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44 Commits

Author SHA1 Message Date
Andrew Welker
276c681b66 Merge branch 'main' into hotfix/refactor-dm-bridging 2020-07-09 14:29:36 -06:00
Andrew Welker
414a4a9564 Remove Check for HdcpSupportedLevel 2020-07-09 14:23:13 -06:00
Andrew Welker
25cb4e8727 change to HdcpSupportedLevelFeedback and...
...added debug statement
2020-07-09 11:24:36 -06:00
Andrew Welker
aff2371a4b Merge pull request #315 from PepperDash/hotfix/dmtx4kz100c-fix
Change base class for DM-TX-4KZ-100-C-1G
2020-07-08 16:28:00 -07:00
Andrew Welker
7a93223678 Change base class for DM-TX-4KZ-100-C-1G 2020-07-08 14:24:45 -06:00
Andrew Welker
5590925774 fix HDCP state feedback to link to endpoint 2020-07-08 13:43:06 -06:00
Andrew Welker
3b73a7d73c Update DM Transmitters to expose...
HDCP State feedback on the base class
2020-07-08 13:42:35 -06:00
Andrew Welker
2f7e6bf778 Merge pull request #307 from PepperDash/hotfix/bridge-registration
Update EISC Registration to happen AFTER devices are linked
2020-07-08 11:32:15 -07:00
Andrew Welker
98d3d8182e Update LinkToApi to correctly link HDCP settings 2020-07-08 12:15:50 -06:00
Andrew Welker
0da38f5fd2 figuring it out... 2020-07-08 12:15:50 -06:00
Andrew Welker
bd4ae16ab7 add some error handling for missing config values 2020-07-08 12:15:50 -06:00
Andrew Welker
1d2722d409 closes #285 refactor LinkToApi method 2020-07-08 12:15:50 -06:00
Andrew Welker
38d6200409 Log error and notices when necessary 2020-07-08 12:06:40 -06:00
Andrew Welker
e8d42b701e Updated logging to write to ErrorLog as well 2020-07-08 12:00:18 -06:00
Andrew Welker
0686e9d054 Merge branch 'main' into hotfix/bridge-registration 2020-07-08 11:59:21 -06:00
Andrew Welker
b917cb552e Merge pull request #310 from PepperDash/hotfix/program-initialization
Update ControlSystem to control program startup for subsequent programs better
2020-07-08 10:54:51 -07:00
Andrew Welker
a1ee157ab8 add debug statement for catching EISC registration result. 2020-07-08 11:47:36 -06:00
Andrew Welker
b1befeb32d Add program init complete logic 2020-07-08 11:38:09 -06:00
Andrew Welker
615c0d1545 move EISC registration 2020-07-07 13:25:26 -06:00
Neil Dorin
2a1ff2e32b Merge pull request #283 from PepperDash/hotfix/GenericRelay-ctor-issues
Fix GenericRelayDevice Constructor
2020-07-06 12:06:40 -06:00
Andrew Welker
8445656289 fix constructor to initialize feedback 2020-06-25 08:19:08 -06:00
Neil Dorin
377cf23bca Merge pull request #274 from PepperDash/release/1.5.6
Release V1.5.6
2020-06-23 14:14:35 -06:00
Andrew Welker
6f16bc3427 Merge branch 'main' into release/1.5.6 2020-06-23 13:56:34 -06:00
Andrew Welker
35ec5e903e Merge pull request #271 from PepperDash/bugfix/eisc-ibridge-fixes
Update bridging to eliminate null references & allow backwards compatibility
2020-06-19 16:25:11 -06:00
Andrew Welker
f98292a4aa add null check to all internal device LinkToApi methods
This allows for backwards compatability with EiscApi bridges.
2020-06-19 15:48:34 -06:00
Andrew Welker
6b6604b7a9 update bridges and interfaces 2020-06-19 15:48:33 -06:00
Andrew Welker
55eb110373 Merge branch 'release/1.5.6' of https://github.com/PepperDash/Essentials into release/1.5.6 2020-06-19 15:48:08 -06:00
Andrew Welker
42418fedb8 Merge pull request #266 from PepperDash/feature/PRO3-card-support
Add 3-series Card Support
2020-06-19 15:31:56 -06:00
Andrew Welker
407fc2e948 Merge pull request #263 from PepperDash/feature/update-PdCore
Update PepperDash Core submodule after branch rename
2020-06-18 18:58:55 -06:00
Andrew Welker
49177da820 add config snippets for external card cages 2020-06-18 18:53:30 -06:00
Andrew Welker
a1809dccb4 add internal card cage support 2020-06-18 18:53:30 -06:00
Andrew Welker
7d97bc118e fix debug message 2020-06-18 18:53:30 -06:00
Andrew Welker
48bc41a69e update key and name for cards 2020-06-18 18:53:30 -06:00
Andrew Welker
e4a8e89135 add Cenci33 controller 2020-06-18 18:53:30 -06:00
Andrew Welker
1bd6825258 create classes for all supported cards 2020-06-18 18:53:30 -06:00
Andrew Welker
e5099e9a2a started support for 3-Series cards 2020-06-18 18:53:30 -06:00
Neil Dorin
ccdaa12f20 Merge pull request #268 from PepperDash/feature/update-dm-join-map
Add in/out AV names to join map
2020-06-18 18:01:23 -06:00
Andrew Welker
60d387c792 add in/out AV names to join map 2020-06-18 16:16:24 -06:00
Andrew Welker
d9b4ca815e Merge pull request #265 from PepperDash/hotfix/add-latest-release-link
Adds latest release link
2020-06-17 22:54:44 -06:00
Neil Dorin
37686044d4 Adds latest release link 2020-06-17 22:15:01 -06:00
Andrew Welker
ef50098460 update PD Core submodule commit 2020-06-17 19:35:35 -06:00
Andrew Welker
f2eff3fdb4 Merge pull request #260 from PepperDash/feature/update-workflows-for-name-change
Update workflows for name change
2020-06-17 12:34:31 -06:00
Andrew Welker
2749fdc2e9 update workflows for name change 2020-06-17 12:10:12 -06:00
Andrew Welker
b689a54936 Merge pull request #253 from PepperDash/hotfix/eiscApiAdvanced-backwards-compatibility
Add backwards compatability with `IBridge` to `EiscApiAdvanced`
2020-06-12 13:43:05 -06:00
31 changed files with 1085 additions and 462 deletions

View File

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

View File

@@ -18,8 +18,8 @@ env:
VERSION: 0.0.0-buildtype-buildnumber
# Defaults to debug for build type
BUILD_TYPE: Debug
# Defaults to master as the release branch. Change as necessary
RELEASE_BRANCH: master
# Defaults to main as the release branch. Change as necessary
RELEASE_BRANCH: main
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 master or release/ runs and pushes the build to the public build repo
# This step only runs if the branch is main 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, 'master') || contains(github.ref, '/release/')
if: contains(github.ref, 'main') || contains(github.ref, '/release/')
steps:
# Checkout the repo
- name: check Github ref

View File

@@ -1,11 +1,11 @@
name: Master Build using Docker
name: main Build using Docker
on:
release:
types:
- created
branches:
- master
- main
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 master as the release branch. Change as necessary
RELEASE_BRANCH: master
# Defaults to main as the release branch. Change as necessary
RELEASE_BRANCH: main
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 Master branch
run: git checkout master
- name: Checkout main branch
run: git checkout main
# 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 master --force
run: git push -u origin main --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 master or release/ runs and pushes the build to the public build repo
# This step only runs if the branch is main 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 master branch
# Checkout main branch
- name: Create new branch
run: git checkout master
run: git checkout main
# 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 master --force
run: git push -u origin main --force
# Push the tags
- name: Push tags
run: git push --tags origin

View File

@@ -27,8 +27,6 @@ namespace PepperDash.Essentials.Bridges
Eisc.SigChange += Eisc_SigChange;
Eisc.Register();
AddPostActivationAction(() =>
{
Debug.Console(1, this, "Linking Devices...");
@@ -77,6 +75,15 @@ namespace PepperDash.Essentials.Bridges
}
Debug.Console(1, this, "Devices Linked.");
var registerResult = Eisc.Register();
if (registerResult != eDeviceRegistrationUnRegistrationResponse.Success)
{
Debug.Console(2, this, Debug.ErrorLogLevel.Error, "Registration result: {0}", registerResult);
return;
}
Debug.Console(1, this, Debug.ErrorLogLevel.Notice, "EISC registration successful");
});
}

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@@ -35,6 +35,7 @@ namespace PepperDash.Essentials
Thread.MaxNumberOfUserThreads = 400;
Global.ControlSystem = this;
DeviceManager.Initialize(this);
SystemMonitor.ProgramInitialization.ProgramInitializationUnderUserControl = true;
}
/// <summary>
@@ -90,7 +91,12 @@ namespace PepperDash.Essentials
if (!Debug.DoNotLoadOnNextBoot)
{
GoWithLoad();
return;
}
SystemMonitor.ProgramInitialization.ProgramInitializationComplete = true;
}
/// <summary>
@@ -168,7 +174,7 @@ namespace PepperDash.Essentials
public void GoWithLoad()
{
try
{
{
Debug.SetDoNotLoadOnNextBoot(false);
PluginLoader.AddProgramAssemblies();
@@ -188,11 +194,14 @@ namespace PepperDash.Essentials
Debug.Console(0, Debug.ErrorLogLevel.Notice, "Folder structure verified. Loading config...");
if (!ConfigReader.LoadConfig2())
{
Debug.Console(0, Debug.ErrorLogLevel.Error, "Essentials Load complete with errors");
return;
}
Load();
Debug.Console(0, Debug.ErrorLogLevel.Notice, "Essentials load complete\r" +
"-------------------------------------------------------------");
Debug.Console(0, Debug.ErrorLogLevel.Notice, "Essentials load complete\r\n" +
"-------------------------------------------------------------");
}
else
{
@@ -211,11 +220,13 @@ namespace PepperDash.Essentials
}
catch (Exception e)
{
Debug.Console(0, "FATAL INITIALIZE ERROR. System is in an inconsistent state:\r{0}", e);
Debug.Console(0, "FATAL INITIALIZE ERROR. System is in an inconsistent state:\r\n{0}", e);
}
finally
{
// Notify the OS that the program intitialization has completed
SystemMonitor.ProgramInitialization.ProgramInitializationComplete = true;
}
// Notify the OS that the program intitialization has completed
SystemMonitor.ProgramInitialization.ProgramInitializationComplete = true;
}

View File

@@ -1,6 +1,8 @@
# PepperDash Essentials Framework (c) 2020
## [Latest Release](https://github.com/PepperDash/Essentials/releases/latest)
## License
Provided under MIT license

View File

@@ -96,8 +96,6 @@ namespace PepperDash.Essentials.Core.Bridges
Eisc.SigChange += Eisc_SigChange;
Eisc.Register();
AddPostActivationAction( () =>
{
Debug.Console(1, this, "Linking Devices...");
@@ -121,6 +119,16 @@ namespace PepperDash.Essentials.Core.Bridges
var bridge = device as IBridgeAdvanced;
if (bridge != null) bridge.LinkToApi(Eisc, d.JoinStart, d.JoinMapKey, this);
}
var registerResult = Eisc.Register();
if (registerResult != eDeviceRegistrationUnRegistrationResponse.Success)
{
Debug.Console(2, this, Debug.ErrorLogLevel.Error, "Registration result: {0}", registerResult);
return;
}
Debug.Console(1, this, Debug.ErrorLogLevel.Notice, "EISC registration successful");
});
}

View File

@@ -89,6 +89,43 @@ 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

@@ -0,0 +1,24 @@
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

@@ -0,0 +1,29 @@
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

@@ -0,0 +1,29 @@
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
}
}

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@@ -0,0 +1,29 @@
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
}
}

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@@ -0,0 +1,29 @@
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
}
}

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@@ -0,0 +1,29 @@
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
}
}

View File

@@ -0,0 +1,116 @@
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
}
}

View File

@@ -0,0 +1,131 @@
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

@@ -0,0 +1,141 @@
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

@@ -31,13 +31,14 @@ namespace PepperDash.Essentials.Core.CrestronIO
RelayOutput = relay;
RelayOutput.Register();
RelayOutput.StateChange += new RelayEventHandler(RelayOutput_StateChange);
RelayOutput.StateChange += RelayOutput_StateChange;
}
public GenericRelayDevice(string key, string name, Func<IOPortConfig, Relay> postActivationFunc,
IOPortConfig config)
: base(key, name)
{
OutputIsOnFeedback = new BoolFeedback(() => RelayOutput.State);
AddPostActivationAction(() =>
{
@@ -46,7 +47,6 @@ namespace PepperDash.Essentials.Core.CrestronIO
RelayOutput.Register();
RelayOutput.StateChange += RelayOutput_StateChange;
});
}

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 plugin", dc.Type);
Debug.Console(0, Debug.ErrorLogLevel.Notice, "Loading '{0}' from Essentials Core", 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>
@@ -74,6 +74,10 @@
<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>
@@ -156,6 +160,17 @@
<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

@@ -1,6 +1,7 @@
using System;
using System.Collections.Generic;
using System.Linq;
using Crestron.SimplSharp;
using Crestron.SimplSharpPro;
using Crestron.SimplSharpPro.DeviceSupport;
@@ -46,7 +47,7 @@ namespace PepperDash.Essentials.DM
public BoolFeedback EnableAudioBreakawayFeedback { get; private set; }
public BoolFeedback EnableUsbBreakawayFeedback { get; private set; }
public Dictionary<uint, IntFeedback> InputCardHdcpCapabilityFeedbacks { get; private set; }
public Dictionary<uint, IntFeedback> InputCardHdcpStateFeedbacks { get; private set; }
public Dictionary<uint, eHdcpCapabilityType> InputCardHdcpCapabilityTypes { get; private set; }
@@ -218,7 +219,7 @@ namespace PepperDash.Essentials.DM
EnableUsbBreakawayFeedback =
new BoolFeedback(() => (Chassis as DmMDMnxn).EnableUSBBreakawayFeedback.BoolValue);
InputCardHdcpCapabilityFeedbacks = new Dictionary<uint, IntFeedback>();
InputCardHdcpStateFeedbacks = new Dictionary<uint, IntFeedback>();
InputCardHdcpCapabilityTypes = new Dictionary<uint, eHdcpCapabilityType>();
for (uint x = 1; x <= Chassis.NumberOfOutputs; x++)
@@ -328,7 +329,7 @@ namespace PepperDash.Essentials.DM
InputEndpointOnlineFeedbacks[tempX] = new BoolFeedback(() => { return Chassis.Inputs[tempX].EndpointOnlineFeedback; });
InputCardHdcpCapabilityFeedbacks[tempX] = new IntFeedback(() => {
InputCardHdcpStateFeedbacks[tempX] = new IntFeedback(() => {
var inputCard = Chassis.Inputs[tempX];
if (inputCard.Card is DmcHd)
@@ -838,10 +839,10 @@ namespace PepperDash.Essentials.DM
case DMInputEventIds.HdcpCapabilityFeedbackEventId:
{
Debug.Console(2, this, "DM Input {0} HdcpCapabilityFeedbackEventId", args.Number);
if (InputCardHdcpCapabilityFeedbacks[args.Number] != null)
InputCardHdcpCapabilityFeedbacks[args.Number].FireUpdate();
if (InputCardHdcpStateFeedbacks[args.Number] != null)
InputCardHdcpStateFeedbacks[args.Number].FireUpdate();
else
Debug.Console(1, this, "No index of {0} found in InputCardHdcpCapabilityFeedbacks");
Debug.Console(1, this, "No index of {0} found in InputCardHdcpStateFeedbacks");
break;
}
default:
@@ -1105,24 +1106,281 @@ namespace PepperDash.Essentials.DM
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
var joinMap = new DmChassisControllerJoinMap(joinStart);
var joinMapSerialized = JoinMapHelper.GetSerializedJoinMapForDevice(joinMapKey);
if (!string.IsNullOrEmpty(joinMapSerialized))
joinMap = JsonConvert.DeserializeObject<DmChassisControllerJoinMap>(joinMapSerialized);
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.");
}
var joinMap = GetJoinMap(joinStart, joinMapKey, bridge);
Debug.Console(1, this, "Linking to Trilist '{0}'", trilist.ID.ToString("X"));
LinkChassisToApi(trilist, joinMap);
// Link up inputs & outputs
for (uint i = 1; i <= Chassis.NumberOfOutputs; i++)
{
var ioSlot = i;
var ioSlotJoin = ioSlot - 1;
LinkRoutingJoinsToApi(trilist, joinMap, ioSlotJoin, ioSlot);
if (TxDictionary.ContainsKey(ioSlot))
{
LinkTxToApi(trilist, ioSlot, joinMap, ioSlotJoin);
}
else
{
LinkHdmiInputToApi(trilist, ioSlot, joinMap, ioSlotJoin);
}
if (RxDictionary.ContainsKey(ioSlot))
{
LinkRxToApi(trilist, ioSlot, joinMap, ioSlotJoin);
}
}
}
private void LinkHdmiInputToApi(BasicTriList trilist, uint ioSlot, DmChassisControllerJoinMap joinMap, uint ioSlotJoin)
{
VideoInputSyncFeedbacks[ioSlot].LinkInputSig(trilist.BooleanInput[joinMap.VideoSyncStatus.JoinNumber + ioSlotJoin]);
var inputPort = InputPorts[string.Format("inputCard{0}--hdmiIn", ioSlot)];
if (inputPort == null)
{
return;
}
Debug.Console(1, "Port value for input card {0} is set", ioSlot);
var port = inputPort.Port;
if (port == null)
{
return;
}
if (!(port is HdmiInputWithCEC))
{
Debug.Console(0, this, "HDMI Input port on card {0} does not support HDCP settings.", ioSlot);
return;
}
Debug.Console(1, "Port is HdmiInputWithCec");
var hdmiInPortWCec = port as HdmiInputWithCEC;
SetHdcpStateAction(true, hdmiInPortWCec, joinMap.HdcpSupportState.JoinNumber + ioSlotJoin, trilist);
InputCardHdcpStateFeedbacks[ioSlot].LinkInputSig(
trilist.UShortInput[joinMap.HdcpSupportState.JoinNumber + ioSlotJoin]);
if (InputCardHdcpCapabilityTypes.ContainsKey(ioSlot))
{
trilist.UShortInput[joinMap.HdcpSupportCapability.JoinNumber + ioSlotJoin].UShortValue =
(ushort)InputCardHdcpCapabilityTypes[ioSlot];
}
else
{
trilist.UShortInput[joinMap.HdcpSupportCapability.JoinNumber + ioSlotJoin].UShortValue = 1;
}
}
private void LinkRxToApi(BasicTriList trilist, uint ioSlot, DmChassisControllerJoinMap joinMap, uint ioSlotJoin)
{
Debug.Console(2, "Creating Rx Feedbacks {0}", ioSlot);
var rxKey = RxDictionary[ioSlot];
var rxDevice = DeviceManager.GetDeviceForKey(rxKey) as DmRmcControllerBase;
var hdBaseTDevice = DeviceManager.GetDeviceForKey(rxKey) as DmHdBaseTControllerBase;
if (Chassis is DmMd8x8Cpu3 || Chassis is DmMd8x8Cpu3rps
|| Chassis is DmMd16x16Cpu3 || Chassis is DmMd16x16Cpu3rps
|| Chassis is DmMd32x32Cpu3 || Chassis is DmMd32x32Cpu3rps || hdBaseTDevice != null)
{
OutputEndpointOnlineFeedbacks[ioSlot].LinkInputSig(
trilist.BooleanInput[joinMap.OutputEndpointOnline.JoinNumber + ioSlotJoin]);
}
else if (rxDevice != null)
{
rxDevice.IsOnline.LinkInputSig(trilist.BooleanInput[joinMap.OutputEndpointOnline.JoinNumber + ioSlotJoin]);
}
}
private void LinkTxToApi(BasicTriList trilist, uint ioSlot, DmChassisControllerJoinMap joinMap, uint ioSlotJoin)
{
Debug.Console(1, "Setting up actions and feedbacks on input card {0}", ioSlot);
VideoInputSyncFeedbacks[ioSlot].LinkInputSig(
trilist.BooleanInput[joinMap.VideoSyncStatus.JoinNumber + ioSlotJoin]);
Debug.Console(2, "Creating Tx Feedbacks {0}", ioSlot);
var txKey = TxDictionary[ioSlot];
var txDevice = DeviceManager.GetDeviceForKey(txKey) as BasicDmTxControllerBase;
if (txDevice == null)
{
return;
}
LinkTxOnlineFeedbackToApi(trilist, ioSlot, joinMap, ioSlotJoin, txDevice);
LinkBasicTxToApi(trilist, joinMap, ioSlot, ioSlotJoin, txDevice);
LinkAdvancedTxToApi(trilist, joinMap, ioSlot, ioSlotJoin, txDevice);
}
private void LinkBasicTxToApi(BasicTriList trilist, DmChassisControllerJoinMap joinMap, uint ioSlot,
uint ioSlotJoin, BasicDmTxControllerBase basicTransmitter)
{
var advTx = basicTransmitter as DmTxControllerBase;
if (advTx != null)
{
return;
}
var inputPort = InputPorts[string.Format("inputCard{0}--dmIn", ioSlot)];
if (inputPort == null)
{
return;
}
var port = inputPort.Port;
if (!(port is DMInputPortWithCec))
{
Debug.Console(0, this, "DM Input port on card {0} does not support HDCP settings.", ioSlot);
return;
}
Debug.Console(1, "Port is DMInputPortWithCec");
var dmInPortWCec = port as DMInputPortWithCec;
bool supportsHdcp2;
//added in case the InputSlotSupportsHdcp2 section isn't included in the config, or this slot is left out.
//if the key isn't in the dictionary, supportsHdcp2 will be false
if(!PropertiesConfig.InputSlotSupportsHdcp2.TryGetValue(ioSlot, out supportsHdcp2))
{
Debug.Console(0, this, Debug.ErrorLogLevel.Warning,
"Input Slot Supports HDCP2 setting not found for slot {0}. Setting to false. Program may not function as intended.",
ioSlot);
}
SetHdcpStateAction(supportsHdcp2, dmInPortWCec,
joinMap.HdcpSupportState.JoinNumber + ioSlotJoin, trilist);
InputCardHdcpStateFeedbacks[ioSlot].LinkInputSig(
trilist.UShortInput[joinMap.HdcpSupportState.JoinNumber + ioSlotJoin]);
if (InputCardHdcpCapabilityTypes.ContainsKey(ioSlot))
{
trilist.UShortInput[joinMap.HdcpSupportCapability.JoinNumber + ioSlotJoin].UShortValue =
(ushort) InputCardHdcpCapabilityTypes[ioSlot];
}
else
{
trilist.UShortInput[joinMap.HdcpSupportCapability.JoinNumber + ioSlotJoin].UShortValue = 1;
}
}
private void LinkAdvancedTxToApi(BasicTriList trilist, DmChassisControllerJoinMap joinMap,
uint ioSlot, uint ioSlotJoin, BasicDmTxControllerBase basicTransmitter)
{
var transmitter = basicTransmitter as DmTxControllerBase;
if (transmitter == null) return;
trilist.BooleanInput[joinMap.TxAdvancedIsPresent.JoinNumber + ioSlotJoin].BoolValue = true;
transmitter.AnyVideoInput.VideoStatus.VideoSyncFeedback.LinkInputSig(
trilist.BooleanInput[joinMap.VideoSyncStatus.JoinNumber + ioSlotJoin]);
var txRoutingInputs = transmitter as IRoutingInputs;
if (txRoutingInputs == null) return;
var inputPorts = txRoutingInputs.InputPorts.Where((p) => p.Port is EndpointHdmiInput || p.Port is EndpointDisplayPortInput).ToList();
if (inputPorts.Count == 0)
{
Debug.Console(1, this, "No HDCP-capable input ports found on transmitter for slot {0}", ioSlot);
return;
}
bool supportsHdcp2;
if (!PropertiesConfig.InputSlotSupportsHdcp2.TryGetValue(ioSlot, out supportsHdcp2))
{
Debug.Console(0, this, Debug.ErrorLogLevel.Warning,
"Input Slot Supports HDCP2 setting not found for slot {0}. Setting to false. Program may not function as intended.",
ioSlot);
}
SetHdcpStateAction(supportsHdcp2, inputPorts, joinMap.HdcpSupportState.JoinNumber + ioSlotJoin, trilist);
if (transmitter.HdcpStateFeedback != null)
{
transmitter.HdcpStateFeedback.LinkInputSig(
trilist.UShortInput[joinMap.HdcpSupportState.JoinNumber + ioSlotJoin]);
}
else
{
Debug.Console(2, this, "Transmitter Hdcp Feedback null. Linking to card's feedback");
InputCardHdcpStateFeedbacks[ioSlot].LinkInputSig(
trilist.UShortInput[joinMap.HdcpSupportState.JoinNumber + ioSlotJoin]);
}
trilist.UShortInput[joinMap.HdcpSupportCapability.JoinNumber + ioSlotJoin].UShortValue =
(ushort) transmitter.HdcpSupportCapability;
}
private void LinkTxOnlineFeedbackToApi(BasicTriList trilist, uint ioSlot, DmChassisControllerJoinMap joinMap,
uint ioSlotJoin, BasicDmTxControllerBase txDevice)
{
var advancedTxDevice = txDevice as DmTxControllerBase;
if ((Chassis is DmMd8x8Cpu3 || Chassis is DmMd8x8Cpu3rps
|| Chassis is DmMd16x16Cpu3 || Chassis is DmMd16x16Cpu3rps
|| Chassis is DmMd32x32Cpu3 || Chassis is DmMd32x32Cpu3rps) ||
advancedTxDevice == null)
{
Debug.Console(2, "Linking Tx Online Feedback from Input Card {0}", ioSlot);
InputEndpointOnlineFeedbacks[ioSlot].LinkInputSig(
trilist.BooleanInput[joinMap.InputEndpointOnline.JoinNumber + ioSlotJoin]);
return;
}
Debug.Console(2, "Linking Tx Online Feedback from Advanced Transmitter at input {0}", ioSlot);
advancedTxDevice.IsOnline.LinkInputSig(
trilist.BooleanInput[joinMap.InputEndpointOnline.JoinNumber + ioSlotJoin]);
}
private void LinkRoutingJoinsToApi(BasicTriList trilist, DmChassisControllerJoinMap joinMap, uint ioSlotJoin,
uint ioSlot)
{
// Routing Control
trilist.SetUShortSigAction(joinMap.OutputVideo.JoinNumber + ioSlotJoin,
o => ExecuteSwitch(o, ioSlot, eRoutingSignalType.Video));
trilist.SetUShortSigAction(joinMap.OutputAudio.JoinNumber + ioSlotJoin,
o => ExecuteSwitch(o, ioSlot, eRoutingSignalType.Audio));
trilist.SetUShortSigAction(joinMap.OutputUsb.JoinNumber + ioSlotJoin,
o => ExecuteSwitch(o, ioSlot, eRoutingSignalType.UsbOutput));
trilist.SetUShortSigAction(joinMap.InputUsb.JoinNumber + ioSlotJoin,
o => ExecuteSwitch(o, ioSlot, eRoutingSignalType.UsbInput));
//Routing Feedbacks
VideoOutputFeedbacks[ioSlot].LinkInputSig(trilist.UShortInput[joinMap.OutputVideo.JoinNumber + ioSlotJoin]);
AudioOutputFeedbacks[ioSlot].LinkInputSig(trilist.UShortInput[joinMap.OutputAudio.JoinNumber + ioSlotJoin]);
UsbOutputRoutedToFeebacks[ioSlot].LinkInputSig(trilist.UShortInput[joinMap.OutputUsb.JoinNumber + ioSlotJoin]);
UsbInputRoutedToFeebacks[ioSlot].LinkInputSig(trilist.UShortInput[joinMap.InputUsb.JoinNumber + ioSlotJoin]);
OutputNameFeedbacks[ioSlot].LinkInputSig(trilist.StringInput[joinMap.OutputNames.JoinNumber + ioSlotJoin]);
InputNameFeedbacks[ioSlot].LinkInputSig(trilist.StringInput[joinMap.InputNames.JoinNumber + ioSlotJoin]);
OutputVideoRouteNameFeedbacks[ioSlot].LinkInputSig(
trilist.StringInput[joinMap.OutputCurrentVideoInputNames.JoinNumber + ioSlotJoin]);
OutputAudioRouteNameFeedbacks[ioSlot].LinkInputSig(
trilist.StringInput[joinMap.OutputCurrentAudioInputNames.JoinNumber + ioSlotJoin]);
OutputDisabledByHdcpFeedbacks[ioSlot].LinkInputSig(
trilist.BooleanInput[joinMap.OutputDisabledByHdcp.JoinNumber + ioSlotJoin]);
}
private void LinkChassisToApi(BasicTriList trilist, DmChassisControllerJoinMap joinMap)
{
var chassis = Chassis as DmMDMnxn;
IsOnline.LinkInputSig(trilist.BooleanInput[joinMap.IsOnline.JoinNumber]);
@@ -1130,12 +1388,17 @@ namespace PepperDash.Essentials.DM
trilist.SetUShortSigAction(joinMap.SystemId.JoinNumber, o =>
{
if (chassis != null)
{
chassis.SystemId.UShortValue = o;
}
});
trilist.SetSigTrueAction(joinMap.SystemId.JoinNumber, () =>
{
if (chassis != null) chassis.ApplySystemId();
if (chassis != null)
{
chassis.ApplySystemId();
}
});
SystemIdFeebdack.LinkInputSig(trilist.UShortInput[joinMap.SystemId.JoinNumber]);
@@ -1146,177 +1409,44 @@ namespace PepperDash.Essentials.DM
trilist.OnlineStatusChange += (o, a) =>
{
if (!a.DeviceOnLine) return;
if (!a.DeviceOnLine)
{
return;
}
EnableAudioBreakawayFeedback.FireUpdate();
EnableUsbBreakawayFeedback.FireUpdate();
SystemIdBusyFeedback.FireUpdate();
SystemIdFeebdack.FireUpdate();
};
// Link up outputs
for (uint i = 1; i <= Chassis.NumberOfOutputs; i++)
{
var ioSlot = i;
var ioSlotJoin = ioSlot - 1;
// Control
trilist.SetUShortSigAction(joinMap.OutputVideo.JoinNumber + ioSlotJoin, o => ExecuteSwitch(o, ioSlot, eRoutingSignalType.Video));
trilist.SetUShortSigAction(joinMap.OutputAudio.JoinNumber + ioSlotJoin, o => ExecuteSwitch(o, ioSlot, eRoutingSignalType.Audio));
trilist.SetUShortSigAction(joinMap.OutputUsb.JoinNumber + ioSlotJoin, o => ExecuteSwitch(o, ioSlot, eRoutingSignalType.UsbOutput));
trilist.SetUShortSigAction(joinMap.InputUsb.JoinNumber + ioSlotJoin, o => ExecuteSwitch(o, ioSlot, eRoutingSignalType.UsbInput));
if (TxDictionary.ContainsKey(ioSlot))
{
Debug.Console(2, "Creating Tx Feedbacks {0}", ioSlot);
var txKey = TxDictionary[ioSlot];
var basicTxDevice = DeviceManager.GetDeviceForKey(txKey) as BasicDmTxControllerBase;
var advancedTxDevice = basicTxDevice as DmTxControllerBase;
if (Chassis is DmMd8x8Cpu3 || Chassis is DmMd8x8Cpu3rps
|| Chassis is DmMd16x16Cpu3 || Chassis is DmMd16x16Cpu3rps
|| Chassis is DmMd32x32Cpu3 || Chassis is DmMd32x32Cpu3rps)
{
InputEndpointOnlineFeedbacks[ioSlot].LinkInputSig(trilist.BooleanInput[joinMap.InputEndpointOnline.JoinNumber + ioSlotJoin]);
}
else
{
if (advancedTxDevice != null)
{
advancedTxDevice.IsOnline.LinkInputSig(trilist.BooleanInput[joinMap.InputEndpointOnline.JoinNumber + ioSlotJoin]);
Debug.Console(2, "Linking Tx Online Feedback from Advanced Transmitter at input {0}", ioSlot);
}
else if (InputEndpointOnlineFeedbacks[ioSlot] != null)
{
Debug.Console(2, "Linking Tx Online Feedback from Input Card {0}", ioSlot);
InputEndpointOnlineFeedbacks[ioSlot].LinkInputSig(trilist.BooleanInput[joinMap.InputEndpointOnline.JoinNumber + ioSlotJoin]);
}
}
if (basicTxDevice != null && advancedTxDevice == null)
trilist.BooleanInput[joinMap.TxAdvancedIsPresent.JoinNumber + ioSlotJoin].BoolValue = true;
if (advancedTxDevice != null)
{
advancedTxDevice.AnyVideoInput.VideoStatus.VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.VideoSyncStatus.JoinNumber + ioSlotJoin]);
}
else if (advancedTxDevice == null || basicTxDevice != null)
{
Debug.Console(1, "Setting up actions and feedbacks on input card {0}", ioSlot);
VideoInputSyncFeedbacks[ioSlot].LinkInputSig(trilist.BooleanInput[joinMap.VideoSyncStatus.JoinNumber + ioSlotJoin]);
var inputPort = InputPorts[string.Format("inputCard{0}--hdmiIn", ioSlot)];
if (inputPort != null)
{
Debug.Console(1, "Port value for input card {0} is set", ioSlot);
var port = inputPort.Port;
if (port != null)
{
if (port is HdmiInputWithCEC)
{
Debug.Console(1, "Port is HdmiInputWithCec");
var hdmiInPortWCec = port as HdmiInputWithCEC;
if (hdmiInPortWCec.HdcpSupportedLevel != eHdcpSupportedLevel.Unknown)
{
SetHdcpStateAction(true, hdmiInPortWCec, joinMap.HdcpSupportState.JoinNumber + ioSlotJoin, trilist);
}
InputCardHdcpCapabilityFeedbacks[ioSlot].LinkInputSig(trilist.UShortInput[joinMap.HdcpSupportState.JoinNumber + ioSlotJoin]);
if (InputCardHdcpCapabilityTypes.ContainsKey(ioSlot))
trilist.UShortInput[joinMap.HdcpSupportCapability.JoinNumber + ioSlotJoin].UShortValue = (ushort)InputCardHdcpCapabilityTypes[ioSlot];
else
trilist.UShortInput[joinMap.HdcpSupportCapability.JoinNumber + ioSlotJoin].UShortValue = 1;
}
}
}
else
{
inputPort = InputPorts[string.Format("inputCard{0}--dmIn", ioSlot)];
if (inputPort != null)
{
var port = inputPort.Port;
if (port is DMInputPortWithCec)
{
Debug.Console(1, "Port is DMInputPortWithCec");
var dmInPortWCec = port as DMInputPortWithCec;
if (dmInPortWCec != null)
{
SetHdcpStateAction(PropertiesConfig.InputSlotSupportsHdcp2[ioSlot], dmInPortWCec, joinMap.HdcpSupportState.JoinNumber + ioSlotJoin, trilist);
}
InputCardHdcpCapabilityFeedbacks[ioSlot].LinkInputSig(trilist.UShortInput[joinMap.HdcpSupportState.JoinNumber + ioSlotJoin]);
if (InputCardHdcpCapabilityTypes.ContainsKey(ioSlot))
trilist.UShortInput[joinMap.HdcpSupportCapability.JoinNumber + ioSlotJoin].UShortValue = (ushort)InputCardHdcpCapabilityTypes[ioSlot];
else
trilist.UShortInput[joinMap.HdcpSupportCapability.JoinNumber + ioSlotJoin].UShortValue = 1;
}
}
}
}
}
else
{
VideoInputSyncFeedbacks[ioSlot].LinkInputSig(trilist.BooleanInput[joinMap.VideoSyncStatus.JoinNumber + ioSlotJoin]);
var inputPort = InputPorts[string.Format("inputCard{0}--hdmiIn", ioSlot)];
if (inputPort != null)
{
var hdmiPort = inputPort.Port as EndpointHdmiInput;
if (hdmiPort != null)
{
SetHdcpStateAction(true, hdmiPort, joinMap.HdcpSupportState.JoinNumber + ioSlotJoin, trilist);
InputCardHdcpCapabilityFeedbacks[ioSlot].LinkInputSig(trilist.UShortInput[joinMap.HdcpSupportState.JoinNumber + ioSlotJoin]);
}
}
}
if (RxDictionary.ContainsKey(ioSlot))
{
Debug.Console(2, "Creating Rx Feedbacks {0}", ioSlot);
var rxKey = RxDictionary[ioSlot];
var rxDevice = DeviceManager.GetDeviceForKey(rxKey) as DmRmcControllerBase;
var hdBaseTDevice = DeviceManager.GetDeviceForKey(rxKey) as DmHdBaseTControllerBase;
if (Chassis is DmMd8x8Cpu3 || Chassis is DmMd8x8Cpu3rps
|| Chassis is DmMd16x16Cpu3 || Chassis is DmMd16x16Cpu3rps
|| Chassis is DmMd32x32Cpu3 || Chassis is DmMd32x32Cpu3rps || hdBaseTDevice != null)
{
OutputEndpointOnlineFeedbacks[ioSlot].LinkInputSig(trilist.BooleanInput[joinMap.OutputEndpointOnline.JoinNumber + ioSlotJoin]);
}
else if (rxDevice != null)
{
rxDevice.IsOnline.LinkInputSig(trilist.BooleanInput[joinMap.OutputEndpointOnline.JoinNumber + ioSlotJoin]);
}
}
// Feedback
VideoOutputFeedbacks[ioSlot].LinkInputSig(trilist.UShortInput[joinMap.OutputVideo.JoinNumber + ioSlotJoin]);
AudioOutputFeedbacks[ioSlot].LinkInputSig(trilist.UShortInput[joinMap.OutputAudio.JoinNumber + ioSlotJoin]);
UsbOutputRoutedToFeebacks[ioSlot].LinkInputSig(trilist.UShortInput[joinMap.OutputUsb.JoinNumber + ioSlotJoin]);
UsbInputRoutedToFeebacks[ioSlot].LinkInputSig(trilist.UShortInput[joinMap.InputUsb.JoinNumber + ioSlotJoin]);
OutputNameFeedbacks[ioSlot].LinkInputSig(trilist.StringInput[joinMap.OutputNames.JoinNumber + ioSlotJoin]);
InputNameFeedbacks[ioSlot].LinkInputSig(trilist.StringInput[joinMap.InputNames.JoinNumber + ioSlotJoin]);
OutputVideoRouteNameFeedbacks[ioSlot].LinkInputSig(trilist.StringInput[joinMap.OutputCurrentVideoInputNames.JoinNumber + ioSlotJoin]);
OutputAudioRouteNameFeedbacks[ioSlot].LinkInputSig(trilist.StringInput[joinMap.OutputCurrentAudioInputNames.JoinNumber + ioSlotJoin]);
OutputDisabledByHdcpFeedbacks[ioSlot].LinkInputSig(trilist.BooleanInput[joinMap.OutputDisabledByHdcp.JoinNumber + ioSlotJoin]);
}
}
private void SetHdcpStateAction(bool hdcpTypeSimple, HdmiInputWithCEC port, uint join, BasicTriList trilist)
private DmChassisControllerJoinMap GetJoinMap(uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
if (hdcpTypeSimple)
var joinMap = new DmChassisControllerJoinMap(joinStart);
var joinMapSerialized = JoinMapHelper.GetSerializedJoinMapForDevice(joinMapKey);
if (!string.IsNullOrEmpty(joinMapSerialized))
{
joinMap = JsonConvert.DeserializeObject<DmChassisControllerJoinMap>(joinMapSerialized);
}
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.");
}
return joinMap;
}
private void SetHdcpStateAction(bool supportsHdcp2, HdmiInputWithCEC port, uint join, BasicTriList trilist)
{
if (!supportsHdcp2)
{
trilist.SetUShortSigAction(join,
s =>
@@ -1341,9 +1471,9 @@ namespace PepperDash.Essentials.DM
}
}
private void SetHdcpStateAction(bool hdcpTypeSimple, EndpointHdmiInput port, uint join, BasicTriList trilist)
private void SetHdcpStateAction(bool supportsHdcp2, EndpointHdmiInput port, uint join, BasicTriList trilist)
{
if (hdcpTypeSimple)
if (!supportsHdcp2)
{
trilist.SetUShortSigAction(join,
s =>
@@ -1368,6 +1498,38 @@ namespace PepperDash.Essentials.DM
}
}
private void SetHdcpStateAction(bool supportsHdcp2, List<RoutingInputPort> ports, uint join,
BasicTriList triList)
{
if (!supportsHdcp2)
{
triList.SetUShortSigAction(join, a =>
{
foreach (var tempPort in ports.Select(port => port.Port).OfType<EndpointHdmiInput>())
{
if (a == 0)
{
tempPort.HdcpSupportOff();
}
else if (a > 0)
{
tempPort.HdcpSupportOn();
}
}
});
}
else
{
triList.SetUShortSigAction(join, a =>
{
foreach (var tempPort in ports.Select(port => port.Port).OfType<EndpointHdmiInput>())
{
tempPort.HdcpCapability = (eHdcpCapabilityType) a;
}
});
}
}
private void SetHdcpStateAction(bool supportsHdcp2, DMInputPortWithCec port, uint join, BasicTriList trilist)
{
if (!supportsHdcp2)

View File

@@ -28,7 +28,7 @@ namespace PepperDash.Essentials.DM
public override StringFeedback ActiveVideoInputFeedback { get; protected set; }
public IntFeedback VideoSourceNumericFeedback { get; protected set; }
public IntFeedback AudioSourceNumericFeedback { get; protected set; }
public IntFeedback HdmiInHdcpCapabilityFeedback { get; protected set; }
public IntFeedback HdmiInHdcpCapabilityFeedback { get; protected set; } //actually state
public BoolFeedback HdmiVideoSyncFeedback { get; protected set; }
public BoolFeedback VgaVideoSyncFeedback { get; protected set; }
@@ -105,7 +105,10 @@ namespace PepperDash.Essentials.DM
VideoSourceNumericFeedback = new IntFeedback(() => (int)Tx.VideoSourceFeedback);
AudioSourceNumericFeedback = new IntFeedback(() => (int)Tx.AudioSourceFeedback);
HdmiInHdcpCapabilityFeedback = new IntFeedback("HdmiInHdcpCapability", () => tx.HdmiInput.HdcpSupportOnFeedback.BoolValue ? 1 : 0);
HdmiInHdcpCapabilityFeedback = new IntFeedback("HdmiInHdcpCapability", () => tx.HdmiInput.HdcpSupportOnFeedback.BoolValue ? 1 : 0);
//setting this on the base class so that we can get it easily on the chassis.
HdcpStateFeedback = HdmiInHdcpCapabilityFeedback;
HdcpSupportCapability = eHdcpCapabilityType.HdcpAutoSupport;

View File

@@ -111,7 +111,9 @@ namespace PepperDash.Essentials.DM
AudioSourceNumericFeedback = new IntFeedback(() => (int)Tx.AudioSourceFeedback);
HdmiInHdcpCapabilityFeedback = new IntFeedback("HdmiInHdcpCapability", () =>
(tx.HdmiInput.HdcpSupportOnFeedback.BoolValue ? 1 : 0));
(tx.HdmiInput.HdcpSupportOnFeedback.BoolValue ? 1 : 0));
HdcpStateFeedback = HdmiInHdcpCapabilityFeedback;
HdmiVideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInput.SyncDetectedFeedback.BoolValue);

View File

@@ -113,6 +113,8 @@ namespace PepperDash.Essentials.DM
HdmiInHdcpCapabilityFeedback = new IntFeedback("HdmiInHdcpCapability", () =>
(tx.HdmiInput.HdcpSupportOnFeedback.BoolValue ? 1 : 0));
HdcpStateFeedback = HdmiInHdcpCapabilityFeedback;
HdmiVideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInput.SyncDetectedFeedback.BoolValue);
VgaVideoSyncFeedback = new BoolFeedback(() => (bool)tx.VgaInput.SyncDetectedFeedback.BoolValue);

View File

@@ -129,7 +129,9 @@ namespace PepperDash.Essentials.DM
AudioSourceNumericFeedback = new IntFeedback(() => (int)Tx.AudioSourceFeedback);
HdmiInHdcpCapabilityFeedback = new IntFeedback("HdmiInHdcpCapability", () => tx.HdmiInput.HdcpSupportOnFeedback.BoolValue ? 1 : 0);
HdmiInHdcpCapabilityFeedback = new IntFeedback("HdmiInHdcpCapability", () => tx.HdmiInput.HdcpSupportOnFeedback.BoolValue ? 1 : 0);
HdcpStateFeedback = HdmiInHdcpCapabilityFeedback;
HdcpSupportCapability = eHdcpCapabilityType.HdcpAutoSupport;

View File

@@ -110,6 +110,13 @@ namespace PepperDash.Essentials.DM
HdmiIn2HdcpCapabilityFeedback = new IntFeedback("HdmiIn2HdcpCapability", () => (int)tx.HdmiInputs[2].HdcpCapabilityFeedback);
HdcpStateFeedback =
new IntFeedback(
() =>
tx.HdmiInputs[1].HdcpCapabilityFeedback > tx.HdmiInputs[2].HdcpCapabilityFeedback
? (int) tx.HdmiInputs[1].HdcpCapabilityFeedback
: (int) tx.HdmiInputs[2].HdcpCapabilityFeedback);
HdcpSupportCapability = eHdcpCapabilityType.Hdcp2_2Support;
Hdmi1VideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue);
@@ -276,12 +283,11 @@ namespace PepperDash.Essentials.DM
switch (args.EventId)
{
case EndpointInputStreamEventIds.HdcpSupportOffFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.HdcpSupportOnFeedbackEventId:
case EndpointInputStreamEventIds.HdcpCapabilityFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
HdcpStateFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) Hdmi1VideoSyncFeedback.FireUpdate();

View File

@@ -115,7 +115,14 @@ namespace PepperDash.Essentials.DM
HdmiIn1HdcpCapabilityFeedback = new IntFeedback("HdmiIn1HdcpCapability", () => (int)tx.HdmiInputs[1].HdcpCapabilityFeedback);
HdmiIn2HdcpCapabilityFeedback = new IntFeedback("HdmiIn2HdcpCapability", () => (int)tx.HdmiInputs[2].HdcpCapabilityFeedback);
HdmiIn2HdcpCapabilityFeedback = new IntFeedback("HdmiIn2HdcpCapability", () => (int)tx.HdmiInputs[2].HdcpCapabilityFeedback);
HdcpStateFeedback =
new IntFeedback(
() =>
tx.HdmiInputs[1].HdcpCapabilityFeedback > tx.HdmiInputs[2].HdcpCapabilityFeedback
? (int)tx.HdmiInputs[1].HdcpCapabilityFeedback
: (int)tx.HdmiInputs[2].HdcpCapabilityFeedback);
HdcpSupportCapability = eHdcpCapabilityType.Hdcp2_2Support;
@@ -368,12 +375,11 @@ namespace PepperDash.Essentials.DM
switch (args.EventId)
{
case EndpointInputStreamEventIds.HdcpSupportOffFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.HdcpSupportOnFeedbackEventId:
case EndpointInputStreamEventIds.HdcpCapabilityFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
HdcpStateFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) Hdmi1VideoSyncFeedback.FireUpdate();

View File

@@ -22,267 +22,63 @@ namespace PepperDash.Essentials.DM
/// Controller class for all DM-TX-201C/S/F transmitters
/// </summary>
[Description("Wrapper class for DM-TX-4K-Z-100-C")]
public class DmTx4kz100Controller : DmTxControllerBase, IRoutingInputsOutputs, IHasFeedback,
public class DmTx4kz100Controller : BasicDmTxControllerBase, IRoutingInputsOutputs, IHasFeedback,
IIROutputPorts, IComPorts, ICec
{
public DmTx4kz100C1G Tx { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiInput { get; private set; }
public RoutingOutputPort DmOutput { get; private set; }
public override StringFeedback ActiveVideoInputFeedback { get; protected set; }
public IntFeedback HdmiInHdcpCapabilityFeedback { get; protected set; }
public BoolFeedback HdmiVideoSyncFeedback { get; protected set; }
public RoutingInputPort HdmiIn { get; private set; }
public RoutingOutputPort DmOut { get; private set; }
/// <summary>
/// Helps get the "real" inputs, including when in Auto
/// </summary>
public DmTx200Base.eSourceSelection ActualActiveVideoInput
public eX02VideoSourceType ActualActiveVideoInput
{
get
{
if (Tx.VideoSourceFeedback == DmTx200Base.eSourceSelection.Digital ||
Tx.VideoSourceFeedback == DmTx200Base.eSourceSelection.Analog ||
Tx.VideoSourceFeedback == DmTx200Base.eSourceSelection.Disable)
return Tx.VideoSourceFeedback;
else // auto
{
if (Tx.HdmiInput.SyncDetectedFeedback.BoolValue)
return DmTx200Base.eSourceSelection.Digital;
else if (Tx.VgaInput.SyncDetectedFeedback.BoolValue)
return DmTx200Base.eSourceSelection.Analog;
else
return DmTx200Base.eSourceSelection.Disable;
return eX02VideoSourceType.Hdmi1;
}
}
}
public RoutingPortCollection<RoutingInputPort> InputPorts
{
get
{
return new RoutingPortCollection<RoutingInputPort>
{
HdmiInput
};
return new RoutingPortCollection<RoutingInputPort>
{
HdmiIn
};
}
}
public RoutingPortCollection<RoutingOutputPort> OutputPorts
{
get
{
return new RoutingPortCollection<RoutingOutputPort> { DmOutput };
return new RoutingPortCollection<RoutingOutputPort> { DmOut };
}
}
/// <summary>
///
/// </summary>
/// <param name="key"></param>
/// <param name="name"></param>
/// <param name="tx"></param>
public DmTx4kz100Controller(string key, string name, DmTx4kz100C1G tx)
: base(key, name, tx)
{
Tx = tx;
HdmiInput = new RoutingInputPortWithVideoStatuses(DmPortName.HdmiIn,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.Hdmi, DmTx200Base.eSourceSelection.Digital, this,
VideoStatusHelper.GetHdmiInputStatusFuncs(tx.HdmiInput));
HdmiIn = new RoutingInputPort(DmPortName.HdmiIn1,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.Hdmi, eX02VideoSourceType.Hdmi1, this);
ActiveVideoInputFeedback = new StringFeedback("ActiveVideoInput",
() => ActualActiveVideoInput.ToString());
Tx.HdmiInput.InputStreamChange += InputStreamChangeEvent;
Tx.BaseEvent += Tx_BaseEvent;
Tx.OnlineStatusChange += Tx_OnlineStatusChange;
HdmiInHdcpCapabilityFeedback = new IntFeedback("HdmiInHdcpCapability", () =>
{
if (tx.HdmiInput.HdcpSupportOnFeedback.BoolValue)
return 1;
else
return 0;
});
HdcpSupportCapability = eHdcpCapabilityType.HdcpAutoSupport;
HdmiVideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInput.SyncDetectedFeedback.BoolValue);
var combinedFuncs = new VideoStatusFuncsWrapper
{
HdcpActiveFeedbackFunc = () =>
(ActualActiveVideoInput == DmTx200Base.eSourceSelection.Digital
&& tx.HdmiInput.VideoAttributes.HdcpActiveFeedback.BoolValue),
HdcpStateFeedbackFunc = () => ActualActiveVideoInput == DmTx200Base.eSourceSelection.Digital ? tx.HdmiInput.VideoAttributes.HdcpStateFeedback.ToString() : "",
VideoResolutionFeedbackFunc = () =>
{
if (ActualActiveVideoInput == DmTx200Base.eSourceSelection.Digital)
return tx.HdmiInput.VideoAttributes.GetVideoResolutionString();
return ActualActiveVideoInput == DmTx200Base.eSourceSelection.Analog ? tx.VgaInput.VideoAttributes.GetVideoResolutionString() : "";
},
VideoSyncFeedbackFunc = () =>
(ActualActiveVideoInput == DmTx200Base.eSourceSelection.Digital
&& tx.HdmiInput.SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == DmTx200Base.eSourceSelection.Analog
&& tx.VgaInput.SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == DmTx200Base.eSourceSelection.Auto
&& (tx.VgaInput.SyncDetectedFeedback.BoolValue || tx.HdmiInput.SyncDetectedFeedback.BoolValue))
};
AnyVideoInput = new RoutingInputPortWithVideoStatuses(DmPortName.AnyVideoIn,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.None, 0, this, combinedFuncs);
DmOutput = new RoutingOutputPort(DmPortName.DmOut, eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.DmCat, null, this);
AddToFeedbackList(ActiveVideoInputFeedback,
AnyVideoInput.VideoStatus.HasVideoStatusFeedback, AnyVideoInput.VideoStatus.HdcpActiveFeedback,
AnyVideoInput.VideoStatus.HdcpStateFeedback, AnyVideoInput.VideoStatus.VideoResolutionFeedback,
AnyVideoInput.VideoStatus.VideoSyncFeedback, HdmiInHdcpCapabilityFeedback, HdmiVideoSyncFeedback
);
DmOut = new RoutingOutputPort(DmPortName.DmOut, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.DmCat, null, this);
// Set Ports for CEC
HdmiInput.Port = Tx.HdmiInput;
DmOutput.Port = Tx.DmOutput;
}
HdmiIn.Port = Tx;
void Tx_OnlineStatusChange(GenericBase currentDevice, OnlineOfflineEventArgs args)
{
ActiveVideoInputFeedback.FireUpdate();
HdmiVideoSyncFeedback.FireUpdate();
}
public override bool CustomActivate()
{
Tx.HdmiInput.InputStreamChange += (o, a) => FowardInputStreamChange(HdmiInput, a.EventId);
Tx.HdmiInput.VideoAttributes.AttributeChange += (o, a) => FireVideoAttributeChange(HdmiInput, a.EventId);
// Base does register and sets up comm monitoring.
return base.CustomActivate();
PreventRegistration = true;
}
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
var joinMap = GetDmTxJoinMap(joinStart, joinMapKey);
if (HdmiVideoSyncFeedback != null)
{
HdmiVideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input1VideoSyncStatus.JoinNumber]);
}
LinkDmTxToApi(this, trilist, joinMap, bridge);
Debug.Console(1, this, "No properties to link. Skipping device {0}", Name);
}
/// <summary>
/// Enables or disables free run
/// </summary>
/// <param name="enable"></param>
public void SetFreeRunEnabled(bool enable)
{
Tx.VgaInput.FreeRun = enable ? eDmFreeRunSetting.Enabled : eDmFreeRunSetting.Disabled;
}
/// <summary>
/// Sets the VGA brightness level
/// </summary>
/// <param name="level"></param>
public void SetVgaBrightness(ushort level)
{
Tx.VgaInput.VideoControls.Brightness.UShortValue = level;
}
/// <summary>
/// Sets the VGA contrast level
/// </summary>
/// <param name="level"></param>
public void SetVgaContrast(ushort level)
{
Tx.VgaInput.VideoControls.Contrast.UShortValue = level;
}
void Tx_BaseEvent(GenericBase device, BaseEventArgs args)
{
var id = args.EventId;
Debug.Console(2, this, "EventId {0}", args.EventId);
switch (id)
{
case EndpointTransmitterBase.VideoSourceFeedbackEventId:
Debug.Console(2, this, " Video Source: {0}", Tx.VideoSourceFeedback);
ActiveVideoInputFeedback.FireUpdate();
break;
case EndpointTransmitterBase.AudioSourceFeedbackEventId:
Debug.Console(2, this, " Audio Source: {0}", Tx.AudioSourceFeedback);
break;
}
}
void InputStreamChangeEvent(EndpointInputStream inputStream, EndpointInputStreamEventArgs args)
{
Debug.Console(2, "{0} event {1} stream {2}", this.Tx.ToString(), inputStream.ToString(), args.EventId.ToString());
switch (args.EventId)
{
case EndpointInputStreamEventIds.HdcpSupportOffFeedbackEventId:
HdmiInHdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.HdcpSupportOnFeedbackEventId:
HdmiInHdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
HdmiVideoSyncFeedback.FireUpdate();
break;
}
}
/// <summary>
/// Relays the input stream change to the appropriate RoutingInputPort.
/// </summary>
void FowardInputStreamChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
if (eventId != EndpointInputStreamEventIds.SyncDetectedFeedbackEventId) return;
inputPort.VideoStatus.VideoSyncFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoSyncFeedback.FireUpdate();
}
/// <summary>
/// Relays the VideoAttributes change to a RoutingInputPort
/// </summary>
void FireVideoAttributeChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
//// LOCATION: Crestron.SimplSharpPro.DM.VideoAttributeEventIds
//Debug.Console(2, this, "VideoAttributes_AttributeChange event id={0} from {1}",
// args.EventId, (sender as VideoAttributesEnhanced).Owner.GetType());
switch (eventId)
{
case VideoAttributeEventIds.HdcpActiveFeedbackEventId:
inputPort.VideoStatus.HdcpActiveFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpActiveFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HdcpStateFeedbackEventId:
inputPort.VideoStatus.HdcpStateFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpStateFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HorizontalResolutionFeedbackEventId:
case VideoAttributeEventIds.VerticalResolutionFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
case VideoAttributeEventIds.FramesPerSecondFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
}
}
#region IIROutputPorts Members
public CrestronCollection<IROutputPort> IROutputPorts { get { return Tx.IROutputPorts; } }
public int NumberOfIROutputPorts { get { return Tx.NumberOfIROutputPorts; } }
@@ -294,12 +90,7 @@ namespace PepperDash.Essentials.DM
#endregion
#region ICec Members
/// <summary>
/// Gets the CEC stream directly from the HDMI port.
/// </summary>
public Cec StreamCec { get { return Tx.HdmiInput.StreamCec; } }
#endregion
#endregion
}
}

View File

@@ -99,6 +99,13 @@ namespace PepperDash.Essentials.DM
HdmiIn2HdcpCapabilityFeedback = new IntFeedback("HdmiIn2HdcpCapability", () => (int)tx.HdmiInputs[2].HdcpCapabilityFeedback);
HdcpStateFeedback =
new IntFeedback(
() =>
tx.HdmiInputs[1].HdcpCapabilityFeedback > tx.HdmiInputs[2].HdcpCapabilityFeedback
? (int)tx.HdmiInputs[1].HdcpCapabilityFeedback
: (int)tx.HdmiInputs[2].HdcpCapabilityFeedback);
HdcpSupportCapability = eHdcpCapabilityType.Hdcp2_2Support;
Hdmi1VideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue);
@@ -265,10 +272,8 @@ namespace PepperDash.Essentials.DM
switch (args.EventId)
{
case EndpointInputStreamEventIds.HdcpSupportOffFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.HdcpSupportOnFeedbackEventId:
case EndpointInputStreamEventIds.HdcpCapabilityFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;

View File

@@ -105,6 +105,13 @@ namespace PepperDash.Essentials.DM
HdmiIn2HdcpCapabilityFeedback = new IntFeedback("HdmiIn2HdcpCapability", () => (int)tx.HdmiInputs[2].HdcpCapabilityFeedback);
HdcpStateFeedback =
new IntFeedback(
() =>
tx.HdmiInputs[1].HdcpCapabilityFeedback > tx.HdmiInputs[2].HdcpCapabilityFeedback
? (int)tx.HdmiInputs[1].HdcpCapabilityFeedback
: (int)tx.HdmiInputs[2].HdcpCapabilityFeedback);
HdcpSupportCapability = eHdcpCapabilityType.Hdcp2_2Support;
Hdmi1VideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue);
@@ -275,12 +282,11 @@ namespace PepperDash.Essentials.DM
switch (args.EventId)
{
case EndpointInputStreamEventIds.HdcpSupportOffFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.HdcpSupportOnFeedbackEventId:
case EndpointInputStreamEventIds.HdcpCapabilityFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
HdcpStateFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) Hdmi1VideoSyncFeedback.FireUpdate();

View File

@@ -176,6 +176,7 @@ namespace PepperDash.Essentials.DM
public virtual eHdcpCapabilityType HdcpSupportCapability { get; protected set; }
public abstract StringFeedback ActiveVideoInputFeedback { get; protected set; }
public RoutingInputPortWithVideoStatuses AnyVideoInput { get; protected set; }
public IntFeedback HdcpStateFeedback { get; protected set; }
protected DmTxControllerBase(string key, string name, EndpointTransmitterBase hardware)
: base(key, name, hardware)