputPort.Port != null)
{
var port = inputPort.Port as EndpointHdmiInput;
SetHdcpCapabilityAction(hdcpTypeSimple, port, joinMap.Port2HdcpState.JoinNumber, trilist);
}
}
}
var txFreeRun = tx as IHasFreeRun;
if (txFreeRun != null)
{
txFreeRun.FreeRunEnabledFeedback.LinkInputSig(trilist.BooleanInput[joinMap.FreeRunEnabled.JoinNumber]);
trilist.SetBoolSigAction(joinMap.FreeRunEnabled.JoinNumber, txFreeRun.SetFreeRunEnabled);
}
var txVga = tx as IVgaBrightnessContrastControls;
{
if (txVga == null) return;
txVga.VgaBrightnessFeedback.LinkInputSig(trilist.UShortInput[joinMap.VgaBrightness.JoinNumber]);
txVga.VgaContrastFeedback.LinkInputSig(trilist.UShortInput[joinMap.VgaContrast.JoinNumber]);
trilist.SetUShortSigAction(joinMap.VgaBrightness.JoinNumber, txVga.SetVgaBrightness);
trilist.SetUShortSigAction(joinMap.VgaContrast.JoinNumber, txVga.SetVgaContrast);
}
}
private void SetHdcpCapabilityAction(bool hdcpTypeSimple, EndpointHdmiInput port, uint join, BasicTriList trilist)
{
if (hdcpTypeSimple)
{
trilist.SetUShortSigAction(join,
s =>
{
if (s == 0)
{
port.HdcpSupportOff();
}
else if (s > 0)
{
port.HdcpSupportOn();
}
});
}
else
{
trilist.SetUShortSigAction(join,
s =>
{
port.HdcpCapability = (eHdcpCapabilityType)s;
});
}
}
}
public class DmTxControllerFactory : EssentialsDeviceFactory<DmTxControllerBase>
{
public DmTxControllerFactory()
{
TypeNames = new List<string>() { "dmtx200c", "dmtx201c", "dmtx201s", "dmtx4k100c", "dmtx4k202c", "dmtx4kz202c", "dmtx4k302c", "dmtx4kz302c",
"dmtx401c", "dmtx401s", "dmtx4k100c1g", "dmtx4kz100c1g" };
}
public override EssentialsDevice BuildDevice(DeviceConfig dc)
{
var type = dc.Type.ToLower();
Debug.Console(1, "Factory Attempting to create new DM-TX Device");
var props = JsonConvert.DeserializeObject
<PepperDash.Essentials.DM.Config.DmTxPropertiesConfig>(dc.Properties.ToString());
return PepperDash.Essentials.DM.DmTxHelper.GetDmTxController(dc.Key, dc.Name, type, props);
}
}
}
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.DM;
using Crestron.SimplSharpPro.DM.Endpoints;
using Crestron.SimplSharpPro.DM.Endpoints.Transmitters;
using Newtonsoft.Json;
using PepperDash.Core;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Bridges;
using PepperDash.Essentials.DM.Config;
using PepperDash.Essentials.Core.Config;
namespace PepperDash.Essentials.DM
{
public class DmTxHelper
{
/// <summary>
/// A factory method for various DmTxControllers
/// </summary>
/// <param name="key"></param>
/// <param name="name"></param>
/// <param name="props"></param>
/// <returns></returns>
public static DmTxControllerBase GetDmTxController(string key, string name, string typeName, DmTxPropertiesConfig props)
{
// 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();
if (pKey == "processor")
{
// Catch constructor failures, mainly dues to IPID
try
{
if(typeName.StartsWith("dmtx200"))
return new DmTx200Controller(key, name, new DmTx200C2G(ipid, Global.ControlSystem));
if (typeName.StartsWith("dmtx4kz100"))
return new DmTx4kz100Controller(key, name, new DmTx4kz100C1G(ipid, Global.ControlSystem));
if (typeName.StartsWith("dmtx201c"))
return new DmTx201CController(key, name, new DmTx201C(ipid, Global.ControlSystem));
if (typeName.StartsWith("dmtx201s"))
return new DmTx201SController(key, name, new DmTx201S(ipid, Global.ControlSystem));
if (typeName.StartsWith("dmtx4k202"))
return new DmTx4k202CController(key, name, new DmTx4k202C(ipid, Global.ControlSystem));
if (typeName.StartsWith("dmtx4kz202"))
return new DmTx4kz202CController(key, name, new DmTx4kz202C(ipid, Global.ControlSystem));
if (typeName.StartsWith("dmtx4k302"))
return new DmTx4k302CController(key, name, new DmTx4k302C(ipid, Global.ControlSystem));
if (typeName.StartsWith("dmtx4kz302"))
return new DmTx4kz302CController(key, name, new DmTx4kz302C(ipid, Global.ControlSystem));
if (typeName.StartsWith("dmtx401"))
return new DmTx401CController(key, name, new DmTx401C(ipid, Global.ControlSystem));
Debug.Console(0, "{1} WARNING: Cannot create DM-TX of type: '{0}'", typeName, key);
}
catch (Exception e)
{
Debug.Console(0, "[{0}] WARNING: Cannot create DM-TX device: {1}", key, e);
}
}
else
{
var parentDev = DeviceManager.GetDeviceForKey(pKey);
if (!(parentDev is IDmSwitch))
{
Debug.Console(0, "Cannot create DM device '{0}'. '{1}' is not a DM Chassis.",
key, pKey);
return null;
}
// Get the Crestron chassis and link stuff up
var switchDev = (parentDev as IDmSwitch);
var chassis = switchDev.Chassis;
var num = props.ParentInputNumber;
if (num <= 0 || num > chassis.NumberOfInputs)
{
Debug.Console(0, "Cannot create DM device '{0}'. Input number '{1}' is out of range",
key, num);
return null;
}
else
{
var controller = (parentDev as IDmSwitch);
controller.TxDictionary.Add(num, key);
}
// Catch constructor failures, mainly dues to IPID
try
{
// Must use different constructor for CPU3 chassis types. No IPID
if (chassis is DmMd8x8Cpu3 || chassis is DmMd16x16Cpu3 ||
chassis is DmMd32x32Cpu3 || chassis is DmMd8x8Cpu3rps ||
chassis is DmMd16x16Cpu3rps || chassis is DmMd32x32Cpu3rps||
chassis is DmMd128x128 || chassis is DmMd64x64)
{
if (typeName.StartsWith("dmtx200"))
return new DmTx200Controller(key, name, new DmTx200C2G(chassis.Inputs[num]));
if (typeName.StartsWith("dmtx201c"))
return new DmTx201CController(key, name, new DmTx201C(chassis.Inputs[num]));
if (typeName.StartsWith("dmtx201s"))
return new DmTx201SController(key, name, new DmTx201S(chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4k100"))
return new DmTx4k100Controller(key, name, new DmTx4K100C1G(chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4kz100"))
return new DmTx4kz100Controller(key, name, new DmTx4kz100C1G(chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4k202"))
return new DmTx4k202CController(key, name, new DmTx4k202C(chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4kz202"))
return new DmTx4kz202CController(key, name, new DmTx4kz202C(chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4k302"))
return new DmTx4k302CController(key, name, new DmTx4k302C(chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4kz302"))
return new DmTx4kz302CController(key, name, new DmTx4kz302C(chassis.Inputs[num]));
if (typeName.StartsWith("dmtx401"))
return new DmTx401CController(key, name, new DmTx401C(chassis.Inputs[num]));
}
else
{
if (typeName.StartsWith("dmtx200"))
return new DmTx200Controller(key, name, new DmTx200C2G(ipid, chassis.Inputs[num]));
if (typeName.StartsWith("dmtx201c"))
return new DmTx201CController(key, name, new DmTx201C(ipid, chassis.Inputs[num]));
if (typeName.StartsWith("dmtx201s"))
return new DmTx201SController(key, name, new DmTx201S(ipid, chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4k100"))
return new DmTx4k100Controller(key, name, new DmTx4K100C1G(ipid, chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4kz100"))
return new DmTx4kz100Controller(key, name, new DmTx4kz100C1G(ipid, chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4k202"))
return new DmTx4k202CController(key, name, new DmTx4k202C(ipid, chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4kz202"))
return new DmTx4kz202CController(key, name, new DmTx4kz202C(ipid, chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4k302"))
return new DmTx4k302CController(key, name, new DmTx4k302C(ipid, chassis.Inputs[num]));
if (typeName.StartsWith("dmtx4kz302"))
return new DmTx4kz302CController(key, name, new DmTx4kz302C(ipid, chassis.Inputs[num]));
if (typeName.StartsWith("dmtx401"))
return new DmTx401CController(key, name, new DmTx401C(ipid, chassis.Inputs[num]));
}
}
catch (Exception e)
{
Debug.Console(0, "[{0}] WARNING: Cannot create DM-TX device: {1}", key, e);
}
}
return null;
}
}
/// <summary>
///
/// </summary>
[Description("Wrapper class for all DM-TX variants")]
public abstract class DmTxControllerBase : CrestronGenericBridgeableBaseDevice
{
public virtual void SetPortHdcpCapability(eHdcpCapabilityType hdcpMode, uint port) { }
public virtual eHdcpCapabilityType HdcpSupportCapability { get; protected set; }
public abstract StringFeedback ActiveVideoInputFeedback { get; protected set; }
public RoutingInputPortWithVideoStatuses AnyVideoInput { get; protected set; }
protected DmTxControllerBase(string key, string name, EndpointTransmitterBase hardware)
: base(key, name, hardware)
{
// if wired to a chassis, skip registration step in base class
if (hardware.DMInput != null)
{
this.PreventRegistration = true;
}
AddToFeedbackList(ActiveVideoInputFeedback);
}
protected DmTxControllerBase(string key, string name, DmHDBasedTEndPoint hardware) : base(key, name, hardware)
{
}
protected DmTxControllerJoinMap GetDmTxJoinMap(uint joinStart, string joinMapKey)
{
var joinMap = new DmTxControllerJoinMap(joinStart);
var joinMapSerialized = JoinMapHelper.GetSerializedJoinMapForDevice(joinMapKey);
if (!string.IsNullOrEmpty(joinMapSerialized))
joinMap = JsonConvert.DeserializeObject<DmTxControllerJoinMap>(joinMapSerialized);
return joinMap;
}
protected void LinkDmTxToApi(DmTxControllerBase tx, BasicTriList trilist, DmTxControllerJoinMap joinMap, EiscApiAdvanced bridge)
{
if (tx.Hardware is DmHDBasedTEndPoint)
{
Debug.Console(1, tx, "No properties to link. Skipping device {0}", tx.Name);
return;
}
Debug.Console(1, tx, "Linking to Trilist '{0}'", trilist.ID.ToString("X"));
tx.IsOnline.LinkInputSig(trilist.BooleanInput[joinMap.IsOnline.JoinNumber]);
tx.AnyVideoInput.VideoStatus.VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.VideoSyncStatus.JoinNumber]);
tx.AnyVideoInput.VideoStatus.VideoResolutionFeedback.LinkInputSig(trilist.StringInput[joinMap.CurrentInputResolution.JoinNumber]);
trilist.UShortInput[joinMap.HdcpSupportCapability.JoinNumber].UShortValue = (ushort)tx.HdcpSupportCapability;
bool hdcpTypeSimple;
if (tx.Hardware is DmTx4kX02CBase)
hdcpTypeSimple = false;
else
hdcpTypeSimple = true;
if (tx is ITxRouting)
{
var txR = tx as ITxRouting;
trilist.SetUShortSigAction(joinMap.VideoInput.JoinNumber,
i => txR.ExecuteNumericSwitch(i, 0, eRoutingSignalType.Video));
trilist.SetUShortSigAction(joinMap.AudioInput.JoinNumber,
i => txR.ExecuteNumericSwitch(i, 0, eRoutingSignalType.Audio));
txR.VideoSourceNumericFeedback.LinkInputSig(trilist.UShortInput[joinMap.VideoInput.JoinNumber]);
txR.AudioSourceNumericFeedback.LinkInputSig(trilist.UShortInput[joinMap.AudioInput.JoinNumber]);
trilist.UShortInput[joinMap.HdcpSupportCapability.JoinNumber].UShortValue = (ushort)tx.HdcpSupportCapability;
if (txR.InputPorts[DmPortName.HdmiIn] != null)
{
var inputPort = txR.InputPorts[DmPortName.HdmiIn];
if (tx.Feedbacks["HdmiInHdcpCapability"] != null)
{
var intFeedback = tx.Feedbacks["HdmiInHdcpCapability"] as IntFeedback;
if (intFeedback != null)
intFeedback.LinkInputSig(trilist.UShortInput[joinMap.Port1HdcpState.JoinNumber]);
}
if (inputPort.ConnectionType == eRoutingPortConnectionType.Hdmi && inputPort.Port != null)
{
var port = inputPort.Port as EndpointHdmiInput;
SetHdcpCapabilityAction(hdcpTypeSimple, port, joinMap.Port1HdcpState.JoinNumber, trilist);
}
}
if (txR.InputPorts[DmPortName.HdmiIn1] != null)
{
var inputPort = txR.InputPorts[DmPortName.HdmiIn1];
if (tx.Feedbacks["HdmiIn1HdcpCapability"] != null)
{
var intFeedback = tx.Feedbacks["HdmiIn1HdcpCapability"] as IntFeedback;
if (intFeedback != null)
intFeedback.LinkInputSig(trilist.UShortInput[joinMap.Port1HdcpState.JoinNumber]);
}
if (inputPort.ConnectionType == eRoutingPortConnectionType.Hdmi && inputPort.Port != null)
{
var port = inputPort.Port as EndpointHdmiInput;
SetHdcpCapabilityAction(hdcpTypeSimple, port, joinMap.Port1HdcpState.JoinNumber, trilist);
}
}
if (txR.InputPorts[DmPortName.HdmiIn2] != null)
{
var inputPort = txR.InputPorts[DmPortName.HdmiIn2];
if (tx.Feedbacks["HdmiIn2HdcpCapability"] != null)
{
var intFeedback = tx.Feedbacks["HdmiIn2HdcpCapability"] as IntFeedback;
if (intFeedback != null)
intFeedback.LinkInputSig(trilist.UShortInput[joinMap.Port1HdcpState.JoinNumber]);
}
if (inputPort.ConnectionType == eRoutingPortConnectionType.Hdmi && inputPort.Port != null)
{
var port = inputPort.Port as EndpointHdmiInput;
SetHdcpCapabilityAction(hdcpTypeSimple, port, joinMap.Port2HdcpState.JoinNumber, trilist);
}
}
}
var txFreeRun = tx as IHasFreeRun;
if (txFreeRun != null)
{
txFreeRun.FreeRunEnabledFeedback.LinkInputSig(trilist.BooleanInput[joinMap.FreeRunEnabled.JoinNumber]);
trilist.SetBoolSigAction(joinMap.FreeRunEnabled.JoinNumber, txFreeRun.SetFreeRunEnabled);
}
var txVga = tx as IVgaBrightnessContrastControls;
{
if (txVga == null) return;
txVga.VgaBrightnessFeedback.LinkInputSig(trilist.UShortInput[joinMap.VgaBrightness.JoinNumber]);
txVga.VgaContrastFeedback.LinkInputSig(trilist.UShortInput[joinMap.VgaContrast.JoinNumber]);
trilist.SetUShortSigAction(joinMap.VgaBrightness.JoinNumber, txVga.SetVgaBrightness);
trilist.SetUShortSigAction(joinMap.VgaContrast.JoinNumber, txVga.SetVgaContrast);
}
}
private void SetHdcpCapabilityAction(bool hdcpTypeSimple, EndpointHdmiInput port, uint join, BasicTriList trilist)
{
if (hdcpTypeSimple)
{
trilist.SetUShortSigAction(join,
s =>
{
if (s == 0)
{
port.HdcpSupportOff();
}
else if (s > 0)
{
port.HdcpSupportOn();
}
});
}
else
{
trilist.SetUShortSigAction(join,
s =>
{
port.HdcpCapability = (eHdcpCapabilityType)s;
});
}
}
}
public class DmTxControllerFactory : EssentialsDeviceFactory<DmTxControllerBase>
{
public DmTxControllerFactory()
{
TypeNames = new List<string>() { "dmtx200c", "dmtx201c", "dmtx201s", "dmtx4k100c", "dmtx4k202c", "dmtx4kz202c", "dmtx4k302c", "dmtx4kz302c",
"dmtx401c", "dmtx401s", "dmtx4k100c1g", "dmtx4kz100c1g" };
}
public override EssentialsDevice BuildDevice(DeviceConfig dc)
{
var type = dc.Type.ToLower();
Debug.Console(1, "Factory Attempting to create new DM-TX Device");
var props = JsonConvert.DeserializeObject
<PepperDash.Essentials.DM.Config.DmTxPropertiesConfig>(dc.Properties.ToString());
return PepperDash.Essentials.DM.DmTxHelper.GetDmTxController(dc.Key, dc.Name, type, props);
}
}
}