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55 Commits

Author SHA1 Message Date
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
514fe466fd Merge pull request #254 from PepperDash/hotfix/eiscApiAdvanced-backwards-compatibility
Add backwards compatability with `IBridge` to `EiscApiAdvanced`
2020-06-12 14:00:30 -06:00
Andrew Welker
c77d394e08 Merge branch 'development' into hotfix/eiscApiAdvanced-backwards-compatibility 2020-06-12 13:43:22 -06:00
Andrew Welker
1046672386 Merge branch 'master' into hotfix/eiscApiAdvanced-backwards-compatibility 2020-06-12 13:16:20 -06:00
Andrew Welker
0cfcf4f266 Merge pull request #252 from PepperDash/feature/implement-IStreamDebugging-on-ComPortController
Fix issue with `setdevicestreamdebug` console command and optional parameters
2020-06-12 13:16:04 -06:00
Andrew Welker
d86cc44c3b Merge branch 'development' into feature/implement-IStreamDebugging-on-ComPortController 2020-06-12 08:23:49 -06:00
Andrew Welker
26bd0d624e fixes issue with optional timeout parameter 2020-06-12 08:18:56 -06:00
Andrew Welker
841cb2a83b Merge pull request #250 from PepperDash/hotfix/prevent-dmtx4k100c1g-registration-attempt
Prevent DM-TX-4K-100-C registration
2020-06-12 08:12:18 -06:00
Alex Johnson
b89112bec1 Sets preventRegistration to true for dmTx4k100c1g transmitter type. Otherwise device fails and returns without linking up com port. 2020-06-11 21:29:59 -04:00
Andrew Welker
5920c7c0f0 Merge pull request #242 from PepperDash/hotfix/dm-tx-chassis-bridge-fix
Add BasicDmTxControllerBase back
2020-06-11 09:49:19 -06:00
Andrew Welker
d23ef01281 Merge branch 'development' into hotfix/dm-tx-chassis-bridge-fix 2020-06-11 09:20:58 -06:00
Neil Dorin
dab153f1b0 Merge pull request #247 from PepperDash/bugfix/dm-rmc-scaler-constructor-fix
Fix DM 2-Series chassis RX build dictionary
2020-06-11 09:19:22 -06:00
Andrew Welker
c5ad321842 fixed submodule commit issue 2020-06-10 16:34:28 -06:00
Andrew Welker
c78b305faa Merge branch 'development' into hotfix/dm-tx-chassis-bridge-fix 2020-06-10 16:15:51 -06:00
Andrew Welker
5853dd6617 Merge pull request #241 from PepperDash/hotfix/dm-tx-chassis-bridge-fix
Add BasicDmTxControllerBase back
2020-06-10 16:11:58 -06:00
Andrew Welker
a67b435565 fix DM 2-Series chassis RX build dict 2020-06-10 16:11:16 -06:00
Andrew Welker
84d8ff410e Merge pull request #248 from PepperDash/feature/implement-IStreamDebugging-on-ComPortController
Add IStreamDebugging interface to ComPortController
2020-06-10 15:58:17 -06:00
Neil Dorin
625c870072 merges latest development and updates to PD.Core 1.0.37 again. Adds concole command and method to disable stream debugging on all devices 2020-06-10 15:24:20 -06:00
Neil Dorin
c475155546 Merge remote-tracking branch 'origin/development' into feature/implement-IStreamDebugging-on-ComPortController 2020-06-10 15:18:35 -06:00
Neil Dorin
1b6669d4ef Adds more helpful debug output 2020-06-10 15:04:08 -06:00
Neil Dorin
ffbba24b5a Updates to PD.Core 1.0.37. Adds IStreamDebugging to ComPortController and adds console command to set levels 2020-06-10 15:00:09 -06:00
Andrew Welker
9bdbb1fbad Merge pull request #245 from PepperDash/hotfix/fix-dmrmc4kzscalerc-factory-name
Fix dmrmc4kzscalerc factory name
2020-06-10 13:59:39 -06:00
Alex Johnson
0465a3b9a6 Fixes name in factory for dmrmc4kzscalerc 2020-06-10 14:44:01 -04:00
Andrew Welker
a0ef356bac Fix casts in DmBladeChassisController 2020-06-09 14:40:11 -06:00
Andrew Welker
e62dd762f4 Merge pull request #239 from PepperDash/feature/AirmediaController-Add-IRoutingNumeric
Add IRoutingNumeric implementation to AirMediaController
2020-06-09 14:37:10 -06:00
Trevor Payne
9c4e4c7976 Added debug text to ExecuteNumericSwitch 2020-06-09 14:53:47 -05:00
Andrew Welker
486d6db7d8 fixes casting issues 2020-06-09 13:06:40 -06:00
Andrew Welker
81d9261a73 Changes base class to BasicDmTxControllerBase 2020-06-09 13:06:25 -06:00
Andrew Welker
2ace6ef6bc adds BasicDmTxControllerBase back in 2020-06-09 13:05:56 -06:00
Andrew Welker
cc6d94b188 Updates EiscApiAdvanced for backwards compatibility 2020-06-09 10:57:42 -06:00
Andrew Welker
0525f76b6b Added IBridge to Core
made existing IBridge inherit from it for backwards compatabilty
2020-06-09 10:57:17 -06:00
Trevor Payne
7fa3031cfa Added chack for enum presence in ExecuteNumericSwitch 2020-06-09 10:59:57 -05:00
Trevor Payne
d34177482e Added IRoutingNumeric implementation to AirMediaController
Resolves #238
2020-06-09 10:47:19 -05:00
Neil Dorin
345442e195 Merge pull request #235 from PepperDash/hotfix/update-readme-to-include-4-series
Hotfix/update readme to include 4 series
2020-06-07 16:53:45 -06:00
Neil Dorin
e94e8b60a6 Bolds 4-series 2020-06-07 16:36:00 -06:00
Neil Dorin
4f4c8cba04 Update README.md 2020-06-07 16:11:17 -06:00
Andrew Welker
1be0a3cba9 Merge pull request #233 from PepperDash/feature/HdMdNxM4kEBridgeableController-Update
Update HD-MD-4xX-C-CE series join maps
2020-06-05 16:07:09 -06:00
Trevor Payne
ce513ac086 Fixed issue with HdMdNxM4kEBridgeableController related to duplicate joinMap entry
Resolves #232
2020-06-05 14:55:21 -05:00
Andrew Welker
c98cd05a5c Merge pull request #231 from PepperDash/feature/RemoteOccupancy-Info-Update
Update RemoteOccupancy Info to send data via string
2020-06-04 14:56:50 -06:00
Trevor Payne
d68645ccb0 Changes to the way the XML is built 2020-06-04 15:41:34 -05:00
Trevor Payne
9517eaa0b0 Adds proper xml string to send to RemoteOccupancyInfo
Resovles #226
2020-06-04 15:23:20 -05:00
Andrew Welker
6b140bf2d7 Merge pull request #230 from PepperDash/feature/Airmedia-Fixes
Add HDMI Output Port to AirMediaController
2020-06-04 12:46:29 -06:00
Trevor Payne
eab0d2b1d7 Added HDMI Output Port to AirMediaController
modified RoutingSignalTypes for each of the input ports to use AudioVideo when applicable

Resolves #229
2020-06-04 12:21:47 -05:00
Neil Dorin
df8a885594 Merge pull request #228 from PepperDash/bugfix/eiscapi-debug-messages
Remove unnecessary methods in EiscApi and fix debug messages
2020-06-03 19:16:28 -06:00
Andrew Welker
5ea79ac94e #227 removes unnecessary methods and fixes debug messages 2020-06-03 16:23:57 -06:00
Neil Dorin
459dc951e9 Merge pull request #225 from PepperDash/hotfix/dm-rmc4kz100-build
Fix issue building DM-RMC-4KZ-100-C & DM-TX-4KZ-202-C
2020-06-03 11:28:54 -06:00
Andrew Welker
f823abacc1 Merge branch 'development' into hotfix/dm-rmc4kz100-build 2020-06-01 23:51:10 -06:00
Andrew Welker
0a38442ac5 Merge pull request #224 from PepperDash/hotfix/dm-rmc4kz100-build
Fix issue building DM-RMC-4KZ-100-C & DM-TX-4KZ-202-C
2020-06-01 16:59:04 -06:00
Andrew Welker
083a3662e0 adds DmTx4kz202CController class
fixes errors in DmTx4kz302CController that were fixed in a previous
commit but were not merged into dev
2020-06-01 13:33:28 -06:00
Andrew Welker
37e1e50b94 #222 changes updates for EDID Feedbacks 2020-06-01 10:38:45 -06:00
Andrew Welker
f0eeae0432 Merge pull request #221 from PepperDash/feature/releaseAndMakeRoute-nullEx
Change ReleaseAndMakeRoute to use IRoutingSinkNoSwitching instead of IRoutingInputs
2020-05-28 18:32:15 -06:00
Nick Genovese
4b663eea62 -IRoutingSinkWithSwitching now inherits directly from IRoutingSink
-Marked IRoutingSinkNoSwitching as obsolete
-Updated HulldeSpace, VTCRoom, DualDisplayRoom that were casting from IRoutingSinkNoSwitching to IRoutingSink
2020-05-28 20:07:33 -04:00
Neil Dorin
862610b17d Merge pull request #216 from PepperDash/hotfix/genericcomm-incorrect-cast
Fix incorrect cast in GenericComm LinkToApi method
2020-05-27 10:34:08 -06:00
31 changed files with 1630 additions and 1166 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

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

View File

@@ -1,5 +1,4 @@
using System;
using Crestron.SimplSharpPro.DeviceSupport;
namespace PepperDash.Essentials.Bridges
{
@@ -7,8 +6,7 @@ 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
public interface IBridge:Core.Bridges.IBridge
{
void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey);
}
}

View File

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

View File

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

View File

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

View File

@@ -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 or Crestron's VC-4 platform.
- Essentials Framework runs on any Crestron 3-series processor, **4-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

@@ -110,15 +110,24 @@ namespace PepperDash.Essentials.Core.Bridges
if (device == null) continue;
Debug.Console(1, this, "Linking Device: '{0}'", device.Key);
//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 (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 (!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

@@ -1,13 +1,19 @@
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
public interface IBridgeAdvanced:IKeyed
{
void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge);
}
public interface IBridge:IKeyed
{
void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey);
}
}

View File

@@ -17,10 +17,6 @@ namespace PepperDash.Essentials.Core.Bridges
public JoinDataComplete EnableAutoRoute = new JoinDataComplete(new JoinData() { JoinNumber = 1, JoinSpan = 1 },
new JoinMetadata() { Label = "Enable Automatic Routing on 4x1 Switchers", JoinCapabilities = eJoinCapabilities.ToFromSIMPL, JoinType = eJoinType.Digital });
[JoinName("DisableAutoRoute")]
public JoinDataComplete DisableAutoRoute = new JoinDataComplete(new JoinData() { JoinNumber = 1, JoinSpan = 1 },
new JoinMetadata() { Label = "Disable Automatic Routing on 4x1 Switchers", JoinCapabilities = eJoinCapabilities.ToFromSIMPL, JoinType = eJoinType.Digital });
[JoinName("InputName")]
public JoinDataComplete InputName = new JoinDataComplete(new JoinData() { JoinNumber = 2, JoinSpan = 8 },
new JoinMetadata() { Label = "Device Input Name", JoinCapabilities = eJoinCapabilities.ToSIMPL, JoinType = eJoinType.Serial });

View File

@@ -11,8 +11,10 @@ using PepperDash.Core;
namespace PepperDash.Essentials.Core
{
public class ComPortController : Device, IBasicCommunication
public class ComPortController : Device, IBasicCommunicationWithStreamDebugging
{
public CommunicationStreamDebugging StreamDebugging { get; private set; }
public event EventHandler<GenericCommMethodReceiveBytesArgs> BytesReceived;
public event EventHandler<GenericCommMethodReceiveTextArgs> TextReceived;
@@ -24,6 +26,8 @@ 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(() =>
@@ -91,7 +95,12 @@ 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()
@@ -105,7 +114,10 @@ namespace PepperDash.Essentials.Core
{
if (Port == null)
return;
Port.Send(text);
if (StreamDebugging.TxStreamDebuggingIsEnabled)
Debug.Console(0, this, "Sending {0} characters of text: '{1}'", text.Length, text);
Port.Send(text);
}
public void SendBytes(byte[] bytes)
@@ -113,6 +125,9 @@ 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);
}

View File

@@ -43,7 +43,10 @@ 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
@@ -299,5 +302,81 @@ 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

@@ -105,7 +105,9 @@ namespace PepperDash.Essentials.Core.Fusion
// Default poll time is 5 min unless overridden by config value
public long SchedulePollInterval = 300000;
public long PushNotificationTimeout = 5000;
public long PushNotificationTimeout = 5000;
private const string RemoteOccupancyXml = "<Occupancy><Type>Local</Type><State>{0}</State></Occupancy>";
protected Dictionary<int, FusionAsset> FusionStaticAssets;
@@ -115,7 +117,10 @@ namespace PepperDash.Essentials.Core.Fusion
// For use with occ sensor attached to a scheduling panel in Fusion
protected FusionOccupancySensorAsset FusionOccSensor;
public BoolFeedback RoomIsOccupiedFeedback { get; private set; }
public BoolFeedback RoomIsOccupiedFeedback { get; private set; }
private string _roomOccupancyRemoteString;
public StringFeedback RoomOccupancyRemoteStringFeedback { get; private set; }
protected Func<bool> RoomIsOccupiedFeedbackFunc
{
@@ -1365,14 +1370,24 @@ namespace PepperDash.Essentials.Core.Fusion
var occSensorShutdownMinutes = FusionRoom.CreateOffsetUshortSig(70, "Occ Shutdown - Minutes", eSigIoMask.InputOutputSig);
// Tie to method on occupancy object
//occSensorShutdownMinutes.OutputSig.UserObject(new Action(ushort)(b => Room.OccupancyObj.SetShutdownMinutes(b));
//occSensorShutdownMinutes.OutputSig.UserObject(new Action(ushort)(b => Room.OccupancyObj.SetShutdownMinutes(b));
RoomOccupancyRemoteStringFeedback = new StringFeedback(() => _roomOccupancyRemoteString);
Room.RoomOccupancy.RoomIsOccupiedFeedback.LinkInputSig(occSensorAsset.RoomOccupied.InputSig);
Room.RoomOccupancy.RoomIsOccupiedFeedback.OutputChange += RoomIsOccupiedFeedback_OutputChange;
RoomOccupancyRemoteStringFeedback.LinkInputSig(occSensorAsset.RoomOccupancyInfo.InputSig);
Room.RoomOccupancy.RoomIsOccupiedFeedback.LinkInputSig(occSensorAsset.RoomOccupied.InputSig);
//}
}
/// <summary>
}
void RoomIsOccupiedFeedback_OutputChange(object sender, FeedbackEventArgs e)
{
_roomOccupancyRemoteString = String.Format(RemoteOccupancyXml, e.BoolValue ? "Occupied" : "Unoccupied");
RoomOccupancyRemoteStringFeedback.FireUpdate();
}
/// <summary>
/// Helper to get the number from the end of a device's key string
/// </summary>
/// <returns>-1 if no number matched</returns>

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>

View File

@@ -48,6 +48,9 @@ namespace PepperDash.Essentials.Core
RoutingPortCollection<RoutingOutputPort> OutputPorts { get; }
}
/// <summary>
/// For fixed-source endpoint devices
/// </summary>
public interface IRoutingSink : IRoutingInputs, IHasCurrentSourceInfoChange
{
@@ -56,6 +59,7 @@ namespace PepperDash.Essentials.Core
/// <summary>
/// For fixed-source endpoint devices
/// </summary>
[Obsolete]
public interface IRoutingSinkNoSwitching : IRoutingSink
{
@@ -64,7 +68,7 @@ namespace PepperDash.Essentials.Core
/// <summary>
/// Endpoint device like a display, that selects inputs
/// </summary>
public interface IRoutingSinkWithSwitching : IRoutingSinkNoSwitching
public interface IRoutingSinkWithSwitching : IRoutingSink
{
//void ClearRoute();
void ExecuteSwitch(object inputSelector);

View File

@@ -17,7 +17,7 @@ using PepperDash.Essentials.Core.Config;
namespace PepperDash.Essentials.DM.AirMedia
{
[Description("Wrapper class for an AM-200 or AM-300")]
public class AirMediaController : CrestronGenericBridgeableBaseDevice, IRoutingInputsOutputs, IIROutputPorts, IComPorts
public class AirMediaController : CrestronGenericBridgeableBaseDevice, IRoutingNumeric, IIROutputPorts, IComPorts
{
public AmX00 AirMedia { get; private set; }
@@ -41,7 +41,7 @@ namespace PepperDash.Essentials.DM.AirMedia
public BoolFeedback AutomaticInputRoutingEnabledFeedback { get; private set; }
public AirMediaController(string key, string name, AmX00 device, DeviceConfig dc, AirMediaPropertiesConfig props)
:base(key, name, device)
: base(key, name, device)
{
AirMedia = device;
@@ -52,27 +52,30 @@ namespace PepperDash.Essentials.DM.AirMedia
InputPorts = new RoutingPortCollection<RoutingInputPort>();
OutputPorts = new RoutingPortCollection<RoutingOutputPort>();
InputPorts.Add(new RoutingInputPort(DmPortName.Osd, eRoutingSignalType.Audio | eRoutingSignalType.Video,
InputPorts.Add(new RoutingInputPort(DmPortName.Osd, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.None, new Action(SelectPinPointUxLandingPage), this));
InputPorts.Add(new RoutingInputPort(DmPortName.AirMediaIn, eRoutingSignalType.Audio | eRoutingSignalType.Video,
InputPorts.Add(new RoutingInputPort(DmPortName.AirMediaIn, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.Streaming, new Action(SelectAirMedia), this));
InputPorts.Add(new RoutingInputPort(DmPortName.HdmiIn, eRoutingSignalType.Audio | eRoutingSignalType.Video,
InputPorts.Add(new RoutingInputPort(DmPortName.HdmiIn, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.Hdmi, new Action(SelectHdmiIn), this));
InputPorts.Add(new RoutingInputPort(DmPortName.AirBoardIn, eRoutingSignalType.Video,
InputPorts.Add(new RoutingInputPort(DmPortName.AirBoardIn, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.None, new Action(SelectAirboardIn), this));
if (AirMedia is Am300)
{
InputPorts.Add(new RoutingInputPort(DmPortName.DmIn, eRoutingSignalType.Audio | eRoutingSignalType.Video,
InputPorts.Add(new RoutingInputPort(DmPortName.DmIn, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.DmCat, new Action(SelectDmIn), this));
}
OutputPorts.Add(new RoutingOutputPort(DmPortName.HdmiOut, eRoutingSignalType.AudioVideo,
eRoutingPortConnectionType.Hdmi, null, this));
AirMedia.AirMedia.AirMediaChange += new Crestron.SimplSharpPro.DeviceSupport.GenericEventHandler(AirMedia_AirMediaChange);
IsInSessionFeedback = new BoolFeedback( new Func<bool>(() => AirMedia.AirMedia.StatusFeedback.UShortValue == 0 ));
IsInSessionFeedback = new BoolFeedback(new Func<bool>(() => AirMedia.AirMedia.StatusFeedback.UShortValue == 0));
ErrorFeedback = new IntFeedback(new Func<int>(() => AirMedia.AirMedia.ErrorFeedback.UShortValue));
NumberOfUsersConnectedFeedback = new IntFeedback(new Func<int>(() => AirMedia.AirMedia.NumberOfUsersConnectedFeedback.UShortValue));
LoginCodeFeedback = new IntFeedback(new Func<int>(() => AirMedia.AirMedia.LoginCodeFeedback.UShortValue));
@@ -203,7 +206,7 @@ namespace PepperDash.Essentials.DM.AirMedia
/// </summary>
public void SelectDmIn()
{
AirMedia.DisplayControl.VideoOut = AmX00DisplayControl.eAirMediaX00VideoSource.HDMI;
AirMedia.DisplayControl.VideoOut = AmX00DisplayControl.eAirMediaX00VideoSource.DM;
}
/// <summary>
@@ -211,7 +214,7 @@ namespace PepperDash.Essentials.DM.AirMedia
/// </summary>
public void SelectHdmiIn()
{
AirMedia.DisplayControl.VideoOut = AmX00DisplayControl.eAirMediaX00VideoSource.DM;
AirMedia.DisplayControl.VideoOut = AmX00DisplayControl.eAirMediaX00VideoSource.HDMI;
}
public void SelectAirboardIn()
@@ -260,6 +263,33 @@ namespace PepperDash.Essentials.DM.AirMedia
#endregion
#region IRoutingNumeric Members
public void ExecuteNumericSwitch(ushort input, ushort output, eRoutingSignalType signalType)
{
if ((signalType & eRoutingSignalType.Video) != eRoutingSignalType.Video) return;
if (!Enum.IsDefined(typeof (AmX00DisplayControl.eAirMediaX00VideoSource), input))
{
Debug.Console(2, this, "Invalid Video Source Index : {0}", input);
return;
}
AirMedia.DisplayControl.VideoOut = (AmX00DisplayControl.eAirMediaX00VideoSource) input;
}
#endregion
#region IRouting Members
public void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType)
{
Debug.Console(2, this, "Input Selector = {0}", inputSelector.ToString());
var handler = inputSelector as Action;
if (handler == null) return;
handler();
}
#endregion
}
public class AirMediaControllerFactory : EssentialsDeviceFactory<AirMediaController>
@@ -283,7 +313,7 @@ namespace PepperDash.Essentials.DM.AirMedia
amDevice = new Crestron.SimplSharpPro.DM.AirMedia.Am300(props.Control.IpIdInt, Global.ControlSystem);
return new AirMediaController(dc.Key, dc.Name, amDevice, dc, props);
}
}
}

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 DmTxControllerBase;
var basicTxDevice = DeviceManager.GetDeviceForKey(txKey) as BasicDmTxControllerBase;
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 DmTxControllerBase;
var basicTxDevice = DeviceManager.GetDeviceForKey(txKey) as BasicDmTxControllerBase;
var advancedTxDevice = basicTxDevice;
var advancedTxDevice = basicTxDevice as DmTxControllerBase;
if (Chassis is DmMd8x8Cpu3 || Chassis is DmMd8x8Cpu3rps
|| Chassis is DmMd16x16Cpu3 || Chassis is DmMd16x16Cpu3rps

View File

@@ -269,8 +269,9 @@ namespace PepperDash.Essentials.DM.Chassis
if (_Chassis4x1 != null)
{
trilist.SetSigTrueAction(joinMap.EnableAutoRoute.JoinNumber, () => _Chassis4x1.AutoModeOn());
trilist.SetSigFalseAction(joinMap.EnableAutoRoute.JoinNumber, () => _Chassis4x1.AutoModeOff());
AutoRouteFeedback[this.Name + "-" + InputNames[1]].LinkInputSig(trilist.BooleanInput[joinMap.EnableAutoRoute.JoinNumber]);
AutoRouteFeedback[this.Name + "-" + InputNames[1]].LinkComplementInputSig(trilist.BooleanInput[joinMap.DisableAutoRoute.JoinNumber]);
}
for (uint i = 1; i <= _Chassis.NumberOfInputs; i++)

View File

@@ -24,18 +24,31 @@ namespace PepperDash.Essentials.DM
EdidSerialNumberFeedback = new StringFeedback(() => _rmc.HdmiOutput.ConnectedDevice.SerialNumber.StringValue);
_rmc.HdmiOutput.OutputStreamChange += HdmiOutput_OutputStreamChange;
_rmc.HdmiOutput.ConnectedDevice.DeviceInformationChange += ConnectedDevice_DeviceInformationChange;
//removed to prevent NullReferenceException
//_rmc.HdmiOutput.ConnectedDevice.DeviceInformationChange += ConnectedDevice_DeviceInformationChange;
}
void HdmiOutput_OutputStreamChange(EndpointOutputStream outputStream, EndpointOutputStreamEventArgs args)
{
if (args.EventId == EndpointOutputStreamEventIds.HorizontalResolutionFeedbackEventId || args.EventId == EndpointOutputStreamEventIds.VerticalResolutionFeedbackEventId ||
args.EventId == EndpointOutputStreamEventIds.FramesPerSecondFeedbackEventId)
switch (args.EventId)
{
VideoOutputResolutionFeedback.FireUpdate();
case EndpointOutputStreamEventIds.FramesPerSecondFeedbackEventId:
case EndpointOutputStreamEventIds.VerticalResolutionFeedbackEventId:
case EndpointOutputStreamEventIds.HorizontalResolutionFeedbackEventId:
VideoOutputResolutionFeedback.FireUpdate();
break;
case EndpointOutputStreamEventIds.HotplugDetectedEventId:
if (_rmc.HdmiOutput.ConnectedDevice == null) return;
EdidManufacturerFeedback.FireUpdate();
EdidNameFeedback.FireUpdate();
EdidPreferredTimingFeedback.FireUpdate();
EdidSerialNumberFeedback.FireUpdate();
break;
}
}
/*
void ConnectedDevice_DeviceInformationChange(ConnectedDeviceInformation connectedDevice, ConnectedDeviceEventArgs args)
{
switch (args.EventId)
@@ -53,7 +66,7 @@ namespace PepperDash.Essentials.DM
EdidSerialNumberFeedback.FireUpdate();
break;
}
}
}*/
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{

View File

@@ -173,22 +173,22 @@ namespace PepperDash.Essentials.DM
{"dmrmcscalers", (k, n,i, d) => new DmRmcScalerSController(k, n, new DmRmcScalerS(i,d))},
{
"dmrmcscalers2",
(k, n,i, d) => new DmRmcScalerS2Controller(k, n, new DmRmcScalerS2(d))
(k, n,i, d) => new DmRmcScalerS2Controller(k, n, new DmRmcScalerS2(i, d))
},
{
"dmrmc4kscalerc",
(k, n,i, d) => new DmRmc4kScalerCController(k, n, new DmRmc4kScalerC(d))
(k, n,i, d) => new DmRmc4kScalerCController(k, n, new DmRmc4kScalerC(i, d))
},
{
"dmrmc4kscalercdsp",
(k, n,i, d) => new DmRmc4kScalerCDspController(k, n, new DmRmc4kScalerCDsp(d))
(k, n,i, d) => new DmRmc4kScalerCDspController(k, n, new DmRmc4kScalerCDsp(i, d))
},
{
"dmrmc4kzscalerc",
(k, n,i, d) => new DmRmc4kZScalerCController(k, n, new DmRmc4kzScalerC(d))
(k, n,i, d) => new DmRmc4kZScalerCController(k, n, new DmRmc4kzScalerC(i, d))
},
{"hdbasetrx", (k,n,i,d) => new HDBaseTRxController(k,n, new HDRx3CB(d))},
{"dmrmc4k100c1g", (k,n,i,d) => new DmRmc4k100C1GController(k,n, new DmRmc4K100C1G(d))}
{"hdbasetrx", (k,n,i,d) => new HDBaseTRxController(k,n, new HDRx3CB(i, d))},
{"dmrmc4k100c1g", (k,n,i,d) => new DmRmc4k100C1GController(k,n, new DmRmc4K100C1G(i, d))}
};
}
/// <summary>
@@ -307,7 +307,7 @@ namespace PepperDash.Essentials.DM
TypeNames = new List<string>
{ "hdbasetrx", "dmrmc4k100c1g", "dmrmc100c", "dmrmc100s", "dmrmc4k100c", "dmrmc150s",
"dmrmc200c", "dmrmc200s", "dmrmc200s2", "dmrmcscalerc", "dmrmcscalers", "dmrmcscalers2", "dmrmc4kscalerc", "dmrmc4kscalercdsp",
"dmrmc4kz100c", "dmrmckzscalerc" };
"dmrmc4kz100c", "dmrmc4kzscalerc" };
}
public override EssentialsDevice BuildDevice(DeviceConfig dc)

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

View File

@@ -18,13 +18,13 @@ using PepperDash.Essentials.DM.Config;
namespace PepperDash.Essentials.DM
{
using eVst = Crestron.SimplSharpPro.DeviceSupport.eX02VideoSourceType;
using eAst = Crestron.SimplSharpPro.DeviceSupport.eX02AudioSourceType;
[Description("Wrapper class for DM-TX-4K-202-C")]
using eAst = Crestron.SimplSharpPro.DeviceSupport.eX02AudioSourceType;
[Description("Wrapper class for DM-TX-4K-202-C")]
public class DmTx4k202CController : DmTxControllerBase, ITxRouting, IHasFeedback,
IIROutputPorts, IComPorts
{
public DmTx4kX02CBase Tx { get; private set; }
public DmTx4k202C Tx { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiIn1 { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiIn2 { get; private set; }
@@ -81,7 +81,7 @@ namespace PepperDash.Essentials.DM
return new RoutingPortCollection<RoutingOutputPort> { DmOut, HdmiLoopOut };
}
}
public DmTx4k202CController(string key, string name, DmTx4kX02CBase tx)
public DmTx4k202CController(string key, string name, DmTx4k202C tx)
: base(key, name, tx)
{
Tx = tx;
@@ -99,8 +99,9 @@ namespace PepperDash.Essentials.DM
Tx.HdmiInputs[1].InputStreamChange += InputStreamChangeEvent;
Tx.HdmiInputs[2].InputStreamChange += InputStreamChangeEvent;
Tx.BaseEvent += Tx_BaseEvent;
Tx.BaseEvent += Tx_BaseEvent;
VideoSourceNumericFeedback = new IntFeedback(() => (int)Tx.VideoSourceFeedback);
AudioSourceNumericFeedback = new IntFeedback(() => (int)Tx.AudioSourceFeedback);
@@ -190,24 +191,24 @@ namespace PepperDash.Essentials.DM
var joinMap = GetDmTxJoinMap(joinStart, joinMapKey);
if (Hdmi1VideoSyncFeedback != null)
{
{
Hdmi1VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input1VideoSyncStatus.JoinNumber]);
}
if (Hdmi2VideoSyncFeedback != null)
{
{
Hdmi2VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input2VideoSyncStatus.JoinNumber]);
}
LinkDmTxToApi(this, trilist, joinMap, bridge);
}
public void ExecuteNumericSwitch(ushort input, ushort output, eRoutingSignalType type)
{
Debug.Console(2, this, "Executing Numeric Switch to input {0}.", input);
switch (type)
{
case eRoutingSignalType.Video:
public void ExecuteNumericSwitch(ushort input, ushort output, eRoutingSignalType type)
{
Debug.Console(2, this, "Executing Numeric Switch to input {0}.", input);
switch (type)
{
case eRoutingSignalType.Video:
switch (input)
{
case 0:
@@ -230,9 +231,9 @@ namespace PepperDash.Essentials.DM
ExecuteSwitch(eVst.AllDisabled, null, type);
break;
}
}
break;
case eRoutingSignalType.Audio:
}
break;
case eRoutingSignalType.Audio:
switch (input)
{
case 0:
@@ -255,11 +256,11 @@ namespace PepperDash.Essentials.DM
ExecuteSwitch(eAst.AllDisabled, null, type);
break;
}
}
break;
}
}
}
break;
}
}
public void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType)
{
if ((signalType | eRoutingSignalType.Video) == eRoutingSignalType.Video)
@@ -270,42 +271,42 @@ namespace PepperDash.Essentials.DM
void InputStreamChangeEvent(EndpointInputStream inputStream, EndpointInputStreamEventArgs args)
{
Debug.Console(2, "{0} event {1} stream {2}", this.Tx.ToString(), inputStream.ToString(), args.EventId.ToString());
switch (args.EventId)
{
case EndpointInputStreamEventIds.HdcpSupportOffFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.HdcpSupportOnFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) Hdmi1VideoSyncFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) Hdmi2VideoSyncFeedback.FireUpdate();
break;
Debug.Console(2, "{0} event {1} stream {2}", this.Tx.ToString(), inputStream.ToString(), args.EventId.ToString());
switch (args.EventId)
{
case EndpointInputStreamEventIds.HdcpSupportOffFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.HdcpSupportOnFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) Hdmi1VideoSyncFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) Hdmi2VideoSyncFeedback.FireUpdate();
break;
}
}
void Tx_BaseEvent(GenericBase device, BaseEventArgs args)
{
var id = args.EventId;
Debug.Console(2, this, "EventId {0}", args.EventId);
switch (id)
{
case EndpointTransmitterBase.VideoSourceFeedbackEventId:
Debug.Console(2, this, " Video Source: {0}", Tx.VideoSourceFeedback);
ActiveVideoInputFeedback.FireUpdate();
VideoSourceNumericFeedback.FireUpdate();
ActiveVideoInputFeedback.FireUpdate();
break;
case EndpointTransmitterBase.AudioSourceFeedbackEventId:
Debug.Console(2, this, " Audio Source : {0}", Tx.AudioSourceFeedback);
AudioSourceNumericFeedback.FireUpdate();
break;
{
var id = args.EventId;
Debug.Console(2, this, "EventId {0}", args.EventId);
switch (id)
{
case EndpointTransmitterBase.VideoSourceFeedbackEventId:
Debug.Console(2, this, " Video Source: {0}", Tx.VideoSourceFeedback);
ActiveVideoInputFeedback.FireUpdate();
VideoSourceNumericFeedback.FireUpdate();
ActiveVideoInputFeedback.FireUpdate();
break;
case EndpointTransmitterBase.AudioSourceFeedbackEventId:
Debug.Console(2, this, " Audio Source : {0}", Tx.AudioSourceFeedback);
AudioSourceNumericFeedback.FireUpdate();
break;
}
}
@@ -313,12 +314,12 @@ namespace PepperDash.Essentials.DM
/// 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();
{
if (eventId != EndpointInputStreamEventIds.SyncDetectedFeedbackEventId)
{
return;
}
inputPort.VideoStatus.VideoSyncFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoSyncFeedback.FireUpdate();
}

View File

@@ -0,0 +1,359 @@
using Crestron.SimplSharpPro;
//using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DM;
using Crestron.SimplSharpPro.DM.Endpoints;
using Crestron.SimplSharpPro.DM.Endpoints.Transmitters;
using PepperDash.Core;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Bridges;
namespace PepperDash.Essentials.DM
{
using eVst = eX02VideoSourceType;
using eAst = eX02AudioSourceType;
public class DmTx4kz202CController : DmTxControllerBase, ITxRouting,
IIROutputPorts, IComPorts
{
public DmTx4kz202C Tx { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiIn1 { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiIn2 { get; private set; }
public RoutingOutputPort DmOut { get; private set; }
public RoutingOutputPort HdmiLoopOut { get; private set; }
public override StringFeedback ActiveVideoInputFeedback { get; protected set; }
public IntFeedback VideoSourceNumericFeedback { get; protected set; }
public IntFeedback AudioSourceNumericFeedback { get; protected set; }
public IntFeedback HdmiIn1HdcpCapabilityFeedback { get; protected set; }
public IntFeedback HdmiIn2HdcpCapabilityFeedback { get; protected set; }
public BoolFeedback Hdmi1VideoSyncFeedback { get; protected set; }
public BoolFeedback Hdmi2VideoSyncFeedback { get; protected set; }
//public override IntFeedback HdcpSupportAllFeedback { get; protected set; }
//public override ushort HdcpSupportCapability { get; protected set; }
/// <summary>
/// Helps get the "real" inputs, including when in Auto
/// </summary>
public eX02VideoSourceType ActualActiveVideoInput
{
get
{
if (Tx.VideoSourceFeedback != eVst.Auto)
return Tx.VideoSourceFeedback;
if (Tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue)
return eVst.Hdmi1;
return Tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue ? eVst.Hdmi2 : eVst.AllDisabled;
}
}
public RoutingPortCollection<RoutingInputPort> InputPorts
{
get
{
return new RoutingPortCollection<RoutingInputPort>
{
HdmiIn1,
HdmiIn2,
AnyVideoInput
};
}
}
public RoutingPortCollection<RoutingOutputPort> OutputPorts
{
get
{
return new RoutingPortCollection<RoutingOutputPort> { DmOut, HdmiLoopOut };
}
}
public DmTx4kz202CController(string key, string name, DmTx4kz202C tx)
: base(key, name, tx)
{
Tx = tx;
HdmiIn1 = new RoutingInputPortWithVideoStatuses(DmPortName.HdmiIn1,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.Hdmi, eVst.Hdmi1, this,
VideoStatusHelper.GetHdmiInputStatusFuncs(tx.HdmiInputs[1]));
HdmiIn2 = new RoutingInputPortWithVideoStatuses(DmPortName.HdmiIn2,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.Hdmi, eVst.Hdmi2, this,
VideoStatusHelper.GetHdmiInputStatusFuncs(tx.HdmiInputs[2]));
ActiveVideoInputFeedback = new StringFeedback("ActiveVideoInput",
() => ActualActiveVideoInput.ToString());
Tx.HdmiInputs[1].InputStreamChange += InputStreamChangeEvent;
Tx.HdmiInputs[2].InputStreamChange += InputStreamChangeEvent;
Tx.BaseEvent += Tx_BaseEvent;
VideoSourceNumericFeedback = new IntFeedback(() => (int)Tx.VideoSourceFeedback);
//Return VideoSourceFeedback here as DM-TX-4KZ-202-C does not support audio breakaway
AudioSourceNumericFeedback = new IntFeedback(() => (int)Tx.VideoSourceFeedback);
HdmiIn1HdcpCapabilityFeedback = new IntFeedback("HdmiIn1HdcpCapability", () => (int)tx.HdmiInputs[1].HdcpCapabilityFeedback);
HdmiIn2HdcpCapabilityFeedback = new IntFeedback("HdmiIn2HdcpCapability", () => (int)tx.HdmiInputs[2].HdcpCapabilityFeedback);
HdcpSupportCapability = eHdcpCapabilityType.Hdcp2_2Support;
Hdmi1VideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue);
Hdmi2VideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue);
var combinedFuncs = new VideoStatusFuncsWrapper
{
HdcpActiveFeedbackFunc = () =>
(ActualActiveVideoInput == eVst.Hdmi1
&& tx.HdmiInputs[1].VideoAttributes.HdcpActiveFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Hdmi2
&& tx.HdmiInputs[2].VideoAttributes.HdcpActiveFeedback.BoolValue),
HdcpStateFeedbackFunc = () =>
{
if (ActualActiveVideoInput == eVst.Hdmi1)
return tx.HdmiInputs[1].VideoAttributes.HdcpStateFeedback.ToString();
if (ActualActiveVideoInput == eVst.Hdmi2)
return tx.HdmiInputs[2].VideoAttributes.HdcpStateFeedback.ToString();
return "";
},
VideoResolutionFeedbackFunc = () =>
{
if (ActualActiveVideoInput == eVst.Hdmi1)
return tx.HdmiInputs[1].VideoAttributes.GetVideoResolutionString();
if (ActualActiveVideoInput == eVst.Hdmi2)
return tx.HdmiInputs[2].VideoAttributes.GetVideoResolutionString();
return "";
},
VideoSyncFeedbackFunc = () =>
(ActualActiveVideoInput == eVst.Hdmi1
&& tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Hdmi2
&& tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue)
};
AnyVideoInput = new RoutingInputPortWithVideoStatuses(DmPortName.AnyVideoIn,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.None, 0, this, combinedFuncs);
DmOut = new RoutingOutputPort(DmPortName.DmOut, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.DmCat, null, this);
HdmiLoopOut = new RoutingOutputPort(DmPortName.HdmiLoopOut, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, null, this);
AddToFeedbackList(ActiveVideoInputFeedback, VideoSourceNumericFeedback, AudioSourceNumericFeedback,
AnyVideoInput.VideoStatus.HasVideoStatusFeedback, AnyVideoInput.VideoStatus.HdcpActiveFeedback,
AnyVideoInput.VideoStatus.HdcpStateFeedback, AnyVideoInput.VideoStatus.VideoResolutionFeedback,
AnyVideoInput.VideoStatus.VideoSyncFeedback, HdmiIn1HdcpCapabilityFeedback, HdmiIn2HdcpCapabilityFeedback,
Hdmi1VideoSyncFeedback, Hdmi2VideoSyncFeedback);
// Set Ports for CEC
HdmiIn1.Port = Tx.HdmiInputs[1];
HdmiIn2.Port = Tx.HdmiInputs[2];
HdmiLoopOut.Port = Tx.HdmiOutput;
DmOut.Port = Tx.DmOutput;
}
public override bool CustomActivate()
{
// Link up all of these damned events to the various RoutingPorts via a helper handler
Tx.HdmiInputs[1].InputStreamChange += (o, a) => FowardInputStreamChange(HdmiIn1, a.EventId);
Tx.HdmiInputs[1].VideoAttributes.AttributeChange += (o, a) => ForwardVideoAttributeChange(HdmiIn1, a.EventId);
Tx.HdmiInputs[2].InputStreamChange += (o, a) => FowardInputStreamChange(HdmiIn2, a.EventId);
Tx.HdmiInputs[2].VideoAttributes.AttributeChange += (o, a) => ForwardVideoAttributeChange(HdmiIn2, a.EventId);
// Base does register and sets up comm monitoring.
return base.CustomActivate();
}
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
var joinMap = GetDmTxJoinMap(joinStart, joinMapKey);
if (Hdmi1VideoSyncFeedback != null)
{
Hdmi1VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input1VideoSyncStatus.JoinNumber]);
}
if (Hdmi2VideoSyncFeedback != null)
{
Hdmi2VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input2VideoSyncStatus.JoinNumber]);
}
LinkDmTxToApi(this, trilist, joinMap, bridge);
}
public void ExecuteNumericSwitch(ushort input, ushort output, eRoutingSignalType type)
{
Debug.Console(2, this, "Executing Numeric Switch to input {0}.", input);
switch (type)
{
case eRoutingSignalType.Video:
switch (input)
{
case 0:
{
ExecuteSwitch(eVst.Auto, null, type);
break;
}
case 1:
{
ExecuteSwitch(HdmiIn1.Selector, null, type);
break;
}
case 2:
{
ExecuteSwitch(HdmiIn2.Selector, null, type);
break;
}
case 3:
{
ExecuteSwitch(eVst.AllDisabled, null, type);
break;
}
}
break;
case eRoutingSignalType.Audio:
switch (input)
{
case 0:
{
ExecuteSwitch(eAst.Auto, null, type);
break;
}
case 1:
{
ExecuteSwitch(eAst.Hdmi1, null, type);
break;
}
case 2:
{
ExecuteSwitch(eAst.Hdmi2, null, type);
break;
}
case 3:
{
ExecuteSwitch(eAst.AllDisabled, null, type);
break;
}
}
break;
}
}
public void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType)
{
if ((signalType & eRoutingSignalType.Video) == eRoutingSignalType.Video)
Tx.VideoSource = (eVst)inputSelector;
if(((signalType & eRoutingSignalType.Audio) == eRoutingSignalType.Audio))
Debug.Console(2, this, "Unable to execute audio-only switch for tx {0}", Key);
}
void InputStreamChangeEvent(EndpointInputStream inputStream, EndpointInputStreamEventArgs args)
{
Debug.Console(2, "{0} event {1} stream {2}", Tx.ToString(), inputStream.ToString(), args.EventId.ToString());
switch (args.EventId)
{
case EndpointInputStreamEventIds.HdcpSupportOffFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.HdcpSupportOnFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) Hdmi1VideoSyncFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) Hdmi2VideoSyncFeedback.FireUpdate();
break;
}
}
void Tx_BaseEvent(GenericBase device, BaseEventArgs args)
{
var id = args.EventId;
Debug.Console(2, this, "EventId {0}", args.EventId);
switch (id)
{
case EndpointTransmitterBase.VideoSourceFeedbackEventId:
Debug.Console(2, this, " Video Source: {0}", Tx.VideoSourceFeedback);
ActiveVideoInputFeedback.FireUpdate();
VideoSourceNumericFeedback.FireUpdate();
AudioSourceNumericFeedback.FireUpdate();
ActiveVideoInputFeedback.FireUpdate();
break;
case EndpointTransmitterBase.AudioSourceFeedbackEventId:
Debug.Console(2, this, " Audio Source : {0}", Tx.AudioSourceFeedback);
AudioSourceNumericFeedback.FireUpdate();
break;
}
}
/// <summary>
/// Relays the input stream change to the appropriate RoutingInputPort.
/// </summary>
void FowardInputStreamChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
if (eventId != EndpointInputStreamEventIds.SyncDetectedFeedbackEventId)
{
return;
}
inputPort.VideoStatus.VideoSyncFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoSyncFeedback.FireUpdate();
}
/// <summary>
/// Relays the VideoAttributes change to a RoutingInputPort
/// </summary>
void ForwardVideoAttributeChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
//// LOCATION: Crestron.SimplSharpPro.DM.VideoAttributeEventIds
//Debug.Console(2, this, "VideoAttributes_AttributeChange event id={0} from {1}",
// args.EventId, (sender as VideoAttributesEnhanced).Owner.GetType());
switch (eventId)
{
case VideoAttributeEventIds.HdcpActiveFeedbackEventId:
inputPort.VideoStatus.HdcpActiveFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpActiveFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HdcpStateFeedbackEventId:
inputPort.VideoStatus.HdcpStateFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpStateFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HorizontalResolutionFeedbackEventId:
case VideoAttributeEventIds.VerticalResolutionFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
case VideoAttributeEventIds.FramesPerSecondFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
}
}
#region IIROutputPorts Members
public CrestronCollection<IROutputPort> IROutputPorts { get { return Tx.IROutputPorts; } }
public int NumberOfIROutputPorts { get { return Tx.NumberOfIROutputPorts; } }
#endregion
#region IComPorts Members
public CrestronCollection<ComPort> ComPorts { get { return Tx.ComPorts; } }
public int NumberOfComPorts { get { return Tx.NumberOfComPorts; } }
#endregion
}
}

View File

@@ -1,368 +1,360 @@
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using Crestron.SimplSharp;
using Crestron.SimplSharpPro;
//using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DM;
using Crestron.SimplSharpPro.DM.Endpoints;
using Crestron.SimplSharpPro.DM.Endpoints.Transmitters;
using PepperDash.Core;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Bridges;
using PepperDash.Essentials.DM.Config;
namespace PepperDash.Essentials.DM
{
using eVst = Crestron.SimplSharpPro.DeviceSupport.eX02VideoSourceType;
using eAst = Crestron.SimplSharpPro.DeviceSupport.eX02AudioSourceType;
[Description("Wrapper class for DM-TX-4K-Z-302-C")]
public class DmTx4kz302CController : DmTxControllerBase, ITxRouting, IHasFeedback,
IIROutputPorts, IComPorts
{
public DmTx4kz302C Tx { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiIn1 { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiIn2 { get; private set; }
public RoutingInputPortWithVideoStatuses DisplayPortIn { get; private set; }
public RoutingOutputPort DmOut { get; private set; }
public RoutingOutputPort HdmiLoopOut { get; private set; }
public override StringFeedback ActiveVideoInputFeedback { get; protected set; }
public IntFeedback VideoSourceNumericFeedback { get; protected set; }
public IntFeedback AudioSourceNumericFeedback { get; protected set; }
public IntFeedback HdmiIn1HdcpCapabilityFeedback { get; protected set; }
public IntFeedback HdmiIn2HdcpCapabilityFeedback { get; protected set; }
public BoolFeedback Hdmi1VideoSyncFeedback { get; protected set; }
public BoolFeedback Hdmi2VideoSyncFeedback { get; protected set; }
public BoolFeedback DisplayPortVideoSyncFeedback { get; protected set; }
//public override IntFeedback HdcpSupportAllFeedback { get; protected set; }
//public override ushort HdcpSupportCapability { get; protected set; }
/// <summary>
/// Helps get the "real" inputs, including when in Auto
/// </summary>
public Crestron.SimplSharpPro.DeviceSupport.eX02VideoSourceType ActualActiveVideoInput
{
get
{
if (Tx.VideoSourceFeedback != eVst.Auto)
return Tx.VideoSourceFeedback;
else // auto
{
if (Tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue)
return eVst.Hdmi1;
else if (Tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue)
return eVst.Hdmi2;
else if (Tx.DisplayPortInput.SyncDetectedFeedback.BoolValue)
return eVst.Vga;
else
return eVst.AllDisabled;
}
}
}
public RoutingPortCollection<RoutingInputPort> InputPorts
{
get
{
return new RoutingPortCollection<RoutingInputPort>
{
HdmiIn1,
HdmiIn2,
DisplayPortIn,
AnyVideoInput
};
}
}
public RoutingPortCollection<RoutingOutputPort> OutputPorts
{
get
{
return new RoutingPortCollection<RoutingOutputPort> { DmOut, HdmiLoopOut };
}
}
public DmTx4kz302CController(string key, string name, DmTx4kz302C tx)
: base(key, name, tx)
{
Tx = tx;
HdmiIn1 = new RoutingInputPortWithVideoStatuses(DmPortName.HdmiIn1,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.Hdmi, eVst.Hdmi1, this,
VideoStatusHelper.GetHdmiInputStatusFuncs(tx.HdmiInputs[1]));
HdmiIn2 = new RoutingInputPortWithVideoStatuses(DmPortName.HdmiIn2,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.Hdmi, eVst.Hdmi2, this,
VideoStatusHelper.GetHdmiInputStatusFuncs(tx.HdmiInputs[2]));
DisplayPortIn = new RoutingInputPortWithVideoStatuses(DmPortName.VgaIn,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.DisplayPort, eVst.DisplayPort, this,
VideoStatusHelper.GetDisplayPortInputStatusFuncs(tx.DisplayPortInput));
ActiveVideoInputFeedback = new StringFeedback("ActiveVideoInput",
() => ActualActiveVideoInput.ToString());
Tx.HdmiInputs[1].InputStreamChange += InputStreamChangeEvent;
Tx.HdmiInputs[2].InputStreamChange += InputStreamChangeEvent;
Tx.DisplayPortInput.InputStreamChange += DisplayPortInputStreamChange;
Tx.BaseEvent += Tx_BaseEvent;
VideoSourceNumericFeedback = new IntFeedback(() => (int)Tx.VideoSourceFeedback);
AudioSourceNumericFeedback = new IntFeedback(() => (int)Tx.AudioSourceFeedback);
HdmiIn1HdcpCapabilityFeedback = new IntFeedback("HdmiIn1HdcpCapability", () => (int)tx.HdmiInputs[1].HdcpCapabilityFeedback);
HdmiIn2HdcpCapabilityFeedback = new IntFeedback("HdmiIn2HdcpCapability", () => (int)tx.HdmiInputs[2].HdcpCapabilityFeedback);
HdcpSupportCapability = eHdcpCapabilityType.Hdcp2_2Support;
Hdmi1VideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue);
Hdmi2VideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue);
DisplayPortVideoSyncFeedback = new BoolFeedback(() => (bool)tx.DisplayPortInput.SyncDetectedFeedback.BoolValue);
var combinedFuncs = new VideoStatusFuncsWrapper
{
HdcpActiveFeedbackFunc = () =>
(ActualActiveVideoInput == eVst.Hdmi1
&& tx.HdmiInputs[1].VideoAttributes.HdcpActiveFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Hdmi2
&& tx.HdmiInputs[2].VideoAttributes.HdcpActiveFeedback.BoolValue),
HdcpStateFeedbackFunc = () =>
{
if (ActualActiveVideoInput == eVst.Hdmi1)
return tx.HdmiInputs[1].VideoAttributes.HdcpStateFeedback.ToString();
return ActualActiveVideoInput == eVst.Hdmi2 ? tx.HdmiInputs[2].VideoAttributes.HdcpStateFeedback.ToString() : "";
},
VideoResolutionFeedbackFunc = () =>
{
if (ActualActiveVideoInput == eVst.Hdmi1)
return tx.HdmiInputs[1].VideoAttributes.GetVideoResolutionString();
if (ActualActiveVideoInput == eVst.Hdmi2)
return tx.HdmiInputs[2].VideoAttributes.GetVideoResolutionString();
return ActualActiveVideoInput == eVst.Vga ? tx.DisplayPortInput.VideoAttributes.GetVideoResolutionString() : "";
},
VideoSyncFeedbackFunc = () =>
(ActualActiveVideoInput == eVst.Hdmi1
&& tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Hdmi2
&& tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Vga
&& tx.DisplayPortInput.SyncDetectedFeedback.BoolValue)
};
AnyVideoInput = new RoutingInputPortWithVideoStatuses(DmPortName.AnyVideoIn,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.None, 0, this, combinedFuncs);
DmOut = new RoutingOutputPort(DmPortName.DmOut, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.DmCat, null, this);
HdmiLoopOut = new RoutingOutputPort(DmPortName.HdmiLoopOut, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, null, this);
AddToFeedbackList(ActiveVideoInputFeedback, VideoSourceNumericFeedback, AudioSourceNumericFeedback,
AnyVideoInput.VideoStatus.HasVideoStatusFeedback, AnyVideoInput.VideoStatus.HdcpActiveFeedback,
AnyVideoInput.VideoStatus.HdcpStateFeedback, AnyVideoInput.VideoStatus.VideoResolutionFeedback,
AnyVideoInput.VideoStatus.VideoSyncFeedback, HdmiIn1HdcpCapabilityFeedback, HdmiIn2HdcpCapabilityFeedback,
Hdmi1VideoSyncFeedback, Hdmi2VideoSyncFeedback, DisplayPortVideoSyncFeedback);
// Set Ports for CEC
HdmiIn1.Port = Tx.HdmiInputs[1];
HdmiIn2.Port = Tx.HdmiInputs[2];
HdmiLoopOut.Port = Tx.HdmiOutput;
DmOut.Port = Tx.DmOutput;
}
void DisplayPortInputStreamChange(EndpointInputStream inputStream, EndpointInputStreamEventArgs args)
{
Debug.Console(2, "{0} event {1} stream {2}", Tx.ToString(), inputStream.ToString(), args.EventId.ToString());
switch (args.EventId)
{
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
DisplayPortVideoSyncFeedback.FireUpdate();
break;
}
}
public override bool CustomActivate()
{
// Link up all of these damned events to the various RoutingPorts via a helper handler
Tx.HdmiInputs[1].InputStreamChange += (o, a) => FowardInputStreamChange(HdmiIn1, a.EventId);
Tx.HdmiInputs[1].VideoAttributes.AttributeChange += (o, a) => ForwardVideoAttributeChange(HdmiIn1, a.EventId);
Tx.HdmiInputs[2].InputStreamChange += (o, a) => FowardInputStreamChange(HdmiIn2, a.EventId);
Tx.HdmiInputs[2].VideoAttributes.AttributeChange += (o, a) => ForwardVideoAttributeChange(HdmiIn2, a.EventId);
Tx.DisplayPortInput.InputStreamChange += (o, a) => FowardInputStreamChange(DisplayPortIn, a.EventId);
Tx.DisplayPortInput.VideoAttributes.AttributeChange += (o, a) => ForwardVideoAttributeChange(DisplayPortIn, a.EventId);
// Base does register and sets up comm monitoring.
return base.CustomActivate();
}
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
var joinMap = GetDmTxJoinMap(joinStart, joinMapKey);
if (Hdmi1VideoSyncFeedback != null)
{
Hdmi1VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input1VideoSyncStatus.JoinNumber]);
}
if (Hdmi2VideoSyncFeedback != null)
{
Hdmi2VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input2VideoSyncStatus.JoinNumber]);
}
if (DisplayPortVideoSyncFeedback != null)
{
DisplayPortVideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input3VideoSyncStatus.JoinNumber]);
}
LinkDmTxToApi(this, trilist, joinMap, bridge);
}
public void ExecuteNumericSwitch(ushort input, ushort output, eRoutingSignalType type)
{
Debug.Console(2, this, "Executing Numeric Switch to input {0}.", input);
switch (input)
{
case 0:
{
ExecuteSwitch(eVst.Auto, null, eRoutingSignalType.Audio | eRoutingSignalType.Video);
break;
}
case 1:
{
ExecuteSwitch(HdmiIn1.Selector, null, eRoutingSignalType.Audio | eRoutingSignalType.Video);
break;
}
case 2:
{
ExecuteSwitch(HdmiIn2.Selector, null, eRoutingSignalType.Audio | eRoutingSignalType.Video);
break;
}
case 3:
{
ExecuteSwitch(DisplayPortIn.Selector, null, eRoutingSignalType.Audio | eRoutingSignalType.Video);
break;
}
case 4:
{
ExecuteSwitch(eVst.AllDisabled, null, eRoutingSignalType.Audio | eRoutingSignalType.Video);
break;
}
}
}
public void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType)
{
if ((signalType | eRoutingSignalType.Video) == eRoutingSignalType.Video)
Tx.VideoSource = (eVst)inputSelector;
// NOTE: It's possible that this particular TX model may not like the AudioSource property being set.
// The SIMPL definition only shows a single analog for AudioVideo Source
if ((signalType | eRoutingSignalType.Audio) == eRoutingSignalType.Audio)
Tx.AudioSource = (eAst)inputSelector;
}
void InputStreamChangeEvent(EndpointInputStream inputStream, EndpointInputStreamEventArgs args)
{
Debug.Console(2, "{0} event {1} stream {2}", this.Tx.ToString(), inputStream.ToString(), args.EventId.ToString());
switch (args.EventId)
{
case EndpointInputStreamEventIds.HdcpSupportOffFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.HdcpSupportOnFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) Hdmi1VideoSyncFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) Hdmi2VideoSyncFeedback.FireUpdate();
break;
}
}
void Tx_BaseEvent(GenericBase device, BaseEventArgs args)
{
var id = args.EventId;
switch (id)
{
case EndpointTransmitterBase.VideoSourceFeedbackEventId:
Debug.Console(2, this, " Video Source: {0}", Tx.VideoSourceFeedback);
VideoSourceNumericFeedback.FireUpdate();
ActiveVideoInputFeedback.FireUpdate();
break;
case EndpointTransmitterBase.AudioSourceFeedbackEventId:
Debug.Console(2, this, " Audio Source: {0}", Tx.AudioSourceFeedback);
AudioSourceNumericFeedback.FireUpdate();
break;
}
}
/// <summary>
/// Relays the input stream change to the appropriate RoutingInputPort.
/// </summary>
void FowardInputStreamChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
if (eventId != EndpointInputStreamEventIds.SyncDetectedFeedbackEventId) return;
inputPort.VideoStatus.VideoSyncFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoSyncFeedback.FireUpdate();
}
/// <summary>
/// Relays the VideoAttributes change to a RoutingInputPort
/// </summary>
void ForwardVideoAttributeChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
//// LOCATION: Crestron.SimplSharpPro.DM.VideoAttributeEventIds
//Debug.Console(2, this, "VideoAttributes_AttributeChange event id={0} from {1}",
// args.EventId, (sender as VideoAttributesEnhanced).Owner.GetType());
switch (eventId)
{
case VideoAttributeEventIds.HdcpActiveFeedbackEventId:
inputPort.VideoStatus.HdcpActiveFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpActiveFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HdcpStateFeedbackEventId:
inputPort.VideoStatus.HdcpStateFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpStateFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HorizontalResolutionFeedbackEventId:
case VideoAttributeEventIds.VerticalResolutionFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
case VideoAttributeEventIds.FramesPerSecondFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
}
}
#region IIROutputPorts Members
public CrestronCollection<IROutputPort> IROutputPorts { get { return Tx.IROutputPorts; } }
public int NumberOfIROutputPorts { get { return Tx.NumberOfIROutputPorts; } }
#endregion
#region IComPorts Members
public CrestronCollection<ComPort> ComPorts { get { return Tx.ComPorts; } }
public int NumberOfComPorts { get { return Tx.NumberOfComPorts; } }
#endregion
}
using Crestron.SimplSharpPro;
//using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DeviceSupport;
using Crestron.SimplSharpPro.DM;
using Crestron.SimplSharpPro.DM.Endpoints;
using Crestron.SimplSharpPro.DM.Endpoints.Transmitters;
using PepperDash.Core;
using PepperDash.Essentials.Core;
using PepperDash.Essentials.Core.Bridges;
namespace PepperDash.Essentials.DM
{
using eVst = eX02VideoSourceType;
using eAst = eX02AudioSourceType;
[Description("Wrapper class for DM-TX-4K-Z-302-C")]
public class DmTx4kz302CController : DmTxControllerBase, ITxRouting, IHasFeedback,
IIROutputPorts, IComPorts
{
public DmTx4kz302C Tx { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiIn1 { get; private set; }
public RoutingInputPortWithVideoStatuses HdmiIn2 { get; private set; }
public RoutingInputPortWithVideoStatuses DisplayPortIn { get; private set; }
public RoutingOutputPort DmOut { get; private set; }
public RoutingOutputPort HdmiLoopOut { get; private set; }
public override StringFeedback ActiveVideoInputFeedback { get; protected set; }
public IntFeedback VideoSourceNumericFeedback { get; protected set; }
public IntFeedback AudioSourceNumericFeedback { get; protected set; }
public IntFeedback HdmiIn1HdcpCapabilityFeedback { get; protected set; }
public IntFeedback HdmiIn2HdcpCapabilityFeedback { get; protected set; }
public BoolFeedback Hdmi1VideoSyncFeedback { get; protected set; }
public BoolFeedback Hdmi2VideoSyncFeedback { get; protected set; }
public BoolFeedback DisplayPortVideoSyncFeedback { get; protected set; }
//public override IntFeedback HdcpSupportAllFeedback { get; protected set; }
//public override ushort HdcpSupportCapability { get; protected set; }
/// <summary>
/// Helps get the "real" inputs, including when in Auto
/// </summary>
public eX02VideoSourceType ActualActiveVideoInput
{
get
{
if (Tx.VideoSourceFeedback != eVst.Auto)
return Tx.VideoSourceFeedback;
if (Tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue)
return eVst.Hdmi1;
if (Tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue)
return eVst.Hdmi2;
return Tx.DisplayPortInput.SyncDetectedFeedback.BoolValue ? eVst.Vga : eVst.AllDisabled;
}
}
public RoutingPortCollection<RoutingInputPort> InputPorts
{
get
{
return new RoutingPortCollection<RoutingInputPort>
{
HdmiIn1,
HdmiIn2,
DisplayPortIn,
AnyVideoInput
};
}
}
public RoutingPortCollection<RoutingOutputPort> OutputPorts
{
get
{
return new RoutingPortCollection<RoutingOutputPort> { DmOut, HdmiLoopOut };
}
}
public DmTx4kz302CController(string key, string name, DmTx4kz302C tx)
: base(key, name, tx)
{
Tx = tx;
HdmiIn1 = new RoutingInputPortWithVideoStatuses(DmPortName.HdmiIn1,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.Hdmi, eVst.Hdmi1, this,
VideoStatusHelper.GetHdmiInputStatusFuncs(tx.HdmiInputs[1]));
HdmiIn2 = new RoutingInputPortWithVideoStatuses(DmPortName.HdmiIn2,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.Hdmi, eVst.Hdmi2, this,
VideoStatusHelper.GetHdmiInputStatusFuncs(tx.HdmiInputs[2]));
DisplayPortIn = new RoutingInputPortWithVideoStatuses(DmPortName.VgaIn,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.DisplayPort, eVst.DisplayPort, this,
VideoStatusHelper.GetDisplayPortInputStatusFuncs(tx.DisplayPortInput));
ActiveVideoInputFeedback = new StringFeedback("ActiveVideoInput",
() => ActualActiveVideoInput.ToString());
Tx.HdmiInputs[1].InputStreamChange += InputStreamChangeEvent;
Tx.HdmiInputs[2].InputStreamChange += InputStreamChangeEvent;
Tx.DisplayPortInput.InputStreamChange += DisplayPortInputStreamChange;
Tx.BaseEvent += Tx_BaseEvent;
VideoSourceNumericFeedback = new IntFeedback(() => (int)Tx.VideoSourceFeedback);
AudioSourceNumericFeedback = new IntFeedback(() => (int)Tx.VideoSourceFeedback);
HdmiIn1HdcpCapabilityFeedback = new IntFeedback("HdmiIn1HdcpCapability", () => (int)tx.HdmiInputs[1].HdcpCapabilityFeedback);
HdmiIn2HdcpCapabilityFeedback = new IntFeedback("HdmiIn2HdcpCapability", () => (int)tx.HdmiInputs[2].HdcpCapabilityFeedback);
HdcpSupportCapability = eHdcpCapabilityType.Hdcp2_2Support;
Hdmi1VideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue);
Hdmi2VideoSyncFeedback = new BoolFeedback(() => (bool)tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue);
DisplayPortVideoSyncFeedback = new BoolFeedback(() => (bool)tx.DisplayPortInput.SyncDetectedFeedback.BoolValue);
var combinedFuncs = new VideoStatusFuncsWrapper
{
HdcpActiveFeedbackFunc = () =>
(ActualActiveVideoInput == eVst.Hdmi1
&& tx.HdmiInputs[1].VideoAttributes.HdcpActiveFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Hdmi2
&& tx.HdmiInputs[2].VideoAttributes.HdcpActiveFeedback.BoolValue),
HdcpStateFeedbackFunc = () =>
{
if (ActualActiveVideoInput == eVst.Hdmi1)
return tx.HdmiInputs[1].VideoAttributes.HdcpStateFeedback.ToString();
return ActualActiveVideoInput == eVst.Hdmi2 ? tx.HdmiInputs[2].VideoAttributes.HdcpStateFeedback.ToString() : "";
},
VideoResolutionFeedbackFunc = () =>
{
if (ActualActiveVideoInput == eVst.Hdmi1)
return tx.HdmiInputs[1].VideoAttributes.GetVideoResolutionString();
if (ActualActiveVideoInput == eVst.Hdmi2)
return tx.HdmiInputs[2].VideoAttributes.GetVideoResolutionString();
return ActualActiveVideoInput == eVst.Vga ? tx.DisplayPortInput.VideoAttributes.GetVideoResolutionString() : "";
},
VideoSyncFeedbackFunc = () =>
(ActualActiveVideoInput == eVst.Hdmi1
&& tx.HdmiInputs[1].SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Hdmi2
&& tx.HdmiInputs[2].SyncDetectedFeedback.BoolValue)
|| (ActualActiveVideoInput == eVst.Vga
&& tx.DisplayPortInput.SyncDetectedFeedback.BoolValue)
};
AnyVideoInput = new RoutingInputPortWithVideoStatuses(DmPortName.AnyVideoIn,
eRoutingSignalType.Audio | eRoutingSignalType.Video, eRoutingPortConnectionType.None, 0, this, combinedFuncs);
DmOut = new RoutingOutputPort(DmPortName.DmOut, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.DmCat, null, this);
HdmiLoopOut = new RoutingOutputPort(DmPortName.HdmiLoopOut, eRoutingSignalType.Audio | eRoutingSignalType.Video,
eRoutingPortConnectionType.Hdmi, null, this);
AddToFeedbackList(ActiveVideoInputFeedback, VideoSourceNumericFeedback, AudioSourceNumericFeedback,
AnyVideoInput.VideoStatus.HasVideoStatusFeedback, AnyVideoInput.VideoStatus.HdcpActiveFeedback,
AnyVideoInput.VideoStatus.HdcpStateFeedback, AnyVideoInput.VideoStatus.VideoResolutionFeedback,
AnyVideoInput.VideoStatus.VideoSyncFeedback, HdmiIn1HdcpCapabilityFeedback, HdmiIn2HdcpCapabilityFeedback,
Hdmi1VideoSyncFeedback, Hdmi2VideoSyncFeedback, DisplayPortVideoSyncFeedback);
// Set Ports for CEC
HdmiIn1.Port = Tx.HdmiInputs[1];
HdmiIn2.Port = Tx.HdmiInputs[2];
HdmiLoopOut.Port = Tx.HdmiOutput;
DmOut.Port = Tx.DmOutput;
}
void DisplayPortInputStreamChange(EndpointInputStream inputStream, EndpointInputStreamEventArgs args)
{
Debug.Console(2, "{0} event {1} stream {2}", Tx.ToString(), inputStream.ToString(), args.EventId.ToString());
switch (args.EventId)
{
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
DisplayPortVideoSyncFeedback.FireUpdate();
break;
}
}
public override bool CustomActivate()
{
// Link up all of these damned events to the various RoutingPorts via a helper handler
Tx.HdmiInputs[1].InputStreamChange += (o, a) => FowardInputStreamChange(HdmiIn1, a.EventId);
Tx.HdmiInputs[1].VideoAttributes.AttributeChange += (o, a) => ForwardVideoAttributeChange(HdmiIn1, a.EventId);
Tx.HdmiInputs[2].InputStreamChange += (o, a) => FowardInputStreamChange(HdmiIn2, a.EventId);
Tx.HdmiInputs[2].VideoAttributes.AttributeChange += (o, a) => ForwardVideoAttributeChange(HdmiIn2, a.EventId);
Tx.DisplayPortInput.InputStreamChange += (o, a) => FowardInputStreamChange(DisplayPortIn, a.EventId);
Tx.DisplayPortInput.VideoAttributes.AttributeChange += (o, a) => ForwardVideoAttributeChange(DisplayPortIn, a.EventId);
// Base does register and sets up comm monitoring.
return base.CustomActivate();
}
public override void LinkToApi(BasicTriList trilist, uint joinStart, string joinMapKey, EiscApiAdvanced bridge)
{
var joinMap = GetDmTxJoinMap(joinStart, joinMapKey);
if (Hdmi1VideoSyncFeedback != null)
{
Hdmi1VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input1VideoSyncStatus.JoinNumber]);
}
if (Hdmi2VideoSyncFeedback != null)
{
Hdmi2VideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input2VideoSyncStatus.JoinNumber]);
}
if (DisplayPortVideoSyncFeedback != null)
{
DisplayPortVideoSyncFeedback.LinkInputSig(trilist.BooleanInput[joinMap.Input3VideoSyncStatus.JoinNumber]);
}
LinkDmTxToApi(this, trilist, joinMap, bridge);
}
public void ExecuteNumericSwitch(ushort input, ushort output, eRoutingSignalType type)
{
Debug.Console(2, this, "Executing Numeric Switch to input {0}.", input);
switch (input)
{
case 0:
{
ExecuteSwitch(eVst.Auto, null, eRoutingSignalType.Audio | eRoutingSignalType.Video);
break;
}
case 1:
{
ExecuteSwitch(HdmiIn1.Selector, null, eRoutingSignalType.Audio | eRoutingSignalType.Video);
break;
}
case 2:
{
ExecuteSwitch(HdmiIn2.Selector, null, eRoutingSignalType.Audio | eRoutingSignalType.Video);
break;
}
case 3:
{
ExecuteSwitch(DisplayPortIn.Selector, null, eRoutingSignalType.Audio | eRoutingSignalType.Video);
break;
}
case 4:
{
ExecuteSwitch(eVst.AllDisabled, null, eRoutingSignalType.Audio | eRoutingSignalType.Video);
break;
}
}
}
public void ExecuteSwitch(object inputSelector, object outputSelector, eRoutingSignalType signalType)
{
if ((signalType | eRoutingSignalType.Video) == eRoutingSignalType.Video)
Tx.VideoSource = (eVst)inputSelector;
// NOTE: It's possible that this particular TX model may not like the AudioSource property being set.
// The SIMPL definition only shows a single analog for AudioVideo Source
if ((signalType | eRoutingSignalType.Audio) == eRoutingSignalType.Audio)
//it doesn't
Debug.Console(2, this, "Unable to execute audio-only switch for tx {0}", Key);
//Tx.AudioSource = (eAst)inputSelector;
}
void InputStreamChangeEvent(EndpointInputStream inputStream, EndpointInputStreamEventArgs args)
{
Debug.Console(2, "{0} event {1} stream {2}", Tx.ToString(), inputStream.ToString(), args.EventId.ToString());
switch (args.EventId)
{
case EndpointInputStreamEventIds.HdcpSupportOffFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.HdcpSupportOnFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) HdmiIn1HdcpCapabilityFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) HdmiIn2HdcpCapabilityFeedback.FireUpdate();
break;
case EndpointInputStreamEventIds.SyncDetectedFeedbackEventId:
if (inputStream == Tx.HdmiInputs[1]) Hdmi1VideoSyncFeedback.FireUpdate();
if (inputStream == Tx.HdmiInputs[2]) Hdmi2VideoSyncFeedback.FireUpdate();
break;
}
}
void Tx_BaseEvent(GenericBase device, BaseEventArgs args)
{
var id = args.EventId;
switch (id)
{
case EndpointTransmitterBase.VideoSourceFeedbackEventId:
Debug.Console(2, this, " Video Source: {0}", Tx.VideoSourceFeedback);
VideoSourceNumericFeedback.FireUpdate();
ActiveVideoInputFeedback.FireUpdate();
break;
case EndpointTransmitterBase.AudioSourceFeedbackEventId:
Debug.Console(2, this, " Audio Source: {0}", Tx.AudioSourceFeedback);
AudioSourceNumericFeedback.FireUpdate();
break;
}
}
/// <summary>
/// Relays the input stream change to the appropriate RoutingInputPort.
/// </summary>
void FowardInputStreamChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
if (eventId != EndpointInputStreamEventIds.SyncDetectedFeedbackEventId) return;
inputPort.VideoStatus.VideoSyncFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoSyncFeedback.FireUpdate();
}
/// <summary>
/// Relays the VideoAttributes change to a RoutingInputPort
/// </summary>
void ForwardVideoAttributeChange(RoutingInputPortWithVideoStatuses inputPort, int eventId)
{
//// LOCATION: Crestron.SimplSharpPro.DM.VideoAttributeEventIds
//Debug.Console(2, this, "VideoAttributes_AttributeChange event id={0} from {1}",
// args.EventId, (sender as VideoAttributesEnhanced).Owner.GetType());
switch (eventId)
{
case VideoAttributeEventIds.HdcpActiveFeedbackEventId:
inputPort.VideoStatus.HdcpActiveFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpActiveFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HdcpStateFeedbackEventId:
inputPort.VideoStatus.HdcpStateFeedback.FireUpdate();
AnyVideoInput.VideoStatus.HdcpStateFeedback.FireUpdate();
break;
case VideoAttributeEventIds.HorizontalResolutionFeedbackEventId:
case VideoAttributeEventIds.VerticalResolutionFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
case VideoAttributeEventIds.FramesPerSecondFeedbackEventId:
inputPort.VideoStatus.VideoResolutionFeedback.FireUpdate();
AnyVideoInput.VideoStatus.VideoResolutionFeedback.FireUpdate();
break;
}
}
#region IIROutputPorts Members
public CrestronCollection<IROutputPort> IROutputPorts { get { return Tx.IROutputPorts; } }
public int NumberOfIROutputPorts { get { return Tx.NumberOfIROutputPorts; } }
#endregion
#region IComPorts Members
public CrestronCollection<ComPort> ComPorts { get { return Tx.ComPorts; } }
public int NumberOfComPorts { get { return Tx.NumberOfComPorts; } }
#endregion
}
}

View File

@@ -1,361 +1,364 @@
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 DmTx4k202CController(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 DmTx4k202CController(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 DmTx4k202CController(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);
}
}
}
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);
}
}
}

View File

@@ -105,6 +105,7 @@
<Compile Include="Endpoints\DGEs\DmDge200CController.cs" />
<Compile Include="Endpoints\Receivers\DmRmc4kZ100CController.cs" />
<Compile Include="Endpoints\Receivers\DmRmc4kZScalerCController.cs" />
<Compile Include="Endpoints\Transmitters\DmTx4kz202CController.cs" />
<Compile Include="Endpoints\Transmitters\DmTx201SController.cs" />
<Compile Include="Endpoints\Transmitters\DmTx4kz100Controller.cs" />
<Compile Include="Endpoints\Transmitters\TxInterfaces.cs" />